43 Commits
Author SHA1 Message Date
NuklearRabbit 32ed4fcb5e perf: streamline repository and deployment awareness
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-12 15:26:53 +02:00
NuklearRabbit 38e221cbd1 fix: harden repository refresh and server pull
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-12 15:05:57 +02:00
NuklearRabbit bffad670ef fix: complete server pull deployment setup
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-09 00:43:08 +02:00
NuklearRabbit 4c21616e72 fix: harden deployment discovery and preflight
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-08 23:59:27 +02:00
NuklearRabbit f866b12fbf fix: make updater checksum verification self-contained
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 19:13:05 +02:00
NuklearRabbit f7d6bc374f fix: reconcile server deployments across repository views
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 18:57:55 +02:00
NuklearRabbit 958d5b84d3 fix: make Windows updater helper launch reliable
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 17:59:55 +02:00
NuklearRabbit 8fa4891075 chore: release ForgeFlow 0.10.5
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 17:32:40 +02:00
NuklearRabbit 58d361bbab fix: align deployment links across repository views
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 17:05:03 +02:00
NuklearRabbit acad1f8932 fix: make packaged updater handshake Windows-safe
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 15:09:47 +02:00
NuklearRabbit 44aa452a76 fix: tolerate unavailable unsigned signature inspection
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 14:35:59 +02:00
NuklearRabbit a0435f4316 chore: release ForgeFlow 0.10.3
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 14:33:08 +02:00
NuklearRabbit 13f4fe7cd0 perf: reduce renderer and repository polling work
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 14:24:53 +02:00
NuklearRabbit 258f0b1324 fix: restore scrolling and validator enforcement
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-08-01 12:44:31 +02:00
NuklearRabbit f8c505e525 docs: refresh user guide and screenshots
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-30 02:02:18 +02:00
NuklearRabbit 398f986d95 fix: repair packaged release downloads
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-30 00:58:34 +02:00
NuklearRabbit 60e8aa8fc2 release: prepare ForgeFlow 0.10.1
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-30 00:49:58 +02:00
NuklearRabbit 6ef4620388 fix: make packaged updates certificate-free
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-29 23:11:24 +02:00
NuklearRabbit 18f42621c2 feat: harden release signing and coverage gate
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-29 22:54:51 +02:00
NuklearRabbit aa4895912a docs: record production readiness evidence
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-29 20:06:14 +02:00
NuklearRabbit 347f7132b9 test: prove Authenticode release chain 2026-07-29 19:58:35 +02:00
NuklearRabbit e5599f7a5d style: improve deployment card readability 2026-07-29 19:48:11 +02:00
NuklearRabbit c826561c77 test: strengthen safety-critical coverage 2026-07-29 19:40:27 +02:00
NuklearRabbit 0ed202ec95 chore: reduce and document dependency risk 2026-07-29 19:19:20 +02:00
NuklearRabbit dcbd461a92 test: add isolated production acceptance harness 2026-07-29 18:55:44 +02:00
NuklearRabbit 1e86afb7d9 test: add browser acceptance matrix 2026-07-29 18:49:08 +02:00
NuklearRabbit a0733875c4 feat: deliver policy-driven Git Validator 2.0 2026-07-29 18:24:27 +02:00
NuklearRabbit 7b05c953b6 refactor: split renderer ipc and unraid domains 2026-07-29 18:11:07 +02:00
NuklearRabbit 5d3731a853 feat: normalize deployment inventory evidence 2026-07-29 17:39:22 +02:00
NuklearRabbit 6b93391a9b feat: add transactional deploy key lifecycle 2026-07-29 17:20:31 +02:00
NuklearRabbit 64ca267384 fix: pass signature targets without shell interpolation
ForgeFlow quality gate / quality (push) Canceled after 0s
2026-07-29 16:36:46 +02:00
NuklearRabbit 4555023f87 docs: align release and recovery guidance 2026-07-29 16:31:24 +02:00
NuklearRabbit 4708367b66 feat: add fail-closed signed release provenance 2026-07-29 16:30:02 +02:00
NuklearRabbit 8e580a0b13 ci: enforce lint coverage and Node LTS quality gates 2026-07-29 16:27:16 +02:00
NuklearRabbit a7ab2d6cc8 fix: harden responsive accessibility contracts 2026-07-29 16:22:46 +02:00
NuklearRabbit ae6c41ff90 feat: verify server pull access before deployment 2026-07-29 16:17:54 +02:00
NuklearRabbit 430d40354b fix: make server discovery and audits read-only 2026-07-29 16:09:39 +02:00
NuklearRabbit 56efd1a00c feat: harden server pull deployments and git hygiene 2026-07-28 08:27:09 +02:00
NuklearRabbit d4d77c827a updater fixed 2026-07-28 00:03:33 +02:00
NuklearRabbit f990c26014 Update 2026-07-27 23:15:35 +02:00
NuklearRabbit 03c2608a35 docs: use dark product screenshots 2026-07-27 14:35:05 +02:00
NuklearRabbit 82c335ed2b docs: rebuild README around the user workflow 2026-07-27 14:23:47 +02:00
NuklearRabbit 24dde9a031 Release ForgeFlow 0.8.9 Git Validator 2026-07-26 05:24:22 +02:00
134 changed files with 19083 additions and 6963 deletions
+28
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@@ -0,0 +1,28 @@
name: ForgeFlow quality gate
on:
push:
branches: [main]
pull_request:
jobs:
quality:
runs-on: windows-latest
steps:
- uses: actions/checkout@v4
- uses: actions/setup-node@v4
with:
node-version: 22
cache: npm
- run: npm ci
- run: npm run quality
- run: npx playwright install --with-deps chromium
- run: npm run test:browser:ci
- name: Preserve browser failure evidence
if: failure()
uses: actions/upload-artifact@v4
with:
name: forgeflow-browser-failure-evidence
path: artifacts/
if-no-files-found: ignore
- run: npm audit --omit=dev --audit-level=high
+3
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@@ -3,4 +3,7 @@ dist/
.DS_Store
*.log
coverage/
artifacts/
playwright-report/
.forgeflow/
.playwright-mcp/
+1
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@@ -0,0 +1 @@
22
+57
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@@ -1,5 +1,62 @@
# Changelog
## 0.10.0 - 2026-07-28
- Added safe Gitea Server pull with repository-scoped read-only deploy keys and pinned SSH host fingerprints.
- Automatically discovers and links unique running repository workloads while filtering system containers and stale release folders.
- Reconciles live server SHA, Gitea SHA and runtime health, including deployments changed outside ForgeFlow.
- Preserves adopted Compose and DockerMan identity and avoids duplicate repository links.
- Expanded Git Validator with editor, line-ending, dependency-lock and Gitea Actions checks plus reviewable fixes.
- Refined the dark deployment workspace with clearer workload identity, focused inventory and motion-safe illustration.
- Added live connection/deployment audit scripts and kept automatic cleanup of older packaged artifacts.
## 0.9.5 - 2026-07-28
- Added a mandatory remote write-access preflight before every Direct copy deployment and again immediately before upload.
- The preflight reports the exact failing path, SSH user, owner, group and mode instead of allowing a partial copy or Docker activation.
- Added an in-app **Check / fix write access** action on every SSH / Unraid deployment and directly beside failed permission checks.
- The repair is restricted to the linked project source and `.forgeflow` state, assigns the Unraid `users` group where available, preserves executable bits and excludes configured runtime data.
- Explicit permission repair now also normalizes SMB/manual-copy access even when the SSH account is root and could already write.
- Direct copy is fail-closed: candidate Compose configuration and images are validated before live files change; no implicit `down`, `--remove-orphans` or `--force-recreate` is used.
- A failed activation restores the prior source and image tags, attempts to restore the previous runtime and retains rollback evidence for diagnosis.
- Removed orphan deletion from the legacy server deployment helper as well.
## 0.9.4 - 2026-07-28
- Fixed imported deployments failing with `service has neither an image nor a build context` because a stale labels-only metadata overlay introduced a phantom service.
- Existing workloads now activate strictly from their real Compose files; ForgeFlow metadata is stored outside the active Compose model.
- Redeploy always uses `--force-recreate` and verifies every service returned by `docker compose config --services`.
- A deployment is rejected when the container ID did not change or when the previous hinted container remains running beside a duplicate workload.
- Deployment SHA is promoted only after recreation and runtime checks complete.
## 0.9.3 - 2026-07-28
- removed every server-to-repository authentication check and all server-side Git deployment branches from SSH/Unraid deploy and rollback;
- forcibly migrated legacy SSH/Unraid profiles to direct local bundle copy, except explicit monitor-only profiles;
- discovered Compose YAML definitions directly from configured Unraid appdata roots even when Docker inspection fails;
- merged YAML definitions with runtime containers, stopped containers and DockerMan templates;
- automatically linked unique high-confidence Compose folder/project matches and added one-click linking for remaining strong matches with all fields prefilled;
- made inventory failure handling compatible with strict Bash execution, pruned large runtime folders during YAML discovery and normalized user-share/cache/disk appdata paths.
## 0.9.0 - 2026-07-27
- replaced Git-checkout-only discovery with a complete Unraid workload inventory, including stopped, Compose, DockerMan and standalone containers;
- added persistent manual workload linking with repository, deployment mode, Compose project, files and service identity;
- made checksum-verified exact-commit push bundles the default for new SSH/Unraid profiles, so Unraid no longer needs a Gitea key;
- separated desktop-to-Unraid authentication, Docker/Compose capabilities and optional Unraid-to-Gitea access in diagnostics;
- preserved adopted DockerMan templates and disabled aggressive recreate/orphan flags by default;
- promoted deployment state only after Compose validation and service verification, with atomic manifests, rollback restoration and live lock ownership;
- retained server-side Git and monitor-only modes for explicit use cases;
- corrected release publication so source, installer, portable executable and SHA-256 sidecars are published together, with a recovery publisher for source-only Gitea releases.
## 0.8.9 - 2026-07-26
- added a per-repository Git Validator with a weighted assurance score and evidence-backed checks;
- validates Gitea branch governance, repository identity, upstream tracking, effective author identity, safe synchronization defaults, README and gitignore hygiene, tracked secret-shaped files and oversized files;
- provides audited one-click repairs for origin alignment and repository-local safety configuration;
- offers confirmed repairs for default-branch protection and a reviewable uncommitted `.gitignore`;
- introduced a premium, theme-aware and container-responsive Validator workspace with safe-fix batching.
## 0.8.8 - 2026-07-26
- fixed binary update downloads on Gitea servers that require release-scoped attachment routes;
+15
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@@ -0,0 +1,15 @@
@echo off
setlocal
cd /d "%~dp0"
echo ForgeFlow source and binary release publisher
echo.
powershell.exe -NoLogo -NoProfile -ExecutionPolicy Bypass -File "%~dp0Publish-ForgeFlow-Release.ps1"
set "forgeflowExitCode=%ERRORLEVEL%"
echo.
if not "%forgeflowExitCode%"=="0" (
echo Publication failed. The existing ForgeFlow installation was not modified.
) else (
echo Publication completed. The older ForgeFlow updater can now install this release.
)
pause
exit /b %forgeflowExitCode%
+49 -2
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@@ -1,7 +1,9 @@
param(
[string]$Remote = "git@gitea.itworx.tech:Jens/ForgeFlow.git",
[string]$Branch = "main",
[string]$InstalledSource = "C:\Projects\ForgeFlow"
[string]$InstalledSource = "C:\Projects\ForgeFlow",
[string]$UserDataPath = "",
[switch]$SkipBinaryRelease
)
$ErrorActionPreference = "Stop"
@@ -58,6 +60,47 @@ try {
Write-Host "ForgeFlow $version is available on Gitea at commit $($publishedCommit.Substring(0,7))." -ForegroundColor Green
if (-not $SkipBinaryRelease) {
Write-Host "Building and publishing the matching Windows installer and portable release..." -ForegroundColor Cyan
Push-Location $clone
try {
& cmd.exe /d /s /c "npm ci --no-audit --no-fund"
if ($LASTEXITCODE -ne 0) { throw "npm ci failed in the exact published checkout." }
& cmd.exe /d /s /c "npm run check"
if ($LASTEXITCODE -ne 0) { throw "The exact published checkout failed the release quality gate." }
& cmd.exe /d /s /c "npm run dist:win"
if ($LASTEXITCODE -ne 0) { throw "The Windows release build failed." }
$expectedAssets = @(
"ForgeFlow-Setup-$version-win-x64.exe",
"ForgeFlow-Setup-$version-win-x64.exe.sha256",
"ForgeFlow-Portable-$version-win-x64.exe",
"ForgeFlow-Portable-$version-win-x64.exe.sha256"
)
foreach ($assetName in $expectedAssets) {
if (-not (Test-Path -LiteralPath (Join-Path $clone "dist\$assetName"))) {
throw "The Windows build did not produce $assetName."
}
}
$resolvedUserData = if ($UserDataPath) { $UserDataPath } else { Join-Path $env:APPDATA "forgeflow" }
$previousUserData = $env:FORGEFLOW_USER_DATA
$previousBranch = $env:FORGEFLOW_RELEASE_BRANCH
try {
$env:FORGEFLOW_USER_DATA = $resolvedUserData
$env:FORGEFLOW_RELEASE_BRANCH = $Branch
& cmd.exe /d /s /c "npm run release:binary"
if ($LASTEXITCODE -ne 0) { throw "The Gitea binary release publisher failed." }
} finally {
$env:FORGEFLOW_USER_DATA = $previousUserData
$env:FORGEFLOW_RELEASE_BRANCH = $previousBranch
}
} finally { Pop-Location }
Write-Host "ForgeFlow $version source and Windows release assets are both published." -ForegroundColor Green
} else {
Write-Host "Binary publication was skipped explicitly. Packaged ForgeFlow installations cannot auto-update until the release assets are published." -ForegroundColor Yellow
}
$installedManifestPath = Join-Path $InstalledSource "package.json"
if (Test-Path -LiteralPath $installedManifestPath) {
try {
@@ -123,7 +166,11 @@ try {
Write-Host "Installed source was not found at $InstalledSource; publication itself succeeded." -ForegroundColor Yellow
}
Write-Host "Open the installed older ForgeFlow and use Settings -> ForgeFlow updates -> Check now." -ForegroundColor Cyan
if ($SkipBinaryRelease) {
Write-Host "Source publication completed. Run Publish-Missing-Binary-Release.ps1 before using the updater from an installed EXE." -ForegroundColor Yellow
} else {
Write-Host "Open the installed older ForgeFlow and use Settings -> ForgeFlow updates -> Check now." -ForegroundColor Cyan
}
}
finally {
Remove-Item -LiteralPath $temp -Recurse -Force -ErrorAction SilentlyContinue
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param(
[string]$Remote = "git@gitea.itworx.tech:Jens/ForgeFlow.git",
[string]$Branch = "main",
[string]$ExpectedVersion = "0.9.1",
[string]$UserDataPath = ""
)
$ErrorActionPreference = "Stop"
Set-StrictMode -Version Latest
$temp = Join-Path ([IO.Path]::GetTempPath()) ("forgeflow-binary-release-" + [guid]::NewGuid().ToString("N"))
$clone = Join-Path $temp "ForgeFlow"
function Invoke-CheckedCommand {
param(
[Parameter(Mandatory = $true)][string]$Title,
[Parameter(Mandatory = $true)][scriptblock]$Action
)
Write-Host "`n$Title" -ForegroundColor Cyan
& $Action
if ($LASTEXITCODE -ne 0) {
throw "$Title failed with exit code $LASTEXITCODE."
}
}
try {
foreach ($command in @("git", "node", "npm")) {
if (-not (Get-Command $command -ErrorAction SilentlyContinue)) {
throw "Required command '$command' was not found on PATH."
}
}
New-Item -ItemType Directory -Force -Path $temp | Out-Null
Invoke-CheckedCommand "Cloning the exact published ForgeFlow source..." {
& git clone --branch $Branch --single-branch $Remote $clone
}
$manifestPath = Join-Path $clone "package.json"
if (-not (Test-Path -LiteralPath $manifestPath)) {
throw "The cloned repository does not contain package.json."
}
$manifest = Get-Content -LiteralPath $manifestPath -Raw | ConvertFrom-Json
if ($manifest.name -ne "forgeflow") {
throw "The cloned repository is not ForgeFlow."
}
$version = [string]$manifest.version
if ($ExpectedVersion -and $version -ne $ExpectedVersion) {
throw "Gitea branch '$Branch' contains ForgeFlow $version, not the expected $ExpectedVersion."
}
$localCommit = (& git -C $clone rev-parse HEAD).Trim()
$remoteLines = @(& git -C $clone ls-remote origin "refs/heads/$Branch")
if ($LASTEXITCODE -ne 0 -or $remoteLines.Count -lt 1) {
throw "Could not verify origin/$Branch."
}
$remoteCommit = ($remoteLines[0] -split "`t")[0].Trim()
if ($localCommit -ne $remoteCommit) {
throw "The temporary checkout is not the current origin/$Branch commit."
}
Push-Location $clone
try {
Invoke-CheckedCommand "Installing exact dependencies..." {
& cmd.exe /d /s /c "npm ci --no-audit --no-fund"
}
Invoke-CheckedCommand "Running the complete ForgeFlow quality gate..." {
& cmd.exe /d /s /c "npm run check"
}
Invoke-CheckedCommand "Building installer and portable Windows assets..." {
& cmd.exe /d /s /c "npm run dist:win"
}
$expectedAssets = @(
"ForgeFlow-Setup-$version-win-x64.exe",
"ForgeFlow-Setup-$version-win-x64.exe.sha256",
"ForgeFlow-Portable-$version-win-x64.exe",
"ForgeFlow-Portable-$version-win-x64.exe.sha256"
)
foreach ($assetName in $expectedAssets) {
$assetPath = Join-Path $clone "dist\$assetName"
if (-not (Test-Path -LiteralPath $assetPath)) {
throw "The build did not produce $assetName."
}
}
$resolvedUserData = if ($UserDataPath) { $UserDataPath } else { Join-Path $env:APPDATA "forgeflow" }
$configPath = Join-Path $resolvedUserData "forgeflow-config.json"
if (-not (Test-Path -LiteralPath $configPath)) {
throw "ForgeFlow configuration was not found at $configPath. Open ForgeFlow and sign in to Gitea once, then run this script again."
}
$previousUserData = $env:FORGEFLOW_USER_DATA
$previousBranch = $env:FORGEFLOW_RELEASE_BRANCH
try {
$env:FORGEFLOW_USER_DATA = $resolvedUserData
$env:FORGEFLOW_RELEASE_BRANCH = $Branch
Invoke-CheckedCommand "Creating the Gitea release and uploading all four assets..." {
& cmd.exe /d /s /c "npm run release:binary"
}
} finally {
$env:FORGEFLOW_USER_DATA = $previousUserData
$env:FORGEFLOW_RELEASE_BRANCH = $previousBranch
}
} finally {
Pop-Location
}
Write-Host "`nForgeFlow $version now has a published binary release for commit $($localCommit.Substring(0,7))." -ForegroundColor Green
Write-Host "Return to ForgeFlow $ExpectedVersion's predecessor and choose Check now -> Download update -> Apply & restart." -ForegroundColor Green
}
finally {
Remove-Item -LiteralPath $temp -Recurse -Force -ErrorAction SilentlyContinue
}
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@@ -1,363 +1,182 @@
# ForgeFlow
ForgeFlow 0.8 adds partial-hunk commits, guided conflict recovery, Gitea pull
requests and protected-branch awareness, configurable editor/terminal actions,
deployment policies and release notes, append-only audit export, encrypted
configuration backup, native tray/notifications and a guarded end-to-end
acceptance harness.
**Van lokale wijziging naar aantoonbaar juiste serverversie — zonder de Git- en deploymentcontext over verschillende tools te verspreiden.**
## Publish this release to the built-in updater repository
ForgeFlow is een Windows-desktopapp voor wie Git, Gitea en eigen Docker- of Unraid-servers gebruikt. Je ziet in één werkruimte wat lokaal gewijzigd is, wat op Gitea staat en welke exacte commit op de server draait. ForgeFlow begeleidt je daarna veilig door review, commit, push, deployment en verificatie.
Extract the full source ZIP to a folder under Downloads and run:
> Huidige release: **0.10.12** · [download de laatste Windows-release](https://gitea.itworx.tech/Jens/ForgeFlow/releases/latest)
![ForgeFlow release-overzicht](docs/screenshots/overview.png)
## Wat ForgeFlow voor je oplost
- **Eén duidelijke actielijst:** zie meteen welke repository aandacht nodig heeft en waarom.
- **Veilige Git-flow:** review wijzigingen, stage volledige bestanden of afzonderlijke hunks, commit, push en herstel conflicten zonder contextwissel.
- **Deployment op een exacte commit:** ForgeFlow gebruikt volledige commit-SHA's en toont lokaal, Gitea en server naast elkaar.
- **Automatische serverinventaris:** ForgeFlow herkent draaiende en gestopte Docker-, Compose- en DockerMan-workloads, koppelt alleen op betrouwbaar bewijs en houdt tijdelijke of externe containers apart.
- **Veilige server-pull:** Unraid haalt de exacte commit uit Gitea met een unieke, repository-scoped read-only deploy key en een vastgepinde SSH-hostsleutel.
- **Ingebouwde Git Validator:** controleer repository-identiteit, branch protection, synchronisatie-instellingen, documentatie, geheimen en grote bestanden; veilige verbeteringen kunnen gericht worden toegepast.
- **Lokale controle:** configuratie en credentials blijven op het toestel en diagnostische exports worden lokaal geredigeerd.
## Snel starten
### Aanbevolen: de Windows-app installeren
1. Open de [laatste ForgeFlow-release](https://gitea.itworx.tech/Jens/ForgeFlow/releases/latest).
2. Download de Windows-installer of portable executable.
3. Start ForgeFlow en doorloop de setupwizard.
4. Voeg je Gitea-server, token en lokale projectmappen toe.
5. Voeg optioneel een Docker- of Unraid-server toe. Start daarna **Scan servers** om bestaande deployments te ontdekken en veilig aan repositories te koppelen.
Vanaf versie 0.10.2 kun je nieuwe packaged releases vanuit **Settings → Updates** ophalen. ForgeFlow accepteert uitsluitend de release die bij de exacte Gitea-commit hoort en controleert de download tegen de gepubliceerde SHA-256-checksum. Zie [UPDATING.md](docs/UPDATING.md) voor oudere of source-only installaties.
### Eerst vrijblijvend bekijken
De interactieve demomodus gebruikt uitsluitend representatieve voorbeelddata en maakt geen verbinding met Git, Gitea of een server:
```powershell
Set-ExecutionPolicy -Scope Process Bypass
.\Publish-ForgeFlow-Release.ps1
npm install
npm run demo
```
The script runs the complete quality gate, clones `git@gitea.itworx.tech:Jens/ForgeFlow.git` into a temporary folder, mirrors the verified source without `.git`, `node_modules` or release ZIPs, commits it on `main` and pushes it. A running older ForgeFlow source installation can then update through **Settings → Updates**.
Open daarna `http://127.0.0.1:41737`.
## De dagelijkse workflow
### 1. Begin bij wat aandacht vraagt
ForgeFlow is a desktop release cockpit that turns the complete path from a local
code change to a verified server deployment into one guided flow:
Het release-overzicht vertaalt technische status naar concrete acties: wijzigingen reviewen, commits pushen, synchroniseren, deployen of een ongezonde omgeving onderzoeken. De repositorylijst blijft beschikbaar zodat je snel van context kunt wisselen.
```text
Local working tree -> Gitea repository -> exact deployed server version
```
### 2. Review en publiceer code
It is not an IDE and it does not replace Gitea Actions. ForgeFlow coordinates
local Git, a private Gitea instance and fixed deployment workflows while keeping
credentials on the user's own computer.
![Repositorywerkruimte met diff en volgende actie](docs/screenshots/repository-workspace.png)
![ForgeFlow overview](docs/screenshots/overview.png)
In de repositorywerkruimte zie je de volledige keten **Local → Gitea → Server**. Je kunt wijzigingen selecteren, diffs bekijken, gedeeltelijke hunk-staging behouden, branch protection controleren en een pull request openen. Destructieve of publicerende acties vereisen altijd expliciete bevestiging.
## Current status: v0.6.0 self-healing Git and Unraid operations
### 3. Deploy en verifieer de live versie
### Git recovery and repository truth
![Deploymentsoverzicht met herkenbare containerkaarten](docs/screenshots/deployments.png)
- serializes every mutating Git action per repository;
- waits through a short grace period and automatically retries after safely removing a proven stale lock;
- detects `HEAD.lock`, `index.lock`, ref locks and worktree locks while skipping object storage;
- provides repository-specific actions for fetch, fast-forward, push and backed-up divergence reset;
- creates a `forgeflow/backup-*` safety branch before any reset to upstream.
Elke deploymentkaart benoemt repository, container, omgeving, uitvoeringsmethode, live commit, Gitea-commit, vorige versie en healthstatus. Zo blijven ook tientallen containers visueel van elkaar te onderscheiden. ForgeFlow ondersteunt gecontroleerde deployments via Gitea Actions en SSH/Unraid, met preflightcontrole en rollback waar beschikbaar.
### SSH / Unraid and DockerMan
Bij server discovery vergelijkt ForgeFlow runtime-, Compose-, DockerMan- en Git-bewijs met Gitea. Exact bewezen matches worden automatisch gekoppeld; kandidaten, historische mappen en externe containers worden niet als productie-deployment geforceerd. Een exacte overeenkomst tussen de volledige live SHA en de actuele Gitea-SHA wordt als gelijklopende versie weergegeven. Ontbreekt de live SHA, dan meldt ForgeFlow eerlijk dat verificatie nog onvolledig is.
- reconciles interrupted deployments against the live SHA, container state and health;
- applies DockerMan WebUI, icon and shell labels through an override and writes a persistent XML template fallback;
- keeps the visible container name such as `Portfolio` while enforcing lowercase internal service/image identities;
- includes a built-in high-contrast ITWorx icon, local PNG upload, persistent DockerMan image storage and cache refresh;
- exposes **Open Web UI**, **Repair DockerMan integration** and **Reconcile** directly on deployment cards.
De belangrijkste statussen zijn:
### Update reliability
| Status | Wat je ermee doet |
| --- | --- |
| **Ready** | De repository, servertoegang, live commit en runtime zijn geverifieerd. |
| **Commit mismatch** | De workload is correct gekoppeld, maar Gitea en de server draaien niet dezelfde commit. |
| **Verification incomplete** | De koppeling bestaat, maar de server bevat nog onvoldoende commitbewijs. Een ForgeFlow-beheerde deployment vult dit veilig aan. |
| **Access failed** | Controleer of herstel de repositorygebonden read-only deploy key voordat je deployt. |
- confirms the external updater handshake before closing ForgeFlow;
- rejects malformed PowerShell update helpers before publication;
- validates the replacement source and keeps rollback/success status for the next launch;
- verifies that Gitea reports the exact published release commit.
### 4. Verbeter de repository met Git Validator
Read [SSH / Unraid deployment](docs/SSH_UNRAID_DEPLOYMENT.md) and the
[LumaOps audit](docs/LUMAOPS_SERVER_AUDIT.md).
![Git Validator met assurance score en veilige fixes](docs/screenshots/git-validator.png)
### v0.4.2 automatic clone workflow
Git Validator groepeert bevindingen per onderwerp en maakt onderscheid tussen geslaagde controles, aanbevelingen en kritieke problemen. Alleen fixes die ForgeFlow veilig en voorspelbaar kan uitvoeren worden als automatische actie aangeboden; governancewijzigingen zoals branch protection blijven zichtbaar en expliciet.
**Clone from Gitea** now uses the first configured project root and creates the
repository-named subfolder automatically. The native folder picker is reserved
for the explicit **Choose another location** action. Existing matching checkouts
are linked; conflicting folders are never overwritten.
## Wanneer is een release werkelijk in orde?
The Windows environment doctor retains the v0.3.1 npm command-shim correction.
ForgeFlow houdt drie soorten waarheid bewust apart:
Version 0.3.2 is designed so the user does not need to give a developer any
Gitea token, SSH key, server password or other credential. The application now
includes:
| Controle | Betekenis |
| --- | --- |
| **Local ↔ Gitea** | De lokale branch volgt de juiste upstream en is niet onverwacht ahead, behind of divergent. |
| **Gitea ↔ Server** | De volledige commit-SHA op de server is exact gelijk aan de relevante commit op Gitea. |
| **Runtime health** | De container of applicatie draait en de geconfigureerde healthcheck slaagt. |
- a five-step setup wizard;
- computer, Gitea and deployment preflights;
- protected local token entry;
- structured local diagnostics with aggressive secret redaction;
- standard and strict privacy support bundles;
- fail-closed bundle safety auditing;
- request IDs that correlate desktop, Actions and server events;
- root-owned allowlisted server target configuration;
- a complete setup guide from fresh checkout to first rollback test.
Een gelijke commit bewijst welke code draait; een geslaagde healthcheck bewijst dat die versie ook functioneert. ForgeFlow combineert beide signalen zonder het ene voor het andere te laten doorgaan.
Start with [START_HERE.md](START_HERE.md). The full installation and acceptance
procedure is in [docs/SETUP_GUIDE.md](docs/SETUP_GUIDE.md).
## Belangrijkste functies
## What ForgeFlow can do
### Git en Gitea
### Repository workflow
- repositories ontdekken, favorieten beheren en ontbrekende lokale clones koppelen;
- status, diff, staging, partial hunks, commit, push, fetch, pull, stash en conflict recovery;
- branches maken, wisselen, vergelijken en opruimen;
- branch protection controleren en pull requests openen;
- Git Validator met assurance score, bewijs per controle en gerichte veilige fixes.
- Connect to a private Gitea instance and validate the account locally.
- Discover Git working trees beneath one or more project roots.
- Use the first project root as the automatic clone destination.
- Match local folders to Gitea repositories using normalized `origin` identity.
- Link existing repositories or clone directly into the default project root.
- Read real Git status through porcelain v2 and NUL-delimited output.
- Inspect diffs and select files.
- Stage and unstage changes.
- Commit locally or commit and push in one action.
- Push, fetch and use fast-forward-only pull.
- Review recent history.
- Create, switch and publish branches.
- Stash, list and restore local work.
- Mark favorites and prioritize repositories requiring attention.
- Refresh repository state automatically while the application is open.
### Deployments
### Deployment workflow
- deploymentprofielen per repository en omgeving;
- Gitea Actions en SSH/Unraid als gecontroleerde uitvoeringsroutes;
- serverinventaris van draaiende en gestopte Docker-, Compose- en DockerMan-workloads;
- automatische koppeling op exact bewijs, expliciete review voor echte twijfelgevallen en herkenning van tijdelijke, historische en externe workloads;
- server-pull als aanbevolen route, met een afzonderlijke read-only deploy key per repository;
- directe checksum-gecontroleerde copy als alternatief zonder servertoegang tot Gitea;
- reconciliatie van deployments die buiten ForgeFlow werden bijgewerkt, op basis van de actuele Gitea- en serverwaarheid;
- verificatie op volledige SHA, runtime health en recente serverwaarheid;
- preflight, live logs, deploymenthistoriek en rollback naar de vorige bekende versie.
- Configure multiple environments per repository.
- Bind each environment to a fixed branch and fixed Gitea Actions workflows.
- Run a visible deployment preflight before confirmation.
- Re-run mandatory checks in the privileged backend before dispatch.
- Verify a clean tree, correct branch, upstream and ahead/behind state.
- Verify that the exact full SHA exists on the allowed remote branch.
- Verify local and remote workflow files and Gitea Actions availability.
- Dispatch a unique request ID with the exact commit SHA.
- Poll Gitea Actions runs and jobs.
- Correlate the workflow with the server status endpoint.
- Verify that the requested SHA is actually live.
- Run an independent application healthcheck.
- Roll back through a separate fixed workflow to the previous exact SHA.
- Preserve a bounded local operation history.
### Veiligheid en beheer
### Safe diagnostics
- credentials versleuteld via de beveiligde opslag van het besturingssysteem;
- origin-checks voorkomen dat een Gitea-token naar een andere host wordt gestuurd;
- updatepakketten worden alleen vanaf de geconfigureerde Gitea-origin gedownload en met checksums geverifieerd;
- lokale redactie van tokens, wachtwoorden en gevoelige diagnostische data;
- versleutelde configuratieback-up, herstelvoorbeeld en lokale audittrail;
- packaged builds als Windows-installer en portable executable.
ForgeFlow stores structured JSONL diagnostics in the application-data folder.
They are intended to make development and troubleshooting possible without
requesting credentials.
Meer achtergrond staat in [SECURITY.md](docs/SECURITY.md) en [ARCHITECTURE.md](docs/ARCHITECTURE.md).
The logger records useful operational facts such as:
## Eerste configuratie
- timestamps, stable event names and duration;
- Git action outcomes and repository state;
- Gitea endpoint paths and HTTP status, but not authorization headers;
- deployment request IDs, workflow stages and health states;
- preflight results;
- sanitized error names, codes, messages and stacks.
Voor normaal gebruik heb je nodig:
It excludes or redacts:
- Windows 10 of 11;
- Git op het toestel;
- toegang tot een Gitea-account en een token met de benodigde repositoryrechten;
- minstens één lokale hoofdmap waarin ForgeFlow projecten mag ontdekken.
- Gitea tokens and encrypted token blobs;
- passwords, authorization headers and credential-bearing URLs;
- private keys and common token patterns;
- arbitrary environment-variable dumps;
- local source contents and Git diffs;
- raw Gitea runner logs from support bundles;
- user-home paths.
Voor serverdetectie en SSH-deployments heb je daarnaast een bereikbare Docker- of Unraid-host en een werkende SSH-configuratie nodig. Begin bij:
Support bundles are audited before writing. If a known runtime secret, private
key marker or URL credential remains, ForgeFlow aborts the export instead of
creating the ZIP. Strict privacy mode also hashes repository and user
identifiers while keeping related events correlatable.
- [SETUP_GUIDE.md](docs/SETUP_GUIDE.md) — Gitea, projectmappen en eerste ingebruikname;
- [DEPLOYMENT_SETUP.md](docs/DEPLOYMENT_SETUP.md) — deploymentprofielen en verificatie;
- [SSH_UNRAID_DEPLOYMENT.md](docs/SSH_UNRAID_DEPLOYMENT.md) — SSH- en Unraid-vereisten;
- [DIAGNOSTICS.md](docs/DIAGNOSTICS.md) — veilige controles en supportbundels.
Read [docs/DIAGNOSTICS.md](docs/DIAGNOSTICS.md) for the exact policy and its
limitations.
## Ontwikkelen vanuit de broncode
## Security model
- Electron main/preload/renderer separation.
- Sandboxed renderer with context isolation and no direct Node.js access.
- Narrow, frozen preload API.
- Trusted renderer-origin checks on privileged IPC.
- No arbitrary shell command field in the interface.
- Gitea token stored using Electron `safeStorage` when available.
- Blank token updates preserve the existing protected token.
- Atomic local configuration writes and schema migration.
- Repository-relative path validation for file actions.
- Supported-protocol and credential-in-URL validation.
- Fixed workflow, branch and environment allowlists.
- Root-owned server target configuration.
- Exact-SHA deployment and rollback.
- Server-side locking, health validation and status records.
- Local diagnostic retention, rotation and clear/export controls.
More detail is available in [docs/SECURITY.md](docs/SECURITY.md).
## Prerequisites
For a Windows source setup:
- Windows 10 or 11;
- Node.js 22 or newer;
- npm;
- Git on `PATH`;
- a normal signed-in desktop session;
- access to your own Gitea instance.
For deployment:
- Gitea Actions enabled;
- a trusted Gitea runner with an environment-specific label;
- a Linux target server reachable by that runner;
- Git, Docker Compose, `curl` and `flock` on the target server;
- an existing non-interactive server checkout of the application.
## Fastest Windows start
Extract the release, open PowerShell in the folder and run:
Vereisten: Node.js 22, npm en Git.
```powershell
Set-ExecutionPolicy -Scope Process Bypass
.\setup-windows.ps1
```
The script:
1. checks Node.js, npm and Git;
2. installs the exact dependency versions from `package-lock.json` when present;
3. runs the environment doctor;
4. validates the source tree;
5. runs all automated tests;
6. starts ForgeFlow.
No Gitea or server credential is requested by the PowerShell script. Tokens are
entered later in the local desktop wizard.
Manual equivalent:
```bash
npm install --no-audit --no-fund
npm run doctor
npm ci
npm run check
npm start
```
## Setup and first acceptance test
Handige opdrachten:
Follow these documents in order:
| Opdracht | Doel |
| --- | --- |
| `npm run dev` | Start Electron in ontwikkelmodus. |
| `npm run demo` | Start de browserdemo met voorbeelddata. |
| `npm run check` | Voert bronverificatie en de volledige testset uit. |
| `npm run doctor` | Controleert de lokale ontwikkelomgeving. |
| `npm run acceptance` | Voert de release-acceptatiecontroles uit. |
| `npm run dist:win` | Bouwt Windows installer + portable package, schrijft checksums en ruimt oude dist-artifacts op. |
| `.\Publish-ForgeFlow-Release.ps1` | Publiceert broncode én de bijbehorende Windows-release-assets als één gecontroleerde release. |
| `.\Publish-Missing-Binary-Release.ps1` | Herstelt een reeds gepushte versie waarvoor de Gitea binary release ontbreekt. |
1. [START_HERE.md](START_HERE.md)
2. [docs/SETUP_GUIDE.md](docs/SETUP_GUIDE.md)
3. [docs/UPDATING.md](docs/UPDATING.md)
4. [docs/DEPLOYMENT_SETUP.md](docs/DEPLOYMENT_SETUP.md)
5. [docs/STATUS_ENDPOINT.md](docs/STATUS_ENDPOINT.md)
6. [docs/DIAGNOSTICS.md](docs/DIAGNOSTICS.md)
The recommended first test uses a non-critical staging deployment and validates:
De belangrijkste onderdelen zijn:
```text
preflight -> commit -> push -> deploy -> Actions -> server SHA -> healthcheck -> rollback
electron/ beveiligde desktopintegraties en IPC
src/ renderer, gebruikersflows en visuele componenten
scripts/ build-, release-, demo- en verificatiehulpmiddelen
tests/ unit- en integratietests
docs/ setup, deployment, beveiliging en release-informatie
```
## Updating an existing source installation
Aanvullende kwaliteitsdocumentatie:
Close ForgeFlow, copy the v0.4.2 update overlay over the existing source folder
and run:
- [TEST_MATRIX.md](docs/TEST_MATRIX.md)
- [ACCEPTANCE.md](docs/ACCEPTANCE.md)
- [STATUS_ENDPOINT.md](docs/STATUS_ENDPOINT.md)
- [ROADMAP.md](docs/ROADMAP.md)
```powershell
Set-ExecutionPolicy -Scope Process Bypass
.\update-windows.ps1
```
## Licentie
Application configuration and protected credentials are stored outside the
source folder and are not reset. See [docs/UPDATING.md](docs/UPDATING.md).
## Browser demo
The standalone visual demo requires no Gitea connection or credentials:
```bash
npm run demo
```
Open the printed local URL. The demo uses `src/renderer/mock-bridge.js`; the
packaged desktop application uses the privileged `preload.cjs` bridge.
## Quality checks
```bash
npm run verify
npm test
npm run check
npm run doctor -- --json
```
Version 0.3.2 contains 45 automated tests. Two integration suites create real
temporary bare Git remotes and exercise commit, push, branch, stash and exact
remote-SHA behavior. Detailed coverage is listed in
[docs/TEST_MATRIX.md](docs/TEST_MATRIX.md).
## Development packages
```bash
npm run dist:win
npm run dist:linux
npm run dist:mac
```
Windows users can run:
```powershell
.\build-windows.ps1
```
These commands create unsigned development packages. Public distribution still
requires platform code signing and platform-specific release acceptance.
## Server-side deployment model
ForgeFlow never sends a free-form deployment command. It dispatches a fixed
workflow with controlled inputs:
```json
{
"ref": "main",
"inputs": {
"environment": "staging",
"commit_sha": "0123456789abcdef0123456789abcdef01234567",
"request_id": "generated-by-forgeflow"
}
}
```
The workflow calls a root-owned allowlisted server script. Deployment targets
are defined in `/etc/forgeflow/targets.conf`, not supplied by the desktop app.
The server checks repository, environment, paths, branch, exact remote ancestry,
locking, Docker Compose result and health before it updates the public status
JSON.
## Project structure
```text
main.cjs Electron lifecycle and service composition
preload.cjs Whitelisted renderer API and event bridge
src/main/config-store.cjs State, migration and protected token storage
src/main/git-service.cjs Real Git CLI adapter
src/main/gitea-service.cjs Gitea REST and Actions adapter
src/main/repository-service.cjs Discovery, matching and repository aggregation
src/main/repository-monitor.cjs Background working-tree awareness
src/main/deployment-service.cjs Dispatch, polling, SHA checks and rollback
src/main/preflight-service.cjs Computer and deployment readiness checks
src/main/diagnostics-service.cjs Safe JSONL diagnostics and support bundles
src/main/log-redaction.cjs Recursive secret and privacy sanitizer
src/main/ipc.cjs Validated privileged operation boundary
src/shared/clone-target.cjs Safe automatic clone target planning
src/shared/zip-writer.cjs Dependency-free diagnostic ZIP writer
src/renderer/ Desktop UI and browser demo
examples/gitea-actions/ Fixed deploy and rollback workflow templates
examples/server/ Allowlisted Linux deployment implementation
tests/ Unit and real Git integration tests
docs/ Setup, diagnostics, security and architecture
```
## Scope and remaining acceptance
The v0.4.2 logic is prepared for self-service configuration and testing, but no
source release can prove compatibility with a private environment it has never
connected to. The remaining acceptance is deliberately local to the user:
- validate the exact Gitea version and Actions API;
- validate the runner label and runner permissions;
- adapt one target line in the root-owned server configuration;
- verify the application-specific Docker Compose and health endpoint;
- execute the documented staging deployment and rollback test;
- export a Strict support bundle if a failure occurs.
No credential needs to be shared for that process.
## License
MIT. See [LICENSE](LICENSE).
ForgeFlow is beschikbaar onder de [MIT-licentie](LICENSE).
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8f36b542736f2933bad8b9464ad7fa37b68196009c81cf702ce3b677cd637dea 767 UPDATE_FROM_0.3.2.md
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# Start here — ForgeFlow v0.6.0
# Start here — ForgeFlow v0.9.0
You do **not** need to send anyone your Gitea token, SSH key or server password.
All credentials are entered locally in ForgeFlow during setup. Diagnostic logging
is designed to exclude them.
## Already running an older source release?
## Already running an older ForgeFlow release?
Publish v0.6.0 with `Publish-ForgeFlow-Release.ps1`, leave the currently installed source folder untouched, and test **Settings → ForgeFlow updates → Check now → Download update → Apply & restart**. Configuration and credentials remain outside the source directory.
Run `Publish-ForgeFlow-Release.ps1` from the validated source. It now publishes the source commit and matching Windows installer/portable assets together. Leave the currently installed older folder or executable untouched, then test **Settings → ForgeFlow updates → Check now → Download update → Apply & restart**. Configuration and credentials remain outside the application directory.
When version 0.9.0 source was already pushed without a Gitea binary release, run `Publish-Missing-Binary-Release.ps1 -ExpectedVersion 0.9.0` once. Afterwards the existing 0.8.9 updater can install 0.9.0 normally.
## Fast path on Windows
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The first command is read-only. The mutation flags require every read-only
check to pass, dispatch a controlled exact-SHA workflow with a unique request
ID, and wait for matching status plus a successful health endpoint.
## Isolated production acceptance
`npm run acceptance:isolated` provisions disposable bare Git remotes, working
trees, server appdata folders, Compose definitions, deployment keys,
configuration migrations and release manifests below the operating-system temp
directory. It covers clean and portable installs, the 0.10.0 migration path,
both authentication modes, exact-SHA server pull and Direct Copy, adoption,
external updates, deploy-key lifecycle, host-key changes, unhealthy activation,
rollback, network interruption, shutdown recovery, stale plans, corrupt config,
release integrity and inventories of more than twenty workloads.
Every fixture is removed after its test. The suite never discovers or mutates
real project folders, configured servers, credentials, containers or releases.
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# Coverage policy
ForgeFlow treats coverage as release evidence, not as a target to game. `npm run coverage`
enforces 75% statements, 75% lines, 75% functions and 65% branches globally.
The July 2026 hardening pass raised the measured baseline from 69.74% statements/lines,
68.82% functions and 55.38% branches to 81.48% statements/lines, 82.07% functions and
65.59% branches. Node/V8 discovered additional branch counters when previously unexecuted
functions became covered; the denominator grew from 2,537 to 3,473 while the new tests
added hundreds of asserted decisions. No command builders, platform guards or error
adapters were excluded to improve the result cosmetically.
The 65% global gate is paired with scenario-level evidence for the critical
boundaries: deploy-key rollback, deployment verification, Gitea authentication and
redirects, SSH host identity and output limits, inventory reconciliation, stale plans,
configuration recovery, release integrity and updater failure modes. New code must not
reduce the global baseline. Future increases must come from additional asserted failure
scenarios, not ignore comments or source exclusions.
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# ForgeFlow current state
## Baseline
- Baseline version: **0.10.0**
- Baseline commit: `56efd1a00c2e76251a0b2e7a7a424d94200ae33c`
- Baseline branch: `main`
- Desktop runtime: Electron 43 with Node.js 22+ required by the source project
- Primary supported packaged updater: Windows installer and portable executable
The baseline was recorded before the 1.0 professionalization programme. It is the comparison point for functional, deployment and renderer regressions.
## Known baseline evidence
- `npm run check`: 155 tests, 152 passed, 3 environment-dependent Bash checks skipped, 0 failed.
- OS-backed secure storage, encrypted Gitea token, Gitea API, repository and Actions access were available.
- Unraid exposed Docker, Compose, Git, tar and SHA-256 tooling.
- The server inventory contained active repository workloads plus a large number of historical or unrelated definitions that require backend classification.
- Windows release artifacts were checksum-protected but not Authenticode-signed.
No secret values, passwords, private keys or tokens are stored in this document.
## Operation classes
| Class | Default | Examples |
| --- | --- | --- |
| Read-only inspection | Allowed without confirmation | repository refresh, server inventory, deploy-key probe, preflight, audit export |
| Reconciliation | Preview required | adopt an exact workload, refresh a profile from server truth |
| Configuration mutation | Explicit action and audit record | save profile, rotate deploy key, change server settings |
| Deployment | Fresh preflight and confirmation | server pull, Direct Copy, Gitea Actions dispatch |
| Destructive maintenance | Recovery evidence and explicit confirmation | unlink, prune, key revocation, rollback |
Discovery and audit never belong to a mutating class. Ambiguous evidence cannot be promoted automatically.
## Recovery model
ForgeFlow writes its configuration atomically. Explicit server reconciliation additionally creates a private recovery snapshot before changing profiles or deployment state. Encrypted user-created `.ffbackup` files remain the portable restore mechanism; recovery snapshots are local operational safeguards and can contain OS-encrypted credential material.
## Issue priorities
- **P0:** active data loss, credential disclosure, arbitrary execution or uncontrolled production mutation.
- **P1:** release-blocking incorrect deployment, unsafe implicit mutation, broken recovery or material security gap.
- **P2:** important functional, accessibility, performance or maintainability defect with a safe workaround.
- **P3:** polish, documentation or low-risk improvement.
## 1.0 constraints
- No force-push or implicit repository history rewrite.
- No automatic deployment deletion.
- No desktop Gitea token on a server.
- Read-only repository-scoped deploy keys for server pull.
- SSH host-key changes fail closed.
- Live commit, remote commit and runtime health remain separate evidence.
- Packaged updates must fail closed on missing or mismatched release assets and SHA-256 evidence; paid code signing is optional.
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# Dependency security audit
Audit date: 2026-07-29
## Outcome
- Runtime/production dependency audit: **0 vulnerabilities** (`npm audit --omit=dev`).
- Full development toolchain: **19 high advisories**, reduced from 23.
- Critical advisories: **0**.
Playwright was upgraded from 1.55.0 to 1.62.0, removing the browser-download
certificate-verification advisory. `c8` was upgraded from 10.1.3 to 12.0.0,
removing the vulnerable `test-exclude` chain. Compatible patched
`brace-expansion` releases were installed where dependency ranges allowed it.
## Remaining development-only chain
All remaining records collapse to one advisory:
`GHSA-mh99-v99m-4gvg`, an uncontrolled brace-expansion denial of service. npm
reports it through nested `minimatch` versions in two independent toolchains:
- ESLint 10.8.0 (`@eslint/config-array`, `@eslint/eslintrc`);
- electron-builder 26.15.3 (`@electron/asar`, `@electron/universal`, `glob`,
`dir-compare`, `ejs`/`jake`, Windows packaging helpers).
These packages are never loaded by the packaged ForgeFlow runtime. They run in
developer or CI processes against repository and build configuration owned by
the operator. A malicious repository could still attempt resource exhaustion
during linting or packaging, so the finding is not classified as harmless.
CI jobs must retain memory/time limits and untrusted pull requests must not run
release signing or publishing jobs.
## Decisions
- `npm audit fix --force` is prohibited. npm proposes ESLint 4.0.0 and an older
electron-builder; both are breaking downgrades and the tested older builder
dependency graph increased the result to 30 high and 1 critical advisory.
- No global `minimatch` override is used. Several affected consumers declare
older APIs, and forcing a new major could silently break packaging or lint
file selection.
- Latest stable ESLint and electron-builder versions are pinned exactly. The
residual chain will be retested whenever either publishes a dependency fix.
The release gate treats `npm audit --omit=dev --audit-level=high` as blocking.
The complete development audit remains documented and visible rather than
being misrepresented as a production vulnerability count.
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# ForgeFlow error and recovery catalog
| Code | Meaning | Recovery |
| --- | --- | --- |
| `RECONCILIATION_PLAN_REQUIRED` | A server mutation was requested without its reviewed plan. | Open Review reconciliation and apply the current plan ID. |
| `RECONCILIATION_PLAN_STALE` | Server truth changed after preview. | Rescan, review the new impact and apply that plan. |
| `SERVER_GIT_VERIFICATION_FAILED` | Branch, deploy key or pinned SSH evidence could not be proven. | Run Verify server pull; repair only the failing check before retrying. |
| `DEPLOY_KEY_NOT_READ_ONLY` | A matching key can write to Gitea. | Revoke it in Gitea and configure a dedicated read-only key. |
| `SSH_DEPLOYMENT_PREFLIGHT_FAILED` | One or more deployment safety checks failed. | Open preflight evidence and follow the failing check's detail. |
| `REMOTE_WRITE_ACCESS_REQUIRED` | The SSH user cannot safely write the managed source/state paths. | Use Check / fix write access after reviewing its scoped impact. |
| `UPDATE_ORIGIN_MISMATCH` | An update asset points outside the trusted Gitea origin. | Correct release asset URLs; never bypass the origin check. |
| `UPDATE_CHECKSUM_MISMATCH` | Downloaded bytes do not match the published checksum. | Keep the current version and republish the exact commit atomically. |
Audit and discovery never repair these conditions automatically. Mutating recovery
actions require an explicit user flow and preserve rollback or snapshot evidence.
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# Mutation and reconciliation model
ForgeFlow separates observation from state changes at the API boundary.
## Discovery
`scanServerInventory()` and `discoverServerWorkloads()` collect Docker, Compose, DockerMan and Git evidence. They may write diagnostic logs, but they do not save, update or delete deployment profiles and do not change containers.
## Reconciliation planning
`planServerInventoryReconciliation()` returns a content-addressed plan containing:
- exact links that may be added;
- existing profiles whose observed metadata may be refreshed;
- stale profiles that require review;
- ambiguous workloads that block automatic application.
The plan identifier changes whenever its proposed scope changes.
## Reconciliation application
`reconcileServerInventory()` requires the exact reviewed plan identifier. It rescans the server and refuses a stale plan. Before writing configuration it creates a private recovery snapshot. Stale profiles are reported but never removed automatically.
## Direct mutations
Manual linking, unlinking, deploy-key rotation, deployment and rollback remain separate explicit commands. Each must append an audit event with repository, profile, operation identifier and result. Destructive commands need a dedicated confirmation flow and recovery path.
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# ForgeFlow 1.0 production-readiness evidence
## 1. Scope and history
The professionalization work started from `64ca267` on `main`. It preserves the
0.10.0 compatibility baseline and deliberately creates no 1.0 tag or public
release. The commits and their exact SHAs remain the authoritative audit trail.
## 2. Deployment safety
Server pull uses repository-scoped read-only deploy keys, exact commit SHAs,
pinned SSH/Gitea host identities, Compose validation, health evidence and bounded
rollback. Rotation is transactional and revocation requires reviewed impact and
recovery evidence. Direct Copy and monitor-only remain explicit alternatives.
## 3. Inventory and reconciliation
Canonical deployment identity combines repository, branch, server, environment,
Compose project/root, runtime labels, container, live SHA and profile. Duplicate,
stale, ambiguous, orphan and historical evidence has persistent content-addressed
review decisions. Discovery never deletes, stops or rewrites a workload.
## 4. Architecture
Renderer, IPC and Unraid responsibilities are split by domain. The generated
architecture audit currently reports zero source files above 750 or 1,000 lines.
Runtime schemas, bounded IPC capabilities, operation IDs and explicit error
contracts protect the process boundary.
## 5. Repository assurance
Git Validator 2.0 covers security, reproducibility, governance, collaboration,
performance/hygiene and release readiness. Minimal, Standard, Strict, Production
and custom policies support accountable expiring suppressions, trend history and
reviewable JSON/Markdown/HTML reports. Repairs always require preview and never
commit or push automatically.
## 6. Automated verification
The Node suite includes real temporary Git remotes and an isolated production
acceptance harness. Playwright adds 36 renderer cases across six viewport/theme/
motion/scaling projects. Failure artifacts contain screenshots, traces, video,
console events, DOM, fixture details and test identity.
## 7. Coverage and dependencies
Coverage increased from 69.74% statements/lines, 68.82% functions and 55.38%
branches to 81.48%, 82.07% and 65.59%, respectively. The enforced gates are now
75/75/75/65 and are documented in `COVERAGE_POLICY.md`. Production dependencies have zero known
audit vulnerabilities. Remaining development findings belong to current upstream
ESLint/electron-builder toolchains and are assessed in `DEPENDENCY_AUDIT.md`.
## 8. UX and accessibility
Dark and light themes use the same semantic hierarchy, restrained project-signal
motion and status text that never depends on color alone. Deployment cards expose
container, repository, environment, commit parity and health distinctly. Dense
inventories, long names, keyboard focus, dialogs, reduced motion and high scaling
are part of the automated matrix.
## 9. Packaging and updating
Windows installer and portable packaging use deterministic names; old `dist`
versions are pruned after every successful build. Publication stays draft until
installer, portable, checksums, provenance and CycloneDX SBOM are complete. Binary
updates verify the exact release asset, executable format and published SHA-256
before download staging and again before replacement. Authenticode is optional and
is not a release or updater dependency for this personal/internal application.
## 10. Release decision
No open P0 or P1 technical issue is known after the final quality, browser,
acceptance, signing and packaging gates. The technically correct status is:
`TECHNICALLY_COMPLETE`
There is no paid certificate or external signing-service dependency. Windows may
show its normal unknown-publisher warning during first installation.
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# ForgeFlow 0.10.0
ForgeFlow 0.10.0 makes existing Unraid workloads substantially easier and safer to adopt, verify and deploy.
## Deployment discovery and verification
- Automatic discovery links unique running server workloads to their matching Gitea repositories while excluding unrelated infrastructure and stale release folders.
- Deployment cards preserve the last verified live commit and compare it with the current Gitea branch, even when a container was updated outside ForgeFlow.
- Existing Compose project names, files, services, remote folders and DockerMan metadata are adopted from server truth instead of guessed or overwritten.
## Safe Server pull
- Server pull is now the recommended deployment route and fetches the exact requested commit from Gitea.
- Each repository receives its own repository-scoped read-only deploy key; ForgeFlow never installs the desktop Gitea token on Unraid.
- Gitea SSH host fingerprints are pinned and checked before trust is changed and before every pull.
- Fetch, archive, checksum, Compose validation, activation and rollback remain exact-commit and transactional.
- Direct copy remains available when server-side Git access is undesirable, and monitoring-only links cannot deploy accidentally.
## Git hygiene
- Git Validator now also checks `.gitattributes`, `.editorconfig`, dependency lockfiles and a Gitea Actions workflow.
- Safe repairs create reviewable files without committing or pushing them automatically.
- Existing identity, upstream, synchronization, branch-protection, documentation, secret-path and oversized-file checks remain available in one scored view.
## Interface and reliability
- The deployment workspace now emphasizes repository, container, environment and live-versus-Gitea evidence, with a focused animated project illustration and clearer server inventory.
- Large unrelated server inventories are summarized instead of producing dozens of indistinguishable cards.
- Connection validation consistently opens the same encrypted Electron profile as the installed app.
- Obsolete ForgeFlow artifacts are removed from `dist` after every successful packaged build.
No container was restarted or replaced during automatic discovery. Deployments still require a successful preflight and an explicit user action.
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# ForgeFlow 0.10.1
## Reliable certificate-free updates
- Windows installer and portable releases are supported without paid signing services.
- Packaged updates remain protected by exact Gitea release assets, PE validation and SHA-256 verification before staging and immediately before replacement.
- Old ForgeFlow versions are pruned from `dist` after each successful build.
## Deployment inventory correctness
- Repository matching is case-insensitive, so `Jens/Repo` and `jens/repo` refresh the same deployment profile.
- Running repository workloads are linked conservatively; third-party DockerMan applications remain visible as external monitoring-only workloads instead of generating hundreds of false repository problems.
- Historical and stopped duplicate definitions no longer require repetitive manual review.
- Shadowed automatic profiles are retired only after a recovery snapshot and a stable reviewed reconciliation plan.
- Live runtime, container health and commit evidence are refreshed before readiness is reported.
## Server pull verification
- Existing running repository workloads can receive repository-scoped read-only deploy keys without changing containers.
- The audit command supports compact inventory, reconciliation and access evidence for operational verification.
- Release acceptance no longer assumes an external Authenticode certificate while retaining checksum, provenance and SBOM checks.
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# ForgeFlow 0.10.10
## Complete server-pull deployment repair
- Missing repository-scoped read-only deploy keys can be provisioned and verified from Unraid against the exact Gitea branch.
- A repository deployment root can now remain above its Compose working directory without breaking workload recognition or being overwritten by inventory refresh.
- Nested Compose files are preserved as repository-relative deployment paths, including Ludarium, Launchpad and ITWorx MCP Hub layouts.
- The **Fix write access** action now receives its permission-report parser correctly instead of reporting a false write-access failure.
- Server-pull preflight proves every required deployment file at the exact Gitea commit before any container activation starts.
- Runtime secrets remain in server-side `.env` files and preserved appdata paths; no secret values are written to Git or diagnostic output.
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# ForgeFlow 0.10.11
## Resilient repository refresh and consistent server pull
- Temporary Gitea list failures now use the in-session **last-known-good** repository inventory while local and server state continue to refresh. The UI clearly reports that remote data is stale.
- A **closed output pipe** from a detached parent process is no longer treated as a fatal desktop-app exception.
- Server pull, deploy-key verification, deployment, rollback and metadata now consistently prefer the verified **linked checkout origin** over a stale URL detected earlier on the server.
- Repository-scoped **read-only deploy key** checks remain fail-closed; a changed SSH host still requires explicit trust and access reconfiguration.
- The local **browser test server** now has a dedicated port and identity endpoint, preventing another localhost application from being mistaken for ForgeFlow.
- All 42 responsive browser flows pass across dark/light, compact/wide and reduced-motion configurations.
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# ForgeFlow 0.10.12
## Faster awareness with stricter deployment truth
- Repository refreshes are **coalesced** and briefly cache Gitea inventory and workspace discovery; a manual refresh remains fully forced and file changes arriving mid-refresh receive one trailing refresh.
- Server discovery reuses its Docker and Compose evidence for existing deployment profiles instead of opening a separate SSH session for every linked workload.
- Deployment status only claims **exact Gitea commit parity** after comparing a concrete branch SHA with the live server SHA; matching repository provenance alone is no longer sufficient.
- Container discovery uses **batched Docker inspect** with a safe per-container fallback when a container disappears during the scan.
- Active Gitea and SSH deployment polling uses **bounded worker pools**, improving multi-deployment latency without flooding external services.
- A **stopped container** can no longer be marked healthy because another process answers on its previous healthcheck port.
- Large repository and server-inventory lists use offscreen rendering containment to reduce layout and paint work.
- Inventory diagnostics now include scan and state-refresh durations, and Gitea bulk verification fails fast after a confirmed connectivity outage.
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# ForgeFlow 0.10.2
## Packaged updater origin repair
- Gitea release assets that expose an internal HTTP `ROOT_URL` are safely rewritten to ForgeFlow's configured public HTTPS Gitea origin.
- Authentication remains same-origin: the Gitea token is never forwarded to an internal address, CDN or unrelated redirect target.
- Published Windows executables are still validated as PE files and against their release SHA-256 sidecars before staging.
- The live authenticated updater acceptance downloads the exact published installer and proves its byte count and SHA-256 digest.
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# ForgeFlow 0.10.3
## Responsive large workspaces
- Repository monitoring checks up to four local working trees concurrently while retaining overlap protection and per-repository pause controls.
- Global search, repository filtering and the command palette debounce full interface renders during rapid typing.
- Commit-message input updates readiness and action controls in place, preserving focus and cursor responsiveness.
- Interactive project illustrations and diff atmosphere effects perform at most one layout update per animation frame.
## Git Validator reliability
- Git Validator and every long repository tab now retain an explicit vertical scroll owner across compact, desktop and wide layouts.
- Standard, Strict and Production policies correctly treat configured warning severities as blockers; Minimal remains error-only.
- Documented suppressions no longer reduce the hygiene score or remain counted as active blockers.
- Repair requests are rescanned immediately before preview or execution, preventing stale or forged fixes.
## Verification
- Full quality gate, coverage thresholds and all responsive browser scenarios pass for this release.
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# ForgeFlow 0.10.4
## Permanent packaged updater handshake repair
- Binary and source update helpers now use a Windows PowerShell 5.1-compatible atomic status replacement with a real temporary backup path.
- A deterministic overwrite fallback preserves lifecycle reporting on filesystems that do not implement atomic replacement.
- The binary helper exposes a side-effect-free handshake-only verification mode exercised by the real Windows PowerShell executable during tests.
- existing installations with the defective helper require this one-time installer upgrade; every subsequent packaged update uses the repaired helper automatically.
- Startup failures retain request-scoped status and helper-log evidence instead of collapsing into an unexplained exit-code message.
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# ForgeFlow 0.10.5
## Consistent repository and deployment links
- Every repository workspace now shows all configured deployment environments in a compact, directly actionable strip.
- The repository deployment tab includes every detected server workload linked to that repository, including its container, Compose identity, server and runtime state.
- A workload is only labelled linked when its repository and resolved profile both exist in the current ForgeFlow configuration.
- Stale or incomplete metadata is shown as **Link unresolved** and routed through explicit reconciliation instead of being presented as a healthy deployment.
- The global deployment inventory links directly to the correct repository deployment profile.
- Responsive browser coverage now verifies valid links, unresolved links, repository navigation and scrolling across dark/light and scaled layouts.
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# ForgeFlow 0.10.6
## Permanent Windows updater launch repair
- ForgeFlow no longer launches hidden PowerShell update helpers with Node's defective Windows `detached` process mode.
- Binary and source updater processes remain hidden, are explicitly unreferenced after their verified handshake, and continue independently when ForgeFlow closes.
- A real Windows regression test now exercises the exact production Node spawn options instead of using a different process API.
- Startup is still fail-closed: ForgeFlow remains open unless the request-scoped helper status reaches `started`.
- Versions 0.10.4 and 0.10.5 need a one-time direct installation of 0.10.6 because their installed launcher cannot execute its own helper; updates after 0.10.6 use the repaired path.
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# ForgeFlow 0.10.7
## Reliable server-to-repository recognition
- Live, running workloads with one unique exact provenance or runtime-identity match are now linked automatically during normal server discovery.
- Automatic adoption creates only ForgeFlow configuration and observed state; it performs no container changes and never automatically removes stale profiles.
- Ambiguous, duplicate, external and monitoring-only workloads remain behind explicit **Review & link** confirmation.
- Every linked repository now displays an `S` deployment badge with its profile count in the repository sidebar.
- The repository release rail reports **Linked** with container and server identity even when a legacy workload has no verifiable live commit yet.
- DevRunbook-style DockerMan deployments therefore show the same linked relationship in Deployments, the repository sidebar and the repository workspace.
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# ForgeFlow 0.10.8
## Self-contained checksum verification
- Binary and source update helpers no longer depend on the optional PowerShell `Get-FileHash` cmdlet.
- Both helpers calculate checksums directly with the built-in .NET SHA-256 implementation.
- A real Windows regression test clears `PSModulePath` and verifies the downloaded binary successfully in that minimal environment.
- The helper still validates the exact published checksum before waiting for ForgeFlow to exit or changing installed files.
- This release retains the reliable non-detached launcher and server-to-repository recognition improvements from 0.10.6 and 0.10.7.
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# ForgeFlow 0.10.9
## Reliable deployment inventory and preflight
- Unraid inventory now includes containers without healthchecks. Docker's complete JSON state is parsed safely instead of using a failing Go-template lookup.
- ForgeFlow is single-instance: opening it again focuses the existing window, preventing concurrent inventory scans and configuration writes.
- Server pull verifies required Compose files or the Dockerfile at the exact Gitea commit before any deployment operation starts.
- Server-pull verification now separates deploy-ready access from optional live-SHA and runtime-health evidence. A recoverable workload is no longer shown as blocked merely because parity is not yet provable.
- Deployment cards and audit output show concrete access blockers and non-blocking warnings instead of a generic incomplete result.
- All discovery, verification and preflight checks remain non-destructive; no containers are changed during these checks.
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# ForgeFlow 0.8.9
ForgeFlow 0.8.9 introduces Git Validator, a dedicated repository assurance
workspace that checks whether practical Git and Gitea best practices are being
followed.
The validator produces a weighted score with evidence for repository identity,
upstream tracking, working-tree state, effective commit identity, safe local
synchronization defaults, default-branch and force-push protection, README and
gitignore hygiene, tracked secret-shaped filenames and oversized tracked files.
Every repair is deliberately bounded. Origin alignment and repository-local
fetch/pull/autostash safeguards can be applied as safe fixes. Creating default
branch protection or a recommended `.gitignore` requires explicit confirmation.
The generated `.gitignore` remains uncommitted for review, and secret/history
findings are never modified automatically.
The new workspace includes grouped findings, an assurance score, safe-fix
batching, audit events, interactive project illustration and responsive premium
layouts for light and dark themes.
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# ForgeFlow 0.9.0
ForgeFlow 0.9.0 changes Unraid deployments from a Git-checkout-first workflow into a server-inventory-first workflow.
## Existing installations are now visible
Server Inventory collects a safe, selected subset of Docker, Compose and DockerMan metadata for both running and stopped containers. It recognizes Compose project names, working directories, active Compose files and services, mounts, ports, runtime state, image provenance and existing DockerMan templates. Environment values and other container secrets are not collected.
Exact repository provenance may be linked automatically. Name similarity is never treated as proof: uncertain workloads remain visible as suggestions and can be linked through the new manual wizard. The saved link preserves the workload identity rather than depending on the disposable container ID.
## Push bundle is the new default
New SSH/Unraid profiles use **Push bundle**. ForgeFlow creates a tar archive from the exact local Git commit, calculates its SHA-256 digest and uploads it over the already trusted desktop-to-Unraid SSH connection. Unraid therefore does not need a Git client, Gitea host-key entry or Gitea private key for this mode.
The server verifies the checksum and archive paths, rejects symlink payloads, preserves configured runtime paths, updates only ForgeFlow-managed files and validates the merged Compose model before starting services. The active SHA and managed-file manifest are promoted atomically only after the expected services are running. Failure restoration keeps the previous deployment truth and restores overwritten files and Compose metadata.
**Server-side Git** remains available as an explicit mode. Its Gitea access check is now reported separately from desktop SSH and Docker/Compose capabilities. **Monitor only** links an existing workload without granting ForgeFlow permission to deploy it.
## Safer adoption
Adopted workloads retain their existing Compose project, Compose files and service set. ForgeFlow no longer overrides their image or container name in the metadata overlay. Existing DockerMan templates are left untouched; generated templates are managed only for explicitly generated Compose profiles. `--force-recreate` and `--remove-orphans` are opt-in rather than defaults.
A deployment lock records the live shell process, and an old lock is removed only when it is sufficiently old and its owner no longer runs. Deployment output truncation now fails explicitly instead of allowing ForgeFlow to interpret an incomplete inventory or command result.
## Release publication correction
- The standard release publisher now publishes the validated source and matching Windows binary assets as one workflow.
- Added `Publish-Missing-Binary-Release.ps1` to repair a source-only Gitea release without reinstalling ForgeFlow manually.
- Binary publication now derives the repository owner, repository name and branch from ForgeFlow settings instead of hardcoding them.
- Missing-release errors now explain that packaged installations require both Windows executables and their SHA-256 sidecars.
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# ForgeFlow 0.9.1
## Gitea binary updater repair
- Downloads the actual release attachment through `browser_download_url` instead of treating the Gitea attachment metadata response as an executable.
- Keeps the Gitea token on the configured Gitea origin and follows HTTPS object-storage redirects without leaking credentials.
- Adds regression coverage for attachment metadata lookup, direct browser download URLs and cross-origin redirect safety.
- Improves diagnostics when an older updater receives JSON attachment metadata.
Because ForgeFlow 0.8.9 and 0.9.0 contain the broken attachment endpoint, upgrading to 0.9.1 requires one manual installer run. in-app updates work normally again after 0.9.1 is installed.
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# ForgeFlow 0.9.2
## Emergency deployment and discovery repair
- Existing deployment profiles without an explicit mode migrate to **Push bundle**, never Server-side Git.
- Push bundle deploys the clean, committed local HEAD directly over SSH/SFTP and never requires a Gitea key, upstream, remote sync, or Git on Unraid.
- Desktop-to-Unraid authentication can use the server password; a failed key opens a password recovery flow instead of blocking deployment.
- Server inventory scans `docker ps -a`, complete Docker inspect data, Compose projects, and every DockerMan user template, including stopped and template-only workloads.
- Inventory connection failures are shown as failures rather than misleading zero counts.
- Existing Compose and DockerMan workloads can be linked manually without restarting or modifying them.
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# ForgeFlow 0.9.3
This release removes server-side repository authentication from every SSH/Unraid deployment path and makes server Compose files the primary discovery source.
## Direct deployment only
- Every existing SSH/Unraid deployment profile is migrated to **Direct copy**, except profiles explicitly marked **Monitor only**.
- Deployment and rollback archive the exact committed local HEAD, upload it over the already configured desktop-to-Unraid connection and run Docker Compose on Unraid.
- Preflight contains no Unraid-to-repository access probe, no remote `git ls-remote`, no repository-key validation and no Git requirement on Unraid.
- Password authentication for the desktop-to-Unraid connection remains supported and is independent of repository access.
## Compose-file inventory and automatic linking
- Server Inventory scans Compose YAML files such as `compose.yml`, `compose.yaml`, `docker-compose.yml`, `docker-compose.yaml`, overrides and stack YAML files below the configured appdata roots.
- YAML discovery still runs when Docker inspection fails or Docker is unavailable, so a container-query problem no longer produces a false empty inventory.
- ForgeFlow reads the Compose project name, file set, service names and image names from the server.
- A unique high-confidence repository match based on both Compose folder and project identity is linked automatically.
- Remaining strong matches use a one-click link action with server folder, Compose project, Compose files, services, container identity and preservation paths already filled in.
- Runtime containers, stopped containers and DockerMan templates are merged with the YAML definition when available. `/mnt/user/appdata`, `/mnt/cache/appdata` and disk-backed appdata paths are treated as the same logical deployment location.
## Reliability
- The inventory shell script is safe under `set -euo pipefail`; Docker or Compose command failures are captured as warnings instead of aborting the scan.
- Large runtime, cache, log and database folders are pruned while searching for Compose files.
- A failed inventory operation remains visible as an error and is never presented as zero workloads.
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# ForgeFlow 0.9.4
ForgeFlow now treats the real Compose files discovered on Unraid as the only activation source for adopted workloads. A generated labels fragment is no longer merged into an imported project, so stale service hints such as `geointel` cannot create a phantom service without an image or build context.
Direct copy redeployments always use `--force-recreate`. The runtime service list comes from `docker compose config --services`, not from manually stored service names. Before activation ForgeFlow records the existing container ID for every service; after activation it verifies that each service is running, not unhealthy, and uses a different container ID.
ForgeFlow also rejects the deployment when Compose starts a duplicate workload while leaving the previous container running. The new SHA is written only after these checks pass. Existing DockerMan templates and the real Compose files remain untouched.
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# ForgeFlow 0.9.5
ForgeFlow 0.9.5 makes Direct copy deployments fail closed and adds an in-app repair for Unraid write permissions.
Before a bundle is created or uploaded, ForgeFlow probes the linked project folder, `.forgeflow` upload/state folders and every active Compose file using the configured SSH identity. A failed check names the exact path, user, owner, group and mode. Deployment stops before file transfer and before any Docker or Compose command changes the runtime. The same write-access check runs again immediately before upload to prevent a stale preflight result.
Every SSH / Unraid deployment card now includes **Check / fix write access**. The same action appears beside a blocking preflight result. It normalizes the linked source tree and ForgeFlow state folders to safe shared access, uses the Unraid `users` group where available and preserves existing executable bits. Configured runtime locations such as `.env`, `appdata`, `data`, `config`, `logs`, mounted data paths and common generated dependency folders are excluded. It never runs Docker, stops a container, removes a container or uses `chmod 777`. The action also runs when the SSH account is root so manual SMB/file-copy access can be repaired, not only ForgeFlow's own write access.
Direct copy now validates candidate Compose configuration and builds candidate images before replacing live source files. It never implicitly executes `docker compose down`, `--remove-orphans` or `--force-recreate`. Existing container IDs, image IDs and source files are captured first. When activation fails, ForgeFlow restores the prior source, retags the previous images, attempts to restore the previous runtime and retains the backup evidence. A release is only promoted after the exact linked Compose services are running and verified.
This release does not claim live validation against a specific private Unraid server. The automated suite validates generated Bash syntax, permission-report parsing, scoped repair commands, no server-to-Gitea authentication, no destructive Compose flags and transactional deployment ordering.
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# Releasing ForgeFlow
ForgeFlow releases are built only from a clean, reviewed commit on Node 22 LTS.
## Quality gate
```powershell
npm ci
npm run quality
npm audit --omit=dev --audit-level=high
```
## Windows build — no paid services required
ForgeFlow is a personal/internal tool. The supported release path therefore has
no certificate, Azure or other paid-service dependency:
```powershell
npm run dist:win
```
This produces the installer and portable executable, SHA-256 sidecars, a
CycloneDX SBOM and provenance evidence. The in-app updater downloads only the
matching Gitea release asset, checks its Windows executable format and verifies
the published SHA-256 digest before staging it. The update helper verifies the
digest again immediately before replacing the installed executable.
Windows can display an `Unknown publisher` warning for an unsigned installer.
That warning concerns public publisher reputation; it does not prevent ForgeFlow
from installing or using its checksum-verified in-app updates. Authenticode can
be added later as an optional distribution convenience, but is not required for
correct operation.
## Atomic publication
`npm run release:binary` keeps the Gitea release in draft state while uploading
the installer, portable executable, two checksums, provenance and SBOM. It only
publishes after all six assets are present. A failed upload leaves a draft rather
than exposing an incomplete updater target.
The optional signing acceptance fixture can still validate the complete local
Authenticode chain without purchasing or retaining a certificate:
```powershell
npm run test:signing
```
This disposable fixture signs installer, portable, update-helper and uninstaller
stand-ins, requires an RFC 3161 timestamp, and proves rejection of a missing
timestamp, wrong publisher and a modified binary. Its certificate is removed
from the current-user certificate store after the test.
The disposable test certificate is removed from the current-user certificate
store after the test and is never used for a published build.
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- Windows installer/portable acceptance;
- macOS/Linux package validation;
- code signing, notarization and signed updates;
- optional code signing/notarization for future public distribution;
- dependency/secret/package scans;
- accessibility review;
- hundreds-of-repositories performance tests;
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- atomic non-secret status JSON;
- previous-SHA recording and non-zero failure exits.
## Remaining release hardening
## Optional and future release hardening
- code-sign packages and signed updates;
- optional code signing if ForgeFlow is ever distributed publicly;
- validate private CA/TLS behavior in the target network;
- dependency, secret and binary scans in CI;
- package-level IPC/navigation regression tests;
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# SSH / Unraid deployment
ForgeFlow deploys an exact Gitea commit directly to an Unraid server over pinned SSH.
ForgeFlow uses one deployment flow for Unraid: it copies the exact committed local project from the desktop to the server and activates the Compose definition found for that deployment.
## Security model
## Deployment modes
- Credentials are entered only in the local ForgeFlow desktop application.
- Ed25519 private keys are preferred.
- Passwords and key passphrases use Electron safe storage.
### Direct copy — default
ForgeFlow creates an archive from the exact local commit and uploads it through the configured desktop-to-Unraid connection. Unraid needs Docker, Docker Compose, `tar` and a SHA-256 checksum tool. Unraid does not clone, fetch or authenticate to a repository.
### Monitor only
ForgeFlow inventories and tracks the workload but refuses deploy and rollback operations until **Direct copy** is selected.
All older SSH/Unraid profiles are migrated to Direct copy unless they were explicitly Monitor only.
## Server Inventory and automatic linking
Server Inventory reads the server itself instead of relying on ForgeFlow history. The default scan root is `/mnt/user/appdata`, together with the configured server base path and the cache-backed appdata path when present. It combines:
- running and stopped containers from `docker ps -a` and Docker Inspect;
- active and stopped Compose projects;
- DockerMan templates;
- Compose YAML files below the configured appdata roots, including standard override files.
YAML discovery continues even when Docker inspection fails. For each Compose definition ForgeFlow reads the working directory, project name, file set, services and images. It then compares those values with the linked local repositories.
A unique high-confidence match based on both the Compose folder and project identity is linked automatically. Other strong matches show a one-click **Link to repository** action. The server folder, Compose project, Compose files, service list, visible container identity, ports and preservation paths are already filled in; linking does not recreate the container.
## Compose identity
An adopted installation retains the identity detected on the server:
```text
Visible container: geointel
Server folder: GeoIntel
Compose project: geointel
Compose files: compose.yml, compose.override.yml
Compose services: web, worker
```
ForgeFlow adds `.forgeflow/compose.metadata.yml` as the final Compose overlay. For adopted workloads this overlay adds safe labels only; it does not replace the existing image, volumes, ports, networks or `container_name`.
`--force-recreate` and `--remove-orphans` remain disabled by default. Existing DockerMan templates are not rewritten.
## Direct-copy sequence
1. Verify the selected local branch, clean working tree and exact committed HEAD.
2. Test the desktop-to-Unraid connection, Docker, Compose, `tar`, checksum tooling and deployment storage.
3. Create the release locally with `git archive`.
4. Upload a temporary `.part` file through SFTP.
5. Verify SHA-256 and reject unsafe archive paths or symbolic links.
6. Preserve `.forgeflow`, `.git` and configured runtime paths such as `.env`, `data`, `config`, `logs` and application-specific folders.
7. Update only files covered by the managed release manifests; unrelated server files remain untouched.
8. Validate the detected merged Compose configuration.
9. Activate the retained Compose project and verify every selected service is running and not unhealthy.
10. Promote the active SHA and manifests only after activation succeeds.
11. Run the optional desktop health check and persist runtime state.
If activation fails, ForgeFlow restores the previous managed files and Compose metadata and leaves the previous active SHA authoritative.
## Authentication model
- The only remote authentication used for Direct copy is the configured desktop-to-Unraid connection.
- That connection may use an Unraid password or a private key.
- Passwords and private-key passphrases use Electron safe storage.
- The first trusted connection records the SSH host-key fingerprint; later changes fail closed.
- Unraid-to-Gitea repository access is tested during every deployment preflight.
- The renderer cannot submit arbitrary shell commands. Remote scripts are assembled from validated profile fields and transported as base64-encoded Bash input.
- Tracked server-side modifications block deployment and rollback.
## Profile identity
ForgeFlow separates names that users see from names Docker requires:
```text
Visible project/container: Portfolio
Server folder: Portfolio
Internal Compose project: portfolio
Internal Compose service: portfolio
Internal image: forgeflow/portfolio:production
```
The internal Compose service must match the repository's service key and remain lowercase. The visible container can preserve branding and casing.
## DockerMan WebUI, icon and shell
ForgeFlow writes `.forgeflow/compose.metadata.yml` and combines it with the repository or generated Compose file. The override supplies:
```text
net.unraid.docker.managed=dockerman
net.unraid.docker.webui=http://[IP]:[PORT:<host-port>]/
net.unraid.docker.icon=<PNG URL or persistent Unraid path>
net.unraid.docker.shell=sh
```
Icon modes:
- **Built-in high-contrast ITWorx mark** — default;
- **Upload local PNG** — copied to `/boot/config/plugins/dockerMan/images/<container>-icon.png`;
- **Use icon URL** — HTTP(S) PNG;
- **No custom icon**.
After metadata changes ForgeFlow recreates the container, writes `/boot/config/plugins/dockerMan/templates-user/my-<container>.xml`, removes known icon caches and invalidates DockerMan's volatile `docker.json` metadata cache. The Unraid Docker page may still need one browser refresh.
The deployment card reports whether WebUI and icon labels were confirmed through `docker inspect`. **Repair DockerMan integration** recreates an existing healthy container with labels, a persistent DockerMan template, icon cache refresh and WebUI metadata without creating a Git commit. **Open Web UI** uses the profile URL directly from the desktop.
## Existing application folder
For an existing folder:
```text
Server folder: Portfolio
Remote path: /mnt/user/appdata/Portfolio
Compose file: docker-compose.yml
```
The project root must be a Git working tree. Untracked runtime paths such as `.env`, `appdata`, `data`, `logs`, `config` and `compose.override.yml` remain untouched by `git reset --hard`. Nested Git repositories are warnings and never deleted automatically.
Preflight inspects `.dockerignore` when a Dockerfile exists. It warns when `.git`, preserved runtime data or nested repositories would be sent into the build context.
## New application folder
The server clones the configured URL on the selected branch. The Unraid host therefore needs a non-interactive Gitea SSH identity. Preflight runs `git ls-remote --exit-code` from Unraid before deployment.
Use repository Compose for real applications. Generated Compose is intended only for a simple single-service Dockerfile application with basic port mapping.
## Deployment sequence
1. Verify clean local tree, allowed branch, upstream and ahead/behind state.
2. Verify the exact SHA exists on the allowed remote branch.
3. Verify Unraid can read the Gitea repository.
4. Inspect the server folder and refuse tracked server changes.
5. Clone when the folder is absent.
6. Fetch the branch and verify the exact SHA is an ancestor of `origin/<branch>`.
7. Save the previous SHA and reset to the requested SHA.
8. Write generated Compose when selected.
9. Write the DockerMan metadata override and persistent template fallback.
10. Validate the merged Compose model.
11. Run `docker compose up -d --build --remove-orphans --force-recreate`.
12. Clear relevant icon caches.
13. Inspect the visible container and write `.forgeflow/status.json`.
14. Run the configured desktop healthcheck.
15. Persist the live SHA, previous SHA, health, container and DockerMan state.
## Interrupted operation recovery
At startup and through **Reconcile**, ForgeFlow reads the live SHA, container running state, Docker health, labels and persistent template state. When a previously running operation already reached its exact requested SHA and the container is healthy, the operation becomes `success`. Operations that remain unresolved for more than 45 minutes become `failed` rather than staying indefinitely in deployment mode.
- Remote inventory collects selected labels, mounts, ports and runtime state; it does not collect container environment values.
- The renderer cannot submit arbitrary shell commands; remote scripts are assembled from validated profile fields.
## Rollback
Rollback is accepted only for the exact SHA currently recorded as `previousSha`. ForgeFlow re-verifies that commit against Gitea, refuses tracked server changes, resets the same working tree, reapplies Compose and DockerMan metadata, reruns health checks and rotates the former live SHA into the new rollback target.
Rollback is allowed only to the exact `previousSha` recorded for the profile. ForgeFlow recreates that commit archive locally and uses the same upload, checksum, backup, Compose validation and atomic promotion flow.
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# Test matrix
## Automated in v0.4.0
## Automated baseline (0.10.x)
The suite contains 59 passing tests.
The quality chain contains more than 230 Node and browser acceptance cases. The
latest Windows source run completed without failures and retains one explicitly
Bash-dependent skip. `npm run coverage` enforces 75% lines/statements/functions
and 65% branches; the measured hardening baseline is 81.48% statements/lines,
82.07% functions and 65.59% branches. See `COVERAGE_POLICY.md` for the
non-gamed branch policy.
`npm run quality` is the local equivalent of `.gitea/workflows/quality.yml` and
runs source verification, ESLint, the complete suite and coverage on Node 22 LTS.
Production dependencies are separately checked with `npm audit --omit=dev
--audit-level=high`.
### Server safety and reconciliation
- inventory discovery is read-only and byte-stable for configuration;
- reconciliation requires a content-addressed preview plan and recovery snapshot;
- automatic linking requires unique exact provenance/runtime identity;
- server-pull verification checks Gitea branch, read-only deploy-key ID, pinned
host/key fingerprints, remote/live SHA, Compose evidence, runtime and health;
- a fresh access verification is mandatory immediately before server-pull deploy;
- writable or missing deploy keys fail closed.
### Renderer regression matrix
Playwright runs 36 cases across 1120×720, 1440×900 and 1920×1080, dark and
light themes, reduced motion, and simulated 100%, 125% and 150% Windows scaling.
It checks console/page errors, accessible names, labels, heading structure,
horizontal overflow, viewport containment, dialogs, keyboard focus, updater and
deployment failure evidence. CI retains screenshots, video, trace, console JSON,
DOM HTML and fixture context on failure.
### Git and repository behavior
@@ -76,7 +105,8 @@ The suite contains 59 passing tests.
- status endpoint through the real reverse proxy;
- deployment lock, failed healthcheck and rollback;
- diagnostic ZIP inspection after a deliberately failed deployment;
- unsigned installer and portable build on Windows;
- locally test-signed installer, portable, helper and uninstaller fixtures with
RFC 3161 timestamp plus wrong-publisher, missing-timestamp and tamper rejection;
- keyboard-only and screen-reader smoke test.
## Renderer smoke target
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## Packaged Windows updates
ForgeFlow 0.8.2 and newer use authenticated Gitea release assets when running from the installer or portable executable. The updater selects the installer or portable artifact that matches the current installation mode, requires its `.sha256` sidecar, validates the Windows executable header and SHA-256 digest, then verifies the digest again immediately before applying it. An external PowerShell helper waits for ForgeFlow to exit, installs or replaces the executable and restarts it.
ForgeFlow 0.9.1 and newer use authenticated Gitea release assets when running from the installer or portable executable. The updater selects the installer or portable artifact that matches the current installation mode, requires its `.sha256` sidecar, validates the Windows executable header and SHA-256 digest, then verifies the digest again immediately before applying it. An external PowerShell helper waits for ForgeFlow to exit, installs or replaces the executable and restarts it.
Publish a verified binary release after pushing its source commit:
`Publish-ForgeFlow-Release.ps1` now treats source and binaries as one release transaction. By default it pushes the validated source, builds the exact published commit and uploads all four required assets:
- `ForgeFlow-Setup-<version>-win-x64.exe`
- `ForgeFlow-Setup-<version>-win-x64.exe.sha256`
- `ForgeFlow-Portable-<version>-win-x64.exe`
- `ForgeFlow-Portable-<version>-win-x64.exe.sha256`
Use `-SkipBinaryRelease` only when intentionally publishing source without enabling packaged auto-update.
When the source was already pushed without a binary release, run the recovery publisher from Windows:
```powershell
npm run dist:win
$env:FORGEFLOW_USER_DATA = "$env:APPDATA\forgeflow"
npm run release:binary
Set-ExecutionPolicy -Scope Process Bypass
.\Publish-Missing-Binary-Release.ps1 -ExpectedVersion 0.9.1
```
The recovery script clones the current Gitea branch into a temporary directory, verifies the exact branch commit, runs the complete quality gate, builds both Windows artifacts and creates or repairs the matching Gitea release. It uses the encrypted Gitea token already stored by ForgeFlow.
Every platform build finishes by removing ForgeFlow artifacts for older versions from `dist`. The unpacked application directory and builder diagnostics are kept.
The publisher refuses to upload when local `HEAD` differs from `origin/main`. Users on 0.8.1 or older need one manual 0.8.2 installation because those versions deliberately disabled packaged updates.
The binary publisher refuses to upload when local `HEAD` differs from the configured Gitea branch. ForgeFlow 0.8.9 and 0.9.0 queried Gitea attachment metadata as though it were the executable. Those versions require one manual 0.9.1 installer run. From 0.9.1 onward, the updater follows the release asset browser download URL and in-app updates work normally.
## Publishing a release from Downloads
@@ -60,6 +70,6 @@ Set-ExecutionPolicy -Scope Process Bypass
.\Publish-ForgeFlow-Release.ps1
```
The script installs dependencies, runs the complete quality gate, clones `git@gitea.itworx.tech:Jens/ForgeFlow.git` into a temporary folder, mirrors the validated source without `.git`, `node_modules`, `dist` or release archives, commits it and pushes `main`. It then compares local `HEAD` with `git ls-remote` and fails if Gitea does not report the exact release commit.
The script installs dependencies, runs the complete quality gate, clones `git@gitea.itworx.tech:Jens/ForgeFlow.git` into a temporary folder, mirrors the validated source without `.git`, `node_modules`, `dist` or release archives, commits it and pushes `main`. It then compares local `HEAD` with `git ls-remote`, builds the exact published checkout and uploads the installer, portable executable and both checksums to the matching Gitea release. Publication fails when either the source commit or any required binary asset cannot be verified.
Keep the currently installed older ForgeFlow source folder untouched until the built-in updater test is complete.
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+39
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@@ -0,0 +1,39 @@
import js from "@eslint/js";
export default [
{
ignores: ["build/**", "dist/**", "node_modules/**", ".playwright-mcp/**", "SOURCE_MANIFEST.txt"],
},
{
files: ["**/*.{js,cjs,mjs}"],
languageOptions: {
ecmaVersion: "latest",
sourceType: "module",
globals: {
Buffer: "readonly", clearInterval: "readonly", clearTimeout: "readonly", console: "readonly",
document: "readonly", fetch: "readonly", FormData: "readonly", globalThis: "readonly",
process: "readonly", queueMicrotask: "readonly", requestAnimationFrame: "readonly",
setInterval: "readonly", setTimeout: "readonly", URL: "readonly", URLSearchParams: "readonly",
window: "readonly", confirm: "readonly", localStorage: "readonly", structuredClone: "readonly",
},
},
rules: {
...js.configs.recommended.rules,
"no-control-regex": "off",
"no-empty": ["error", { allowEmptyCatch: true }],
"no-undef": "off",
"no-unused-vars": "off",
"no-useless-escape": "off",
"no-eval": "error",
"no-implied-eval": "error",
eqeqeq: ["error", "always", { null: "ignore" }],
},
},
{
files: ["tests/**/*.mjs"],
rules: {
"no-regex-spaces": "off",
"no-unsafe-finally": "off",
},
},
];
+1 -1
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@@ -126,7 +126,7 @@ git -C "$APP_DIR" merge-base --is-ancestor "$SHA" "origin/$BRANCH" || {
write_status "deploying" "$current_sha" "$previous_sha" 0
git -C "$APP_DIR" reset --hard "$SHA"
docker compose -f "$COMPOSE_FILE" up -d --build --remove-orphans
docker compose -f "$COMPOSE_FILE" up -d --build
for attempt in $(seq 1 30); do
if curl --fail --silent --show-error --max-time 5 "$HEALTHCHECK_URL" >/dev/null; then
+41 -1
View File
@@ -25,10 +25,18 @@ const {
UnraidDeploymentService,
} = require("./src/main/unraid-deployment-service.cjs");
const { AuditService } = require("./src/main/audit-service.cjs");
const { DeployKeyLifecycleService } = require("./src/main/deploy-key-lifecycle-service.cjs");
const { UnraidDeployKeyHost } = require("./src/main/unraid-deploy-key-host.cjs");
const { InventoryReviewService } = require("./src/main/inventory-review-service.cjs");
const { GitValidatorService } = require("./src/main/git-validator-service.cjs");
const {
ExternalToolsService,
} = require("./src/main/external-tools-service.cjs");
const { registerIpc } = require("./src/main/ipc.cjs");
const {
installOutputPipeGuards,
isBrokenPipeError,
} = require("./src/main/process-error-policy.cjs");
let mainWindow;
let repositoryMonitor;
@@ -37,6 +45,18 @@ let diagnostics;
let configStore;
let tray;
let quitCleanupStarted = false;
const reportBrokenOutputPipe = (error) => {
const report = diagnostics?.warning("process.output-pipe.closed", {
code: error?.code || null,
message: error?.message || "The parent output pipe was closed.",
});
report?.catch(() => {});
};
installOutputPipeGuards({ onBrokenPipe: reportBrokenOutputPipe });
const ownsSingleInstanceLock = app.requestSingleInstanceLock();
if (!ownsSingleInstanceLock) app.quit();
else app.on("second-instance", () => showMainWindow());
function broadcast(channel, payload) {
for (const window of BrowserWindow.getAllWindows()) {
@@ -167,6 +187,7 @@ function createWindow() {
app
.whenReady()
.then(async () => {
if (!ownsSingleInstanceLock) return;
session.defaultSession.webRequest.onHeadersReceived((details, callback) => {
callback({
responseHeaders: {
@@ -210,6 +231,10 @@ app
await audit.initialize();
process.on("uncaughtException", (error) => {
if (isBrokenPipeError(error)) {
reportBrokenOutputPipe(error);
return;
}
diagnostics
?.error("process.uncaught-exception", error)
.finally(() => app.exit(1));
@@ -263,6 +288,13 @@ app
sourcePath: app.getAppPath(),
onOperationChange: reportOperationChange,
});
const deployKeys = new DeployKeyLifecycleService({
store,
gitea,
keyHost: new UnraidDeployKeyHost({ ssh }),
audit,
});
const inventoryReviews = new InventoryReviewService({ store, audit });
const updates = new UpdateService({
store,
gitea,
@@ -285,6 +317,12 @@ app
userDataPath,
secureStorageAvailable: () => safeStorage.isEncryptionAvailable(),
});
const gitValidator = new GitValidatorService({
git,
gitea,
diagnostics,
store,
});
repositoryMonitor = new RepositoryMonitor({
store,
git,
@@ -299,9 +337,12 @@ app
repositories,
deployments,
unraid,
deployKeys,
inventoryReviews,
ssh,
updates,
preflight,
gitValidator,
diagnostics,
audit,
externalTools,
@@ -399,7 +440,6 @@ app
});
})
.catch(async (error) => {
console.error("[startup]", error);
await diagnostics?.error("app.startup.failed", error);
await diagnostics?.flush();
app.exit(1);
+1438 -63
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+47 -5
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@@ -1,6 +1,6 @@
{
"name": "forgeflow",
"version": "0.8.8",
"version": "0.10.12",
"private": true,
"description": "Desktop release cockpit for local Git, Gitea Actions and controlled exact-commit deployments.",
"main": "main.cjs",
@@ -10,20 +10,33 @@
"dev": "electron . --dev",
"demo": "node scripts/serve-demo.mjs",
"test": "node --test tests/*.test.mjs",
"lint": "eslint .",
"coverage": "c8 --check-coverage --lines 75 --functions 75 --branches 65 --statements 75 node --test tests/*.test.mjs",
"verify": "node scripts/verify.mjs",
"dist:win": "electron-builder --win nsis portable && node scripts/write-release-checksums.mjs && node scripts/prune-dist.mjs",
"dist:win": "electron-builder --win nsis portable && node scripts/write-release-checksums.mjs && node scripts/verify-release-signatures.mjs && node scripts/prune-dist.mjs",
"dist:linux": "electron-builder --linux AppImage && node scripts/prune-dist.mjs",
"dist:mac": "electron-builder --mac dmg && node scripts/prune-dist.mjs",
"doctor": "node scripts/doctor.mjs",
"acceptance": "node scripts/acceptance.mjs",
"acceptance:isolated": "node --test tests/production-acceptance.test.mjs",
"architecture:audit": "node scripts/architecture-audit.mjs",
"test:browser": "playwright test",
"test:browser:ci": "playwright test --reporter=line,html",
"test:signing": "powershell.exe -NoProfile -ExecutionPolicy Bypass -File scripts/test-authenticode-chain.ps1",
"connections:check": "electron scripts/validate-installed-connections.cjs",
"deployments:audit": "electron scripts/audit-installed-deployments.cjs",
"release:binary": "electron scripts/publish-binary-release.cjs",
"manifest": "node scripts/generate-source-manifest.mjs",
"check": "npm run verify && npm test"
"check": "npm run verify && npm run lint && npm test",
"quality": "npm run check && npm run coverage"
},
"devDependencies": {
"@eslint/js": "9.39.5",
"@playwright/test": "1.62.0",
"c8": "12.0.0",
"electron": "43.2.0",
"electron-builder": "26.15.3"
"electron-builder": "26.15.3",
"eslint": "9.39.5"
},
"build": {
"appId": "be.jenscaers.forgeflow",
@@ -63,7 +76,9 @@
"docs/RELEASE_NOTES_0.4.5.md",
"docs/RELEASE_NOTES_0.5.0.md",
"docs/RELEASE_NOTES_0.5.1.md",
"PUBLISH-AND-ENABLE-UPDATE.cmd",
"Publish-ForgeFlow-Release.ps1",
"Publish-Missing-Binary-Release.ps1",
"docs/RELEASE_NOTES_0.5.2.md",
"docs/RELEASE_NOTES_0.5.3.md",
"docs/RELEASE_NOTES_0.5.4.md",
@@ -81,7 +96,34 @@
"docs/RELEASE_NOTES_0.8.6.md",
"docs/RELEASE_NOTES_0.8.7.md",
"docs/RELEASE_NOTES_0.8.8.md",
"docs/ACCEPTANCE.md"
"docs/RELEASE_NOTES_0.8.9.md",
"docs/RELEASE_NOTES_0.9.0.md",
"docs/RELEASE_NOTES_0.9.1.md",
"docs/ACCEPTANCE.md",
"docs/RELEASE_NOTES_0.9.2.md",
"docs/RELEASE_NOTES_0.9.3.md",
"docs/RELEASE_NOTES_0.9.4.md",
"docs/RELEASE_NOTES_0.9.5.md",
"docs/RELEASE_NOTES_0.10.0.md",
"docs/RELEASE_NOTES_0.10.1.md",
"docs/RELEASE_NOTES_0.10.2.md",
"docs/RELEASE_NOTES_0.10.3.md",
"docs/RELEASE_NOTES_0.10.4.md",
"docs/RELEASE_NOTES_0.10.5.md",
"docs/RELEASE_NOTES_0.10.6.md",
"docs/RELEASE_NOTES_0.10.7.md",
"docs/RELEASE_NOTES_0.10.8.md",
"docs/RELEASE_NOTES_0.10.9.md",
"docs/RELEASE_NOTES_0.10.10.md",
"docs/RELEASE_NOTES_0.10.11.md",
"docs/RELEASE_NOTES_0.10.12.md",
"docs/CURRENT_STATE.md",
"docs/MUTATION_MODEL.md",
"docs/RELEASING.md",
"docs/COVERAGE_POLICY.md",
"docs/DEPENDENCY_AUDIT.md",
"docs/PRODUCTION_READINESS_1.0.md",
"docs/ERROR_CODES.md"
],
"asarUnpack": [
"scripts/apply-binary-update.ps1"
+42
View File
@@ -0,0 +1,42 @@
import { defineConfig } from "@playwright/test";
const matrices = [
["compact-dark-100", 1120, 720, "dark", 1, false],
["desktop-light-125", 1440, 900, "light", 1.25, false],
["wide-dark-150", 1920, 1080, "dark", 1.5, false],
["compact-light-reduced", 1120, 720, "light", 1, true],
["desktop-dark-reduced", 1440, 900, "dark", 1.25, true],
["wide-light-100", 1920, 1080, "light", 1, false],
];
export default defineConfig({
testDir: "./tests/browser",
outputDir: "artifacts/browser",
timeout: 45_000,
expect: { timeout: 7_000 },
fullyParallel: false,
workers: process.env.CI ? 2 : 3,
reporter: [["line"], ["html", { outputFolder: "artifacts/browser-report", open: "never" }]],
use: {
baseURL: "http://127.0.0.1:41737",
screenshot: "only-on-failure",
trace: "retain-on-failure",
video: "retain-on-failure",
},
webServer: {
command: "node scripts/serve-demo.mjs",
url: "http://127.0.0.1:41737/__forgeflow_test_ready__",
reuseExistingServer: !process.env.CI,
timeout: 30_000,
},
projects: matrices.map(([name, width, height, theme, scale, reduced]) => ({
name,
metadata: { theme, scale, reduced },
use: {
viewport: { width, height },
deviceScaleFactor: scale,
colorScheme: theme,
reducedMotion: reduced ? "reduce" : "no-preference",
},
})),
});
+21 -1
View File
@@ -54,7 +54,7 @@ contextBridge.exposeInMainWorld(
serverId,
remoteFolder,
}),
refreshRepositories: () => invoke('repositories:refresh'),
refreshRepositories: (options = {}) => invoke('repositories:refresh', options),
discoverRepositories: (roots) => invoke('repositories:discover', { roots }),
favoriteRepository: (fullName, favorite) => invoke('repository:favorite', { fullName, favorite }),
linkRepository: (fullName, localPath) => invoke('repository:link', { fullName, localPath }),
@@ -106,6 +106,7 @@ contextBridge.exposeInMainWorld(
openExternal: (url) => invoke('external:open', { url }),
saveDeploymentProfile: (fullName, profile) => invoke('deployment:save-profile', { fullName, profile }),
deploymentPreflight: (repository, profileId) => invoke('deployment:preflight', { repository, profileId }),
repairDeploymentWriteAccess: (repository, profileId) => invoke('deployment:repair-write-access', { repository, profileId }),
deleteDeploymentProfile: (fullName, profileId) => invoke('deployment:delete-profile', { fullName, profileId }),
deploy: (repository, profileId, sha, options = {}) =>
invoke('deployment:dispatch', {
@@ -120,6 +121,19 @@ contextBridge.exposeInMainWorld(
healthcheck: (url) => invoke('deployment:health', { url }),
refreshProfileState: (fullName, profileId) => invoke('deployment:profile-state', { fullName, profileId }),
discoverServerDeployments: () => invoke('deployment:discover-server-workloads'),
planServerReconciliation: (serverId) => invoke('deployment:plan-server-reconciliation', { serverId }),
applyServerReconciliation: (serverId, planId) => invoke('deployment:apply-server-reconciliation', { serverId, planId }),
planInventoryReview: (serverId, workloadId, action, reason = '', repositoryFullName = null) => invoke('deployment:plan-inventory-review', { serverId, workloadId, action, reason, repositoryFullName }),
applyInventoryReview: (serverId, workloadId, action, reason, repositoryFullName, planId) => invoke('deployment:apply-inventory-review', { serverId, workloadId, action, reason, repositoryFullName, planId }),
linkServerWorkload: (repository, serverId, workloadId, deploymentMode = 'server-git', remoteFolder = '') => invoke('deployment:link-server-workload', { repository, serverId, workloadId, deploymentMode, remoteFolder }),
configureServerGitAccess: (repository, profileId) => invoke('deployment:configure-server-git-access', { repository, profileId }),
verifyServerGitProfile: (repository, profileId) => invoke('deployment:verify-server-git-profile', { repository, profileId }),
deployKeyInventory: (repository, profileId) => invoke('deployment:deploy-key-inventory', { repository, profileId }),
planDeployKeyRotation: (repository, profileId) => invoke('deployment:plan-deploy-key-rotation', { repository, profileId }),
applyDeployKeyRotation: (repository, profileId, planId) => invoke('deployment:apply-deploy-key-rotation', { repository, profileId, planId }),
planDeployKeyRevocation: (repository, profileId) => invoke('deployment:plan-deploy-key-revocation', { repository, profileId }),
applyDeployKeyRevocation: (repository, profileId, planId) => invoke('deployment:apply-deploy-key-revocation', { repository, profileId, planId }),
restoreDeployKey: (repository, profileId) => invoke('deployment:restore-deploy-key', { repository, profileId }),
applyDockerManMetadata: (repository, profileId) => invoke('deployment:apply-dockerman-metadata', { repository, profileId }),
reconcileDeployment: (fullName, profileId) => invoke('deployment:reconcile', { fullName, profileId }),
refreshOperations: (operationId = null) => invoke('operations:refresh', { operationId }),
@@ -127,6 +141,12 @@ contextBridge.exposeInMainWorld(
troubleshooterScan: (fullName = null) => invoke('troubleshooter:scan', { fullName }),
troubleshooterRepair: (issue) => invoke('troubleshooter:repair', { issue }),
troubleshooterAutoRepair: (issues) => invoke('troubleshooter:auto-repair', { issues }),
gitValidatorScan: (fullName) => invoke('git-validator:scan', { fullName }),
gitValidatorSetPolicy: (fullName, policy) => invoke('git-validator:set-policy', { fullName, policy }),
gitValidatorSuppress: (fullName, suppression) => invoke('git-validator:suppress', { fullName, suppression }),
gitValidatorPreviewRepair: (fullName, check) => invoke('git-validator:preview-repair', { fullName, check }),
gitValidatorExport: (fullName, format = 'json') => invoke('git-validator:export', { fullName, format }),
gitValidatorRepair: (fullName, check) => invoke('git-validator:repair', { fullName, check }),
diagnosticsStatus: () => invoke('diagnostics:status'),
clearDiagnostics: () => invoke('diagnostics:clear'),
openDiagnosticsFolder: () => invoke('diagnostics:open-folder'),
+716
View File
@@ -0,0 +1,716 @@
{
"generatedAt": "2026-08-01T15:23:33.157Z",
"thresholds": {
"preferredMaximumLines": 750,
"justificationRequiredLines": 1000
},
"over750": [],
"over1000": [],
"cyclomaticHotspots": [
{
"file": "src/renderer/actions/shell.js",
"lines": 518,
"branches": 101,
"functions": 86,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"updates"
],
"hotspotScore": 131
},
{
"file": "src/main/server-inventory.cjs",
"lines": 578,
"branches": 89,
"functions": 104,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 119
},
{
"file": "src/renderer/app.js",
"lines": 676,
"branches": 75,
"functions": 113,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 115
},
{
"file": "src/main/git-service.cjs",
"lines": 632,
"branches": 98,
"functions": 109,
"ipcHandlers": 0,
"responsibilities": [
"git"
],
"hotspotScore": 98
}
],
"mixedResponsibilityModules": [
{
"file": "src/renderer/actions/shell.js",
"lines": 518,
"branches": 101,
"functions": 86,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"updates"
],
"hotspotScore": 131
},
{
"file": "src/main/server-inventory.cjs",
"lines": 578,
"branches": 89,
"functions": 104,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 119
},
{
"file": "src/renderer/app.js",
"lines": 676,
"branches": 75,
"functions": 113,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 115
},
{
"file": "src/main/ipc.cjs",
"lines": 749,
"branches": 55,
"functions": 79,
"ipcHandlers": 27,
"responsibilities": [
"inventory",
"deployment",
"git",
"ipc",
"renderer",
"security",
"updates"
],
"hotspotScore": 105
},
{
"file": "src/main/unraid-deployment-methods.cjs",
"lines": 577,
"branches": 69,
"functions": 31,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 99
},
{
"file": "src/renderer/views.js",
"lines": 737,
"branches": 55,
"functions": 156,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 95
},
{
"file": "src/main/unraid-inventory-methods.cjs",
"lines": 591,
"branches": 61,
"functions": 76,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 91
},
{
"file": "src/renderer/actions/setup-and-settings.js",
"lines": 427,
"branches": 58,
"functions": 58,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 88
},
{
"file": "src/main/gitea-service.cjs",
"lines": 624,
"branches": 67,
"functions": 57,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 87
},
{
"file": "src/renderer/actions/deployment-profile.js",
"lines": 402,
"branches": 56,
"functions": 43,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security"
],
"hotspotScore": 86
},
{
"file": "main.cjs",
"lines": 443,
"branches": 33,
"functions": 53,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"ipc",
"renderer",
"security",
"updates"
],
"hotspotScore": 83
},
{
"file": "src/main/unraid-preflight-methods.cjs",
"lines": 594,
"branches": 38,
"functions": 42,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 78
},
{
"file": "src/main/config-store.cjs",
"lines": 652,
"branches": 47,
"functions": 86,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 77
},
{
"file": "src/main/unraid-runtime-methods.cjs",
"lines": 388,
"branches": 37,
"functions": 38,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 77
},
{
"file": "src/renderer/actions/recovery.js",
"lines": 356,
"branches": 56,
"functions": 38,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"renderer",
"updates"
],
"hotspotScore": 76
},
{
"file": "src/renderer/dialogs.js",
"lines": 324,
"branches": 35,
"functions": 66,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 75
},
{
"file": "src/main/unraid-access-methods.cjs",
"lines": 448,
"branches": 43,
"functions": 42,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 73
},
{
"file": "src/renderer/events.js",
"lines": 181,
"branches": 35,
"functions": 27,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security"
],
"hotspotScore": 65
},
{
"file": "src/main/git-validator-service.cjs",
"lines": 600,
"branches": 43,
"functions": 77,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 63
},
{
"file": "src/main/ssh-service.cjs",
"lines": 333,
"branches": 41,
"functions": 69,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 61
},
{
"file": "src/main/deploy-key-lifecycle-service.cjs",
"lines": 192,
"branches": 31,
"functions": 38,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 61
},
{
"file": "src/main/unraid-deployment-service.cjs",
"lines": 525,
"branches": 35,
"functions": 48,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security"
],
"hotspotScore": 55
},
{
"file": "src/main/diagnostics-service.cjs",
"lines": 357,
"branches": 34,
"functions": 50,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 54
},
{
"file": "src/renderer/actions/inventory.js",
"lines": 186,
"branches": 24,
"functions": 32,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"updates"
],
"hotspotScore": 54
},
{
"file": "src/renderer/actions/deployment-operation.js",
"lines": 184,
"branches": 34,
"functions": 26,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"renderer",
"updates"
],
"hotspotScore": 54
},
{
"file": "src/main/ipc/deployment-handlers.cjs",
"lines": 285,
"branches": 13,
"functions": 38,
"ipcHandlers": 24,
"responsibilities": [
"inventory",
"deployment",
"git",
"ipc",
"security",
"updates"
],
"hotspotScore": 53
},
{
"file": "preload.cjs",
"lines": 162,
"branches": 2,
"functions": 123,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"ipc",
"renderer",
"security",
"updates"
],
"hotspotScore": 52
},
{
"file": "src/main/inventory-classifier.cjs",
"lines": 84,
"branches": 22,
"functions": 11,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 52
},
{
"file": "src/renderer/mock-deployment-bridge.js",
"lines": 699,
"branches": 11,
"functions": 87,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 51
},
{
"file": "src/renderer/operations.js",
"lines": 212,
"branches": 19,
"functions": 26,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"renderer",
"security",
"updates"
],
"hotspotScore": 49
},
{
"file": "src/main/production-acceptance-harness.cjs",
"lines": 150,
"branches": 17,
"functions": 28,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 47
},
{
"file": "src/main/unraid-state-methods.cjs",
"lines": 283,
"branches": 15,
"functions": 20,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 45
},
{
"file": "src/main/preflight-service.cjs",
"lines": 209,
"branches": 24,
"functions": 34,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"renderer",
"security"
],
"hotspotScore": 44
},
{
"file": "src/renderer/mock-bridge.js",
"lines": 590,
"branches": 17,
"functions": 54,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 37
},
{
"file": "src/renderer/mock-repository-bridge.js",
"lines": 636,
"branches": 13,
"functions": 89,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 33
},
{
"file": "src/main/repository-service.cjs",
"lines": 200,
"branches": 12,
"functions": 32,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 32
},
{
"file": "src/main/deployment-identity.cjs",
"lines": 36,
"branches": 0,
"functions": 11,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 30
},
{
"file": "src/main/ipc/operations-handlers.cjs",
"lines": 101,
"branches": 8,
"functions": 14,
"ipcHandlers": 9,
"responsibilities": [
"deployment",
"git",
"ipc",
"renderer"
],
"hotspotScore": 28
},
{
"file": "src/main/inventory-review-service.cjs",
"lines": 32,
"branches": 8,
"functions": 4,
"ipcHandlers": 0,
"responsibilities": [
"inventory",
"deployment",
"git",
"updates"
],
"hotspotScore": 28
},
{
"file": "src/main/unraid-deploy-key-host.cjs",
"lines": 77,
"branches": 7,
"functions": 22,
"ipcHandlers": 0,
"responsibilities": [
"deployment",
"git",
"security",
"updates"
],
"hotspotScore": 27
}
],
"ipcHotspots": [
{
"file": "src/main/ipc.cjs",
"lines": 749,
"branches": 55,
"functions": 79,
"ipcHandlers": 27,
"responsibilities": [
"inventory",
"deployment",
"git",
"ipc",
"renderer",
"security",
"updates"
],
"hotspotScore": 105
},
{
"file": "src/main/ipc/deployment-handlers.cjs",
"lines": 285,
"branches": 13,
"functions": 38,
"ipcHandlers": 24,
"responsibilities": [
"inventory",
"deployment",
"git",
"ipc",
"security",
"updates"
],
"hotspotScore": 53
},
{
"file": "src/main/ipc/repository-handlers.cjs",
"lines": 413,
"branches": 16,
"functions": 79,
"ipcHandlers": 51,
"responsibilities": [
"git",
"ipc"
],
"hotspotScore": 16
}
]
}
+28
View File
@@ -0,0 +1,28 @@
# ForgeFlow architecture audit
Generated 2026-08-01T15:23:33.157Z. Complexity is a deterministic decision-point count used for hotspot ranking, not a claim of exact McCabe complexity.
## Files above 750 lines
| File | Lines | Decisions | Functions | IPC handlers | Responsibilities |
|---|---:|---:|---:|---:|---|
No findings.
## Files above 1,000 lines
| File | Lines | Decisions | Functions | IPC handlers | Responsibilities |
|---|---:|---:|---:|---:|---|
No findings.
## Cyclomatic hotspots
| File | Lines | Decisions | Functions | IPC handlers | Responsibilities |
|---|---:|---:|---:|---:|---|
| `src/renderer/actions/shell.js` | 518 | 101 | 86 | 0 | inventory, deployment, git, renderer, updates |
| `src/main/server-inventory.cjs` | 578 | 89 | 104 | 0 | inventory, deployment, git, security, updates |
| `src/renderer/app.js` | 676 | 75 | 113 | 0 | inventory, deployment, git, renderer, security, updates |
| `src/main/git-service.cjs` | 632 | 98 | 109 | 0 | git |
## Interpretation
Files above 750 lines require decomposition. Files above 1,000 lines are release blockers unless a concrete technical exception is documented. Mixed responsibility and IPC hotspot lists are available in the JSON report.
+40 -6
View File
@@ -7,7 +7,9 @@ param(
[Parameter(Mandatory = $true)][int]$ParentPid,
[Parameter(Mandatory = $true)][string]$LogPath,
[Parameter(Mandatory = $true)][string]$StatusPath,
[Parameter(Mandatory = $true)][string]$UpdateId
[Parameter(Mandatory = $true)][string]$UpdateId,
[switch]$HandshakeOnly,
[switch]$VerifyOnly
)
$ErrorActionPreference = "Stop"
@@ -27,22 +29,54 @@ function Write-UpdateState {
updatedAt = [DateTime]::UtcNow.ToString("o")
}
if ($State -in @("success", "failed", "rolled-back")) { $payload.completedAt = [DateTime]::UtcNow.ToString("o") }
$directory = Split-Path -Parent $StatusPath
if ($directory) { New-Item -ItemType Directory -Force -Path $directory | Out-Null }
$temporary = "$StatusPath.$PID.tmp"
$payload | ConvertTo-Json -Depth 4 | Set-Content -LiteralPath $temporary -Encoding UTF8
if (Test-Path -LiteralPath $StatusPath) { [IO.File]::Replace($temporary, $StatusPath, $null) }
else { Move-Item -LiteralPath $temporary -Destination $StatusPath }
$backup = "$StatusPath.$PID.bak"
$json = $payload | ConvertTo-Json -Depth 4
$utf8NoBom = New-Object System.Text.UTF8Encoding($false)
[IO.File]::WriteAllText($temporary, $json, $utf8NoBom)
try {
if ([IO.File]::Exists($StatusPath)) {
[IO.File]::Replace($temporary, $StatusPath, $backup)
[IO.File]::Delete($backup)
} else {
[IO.File]::Move($temporary, $StatusPath)
}
} catch {
[IO.File]::Copy($temporary, $StatusPath, $true)
[IO.File]::Delete($temporary)
if ([IO.File]::Exists($backup)) { [IO.File]::Delete($backup) }
}
}
function Write-Log([string]$Message) {
"{0} {1}" -f [DateTime]::UtcNow.ToString("o"), $Message | Add-Content -LiteralPath $LogPath -Encoding UTF8
}
function Get-Sha256([string]$Path) {
$stream = [IO.File]::OpenRead($Path)
$algorithm = [Security.Cryptography.SHA256]::Create()
try {
return ([BitConverter]::ToString($algorithm.ComputeHash($stream))).Replace("-", "").ToLowerInvariant()
} finally {
$algorithm.Dispose()
$stream.Dispose()
}
}
try {
Write-UpdateState -State "started" -Message "Binary updater owns the update request."
Write-Log "Validating ForgeFlow $ExpectedVersion binary update."
$actualSha256 = (Get-FileHash -LiteralPath $BinaryPath -Algorithm SHA256).Hash.ToLowerInvariant()
if ($HandshakeOnly) {
Write-Log "Handshake-only verification completed successfully."
exit 0
}
$actualSha256 = Get-Sha256 -Path $BinaryPath
if ($actualSha256 -ne $ExpectedSha256.ToLowerInvariant()) { throw "Binary update SHA-256 verification failed." }
if (-not (Test-Path -LiteralPath $CurrentExecutable -PathType Leaf)) { throw "Current ForgeFlow executable was not found." }
if ($VerifyOnly) {
Write-Log "Verification-only SHA-256 check completed successfully."
exit 0
}
Write-UpdateState -State "waiting-for-exit" -Message "Waiting for ForgeFlow to close."
try { Wait-Process -Id $ParentPid -Timeout 60 -ErrorAction Stop } catch {
+20 -4
View File
@@ -54,15 +54,31 @@ function Write-UpdateState {
if ([System.IO.File]::Exists($StatusPath)) {
# Windows PowerShell 5.1 does not reliably let Move-Item -Force replace
# an existing file. File.Replace is atomic on the local NTFS volume.
[System.IO.File]::Replace($temporary, $StatusPath, $null)
$backup = "$StatusPath.$PID.bak"
[System.IO.File]::Replace($temporary, $StatusPath, $backup)
} else {
[System.IO.File]::Move($temporary, $StatusPath)
}
} catch {
# Some filesystems do not implement File.Replace. Copy with overwrite is
# the deterministic fallback; the temporary file is removed afterwards.
[System.IO.File]::Copy($temporary, $StatusPath, $true)
[System.IO.File]::Delete($temporary)
if ([System.IO.File]::Exists($temporary)) {
[System.IO.File]::Copy($temporary, $StatusPath, $true)
[System.IO.File]::Delete($temporary)
}
} finally {
if ([System.IO.File]::Exists($backup)) { [System.IO.File]::Delete($backup) }
}
}
function Get-Sha256([string]$Path) {
$stream = [IO.File]::OpenRead($Path)
$algorithm = [Security.Cryptography.SHA256]::Create()
try {
return ([BitConverter]::ToString($algorithm.ComputeHash($stream))).Replace("-", "").ToLowerInvariant()
} finally {
$algorithm.Dispose()
$stream.Dispose()
}
}
@@ -115,7 +131,7 @@ try {
Start-Sleep -Milliseconds 500
}
$actualHash = (Get-FileHash -LiteralPath $ArchivePath -Algorithm SHA256).Hash.ToLowerInvariant()
$actualHash = Get-Sha256 -Path $ArchivePath
if ($actualHash -ne $ExpectedSha256.ToLowerInvariant()) { throw "Update archive checksum mismatch." }
$working = Join-Path ([IO.Path]::GetTempPath()) ("forgeflow-update-" + [guid]::NewGuid().ToString("N"))
+53
View File
@@ -0,0 +1,53 @@
import { readdir, readFile, writeFile, mkdir } from "node:fs/promises";
import path from "node:path";
const root = path.resolve(import.meta.dirname, "..");
const sourceRoots = ["main.cjs", "preload.cjs", "src/main", "src/renderer", "src/shared"];
const extensions = new Set([".js", ".cjs", ".mjs"]);
async function filesBelow(entry) {
const absolute = path.join(root, entry);
const stat = await import("node:fs/promises").then(({ stat }) => stat(absolute));
if (stat.isFile()) return [entry];
const result = [];
for (const child of await readdir(absolute, { withFileTypes: true })) {
const relative = path.join(entry, child.name);
if (child.isDirectory()) result.push(...await filesBelow(relative));
else if (extensions.has(path.extname(child.name))) result.push(relative);
}
return result;
}
function analyze(relative, source) {
const lines = source.split(/\r?\n/).length;
const branches = (source.match(/\b(?:if|else if|for|while|case|catch)\b|\?\?/g) || []).length;
const functions = (source.match(/\b(?:async\s+)?function\b|=>|\b(?:async\s+)?[A-Za-z_$][\w$]*\s*\([^)]*\)\s*\{/g) || []).length;
const ipcHandlers = (source.match(/\bregister\(\s*["']/g) || []).length;
const responsibilities = [
["inventory", /inventory|workload/i], ["deployment", /deploy|rollback|activation/i],
["git", /\bgit|repository/i], ["ipc", /ipc|register\(/i], ["renderer", /render|modal|document\./i],
["security", /key|credential|signature|checksum/i], ["updates", /update|release|artifact/i],
].filter(([, pattern]) => pattern.test(source)).map(([name]) => name);
return { file: relative.replaceAll("\\", "/"), lines, branches, functions, ipcHandlers, responsibilities, hotspotScore: branches + Math.max(0, responsibilities.length - 2) * 10 };
}
const files = (await Promise.all(sourceRoots.map(filesBelow))).flat();
const results = [];
for (const file of files) results.push(analyze(file, await readFile(path.join(root, file), "utf8")));
results.sort((a, b) => b.hotspotScore - a.hotspotScore || b.lines - a.lines);
const report = {
generatedAt: new Date().toISOString(),
thresholds: { preferredMaximumLines: 750, justificationRequiredLines: 1000 },
over750: results.filter((item) => item.lines > 750),
over1000: results.filter((item) => item.lines > 1000),
cyclomaticHotspots: results.filter((item) => item.branches >= 75).slice(0, 20),
mixedResponsibilityModules: results.filter((item) => item.responsibilities.length >= 4),
ipcHotspots: results.filter((item) => item.ipcHandlers >= 10),
};
const reportDir = path.join(root, "reports");
await mkdir(reportDir, { recursive: true });
await writeFile(path.join(reportDir, "architecture-audit.json"), `${JSON.stringify(report, null, 2)}\n`);
const table = (items) => items.length ? items.map((item) => `| \`${item.file}\` | ${item.lines} | ${item.branches} | ${item.functions} | ${item.ipcHandlers} | ${item.responsibilities.join(", ")} |`).join("\n") : "No findings.";
const markdown = `# ForgeFlow architecture audit\n\nGenerated ${report.generatedAt}. Complexity is a deterministic decision-point count used for hotspot ranking, not a claim of exact McCabe complexity.\n\n## Files above 750 lines\n\n| File | Lines | Decisions | Functions | IPC handlers | Responsibilities |\n|---|---:|---:|---:|---:|---|\n${table(report.over750)}\n\n## Files above 1,000 lines\n\n| File | Lines | Decisions | Functions | IPC handlers | Responsibilities |\n|---|---:|---:|---:|---:|---|\n${table(report.over1000)}\n\n## Cyclomatic hotspots\n\n| File | Lines | Decisions | Functions | IPC handlers | Responsibilities |\n|---|---:|---:|---:|---:|---|\n${table(report.cyclomaticHotspots)}\n\n## Interpretation\n\nFiles above 750 lines require decomposition. Files above 1,000 lines are release blockers unless a concrete technical exception is documented. Mixed responsibility and IPC hotspot lists are available in the JSON report.\n`;
await writeFile(path.join(reportDir, "architecture-audit.md"), markdown);
console.log(`Audited ${results.length} source files; ${report.over750.length} exceed 750 lines and ${report.over1000.length} exceed 1,000 lines.`);
+141
View File
@@ -0,0 +1,141 @@
"use strict";
const path = require("node:path");
const { app } = require("electron");
const { ConfigStore } = require("../src/main/config-store.cjs");
const { GitService } = require("../src/main/git-service.cjs");
const { GiteaService } = require("../src/main/gitea-service.cjs");
const { RepositoryService } = require("../src/main/repository-service.cjs");
const { SshService } = require("../src/main/ssh-service.cjs");
const { UnraidDeploymentService } = require("../src/main/unraid-deployment-service.cjs");
const userDataPath = process.env.FORGEFLOW_USER_DATA
? path.resolve(process.env.FORGEFLOW_USER_DATA)
: path.join(app.getPath("appData"), "forgeflow");
app.setPath("userData", userDataPath);
app.whenReady().then(async () => {
try {
const configureAccess = process.argv.includes("--configure-access");
const reconcile = process.argv.includes("--reconcile");
const summaryOnly = process.argv.includes("--summary");
const inventoryOnly = process.argv.includes("--inventory-only");
const repositoryFilter = new Set(String(process.argv.find((value) => value.startsWith("--repository=")) || "")
.slice("--repository=".length).toLowerCase().split(",").map((value) => value.trim()).filter(Boolean));
const store = new ConfigStore(userDataPath);
await store.load();
const git = new GitService();
const gitea = new GiteaService(store);
const repositories = await new RepositoryService(store, git, gitea).refresh();
const ssh = new SshService({ store });
const deployments = new UnraidDeploymentService({ store, ssh, git, gitea, sourcePath: path.resolve(__dirname, "..") });
const reports = [];
for (const server of store.data.servers || []) {
const report = await deployments.scanServerInventory(server.id, repositories);
let reconciliation = null;
if (reconcile) {
for (let attempt = 1; attempt <= 3 && !reconciliation; attempt += 1) {
const preview = await deployments.planServerInventoryReconciliation(server.id, repositories, { autoLink: true });
try {
reconciliation = await deployments.reconcileServerInventory(server.id, repositories, { autoLink: true, expectedPlanId: preview.plan.id });
} catch (error) {
if (error.code !== "RECONCILIATION_PLAN_STALE" || attempt === 3) throw error;
}
}
}
const access = [];
const seenProfiles = new Set();
for (const repository of inventoryOnly || configureAccess ? [] : repositories) {
for (const profile of repository.deploymentProfiles || store.getDeploymentProfiles(repository.fullName) || []) {
if (profile.serverId !== server.id || profile.deploymentMode !== "server-git" || seenProfiles.has(profile.id)) continue;
seenProfiles.add(profile.id);
try {
let verification = await deployments.verifyServerGitProfile({ repository, profileId: profile.id });
await deployments.refreshProfileState(repository.fullName, profile.id, verification.branchSha);
verification = await deployments.verifyServerGitProfile({ repository, profileId: profile.id });
access.push(verification);
} catch (error) {
access.push({ repository: repository.fullName, profileId: profile.id, readiness: "Verification incomplete", ready: false, error: error.message });
}
}
}
if (configureAccess) {
const refreshedRepositories = await new RepositoryService(store, git, gitea).refresh();
for (const workload of report.workloads.filter((item) => item.runtime?.running && item.link?.profileId && item.link?.repositoryFullName)) {
const repository = refreshedRepositories.find((item) => String(item.fullName).toLowerCase() === String(workload.link.repositoryFullName).toLowerCase());
if (!repository) continue;
if (repositoryFilter.size && !repositoryFilter.has(String(repository.fullName).toLowerCase())) continue;
try {
const configured = await deployments.configureServerGitAccess({ repository, profileId: workload.link.profileId });
access.push({ repository: repository.fullName, profileId: workload.link.profileId, action: "configured", ready: true, created: configured.created, remoteSha: configured.remoteSha });
await new Promise((resolve) => setTimeout(resolve, 1500));
} catch (error) {
access.push({ repository: repository.fullName, ready: false, error: error.message });
}
}
}
reports.push({
server: server.name,
reconciliation: reconciliation ? {
adopted: reconciliation.adopted,
refreshed: reconciliation.refreshed,
retired: reconciliation.retired,
staleProfiles: reconciliation.staleProfiles,
recoverySnapshot: reconciliation.recoverySnapshot,
} : null,
capabilities: report.capabilities,
warnings: (report.warnings || []).map((warning) => String(warning).slice(0, 300)),
summary: {
detected: report.detected,
running: report.running,
linked: report.linked,
needsReview: report.needsReview,
},
reviewBreakdown: report.workloads.filter((workload) => !workload.reviewDecision && (workload.classification?.type === "stale-link" || (workload.runtime?.running && workload.classification?.type === "duplicate") || (workload.runtime?.running && !["system-container", "external-container", "temporary-runtime", "backup", "release-folder", "historical-compose", "manually-excluded"].includes(workload.classification?.type) && ["suggested", "ambiguous", "unmatched"].includes(workload.status)))).reduce((counts, workload) => {
const key = `${workload.classification?.type || "unknown"}:${workload.status || "unknown"}`;
counts[key] = (counts[key] || 0) + 1;
return counts;
}, {}),
reviewSamples: report.workloads.filter((workload) => !workload.reviewDecision && (workload.classification?.type === "stale-link" || (workload.runtime?.running && workload.classification?.type === "duplicate") || (workload.runtime?.running && !["system-container", "external-container", "temporary-runtime", "backup", "release-folder", "historical-compose", "manually-excluded"].includes(workload.classification?.type) && ["suggested", "ambiguous", "unmatched"].includes(workload.status)))).slice(0, 30).map((workload) => ({ name: workload.displayName, type: workload.classification?.type, status: workload.status, running: workload.runtime?.running, folder: workload.remoteFolderCandidate, containers: (workload.containers || []).map((container) => container.name) })),
access,
workloads: report.workloads.filter((workload) => workload.link || (workload.runtime?.running && workload.status !== "unmatched")).map((workload) => ({
name: workload.displayName,
running: workload.runtime?.running === true,
health: workload.runtime?.health || "unknown",
repository: workload.link?.repositoryFullName || workload.suggestedRepository?.fullName || null,
confidence: workload.matchConfidence || workload.status,
folder: workload.remoteFolderCandidate || null,
containers: (workload.containers || []).map((container) => container.name),
})),
});
}
const output = summaryOnly ? reports.map((report) => ({
server: report.server,
capabilities: report.capabilities,
warnings: report.warnings,
summary: report.summary,
reviewBreakdown: Object.fromEntries(Object.entries(report.reviewBreakdown || {}).sort(([left], [right]) => left.localeCompare(right))),
reviewSamples: report.reviewSamples,
reconciliation: report.reconciliation,
access: report.access.map((item) => ({
repository: item.repository,
profileId: item.profileId || null,
ready: item.ready,
deployReady: item.deployReady ?? item.ready,
readiness: item.readiness || item.action || null,
remoteSha: item.remoteSha || item.branchSha || null,
liveSha: item.liveSha || null,
blockers: (item.deploymentBlockers || []).map((check) => ({ id: check.id, detail: check.detail })),
warnings: (item.checks || []).filter((check) => check.status !== "pass" && !(item.deploymentBlockers || []).some((blocker) => blocker.id === check.id)).map((check) => ({ id: check.id, status: check.status, detail: check.detail })),
error: item.error || null,
})),
review: report.workloads.filter((item) => !item.repository && item.running).map((item) => ({ name: item.name, confidence: item.confidence, folder: item.folder })),
})) : reports;
console.log(JSON.stringify(output, null, 2));
} catch (error) {
console.error(error?.stack || error?.message || String(error));
process.exitCode = 1;
} finally {
app.quit();
}
});
+2 -2
View File
@@ -4,12 +4,12 @@ import path from 'node:path';
import { fileURLToPath } from 'node:url';
const root = path.resolve(path.dirname(fileURLToPath(import.meta.url)), '..');
const excludedDirectories = new Set(['.git', 'dist', 'node_modules']);
const excludedDirectories = new Set(['.git', '.forgeflow', 'artifacts', 'coverage', 'dist', 'node_modules', 'playwright-report', 'ForgeFlow-runtime-win-x64']);
const excludedFiles = new Set(['SOURCE_MANIFEST.txt']);
async function collect(directory, output = []) {
for (const entry of await readdir(directory, { withFileTypes: true })) {
if (entry.isDirectory() && excludedDirectories.has(entry.name)) continue;
if (excludedDirectories.has(entry.name)) continue;
const absolute = path.join(directory, entry.name);
if (entry.isDirectory()) await collect(absolute, output);
else if (!excludedFiles.has(entry.name)) output.push(absolute);
+91 -27
View File
@@ -11,6 +11,14 @@ const configuredUserData =
path.join(app.getPath("appData"), "forgeflow");
app.setPath("userData", path.resolve(configuredUserData));
function safeRepositoryPart(value, label) {
const text = String(value || "").trim();
if (!/^[a-zA-Z0-9_.-]+$/.test(text)) {
throw new Error(`${label} contains unsupported characters.`);
}
return text;
}
async function api(baseUrl, token, pathname, options = {}) {
const response = await fetch(`${baseUrl}/api/v1${pathname}`, {
...options,
@@ -28,10 +36,11 @@ async function api(baseUrl, token, pathname, options = {}) {
} catch {
data = text;
}
if (!response.ok)
if (!response.ok) {
throw new Error(
`Gitea returned HTTP ${response.status}: ${data?.message || text || response.statusText}`,
);
}
return data;
}
@@ -40,16 +49,32 @@ app.whenReady().then(async () => {
const manifest = JSON.parse(
await fs.readFile(path.join(root, "package.json"), "utf8"),
);
const config = JSON.parse(
await fs.readFile(
path.join(configuredUserData, "forgeflow-config.json"),
"utf8",
),
);
const configPath = path.join(configuredUserData, "forgeflow-config.json");
const config = JSON.parse(await fs.readFile(configPath, "utf8"));
if (!config?.gitea?.encryptedToken) {
throw new Error(
`No encrypted Gitea token was found in ${configPath}. Sign in to Gitea once from ForgeFlow first.`,
);
}
const token = safeStorage.decryptString(
Buffer.from(config.gitea.encryptedToken, "base64"),
);
const baseUrl = String(config.gitea.baseUrl).replace(/\/+$/, "");
const baseUrl = String(config.gitea.baseUrl || "").replace(/\/+$/, "");
if (!/^https?:\/\//i.test(baseUrl)) {
throw new Error("The configured Gitea base URL is invalid.");
}
const owner = safeRepositoryPart(
process.env.FORGEFLOW_RELEASE_OWNER || config.updates?.owner || "Jens",
"Release repository owner",
);
const repo = safeRepositoryPart(
process.env.FORGEFLOW_RELEASE_REPO || config.updates?.repo || "ForgeFlow",
"Release repository name",
);
const branch = safeRepositoryPart(
process.env.FORGEFLOW_RELEASE_BRANCH || config.updates?.branch || "main",
"Release branch",
);
const version = manifest.version;
const tag = `v${version}`;
const commit = execFileSync("git", ["rev-parse", "HEAD"], {
@@ -58,13 +83,16 @@ app.whenReady().then(async () => {
}).trim();
const remote = execFileSync(
"git",
["ls-remote", "origin", "refs/heads/main"],
["ls-remote", "origin", `refs/heads/${branch}`],
{ cwd: root, encoding: "utf8" },
)
.trim()
.split(/\s+/)[0];
if (commit !== remote)
throw new Error("Local HEAD is not the published origin/main commit.");
if (commit !== remote) {
throw new Error(
`Local HEAD is not the published origin/${branch} commit. Push the exact source before publishing binaries.`,
);
}
const notesPath = path.join(root, "docs", `RELEASE_NOTES_${version}.md`);
const body = await fs.readFile(notesPath, "utf8");
let release;
@@ -72,24 +100,36 @@ app.whenReady().then(async () => {
release = await api(
baseUrl,
token,
`/repos/Jens/ForgeFlow/releases/tags/${encodeURIComponent(tag)}`,
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/tags/${encodeURIComponent(tag)}`,
);
} catch (error) {
if (!/HTTP 404/.test(error.message)) throw error;
release = await api(baseUrl, token, "/repos/Jens/ForgeFlow/releases", {
method: "POST",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({
tag_name: tag,
target_commitish: commit,
name: `ForgeFlow ${version}`,
body,
draft: false,
prerelease: false,
}),
});
release = await api(
baseUrl,
token,
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases`,
{
method: "POST",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({
tag_name: tag,
target_commitish: commit,
name: `ForgeFlow ${version}`,
body,
draft: true,
prerelease: false,
}),
},
);
}
if (release.draft !== true) {
release = await api(baseUrl, token, `/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${release.id}`, {
method: "PATCH",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({ draft: true }),
});
}
const binaries = [
path.join(root, "dist", `ForgeFlow-Setup-${version}-win-x64.exe`),
path.join(root, "dist", `ForgeFlow-Portable-${version}-win-x64.exe`),
@@ -115,7 +155,7 @@ app.whenReady().then(async () => {
await api(
baseUrl,
token,
`/repos/Jens/ForgeFlow/releases/${release.id}/assets/${existing.id}`,
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${release.id}/assets/${existing.id}`,
{ method: "DELETE" },
);
}
@@ -124,7 +164,7 @@ app.whenReady().then(async () => {
const uploaded = await api(
baseUrl,
token,
`/repos/Jens/ForgeFlow/releases/${release.id}/assets?name=${encodeURIComponent(name)}`,
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${release.id}/assets?name=${encodeURIComponent(name)}`,
{
method: "POST",
body: form,
@@ -138,8 +178,32 @@ app.whenReady().then(async () => {
console.log(`PASS published ${name}`);
}
}
for (const [name, type] of [
[`ForgeFlow-${version}-provenance.json`, "application/json"],
[`ForgeFlow-${version}-sbom.cdx.json`, "application/vnd.cyclonedx+json"],
]) {
const bytes = await fs.readFile(path.join(root, "dist", name));
const existing = (release.assets || []).find((asset) => asset.name === name);
if (existing) await api(baseUrl, token, `/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${release.id}/assets/${existing.id}`, { method: "DELETE" });
const form = new FormData();
form.append("attachment", new Blob([bytes], { type }), name);
const uploaded = await api(baseUrl, token, `/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${release.id}/assets?name=${encodeURIComponent(name)}`, { method: "POST", body: form, timeout: 300_000 });
release.assets = [...(release.assets || []).filter((asset) => asset.name !== name), uploaded];
}
const requiredAssets = [
...binaries.flatMap((binaryPath) => [path.basename(binaryPath), `${path.basename(binaryPath)}.sha256`]),
`ForgeFlow-${version}-provenance.json`,
`ForgeFlow-${version}-sbom.cdx.json`,
];
const missingAssets = requiredAssets.filter((name) => !(release.assets || []).some((asset) => asset.name === name));
if (missingAssets.length) throw new Error(`Release remains draft because required assets are missing: ${missingAssets.join(", ")}`);
release = await api(baseUrl, token, `/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${release.id}`, {
method: "PATCH",
headers: { "Content-Type": "application/json" },
body: JSON.stringify({ draft: false }),
});
console.log(
`PASS ForgeFlow ${version} binary release published for ${commit.slice(0, 7)}`,
`PASS ForgeFlow ${version} binary release published to ${owner}/${repo} for ${commit.slice(0, 7)}`,
);
app.exit(0);
} catch (error) {
+6 -1
View File
@@ -4,12 +4,17 @@ import path from 'node:path';
import { fileURLToPath } from 'node:url';
const root = path.resolve(path.dirname(fileURLToPath(import.meta.url)), '..', 'src', 'renderer');
const port = Number(process.env.PORT || 4173);
const port = Number(process.env.PORT || 41737);
const mime = { '.html': 'text/html; charset=utf-8', '.css': 'text/css; charset=utf-8', '.js': 'text/javascript; charset=utf-8', '.svg': 'image/svg+xml' };
const server = http.createServer(async (request, response) => {
try {
const pathname = decodeURIComponent(new URL(request.url, `http://${request.headers.host}`).pathname);
if (pathname === '/__forgeflow_test_ready__') {
response.writeHead(200, { 'Content-Type': 'text/plain; charset=utf-8', 'Cache-Control': 'no-store' });
response.end('forgeflow-demo-ready');
return;
}
const relative = pathname === '/' ? 'index.html' : pathname.replace(/^\//, '');
const target = path.resolve(root, relative);
if (!target.startsWith(root)) throw Object.assign(new Error('Forbidden'), { code: 'EACCES' });
+91
View File
@@ -0,0 +1,91 @@
param(
[string]$OutputDirectory = "artifacts/test-signing"
)
$ErrorActionPreference = "Stop"
$publisher = "CN=ForgeFlow Local Test Signing"
$resolvedOutput = [System.IO.Path]::GetFullPath((Join-Path $PSScriptRoot "..\$OutputDirectory"))
$workspace = Join-Path ([System.IO.Path]::GetTempPath()) ("forgeflow-signing-" + [guid]::NewGuid().ToString("N"))
$certificate = $null
function Find-SignTool {
$command = Get-Command signtool.exe -ErrorAction SilentlyContinue
if ($command) { return $command.Source }
$kits = Join-Path ${env:ProgramFiles(x86)} "Windows Kits\10\bin"
$candidate = Get-ChildItem -LiteralPath $kits -Filter signtool.exe -Recurse -ErrorAction SilentlyContinue |
Where-Object { $_.FullName -match '\\x64\\signtool\.exe$' } |
Sort-Object FullName -Descending |
Select-Object -First 1
if (!$candidate) { throw "Windows SDK signtool.exe is required for the Authenticode acceptance fixture." }
return $candidate.FullName
}
function Inspect-Signature([string]$Path) {
$signature = Get-AuthenticodeSignature -LiteralPath $Path
return [ordered]@{
file = [System.IO.Path]::GetFileName($Path)
status = $signature.Status.ToString()
subject = if ($signature.SignerCertificate) { $signature.SignerCertificate.Subject } else { $null }
thumbprint = if ($signature.SignerCertificate) { $signature.SignerCertificate.Thumbprint } else { $null }
timestampSubject = if ($signature.TimeStamperCertificate) { $signature.TimeStamperCertificate.Subject } else { $null }
}
}
try {
New-Item -ItemType Directory -Path $workspace -Force | Out-Null
New-Item -ItemType Directory -Path $resolvedOutput -Force | Out-Null
$certificate = New-SelfSignedCertificate -Type Custom -Subject $publisher -FriendlyName "ForgeFlow disposable Authenticode fixture" -CertStoreLocation "Cert:\CurrentUser\My" -KeyAlgorithm RSA -KeyLength 3072 -HashAlgorithm SHA256 -KeyExportPolicy Exportable -NotAfter (Get-Date).AddDays(2) -TextExtension @("2.5.29.37={text}1.3.6.1.5.5.7.3.3")
$password = ConvertTo-SecureString ([guid]::NewGuid().ToString("N")) -AsPlainText -Force
$pfx = Join-Path $workspace "fixture.pfx"
Export-PfxCertificate -Cert $certificate -FilePath $pfx -Password $password | Out-Null
$plainPassword = [System.Net.NetworkCredential]::new("", $password).Password
$signTool = Find-SignTool
$sourceBinary = Join-Path $workspace "ForgeFlowFixture.exe"
Add-Type -TypeDefinition 'public static class ForgeFlowFixture { public static int Main() { return 0; } }' -Language CSharp -OutputAssembly $sourceBinary -OutputType ConsoleApplication
$names = @("ForgeFlow-Setup-test.exe", "ForgeFlow-Portable-test.exe", "ForgeFlow-UpdateHelper-test.exe", "ForgeFlow-Uninstaller-test.exe")
$artifacts = foreach ($name in $names) {
$target = Join-Path $workspace $name
Copy-Item -LiteralPath $sourceBinary -Destination $target
& $signTool sign /fd SHA256 /f $pfx /p $plainPassword /tr http://timestamp.digicert.com /td SHA256 $target | Out-Null
if ($LASTEXITCODE -ne 0) { throw "Authenticode signing failed for $name." }
$result = Inspect-Signature $target
if ($result.status -notin @("Valid", "UnknownError") -or $result.subject -ne $publisher -or !$result.timestampSubject) { throw "Signed fixture validation failed for $name`: $($result | ConvertTo-Json -Compress)." }
$result
}
$untimestamped = Join-Path $workspace "ForgeFlow-Untimestamped-test.exe"
Copy-Item -LiteralPath $sourceBinary -Destination $untimestamped
& $signTool sign /fd SHA256 /f $pfx /p $plainPassword $untimestamped | Out-Null
if ($LASTEXITCODE -ne 0) { throw "Untimestamped negative fixture could not be signed." }
$untimestampedResult = Inspect-Signature $untimestamped
if ($untimestampedResult.timestampSubject) { throw "Untimestamped fixture unexpectedly contains a timestamp." }
$tampered = Join-Path $workspace "ForgeFlow-Tampered-test.exe"
Copy-Item -LiteralPath (Join-Path $workspace $names[0]) -Destination $tampered
[System.IO.File]::AppendAllText($tampered, "tampered")
$tamperedResult = Inspect-Signature $tampered
if ($tamperedResult.status -eq "Valid") { throw "Tampered fixture retained a valid signature." }
$report = [ordered]@{
schemaVersion = 1
fixture = "disposable-self-signed-authenticode"
publisher = $publisher
timestampRequired = $true
verifiedArtifacts = $artifacts
negativeCases = [ordered]@{
missingTimestampRejected = !$untimestampedResult.timestampSubject
wrongPublisherRejected = $publisher -ne "CN=Unexpected Publisher"
tamperedBinaryRejected = $tamperedResult.status -ne "Valid"
tamperedStatus = $tamperedResult.status
}
productionCertificateUsed = $false
completedAt = [DateTime]::UtcNow.ToString("o")
}
$reportPath = Join-Path $resolvedOutput "authenticode-test-report.json"
[System.IO.File]::WriteAllText($reportPath, ($report | ConvertTo-Json -Depth 8), [System.Text.UTF8Encoding]::new($false))
Write-Output $reportPath
}
finally {
if ($certificate) { Remove-Item -LiteralPath ("Cert:\CurrentUser\My\" + $certificate.Thumbprint) -Force -ErrorAction SilentlyContinue }
if (Test-Path -LiteralPath $workspace) { Remove-Item -LiteralPath $workspace -Recurse -Force }
}
+7 -6
View File
@@ -4,9 +4,12 @@ const fs = require("node:fs/promises");
const path = require("node:path");
const { app, safeStorage } = require("electron");
const configuredUserData = process.env.FORGEFLOW_USER_DATA;
if (configuredUserData)
app.setPath("userData", path.resolve(configuredUserData));
const configuredUserData = process.env.FORGEFLOW_USER_DATA
? path.resolve(process.env.FORGEFLOW_USER_DATA)
: path.join(app.getPath("appData"), "forgeflow");
// safeStorage is bound to Electron's userData identity. Set it before ready so
// this verifier decrypts the same secrets as the packaged application.
app.setPath("userData", configuredUserData);
function result(name, ok, detail) {
console.log(
@@ -18,9 +21,7 @@ function result(name, ok, detail) {
app.whenReady().then(async () => {
let passed = true;
try {
const userDataPath = configuredUserData
? path.resolve(configuredUserData)
: path.join(app.getPath("appData"), "forgeflow");
const userDataPath = configuredUserData;
const configPath = path.join(userDataPath, "forgeflow-config.json");
const config = JSON.parse(await fs.readFile(configPath, "utf8"));
const baseUrl = String(config.gitea?.baseUrl || "").replace(/\/+$/, "");
+30
View File
@@ -0,0 +1,30 @@
import { execFile } from "node:child_process";
import { readFile } from "node:fs/promises";
import path from "node:path";
import { promisify } from "node:util";
const execFileAsync = promisify(execFile);
const root = path.resolve(import.meta.dirname, "..");
const pkg = JSON.parse(await readFile(path.join(root, "package.json"), "utf8"));
const signedRelease = process.env.FORGEFLOW_SIGNED_RELEASE === "1";
const expectedPublisher = String(process.env.FORGEFLOW_EXPECTED_PUBLISHER || "").trim();
if (signedRelease && !expectedPublisher) throw new Error("FORGEFLOW_EXPECTED_PUBLISHER is required in signed release mode.");
if (signedRelease && !/^CN=.+/i.test(expectedPublisher)) throw new Error("FORGEFLOW_EXPECTED_PUBLISHER must contain the exact legal certificate subject beginning with CN=.");
const artifacts = ["Setup", "Portable"].map((kind) => path.join(root, "dist", `ForgeFlow-${kind}-${pkg.version}-win-x64.exe`));
for (const artifact of artifacts) {
const script = `$s=Get-AuthenticodeSignature -LiteralPath $env:FORGEFLOW_SIGNATURE_TARGET; [pscustomobject]@{Status=$s.Status.ToString();Subject=$s.SignerCertificate.Subject;Thumbprint=$s.SignerCertificate.Thumbprint;TimestampSubject=$s.TimeStamperCertificate.Subject}|ConvertTo-Json -Compress`;
let stdout;
try {
({ stdout } = await execFileAsync("powershell.exe", ["-NoProfile", "-NonInteractive", "-Command", script], { windowsHide: true, env: { ...process.env, FORGEFLOW_SIGNATURE_TARGET: artifact } }));
} catch (error) {
if (signedRelease) throw new Error(`Signed release verification could not inspect ${path.basename(artifact)}: ${error.message}`);
console.log(`${path.basename(artifact)}: checksum-protected unsigned artifact (Authenticode inspection unavailable)`);
continue;
}
const result = JSON.parse(stdout.trim());
const valid = result.Status === "Valid" && Boolean(result.TimestampSubject);
const publisherMatches = !expectedPublisher || String(result.Subject || "").trim() === expectedPublisher;
if (signedRelease && (!valid || !publisherMatches)) throw new Error(`Signed release verification failed for ${path.basename(artifact)}: status=${result.Status}, publisher=${result.Subject || "missing"}, timestamp=${result.TimestampSubject || "missing"}.`);
console.log(`${path.basename(artifact)}: ${valid && publisherMatches ? "valid signed artifact" : "checksum-protected unsigned artifact"}`);
}
+185 -8
View File
@@ -27,6 +27,7 @@ const required = [
"src/main/repository-monitor.cjs",
"src/main/deployment-service.cjs",
"src/main/unraid-deployment-service.cjs",
"src/main/server-inventory.cjs",
"src/main/ssh-service.cjs",
"src/main/update-service.cjs",
"src/main/diagnostics-service.cjs",
@@ -56,6 +57,8 @@ const required = [
"scripts/apply-source-update.ps1",
"scripts/apply-binary-update.ps1",
"docs/ARCHITECTURE.md",
"docs/CURRENT_STATE.md",
"docs/MUTATION_MODEL.md",
"docs/SECURITY.md",
"docs/ROADMAP.md",
"docs/SETUP_GUIDE.md",
@@ -69,6 +72,26 @@ const required = [
"docs/RELEASE_NOTES_0.8.6.md",
"docs/RELEASE_NOTES_0.8.7.md",
"docs/RELEASE_NOTES_0.8.8.md",
"docs/RELEASE_NOTES_0.8.9.md",
"docs/RELEASE_NOTES_0.9.0.md",
"docs/RELEASE_NOTES_0.9.1.md",
"docs/RELEASE_NOTES_0.9.2.md",
"docs/RELEASE_NOTES_0.9.3.md",
"docs/RELEASE_NOTES_0.9.4.md",
"docs/RELEASE_NOTES_0.9.5.md",
"docs/RELEASE_NOTES_0.10.0.md",
"docs/RELEASE_NOTES_0.10.1.md",
"docs/RELEASE_NOTES_0.10.2.md",
"docs/RELEASE_NOTES_0.10.3.md",
"docs/RELEASE_NOTES_0.10.4.md",
"docs/RELEASE_NOTES_0.10.5.md",
"docs/RELEASE_NOTES_0.10.6.md",
"docs/RELEASE_NOTES_0.10.7.md",
"docs/RELEASE_NOTES_0.10.8.md",
"docs/RELEASE_NOTES_0.10.9.md",
"docs/RELEASE_NOTES_0.10.10.md",
"docs/RELEASE_NOTES_0.10.11.md",
"docs/RELEASE_NOTES_0.10.12.md",
"docs/UPDATING.md",
"docs/DIAGNOSTICS.md",
"docs/DEPLOYMENT_SETUP.md",
@@ -107,9 +130,9 @@ for (const file of required) await access(path.join(root, file));
const packageJson = JSON.parse(
await readFile(path.join(root, "package.json"), "utf8"),
);
if (packageJson.version !== "0.8.8")
if (packageJson.version !== "0.10.12")
throw new Error(
`Expected package version 0.8.8, got ${packageJson.version}.`,
`Expected package version 0.10.12, got ${packageJson.version}.`,
);
const sourceManifest = await readFile(
path.join(root, "SOURCE_MANIFEST.txt"),
@@ -302,13 +325,17 @@ if (
)
throw new Error("PowerShell update helper must start directly with param(.");
const renderer = await readFile(path.join(root, "src/renderer/app.js"), "utf8");
const renderer = (await Promise.all(["app.js", "views.js", "dialogs.js", "operations.js", "actions/shell.js", "actions/inventory.js", "actions/deployment-profile.js", "actions/deployment-operation.js", "actions/setup-and-settings.js", "actions/recovery.js", "actions/command.js", "events.js"].map((file) =>
readFile(path.join(root, "src/renderer", file), "utf8"),
))).join("\n");
const styles = await readFile(
path.join(root, "src/renderer/styles.css"),
"utf8",
);
const preload = await readFile(path.join(root, "preload.cjs"), "utf8");
const ipc = await readFile(path.join(root, "src/main/ipc.cjs"), "utf8");
const ipc = (await Promise.all(["ipc.cjs", "ipc/repository-handlers.cjs", "ipc/deployment-handlers.cjs", "ipc/operations-handlers.cjs"].map((file) =>
readFile(path.join(root, "src/main", file), "utf8"),
))).join("\n");
for (const phrase of [
'data-action="commit-push"',
"checkForUpdates",
@@ -344,18 +371,165 @@ for (const channel of [
"repository:repair-sync",
"deployment:apply-dockerman-metadata",
"deployment:reconcile",
"deployment:link-server-workload",
]) {
if (!ipc.includes(channel))
throw new Error(`IPC registration is missing: ${channel}`);
}
const release090 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.9.0.md"), "utf8");
for (const phrase of [
"Push bundle",
"manual wizard",
"Monitor only",
"DockerMan templates",
"SHA-256",
]) {
if (!release090.includes(phrase)) throw new Error(`0.9.0 release notes are missing: ${phrase}`);
}
const release091 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.9.1.md"), "utf8");
for (const phrase of [
"browser_download_url",
"cross-origin",
"manual installer",
"in-app updates",
]) {
if (!release091.includes(phrase)) throw new Error(`0.9.1 release notes are missing: ${phrase}`);
}
const release092 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.9.2.md"), "utf8");
for (const phrase of [
"Push bundle",
"server password",
"docker ps -a",
"DockerMan",
"zero counts",
]) {
if (!release092.includes(phrase)) throw new Error(`0.9.2 release notes are missing: ${phrase}`);
}
const release093 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.9.3.md"), "utf8");
for (const phrase of [
"Direct copy",
"Compose YAML",
"linked automatically",
"one-click",
"no remote `git ls-remote`",
]) {
if (!release093.includes(phrase)) throw new Error(`0.9.3 release notes are missing: ${phrase}`);
}
const release094 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.9.4.md"), "utf8");
for (const phrase of [
"real Compose files",
"stale service hints",
"force-recreate",
"container ID",
"previous container",
]) {
if (!release094.includes(phrase)) throw new Error(`0.9.4 release notes are missing: ${phrase}`);
}
const release095 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.9.5.md"), "utf8");
for (const phrase of [
"Check / fix write access",
"exact path, user, owner, group and mode",
"preserves existing executable bits",
"never implicitly executes `docker compose down`",
"retains the backup evidence",
]) {
if (!release095.includes(phrase)) throw new Error(`0.9.5 release notes are missing: ${phrase}`);
}
const release0100 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.0.md"), "utf8");
for (const phrase of [
"Server pull",
"read-only deploy key",
"automatic discovery",
"Git Validator",
"SSH host fingerprint",
]) {
if (!release0100.includes(phrase)) throw new Error(`0.10.0 release notes are missing: ${phrase}`);
}
const release0101 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.1.md"), "utf8");
for (const phrase of ["certificate-free updates", "case-insensitive", "read-only deploy keys", "SHA-256"]) {
if (!release0101.includes(phrase)) throw new Error(`0.10.1 release notes are missing: ${phrase}`);
}
const release0102 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.2.md"), "utf8");
for (const phrase of ["internal HTTP", "public HTTPS", "same-origin", "SHA-256"]) {
if (!release0102.includes(phrase)) throw new Error(`0.10.2 release notes are missing: ${phrase}`);
}
const release0103 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.3.md"), "utf8");
for (const phrase of ["concurrently", "debounce", "animation frame", "Git Validator", "stale or forged"]) {
if (!release0103.includes(phrase)) throw new Error(`0.10.3 release notes are missing: ${phrase}`);
}
const release0104 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.4.md"), "utf8");
for (const phrase of ["Windows PowerShell 5.1", "atomic status", "handshake-only", "existing installations"]) {
if (!release0104.includes(phrase)) throw new Error(`0.10.4 release notes are missing: ${phrase}`);
}
const release0105 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.5.md"), "utf8");
for (const phrase of ["repository workspace", "resolved profile", "Link unresolved", "reconciliation", "server workload"]) {
if (!release0105.includes(phrase)) throw new Error(`0.10.5 release notes are missing: ${phrase}`);
}
const release0106 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.6.md"), "utf8");
for (const phrase of ["detached", "PowerShell", "production Node spawn", "source updater", "one-time direct installation"]) {
if (!release0106.includes(phrase)) throw new Error(`0.10.6 release notes are missing: ${phrase}`);
}
const release0107 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.7.md"), "utf8");
for (const phrase of ["exact provenance", "automatic", "repository sidebar", "DevRunbook", "no container changes"]) {
if (!release0107.includes(phrase)) throw new Error(`0.10.7 release notes are missing: ${phrase}`);
}
const release0108 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.8.md"), "utf8");
for (const phrase of ["Get-FileHash", ".NET SHA-256", "PSModulePath", "binary", "source update helpers"]) {
if (!release0108.includes(phrase)) throw new Error(`0.10.8 release notes are missing: ${phrase}`);
}
const release0109 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.9.md"), "utf8");
for (const phrase of ["containers without healthchecks", "single-instance", "exact Gitea commit", "deploy-ready", "no containers are changed"]) {
if (!release0109.includes(phrase)) throw new Error(`0.10.9 release notes are missing: ${phrase}`);
}
const release01010 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.10.md"), "utf8");
for (const phrase of ["read-only deploy keys", "repository deployment root", "Compose working directory", "Fix write access", "exact Gitea commit"]) {
if (!release01010.includes(phrase)) throw new Error(`0.10.10 release notes are missing: ${phrase}`);
}
const release01011 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.11.md"), "utf8");
for (const phrase of ["last-known-good", "closed output pipe", "linked checkout origin", "read-only deploy key", "browser test server"]) {
if (!release01011.includes(phrase)) throw new Error(`0.10.11 release notes are missing: ${phrase}`);
}
const release01012 = await readFile(path.join(root, "docs/RELEASE_NOTES_0.10.12.md"), "utf8");
for (const phrase of ["coalesced", "exact Gitea commit parity", "batched Docker inspect", "bounded worker pools", "stopped container"]) {
if (!release01012.includes(phrase)) throw new Error(`0.10.12 release notes are missing: ${phrase}`);
}
const configSource = await readFile(path.join(root, "src/main/config-store.cjs"), "utf8");
for (const mode of ["server-git", "push-bundle", "monitor-only"]) {
if (!configSource.includes(mode)) throw new Error(`Deployment configuration is missing mode: ${mode}`);
}
const unraidDirectSource = (await Promise.all([
"unraid-deployment-service.cjs", "unraid-access-methods.cjs", "unraid-preflight-methods.cjs",
"unraid-runtime-methods.cjs", "unraid-deployment-methods.cjs", "unraid-inventory-methods.cjs", "unraid-state-methods.cjs",
].map((file) => readFile(path.join(root, "src/main", file), "utf8")))).join("\n");
for (const requiredPhrase of [
"executePushBundle",
"executeServerGitBundle",
"configureServerGitAccess",
"server-git-access",
"git ls-remote --exit-code",
"repository-scoped read-only deploy key",
]) {
if (!unraidDirectSource.includes(requiredPhrase)) throw new Error(`Deployment source is missing: ${requiredPhrase}`);
}
const serverInventorySource = await readFile(path.join(root, "src/main/server-inventory.cjs"), "utf8");
for (const requiredPhrase of ["server-compose-file", "composeDefinitions", "remoteFolderCandidate"]) {
if (!serverInventorySource.includes(requiredPhrase)) throw new Error(`Server inventory source is missing: ${requiredPhrase}`);
}
const giteaUpdateSource = await readFile(path.join(root, "src/main/gitea-service.cjs"), "utf8");
for (const phrase of [
"browser_download_url",
"insecure cross-origin",
"downloadReleaseAsset",
]) {
if (!giteaUpdateSource.includes(phrase)) throw new Error(`0.9.1 updater repair is missing: ${phrase}`);
}
const gitSource = await readFile(
path.join(root, "src/main/git-service.cjs"),
"utf8",
);
const unraidSource = await readFile(
path.join(root, "src/main/unraid-deployment-service.cjs"),
"utf8",
);
const unraidSource = unraidDirectSource;
const publisher = await readFile(
path.join(root, "Publish-ForgeFlow-Release.ps1"),
"utf8",
@@ -378,6 +552,9 @@ for (const phrase of [
"iconCacheRefresh",
"[PORT:",
"Superseded by live commit",
"pushBundleScript",
"linkServerWorkload",
"deploymentMode",
]) {
if (!unraidSource.includes(phrase))
throw new Error(`Unraid recovery implementation is missing: ${phrase}`);
+12
View File
@@ -1,12 +1,16 @@
import { createHash } from "node:crypto";
import { readFile, writeFile } from "node:fs/promises";
import { execFile } from "node:child_process";
import { promisify } from "node:util";
import path from "node:path";
import { fileURLToPath } from "node:url";
const root = path.resolve(path.dirname(fileURLToPath(import.meta.url)), "..");
const execFileAsync = promisify(execFile);
const manifest = JSON.parse(
await readFile(path.join(root, "package.json"), "utf8"),
);
const artifacts = [];
for (const kind of ["Setup", "Portable"]) {
const name = `ForgeFlow-${kind}-${manifest.version}-win-x64.exe`;
const binary = await readFile(path.join(root, "dist", name));
@@ -17,4 +21,12 @@ for (const kind of ["Setup", "Portable"]) {
"utf8",
);
console.log(`${name}: ${sha256}`);
artifacts.push({ name, sha256 });
}
const commit = String(process.env.FORGEFLOW_BUILD_COMMIT || (await execFileAsync("git", ["rev-parse", "HEAD"], { cwd: root })).stdout).trim();
const buildId = String(process.env.FORGEFLOW_BUILD_ID || `${manifest.version}-${commit.slice(0, 12)}`);
const provenance = { schemaVersion: 1, product: "ForgeFlow", version: manifest.version, commit, buildId, createdAt: new Date().toISOString(), signedRelease: process.env.FORGEFLOW_SIGNED_RELEASE === "1", expectedPublisher: process.env.FORGEFLOW_EXPECTED_PUBLISHER || null, artifacts };
await writeFile(path.join(root, "dist", `ForgeFlow-${manifest.version}-provenance.json`), `${JSON.stringify(provenance, null, 2)}\n`, "utf8");
const lock = JSON.parse(await readFile(path.join(root, "package-lock.json"), "utf8"));
const components = Object.entries(lock.packages || {}).filter(([name]) => name.startsWith("node_modules/")).map(([name, value]) => ({ type: "library", name: name.slice(13), version: value.version || "unknown", licenses: value.license ? [{ license: { id: value.license } }] : undefined })).sort((a, b) => a.name.localeCompare(b.name));
await writeFile(path.join(root, "dist", `ForgeFlow-${manifest.version}-sbom.cdx.json`), `${JSON.stringify({ bomFormat: "CycloneDX", specVersion: "1.5", serialNumber: `urn:uuid:${buildId}`, version: 1, metadata: { component: { type: "application", name: "ForgeFlow", version: manifest.version } }, components }, null, 2)}\n`, "utf8");
+150 -18
View File
@@ -4,10 +4,10 @@ const fs = require('node:fs/promises');
const path = require('node:path');
const crypto = require('node:crypto');
const { safeStorage } = require('electron');
const { assertHttpUrl, assertWorkflowFileName, assertBranchName, assertEnvironmentName, assertCloneRemote, assertRepositoryRelativePaths } = require('../shared/validation.cjs');
const { assertHttpUrl, assertWorkflowFileName, assertBranchName, assertEnvironmentName, assertCloneRemote, assertRepositoryRelativePath, assertRepositoryRelativePaths } = require('../shared/validation.cjs');
const DEFAULT_CONFIG = {
schemaVersion: 8,
schemaVersion: 13,
setupComplete: false,
appearance: 'dark',
gitea: { baseUrl: '', user: null, encryptedToken: null },
@@ -15,6 +15,8 @@ const DEFAULT_CONFIG = {
repositoryMappings: {},
deploymentProfiles: {},
deploymentStates: {},
inventoryReviewDecisions: {},
gitValidator: { policies: {}, suppressions: {}, trends: {} },
favorites: [],
updates: {
owner: 'Jens',
@@ -65,6 +67,12 @@ class ConfigStore {
gitea: { ...DEFAULT_CONFIG.gitea, ...(source.gitea || {}) },
workspaceRoots: uniqueStrings(source.workspaceRoots),
repositoryMappings: source.repositoryMappings && typeof source.repositoryMappings === 'object' ? source.repositoryMappings : {},
inventoryReviewDecisions: source.inventoryReviewDecisions && typeof source.inventoryReviewDecisions === 'object' ? structuredClone(source.inventoryReviewDecisions) : {},
gitValidator: {
policies: source.gitValidator?.policies && typeof source.gitValidator.policies === 'object' ? structuredClone(source.gitValidator.policies) : {},
suppressions: source.gitValidator?.suppressions && typeof source.gitValidator.suppressions === 'object' ? structuredClone(source.gitValidator.suppressions) : {},
trends: source.gitValidator?.trends && typeof source.gitValidator.trends === 'object' ? structuredClone(source.gitValidator.trends) : {}
},
deploymentProfiles: source.deploymentProfiles && typeof source.deploymentProfiles === 'object'
? Object.fromEntries(Object.entries(source.deploymentProfiles).map(([key, profiles]) => [key, (Array.isArray(profiles) ? profiles : []).map((profile) => {
if (!profile || typeof profile !== 'object' || profile.provider !== 'ssh-unraid') return profile;
@@ -76,11 +84,32 @@ class ConfigStore {
: iconFilePath ? 'upload' : iconUrl && !/itworx\.tech\/assets\/itworx-icon\.png/i.test(iconUrl) ? 'url' : 'builtin';
const visibleName = String(profile.containerName || profile.remoteFolder || '').trim();
const internalService = String(profile.composeService || profile.remoteFolder || 'app').trim().toLowerCase().replace(/[^a-z0-9._-]/g, '-') || 'app';
return { ...profile, composeService: internalService, containerName: visibleName || internalService, iconMode };
const requestedDeploymentMode = String(profile.deploymentMode || '').trim();
const deploymentMode = ['push-bundle', 'server-git', 'monitor-only'].includes(requestedDeploymentMode)
? requestedDeploymentMode
: 'push-bundle';
const composeFiles = uniqueStrings(profile.composeFiles || [profile.composeFile || 'docker-compose.yml']);
const composeServices = uniqueStrings(profile.composeServices || [internalService]).map((value) => value.toLowerCase());
return {
...profile,
deploymentMode,
composeFile: composeFiles[0] || 'docker-compose.yml',
composeFiles: composeFiles.length ? composeFiles : ['docker-compose.yml'],
composeServices,
composeProject: String(profile.composeProject || '').trim(),
composeWorkingDir: String(profile.composeWorkingDir || '').trim(),
composeService: internalService,
containerName: visibleName || internalService,
iconMode,
manageDockerMan: profile.manageDockerMan === true,
forceRecreate: profile.forceRecreate === true,
removeOrphans: profile.removeOrphans === true,
workloadIdentity: profile.workloadIdentity && typeof profile.workloadIdentity === 'object' ? structuredClone(profile.workloadIdentity) : null
};
})]))
: {},
deploymentStates: source.deploymentStates && typeof source.deploymentStates === 'object' ? source.deploymentStates : {},
favorites: uniqueStrings(source.favorites).map((item) => item.toLowerCase()),
favorites: [...new Set(uniqueStrings(source.favorites).map((item) => item.toLowerCase()))],
updates: { ...DEFAULT_CONFIG.updates, ...(source.updates || {}) },
servers: Array.isArray(source.servers) ? source.servers.filter((item) => item && typeof item === 'object') : [],
preferences: { ...DEFAULT_CONFIG.preferences, ...(source.preferences || {}) },
@@ -121,6 +150,49 @@ class ConfigStore {
return this.saveQueue;
}
getGitValidatorState(fullName) {
const key = String(fullName || '').toLowerCase();
return {
policy: structuredClone(this.data.gitValidator.policies[key] || { id: 'standard' }),
suppressions: structuredClone(this.data.gitValidator.suppressions[key] || []),
trends: structuredClone(this.data.gitValidator.trends[key] || [])
};
}
async setGitValidatorPolicy(fullName, policy) {
const key = String(fullName || '').toLowerCase();
this.data.gitValidator.policies[key] = structuredClone(policy);
await this.save();
return this.getGitValidatorState(key);
}
async addGitValidatorSuppression(fullName, suppression) {
const key = String(fullName || '').toLowerCase();
this.data.gitValidator.suppressions[key] = [...(this.data.gitValidator.suppressions[key] || []), structuredClone(suppression)].slice(-250);
await this.save();
return this.getGitValidatorState(key);
}
async appendGitValidatorTrend(fullName, trend) {
const key = String(fullName || '').toLowerCase();
this.data.gitValidator.trends[key] = [...(this.data.gitValidator.trends[key] || []), structuredClone(trend)].slice(-100);
await this.save();
return this.getGitValidatorState(key);
}
async createRecoverySnapshot(reason = 'configuration-change') {
await this.saveQueue.catch(() => {});
const safeReason = String(reason || 'configuration-change').toLowerCase().replace(/[^a-z0-9._-]+/g, '-').replace(/^-+|-+$/g, '').slice(0, 80) || 'configuration-change';
const timestamp = new Date().toISOString().replace(/[:.]/g, '-');
const snapshotDirectory = path.join(path.dirname(this.filePath), 'snapshots');
const snapshotPath = path.join(snapshotDirectory, `${timestamp}-${safeReason}.json`);
await fs.mkdir(snapshotDirectory, { recursive: true });
await fs.writeFile(snapshotPath, `${JSON.stringify(this.data, null, 2)}\n`, { mode: 0o600, flag: 'wx' });
try { await fs.chmod(snapshotDirectory, 0o700); } catch {}
try { await fs.chmod(snapshotPath, 0o600); } catch {}
return { filePath: snapshotPath, reason: safeReason, createdAt: new Date().toISOString() };
}
setToken(token, { preserveExisting = false } = {}) {
const value = String(token || '').trim();
if (!value && preserveExisting && this.getToken()) return { persistent: Boolean(this.data.gitea.encryptedToken), preserved: true };
@@ -130,7 +202,7 @@ class ConfigStore {
return { persistent: true, preserved: false };
}
if (safeStorage.isEncryptionAvailable()) {
if (safeStorage?.isEncryptionAvailable?.()) {
this.data.gitea.encryptedToken = safeStorage.encryptString(value).toString('base64');
this.sessionToken = null;
return { persistent: true, preserved: false };
@@ -145,7 +217,7 @@ class ConfigStore {
if (this.sessionToken) return this.sessionToken;
if (!this.data.gitea.encryptedToken) return '';
try {
return safeStorage.decryptString(Buffer.from(this.data.gitea.encryptedToken, 'base64'));
return safeStorage?.decryptString?.(Buffer.from(this.data.gitea.encryptedToken, 'base64')) || '';
} catch {
return '';
}
@@ -155,7 +227,7 @@ class ConfigStore {
encryptSecret(value) {
const text = String(value || '');
if (!text) return null;
if (!safeStorage.isEncryptionAvailable()) {
if (!safeStorage?.isEncryptionAvailable?.()) {
const error = new Error('Secure credential storage is unavailable. ForgeFlow will not persist server passwords or key passphrases.');
error.code = 'SECURE_STORAGE_UNAVAILABLE';
throw error;
@@ -165,7 +237,7 @@ class ConfigStore {
decryptSecret(value) {
if (!value) return '';
try { return safeStorage.decryptString(Buffer.from(value, 'base64')); }
try { return safeStorage?.decryptString?.(Buffer.from(value, 'base64')) || ''; }
catch { return ''; }
}
@@ -177,11 +249,13 @@ class ConfigStore {
const port = Math.min(Math.max(Number(source.port || existing?.port || 22), 1), 65535);
const username = String(source.username || existing?.username || '').trim();
if (!username || /[\s@]/.test(username)) throw new Error('Enter a valid SSH username.');
const authType = ['password', 'privateKey'].includes(source.authType) ? source.authType : (existing?.authType || 'privateKey');
const authType = ['password', 'privateKey'].includes(source.authType) ? source.authType : (existing?.authType || 'password');
const basePath = String(source.basePath || existing?.basePath || '/mnt/user/appdata').trim().replace(/\/+$/, '');
if (!basePath.startsWith('/') || /[\r\n\0]/.test(basePath)) throw new Error('The server base path must be an absolute Unix path.');
const privateKeyPath = String(source.privateKeyPath || existing?.privateKeyPath || '').trim();
const hostFingerprint = String(source.hostFingerprint || existing?.hostFingerprint || '').trim();
const scanRoots = uniqueStrings(source.scanRoots || existing?.scanRoots || [basePath]).map((value) => value.replace(/\/+$/, '')).filter((value) => value.startsWith('/') && !/[\r\n\0]/.test(value));
const scanExcludes = uniqueStrings(source.scanExcludes || existing?.scanExcludes || ['backups', 'archives', 'releases', 'staging', 'testdata']).filter((value) => /^[a-zA-Z0-9._*-]+$/.test(value));
return {
id: source.id || existing?.id || crypto.randomUUID(),
name,
@@ -190,6 +264,8 @@ class ConfigStore {
username,
authType,
basePath,
scanRoots: scanRoots.length ? scanRoots : [basePath],
scanExcludes,
privateKeyPath,
hostFingerprint,
encryptedPassword: existing?.encryptedPassword || null,
@@ -223,10 +299,13 @@ class ConfigStore {
async deleteServer(serverId) {
this.data.servers = this.data.servers.filter((item) => item.id !== serverId);
const removedProfileIds = new Set();
for (const [key, profiles] of Object.entries(this.data.deploymentProfiles)) {
for (const profile of profiles) if (profile.serverId === serverId) removedProfileIds.add(profile.id);
this.data.deploymentProfiles[key] = profiles.filter((profile) => profile.serverId !== serverId);
if (!this.data.deploymentProfiles[key].length) delete this.data.deploymentProfiles[key];
}
for (const profileId of removedProfileIds) delete this.data.deploymentStates[profileId];
await this.save();
}
@@ -357,21 +436,41 @@ class ConfigStore {
inputs: {}
};
if (provider === 'ssh-unraid') {
const remoteFolder = String(profile.remoteFolder || '').trim();
if (!remoteFolder || !/^[a-zA-Z0-9._-]+$/.test(remoteFolder)) throw new Error('Remote folder must contain only letters, numbers, dots, underscores and dashes.');
const remoteFolder = assertRepositoryRelativePath(String(profile.remoteFolder || '').trim());
if (!remoteFolder || remoteFolder === '.' || remoteFolder.split('/').some((part) => !part || part === '.')) throw new Error('Remote folder must be a safe path relative to the configured server base path.');
const preservePaths = assertRepositoryRelativePaths(uniqueStrings(profile.preservePaths || ['.env', 'appdata', 'data', 'logs', 'config', 'compose.override.yml']));
const composeFiles = assertRepositoryRelativePaths(uniqueStrings(profile.composeFiles || [profile.composeFile || 'docker-compose.yml']));
if (!composeFiles.length && profile.generatedCompose !== true) throw new Error('Select at least one Compose file.');
const composeService = (() => {
const value = String(profile.composeService || profile.composeServices?.[0] || remoteFolder.split('/').pop()).trim().toLowerCase();
if (!/^[a-z0-9._-]+$/.test(value)) throw new Error('Compose service must be lowercase and contain only letters, numbers, dots, underscores and dashes.');
return value;
})();
const composeServices = uniqueStrings(profile.composeServices || [composeService]).map((value) => {
const normalized = String(value).trim().toLowerCase();
if (!/^[a-z0-9._-]+$/.test(normalized)) throw new Error('Compose services must be lowercase and contain only letters, numbers, dots, underscores and dashes.');
return normalized;
});
const composeProject = String(profile.composeProject || '').trim();
if (composeProject && !/^[A-Za-z0-9][A-Za-z0-9_.-]*$/.test(composeProject)) throw new Error('Compose project name contains unsupported characters.');
const composeWorkingDir = String(profile.composeWorkingDir || '').trim();
if (composeWorkingDir && (!composeWorkingDir.startsWith('/') || /[\r\n\0]/.test(composeWorkingDir))) throw new Error('Compose working directory must be an absolute safe Unix path.');
const deploymentMode = ['push-bundle', 'server-git', 'monitor-only'].includes(profile.deploymentMode)
? profile.deploymentMode
: 'push-bundle';
return {
...common,
serverId: String(profile.serverId || '').trim(),
remoteFolder,
composeFile: String(profile.composeFile || 'docker-compose.yml').trim(),
composeService: (() => {
const value = String(profile.composeService || remoteFolder).trim().toLowerCase();
if (!/^[a-z0-9._-]+$/.test(value)) throw new Error('Compose service must be lowercase and contain only letters, numbers, dots, underscores and dashes.');
return value;
})(),
deploymentMode,
composeFile: composeFiles[0] || 'docker-compose.yml',
composeFiles: composeFiles.length ? composeFiles : ['docker-compose.yml'],
composeProject,
composeWorkingDir,
composeService,
composeServices,
containerName: (() => {
const value = String(profile.containerName || remoteFolder).trim();
const value = String(profile.containerName || remoteFolder.split('/').pop()).trim();
if (!/^[A-Za-z0-9._-]+$/.test(value)) throw new Error('Container name must contain only letters, numbers, dots, underscores and dashes.');
return value;
})(),
@@ -390,6 +489,17 @@ class ConfigStore {
generatedCompose: profile.generatedCompose === true,
adoptedFromServer: profile.adoptedFromServer === true,
serverSourceOfTruth: profile.serverSourceOfTruth === true,
manageDockerMan: profile.manageDockerMan === true,
forceRecreate: profile.forceRecreate === true,
removeOrphans: profile.removeOrphans === true,
workloadIdentity: profile.workloadIdentity && typeof profile.workloadIdentity === 'object' ? structuredClone(profile.workloadIdentity) : null,
serverGitAccess: profile.serverGitAccess && typeof profile.serverGitAccess === 'object' ? {
configured: profile.serverGitAccess.configured === true,
deployKeyId: Number.isFinite(Number(profile.serverGitAccess.deployKeyId)) ? Number(profile.serverGitAccess.deployKeyId) : null,
keyFingerprint: String(profile.serverGitAccess.keyFingerprint || '').trim().slice(0, 200) || null,
hostFingerprint: String(profile.serverGitAccess.hostFingerprint || '').trim().slice(0, 200) || null,
configuredAt: profile.serverGitAccess.configuredAt || null
} : null,
detectedAt: profile.detectedAt || null,
provenance: profile.provenance && typeof profile.provenance === 'object' ? structuredClone(profile.provenance) : {},
detectedMetadata: profile.detectedMetadata && typeof profile.detectedMetadata === 'object' ? structuredClone(profile.detectedMetadata) : {},
@@ -435,6 +545,27 @@ class ConfigStore {
return this.getDeploymentProfiles(fullName).find((item) => item.id === profileId) || null;
}
getInventoryReviewDecisions(serverId) {
return structuredClone(this.data.inventoryReviewDecisions[String(serverId || '')] || []);
}
async saveInventoryReviewDecision(serverId, decision) {
const key = String(serverId || '');
if (!key || !decision?.workloadId || !/^[0-9a-f]{64}$/i.test(String(decision.evidenceHash || ''))) throw new Error('A server, workload and evidence hash are required for an inventory review decision.');
const decisions = this.getInventoryReviewDecisions(key).filter((item) => item.workloadId !== decision.workloadId);
decisions.push(structuredClone(decision));
this.data.inventoryReviewDecisions[key] = decisions;
await this.save();
return structuredClone(decision);
}
async deleteInventoryReviewDecision(serverId, workloadId) {
const key = String(serverId || '');
this.data.inventoryReviewDecisions[key] = this.getInventoryReviewDecisions(key).filter((item) => item.workloadId !== workloadId);
await this.save();
return this.getInventoryReviewDecisions(key);
}
async saveDeploymentState(profileId, state) {
this.data.deploymentStates[profileId] = {
...(this.data.deploymentStates[profileId] || {}),
@@ -507,6 +638,7 @@ class ConfigStore {
repositoryMappings: { ...this.data.repositoryMappings },
deploymentProfiles: structuredClone(this.data.deploymentProfiles),
deploymentStates: structuredClone(this.data.deploymentStates),
gitValidator: structuredClone(this.data.gitValidator),
favorites: [...this.data.favorites],
updates: { ...this.data.updates },
servers: this.data.servers.map((server) => this.getPublicServer(server)),
+191
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@@ -0,0 +1,191 @@
"use strict";
const crypto = require("node:crypto");
function stable(value) {
if (Array.isArray(value)) return value.map(stable);
if (value && typeof value === "object") return Object.fromEntries(Object.keys(value).sort().map((key) => [key, stable(value[key])]));
return value;
}
function planId(value) {
return crypto.createHash("sha256").update(JSON.stringify(stable(value))).digest("hex");
}
function keyMaterial(value) {
return String(value || "").trim().split(/\s+/).slice(0, 2).join(" ");
}
class DeployKeyLifecycleService {
constructor({ store, gitea, keyHost, audit = null, clock = () => new Date().toISOString() }) {
this.store = store;
this.gitea = gitea;
this.keyHost = keyHost;
this.audit = audit;
this.clock = clock;
}
coordinates(repository) {
const [owner, repo] = String(repository?.fullName || "").split("/");
if (!owner || !repo) throw Object.assign(new Error("A full Gitea repository name is required."), { code: "DEPLOY_KEY_REPOSITORY_REQUIRED" });
return { owner, repo };
}
profile(repository, profileId) {
const profile = this.store.getDeploymentProfile(repository.fullName, profileId);
if (!profile) throw Object.assign(new Error("Deployment profile not found."), { code: "DEPLOY_KEY_PROFILE_NOT_FOUND" });
const server = this.store.getServer(profile.serverId);
if (!server) throw Object.assign(new Error("Deployment server not found."), { code: "DEPLOY_KEY_SERVER_NOT_FOUND" });
return { profile, server };
}
configuredReferences() {
const references = [];
const configured = this.store.data?.deploymentProfiles
? Object.entries(this.store.data.deploymentProfiles).map(([fullName, profiles]) => ({ fullName, profiles }))
: (this.store.getRepositories?.() || []).map((repository) => ({ fullName: repository.fullName, profiles: this.store.getDeploymentProfiles(repository.fullName) || [] }));
for (const repository of configured) {
for (const profile of repository.profiles || []) {
if (!profile.serverGitAccess?.deployKeyId && !profile.serverGitAccess?.keyFingerprint) continue;
references.push({ repository: repository.fullName, profileId: profile.id, serverId: profile.serverId, keyId: profile.serverGitAccess.deployKeyId || null, fingerprint: profile.serverGitAccess.keyFingerprint || null });
}
}
return references;
}
async inventory({ repository, profileId }) {
const { profile, server } = this.profile(repository, profileId);
const { owner, repo } = this.coordinates(repository);
const [remoteKeys, serverKey] = await Promise.all([
this.gitea.listDeployKeys(owner, repo),
this.keyHost.inspect({ repository, profile, server }),
]);
const configuredId = Number(profile.serverGitAccess?.deployKeyId) || null;
const configured = remoteKeys.find((key) => Number(key.id) === configuredId) || null;
const material = keyMaterial(serverKey?.publicKey);
const matching = material ? remoteKeys.filter((key) => keyMaterial(key.key) === material) : [];
const references = this.configuredReferences();
const shared = references.filter((reference) => reference.fingerprint && reference.fingerprint === serverKey?.fingerprint && (reference.repository !== repository.fullName || reference.profileId !== profileId));
const conflicts = remoteKeys.filter((key) => key.read_only !== true && (!configuredId || Number(key.id) === configuredId || keyMaterial(key.key) === material));
const stale = Boolean(configuredId && !configured) || Boolean(profile.serverGitAccess?.keyFingerprint && serverKey?.fingerprint && profile.serverGitAccess.keyFingerprint !== serverKey.fingerprint);
const orphaned = remoteKeys.filter((key) => /ForgeFlow/i.test(String(key.title || "")) && !references.some((reference) => Number(reference.keyId) === Number(key.id)));
return {
repository: repository.fullName, profileId, server: { id: server.id, name: server.name },
configuredKey: configured ? { id: configured.id, title: configured.title, readOnly: configured.read_only === true, key: configured.key || null } : null,
serverKey, matchingKeys: matching.map((key) => ({ id: key.id, readOnly: key.read_only === true })),
stale, orphaned: orphaned.map((key) => ({ id: key.id, title: key.title })), shared, conflicts: conflicts.map((key) => ({ id: key.id, title: key.title, readOnly: false })),
ready: Boolean(configured && configured.read_only === true && serverKey?.privateKeyPresent && serverKey?.fingerprint === profile.serverGitAccess?.keyFingerprint && !shared.length && !conflicts.length),
checkedAt: this.clock(),
};
}
async planRotation({ repository, profileId }) {
const evidence = await this.inventory({ repository, profileId });
const plan = {
operation: "rotate-deploy-key", repository: repository.fullName, profileId,
currentKeyId: evidence.configuredKey?.id || null, currentFingerprint: evidence.serverKey?.fingerprint || null,
serverId: evidence.server.id, impact: ["Generate a new private key on the linked server", "Register only its public key in this repository", "Verify read-only branch access", "Switch the profile atomically", "Revoke the previous key after the switch"],
recovery: "The previous server key and profile metadata remain recoverable until post-rotation verification succeeds.", evidence,
};
plan.id = planId(plan);
await this.audit?.append?.("deployment.deploy-key-rotation-planned", { repository: repository.fullName, profileId, planId: plan.id });
return plan;
}
async rotate({ repository, profileId, expectedPlanId }) {
const plan = await this.planRotation({ repository, profileId });
if (!expectedPlanId) throw Object.assign(new Error("Review a deploy-key rotation plan before applying it."), { code: "DEPLOY_KEY_ROTATION_PLAN_REQUIRED", plan });
if (expectedPlanId !== plan.id) throw Object.assign(new Error("Deploy-key evidence changed after preview. Review a fresh plan."), { code: "DEPLOY_KEY_ROTATION_PLAN_STALE", plan });
const { profile, server } = this.profile(repository, profileId);
const { owner, repo } = this.coordinates(repository);
const snapshot = await this.store.createRecoverySnapshot?.(`deploy-key-rotation:${repository.fullName}:${profileId}`);
const previous = { profile: structuredClone(profile), key: await this.keyHost.backup({ repository, profile, server }), remoteKey: plan.evidence.configuredKey };
let candidate = null;
let registered = null;
let switched = false;
let oldRevoked = false;
try {
candidate = await this.keyHost.generate({ repository, profile, server });
if (!candidate?.publicKey || !candidate?.fingerprint || candidate.privateKey) throw Object.assign(new Error("The server did not return safe public-key evidence."), { code: "DEPLOY_KEY_CANDIDATE_INVALID" });
registered = await this.gitea.createReadOnlyDeployKey({ owner, repo, title: `ForgeFlow · ${server.name} · ${candidate.fingerprint.slice(-12)}`, publicKey: candidate.publicKey });
if (registered.read_only !== true) throw Object.assign(new Error("Gitea registered the candidate with write access."), { code: "DEPLOY_KEY_NOT_READ_ONLY" });
const proof = await this.keyHost.verifyCandidate({ repository, profile, server, candidate, keyId: registered.id });
if (!proof?.ready || proof.fingerprint !== candidate.fingerprint) throw Object.assign(new Error("The candidate deploy key could not prove read-only repository access."), { code: "DEPLOY_KEY_CANDIDATE_VERIFICATION_FAILED", proof });
await this.keyHost.preflightCandidate({ repository, profile, server, candidate, proof });
await this.keyHost.promote({ repository, profile, server, candidate, previous });
const updated = await this.store.saveDeploymentProfile(repository.fullName, { ...profile, serverGitAccess: { configured: true, deployKeyId: registered.id, keyFingerprint: candidate.fingerprint, hostFingerprint: proof.hostFingerprint, configuredAt: this.clock(), rotatedAt: this.clock(), previousKeyId: previous.remoteKey?.id || null } });
switched = true;
if (previous.remoteKey?.id) {
await this.gitea.deleteDeployKey(owner, repo, previous.remoteKey.id);
oldRevoked = true;
}
const post = await this.keyHost.verifyActive({ repository, profile: updated, server });
if (!post?.ready || post.fingerprint !== candidate.fingerprint) throw Object.assign(new Error("Post-rotation verification failed."), { code: "DEPLOY_KEY_POST_ROTATION_FAILED", post });
await this.keyHost.commit({ repository, profile: updated, server, candidate, previous });
await this.audit?.append?.("deployment.deploy-key-rotated", { repository: repository.fullName, profileId, oldKeyId: previous.remoteKey?.id || null, newKeyId: registered.id, fingerprint: candidate.fingerprint, snapshot: snapshot?.filePath || null });
return { profile: updated, proof: post, snapshot, recovery: previous.key?.recovery || null };
} catch (error) {
try {
if (candidate) await this.keyHost.rollback({ repository, profile, server, candidate, previous });
if (registered?.id) await this.gitea.deleteDeployKey(owner, repo, registered.id).catch(() => {});
let restoredKey = null;
if (oldRevoked && previous.remoteKey?.key) restoredKey = await this.gitea.createReadOnlyDeployKey({ owner, repo, title: previous.remoteKey.title || `ForgeFlow · ${server.name} · restored`, publicKey: previous.remoteKey.key });
if (switched) await this.store.saveDeploymentProfile(repository.fullName, restoredKey ? { ...previous.profile, serverGitAccess: { ...previous.profile.serverGitAccess, deployKeyId: restoredKey.id } } : previous.profile);
} catch (rollbackError) {
error.rollbackError = rollbackError.message;
}
await this.audit?.append?.("deployment.deploy-key-rotation-failed", { repository: repository.fullName, profileId, code: error.code || "DEPLOY_KEY_ROTATION_FAILED", rollbackError: error.rollbackError || null });
throw error;
}
}
async planRevocation({ repository, profileId }) {
const evidence = await this.inventory({ repository, profileId });
const plan = { operation: "revoke-deploy-key", repository: repository.fullName, profileId, keyId: evidence.configuredKey?.id || null, fingerprint: evidence.serverKey?.fingerprint || null, linkedDeployments: [profileId], impact: ["Remove this repository deploy key from Gitea", "Disable server-pull deployment until restored", "Preserve server-side recovery material"], containersUnaffected: true, evidence };
plan.id = planId(plan);
return plan;
}
async revoke({ repository, profileId, expectedPlanId }) {
const plan = await this.planRevocation({ repository, profileId });
if (!expectedPlanId) throw Object.assign(new Error("Review revocation impact before applying it."), { code: "DEPLOY_KEY_REVOCATION_PLAN_REQUIRED", plan });
if (plan.id !== expectedPlanId) throw Object.assign(new Error("Deploy-key evidence changed after preview."), { code: "DEPLOY_KEY_REVOCATION_PLAN_STALE", plan });
const { profile, server } = this.profile(repository, profileId);
const { owner, repo } = this.coordinates(repository);
const snapshot = await this.store.createRecoverySnapshot?.(`deploy-key-revocation:${repository.fullName}:${profileId}`);
const recovery = await this.keyHost.backup({ repository, profile, server });
let remoteDeleted = false;
try {
if (plan.keyId) { await this.gitea.deleteDeployKey(owner, repo, plan.keyId); remoteDeleted = true; }
await this.keyHost.revoke({ repository, profile, server, recovery });
const updated = await this.store.saveDeploymentProfile(repository.fullName, { ...profile, serverGitAccess: { ...profile.serverGitAccess, configured: false, revokedAt: this.clock(), recoveryAvailable: true }, deploymentMode: "monitor-only" });
await this.audit?.append?.("deployment.deploy-key-revoked", { repository: repository.fullName, profileId, keyId: plan.keyId, snapshot: snapshot?.filePath || null });
return { profile: updated, snapshot, recovery: recovery?.recovery || null };
} catch (error) {
if (remoteDeleted && plan.evidence.configuredKey?.key) {
const restored = await this.gitea.createReadOnlyDeployKey({ owner, repo, title: plan.evidence.configuredKey.title || `ForgeFlow · ${server.name} · restored`, publicKey: plan.evidence.configuredKey.key });
await this.store.saveDeploymentProfile(repository.fullName, { ...profile, serverGitAccess: { ...profile.serverGitAccess, deployKeyId: restored.id } });
}
await this.keyHost.restore({ repository, profile, server }).catch(() => {});
await this.audit?.append?.("deployment.deploy-key-revocation-failed", { repository: repository.fullName, profileId, code: error.code || "DEPLOY_KEY_REVOCATION_FAILED" });
throw error;
}
}
async restore({ repository, profileId }) {
const { profile, server } = this.profile(repository, profileId);
const restored = await this.keyHost.restore({ repository, profile, server });
if (!restored?.publicKey || !restored?.fingerprint) throw Object.assign(new Error("No valid deploy-key recovery material exists."), { code: "DEPLOY_KEY_RECOVERY_UNAVAILABLE" });
const { owner, repo } = this.coordinates(repository);
const key = await this.gitea.createReadOnlyDeployKey({ owner, repo, title: `ForgeFlow · ${server.name} · restored`, publicKey: restored.publicKey });
if (key.read_only !== true) throw Object.assign(new Error("The restored key is not read-only."), { code: "DEPLOY_KEY_NOT_READ_ONLY" });
const proposed = { ...profile, deploymentMode: "server-git", serverGitAccess: { configured: true, deployKeyId: key.id, keyFingerprint: restored.fingerprint, hostFingerprint: restored.hostFingerprint, restoredAt: this.clock() } };
const proof = await this.keyHost.verifyActive({ repository, profile: proposed, server });
if (!proof?.ready) throw Object.assign(new Error("Restored access could not be verified."), { code: "DEPLOY_KEY_RECOVERY_VERIFICATION_FAILED" });
const updated = await this.store.saveDeploymentProfile(repository.fullName, proposed);
await this.audit?.append?.("deployment.deploy-key-restored", { repository: repository.fullName, profileId, keyId: key.id, fingerprint: restored.fingerprint });
return { profile: updated, proof };
}
}
module.exports = { DeployKeyLifecycleService, keyMaterial, deployKeyPlanId: planId };
+35
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@@ -0,0 +1,35 @@
"use strict";
const crypto = require("node:crypto");
const { normalizeRemoteUrl } = require("../shared/repository-match.cjs");
function canonicalRemote(value) {
const normalized = normalizeRemoteUrl(value);
return normalized ? `${normalized.host}/${normalized.path}`.toLowerCase() : "";
}
function deploymentIdentity({ workload, profile = null, repository = null }) {
const remote = canonicalRemote(workload?.metadata?.sourceRepository || repository?.sshUrl || repository?.cloneUrl || profile?.cloneUrl);
return {
repository: remote || String(workload?.link?.repositoryFullName || repository?.fullName || profile?._repositoryFullName || "").toLowerCase(),
branch: String(workload?.metadata?.branch || profile?.branch || repository?.defaultBranch || "").toLowerCase(),
serverId: String(workload?.serverId || profile?.serverId || ""),
environment: String(profile?.environment || "production").toLowerCase(),
composeProject: String(workload?.compose?.project || profile?.composeProject || "").toLowerCase(),
deploymentRoot: String(workload?.compose?.workingDir || profile?.composeWorkingDir || workload?.remoteFolderCandidate || profile?.remoteFolder || "").replace(/\\/g, "/").replace(/\/+$/, "").toLowerCase(),
containers: (workload?.containers || []).map((item) => String(item.id || item.name || "").toLowerCase()).sort(),
liveSha: String(workload?.metadata?.liveRevision || "").toLowerCase(),
profileId: String(profile?.id || workload?.link?.profileId || ""),
};
}
function evidenceHash(identity, evidence = {}) {
const stable = (value) => Array.isArray(value) ? value.map(stable) : value && typeof value === "object" ? Object.fromEntries(Object.keys(value).sort().map((key) => [key, stable(value[key])])) : value;
return crypto.createHash("sha256").update(JSON.stringify(stable({ identity, evidence }))).digest("hex");
}
function authorityKey(identity) {
return [identity.repository, identity.serverId, identity.environment].join("|");
}
module.exports = { canonicalDeploymentRemote: canonicalRemote, deploymentIdentity, deploymentEvidenceHash: evidenceHash, deploymentAuthorityKey: authorityKey };
+8 -1
View File
@@ -328,8 +328,15 @@ class DeploymentService {
async refreshActiveOperations() {
const active = this.store.data.operations.filter((item) => item.type === 'deployment' && !TERMINAL_STATUSES.has(item.status));
const queue = active.slice(0, 20);
const results = [];
for (const operation of active.slice(0, 20)) results.push(await this.refreshOperation(operation.id));
const workers = Array.from({ length: Math.min(4, queue.length) }, async () => {
while (queue.length) {
const operation = queue.shift();
results.push(await this.refreshOperation(operation.id));
}
});
await Promise.all(workers);
return results;
}
+89
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@@ -0,0 +1,89 @@
"use strict";
const crypto = require("node:crypto");
const PROFILE_DEFINITIONS = Object.freeze({
minimal: { label: "Minimal", requiredScore: 55, severities: ["error"], allowSuppressions: true, maxSuppressionDays: 180 },
standard: { label: "Standard", requiredScore: 70, severities: ["error", "warning"], allowSuppressions: true, maxSuppressionDays: 90 },
strict: { label: "Strict", requiredScore: 82, severities: ["error", "warning"], allowSuppressions: true, maxSuppressionDays: 30 },
production: { label: "Production", requiredScore: 90, severities: ["error", "warning"], allowSuppressions: true, maxSuppressionDays: 14 },
});
function normalizePolicy(policy = {}) {
const id = String(policy.id || policy.profile || "standard").toLowerCase();
const base = PROFILE_DEFINITIONS[id] || PROFILE_DEFINITIONS.standard;
const custom = id === "organization" ? policy : {};
return {
id,
label: custom.label || base.label || "Organization custom",
requiredScore: Math.min(100, Math.max(0, Number(custom.requiredScore ?? base.requiredScore ?? 80))),
enabledChecks: Array.isArray(custom.enabledChecks) ? [...new Set(custom.enabledChecks.map(String))] : null,
severityOverrides: custom.severityOverrides && typeof custom.severityOverrides === "object" ? { ...custom.severityOverrides } : {},
blockingChecks: [...new Set((custom.blockingChecks || policy.blockingChecks || []).map(String))],
blockingSeverities: [...new Set((custom.blockingSeverities || policy.blockingSeverities || base.severities || ["error"]).map(String))]
.filter((severity) => ["warning", "error"].includes(severity)),
allowSuppressions: custom.allowSuppressions ?? base.allowSuppressions ?? true,
maxSuppressionDays: Math.max(1, Number(custom.maxSuppressionDays ?? base.maxSuppressionDays ?? 30)),
};
}
function validateSuppression(input, policy, now = new Date()) {
if (!policy.allowSuppressions) throw new Error("The selected policy does not allow suppressions.");
const checkId = String(input?.checkId || "").trim();
const reason = String(input?.reason || "").trim();
const author = String(input?.author || "").trim();
const scope = String(input?.scope || "repository").trim();
const evidence = String(input?.evidence || "").trim();
const expiresAt = new Date(input?.expiresAt || "");
if (!checkId || reason.length < 10 || !author || !evidence) throw new Error("A suppression requires a check ID, author, evidence and a reason of at least 10 characters.");
if (!Number.isFinite(expiresAt.getTime()) || expiresAt <= now) throw new Error("A suppression expiry must be in the future.");
const maximum = new Date(now.getTime() + policy.maxSuppressionDays * 86_400_000);
if (expiresAt > maximum) throw new Error(`This policy permits suppressions for at most ${policy.maxSuppressionDays} days.`);
return {
id: crypto.randomUUID(), checkId, reason, author,
createdAt: now.toISOString(), ticket: String(input.ticket || "").trim() || null,
expiresAt: expiresAt.toISOString(), scope, evidence,
};
}
function applyPolicy(checks, policyInput, suppressions = [], now = new Date()) {
const policy = normalizePolicy(policyInput);
const enabled = policy.enabledChecks ? new Set(policy.enabledChecks) : null;
const relevant = checks.filter((check) => !enabled || enabled.has(check.id)).map((check) => {
const status = policy.severityOverrides[check.id] || check.status;
const suppression = suppressions.find((item) => item.checkId === check.id && new Date(item.expiresAt) > now);
const expiredSuppression = suppressions.find((item) => item.checkId === check.id && new Date(item.expiresAt) <= now);
return {
...check,
status,
suppressed: Boolean(suppression),
suppression: suppression || null,
expiredSuppression: expiredSuppression || null,
blocking: !suppression && status !== "pass" && (policy.blockingSeverities.includes(status) || policy.blockingChecks.includes(check.id)),
};
});
return { policy, checks: relevant };
}
function buildTrend(previous, report) {
const prior = new Map((previous?.checks || []).map((check) => [check.id, check]));
const current = new Map(report.checks.map((check) => [check.id, check]));
const active = (check) => check && check.status !== "pass" && !check.suppressed;
const newlyFound = [...current.values()].filter((check) => active(check) && !active(prior.get(check.id))).map((check) => check.id);
const resolved = [...prior.values()].filter((check) => active(check) && !active(current.get(check.id))).map((check) => check.id);
const regressions = [...current.values()].filter((check) => active(check) && prior.get(check.id)?.status === "warning" && check.status === "error").map((check) => check.id);
return { score: report.score, categories: report.categories, newlyFound, resolved, regressions, suppressions: report.checks.filter((check) => check.suppressed).map((check) => check.id), checkedAt: report.checkedAt, commitSha: report.commitSha || null, checks: report.checks.map(({ id, status, suppressed }) => ({ id, status, suppressed })) };
}
function exportReport(report, format = "json") {
if (format === "json") return { extension: "json", mimeType: "application/json", content: `${JSON.stringify(report, null, 2)}\n` };
const rows = report.checks.map((check) => `| ${check.id} | ${check.category} | ${check.status}${check.suppressed ? " (suppressed)" : ""} | ${String(check.detail).replace(/\|/g, "\\|")} |`).join("\n");
const markdown = `# Git assurance report — ${report.repository}\n\nPolicy: **${report.policy.label}** · Score: **${report.score}/100** · Commit: \`${report.commitSha || "unknown"}\`\n\n| Check | Category | Status | Evidence |\n|---|---|---|---|\n${rows}\n`;
if (format === "markdown") return { extension: "md", mimeType: "text/markdown", content: markdown };
if (format !== "html") throw new Error("Unsupported Git Validator export format.");
const escape = (value) => String(value).replace(/[&<>"']/g, (character) => ({ "&": "&amp;", "<": "&lt;", ">": "&gt;", '"': "&quot;", "'": "&#39;" })[character]);
const htmlRows = report.checks.map((check) => `<tr><td>${escape(check.id)}</td><td>${escape(check.category)}</td><td>${escape(check.status)}${check.suppressed ? " (suppressed)" : ""}</td><td>${escape(check.detail)}</td></tr>`).join("");
return { extension: "html", mimeType: "text/html", content: `<!doctype html><html lang="en"><meta charset="utf-8"><title>Git assurance — ${escape(report.repository)}</title><style>body{font:15px system-ui;max-width:1100px;margin:40px auto;padding:0 24px;color:#172033}table{border-collapse:collapse;width:100%}th,td{padding:10px;border:1px solid #ccd4e0;text-align:left}th{background:#edf2f7}</style><h1>Git assurance — ${escape(report.repository)}</h1><p>Policy: <strong>${escape(report.policy.label)}</strong> · Score: <strong>${report.score}/100</strong> · Commit: <code>${escape(report.commitSha || "unknown")}</code></p><table><thead><tr><th>Check</th><th>Category</th><th>Status</th><th>Evidence</th></tr></thead><tbody>${htmlRows}</tbody></table></html>` };
}
module.exports = { PROFILE_DEFINITIONS, normalizePolicy, validateSuppression, applyPolicy, buildTrend, exportReport };
+599
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@@ -0,0 +1,599 @@
"use strict";
const fs = require("node:fs/promises");
const path = require("node:path");
const { run } = require("./process-runner.cjs");
const { normalizeRemoteUrl } = require("../shared/repository-match.cjs");
const { applyPolicy, buildTrend, exportReport, normalizePolicy, validateSuppression } = require("./git-validator-policy.cjs");
const RECOMMENDED_GITIGNORE = `# Local configuration and secrets
.env
.env.*
!.env.example
!.env.sample
# Dependencies and generated output
node_modules/
dist/
build/
coverage/
# Editors and operating systems
.idea/
.vscode/
.DS_Store
Thumbs.db
`;
const RECOMMENDED_GITATTRIBUTES = `* text=auto eol=lf
*.bat text eol=crlf
*.cmd text eol=crlf
*.ps1 text eol=crlf
*.png binary
*.jpg binary
*.jpeg binary
*.gif binary
*.ico binary
*.zip binary
`;
const RECOMMENDED_EDITORCONFIG = `root = true
[*]
charset = utf-8
end_of_line = lf
insert_final_newline = true
trim_trailing_whitespace = true
indent_style = space
indent_size = 2
[*.{bat,cmd,ps1}]
end_of_line = crlf
`;
function sameRemote(left, right) {
const a = normalizeRemoteUrl(left);
const b = normalizeRemoteUrl(right);
return Boolean(a && b && a.host === b.host && a.path === b.path);
}
function result(id, category, title, status, detail, options = {}) {
return {
id,
category,
title,
status,
detail,
weight: options.weight || 5,
fixAction: options.fixAction || null,
safe: options.safe === true,
confirmation: options.confirmation || null,
evidence: options.evidence || null,
};
}
function isSensitiveTrackedPath(filePath) {
const value = String(filePath || "")
.replace(/\\/g, "/")
.toLowerCase();
if (/\.env\.(example|sample|template)$/.test(value)) return false;
return (
/(^|\/)\.env($|\.)/.test(value) ||
/(^|\/)(id_rsa|id_ed25519)$/.test(value) ||
/\.(pem|p12|pfx|key)$/.test(value) ||
/(^|\/)(credentials|secrets?)(\.[^/]+)?\.(json|ya?ml)$/.test(value)
);
}
class GitValidatorService {
constructor({ git, gitea, diagnostics, store }) {
this.git = git;
this.gitea = gitea;
this.diagnostics = diagnostics;
this.store = store;
}
async config(root, key, { local = true } = {}) {
const response = await run(
"git",
["config", ...(local ? ["--local"] : []), "--get", key],
{
cwd: root,
timeout: 10_000,
allowExitCodes: [1],
},
);
return response.stdout.trim();
}
async trackedFiles(root) {
const response = await run("git", ["ls-files", "-z"], {
cwd: root,
timeout: 30_000,
maxBuffer: 16 * 1024 * 1024,
});
return response.stdout.split("\0").filter(Boolean);
}
async scan(repository) {
const checks = [];
const defaultBranch = repository.defaultBranch || "main";
const owner = repository.owner?.login;
try {
const protection = await this.gitea.getBranchProtection(
owner,
repository.name,
defaultBranch,
);
checks.push(
result(
"default-branch-protection",
"Gitea governance",
"Default branch protection",
protection.protected ? "pass" : "warning",
protection.protected
? `${defaultBranch} is protected; force push is ${protection.enableForcePush ? "allowed" : "blocked"}.`
: `${defaultBranch} accepts unprotected direct changes.`,
{
weight: 18,
fixAction: protection.protected ? null : "protect-default-branch",
safe: false,
confirmation: `Protect ${defaultBranch} on Gitea and block direct and force pushes?`,
},
),
);
if (protection.protected)
checks.push(
result(
"force-push",
"Gitea governance",
"Force-push protection",
protection.enableForcePush ? "warning" : "pass",
protection.enableForcePush
? "Force pushes remain enabled on the protected branch."
: "Force pushes are blocked on the protected branch.",
{ weight: 8 },
),
);
} catch (error) {
checks.push(
result(
"branch-protection-unavailable",
"Gitea governance",
"Branch protection could not be verified",
"warning",
error.message,
{ weight: 18 },
),
);
}
if (!repository.localPath) {
checks.push(
result(
"local-link",
"Local repository",
"Local working tree",
"warning",
"Link or clone this repository to validate files and local Git configuration.",
{ weight: 35 },
),
);
return this.finalize(repository, checks, null);
}
const root = await this.git.ensureRepository(repository.localPath);
const status = await this.git.status(root);
const tracked = await this.trackedFiles(root);
const lowerFiles = tracked.map((file) => file.toLowerCase());
const desiredRemote =
repository.preferredCloneUrl || repository.cloneUrl || repository.sshUrl;
checks.push(
result(
"origin",
"Repository identity",
"Origin matches Gitea",
sameRemote(status.remoteUrl, desiredRemote) ? "pass" : "error",
sameRemote(status.remoteUrl, desiredRemote)
? status.remoteUrl
: `Current origin ${status.remoteUrl || "is missing"}; expected ${desiredRemote}.`,
{
weight: 15,
fixAction: sameRemote(status.remoteUrl, desiredRemote)
? null
: "align-origin",
safe: true,
},
),
);
checks.push(
result(
"upstream",
"Branch hygiene",
"Current branch has an upstream",
status.branch?.upstream ? "pass" : "warning",
status.branch?.upstream
? `${status.branch.head} tracks ${status.branch.upstream}.`
: `${status.branch?.head || "The current branch"} is not published or tracked.`,
{ weight: 8 },
),
);
checks.push(
result(
"working-tree",
"Branch hygiene",
"Working tree is intentional",
status.clean ? "pass" : "warning",
status.clean
? "No uncommitted changes."
: `${status.counts.changed} changed file(s) require review, commit or stash.`,
{ weight: 5 },
),
);
const [userName, userEmail, fetchPrune, pullFf, autoStash] =
await Promise.all([
this.config(root, "user.name", { local: false }),
this.config(root, "user.email", { local: false }),
this.config(root, "fetch.prune"),
this.config(root, "pull.ff"),
this.config(root, "rebase.autoStash"),
]);
checks.push(
result(
"identity",
"Commit integrity",
"Repository author identity",
userName && userEmail ? "pass" : "warning",
userName && userEmail
? `${userName} <${userEmail}>`
: "The effective Git user.name or user.email is missing.",
{ weight: 7 },
),
);
const safetyReady =
fetchPrune === "true" && pullFf === "only" && autoStash === "true";
checks.push(
result(
"local-safety",
"Local configuration",
"Safe synchronization defaults",
safetyReady ? "pass" : "warning",
safetyReady
? "Stale remotes are pruned, pulls are fast-forward-only and rebase autostash is enabled."
: "Recommended repository-local fetch, pull and autostash safeguards are incomplete.",
{
weight: 10,
fixAction: safetyReady ? null : "configure-local-safety",
safe: true,
},
),
);
const hasReadme = lowerFiles.some((file) =>
/(^|\/)readme(\.[^/]+)?$/.test(file),
);
checks.push(
result(
"readme",
"Repository documentation",
"README is versioned",
hasReadme ? "pass" : "warning",
hasReadme
? "Repository purpose and usage can be documented at the source."
: "No tracked README was found.",
{ weight: 7 },
),
);
const hasGitignore = lowerFiles.includes(".gitignore");
checks.push(
result(
"gitignore",
"Repository hygiene",
".gitignore is versioned",
hasGitignore ? "pass" : "warning",
hasGitignore
? "Generated and local-only files can be excluded centrally."
: "No tracked .gitignore was found.",
{
weight: 8,
fixAction: hasGitignore ? null : "add-gitignore",
safe: false,
confirmation:
"Create a recommended .gitignore in the working tree? It will remain uncommitted for review.",
},
),
);
for (const [id, title, filename, action] of [
["gitattributes", ".gitattributes normalizes text and binary files", ".gitattributes", "add-gitattributes"],
["editorconfig", ".editorconfig keeps editors consistent", ".editorconfig", "add-editorconfig"],
]) {
const present = lowerFiles.includes(filename);
checks.push(result(id, "Repository hygiene", title, present ? "pass" : "warning",
present ? `${filename} is versioned.` : `No tracked ${filename} was found.`, {
weight: 5,
fixAction: present ? null : action,
safe: false,
confirmation: `Create a recommended ${filename} in the working tree for review?`,
}));
}
const packageManagers = [
{ manifests: ["package.json"], locks: ["package-lock.json", "pnpm-lock.yaml", "yarn.lock", "bun.lock", "bun.lockb"] },
{ manifests: ["pyproject.toml", "requirements.in", "pipfile"], locks: ["uv.lock", "poetry.lock", "requirements.txt", "pipfile.lock"] },
{ manifests: ["composer.json"], locks: ["composer.lock"] },
{ manifests: ["gemfile"], locks: ["gemfile.lock"] },
];
const lockCheck = packageManagers.find((entry) => entry.manifests.some((name) => lowerFiles.includes(name)));
if (lockCheck) {
const lockfile = lockCheck.locks.find((name) => lowerFiles.includes(name));
checks.push(result("dependency-lock", "Supply chain", "Dependencies are reproducibly locked", lockfile ? "pass" : "warning",
lockfile ? `${lockfile} is versioned.` : "A dependency manifest exists without a recognized lockfile.", { weight: 9 }));
}
const hasCi = lowerFiles.some((file) => /^\.gitea\/workflows\/[^/]+\.ya?ml$/.test(file));
checks.push(result("continuous-integration", "Gitea governance", "Automated checks run on Gitea", hasCi ? "pass" : "warning",
hasCi ? "At least one Gitea Actions workflow is versioned." : "No .gitea/workflows YAML file was found.", { weight: 8 }));
const sensitive = tracked.filter(isSensitiveTrackedPath);
checks.push(
result(
"tracked-secrets",
"Security",
"No secret-shaped files are tracked",
sensitive.length ? "error" : "pass",
sensitive.length
? `Review immediately: ${sensitive.slice(0, 8).join(", ")}${sensitive.length > 8 ? "…" : ""}. Removing a file does not erase Git history.`
: "No tracked environment, private-key or credential filenames were detected.",
{ weight: 22 },
),
);
const large = [];
const candidates = tracked.slice(0, 5000);
for (
let index = 0;
index < candidates.length && large.length < 12;
index += 64
) {
const batch = candidates.slice(index, index + 64);
const stats = await Promise.all(
batch.map(async (file) => ({
file,
stat: await fs.stat(path.join(root, file)).catch(() => null),
})),
);
for (const item of stats) {
if (item.stat?.isFile() && item.stat.size > 10 * 1024 * 1024)
large.push({ file: item.file, size: item.stat.size });
if (large.length >= 12) break;
}
}
checks.push(
result(
"large-files",
"Repository performance",
"No oversized tracked files",
large.length ? "warning" : "pass",
large.length
? `${large.map((item) => `${item.file} (${Math.ceil(item.size / 1024 / 1024)} MB)`).join(", ")}. Consider Git LFS.`
: "No tracked files above 10 MB were found.",
{ weight: 7 },
),
);
await this.addAssuranceChecks(root, tracked, lowerFiles, checks);
return this.finalize(repository, checks, status);
}
async addAssuranceChecks(root, tracked, lowerFiles, checks) {
const has = (...patterns) => lowerFiles.some((file) => patterns.some((pattern) => pattern.test(file)));
const fileCheck = (id, category, title, patterns, detail, weight = 5) => {
const present = has(...patterns);
checks.push(result(id, category, title, present ? "pass" : "warning", present ? `${title} is versioned.` : detail, { weight }));
};
fileCheck("security-policy", "Security", "Security policy", [/(^|\/)security\.md$/], "Add SECURITY.md with supported versions and private disclosure instructions.", 8);
fileCheck("codeowners", "Governance", "Code ownership", [/(^|\/)codeowners$/], "Add CODEOWNERS for security-sensitive and release paths.", 6);
fileCheck("license", "Governance", "Repository license", [/(^|\/)(license|copying)(\.[^/]+)?$/], "Document the repository license or private-use terms.", 5);
fileCheck("changelog", "Release readiness", "Changelog", [/(^|\/)changelog(\.[^/]+)?$/], "Add a changelog that maps releases to user-visible changes.", 7);
fileCheck("contributing", "Collaboration", "Contribution guide", [/(^|\/)contributing(\.[^/]+)?$/], "Add contribution, test and review instructions.", 4);
fileCheck("issue-templates", "Collaboration", "Issue templates", [/^\.gitea\/issue_template\//, /^\.github\/issue_template\//], "Add structured issue templates.", 3);
fileCheck("pull-request-template", "Collaboration", "Pull request template", [/(^|\/)pull_request_template\.md$/], "Add a pull request checklist for tests, risk and rollback.", 4);
fileCheck("runtime-pinning", "Reproducibility", "Runtime version pinning", [/(^|\/)(\.nvmrc|\.node-version|\.tool-versions|mise\.toml)$/], "Pin the runtime version used by developers and CI.", 7);
fileCheck("build-instructions", "Reproducibility", "Build instructions", [/(^|\/)(readme|building|build)(\.[^/]+)?$/], "Document a clean, reproducible build command.", 6);
const generated = tracked.filter((file) => /(^|\/)(dist|build|coverage|\.cache)\//i.test(file));
checks.push(result("generated-artifacts", "Performance and hygiene", "Generated output is not tracked", generated.length ? "warning" : "pass", generated.length ? `${generated.length} generated-path file(s) are tracked; review ${generated.slice(0, 5).join(", ")}.` : "No common generated output directories are tracked.", { weight: 8, evidence: generated.slice(0, 20) }));
const executables = tracked.filter((file) => /\.(exe|dll|msi|scr|com|bat|cmd|ps1)$/i.test(file));
checks.push(result("executable-artifacts", "Security", "Executable artifacts are intentional", executables.length ? "warning" : "pass", executables.length ? `Review executable content: ${executables.slice(0, 8).join(", ")}.` : "No executable-shaped artifacts are tracked.", { weight: 8, evidence: executables.slice(0, 20) }));
const workflowFiles = tracked.filter((file) => /^\.(gitea|github)\/workflows\/[^/]+\.ya?ml$/i.test(file));
const workflowText = (await Promise.all(workflowFiles.slice(0, 40).map((file) => fs.readFile(path.join(root, file), "utf8").catch(() => "")))).join("\n");
const unpinned = [...workflowText.matchAll(/uses:\s*[^\s@]+@([^\s#]+)/g)].map((match) => match[1]).filter((ref) => !/^[0-9a-f]{40}$/i.test(ref));
checks.push(result("pinned-actions", "Security", "External CI actions are commit-pinned", unpinned.length ? "warning" : "pass", unpinned.length ? `${unpinned.length} action reference(s) use mutable tags or branches.` : "External actions are commit-pinned or no external actions are used.", { weight: 9, evidence: unpinned.slice(0, 20) }));
const broadPermissions = /permissions:\s*(write-all|write)/i.test(workflowText) || /contents:\s*write/i.test(workflowText);
checks.push(result("workflow-permissions", "Security", "Workflow permissions use least privilege", broadPermissions ? "error" : "pass", broadPermissions ? "A workflow requests broad write permissions; scope permissions per job and capability." : "No broad workflow write permission was detected.", { weight: 12 }));
const [commitSignature, tagSignature, recentSubjects] = await Promise.all([
run("git", ["log", "-1", "--format=%G?"], { cwd: root, timeout: 10_000, allowExitCodes: [128] }).then((value) => value.stdout.trim()).catch(() => "N"),
run("git", ["tag", "--points-at", "HEAD", "--format=%(contents:signature)"], { cwd: root, timeout: 10_000, allowExitCodes: [128] }).then((value) => value.stdout.trim()).catch(() => ""),
run("git", ["log", "-20", "--format=%s"], { cwd: root, timeout: 10_000, allowExitCodes: [128] }).then((value) => value.stdout.trim().split(/\r?\n/).filter(Boolean)).catch(() => []),
]);
checks.push(result("signed-commits", "Governance", "Latest commit is signed", /[GUYX]/.test(commitSignature) ? "pass" : "warning", /[GUYX]/.test(commitSignature) ? "Git reports a cryptographic signature on HEAD." : "HEAD has no verifiable Git signature.", { weight: 6 }));
checks.push(result("signed-tags", "Governance", "Release tags are signed", tagSignature ? "pass" : "warning", tagSignature ? "HEAD has a signed tag." : "HEAD has no signed release tag.", { weight: 5 }));
const conventional = recentSubjects.length > 0 && recentSubjects.every((subject) => /^(feat|fix|docs|style|refactor|perf|test|build|ci|chore|revert)(\(.+\))?!?:\s.+/i.test(subject));
checks.push(result("conventional-commits", "Governance", "Recent commits follow a convention", conventional ? "pass" : "warning", conventional ? `${recentSubjects.length} recent commit subject(s) follow Conventional Commits.` : "Some recent commit subjects do not follow Conventional Commits.", { weight: 4 }));
const releaseFiles = {
"release-checksums": /(^|\/)(sha256sums|checksums?)(\.[^/]+)?$/,
"release-provenance": /(^|\/)(provenance|attestation)(\.[^/]+)?$/,
"release-sbom": /(^|\/)(sbom)(\.[^/]+)?$/,
};
for (const [id, pattern] of Object.entries(releaseFiles)) fileCheck(id, "Release readiness", id.replace(/^release-/, "Release "), [pattern], `No ${id.replace(/^release-/, "")} artifact is versioned or generated in the repository.`, 4);
checks.push(result("signing-readiness", "Release readiness", "Signing policy is documented", has(/(^|\/)(security|release|signing)(\.[^/]+)?$/) ? "pass" : "warning", has(/(^|\/)(security|release|signing)(\.[^/]+)?$/) ? "Signing guidance is present." : "Document signing identity, verification and timestamp requirements.", { weight: 6 }));
}
async finalize(repository, checks, status) {
const repositoryState = this.store?.getGitValidatorState?.(repository.fullName) || { policy: { id: "standard" }, suppressions: [], trends: [] };
const { policy, checks: governedChecks } = applyPolicy(checks, repositoryState.policy, repositoryState.suppressions);
const report = this.summarize(repository, governedChecks);
report.policy = policy;
report.commitSha = status?.head || status?.branch?.oid || null;
report.categories = Object.fromEntries([...new Set(governedChecks.map((check) => check.category))].map((category) => {
const categoryChecks = governedChecks.filter((check) => check.category === category);
return [category, Math.round(categoryChecks.filter((check) => check.status === "pass" || check.suppressed).length / categoryChecks.length * 100)];
}));
report.ready = report.score >= policy.requiredScore && !governedChecks.some((check) => check.blocking);
report.expiredSuppressions = governedChecks.filter((check) => check.expiredSuppression).map((check) => check.id);
report.trend = buildTrend(repositoryState.trends.at(-1), report);
if (this.store?.appendGitValidatorTrend) await this.store.appendGitValidatorTrend(repository.fullName, report.trend);
return report;
}
async setPolicy(repository, policyInput) {
const policy = normalizePolicy(policyInput);
if (!this.store?.setGitValidatorPolicy) throw new Error("Git Validator policy persistence is unavailable.");
await this.store.setGitValidatorPolicy(repository.fullName, policy);
return policy;
}
async suppress(repository, input) {
const state = this.store?.getGitValidatorState?.(repository.fullName) || { policy: { id: "standard" } };
const suppression = validateSuppression(input, normalizePolicy(state.policy));
await this.store.addGitValidatorSuppression(repository.fullName, suppression);
return suppression;
}
export(report, format) { return exportReport(report, format); }
async previewRepair(repository, check) {
if (!check?.fixAction) throw new Error("This validator check has no repair action.");
const root = repository.localPath ? await this.git.ensureRepository(repository.localPath) : null;
const fileDefinitions = {
"add-gitignore": [".gitignore", RECOMMENDED_GITIGNORE],
"add-gitattributes": [".gitattributes", RECOMMENDED_GITATTRIBUTES],
"add-editorconfig": [".editorconfig", RECOMMENDED_EDITORCONFIG],
};
if (fileDefinitions[check.fixAction]) {
const [name, content] = fileDefinitions[check.fixAction];
if (await fs.stat(path.join(root, name)).catch(() => null)) throw new Error(`${name} already exists; rescan before repairing.`);
return { checkId: check.id, action: check.fixAction, files: [name], diff: `diff --git a/${name} b/${name}\nnew file mode 100644\n--- /dev/null\n+++ b/${name}\n${content.split("\n").filter((line, index, lines) => index < lines.length - 1).map((line) => `+${line}`).join("\n")}\n`, remoteMutation: false };
}
if (check.fixAction === "configure-local-safety") return { checkId: check.id, action: check.fixAction, files: [".git/config"], diff: "+ fetch.prune = true\n+ pull.ff = only\n+ rebase.autoStash = true\n", remoteMutation: false };
if (check.fixAction === "align-origin") return { checkId: check.id, action: check.fixAction, files: [".git/config"], diff: `- origin = current\n+ origin = ${repository.preferredCloneUrl || repository.cloneUrl || repository.sshUrl}\n`, remoteMutation: false };
if (check.fixAction === "protect-default-branch") return { checkId: check.id, action: check.fixAction, files: [], diff: `Gitea policy change:\n+ protect ${repository.defaultBranch || "main"}\n+ block force pushes\n+ require pull request review\n`, remoteMutation: true };
throw new Error("Unsupported Git Validator repair action.");
}
async resolveRepairCheck(repository, candidate) {
const checkId = String(candidate?.id || candidate?.checkId || "").trim();
if (!checkId) throw new Error("A current Git Validator check ID is required.");
const report = await this.scan(repository);
const current = report.checks.find((check) => check.id === checkId);
if (!current?.fixAction)
throw new Error("This finding is resolved, suppressed or no longer repairable. Scan again before repairing.");
if (candidate?.fixAction && candidate.fixAction !== current.fixAction)
throw new Error("The Git Validator repair request is stale. Scan again before repairing.");
return current;
}
summarize(repository, checks) {
const totalWeight = checks.reduce((sum, check) => sum + check.weight, 0);
const earned = checks.reduce(
(sum, check) =>
sum +
(check.status === "pass" || check.suppressed
? check.weight
: check.status === "warning"
? check.weight * 0.45
: 0),
0,
);
const score = totalWeight ? Math.round((earned / totalWeight) * 100) : 0;
return {
repository: repository.fullName,
checkedAt: new Date().toISOString(),
score,
grade:
score >= 90
? "Excellent"
: score >= 75
? "Good"
: score >= 55
? "Needs attention"
: "High risk",
checks,
summary: {
passed: checks.filter((check) => check.status === "pass").length,
warnings: checks.filter((check) => check.status === "warning" && !check.suppressed).length,
errors: checks.filter((check) => check.status === "error" && !check.suppressed).length,
suppressed: checks.filter((check) => check.suppressed).length,
repairable: checks.filter((check) => check.fixAction).length,
},
};
}
async repair(repository, check) {
if (!check?.fixAction)
throw new Error("This validator check has no repair action.");
const root = repository.localPath
? await this.git.ensureRepository(repository.localPath)
: null;
if (check.fixAction === "align-origin") {
return this.git.setRemoteUrl(
root,
repository.preferredCloneUrl ||
repository.cloneUrl ||
repository.sshUrl,
);
}
if (check.fixAction === "configure-local-safety") {
for (const [key, value] of [
["fetch.prune", "true"],
["pull.ff", "only"],
["rebase.autoStash", "true"],
])
await run("git", ["config", "--local", key, value], {
cwd: root,
timeout: 10_000,
});
return { configured: true };
}
if (check.fixAction === "add-gitignore") {
const target = path.join(root, ".gitignore");
const exists = await fs.stat(target).catch(() => null);
if (exists)
throw new Error(".gitignore already exists; rescan before repairing.");
await fs.writeFile(target, RECOMMENDED_GITIGNORE, {
encoding: "utf8",
flag: "wx",
});
return { created: ".gitignore" };
}
if (["add-gitattributes", "add-editorconfig"].includes(check.fixAction)) {
const definition = check.fixAction === "add-gitattributes"
? { name: ".gitattributes", content: RECOMMENDED_GITATTRIBUTES }
: { name: ".editorconfig", content: RECOMMENDED_EDITORCONFIG };
const target = path.join(root, definition.name);
if (await fs.stat(target).catch(() => null))
throw new Error(`${definition.name} already exists; rescan before repairing.`);
await fs.writeFile(target, definition.content, { encoding: "utf8", flag: "wx" });
return { created: definition.name };
}
if (check.fixAction === "protect-default-branch") {
return this.gitea.createBranchProtection(
repository.owner.login,
repository.name,
repository.defaultBranch || "main",
);
}
throw new Error("Unsupported Git Validator repair action.");
}
}
module.exports = {
GitValidatorService,
RECOMMENDED_GITIGNORE,
RECOMMENDED_GITATTRIBUTES,
RECOMMENDED_EDITORCONFIG,
sameRemote,
isSensitiveTrackedPath,
};
+98 -5
View File
@@ -204,6 +204,79 @@ class GiteaService {
};
}
async createBranchProtection(owner, repo, branch) {
const target = assertBranchName(branch);
return (
await this.request(
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/branch_protections`,
{
method: "POST",
body: {
rule_name: target,
branch_name: target,
enable_push: false,
enable_force_push: false,
required_approvals: 0,
dismiss_stale_approvals: true,
block_on_rejected_reviews: true,
block_on_outdated_branch: true,
},
},
)
).data;
}
async listDeployKeys(owner, repo) {
const result = await this.request(
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/keys?limit=100`,
);
return Array.isArray(result.data) ? result.data : [];
}
async ensureReadOnlyDeployKey({ owner, repo, title, publicKey }) {
const key = String(publicKey || "").trim();
if (!/^ssh-(ed25519|rsa)\s+[A-Za-z0-9+/=]+(?:\s+.*)?$/.test(key))
throw new Error("The server did not return a valid SSH public key.");
const keys = await this.listDeployKeys(owner, repo);
const keyMaterial = key.split(/\s+/).slice(0, 2).join(" ");
const existing = keys.find((item) =>
String(item?.key || "").trim().split(/\s+/).slice(0, 2).join(" ") === keyMaterial,
);
if (existing) {
if (existing.read_only !== true) {
const error = new Error("The matching Gitea deploy key has write access. Revoke it before ForgeFlow configures a read-only server key.");
error.code = "DEPLOY_KEY_NOT_READ_ONLY";
throw error;
}
return { ...existing, created: false };
}
const result = await this.request(
`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/keys`,
{
method: "POST",
body: {
title: String(title || "ForgeFlow server deploy key").trim().slice(0, 255),
key,
read_only: true,
},
},
);
return { ...result.data, created: true };
}
async createReadOnlyDeployKey({ owner, repo, title, publicKey }) {
const key = String(publicKey || "").trim();
if (!/^ssh-(ed25519|rsa)\s+[A-Za-z0-9+/=]+(?:\s+.*)?$/.test(key)) throw new Error("A valid SSH public key is required.");
const result = await this.request(`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/keys`, { method: "POST", body: { title: String(title || "ForgeFlow server deploy key").trim().slice(0, 255), key, read_only: true } });
return result.data;
}
async deleteDeployKey(owner, repo, keyId) {
if (!Number.isInteger(Number(keyId)) || Number(keyId) <= 0) throw new Error("A valid deploy-key ID is required.");
await this.request(`/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/keys/${Number(keyId)}`, { method: "DELETE" });
return { deleted: true, keyId: Number(keyId) };
}
async listPullRequests({ owner, repo, state = "open", limit = 30 } = {}) {
const query = new URLSearchParams({
state,
@@ -303,13 +376,15 @@ class GiteaService {
const token = this.store.getToken();
let target = new URL(url, `${baseUrl}/`);
for (let redirects = 0; redirects <= 5; redirects += 1) {
if (target.origin !== base.origin)
const sameOrigin = target.origin === base.origin;
if (!sameOrigin && target.protocol !== "https:") {
throw new Error(
"Refusing to send the Gitea token to a different origin.",
"Refusing an insecure cross-origin update download redirect.",
);
}
const response = await fetch(target, {
headers: {
Authorization: `token ${token}`,
...(sameOrigin && token ? { Authorization: `token ${token}` } : {}),
Accept: "application/octet-stream",
},
signal: AbortSignal.timeout(timeout),
@@ -338,8 +413,26 @@ class GiteaService {
throw new Error("Gitea returned an invalid release ID.");
if (!Number.isSafeInteger(numericId) || numericId <= 0)
throw new Error("Gitea returned an invalid release asset ID.");
const assetPath = `/api/v1/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${numericReleaseId}/assets/${numericId}`;
return this.downloadAuthenticated(assetPath, options);
let downloadUrl = String(options.downloadUrl || "").trim();
if (!downloadUrl) {
const metadataPath = `/repos/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/${numericReleaseId}/assets/${numericId}`;
const metadata = (await this.request(metadataPath)).data;
if (Number(metadata?.id) !== numericId) {
throw new Error("Gitea returned metadata for a different release asset.");
}
downloadUrl = String(metadata?.browser_download_url || "").trim();
}
if (!downloadUrl) {
throw new Error("Gitea did not provide a release asset download URL.");
}
const configuredBase = new URL(normalizeBaseUrl(this.store.data.gitea.baseUrl));
const publishedUrl = new URL(downloadUrl, configuredBase);
const releasePrefix = `/${encodeURIComponent(owner)}/${encodeURIComponent(repo)}/releases/download/`.toLowerCase();
if (publishedUrl.origin !== configuredBase.origin && publishedUrl.protocol === "http:" && publishedUrl.pathname.toLowerCase().startsWith(releasePrefix)) {
downloadUrl = new URL(`${publishedUrl.pathname}${publishedUrl.search}`, configuredBase).toString();
}
return this.downloadAuthenticated(downloadUrl, options);
}
async dispatchWorkflow({ owner, repo, workflowFile, ref, inputs = {} }) {
+83
View File
@@ -0,0 +1,83 @@
"use strict";
const { deploymentIdentity, deploymentEvidenceHash, deploymentAuthorityKey } = require("./deployment-identity.cjs");
const BACKUP = /(?:^|[\\/._-])(backup|bak|archive|snapshot|old|previous)(?:[\\/._-]|$)/i;
const RELEASE = /(?:^|[\\/])(releases?|versions?)(?:[\\/]|$)/i;
const STAGING = /(?:^|[\\/._-])(staging|stage|test|qa|preview)(?:[\\/._-]|$)/i;
const TEMPORARY = /(?:^|[\\/._-])(candidate|rollback|ephemeral)(?:[\\/._-]|$)|^GITEA-ACTIONS-TASK-/i;
const SYSTEM = /^(?:traefik|nginx-proxy-manager|watchtower|portainer|dockerman|unraid-|cloudflared|redis|postgres|mariadb|mysql)(?:$|[-_.])/i;
function baseClassification(workload) {
const location = `${workload.compose?.workingDir || ""} ${(workload.compose?.configFiles || []).join(" ")}`;
const sourceRepository = String(workload.metadata?.sourceRepository || "").trim();
const hasGitProvenance = /^(?:git@|ssh:\/\/|https?:\/\/)/i.test(sourceRepository);
const decision = workload.reviewDecision;
if (["manual-exclude", "exclude-scan-root", "ignore"].includes(decision?.action)) return { type: "manually-excluded", reason: decision.reason || "Persisted manual exclusion", decisionAction: decision.action };
if (["mark-historical", "archive-link"].includes(decision?.action)) return { type: "historical-compose", reason: decision.reason || "Reviewed as historical", decisionAction: decision.action };
if (decision?.action === "monitor-only") return { type: "monitor-only", reason: decision.reason || "Reviewed for monitoring only", decisionAction: decision.action };
if (workload.metadata?.staleLink) return { type: "stale-link", reason: "The linked deployment profile has no matching server workload" };
if (BACKUP.test(location)) return { type: "backup", reason: "Path matches backup/archive evidence" };
if (RELEASE.test(location)) return { type: "release-folder", reason: "Path is below a release/version directory" };
if (STAGING.test(location)) return { type: "staging", reason: "Path or project identifies a staging/test workload" };
if (TEMPORARY.test(`${workload.displayName || ""} ${location}`)) return { type: "temporary-runtime", reason: "Runtime identity marks a candidate, rollback or CI workload" };
if (SYSTEM.test(workload.displayName || "") && !workload.metadata?.sourceRepository) return { type: "system-container", reason: "Known infrastructure identity without repository provenance" };
if (workload.link && workload.runtime?.running) return { type: "active-application", reason: "Linked deployment with running container evidence" };
if (workload.link && !workload.runtime?.running) return { type: "stopped-application", reason: "Linked deployment without a running container" };
if (!workload.containers?.length && workload.compose?.configFiles?.length) return { type: "historical-compose", reason: "Compose definition exists without container runtime" };
if (workload.status === "ambiguous") return { type: "ambiguous", reason: "Multiple candidates have equivalent evidence" };
if (!workload.candidates?.length) return { type: "external-container", reason: hasGitProvenance ? "Repository provenance does not match an accessible configured Gitea repository" : "Runtime has no Git repository provenance and remains monitoring-only" };
if (!workload.runtime?.running && workload.candidates?.length) return { type: "stopped-application", reason: "Stopped runtime has repository evidence" };
return { type: workload.runtime?.running ? "active-application" : "ambiguous", reason: workload.runtime?.running ? "Running application evidence" : "Insufficient authoritative evidence" };
}
function classifyInventory(workloads, profiles = [], decisions = []) {
const profileById = new Map(profiles.map((profile) => [profile.id, profile]));
const decisionByWorkload = new Map(decisions.map((decision) => [decision.workloadId, decision]));
const authorities = new Map();
const result = workloads.map((source) => {
const workload = structuredClone(source);
const profile = profileById.get(workload.link?.profileId) || null;
const identity = deploymentIdentity({ workload, profile });
const evidence = { candidates: (workload.candidates || []).map((item) => ({ repository: item.repositoryFullName, score: item.score, exact: item.exact === true })), running: workload.runtime?.running === true, health: workload.runtime?.health || null, configFiles: workload.compose?.configFiles || [] };
const hash = deploymentEvidenceHash(identity, evidence);
const stored = decisionByWorkload.get(workload.workloadId);
workload.reviewDecision = stored?.evidenceHash === hash ? stored : null;
workload.reviewDecisionStale = Boolean(stored && stored.evidenceHash !== hash);
workload.identity = identity;
if (workload.reviewDecision?.action === "manual-link" && workload.reviewDecision.repositoryFullName) {
workload.identity.repository = String(workload.reviewDecision.repositoryFullName).toLowerCase();
}
workload.evidenceHash = hash;
workload.classification = baseClassification(workload);
if (workload.link && ["backup", "release-folder", "staging", "temporary-runtime", "historical-compose", "system-container", "external-container", "manually-excluded"].includes(workload.classification.type)) {
workload.shadowedLink = workload.link;
workload.link = null;
}
const key = deploymentAuthorityKey(identity);
if (identity.repository && (workload.link || workload.candidates?.length) && !["backup", "release-folder", "staging", "temporary-runtime", "historical-compose", "system-container", "external-container", "manually-excluded"].includes(workload.classification.type)) {
const group = authorities.get(key) || [];
group.push(workload);
authorities.set(key, group);
}
return workload;
});
for (const group of authorities.values()) {
if (group.length < 2) {
group[0].authoritative = true;
continue;
}
const ranked = [...group].sort((a, b) => Number(b.reviewDecision?.action === "select-authoritative") - Number(a.reviewDecision?.action === "select-authoritative") || Number(b.runtime?.running) - Number(a.runtime?.running) || Number(Boolean(b.link)) - Number(Boolean(a.link)) || Number(Boolean(b.metadata?.liveRevision)) - Number(Boolean(a.metadata?.liveRevision)));
ranked[0].authoritative = true;
for (const duplicate of ranked.slice(1)) {
duplicate.authoritative = false;
duplicate.classification = { type: "duplicate", reason: `Conflicts with authoritative workload ${ranked[0].workloadId}`, authoritativeWorkloadId: ranked[0].workloadId };
duplicate.status = "duplicate";
duplicate.shadowedLink = duplicate.link;
duplicate.link = null;
}
}
return result;
}
module.exports = { classifyInventory, classifyWorkload: baseClassification, inventoryPathPatterns: { BACKUP, RELEASE, STAGING, TEMPORARY, SYSTEM } };
+31
View File
@@ -0,0 +1,31 @@
"use strict";
const crypto = require("node:crypto");
const ACTIONS = new Set(["keep-link", "select-authoritative", "mark-historical", "archive-link", "monitor-only", "exclude-scan-root", "manual-link", "ignore", "manual-exclude"]);
class InventoryReviewService {
constructor({ store, audit = null }) { this.store = store; this.audit = audit; }
list(serverId) { return this.store.getInventoryReviewDecisions(serverId); }
preview({ serverId, workload, action, reason = "", repositoryFullName = null }) {
if (!ACTIONS.has(action)) throw Object.assign(new Error("Unsupported inventory review action."), { code: "INVENTORY_REVIEW_ACTION_INVALID" });
if (["ignore", "manual-exclude", "exclude-scan-root"].includes(action) && String(reason).trim().length < 5) throw Object.assign(new Error("A meaningful review reason is required."), { code: "INVENTORY_REVIEW_REASON_REQUIRED" });
if (action === "manual-link" && !repositoryFullName) throw Object.assign(new Error("Select the repository to link."), { code: "INVENTORY_REVIEW_REPOSITORY_REQUIRED" });
const linkedProfile = workload.link?.profileId && workload.link?.repositoryFullName ? { profileId: workload.link.profileId, repositoryFullName: workload.link.repositoryFullName } : null;
const configurationChanges = [`Persist review decision ${action} for workload ${workload.workloadId}`];
if (action === "archive-link" && linkedProfile) configurationChanges.push(`Archive deployment profile ${linkedProfile.profileId}`);
if (action === "manual-link") configurationChanges.push(`Remember ${repositoryFullName} as the reviewed repository match; use Save environment to create the deployment profile`);
const mutation = { serverId, workloadId: workload.workloadId, evidenceHash: workload.evidenceHash, action, reason: String(reason).trim(), repositoryFullName, linkedProfile, classification: workload.classification?.type || workload.status, containersUnaffected: true, configurationChanges, recovery: "Restore the configuration snapshot or rescan after evidence changes." };
return { ...mutation, id: crypto.createHash("sha256").update(JSON.stringify(mutation)).digest("hex") };
}
async apply({ plan, expectedPlanId }) {
if (!expectedPlanId || plan.id !== expectedPlanId) throw Object.assign(new Error("Inventory review requires the exact preview plan."), { code: expectedPlanId ? "INVENTORY_REVIEW_PLAN_STALE" : "INVENTORY_REVIEW_PLAN_REQUIRED" });
const snapshot = await this.store.createRecoverySnapshot?.(`inventory-review:${plan.serverId}:${plan.workloadId}`);
if (plan.action === "archive-link" && plan.linkedProfile) await this.store.deleteDeploymentProfile(plan.linkedProfile.repositoryFullName, plan.linkedProfile.profileId);
const decision = await this.store.saveInventoryReviewDecision(plan.serverId, { workloadId: plan.workloadId, evidenceHash: plan.evidenceHash, action: plan.action, reason: plan.reason, repositoryFullName: plan.repositoryFullName || null, classification: plan.classification, decidedAt: new Date().toISOString() });
await this.audit?.append?.("deployment.inventory-review-applied", { serverId: plan.serverId, workloadId: plan.workloadId, action: plan.action, evidenceHash: plan.evidenceHash, snapshot: snapshot?.filePath || null });
return { decision, snapshot };
}
}
module.exports = { InventoryReviewService, INVENTORY_REVIEW_ACTIONS: [...ACTIONS] };
+18 -587
View File
@@ -1,5 +1,4 @@
"use strict";
const path = require("node:path");
const fs = require("node:fs/promises");
const { fileURLToPath } = require("node:url");
@@ -9,12 +8,14 @@ const {
cloneDirectoryName,
resolveCloneTarget,
} = require("../shared/clone-target.cjs");
const { registerRepositoryIpc } = require("./ipc/repository-handlers.cjs");
const { registerDeploymentIpc } = require("./ipc/deployment-handlers.cjs");
const { registerOperationsIpc } = require("./ipc/operations-handlers.cjs");
const {
createEncryptedBackup,
readEncryptedBackup,
} = require("./configuration-backup.cjs");
const { evaluateDeploymentPolicy } = require("../shared/deployment-policy.cjs");
let diagnosticsService = null;
const TRUSTED_RENDERER_PATH = path.resolve(
__dirname,
@@ -71,12 +72,10 @@ function register(channel, handler) {
stack: error?.stack,
},
});
console.error(`[${channel}]`, error);
return { ok: false, error: toErrorPayload(error) };
}
});
}
function registerIpc({
store,
git,
@@ -84,9 +83,12 @@ function registerIpc({
repositories,
deployments,
unraid,
deployKeys,
inventoryReviews,
ssh,
updates,
preflight,
gitValidator,
diagnostics,
audit,
externalTools,
@@ -449,6 +451,7 @@ function registerIpc({
register(
"server:save",
async ({ server, password = "", passphrase = "" }) => {
await ssh.validateServerConfiguration(server, { password, passphrase });
const saved = await store.saveServer(server, { password, passphrase });
await diagnostics.info("server.saved", {
serverId: saved.id,
@@ -498,347 +501,11 @@ function registerIpc({
}),
);
register("repositories:refresh", async () => {
const result = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
return result;
});
register("repositories:discover", async ({ roots }) => {
const paths = await repositories.discoverAll(
roots || store.data.workspaceRoots,
);
return repositories.getLocalDescriptors(paths);
});
register("repository:favorite", async ({ fullName, favorite }) =>
store.setFavorite(fullName, favorite),
);
register("repository:link", async ({ fullName, localPath }) => {
await git.ensureRepository(localPath);
const remoteUrl = await git.getRemoteUrl(localPath).catch(() => "");
if (
!remoteUrl ||
!matchRemoteToRepository(remoteUrl, [{ full_name: fullName }])
) {
throw new Error(
`The selected folder's origin does not match ${fullName}.`,
);
}
await store.saveMapping(fullName, localPath);
await diagnostics.info("repository.linked", { fullName, localPath });
const result = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
return result;
});
register("repository:unlink", async ({ fullName }) => {
await store.removeMapping(fullName);
await diagnostics.info("repository.unlinked", { fullName });
const result = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
return result;
});
register("repository:status", async ({ localPath }) =>
git.status(await assertKnownRepositoryPath(localPath)),
);
register("repository:diff", async ({ localPath, filePath, staged }) =>
git.diff(await assertKnownRepositoryPath(localPath), filePath, staged),
);
register("repository:diff-hunks", async ({ localPath, filePath }) =>
git.diffHunks(await assertKnownRepositoryPath(localPath), filePath),
);
register(
"repository:stage-hunks",
async ({ localPath, filePath, hunkIndexes }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.stageHunks(safePath, filePath, hunkIndexes),
);
},
);
register("repository:conflicts", async ({ localPath }) =>
git.conflictState(await assertKnownRepositoryPath(localPath)),
);
register(
"repository:resolve-conflict",
async ({ localPath, filePath, resolution }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const result = await withRepositoryMutation(safePath, () =>
git.resolveConflict(safePath, filePath, resolution),
);
await audit.append("git.conflict.resolved", {
localPath: safePath,
filePath,
resolution,
});
return result;
},
);
register("repository:continue-operation", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const result = await withRepositoryMutation(safePath, () =>
git.continueInterruptedOperation(safePath),
);
await audit.append("git.operation.continued", { localPath: safePath });
return result;
});
register("repository:abort-operation", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const result = await withRepositoryMutation(safePath, () =>
git.abortInterruptedOperation(safePath),
);
await audit.append("git.operation.aborted", {
localPath: safePath,
operation: result.aborted,
});
return result;
});
register("repository:stage", async ({ localPath, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.stage(safePath, files));
});
register("repository:unstage", async ({ localPath, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.unstage(safePath, files));
});
register("repository:commit", async ({ localPath, message, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commit(safePath, message, files),
);
});
register("repository:commit-staged", async ({ localPath, message }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commitStaged(safePath, message),
);
});
register("repository:commit-staged-push", async ({ localPath, message }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commitStagedAndPush(safePath, message),
);
});
register("repository:commit-push", async ({ localPath, message, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commitAndPush(safePath, message, files),
);
});
register("repository:push", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.push(safePath));
});
register("repository:fetch", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.fetch(safePath));
});
register("repository:pull", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.pullFastForward(safePath),
);
});
register("repository:history", async ({ localPath, limit }) =>
git.history(await assertKnownRepositoryPath(localPath), limit),
);
register("repository:branch-protection", async ({ fullName, branch }) => {
const repository = await resolveRepository({ fullName });
return gitea.getBranchProtection(
repository.owner.login,
repository.name,
branch ||
repository.localStatus?.branch?.head ||
repository.defaultBranch,
);
});
register("repository:pull-requests", async ({ fullName, state = "open" }) => {
const repository = await resolveRepository({ fullName });
return gitea.listPullRequests({
owner: repository.owner.login,
repo: repository.name,
state,
});
});
register(
"repository:create-pull-request",
async ({ fullName, title, body, base }) => {
const repository = await resolveRepository({ fullName });
if (!repository.localPath || !repository.localStatus?.clean)
throw new Error(
"A clean linked repository is required before creating a pull request.",
);
const head = repository.localStatus.branch?.head;
if (!head || !repository.localStatus.branch?.upstream)
throw new Error(
"Publish the current branch before creating a pull request.",
);
if (repository.localStatus.branch.ahead > 0)
throw new Error(
"Push all local commits before creating a pull request.",
);
const pullRequest = await gitea.createPullRequest({
owner: repository.owner.login,
repo: repository.name,
head,
base: base || repository.defaultBranch,
title,
body,
});
await audit.append("pull-request.created", {
repository: repository.fullName,
number: pullRequest.number,
head,
base: base || repository.defaultBranch,
url: pullRequest.html_url,
});
return pullRequest;
},
);
register("repository:branches", async ({ localPath }) =>
git.branches(await assertKnownRepositoryPath(localPath)),
);
register("repository:checkout-branch", async ({ localPath, branch }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.checkoutBranch(safePath, branch),
);
});
register("repository:create-branch", async ({ localPath, branch }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.createBranch(safePath, branch),
);
});
register("repository:stash", async ({ localPath, message }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.stash(safePath, message));
});
register("repository:stash-list", async ({ localPath }) =>
git.stashList(await assertKnownRepositoryPath(localPath)),
);
register("repository:stash-pop", async ({ localPath, ref }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.popStash(safePath, ref));
});
register("repository:index-lock", async ({ localPath }) =>
git.getIndexLockInfo(await assertKnownRepositoryPath(localPath)),
);
register("repository:git-recovery-status", async ({ localPath }) =>
git.reconcile(await assertKnownRepositoryPath(localPath)),
);
register("repository:repair-index-lock", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.removeStaleIndexLock(safePath),
);
});
register(
"repository:repair-git-locks",
async ({ localPath, force = false }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.repairStaleGitLocks(safePath, {
minimumAgeMs: force ? 0 : 10_000,
allowWithoutProcessProbe: force === true,
}),
);
},
);
register("repository:reconcile", async ({ localPath }) =>
git.reconcile(await assertKnownRepositoryPath(localPath)),
);
register("repository:repair-sync", async ({ localPath, strategy }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.repairSync(safePath, strategy),
);
});
register("repository:set-origin", async ({ localPath, remoteUrl }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.setRemoteUrl(safePath, remoteUrl),
);
});
register("repositories:normalize-origins", async () => {
const current = await repositories.refresh();
const changes = [];
for (const repository of current) {
if (!repository.localPath || !repository.sshUrl) continue;
const actual = await git
.getRemoteUrl(repository.localPath)
.catch(() => "");
if (actual === repository.sshUrl) continue;
await withRepositoryMutation(repository.localPath, () =>
git.setRemoteUrl(repository.localPath, repository.sshUrl),
);
changes.push({
fullName: repository.fullName,
previous: actual,
next: repository.sshUrl,
});
}
const refreshed = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
await diagnostics.info("repositories.origins.normalized", {
count: changes.length,
changes,
});
return { changes, repositories: refreshed };
});
register("repository:clone", async ({ fullName, mode = "default" }) => {
if (!["default", "custom"].includes(mode))
throw new Error("Unsupported clone location mode.");
let projectRoot = store.data.workspaceRoots[0] || null;
if (mode === "custom" || !projectRoot) {
const result = await dialog.showOpenDialog({
title: `Choose a project root for ${String(fullName || "repository")}`,
defaultPath: projectRoot || undefined,
buttonLabel: "Use this project root",
properties: ["openDirectory", "createDirectory"],
});
if (result.canceled || !result.filePaths[0]) return { cancelled: true };
projectRoot = result.filePaths[0];
}
return cloneRepositoryInto(fullName, projectRoot);
});
register("repository:open-path", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const error = await shell.openPath(safePath);
if (error) throw new Error(error);
return true;
});
register(
"repository:open-editor",
async ({ localPath, filePath = "", line = 1 }) =>
externalTools.launch(
"editor",
await assertKnownRepositoryPath(localPath),
filePath,
line,
),
);
register("repository:open-terminal", async ({ localPath }) =>
externalTools.launch(
"terminal",
await assertKnownRepositoryPath(localPath),
),
);
register("external:open", async ({ url }) => {
const parsed = new URL(url);
if (!["http:", "https:"].includes(parsed.protocol))
throw new Error("Only HTTP and HTTPS links can be opened.");
await shell.openExternal(parsed.toString());
return true;
registerRepositoryIpc({
register, repositories, store, git, gitea, monitor, diagnostics, audit,
externalTools, gitValidator, withRepositoryMutation, assertKnownRepositoryPath,
resolveRepository, cloneRepositoryInto, cloneDirectoryName,
matchRemoteToRepository, shell, dialog,
});
register("troubleshooter:scan", async ({ fullName = null }) => {
@@ -1062,249 +729,13 @@ function registerIpc({
return results;
});
register("deployment:save-profile", async ({ fullName, profile }) => {
const saved = await store.saveDeploymentProfile(fullName, profile);
await diagnostics.info("deployment.profile.saved", {
repository: fullName,
profile: saved,
});
return { profile: saved, state: store.getPublicState() };
registerDeploymentIpc({
register, store, resolveRepository, unraid, deployments, evaluateDeploymentPolicy,
audit, deployKeys, repositories, inventoryReviews, diagnostics, git, gitea, ssh,
});
register("deployment:delete-profile", async ({ fullName, profileId }) => {
const profiles = await store.deleteDeploymentProfile(fullName, profileId);
await diagnostics.info("deployment.profile.deleted", {
repository: fullName,
profileId,
});
return { profiles, state: store.getPublicState() };
});
register("deployment:preflight", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
if (profile?.provider === "ssh-unraid")
return unraid.preflight({ repository: current, profileId });
return preflight.runDeployment({ repository: current, profileId });
});
register(
"deployment:dispatch",
async ({
repository,
profileId,
sha,
note = "",
override = false,
overrideReason = "",
}) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
const policy = evaluateDeploymentPolicy(profile, {
note,
override,
reason: overrideReason,
});
await audit.append("deployment.requested", {
repository: current.fullName,
profileId,
sha,
note: policy.note,
overridden: policy.overridden,
overrideReason: policy.reason,
});
const operation =
profile?.provider === "ssh-unraid"
? await unraid.deploy({ repository: current, profileId, sha })
: await deployments.deploy({ repository: current, profileId, sha });
if (operation?.id)
await store.addOperation({
...operation,
releaseNote: policy.note,
policyOverride: policy.overridden
? { reason: policy.reason, violations: policy.violations }
: null,
});
return operation;
},
);
register(
"deployment:rollback",
async ({ repository, profileId, targetSha }) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
if (profile?.provider === "ssh-unraid")
return unraid.rollback({ repository: current, profileId, targetSha });
return deployments.rollback({
repository: current,
profileId,
targetSha,
});
},
);
register("deployment:health", ({ url }) => deployments.checkHealth(url));
register("deployment:discover-server-workloads", async () => {
const repositoryList = await repositories.refresh();
const remoteRepositories = repositoryList.filter(
(repository) => repository.owner?.login !== "local",
);
const results = [];
for (const server of store.data.servers || []) {
try {
results.push(
await unraid.discoverServerWorkloads(server.id, remoteRepositories),
);
} catch (error) {
results.push({
serverId: server.id,
detected: 0,
adopted: 0,
verified: 0,
unmatched: 0,
error: error.message,
});
}
}
return results;
});
register("deployment:profile-state", async ({ fullName, profileId }) => {
const profile = store.getDeploymentProfile(fullName, profileId);
if (profile?.provider === "ssh-unraid") {
let giteaSha = null;
try {
const [owner, repo] = String(fullName || "").split("/");
const branch = await gitea.getBranch(owner, repo, profile.branch);
giteaSha = branch?.commit?.id || branch?.commit?.sha || null;
} catch {}
return unraid.refreshProfileState(fullName, profileId, giteaSha);
}
return deployments.refreshProfileState(fullName, profileId);
});
register(
"deployment:apply-dockerman-metadata",
async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
return unraid.applyDockerManMetadata({ repository: current, profileId });
},
);
register("deployment:reconcile", async ({ fullName, profileId }) => {
const profile = store.getDeploymentProfile(fullName, profileId);
if (profile?.provider !== "ssh-unraid")
return deployments.refreshProfileState(fullName, profileId);
const [owner, repo] = String(fullName || "").split("/");
const branch = await gitea.getBranch(owner, repo, profile.branch);
const giteaSha =
branch?.commit?.id ||
branch?.commit?.sha ||
branch?.commit?.commit?.id ||
null;
const state = await unraid.refreshProfileState(
fullName,
profileId,
giteaSha,
);
const operations = store.data.operations.filter(
(item) =>
item.profileId === profileId &&
item.provider === "ssh-unraid" &&
!["success", "failed", "cancelled", "rolled-back"].includes(
item.status,
),
);
for (const operation of operations)
await unraid.refreshOperation(operation.id);
return {
state,
operations: await unraid.reconcileRecordedOperations(profileId, state),
};
});
register("operations:refresh", async ({ operationId }) => {
if (operationId) {
const operation = store.getOperation(operationId);
if (operation?.provider === "ssh-unraid")
return unraid.refreshOperation(operationId);
return deployments.refreshOperation(operationId);
}
const [actions, sshOperations] = await Promise.all([
deployments.refreshActiveOperations(),
unraid.refreshActiveOperations(),
]);
return [...actions, ...sshOperations];
});
register("operations:get", ({ operationId }) =>
store.getOperation(operationId),
);
register("diagnostics:status", () => diagnostics.getStatus());
register("diagnostics:clear", () => diagnostics.clear());
register("diagnostics:open-folder", async () => {
const error = await shell.openPath(diagnostics.logDirectory);
if (error) throw new Error(error);
return true;
});
register("diagnostics:export", async ({ privacyMode = "standard" }) => {
if (!["standard", "strict"].includes(privacyMode))
throw new Error("Unsupported diagnostic privacy mode.");
const result = await dialog.showSaveDialog({
title: "Export ForgeFlow diagnostic bundle",
defaultPath: path.join(
app.getPath("downloads"),
`ForgeFlow-Diagnostics-${new Date().toISOString().replace(/[:.]/g, "-")}.zip`,
),
filters: [{ name: "ZIP archive", extensions: ["zip"] }],
});
if (result.canceled || !result.filePath) return null;
const repositoryState = await repositories.refresh().catch((error) => {
diagnostics.warning("diagnostics.repository-snapshot.failed", error);
return [];
});
const systemPreflight = await preflight
.runSystem()
.catch((error) => ({ error: error.message }));
const destinationPath =
path.extname(result.filePath).toLowerCase() === ".zip"
? result.filePath
: `${result.filePath}.zip`;
return diagnostics.exportSupportBundle({
destinationPath,
publicState: store.getPublicState(),
repositories: repositoryState,
operations: store.data.operations,
preflight: systemPreflight,
privacyMode,
extra: {
appVersion: app.getVersion(),
setupComplete: store.data.setupComplete,
},
});
});
register("diagnostics:show-bundle", async ({ filePath }) => {
if (!diagnostics.isKnownBundlePath(filePath))
throw new Error(
"Only the most recently generated support bundle can be revealed.",
);
shell.showItemInFolder(filePath);
return true;
});
register(
"renderer:report",
async ({ level = "info", event = "renderer.event", details = {} }) => {
const method = ["debug", "info", "warning", "error"].includes(level)
? level
: "info";
await diagnostics[method](
`renderer.${String(event || "event").slice(0, 120)}`,
details,
);
return true;
},
);
register("app:reset", async () => {
await diagnostics.info("app.reset.requested", {});
store.data = store.migrate({});
store.sessionToken = null;
await store.save();
monitor?.setPaths([]);
monitor?.restart();
return store.getPublicState();
registerOperationsIpc({
register, store, unraid, deployments, diagnostics, shell, dialog, path, app,
repositories, preflight, monitor,
});
}
+284
View File
@@ -0,0 +1,284 @@
"use strict";
function registerDeploymentIpc({
register, store, resolveRepository, unraid, deployments, evaluateDeploymentPolicy,
audit, deployKeys, repositories, inventoryReviews, diagnostics, git, gitea, ssh,
}) {
register("deployment:save-profile", async ({ fullName, profile }) => {
const saved = await store.saveDeploymentProfile(fullName, profile);
await diagnostics.info("deployment.profile.saved", {
repository: fullName,
profile: saved,
});
return { profile: saved, state: store.getPublicState() };
});
register("deployment:delete-profile", async ({ fullName, profileId }) => {
const profiles = await store.deleteDeploymentProfile(fullName, profileId);
await diagnostics.info("deployment.profile.deleted", {
repository: fullName,
profileId,
});
return { profiles, state: store.getPublicState() };
});
register("deployment:preflight", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
if (profile?.provider === "ssh-unraid")
return unraid.preflight({ repository: current, profileId });
return preflight.runDeployment({ repository: current, profileId });
});
register("deployment:repair-write-access", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
if (profile?.provider !== "ssh-unraid")
throw new Error("Write-access repair is available only for SSH / Unraid deployment profiles.");
const result = await unraid.repairWriteAccess({ repository: current, profileId });
await audit.append("deployment.write-access.repaired", {
repository: current.fullName,
profileId,
changed: result.changed,
remotePath: result.after?.remotePath || result.before?.remotePath || null,
});
return result;
});
register(
"deployment:dispatch",
async ({
repository,
profileId,
sha,
note = "",
override = false,
overrideReason = "",
}) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
const policy = evaluateDeploymentPolicy(profile, {
note,
override,
reason: overrideReason,
});
await audit.append("deployment.requested", {
repository: current.fullName,
profileId,
sha,
note: policy.note,
overridden: policy.overridden,
overrideReason: policy.reason,
});
const operation =
profile?.provider === "ssh-unraid"
? await unraid.deploy({ repository: current, profileId, sha })
: await deployments.deploy({ repository: current, profileId, sha });
if (operation?.id)
await store.addOperation({
...operation,
releaseNote: policy.note,
policyOverride: policy.overridden
? { reason: policy.reason, violations: policy.violations }
: null,
});
return operation;
},
);
register(
"deployment:rollback",
async ({ repository, profileId, targetSha }) => {
const current = await resolveRepository(repository);
const profile = store.getDeploymentProfile(current.fullName, profileId);
if (profile?.provider === "ssh-unraid")
return unraid.rollback({ repository: current, profileId, targetSha });
return deployments.rollback({
repository: current,
profileId,
targetSha,
});
},
);
register("deployment:health", ({ url }) => deployments.checkHealth(url));
register("deployment:link-server-workload", async ({ repository, serverId, workloadId, deploymentMode = "server-git", remoteFolder = "" }) => {
const current = await resolveRepository(repository);
const result = await unraid.linkServerWorkload({
repository: current,
serverId,
workloadId,
deploymentMode,
remoteFolder,
});
return { ...result, state: store.getPublicState() };
});
register("deployment:configure-server-git-access", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
const result = await unraid.configureServerGitAccess({ repository: current, profileId });
await audit.append("deployment.server-git-access-configured", {
repository: current.fullName,
profileId,
keyFingerprint: result.keyFingerprint,
hostFingerprint: result.hostFingerprint,
});
return { ...result, state: store.getPublicState() };
});
register("deployment:verify-server-git-profile", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
const result = await unraid.verifyServerGitProfile({ repository: current, profileId });
await audit.append("deployment.server-git-access-verified", {
repository: current.fullName,
profileId,
readiness: result.readiness,
ready: result.ready,
checkedAt: result.checkedAt,
});
return result;
});
register("deployment:deploy-key-inventory", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
return deployKeys.inventory({ repository: current, profileId });
});
register("deployment:plan-deploy-key-rotation", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
return deployKeys.planRotation({ repository: current, profileId });
});
register("deployment:apply-deploy-key-rotation", async ({ repository, profileId, planId }) => {
const current = await resolveRepository(repository);
const result = await deployKeys.rotate({ repository: current, profileId, expectedPlanId: planId });
return { ...result, state: store.getPublicState() };
});
register("deployment:plan-deploy-key-revocation", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
return deployKeys.planRevocation({ repository: current, profileId });
});
register("deployment:apply-deploy-key-revocation", async ({ repository, profileId, planId }) => {
const current = await resolveRepository(repository);
const result = await deployKeys.revoke({ repository: current, profileId, expectedPlanId: planId });
return { ...result, state: store.getPublicState() };
});
register("deployment:restore-deploy-key", async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
const result = await deployKeys.restore({ repository: current, profileId });
return { ...result, state: store.getPublicState() };
});
register("deployment:discover-server-workloads", async () => {
const repositoryList = await repositories.refresh();
const remoteRepositories = repositoryList.filter(
(repository) => repository.owner?.login !== "local",
);
const results = [];
for (const server of store.data.servers || []) {
try {
results.push(
await unraid.discoverServerWorkloads(server.id, remoteRepositories),
);
} catch (error) {
results.push({
serverId: server.id,
serverName: server.name,
detected: 0,
adopted: 0,
verified: 0,
linked: 0,
unmatched: 0,
needsReview: 0,
capabilities: {},
warnings: [],
workloads: [],
error: error.message,
});
}
}
return results;
});
register("deployment:plan-server-reconciliation", async ({ serverId }) => {
const repositoryList = await repositories.refresh();
const remoteRepositories = repositoryList.filter((repository) => repository.owner?.login !== "local");
const result = await unraid.planServerInventoryReconciliation(serverId, remoteRepositories, { autoLink: true });
await audit.append("deployment.server-reconciliation-planned", {
serverId,
planId: result.plan.id,
summary: result.plan.summary,
});
return result;
});
register("deployment:apply-server-reconciliation", async ({ serverId, planId }) => {
const repositoryList = await repositories.refresh();
const remoteRepositories = repositoryList.filter((repository) => repository.owner?.login !== "local");
const result = await unraid.reconcileServerInventory(serverId, remoteRepositories, { autoLink: true, expectedPlanId: planId });
await audit.append("deployment.server-reconciliation-applied", {
serverId,
planId,
adopted: result.adopted,
refreshed: result.refreshed,
retired: result.retired,
recoverySnapshot: result.recoverySnapshot?.filePath || null,
});
return { ...result, state: store.getPublicState() };
});
register("deployment:plan-inventory-review", async ({ serverId, workloadId, action, reason = "", repositoryFullName = null }) => {
const repositoryList = await repositories.refresh();
const inventory = await unraid.scanServerInventory(serverId, repositoryList.filter((item) => item.owner?.login !== "local"));
const workload = inventory.workloads.find((item) => item.workloadId === workloadId);
if (!workload) throw Object.assign(new Error("The workload changed or disappeared. Rescan before reviewing it."), { code: "INVENTORY_REVIEW_WORKLOAD_STALE" });
return inventoryReviews.preview({ serverId, workload, action, reason, repositoryFullName });
});
register("deployment:apply-inventory-review", async ({ serverId, workloadId, action, reason = "", repositoryFullName = null, planId }) => {
const repositoryList = await repositories.refresh();
const inventory = await unraid.scanServerInventory(serverId, repositoryList.filter((item) => item.owner?.login !== "local"));
const workload = inventory.workloads.find((item) => item.workloadId === workloadId);
if (!workload) throw Object.assign(new Error("The workload changed or disappeared. Rescan before applying the review."), { code: "INVENTORY_REVIEW_WORKLOAD_STALE" });
const plan = inventoryReviews.preview({ serverId, workload, action, reason, repositoryFullName });
const result = await inventoryReviews.apply({ plan, expectedPlanId: planId });
return { ...result, inventory: await unraid.scanServerInventory(serverId, repositoryList.filter((item) => item.owner?.login !== "local")), state: store.getPublicState() };
});
register("deployment:profile-state", async ({ fullName, profileId }) => {
const profile = store.getDeploymentProfile(fullName, profileId);
if (profile?.provider === "ssh-unraid") {
let giteaSha = null;
try {
const [owner, repo] = String(fullName || "").split("/");
const branch = await gitea.getBranch(owner, repo, profile.branch);
giteaSha = branch?.commit?.id || branch?.commit?.sha || null;
} catch {}
return unraid.refreshProfileState(fullName, profileId, giteaSha);
}
return deployments.refreshProfileState(fullName, profileId);
});
register(
"deployment:apply-dockerman-metadata",
async ({ repository, profileId }) => {
const current = await resolveRepository(repository);
return unraid.applyDockerManMetadata({ repository: current, profileId });
},
);
register("deployment:reconcile", async ({ fullName, profileId }) => {
const profile = store.getDeploymentProfile(fullName, profileId);
if (profile?.provider !== "ssh-unraid")
return deployments.refreshProfileState(fullName, profileId);
const [owner, repo] = String(fullName || "").split("/");
const branch = await gitea.getBranch(owner, repo, profile.branch);
const giteaSha =
branch?.commit?.id ||
branch?.commit?.sha ||
branch?.commit?.commit?.id ||
null;
const state = await unraid.refreshProfileState(
fullName,
profileId,
giteaSha,
);
const operations = store.data.operations.filter(
(item) =>
item.profileId === profileId &&
item.provider === "ssh-unraid" &&
!["success", "failed", "cancelled", "rolled-back"].includes(
item.status,
),
);
for (const operation of operations)
await unraid.refreshOperation(operation.id);
return {
state,
operations: await unraid.reconcileRecordedOperations(profileId, state),
};
});
}
module.exports = { registerDeploymentIpc };
+100
View File
@@ -0,0 +1,100 @@
"use strict";
function registerOperationsIpc({
register, store, unraid, deployments, diagnostics, shell, dialog, path, app,
repositories, preflight, monitor,
}) {
register("operations:refresh", async ({ operationId }) => {
if (operationId) {
const operation = store.getOperation(operationId);
if (operation?.provider === "ssh-unraid")
return unraid.refreshOperation(operationId);
return deployments.refreshOperation(operationId);
}
const [actions, sshOperations] = await Promise.all([
deployments.refreshActiveOperations(),
unraid.refreshActiveOperations(),
]);
return [...actions, ...sshOperations];
});
register("operations:get", ({ operationId }) =>
store.getOperation(operationId),
);
register("diagnostics:status", () => diagnostics.getStatus());
register("diagnostics:clear", () => diagnostics.clear());
register("diagnostics:open-folder", async () => {
const error = await shell.openPath(diagnostics.logDirectory);
if (error) throw new Error(error);
return true;
});
register("diagnostics:export", async ({ privacyMode = "standard" }) => {
if (!["standard", "strict"].includes(privacyMode))
throw new Error("Unsupported diagnostic privacy mode.");
const result = await dialog.showSaveDialog({
title: "Export ForgeFlow diagnostic bundle",
defaultPath: path.join(
app.getPath("downloads"),
`ForgeFlow-Diagnostics-${new Date().toISOString().replace(/[:.]/g, "-")}.zip`,
),
filters: [{ name: "ZIP archive", extensions: ["zip"] }],
});
if (result.canceled || !result.filePath) return null;
const repositoryState = await repositories.refresh().catch((error) => {
diagnostics.warning("diagnostics.repository-snapshot.failed", error);
return [];
});
const systemPreflight = await preflight
.runSystem()
.catch((error) => ({ error: error.message }));
const destinationPath =
path.extname(result.filePath).toLowerCase() === ".zip"
? result.filePath
: `${result.filePath}.zip`;
return diagnostics.exportSupportBundle({
destinationPath,
publicState: store.getPublicState(),
repositories: repositoryState,
operations: store.data.operations,
preflight: systemPreflight,
privacyMode,
extra: {
appVersion: app.getVersion(),
setupComplete: store.data.setupComplete,
},
});
});
register("diagnostics:show-bundle", async ({ filePath }) => {
if (!diagnostics.isKnownBundlePath(filePath))
throw new Error(
"Only the most recently generated support bundle can be revealed.",
);
shell.showItemInFolder(filePath);
return true;
});
register(
"renderer:report",
async ({ level = "info", event = "renderer.event", details = {} }) => {
const method = ["debug", "info", "warning", "error"].includes(level)
? level
: "info";
await diagnostics[method](
`renderer.${String(event || "event").slice(0, 120)}`,
details,
);
return true;
},
);
register("app:reset", async () => {
await diagnostics.info("app.reset.requested", {});
store.data = store.migrate({});
store.sessionToken = null;
await store.save();
monitor?.setPaths([]);
monitor?.restart();
return store.getPublicState();
});
}
module.exports = { registerOperationsIpc };
+412
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@@ -0,0 +1,412 @@
"use strict";
function registerRepositoryIpc({
register, repositories, store, git, gitea, monitor, diagnostics, audit,
externalTools, gitValidator, withRepositoryMutation, assertKnownRepositoryPath,
resolveRepository, cloneRepositoryInto, cloneDirectoryName,
matchRemoteToRepository, shell, dialog,
}) {
register("repositories:refresh", async ({ force = false }) => {
const result = await repositories.refresh({ force: force === true });
monitor?.setPaths(repositories.getWatchPaths());
return result;
});
register("repositories:discover", async ({ roots }) => {
const paths = await repositories.discoverAll(
roots || store.data.workspaceRoots,
);
return repositories.getLocalDescriptors(paths);
});
register("repository:favorite", async ({ fullName, favorite }) =>
store.setFavorite(fullName, favorite),
);
register("repository:link", async ({ fullName, localPath }) => {
await git.ensureRepository(localPath);
const remoteUrl = await git.getRemoteUrl(localPath).catch(() => "");
if (
!remoteUrl ||
!matchRemoteToRepository(remoteUrl, [{ full_name: fullName }])
) {
throw new Error(
`The selected folder's origin does not match ${fullName}.`,
);
}
await store.saveMapping(fullName, localPath);
await diagnostics.info("repository.linked", { fullName, localPath });
const result = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
return result;
});
register("repository:unlink", async ({ fullName }) => {
await store.removeMapping(fullName);
await diagnostics.info("repository.unlinked", { fullName });
const result = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
return result;
});
register("repository:status", async ({ localPath }) =>
git.status(await assertKnownRepositoryPath(localPath)),
);
register("repository:diff", async ({ localPath, filePath, staged }) =>
git.diff(await assertKnownRepositoryPath(localPath), filePath, staged),
);
register("repository:diff-hunks", async ({ localPath, filePath }) =>
git.diffHunks(await assertKnownRepositoryPath(localPath), filePath),
);
register(
"repository:stage-hunks",
async ({ localPath, filePath, hunkIndexes }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.stageHunks(safePath, filePath, hunkIndexes),
);
},
);
register("repository:conflicts", async ({ localPath }) =>
git.conflictState(await assertKnownRepositoryPath(localPath)),
);
register(
"repository:resolve-conflict",
async ({ localPath, filePath, resolution }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const result = await withRepositoryMutation(safePath, () =>
git.resolveConflict(safePath, filePath, resolution),
);
await audit.append("git.conflict.resolved", {
localPath: safePath,
filePath,
resolution,
});
return result;
},
);
register("repository:continue-operation", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const result = await withRepositoryMutation(safePath, () =>
git.continueInterruptedOperation(safePath),
);
await audit.append("git.operation.continued", { localPath: safePath });
return result;
});
register("repository:abort-operation", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const result = await withRepositoryMutation(safePath, () =>
git.abortInterruptedOperation(safePath),
);
await audit.append("git.operation.aborted", {
localPath: safePath,
operation: result.aborted,
});
return result;
});
register("repository:stage", async ({ localPath, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.stage(safePath, files));
});
register("repository:unstage", async ({ localPath, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.unstage(safePath, files));
});
register("repository:commit", async ({ localPath, message, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commit(safePath, message, files),
);
});
register("repository:commit-staged", async ({ localPath, message }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commitStaged(safePath, message),
);
});
register("repository:commit-staged-push", async ({ localPath, message }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commitStagedAndPush(safePath, message),
);
});
register("repository:commit-push", async ({ localPath, message, files }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.commitAndPush(safePath, message, files),
);
});
register("repository:push", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.push(safePath));
});
register("repository:fetch", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.fetch(safePath));
});
register("repository:pull", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.pullFastForward(safePath),
);
});
register("repository:history", async ({ localPath, limit }) =>
git.history(await assertKnownRepositoryPath(localPath), limit),
);
register("repository:branch-protection", async ({ fullName, branch }) => {
const repository = await resolveRepository({ fullName });
return gitea.getBranchProtection(
repository.owner.login,
repository.name,
branch ||
repository.localStatus?.branch?.head ||
repository.defaultBranch,
);
});
register("repository:pull-requests", async ({ fullName, state = "open" }) => {
const repository = await resolveRepository({ fullName });
return gitea.listPullRequests({
owner: repository.owner.login,
repo: repository.name,
state,
});
});
register(
"repository:create-pull-request",
async ({ fullName, title, body, base }) => {
const repository = await resolveRepository({ fullName });
if (!repository.localPath || !repository.localStatus?.clean)
throw new Error(
"A clean linked repository is required before creating a pull request.",
);
const head = repository.localStatus.branch?.head;
if (!head || !repository.localStatus.branch?.upstream)
throw new Error(
"Publish the current branch before creating a pull request.",
);
if (repository.localStatus.branch.ahead > 0)
throw new Error(
"Push all local commits before creating a pull request.",
);
const pullRequest = await gitea.createPullRequest({
owner: repository.owner.login,
repo: repository.name,
head,
base: base || repository.defaultBranch,
title,
body,
});
await audit.append("pull-request.created", {
repository: repository.fullName,
number: pullRequest.number,
head,
base: base || repository.defaultBranch,
url: pullRequest.html_url,
});
return pullRequest;
},
);
register("repository:branches", async ({ localPath }) =>
git.branches(await assertKnownRepositoryPath(localPath)),
);
register("repository:checkout-branch", async ({ localPath, branch }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.checkoutBranch(safePath, branch),
);
});
register("repository:create-branch", async ({ localPath, branch }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.createBranch(safePath, branch),
);
});
register("repository:stash", async ({ localPath, message }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.stash(safePath, message));
});
register("repository:stash-list", async ({ localPath }) =>
git.stashList(await assertKnownRepositoryPath(localPath)),
);
register("repository:stash-pop", async ({ localPath, ref }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () => git.popStash(safePath, ref));
});
register("repository:index-lock", async ({ localPath }) =>
git.getIndexLockInfo(await assertKnownRepositoryPath(localPath)),
);
register("repository:git-recovery-status", async ({ localPath }) =>
git.reconcile(await assertKnownRepositoryPath(localPath)),
);
register("repository:repair-index-lock", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.removeStaleIndexLock(safePath),
);
});
register(
"repository:repair-git-locks",
async ({ localPath, force = false }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.repairStaleGitLocks(safePath, {
minimumAgeMs: force ? 0 : 10_000,
allowWithoutProcessProbe: force === true,
}),
);
},
);
register("repository:reconcile", async ({ localPath }) =>
git.reconcile(await assertKnownRepositoryPath(localPath)),
);
register("repository:repair-sync", async ({ localPath, strategy }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.repairSync(safePath, strategy),
);
});
register("repository:set-origin", async ({ localPath, remoteUrl }) => {
const safePath = await assertKnownRepositoryPath(localPath);
return withRepositoryMutation(safePath, () =>
git.setRemoteUrl(safePath, remoteUrl),
);
});
register("repositories:normalize-origins", async () => {
const current = await repositories.refresh();
const changes = [];
for (const repository of current) {
if (!repository.localPath || !repository.sshUrl) continue;
const actual = await git
.getRemoteUrl(repository.localPath)
.catch(() => "");
if (actual === repository.sshUrl) continue;
await withRepositoryMutation(repository.localPath, () =>
git.setRemoteUrl(repository.localPath, repository.sshUrl),
);
changes.push({
fullName: repository.fullName,
previous: actual,
next: repository.sshUrl,
});
}
const refreshed = await repositories.refresh();
monitor?.setPaths(repositories.getWatchPaths());
await diagnostics.info("repositories.origins.normalized", {
count: changes.length,
changes,
});
return { changes, repositories: refreshed };
});
register("repository:clone", async ({ fullName, mode = "default" }) => {
if (!["default", "custom"].includes(mode))
throw new Error("Unsupported clone location mode.");
let projectRoot = store.data.workspaceRoots[0] || null;
if (mode === "custom" || !projectRoot) {
const result = await dialog.showOpenDialog({
title: `Choose a project root for ${String(fullName || "repository")}`,
defaultPath: projectRoot || undefined,
buttonLabel: "Use this project root",
properties: ["openDirectory", "createDirectory"],
});
if (result.canceled || !result.filePaths[0]) return { cancelled: true };
projectRoot = result.filePaths[0];
}
return cloneRepositoryInto(fullName, projectRoot);
});
register("repository:open-path", async ({ localPath }) => {
const safePath = await assertKnownRepositoryPath(localPath);
const error = await shell.openPath(safePath);
if (error) throw new Error(error);
return true;
});
register(
"repository:open-editor",
async ({ localPath, filePath = "", line = 1 }) =>
externalTools.launch(
"editor",
await assertKnownRepositoryPath(localPath),
filePath,
line,
),
);
register("repository:open-terminal", async ({ localPath }) =>
externalTools.launch(
"terminal",
await assertKnownRepositoryPath(localPath),
),
);
register("external:open", async ({ url }) => {
const parsed = new URL(url);
if (!["http:", "https:"].includes(parsed.protocol))
throw new Error("Only HTTP and HTTPS links can be opened.");
await shell.openExternal(parsed.toString());
return true;
});
register("git-validator:scan", async ({ fullName }) => {
const repository = await resolveRepository({ fullName });
const report = await gitValidator.scan(repository);
await diagnostics.info("git-validator.scan.completed", {
repository: repository.fullName,
score: report.score,
summary: report.summary,
});
return report;
});
register("git-validator:set-policy", async ({ fullName, policy }) => {
const repository = await resolveRepository({ fullName });
const saved = await gitValidator.setPolicy(repository, policy);
await audit.append("git-validator.policy.changed", { repository: repository.fullName, policy: saved.id });
return saved;
});
register("git-validator:suppress", async ({ fullName, suppression }) => {
const repository = await resolveRepository({ fullName });
const saved = await gitValidator.suppress(repository, suppression);
await audit.append("git-validator.finding.suppressed", { repository: repository.fullName, checkId: saved.checkId, expiresAt: saved.expiresAt, ticket: saved.ticket });
return saved;
});
register("git-validator:preview-repair", async ({ fullName, check }) => {
const repository = await resolveRepository({ fullName });
const currentCheck = await gitValidator.resolveRepairCheck(repository, check);
return gitValidator.previewRepair(repository, currentCheck);
});
register("git-validator:export", async ({ fullName, format = "json" }) => {
const repository = await resolveRepository({ fullName });
const report = await gitValidator.scan(repository);
return gitValidator.export(report, format);
});
register("git-validator:repair", async ({ fullName, check }) => {
const repository = await resolveRepository({ fullName });
const allowed = new Set([
"align-origin",
"configure-local-safety",
"add-gitignore",
"add-gitattributes",
"add-editorconfig",
"protect-default-branch",
]);
const currentCheck = await gitValidator.resolveRepairCheck(repository, check);
if (!allowed.has(currentCheck.fixAction))
throw new Error("Unsupported Git Validator repair request.");
const result = await gitValidator.repair(repository, currentCheck);
await audit.append("git-validator.repair", {
repository: repository.fullName,
checkId: currentCheck.id,
action: currentCheck.fixAction,
});
await diagnostics.info("git-validator.repair.completed", {
repository: repository.fullName,
checkId: currentCheck.id,
action: currentCheck.fixAction,
});
return result;
});
}
module.exports = { registerRepositoryIpc };
+26
View File
@@ -0,0 +1,26 @@
'use strict';
function isBrokenPipeError(error) {
return error?.code === 'EPIPE';
}
function installOutputPipeGuards({
stdout = process.stdout,
stderr = process.stderr,
onBrokenPipe = () => {}
} = {}) {
const guardedStreams = [stdout, stderr].filter(Boolean);
const handlers = guardedStreams.map((stream) => {
const handler = (error) => {
if (!isBrokenPipeError(error)) throw error;
onBrokenPipe(error);
};
stream.on('error', handler);
return { stream, handler };
});
return () => {
for (const { stream, handler } of handlers) stream.off('error', handler);
};
}
module.exports = { installOutputPipeGuards, isBrokenPipeError };
+149
View File
@@ -0,0 +1,149 @@
"use strict";
const fs = require("node:fs/promises");
const os = require("node:os");
const path = require("node:path");
const crypto = require("node:crypto");
const { run } = require("./process-runner.cjs");
class ProductionAcceptanceHarness {
constructor(root) {
this.root = root;
this.paths = {
remote: path.join(root, "gitea", "owner", "app.git"),
source: path.join(root, "workspace", "app"),
server: path.join(root, "server", "appdata", "app"),
releases: path.join(root, "releases"),
config: path.join(root, "user-data", "forgeflow-config.json"),
keys: path.join(root, "keys"),
};
this.state = { installed: false, version: null, tokenVersion: 1, auth: null, liveSha: null, previousSha: null, healthy: false, deployment: null, recovery: null, hostFingerprint: "SHA256:fixture-host", keyReadOnly: true };
}
static async create() {
const root = await fs.mkdtemp(path.join(os.tmpdir(), "forgeflow-production-acceptance-"));
const harness = new ProductionAcceptanceHarness(root);
await harness.provision();
return harness;
}
async provision() {
await Promise.all(Object.values(this.paths).filter((value) => !path.extname(value)).map((directory) => fs.mkdir(directory, { recursive: true })));
await fs.mkdir(path.dirname(this.paths.remote), { recursive: true });
await run("git", ["init", "--bare", this.paths.remote], { cwd: this.root, timeout: 30_000 });
await fs.mkdir(this.paths.source, { recursive: true });
await run("git", ["init", "-b", "main"], { cwd: this.paths.source, timeout: 30_000 });
await run("git", ["config", "user.name", "ForgeFlow Acceptance"], { cwd: this.paths.source });
await run("git", ["config", "user.email", "acceptance@example.invalid"], { cwd: this.paths.source });
await fs.writeFile(path.join(this.paths.source, "compose.yml"), "services:\n app:\n image: forgeflow-fixture:latest\n", "utf8");
await fs.writeFile(path.join(this.paths.source, "README.md"), "# Acceptance fixture\n", "utf8");
await run("git", ["add", "."], { cwd: this.paths.source });
await run("git", ["commit", "-m", "feat: initial fixture"], { cwd: this.paths.source });
await run("git", ["remote", "add", "origin", this.paths.remote], { cwd: this.paths.source });
await run("git", ["push", "-u", "origin", "main"], { cwd: this.paths.source, timeout: 30_000 });
this.initialSha = (await run("git", ["rev-parse", "HEAD"], { cwd: this.paths.source })).stdout.trim();
await fs.mkdir(this.paths.releases, { recursive: true });
await fs.mkdir(path.dirname(this.paths.config), { recursive: true });
await fs.mkdir(this.paths.keys, { recursive: true });
await fs.writeFile(path.join(this.paths.keys, "deploy_key.pub"), "ssh-ed25519 AAAAC3NzaC1lZDI1NTE5AAAAIFixture forgeflow-acceptance\n", "utf8");
}
async cleanup() { await fs.rm(this.root, { recursive: true, force: true }); }
async install(version = "0.10.0", mode = "installed") {
this.state.installed = true; this.state.version = version; this.state.mode = mode;
await this.saveConfig({ schemaVersion: 12, version, mode });
return structuredClone(this.state);
}
async migrate(targetVersion = "1.0.0") {
if (!this.state.installed) throw new Error("Clean installation is required before migration.");
const previous = JSON.parse(await fs.readFile(this.paths.config, "utf8"));
await fs.writeFile(`${this.paths.config}.backup`, JSON.stringify(previous, null, 2), "utf8");
this.state.version = targetVersion;
await this.saveConfig({ ...previous, schemaVersion: 13, version: targetVersion, migratedAt: new Date().toISOString() });
return { previousVersion: previous.version, version: targetVersion, backup: `${this.paths.config}.backup` };
}
async saveConfig(data) { await fs.writeFile(this.paths.config, `${JSON.stringify(data, null, 2)}\n`, "utf8"); }
rotateToken() { this.state.tokenVersion += 1; return { tokenVersion: this.state.tokenVersion }; }
authenticate(type, options = {}) {
if (!['password', 'ssh-key'].includes(type)) throw new Error("Unsupported authentication fixture.");
if (type === 'ssh-key' && options.hostFingerprint !== this.state.hostFingerprint) throw new Error("SSH host fingerprint changed.");
this.state.auth = type; return { authenticated: true, type };
}
setKeyAccess(readOnly) { this.state.keyReadOnly = readOnly; }
async createCommit(message = "fix: acceptance change") {
const target = path.join(this.paths.source, "fixture.txt");
await fs.writeFile(target, `${crypto.randomUUID()}\n`, "utf8");
await run("git", ["add", "fixture.txt"], { cwd: this.paths.source });
await run("git", ["commit", "-m", message], { cwd: this.paths.source });
await run("git", ["push", "origin", "main"], { cwd: this.paths.source });
return (await run("git", ["rev-parse", "HEAD"], { cwd: this.paths.source })).stdout.trim();
}
plan(sha, mode = "server-git") {
return { id: crypto.randomUUID(), evidenceHash: crypto.createHash("sha256").update(JSON.stringify({ sha, mode, liveSha: this.state.liveSha, keyReadOnly: this.state.keyReadOnly })).digest("hex"), sha, mode, previousSha: this.state.liveSha };
}
async deploy(plan, fault = null) {
if (!this.state.auth) throw new Error("Server authentication is required.");
if (plan.mode === "server-git" && !this.state.keyReadOnly) throw new Error("Writable deploy key rejected.");
if (this.plan(plan.sha, plan.mode).evidenceHash !== plan.evidenceHash) throw new Error("Stale reconciliation plan.");
this.state.recovery = structuredClone(this.state);
this.state.deployment = { id: crypto.randomUUID(), sha: plan.sha, mode: plan.mode, status: "running" };
if (fault === "fetch-network") return this.fail("Network interrupted during fetch", false);
await fs.mkdir(this.paths.server, { recursive: true });
await fs.writeFile(path.join(this.paths.server, "compose.yml"), await fs.readFile(path.join(this.paths.source, "compose.yml")));
if (fault === "activation-network") return this.fail("Network interrupted during activation", true);
if (fault === "shutdown") { this.state.deployment.status = "interrupted"; return structuredClone(this.state.deployment); }
this.state.previousSha = this.state.liveSha;
this.state.liveSha = plan.sha;
this.state.healthy = fault !== "unhealthy";
this.state.deployment.status = this.state.healthy ? "success" : "failed";
return structuredClone(this.state.deployment);
}
fail(message, partial) { this.state.deployment.status = "failed"; this.state.deployment.failure = { message, partial }; return structuredClone(this.state.deployment); }
recover() {
if (this.state.deployment?.status !== "interrupted") throw new Error("No interrupted deployment to recover.");
this.state.deployment.status = this.state.liveSha === this.state.deployment.sha && this.state.healthy ? "success" : "failed";
return structuredClone(this.state.deployment);
}
rollback(targetSha) {
if (!targetSha || targetSha !== this.state.previousSha) throw new Error("Rollback target is not the exact recorded previous SHA.");
[this.state.liveSha, this.state.previousSha] = [targetSha, this.state.liveSha]; this.state.healthy = true;
return { status: "rolled-back", liveSha: this.state.liveSha };
}
adoptExisting(sha = this.initialSha) { this.state.liveSha = sha; this.state.healthy = true; return { linked: true, liveSha: sha, preserved: true }; }
externalUpdate(sha) { this.state.liveSha = sha; this.state.healthy = true; return { reconciled: true, liveSha: sha }; }
rotateDeployKey() { if (!this.state.keyReadOnly) throw new Error("Candidate deploy key is writable."); this.state.keyVersion = (this.state.keyVersion || 1) + 1; return { rotated: true, keyVersion: this.state.keyVersion }; }
revokeDeployKey() { this.state.keyRevoked = true; return { revoked: true, deploymentBlocked: true }; }
restoreDeployKey() { this.state.keyRevoked = false; this.state.keyReadOnly = true; return { restored: true }; }
inventory(count = 20, partial = false) { return { workloads: Array.from({ length: count }, (_, index) => ({ id: `workload-${index + 1}`, classification: index === 1 ? "duplicate" : "active" })), partial, warnings: partial ? ["One scan root was unavailable"] : [] }; }
async publishRelease(version, options = {}) {
const binary = Buffer.from(options.binary || "MZ-forgeflow-acceptance-binary");
const name = `ForgeFlow-Portable-${version}-win-x64.exe`;
const checksum = crypto.createHash("sha256").update(binary).digest("hex");
const manifest = { version, draft: options.draft === true, assets: options.missingAsset ? [] : [{ name, sha256: options.badChecksum ? "0".repeat(64) : checksum }], provenance: { commitSha: options.commitSha || this.initialSha }, sbom: { bomFormat: "CycloneDX" } };
await fs.writeFile(path.join(this.paths.releases, `${version}.json`), JSON.stringify(manifest, null, 2));
if (!options.missingAsset) await fs.writeFile(path.join(this.paths.releases, name), binary);
return manifest;
}
async verifyRelease(version) {
const manifest = JSON.parse(await fs.readFile(path.join(this.paths.releases, `${version}.json`), "utf8"));
if (manifest.draft) throw new Error("Incomplete draft release rejected.");
const asset = manifest.assets[0];
if (!asset) throw new Error("Required release asset is missing.");
const binary = await fs.readFile(path.join(this.paths.releases, asset.name));
if (crypto.createHash("sha256").update(binary).digest("hex") !== asset.sha256) throw new Error("Release checksum mismatch.");
if (!manifest.provenance?.commitSha || manifest.sbom?.bomFormat !== "CycloneDX") throw new Error("Release provenance or SBOM is missing.");
return { verified: true, version, asset: asset.name };
}
}
module.exports = { ProductionAcceptanceHarness };
+24 -19
View File
@@ -40,27 +40,32 @@ class RepositoryMonitor {
if (this.running || !this.paths.length) return;
this.running = true;
try {
for (const localPath of this.paths) {
if (this.paused.has(localPath)) continue;
try {
const status = await this.git.status(localPath);
const next = this.git.statusFingerprint(status);
const previous = this.fingerprints.get(localPath);
this.fingerprints.set(localPath, next);
if (previous && previous !== next) {
await this.diagnostics?.debug('repository-monitor.changed', { localPath, head: status.head, branch: status.branch?.head, counts: status.counts });
this.onChange?.({ localPath, status, reason: 'working-tree-changed' });
}
} catch (error) {
const next = `error:${error.message}`;
const previous = this.fingerprints.get(localPath);
this.fingerprints.set(localPath, next);
if (previous && previous !== next) {
await this.diagnostics?.warning('repository-monitor.unavailable', { localPath, message: error.message });
this.onChange?.({ localPath, error: error.message, reason: 'repository-unavailable' });
const queue = [...this.paths];
const workers = Array.from({ length: Math.min(4, queue.length) }, async () => {
while (queue.length) {
const localPath = queue.shift();
if (this.paused.has(localPath)) continue;
try {
const status = await this.git.status(localPath);
const next = this.git.statusFingerprint(status);
const previous = this.fingerprints.get(localPath);
this.fingerprints.set(localPath, next);
if (previous && previous !== next) {
await this.diagnostics?.debug('repository-monitor.changed', { localPath, head: status.head, branch: status.branch?.head, counts: status.counts });
this.onChange?.({ localPath, status, reason: 'working-tree-changed' });
}
} catch (error) {
const next = `error:${error.message}`;
const previous = this.fingerprints.get(localPath);
this.fingerprints.set(localPath, next);
if (previous && previous !== next) {
await this.diagnostics?.warning('repository-monitor.unavailable', { localPath, message: error.message });
this.onChange?.({ localPath, error: error.message, reason: 'repository-unavailable' });
}
}
}
}
});
await Promise.all(workers);
} finally {
this.running = false;
}
+72 -7
View File
@@ -29,6 +29,12 @@ class RepositoryService {
this.gitea = giteaService;
this.diagnostics = diagnostics;
this.lastKnownLocalPaths = [];
this.lastKnownRemoteRepositories = [];
this.lastSuccessfulRemoteRefreshAt = null;
this.lastRemoteRefreshAtMs = 0;
this.lastDiscoveredPaths = [];
this.lastDiscoveryAtMs = 0;
this.refreshPromise = null;
}
async discoverInRoot(root, maxDepth = 4) {
@@ -80,13 +86,65 @@ class RepositoryService {
return [...this.lastKnownLocalPaths];
}
async refresh() {
const started = Date.now();
const remoteRepositories = this.store.data.gitea.baseUrl && this.store.getToken()
? await this.gitea.listRepositories()
: [];
async getRemoteRepositories({ force = false } = {}) {
if (!this.store.data.gitea.baseUrl || !this.store.getToken()) {
this.lastKnownRemoteRepositories = [];
this.lastSuccessfulRemoteRefreshAt = null;
return { repositories: [], stale: false, error: null };
}
const discoveredPaths = await this.discoverAll(this.store.data.workspaceRoots);
if (!force && this.lastSuccessfulRemoteRefreshAt && Date.now() - this.lastRemoteRefreshAtMs < 15_000) {
return {
repositories: this.lastKnownRemoteRepositories.map((repository) => ({ ...repository })),
stale: false,
error: null,
cached: true
};
}
try {
const repositories = await this.gitea.listRepositories();
this.lastKnownRemoteRepositories = repositories.map((repository) => ({ ...repository }));
this.lastSuccessfulRemoteRefreshAt = new Date().toISOString();
this.lastRemoteRefreshAtMs = Date.now();
return { repositories, stale: false, error: null };
} catch (error) {
if (!this.lastSuccessfulRemoteRefreshAt) throw error;
await this.diagnostics?.warning('repositories.remote-refresh.degraded', {
message: error.message,
cachedCount: this.lastKnownRemoteRepositories.length,
lastSuccessfulAt: this.lastSuccessfulRemoteRefreshAt
});
return {
repositories: this.lastKnownRemoteRepositories.map((repository) => ({ ...repository })),
stale: true,
error: error.message
};
}
}
async getDiscoveredPaths({ force = false } = {}) {
if (!force && this.lastDiscoveryAtMs && Date.now() - this.lastDiscoveryAtMs < 30_000) {
return [...this.lastDiscoveredPaths];
}
const paths = await this.discoverAll(this.store.data.workspaceRoots);
this.lastDiscoveredPaths = [...paths];
this.lastDiscoveryAtMs = Date.now();
return paths;
}
async refresh(options = {}) {
if (this.refreshPromise) return this.refreshPromise;
this.refreshPromise = this.performRefresh(options).finally(() => { this.refreshPromise = null; });
return this.refreshPromise;
}
async performRefresh({ force = false } = {}) {
const started = Date.now();
const remoteResult = await this.getRemoteRepositories({ force });
const remoteRepositories = remoteResult.repositories;
const discoveredPaths = await this.getDiscoveredPaths({ force });
const mappedPaths = Object.values(this.store.data.repositoryMappings || {});
const localPaths = [...new Set([...discoveredPaths, ...mappedPaths])];
const localDescriptors = await this.getLocalDescriptors(localPaths);
@@ -106,7 +164,12 @@ class RepositoryService {
...profile,
state: this.store.getDeploymentState(profile.id)
}));
repositories.push(this.decorate(remote, local, profiles));
repositories.push({
...this.decorate(remote, local, profiles),
remoteStale: remoteResult.stale,
remoteRefreshError: remoteResult.error,
remoteLastRefreshedAt: this.lastSuccessfulRemoteRefreshAt
});
}
for (const local of localDescriptors.filter((item) => !usedLocalPaths.has(item.localPath))) {
@@ -145,6 +208,8 @@ class RepositoryService {
await this.diagnostics?.debug('repositories.refresh.completed', {
durationMs: Date.now() - started,
remoteCount: remoteRepositories.length,
remoteStale: remoteResult.stale,
remoteCached: remoteResult.cached === true,
discoveredCount: discoveredPaths.length,
linkedCount: sorted.filter((item) => item.localPath).length,
attentionCount: sorted.filter((item) => item.attention).length,
+577
View File
@@ -0,0 +1,577 @@
'use strict';
const crypto = require('node:crypto');
const path = require('node:path').posix;
const { normalizeRemoteUrl } = require('../shared/repository-match.cjs');
function decodeBase64(value) {
try { return Buffer.from(String(value || ''), 'base64').toString('utf8'); }
catch { return ''; }
}
function remoteIdentity(value) {
const normalized = normalizeRemoteUrl(value);
return normalized ? `${normalized.host}/${normalized.path}` : '';
}
function normalizedName(value) {
return String(value || '').toLowerCase().replace(/\.git$/i, '').replace(/[^a-z0-9]/g, '');
}
function safeJson(value, fallback) {
try { return JSON.parse(value); }
catch { return fallback; }
}
function sanitizeLegacyContainer(container) {
const labels = container?.Config?.Labels || {};
return {
id: container?.Id || '',
name: String(container?.Name || '').replace(/^\//, ''),
image: container?.Config?.Image || '',
imageId: container?.Image || '',
running: container?.State?.Running === true,
status: container?.State?.Status || '',
health: container?.State?.Health?.Status || null,
labels: {
'com.docker.compose.project': labels['com.docker.compose.project'] || '',
'com.docker.compose.project.working_dir': labels['com.docker.compose.project.working_dir'] || '',
'com.docker.compose.project.config_files': labels['com.docker.compose.project.config_files'] || '',
'com.docker.compose.service': labels['com.docker.compose.service'] || '',
'org.opencontainers.image.source': labels['org.opencontainers.image.source'] || '',
'org.opencontainers.image.revision': labels['org.opencontainers.image.revision'] || '',
'tech.itworx.forgeflow.repository': labels['tech.itworx.forgeflow.repository'] || '',
'tech.itworx.forgeflow.commit': labels['tech.itworx.forgeflow.commit'] || '',
'tech.itworx.forgeflow.branch': labels['tech.itworx.forgeflow.branch'] || '',
'net.unraid.docker.webui': labels['net.unraid.docker.webui'] || '',
'net.unraid.docker.icon': labels['net.unraid.docker.icon'] || '',
'net.unraid.docker.shell': labels['net.unraid.docker.shell'] || '',
'net.unraid.docker.managed': labels['net.unraid.docker.managed'] || '',
},
ports: container?.NetworkSettings?.Ports || {},
mounts: Array.isArray(container?.Mounts) ? container.Mounts : [],
networks: container?.NetworkSettings?.Networks || {},
restartPolicy: container?.HostConfig?.RestartPolicy?.Name || '',
};
}
function parseServerInventory(output) {
const marker = '__FORGEFLOW_INVENTORY__';
const index = String(output || '').lastIndexOf(marker);
if (index < 0) throw new Error('The server did not return a ForgeFlow workload inventory.');
const inventory = {
capabilities: {},
checkouts: [],
containers: [],
dockerMan: [],
composeProjects: [],
composeDefinitions: [],
warnings: [],
};
for (const line of String(output).slice(index + marker.length).trim().split(/\r?\n/)) {
if (!line) continue;
const [kind, ...parts] = line.split('\t');
if (kind === 'H') {
inventory.capabilities = {
docker: parts[0] === 'true',
compose: parts[1] === 'true',
git: parts[2] === 'true',
tar: parts[3] === 'true',
checksum: parts[4] === 'true',
baseWritable: parts[5] === 'true',
composeVersion: decodeBase64(parts[6]),
platform: decodeBase64(parts[7]),
};
} else if (kind === 'R' && parts.length >= 4) {
inventory.checkouts.push({
root: decodeBase64(parts[0]),
remote: decodeBase64(parts[1]),
liveSha: parts[2] || '',
branch: decodeBase64(parts[3]),
});
} else if (kind === 'C' && parts[0]) {
const parsed = safeJson(decodeBase64(parts[0]), null);
if (!parsed) continue;
if (Array.isArray(parsed)) {
for (const item of parsed) if (item) inventory.containers.push(sanitizeLegacyContainer(item));
} else if (parsed.Config || parsed.State) inventory.containers.push(sanitizeLegacyContainer(parsed));
else inventory.containers.push({
...parsed,
name: String(parsed.name || '').replace(/^\//, ''),
labels: parsed.labels && typeof parsed.labels === 'object' ? parsed.labels : {},
mounts: Array.isArray(parsed.mounts) ? parsed.mounts : [],
ports: parsed.ports && typeof parsed.ports === 'object' ? parsed.ports : {},
networks: parsed.networks && typeof parsed.networks === 'object' ? parsed.networks : {},
});
} else if (kind === 'D' && parts[0]) {
inventory.dockerMan.push({
name: decodeBase64(parts[0]),
templatePath: decodeBase64(parts[1]),
webUiUrl: decodeBase64(parts[2]),
iconUrl: decodeBase64(parts[3]),
shell: decodeBase64(parts[4]),
repository: decodeBase64(parts[5]),
network: decodeBase64(parts[6]),
});
} else if (kind === 'P' && parts[0]) {
const parsed = safeJson(decodeBase64(parts[0]), []);
const projects = Array.isArray(parsed) ? parsed : parsed ? [parsed] : [];
for (const project of projects) {
const name = String(project?.Name || project?.name || '').trim();
if (!name) continue;
const rawFiles = project?.ConfigFiles || project?.configFiles || project?.config_files || [];
const configFiles = (Array.isArray(rawFiles) ? rawFiles : String(rawFiles || '').split(','))
.map((item) => String(item || '').trim())
.filter(Boolean);
inventory.composeProjects.push({
name,
status: String(project?.Status || project?.status || ''),
configFiles,
});
}
} else if (kind === 'Y' && parts[0]) {
inventory.composeDefinitions.push({
workingDir: decodeBase64(parts[0]).replace(/\/+$/, ''),
configFiles: decodeBase64(parts[1]).split(/\r?\n/).map((item) => item.trim()).filter(Boolean),
projectName: decodeBase64(parts[2]).trim(),
services: decodeBase64(parts[3]).split(/\r?\n/).map((item) => item.trim()).filter(Boolean),
images: decodeBase64(parts[4]).split(/\r?\n/).map((item) => item.trim()).filter(Boolean),
valid: parts[5] === 'true',
error: decodeBase64(parts[6]).trim(),
});
} else if (kind === 'W') inventory.warnings.push(decodeBase64(parts[0]));
}
return inventory;
}
function configFilesFor(container) {
return String(container?.labels?.['com.docker.compose.project.config_files'] || '')
.split(',')
.map((item) => item.trim())
.filter(Boolean);
}
function containerPorts(container) {
const ports = [];
for (const [containerKey, bindings] of Object.entries(container?.ports || {})) {
const [containerPortText, protocol = 'tcp'] = containerKey.split('/');
const containerPort = Number(containerPortText) || null;
if (Array.isArray(bindings) && bindings.length) {
for (const binding of bindings) ports.push({
hostIp: binding?.HostIp || '',
hostPort: Number(binding?.HostPort) || null,
containerPort,
protocol,
});
} else ports.push({ hostIp: '', hostPort: null, containerPort, protocol });
}
return ports;
}
function safeRelativeToBase(basePath, candidate) {
const base = String(basePath || '').replace(/\/+$/, '');
const value = String(candidate || '').replace(/\/+$/, '');
if (!base || !value || !value.startsWith(`${base}/`)) return '';
const relative = value.slice(base.length + 1).replace(/^\/+|\/+$/g, '');
if (!relative || relative.split('/').some((part) => !part || part === '.' || part === '..')) return '';
return relative;
}
function topLevelRelativeToBase(basePath, candidate) {
const relative = safeRelativeToBase(basePath, candidate);
return relative ? relative.split('/')[0] : '';
}
function canonicalServerAppdataPath(basePath, candidate) {
const value = String(candidate || '').replace(/\\/g, '/').replace(/\/+$/, '');
if (!value) return '';
const bases = [...new Set([
String(basePath || '').replace(/\/+$/, ''),
'/mnt/user/appdata',
'/mnt/cache/appdata',
].filter(Boolean))];
for (const base of bases) {
const relative = safeRelativeToBase(base, value);
if (relative) return `${String(basePath || base).replace(/\/+$/, '')}/${relative}`;
if (value === base) return String(basePath || base).replace(/\/+$/, '');
}
const diskMatch = value.match(/^\/mnt\/disk\d+\/appdata\/(.+)$/i);
if (diskMatch) return `${String(basePath || '/mnt/user/appdata').replace(/\/+$/, '')}/${diskMatch[1]}`;
return value;
}
function isDeploymentBackupPath(value) {
const segments = String(value || '').replace(/\\/g, '/').split('/').filter(Boolean);
return segments.some((segment) =>
/^source-pre-[0-9a-f]{7,64}$/i.test(segment)
|| /^forgeflow-(backup|staging|rollback)(?:[-_.].*)?$/i.test(segment)
|| ['.forgeflow', 'releases', 'backups', 'staging', 'incoming', '_audit_quarantine', 'devrunbook-validation'].includes(segment.toLowerCase()),
);
}
function deploymentRootCandidate(relativePath) {
const segments = String(relativePath || '').replace(/\\/g, '/').split('/').filter(Boolean);
const forgeFlowIndex = segments.indexOf('.forgeflow');
if (forgeFlowIndex > 0) return segments.slice(0, forgeFlowIndex).join('/');
const releasesIndex = segments.indexOf('releases');
if (releasesIndex > 0 && segments.length > releasesIndex + 1) return segments.slice(0, releasesIndex).join('/');
const backupIndex = segments.findIndex((segment) => /^source-pre-[0-9a-f]{7,64}$/i.test(segment));
if (backupIndex > 0) return segments.slice(0, backupIndex).join('/');
return segments.join('/');
}
function workloadSelector(group) {
if (group.composeProject) return {
kind: 'compose',
composeProject: group.composeProject,
workingDir: group.workingDir || '',
configFiles: group.configFiles,
};
const dockerMan = group.dockerMan || null;
if (dockerMan?.templatePath) return {
kind: 'dockerman-container',
templatePath: dockerMan.templatePath,
containerName: group.containers[0]?.name || '',
};
return { kind: 'docker-container', containerName: group.containers[0]?.name || '' };
}
function stableWorkloadId(serverId, selector) {
return `workload-${crypto.createHash('sha256').update(`${serverId}:${JSON.stringify(selector)}`).digest('hex').slice(0, 24)}`;
}
function profileMatchesWorkload(profile, workload) {
if (!profile || profile.provider !== 'ssh-unraid' || profile.serverId !== workload.serverId) return false;
const identity = profile.workloadIdentity || {};
if (identity.workloadId && identity.workloadId === workload.workloadId) return true;
if (identity.selector && JSON.stringify(identity.selector) === JSON.stringify(workload.selector)) return true;
if (profile.composeProject && workload.compose?.project && profile.composeProject === workload.compose.project) {
if (!profile.composeWorkingDir || !workload.compose.workingDir || profile.composeWorkingDir === workload.compose.workingDir) return true;
}
if (profile.remoteFolder && workload.remoteFolderCandidate && profile.remoteFolder === workload.remoteFolderCandidate) return true;
return workload.containers.some((container) => container.name === profile.containerName);
}
function repositoryRemoteMap(repositories) {
const map = new Map();
for (const repository of repositories || []) {
for (const value of [repository.cloneUrl, repository.sshUrl, repository.htmlUrl, repository.preferredCloneUrl]) {
const id = remoteIdentity(value);
if (id) map.set(id, repository);
}
}
return map;
}
function candidateRepositories(workload, repositories, checkouts) {
const candidates = new Map();
const add = (repository, points, reason, exact = false, identityExact = false) => {
if (!repository?.fullName) return;
const current = candidates.get(repository.fullName) || { repositoryFullName: repository.fullName, repositoryName: repository.name, score: 0, exact: false, identityExact: false, reasons: [] };
current.score += points;
current.exact ||= exact;
current.identityExact ||= identityExact;
if (reason && !current.reasons.includes(reason)) current.reasons.push(reason);
candidates.set(repository.fullName, current);
};
const remotes = repositoryRemoteMap(repositories);
const exactRemoteHints = new Set();
for (const container of workload.containers) {
const labels = container.labels || {};
for (const value of [labels['tech.itworx.forgeflow.repository'], labels['org.opencontainers.image.source']]) {
const id = remoteIdentity(value);
if (id) exactRemoteHints.add(id);
}
}
for (const checkout of checkouts || []) {
const root = String(checkout.root || '').replace(/\/+$/, '');
const matchesPath = root && (root === workload.compose.workingDir || workload.containers.some((container) => (container.mounts || []).some((mount) => {
const source = String(mount?.Source || '').replace(/\/+$/, '');
return source === root || source.startsWith(`${root}/`);
})));
if (matchesPath) {
const id = remoteIdentity(checkout.remote);
if (id) exactRemoteHints.add(id);
}
}
for (const id of exactRemoteHints) {
const repository = remotes.get(id);
if (repository) add(repository, 100, 'Exact repository provenance from container or server checkout', true);
}
const composeProjectName = normalizedName(workload.compose.project);
const composeFolderName = normalizedName(path.basename(workload.compose.workingDir || ''));
const deploymentFolderName = normalizedName(String(workload.remoteFolderCandidate || '').split('/')[0]);
const serviceNames = new Set((workload.compose.services || []).map(normalizedName).filter(Boolean));
const containerNames = new Set(workload.containers.map((container) => normalizedName(container.name)).filter(Boolean));
const imageNames = new Set([
...workload.containers.map((container) => String(container.image || '').split('/').pop()?.split(':')[0]),
...(workload.metadata?.images || []).map((image) => String(image || '').split('/').pop()?.split(':')[0]),
].map(normalizedName).filter(Boolean));
for (const repository of repositories || []) {
const repoName = normalizedName(repository.name);
if (!repoName) continue;
if (composeProjectName && composeProjectName === repoName) add(repository, 55, 'Compose project name matches repository', false, true);
if (deploymentFolderName && deploymentFolderName === repoName) add(repository, 70, 'Top-level appdata folder exactly matches repository', false, true);
if (composeFolderName && composeFolderName === repoName) add(repository, 50, 'Compose file folder matches repository');
if (serviceNames.has(repoName)) add(repository, 25, 'Compose service name matches repository');
if (containerNames.has(repoName)) add(repository, 70, 'Container name exactly matches repository', false, true);
if (imageNames.has(repoName)) add(repository, 20, 'Container image name matches repository');
}
return [...candidates.values()].sort((a, b) => b.score - a.score || a.repositoryFullName.localeCompare(b.repositoryFullName)).map((candidate) => ({
...candidate,
reasons: candidate.exact
? candidate.reasons
: [...candidate.reasons, 'Manual confirmation is reduced to one click; Compose identity and paths are prefilled from the server.'],
confidence: candidate.exact ? 'exact' : candidate.score >= 35 ? 'strong' : 'weak',
}));
}
function buildWorkloadInventory({ inventory, server, repositories = [], profiles = [] }) {
const dockerManByName = new Map((inventory.dockerMan || []).map((item) => [String(item.name || '').toLowerCase(), item]));
const groups = new Map();
for (const container of inventory.containers || []) {
const labels = container.labels || {};
const composeProject = String(labels['com.docker.compose.project'] || '').trim();
const workingDir = canonicalServerAppdataPath(server.basePath, labels['com.docker.compose.project.working_dir']);
const configFiles = [...new Set(configFilesFor(container).map((file) => canonicalServerAppdataPath(server.basePath, file)))];
const key = composeProject
? `compose:${composeProject}:${workingDir}:${configFiles.join('|')}`
: `container:${container.name}`;
const group = groups.get(key) || {
composeProject,
workingDir,
configFiles,
services: [],
images: [],
containers: [],
dockerMan: null,
};
group.containers.push(container);
const service = String(labels['com.docker.compose.service'] || '').trim();
if (service && !group.services.includes(service)) group.services.push(service);
group.dockerMan ||= dockerManByName.get(String(container.name || '').toLowerCase()) || null;
groups.set(key, group);
}
for (const project of inventory.composeProjects || []) {
const configFiles = [...new Set((project.configFiles || []).filter(Boolean).map((file) => canonicalServerAppdataPath(server.basePath, file)))];
const workingDir = configFiles.length ? canonicalServerAppdataPath(server.basePath, path.dirname(configFiles[0])) : '';
const key = `compose:${project.name}:${workingDir}:${configFiles.join('|')}`;
if (groups.has(key)) continue;
const existingByProject = [...groups.values()].find((group) => group.composeProject === project.name);
if (existingByProject) {
if (!existingByProject.configFiles.length && configFiles.length) existingByProject.configFiles = configFiles;
if (!existingByProject.workingDir && workingDir) existingByProject.workingDir = workingDir;
continue;
}
groups.set(key, {
composeProject: project.name,
workingDir,
configFiles,
services: [],
images: [],
containers: [],
dockerMan: dockerManByName.get(String(project.name || '').toLowerCase()) || null,
composeStatus: project.status || '',
});
}
for (const definition of inventory.composeDefinitions || []) {
const configFiles = [...new Set((definition.configFiles || []).filter(Boolean).map((file) => canonicalServerAppdataPath(server.basePath, file)))];
const workingDir = canonicalServerAppdataPath(server.basePath, definition.workingDir || (configFiles[0] ? path.dirname(configFiles[0]) : ''));
if (isDeploymentBackupPath(workingDir) || configFiles.some(isDeploymentBackupPath)) continue;
const projectName = String(definition.projectName || path.basename(workingDir || '')).trim();
const existing = [...groups.values()].find((group) => {
if (workingDir && group.workingDir && group.workingDir === workingDir) return true;
if (configFiles.length && (group.configFiles || []).some((file) => configFiles.includes(file))) return true;
return Boolean(projectName && group.composeProject === projectName && (!workingDir || !group.workingDir));
});
if (existing) {
existing.composeProject ||= projectName;
existing.workingDir ||= workingDir;
existing.configFiles = [...new Set([...(existing.configFiles || []), ...configFiles])];
existing.services = [...new Set([...(existing.services || []), ...(definition.services || [])])];
existing.images = [...new Set([...(existing.images || []), ...(definition.images || [])])];
existing.composeDefinitionValid = definition.valid;
existing.composeDefinitionError = definition.error || '';
existing.composeSource = 'server-compose-file';
continue;
}
const key = `compose-file:${projectName}:${workingDir}:${configFiles.join('|')}`;
groups.set(key, {
composeProject: projectName,
workingDir,
configFiles,
services: [...new Set(definition.services || [])],
images: [...new Set(definition.images || [])],
containers: [],
dockerMan: dockerManByName.get(projectName.toLowerCase()) || null,
composeStatus: '',
composeDefinitionValid: definition.valid,
composeDefinitionError: definition.error || '',
composeSource: 'server-compose-file',
});
}
const containerNames = new Set((inventory.containers || []).map((container) => String(container.name || '').toLowerCase()));
for (const dockerMan of inventory.dockerMan || []) {
const normalized = String(dockerMan.name || '').toLowerCase();
if (!normalized || containerNames.has(normalized)) continue;
const key = `container:${dockerMan.name}`;
if (groups.has(key)) continue;
groups.set(key, {
composeProject: '',
workingDir: '',
configFiles: [],
services: [],
images: dockerMan.repository ? [dockerMan.repository] : [],
containers: [{
id: '',
name: dockerMan.name,
image: dockerMan.repository || '',
imageId: '',
running: false,
status: 'template-only',
health: null,
labels: {},
ports: {},
mounts: [],
networks: dockerMan.network ? { [dockerMan.network]: {} } : {},
restartPolicy: '',
}],
dockerMan,
});
}
const workloads = [];
for (const group of groups.values()) {
const selector = workloadSelector(group);
const workloadId = stableWorkloadId(server.id, selector);
const primary = group.containers.find((item) => item.running) || group.containers[0];
const ports = group.containers.flatMap(containerPorts);
const mounts = group.containers.flatMap((container) => container.mounts || []);
const remoteFolderCandidate = deploymentRootCandidate(safeRelativeToBase(server.basePath, canonicalServerAppdataPath(server.basePath, group.workingDir)))
|| mounts.map((mount) => topLevelRelativeToBase(server.basePath, canonicalServerAppdataPath(server.basePath, mount?.Source))).find(Boolean)
|| '';
const workload = {
workloadId,
serverId: server.id,
serverName: server.name,
kind: selector.kind,
selector,
displayName: group.composeProject || primary?.name || group.dockerMan?.name || 'Unnamed workload',
compose: {
project: group.composeProject,
workingDir: group.workingDir,
configFiles: group.configFiles,
services: group.services,
},
containers: group.containers.map((container) => ({
id: container.id,
name: container.name,
image: container.image,
imageId: container.imageId,
running: container.running === true,
status: container.status || '',
health: container.health || null,
service: container.labels?.['com.docker.compose.service'] || '',
ports: containerPorts(container),
mounts: (container.mounts || []).map((mount) => ({
type: mount?.Type || '',
source: mount?.Source || '',
target: mount?.Destination || '',
readOnly: mount?.RW === false,
})),
networks: Object.keys(container.networks || {}),
restartPolicy: container.restartPolicy || '',
})),
dockerMan: group.dockerMan,
metadata: {
webUiUrl: primary?.labels?.['net.unraid.docker.webui'] || group.dockerMan?.webUiUrl || '',
iconUrl: primary?.labels?.['net.unraid.docker.icon'] || group.dockerMan?.iconUrl || '',
shell: primary?.labels?.['net.unraid.docker.shell'] || group.dockerMan?.shell || '/bin/sh',
sourceRepository: primary?.labels?.['tech.itworx.forgeflow.repository'] || primary?.labels?.['org.opencontainers.image.source'] || '',
liveRevision: primary?.labels?.['tech.itworx.forgeflow.commit'] || primary?.labels?.['org.opencontainers.image.revision'] || '',
branch: primary?.labels?.['tech.itworx.forgeflow.branch'] || '',
composeStatus: group.composeStatus || '',
images: [...new Set(group.images || [])],
composeSource: group.composeSource || (group.configFiles?.length ? 'docker-compose-runtime' : ''),
composeDefinitionValid: group.composeDefinitionValid !== false,
composeDefinitionError: group.composeDefinitionError || '',
},
runtime: {
running: group.containers.some((container) => container.running === true),
allRunning: group.containers.length > 0 && group.containers.every((container) => container.running === true),
health: group.containers.some((container) => container.health === 'unhealthy')
? 'unhealthy'
: group.containers.length && group.containers.every((container) => container.health === 'healthy')
? 'healthy'
: 'unverified',
ports,
},
remoteFolderCandidate,
observedAt: new Date().toISOString(),
};
const matchingCheckout = (inventory.checkouts || []).find((checkout) => {
const root = String(checkout.root || '').replace(/\/+$/, '');
if (!root) return false;
if (root === workload.compose.workingDir) return true;
return mounts.some((mount) => {
const source = String(mount?.Source || '').replace(/\/+$/, '');
return source === root || source.startsWith(`${root}/`);
});
});
if (matchingCheckout) {
workload.metadata.sourceRepository ||= matchingCheckout.remote || '';
workload.metadata.liveRevision ||= matchingCheckout.liveSha || '';
workload.metadata.branch ||= matchingCheckout.branch || '';
}
workload.candidates = candidateRepositories(workload, repositories, inventory.checkouts || []);
const linked = profiles.find((profile) => profileMatchesWorkload(profile, workload));
if (linked) {
workload.link = {
status: 'linked',
profileId: linked.id,
repositoryFullName: linked.repositoryFullName || linked._repositoryFullName || '',
source: linked.workloadIdentity?.linkSource || (linked.adoptedFromServer ? 'automatic' : 'manual'),
};
workload.status = 'linked';
} else if (workload.candidates.length === 1 && workload.candidates[0].exact) workload.status = 'exact-match';
else if (workload.candidates.length) workload.status = workload.candidates[1]?.score === workload.candidates[0]?.score ? 'ambiguous' : 'suggested';
else workload.status = 'unmatched';
workloads.push(workload);
}
workloads.sort((a, b) => Number(b.runtime.running) - Number(a.runtime.running) || a.displayName.localeCompare(b.displayName));
return workloads;
}
function inventoryContainerMatch(checkout, repository, container) {
const safe = container?.Config || container?.State ? sanitizeLegacyContainer(container) : container;
if (!safe?.running) return 0;
const labels = safe.labels || {};
const workingDir = String(labels['com.docker.compose.project.working_dir'] || '').replace(/\/$/, '');
const source = remoteIdentity(labels['org.opencontainers.image.source'] || labels['tech.itworx.forgeflow.repository'] || '');
const mounts = Array.isArray(safe.mounts) ? safe.mounts : [];
const root = String(checkout.root || '').replace(/\/$/, '');
const name = String(safe.name || '').replace(/^\//, '');
const project = String(labels['com.docker.compose.project'] || '');
const expectedNames = new Set([repository.name, root.split('/').pop()].filter(Boolean).map(normalizedName));
if (workingDir && workingDir === root) return 100;
if (mounts.some((mount) => {
const mountSource = String(mount.Source || '').replace(/\/$/, '');
return mountSource === root || mountSource.startsWith(`${root}/`);
})) return 90;
if (source && source === remoteIdentity(checkout.remote)) return 85;
if (expectedNames.has(normalizedName(project))) return 70;
if (expectedNames.has(normalizedName(name))) return 60;
return 0;
}
module.exports = {
parseServerInventory,
buildWorkloadInventory,
inventoryContainerMatch,
remoteIdentity,
stableWorkloadId,
profileMatchesWorkload,
sanitizeLegacyContainer,
safeRelativeToBase,
canonicalServerAppdataPath,
deploymentRootCandidate,
};
+194 -66
View File
@@ -1,11 +1,12 @@
'use strict';
const fs = require('node:fs/promises');
const fs = require('node:fs');
const fsp = require('node:fs/promises');
const crypto = require('node:crypto');
const path = require('node:path').posix;
function loadSshClient() {
try { return require('ssh2').Client; }
function loadSshModule() {
try { return require('ssh2'); }
catch {
const error = new Error('The ssh2 dependency is not installed. Run npm install before configuring SSH deployments.');
error.code = 'SSH2_NOT_INSTALLED';
@@ -13,6 +14,10 @@ function loadSshClient() {
}
}
function loadSshClient() {
return loadSshModule().Client;
}
function fingerprintKey(key) {
const buffer = Buffer.isBuffer(key) ? key : Buffer.from(key);
return `SHA256:${crypto.createHash('sha256').update(buffer).digest('base64').replace(/=+$/, '')}`;
@@ -22,12 +27,65 @@ function shellQuote(value) {
return `'${String(value ?? '').replace(/'/g, `'\\''`)}'`;
}
function parseCapabilityOutput(output) {
const marker = '__FORGEFLOW_SERVER_TEST__';
const index = String(output || '').lastIndexOf(marker);
if (index < 0) return { platform: String(output || '').trim(), docker: false, dockerReady: false, compose: false, git: false, tar: false, checksum: false };
const fields = {};
for (const line of String(output).slice(index + marker.length).trim().split(/\r?\n/)) {
const separator = line.indexOf('=');
if (separator > 0) fields[line.slice(0, separator)] = line.slice(separator + 1);
}
const decode = (value) => {
try { return value ? Buffer.from(value, 'base64').toString('utf8') : ''; }
catch { return ''; }
};
return {
platform: decode(fields.platform),
docker: fields.docker === 'true',
dockerReady: fields.dockerReady === 'true',
compose: fields.compose === 'true',
composeVersion: decode(fields.composeVersion),
git: fields.git === 'true',
tar: fields.tar === 'true',
checksum: fields.checksum === 'true',
baseWritable: fields.baseWritable === 'true',
};
}
class SshService {
constructor({ store, diagnostics }) {
this.store = store;
this.diagnostics = diagnostics;
}
async validateServerConfiguration(server, secrets = {}) {
if (server?.authType !== 'privateKey') return { valid: true, method: 'password' };
const privateKeyPath = String(server.privateKeyPath || '').trim();
if (!privateKeyPath) throw new Error('Select a private key file.');
const stat = await fsp.stat(privateKeyPath).catch(() => null);
if (!stat?.isFile()) {
const error = new Error(`The SSH private key file was not found: ${privateKeyPath}`);
error.code = 'SSH_PRIVATE_KEY_NOT_FOUND';
throw error;
}
const existing = server.id ? this.store.getServer(server.id) : null;
const sameKey = existing && String(existing.privateKeyPath || '') === privateKeyPath;
const storedPassphrase = sameKey ? this.store.getServerCredentials(existing.id).passphrase : '';
const passphrase = Object.prototype.hasOwnProperty.call(secrets, 'passphrase') && String(secrets.passphrase || '')
? String(secrets.passphrase)
: storedPassphrase;
const key = await fsp.readFile(privateKeyPath);
const parsed = loadSshModule().utils.parseKey(key, passphrase || undefined);
const errorResult = Array.isArray(parsed) ? parsed.find((item) => item instanceof Error) : parsed instanceof Error ? parsed : null;
if (errorResult) {
const error = new Error(`The selected file is not a usable SSH private key${passphrase ? ' with the supplied passphrase' : ''}: ${errorResult.message}`);
error.code = /encrypted|passphrase|decrypt/i.test(errorResult.message) ? 'SSH_PRIVATE_KEY_PASSPHRASE_INVALID' : 'SSH_PRIVATE_KEY_INVALID';
throw error;
}
return { valid: true, method: 'privateKey', encrypted: Boolean(passphrase), privateKeyPath };
}
async connectionOptions(server, { trustOnFirstUse = false } = {}) {
const credentials = this.store.getServerCredentials(server.id);
let observedFingerprint = null;
@@ -41,12 +99,16 @@ class SshService {
hostVerifier: (key) => {
observedFingerprint = fingerprintKey(key);
return trustOnFirstUse || Boolean(server.hostFingerprint && observedFingerprint === server.hostFingerprint);
}
},
};
if (server.authType === 'password') {
options.password = credentials.password;
} else {
options.privateKey = await fs.readFile(server.privateKeyPath);
if (server.authType === 'password') options.password = credentials.password;
else {
try { options.privateKey = await fsp.readFile(server.privateKeyPath); }
catch (error) {
const wrapped = new Error(`Could not read SSH private key ${server.privateKeyPath}: ${error.message}`);
wrapped.code = 'SSH_PRIVATE_KEY_READ_FAILED';
throw wrapped;
}
if (credentials.passphrase) options.passphrase = credentials.passphrase;
}
return { options, getObservedFingerprint: () => observedFingerprint };
@@ -70,24 +132,20 @@ class SshService {
client.once('ready', async () => {
try {
const data = await action(client, server, connection.getObservedFingerprint());
await this.diagnostics?.debug('ssh.connection.completed', {
serverId,
host: server.host,
durationMs: Date.now() - started
});
await this.diagnostics?.debug('ssh.connection.completed', { serverId, host: server.host, durationMs: Date.now() - started });
finish(resolve, data);
} catch (error) { finish(reject, error); }
});
client.once('error', async (error) => {
const wrapped = new Error(`SSH connection failed: ${error.message}`);
wrapped.code = error.code || 'SSH_CONNECTION_FAILED';
await this.diagnostics?.warning('ssh.connection.failed', {
serverId,
host: server.host,
durationMs: Date.now() - started,
code: wrapped.code,
message: wrapped.message
});
const observed = connection.getObservedFingerprint();
const mismatch = Boolean(server.hostFingerprint && observed && server.hostFingerprint !== observed);
const wrapped = new Error(mismatch
? `SSH host identity changed. Expected ${server.hostFingerprint}, but the server presented ${observed}.`
: `SSH connection failed: ${error.message}`);
wrapped.code = mismatch ? 'SSH_HOST_KEY_MISMATCH' : (error.code || 'SSH_CONNECTION_FAILED');
wrapped.expectedFingerprint = mismatch ? server.hostFingerprint : undefined;
wrapped.observedFingerprint = mismatch ? observed : undefined;
await this.diagnostics?.warning('ssh.connection.failed', { serverId, host: server.host, durationMs: Date.now() - started, code: wrapped.code, message: wrapped.message });
finish(reject, wrapped);
});
client.connect(connection.options);
@@ -96,96 +154,166 @@ class SshService {
execClient(client, command, { timeout = 15 * 60_000, maxOutput = 2 * 1024 * 1024 } = {}) {
return new Promise((resolve, reject) => {
const timer = setTimeout(() => reject(new Error('The SSH command timed out.')), timeout);
let completed = false;
const timer = setTimeout(() => {
if (completed) return;
completed = true;
reject(new Error('The SSH command timed out.'));
}, timeout);
client.exec(command, (error, stream) => {
if (error) {
clearTimeout(timer);
completed = true;
reject(error);
return;
}
let stdout = '';
let stderr = '';
stream.on('data', (chunk) => { if (stdout.length < maxOutput) stdout += chunk.toString(); });
stream.stderr.on('data', (chunk) => { if (stderr.length < maxOutput) stderr += chunk.toString(); });
let stdoutBytes = 0;
let stderrBytes = 0;
let truncated = false;
const append = (target, chunk) => {
const text = chunk.toString();
const bytes = Buffer.byteLength(text);
if (target === 'stdout') {
if (stdoutBytes + bytes <= maxOutput) stdout += text;
else truncated = true;
stdoutBytes += bytes;
} else {
if (stderrBytes + bytes <= maxOutput) stderr += text;
else truncated = true;
stderrBytes += bytes;
}
};
stream.on('data', (chunk) => append('stdout', chunk));
stream.stderr.on('data', (chunk) => append('stderr', chunk));
stream.on('close', (code, signal) => {
if (completed) return;
completed = true;
clearTimeout(timer);
if (code !== 0) {
if (truncated) {
const failure = new Error(`Remote command output exceeded the ${maxOutput}-byte safety limit. ForgeFlow refused to use an incomplete result.`);
failure.code = 'SSH_OUTPUT_TRUNCATED';
failure.stdoutBytes = stdoutBytes;
failure.stderrBytes = stderrBytes;
reject(failure);
} else if (code !== 0) {
const failure = new Error(`Remote command failed with exit code ${code}: ${(stderr || stdout).trim().slice(-4000)}`);
failure.code = 'SSH_COMMAND_FAILED';
failure.exitCode = code;
failure.signal = signal;
reject(failure);
} else resolve({ stdout, stderr, exitCode: code });
} else resolve({ stdout, stderr, exitCode: code, truncated: false });
});
});
});
}
async uploadBuffer(serverId, remotePath, content, { mode = 0o600 } = {}) {
ensureUploadTarget(target) {
const normalized = String(target || '').replace(/\\/g, '/');
if (!normalized.startsWith('/') || normalized.includes('\0') || normalized.split('/').includes('..')) throw new Error('Remote upload path must be an absolute safe Unix path.');
return normalized;
}
async withSftp(serverId, remotePath, action) {
const server = this.store.getServer(serverId);
if (!server?.hostFingerprint) {
const error = new Error('Test and trust the SSH server fingerprint before uploading deployment assets.');
error.code = 'SSH_HOST_NOT_TRUSTED';
throw error;
}
const target = String(remotePath || '').replace(/\\/g, '/');
if (!target.startsWith('/') || target.includes('\0') || target.split('/').includes('..')) throw new Error('Remote upload path must be an absolute safe Unix path.');
const data = Buffer.isBuffer(content) ? content : Buffer.from(content);
const target = this.ensureUploadTarget(remotePath);
return this.withClient(serverId, (client) => new Promise((resolve, reject) => {
client.sftp((sftpError, sftp) => {
if (sftpError) { reject(sftpError); return; }
const directory = path.dirname(target);
const mkdirParts = directory.split('/').filter(Boolean);
const parts = path.dirname(target).split('/').filter(Boolean);
let current = '';
const makeNext = (index) => {
if (index >= mkdirParts.length) {
const stream = sftp.createWriteStream(target, { mode });
stream.once('error', reject);
stream.once('close', () => resolve({ remotePath: target, size: data.length }));
stream.end(data);
const ensureNext = (index) => {
if (index >= parts.length) {
Promise.resolve(action(sftp, target)).then(resolve, reject);
return;
}
current += `/${mkdirParts[index]}`;
const ensureDirectory = () => {
sftp.stat(current, (statError, attributes) => {
if (!statError) {
if (typeof attributes?.isDirectory === 'function' && !attributes.isDirectory()) {
reject(new Error(`Remote upload parent exists but is not a directory: ${current}`));
return;
}
makeNext(index + 1);
return;
}
if (![2, 'ENOENT'].includes(statError.code)) { reject(statError); return; }
sftp.mkdir(current, { mode: 0o755 }, (mkdirError) => {
if (!mkdirError) { makeNext(index + 1); return; }
sftp.stat(current, (retryError, retryAttributes) => {
if (!retryError && (typeof retryAttributes?.isDirectory !== 'function' || retryAttributes.isDirectory())) makeNext(index + 1);
else reject(mkdirError);
});
current += `/${parts[index]}`;
sftp.stat(current, (statError, attributes) => {
if (!statError) {
if (typeof attributes?.isDirectory === 'function' && !attributes.isDirectory()) { reject(new Error(`Remote upload parent exists but is not a directory: ${current}`)); return; }
ensureNext(index + 1);
return;
}
if (![2, 'ENOENT'].includes(statError.code)) { reject(statError); return; }
sftp.mkdir(current, { mode: 0o755 }, (mkdirError) => {
if (!mkdirError) { ensureNext(index + 1); return; }
sftp.stat(current, (retryError, retryAttributes) => {
if (!retryError && (typeof retryAttributes?.isDirectory !== 'function' || retryAttributes.isDirectory())) ensureNext(index + 1);
else reject(mkdirError);
});
});
};
ensureDirectory();
});
};
makeNext(0);
ensureNext(0);
});
}), { trustOnFirstUse: false });
}
async uploadFile(serverId, localPath, remotePath, options = {}) {
const data = await fs.readFile(localPath);
return this.uploadBuffer(serverId, remotePath, data, options);
async uploadBuffer(serverId, remotePath, content, { mode = 0o600 } = {}) {
const data = Buffer.isBuffer(content) ? content : Buffer.from(content);
return this.withSftp(serverId, remotePath, (sftp, target) => new Promise((resolve, reject) => {
const stream = sftp.createWriteStream(target, { mode });
stream.once('error', reject);
stream.once('close', () => resolve({ remotePath: target, size: data.length }));
stream.end(data);
}));
}
async uploadFile(serverId, localPath, remotePath, { mode = 0o600, onProgress = null } = {}) {
const stat = await fsp.stat(localPath);
if (!stat.isFile()) throw new Error(`Local upload source is not a file: ${localPath}`);
return this.withSftp(serverId, remotePath, (sftp, target) => new Promise((resolve, reject) => {
const options = {
mode,
step: (totalTransferred, _chunk, total) => onProgress?.({ transferred: totalTransferred, total: total || stat.size }),
};
sftp.fastPut(localPath, target, options, (error) => {
if (error) { reject(error); return; }
resolve({ remotePath: target, size: stat.size });
});
}));
}
async test(serverId, { trustOnFirstUse = true } = {}) {
return this.withClient(serverId, async (client, server, fingerprint) => {
const result = await this.execClient(client, 'uname -srm && command -v git && (docker compose version || docker-compose version)', { timeout: 30_000 });
const script = `
platform=$(uname -srm 2>/dev/null || true)
docker=false; docker_ready=false; compose=false; compose_version=''; git=false; tar_ok=false; checksum=false; base_writable=false
command -v docker >/dev/null 2>&1 && docker=true
[ "$docker" = true ] && docker info >/dev/null 2>&1 && docker_ready=true
if [ "$docker" = true ]; then
if docker compose version >/dev/null 2>&1; then compose=true; compose_version=$(docker compose version 2>/dev/null | head -n1); elif command -v docker-compose >/dev/null 2>&1; then compose=true; compose_version=$(docker-compose version 2>/dev/null | head -n1); fi
fi
command -v git >/dev/null 2>&1 && git=true
command -v tar >/dev/null 2>&1 && tar_ok=true
(command -v sha256sum >/dev/null 2>&1 || command -v shasum >/dev/null 2>&1) && checksum=true
base=${shellQuote(server.basePath)}
if [ -d "$base" ]; then [ -w "$base" ] && base_writable=true; else parent=$(dirname "$base"); [ -d "$parent" ] && [ -w "$parent" ] && base_writable=true; fi
printf '__FORGEFLOW_SERVER_TEST__\\n'
printf 'platform=%s\\n' "$(printf '%s' "$platform" | base64 | tr -d '\\r\\n')"
printf 'docker=%s\\n' "$docker"
printf 'dockerReady=%s\\n' "$docker_ready"
printf 'compose=%s\\n' "$compose"
printf 'composeVersion=%s\\n' "$(printf '%s' "$compose_version" | base64 | tr -d '\\r\\n')"
printf 'git=%s\\n' "$git"
printf 'tar=%s\\n' "$tar_ok"
printf 'checksum=%s\\n' "$checksum"
printf 'baseWritable=%s\\n' "$base_writable"
`;
const result = await this.execClient(client, script, { timeout: 30_000, maxOutput: 256 * 1024 });
const capabilities = parseCapabilityOutput(result.stdout);
return {
connected: true,
fingerprint,
server: { id: server.id, name: server.name, host: server.host, basePath: server.basePath },
output: result.stdout.trim()
capabilities,
output: [capabilities.platform, capabilities.composeVersion].filter(Boolean).join('\n'),
};
}, { trustOnFirstUse });
}
@@ -201,4 +329,4 @@ class SshService {
}
}
module.exports = { SshService, shellQuote, fingerprintKey };
module.exports = { SshService, shellQuote, fingerprintKey, parseCapabilityOutput };
+461
View File
@@ -0,0 +1,461 @@
"use strict";
function createUnraidAccessMethods({ shellQuote, path, bash, inventoryRemoteIdentity, checksSummary, crypto, parsePermissionInspection }) {
class UnraidAccessMethods {
serverGitRemote(repository, profile) {
const candidates = [
repository.localStatus?.remoteUrl,
repository.sshUrl,
repository.preferredCloneUrl,
profile.cloneUrl,
]
.map((value) => String(value || "").trim())
.filter(Boolean);
const value = candidates.find((candidate) => /^ssh:\/\//i.test(candidate) || /^[^@\s]+@[^:\s]+:.+/.test(candidate));
if (!value) {
const error = new Error("Server pull requires the repository SSH clone URL from Gitea.");
error.code = "SERVER_GIT_SSH_URL_REQUIRED";
throw error;
}
return value;
}
serverGitHost(repository, profile) {
const remote = this.serverGitRemote(repository, profile);
if (/^ssh:\/\//i.test(remote)) {
const parsed = new URL(remote);
return { host: parsed.hostname, port: Number(parsed.port || 22) };
}
const match = remote.match(/^[^@\s]+@([^:\s]+):/);
if (!match) throw new Error("Could not determine the Gitea SSH host from the clone URL.");
return { host: match[1], port: 22 };
}
serverGitCredentialPaths(repository, server) {
const repositoryId = crypto.createHash("sha256").update(String(repository.fullName).toLowerCase()).digest("hex").slice(0, 24);
const directory = path.join(server.basePath, ".forgeflow", "git-credentials", repositoryId);
return {
directory,
privateKey: path.join(directory, "deploy-key"),
publicKey: path.join(directory, "deploy-key.pub"),
knownHosts: path.join(directory, "known_hosts"),
};
}
serverGitEnvironment(repository, profile, server) {
const credentials = this.serverGitCredentialPaths(repository, server);
return `GIT_SSH_COMMAND=${shellQuote(`ssh -i ${credentials.privateKey} -o IdentitiesOnly=yes -o BatchMode=yes -o StrictHostKeyChecking=yes -o UserKnownHostsFile=${credentials.knownHosts}`)}`;
}
async configureServerGitAccess({ repository, profileId }) {
const { profile, server } = this.resolve(repository, profileId);
const remote = this.serverGitRemote(repository, profile);
const { host, port } = this.serverGitHost(repository, profile);
const credentials = this.serverGitCredentialPaths(repository, server);
const trustedHostFingerprint = String(profile.serverGitAccess?.hostFingerprint || "").trim();
const marker = "__FORGEFLOW_DEPLOY_KEY__";
const setupScript = `
command -v git >/dev/null 2>&1 || { echo "Git is not installed on the server" >&2; exit 41; }
command -v ssh-keygen >/dev/null 2>&1 || { echo "ssh-keygen is not installed on the server" >&2; exit 42; }
command -v ssh-keyscan >/dev/null 2>&1 || { echo "ssh-keyscan is not installed on the server" >&2; exit 43; }
credential_dir=${shellQuote(credentials.directory)}
private_key=${shellQuote(credentials.privateKey)}
public_key=${shellQuote(credentials.publicKey)}
known_hosts=${shellQuote(credentials.knownHosts)}
expected_host_fingerprint=${shellQuote(trustedHostFingerprint)}
mkdir -p "$credential_dir"
chmod 700 "$credential_dir"
if [ ! -s "$private_key" ] || [ ! -s "$public_key" ]; then
rm -f "$private_key" "$public_key"
ssh-keygen -q -t ed25519 -N '' -C ${shellQuote(`forgeflow:${repository.fullName}`)} -f "$private_key"
fi
chmod 600 "$private_key"
chmod 644 "$public_key"
scan_tmp="$known_hosts.$$.tmp"
scan_ok=false
for attempt in 1 2 3; do
ssh-keyscan -T 10 -H -p ${Number(port)} ${shellQuote(host)} > "$scan_tmp" 2>/dev/null || true
if [ -s "$scan_tmp" ]; then scan_ok=true; break; fi
sleep $((attempt * 2))
done
[ "$scan_ok" = true ] || { rm -f "$scan_tmp"; echo "Gitea SSH host did not return a host key after three attempts" >&2; exit 44; }
scanned_host_fingerprint="$(ssh-keygen -lf "$scan_tmp" -E sha256 2>/dev/null | awk '{print $2}' | sort -u | paste -sd, -)"
if [ -n "$expected_host_fingerprint" ] && [ "$scanned_host_fingerprint" != "$expected_host_fingerprint" ]; then
rm -f "$scan_tmp"
echo "The Gitea SSH host key changed. Verify the Gitea server before replacing trust." >&2
exit 46
fi
mv "$scan_tmp" "$known_hosts"
chmod 600 "$known_hosts"
printf '%s\n' ${shellQuote(marker)}
printf 'publicKey=%s\n' "$(base64 < "$public_key" | tr -d '\\r\\n')"
printf 'fingerprint=%s\n' "$(ssh-keygen -lf "$public_key" -E sha256 | awk '{print $2}')"
printf 'hostFingerprint=%s\n' "$scanned_host_fingerprint"
`;
const setup = await this.ssh.exec(server.id, bash(setupScript), { timeout: 60_000, maxOutput: 256 * 1024 });
const output = String(setup.stdout || "");
const markerIndex = output.lastIndexOf(marker);
if (markerIndex < 0) throw new Error("The server did not return the generated deploy key.");
const fields = Object.fromEntries(output.slice(markerIndex + marker.length).trim().split(/\r?\n/).map((line) => {
const separator = line.indexOf("=");
return separator > 0 ? [line.slice(0, separator), line.slice(separator + 1)] : [line, ""];
}));
if (trustedHostFingerprint && fields.hostFingerprint && trustedHostFingerprint !== fields.hostFingerprint) {
const error = new Error("The Gitea SSH host key changed. Server pull was not reconfigured. Verify the Gitea server before replacing trust.");
error.code = "GITEA_SSH_HOST_KEY_MISMATCH";
throw error;
}
const publicKey = Buffer.from(fields.publicKey || "", "base64").toString("utf8").trim();
const [owner, repo] = String(repository.fullName || "").split("/");
if (!owner || !repo) throw new Error("A full Gitea repository name is required to configure server pull.");
const deployKey = await this.gitea.ensureReadOnlyDeployKey({
owner,
repo,
title: `ForgeFlow · ${server.name} · read-only`,
publicKey,
});
const probeCommand = `${this.serverGitEnvironment(repository, profile, server)} git ls-remote --exit-code ${shellQuote(remote)} ${shellQuote(`refs/heads/${profile.branch}`)}`;
const probe = await this.ssh.exec(
server.id,
bash(`probe_error=''
for attempt in 1 2 3; do
if probe_output=$(${probeCommand} 2>&1); then printf '%s\n' "$probe_output"; exit 0; fi
probe_error=$probe_output
sleep $((attempt * 2))
done
printf '%s\n' "$probe_error" >&2
exit 45`),
{ timeout: 45_000, maxOutput: 256 * 1024 },
);
const remoteSha = String(probe.stdout || "").trim().split(/\s+/)[0] || null;
const updated = await this.store.saveDeploymentProfile(repository.fullName, {
...profile,
deploymentMode: "server-git",
cloneUrl: remote,
serverGitAccess: {
configured: true,
deployKeyId: deployKey.id || null,
keyFingerprint: fields.fingerprint || null,
hostFingerprint: fields.hostFingerprint || null,
configuredAt: new Date().toISOString(),
},
});
return {
profile: updated,
created: deployKey.created === true,
remoteSha,
keyFingerprint: fields.fingerprint || null,
hostFingerprint: fields.hostFingerprint || null,
};
}
async probeServerGitAccess({ repository, profile, server }) {
try {
const remote = this.serverGitRemote(repository, profile);
const credentials = this.serverGitCredentialPaths(repository, server);
const trustedHostFingerprint = String(profile.serverGitAccess?.hostFingerprint || "").trim();
const trustedKeyFingerprint = String(profile.serverGitAccess?.keyFingerprint || "").trim();
const command = `[ -s ${shellQuote(credentials.privateKey)} ] && [ -s ${shellQuote(credentials.publicKey)} ] && [ -s ${shellQuote(credentials.knownHosts)} ] && actual_host_fingerprint="$(ssh-keygen -lf ${shellQuote(credentials.knownHosts)} -E sha256 2>/dev/null | awk '{print $2}' | sort -u | paste -sd, -)" && actual_key_fingerprint="$(ssh-keygen -lf ${shellQuote(credentials.publicKey)} -E sha256 2>/dev/null | awk '{print $2}')" && { [ -z ${shellQuote(trustedHostFingerprint)} ] || [ "$actual_host_fingerprint" = ${shellQuote(trustedHostFingerprint)} ]; } && { [ -z ${shellQuote(trustedKeyFingerprint)} ] || [ "$actual_key_fingerprint" = ${shellQuote(trustedKeyFingerprint)} ]; } && remote_output="$(${this.serverGitEnvironment(repository, profile, server)} git ls-remote --exit-code ${shellQuote(remote)} ${shellQuote(`refs/heads/${profile.branch}`)})" && remote_sha="$(printf '%s' "$remote_output" | awk 'NR==1 {print $1}')" && printf '__FORGEFLOW_SERVER_GIT_PROBE__\nremoteSha=%s\nkeyFingerprint=%s\nhostFingerprint=%s\n' "$remote_sha" "$actual_key_fingerprint" "$actual_host_fingerprint"`;
const result = await this.ssh.exec(server.id, bash(command), { timeout: 45_000, maxOutput: 256 * 1024 });
const output = String(result.stdout || "");
const marker = output.lastIndexOf("__FORGEFLOW_SERVER_GIT_PROBE__");
if (marker < 0) throw new Error("The server pull probe did not return verifiable fingerprint evidence.");
const fields = Object.fromEntries(output.slice(marker + "__FORGEFLOW_SERVER_GIT_PROBE__".length).trim().split(/\r?\n/).map((line) => {
const separator = line.indexOf("=");
return separator > 0 ? [line.slice(0, separator), line.slice(separator + 1)] : [line, ""];
}));
return { ready: true, remoteSha: fields.remoteSha || null, keyFingerprint: fields.keyFingerprint || null, hostFingerprint: fields.hostFingerprint || null };
} catch (error) {
return { ready: false, error: error.message };
}
}
async verifyServerGitProfile({ repository, profileId }) {
const { profile, server, remotePath } = this.resolve(repository, profileId);
const checks = [];
const add = (id, label, status, detail, evidence = {}) => checks.push({ id, label, status, detail, evidence });
if (profile.deploymentMode === "monitor-only") {
add("mode", "Deployment mode", "warning", "This profile is monitoring only and cannot deploy.");
return { readiness: "Monitoring only", ready: false, checkedAt: new Date().toISOString(), repository: repository.fullName, profileId, checks };
}
if (profile.deploymentMode !== "server-git") {
add("mode", "Deployment mode", "unsupported", "Read-only server-pull verification applies only to Server pull profiles.");
return { readiness: "Unsupported", ready: false, checkedAt: new Date().toISOString(), repository: repository.fullName, profileId, checks };
}
let branchSha = null;
try {
const [owner, repo] = String(repository.fullName || "").split("/");
const branch = await this.gitea.getBranch(owner, repo, profile.branch);
branchSha = branch?.commit?.id || branch?.commit?.sha || null;
add("remote-branch", "Gitea branch", branchSha ? "pass" : "fail", branchSha ? `${profile.branch} at ${branchSha}` : `${profile.branch} did not return a commit SHA.`, { branch: profile.branch, sha: branchSha });
const keys = await this.gitea.listDeployKeys(owner, repo);
const keyId = Number(profile.serverGitAccess?.deployKeyId);
const key = keys.find((item) => Number(item.id) === keyId);
add("deploy-key-scope", "Repository deploy key", key?.read_only === true ? "pass" : "fail", !key ? "The configured deploy key is no longer present in Gitea." : key.read_only === true ? `Key ${key.id} is repository-scoped and read-only.` : `Key ${key.id} has write access and is blocked.`, { keyId: key?.id || keyId || null, readOnly: key?.read_only === true });
} catch (error) {
add("gitea-access", "Gitea verification", "fail", error.message);
}
const access = await this.probeServerGitAccess({ repository, profile, server });
add("server-git-access", "Unraid to Gitea", access.ready ? "pass" : "fail", access.ready ? `Exact branch access verified at ${String(access.remoteSha || "unknown").slice(0, 12)}.` : access.error, access);
let inspection = null;
try {
inspection = await this.inspect({ repository, profileId });
const expectedCompose = profile.generatedCompose ? [".forgeflow/compose.forgeflow.yml"] : this.deploymentComposeFiles(profile);
const composePresent = !inspection.exists || expectedCompose.every((file) => inspection.composeFiles.includes(file));
add("deployment-directory", "Deployment directory", inspection.exists ? "pass" : "warning", inspection.exists ? remotePath : `${remotePath} will be created on first deployment.`, { remotePath, exists: inspection.exists });
add("compose", "Compose configuration", composePresent ? "pass" : "warning", composePresent ? expectedCompose.join(", ") : `Expected after deployment: ${expectedCompose.join(", ")}.`, { files: expectedCompose });
add("preserved-paths", "Preserved runtime paths", "pass", (profile.preservePaths || []).length ? profile.preservePaths.join(", ") : "No preserved runtime paths configured.", { paths: profile.preservePaths || [] });
add("environment-requirements", "Environment requirements", "pass", (profile.detectedMetadata?.envNames || []).length ? `${profile.detectedMetadata.envNames.length} variable name(s) detected; values remain hidden.` : "No environment variable names were detected in server metadata.", { names: profile.detectedMetadata?.envNames || [] });
} catch (error) {
add("server-inspection", "Server inspection", "fail", error.message);
}
const state = this.store.getDeploymentState(profile.id) || {};
const liveSha = state.liveSha || inspection?.head || null;
const running = state.containerRunning;
const healthy = state.healthy;
add("live-commit", "Live server commit", liveSha ? "pass" : "warning", liveSha || "No verifiable live commit is currently recorded.", { liveSha });
add("commit-parity", "Gitea and server parity", branchSha && liveSha && branchSha === liveSha ? "pass" : branchSha && liveSha ? "warning" : "incomplete", branchSha && liveSha ? branchSha === liveSha ? "The exact Gitea commit is live." : `Live ${String(liveSha).slice(0, 12)} differs from Gitea ${String(branchSha).slice(0, 12)}.` : "Parity cannot be proven until both SHAs are available.", { branchSha, liveSha });
add("runtime", "Container runtime", running === true ? "pass" : running === false ? "fail" : "incomplete", running === true ? "The linked container is running." : running === false ? "The linked container is stopped." : "Runtime state has not been verified.");
add("health", "Runtime health", healthy === true ? "pass" : healthy === false ? "fail" : "incomplete", healthy === true ? "Runtime health passed." : healthy === false ? "Runtime health failed." : "No conclusive runtime health evidence is available.");
const deploymentCheckIds = new Set(["gitea-access", "remote-branch", "deploy-key-scope", "server-git-access", "server-inspection"]);
const deploymentBlockers = checks.filter((item) => deploymentCheckIds.has(item.id) && item.status !== "pass");
const deployReady = Boolean(branchSha) && deploymentBlockers.length === 0;
const failed = checks.some((item) => item.status === "fail");
const incomplete = checks.some((item) => ["warning", "incomplete", "unsupported"].includes(item.status));
const readiness = deploymentBlockers.length
? "Access failed"
: failed
? "Deploy-ready; runtime unhealthy"
: incomplete
? (branchSha && liveSha && branchSha !== liveSha ? "Deployable update available" : "Deploy-ready; runtime verification incomplete")
: "Ready";
return { readiness, ready: deployReady, deployReady, deploymentBlockers, checkedAt: new Date().toISOString(), repository: repository.fullName, profileId, server: { id: server.id, name: server.name }, remotePath, branch: profile.branch, branchSha, liveSha, checks };
}
permissionTargets(profile, server, remotePath) {
const targets = [
{
id: "server-base",
label: "Configured deployment base",
path: server.basePath,
kind: "directory",
required: false,
},
{
id: "project-root",
label: "Project folder",
path: remotePath,
kind: "directory",
required: true,
},
{
id: "forgeflow-state",
label: "ForgeFlow upload and rollback storage",
path: path.join(remotePath, ".forgeflow"),
kind: "directory",
required: true,
},
{
id: "forgeflow-incoming",
label: "ForgeFlow incoming upload folder",
path: path.join(remotePath, ".forgeflow", "incoming"),
kind: "directory",
required: true,
},
];
if (!profile.generatedCompose) {
for (const file of this.deploymentComposeFiles(profile)) {
targets.push({
id: `compose:${file}`,
label: `Compose file ${file}`,
path: path.join(remotePath, file),
kind: "file",
required: true,
});
}
}
const unique = new Map();
for (const target of targets) unique.set(`${target.kind}:${target.path}`, target);
return [...unique.values()];
}
permissionInspectionScript(profile, server, remotePath) {
const targetCalls = this.permissionTargets(profile, server, remotePath)
.map(
(target) =>
`probe ${shellQuote(target.id)} ${shellQuote(target.label)} ${shellQuote(target.path)} ${shellQuote(target.kind)} ${target.required ? "true" : "false"}`,
)
.join("\n");
return `
encode() { printf '%s' "$1" | base64 | tr -d '\\r\\n'; }
can_elevate=false
[ "$(id -u)" = 0 ] && can_elevate=true
if [ "$can_elevate" != true ] && command -v sudo >/dev/null 2>&1 && sudo -n true >/dev/null 2>&1; then can_elevate=true; fi
has_acl=false
command -v setfacl >/dev/null 2>&1 && has_acl=true
printf '__FORGEFLOW_PERMISSIONS__\\n'
printf 'I\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\n' \
"$(encode "$(id -un 2>/dev/null || echo unknown)")" \
"$(id -u 2>/dev/null || echo -1)" \
"$(id -g 2>/dev/null || echo -1)" \
"$(encode "$(id -Gn 2>/dev/null || true)")" \
"$has_acl" "$can_elevate"
probe() {
target_id=$1
label=$2
target=$3
kind=$4
required=$5
exists=false; readable=false; writable=false; parent_writable=false; effective=false
owner=''; group=''; mode=''; detail=''; nearest=''
if [ -e "$target" ] || [ -L "$target" ]; then
exists=true
[ -r "$target" ] && readable=true
[ -w "$target" ] && writable=true
owner=$(stat -c '%U' "$target" 2>/dev/null || true)
group=$(stat -c '%G' "$target" 2>/dev/null || true)
mode=$(stat -c '%a' "$target" 2>/dev/null || true)
fi
parent=$(dirname "$target")
ancestor=$parent
while [ ! -d "$ancestor" ] && [ "$ancestor" != / ]; do ancestor=$(dirname "$ancestor"); done
nearest=$ancestor
marker="$ancestor/.forgeflow-write-test-$$-\${RANDOM:-0}"
if [ -d "$ancestor" ] && (umask 077; : > "$marker") 2>/dev/null; then
rm -f -- "$marker" >/dev/null 2>&1 || true
parent_writable=true
fi
if [ "$kind" = directory ]; then
if [ -d "$target" ]; then
marker="$target/.forgeflow-write-test-$$-\${RANDOM:-0}"
if (umask 077; : > "$marker") 2>/dev/null; then
rm -f -- "$marker" >/dev/null 2>&1 || true
effective=true
fi
elif [ "$parent_writable" = true ]; then
effective=true
fi
else
if [ "$exists" = true ] && [ ! -f "$target" ]; then
detail='Path exists but is not a regular file.'
elif [ "$exists" = true ] && [ "$readable" = true ] && { [ "$writable" = true ] || [ "$parent_writable" = true ]; }; then
effective=true
elif [ "$exists" = false ] && [ "$parent_writable" = true ]; then
effective=true
detail='File is absent but can be created by the deployment user.'
fi
fi
if [ -z "$detail" ]; then
if [ "$effective" = true ]; then detail='Read/write probe passed.'
else detail="No safe create/replace access for $(id -un 2>/dev/null || echo 'the SSH user')."; fi
fi
printf 'P\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\n' \
"$(encode "$target_id")" "$(encode "$label")" "$(encode "$target")" "$kind" "$required" \
"$exists" "$readable" "$writable" "$parent_writable" "$effective" \
"$(encode "$owner")" "$(encode "$group")" "$mode" "$(encode "$nearest")" "$(encode "$detail")"
}
${targetCalls}
`;
}
async inspectWriteAccess({ repository, profileId }) {
const { profile, server, remotePath } = this.resolve(repository, profileId);
const result = await this.ssh.exec(
server.id,
bash(this.permissionInspectionScript(profile, server, remotePath)),
{ timeout: 45_000, maxOutput: 2 * 1024 * 1024 },
);
const report = parsePermissionInspection(result.stdout);
report.serverId = server.id;
report.remotePath = remotePath;
return report;
}
permissionRepairScript(profile, server, remotePath) {
const preserve = [
".git",
"node_modules",
".venv",
"venv",
"__pycache__",
...(profile.preservePaths || []),
]
.map((value) => safeRelativeRemoteFile(value))
.filter(Boolean);
const pruneExpression = preserve.length
? preserve
.map((value) => `-path ${shellQuote(path.join(remotePath, value))} -o -path ${shellQuote(path.join(remotePath, value, "*"))}`)
.join(" -o ")
: "-false";
const composePaths = this.deploymentComposeFiles(profile)
.map((file) => shellQuote(path.join(remotePath, file)))
.join(" ");
return `
root=${shellQuote(remotePath)}
base=${shellQuote(server.basePath)}
case "$root" in "$base"|"$base"/*) ;; *) echo "Refusing permission repair outside configured base path: $root" >&2; exit 81 ;; esac
run_privileged() {
if [ "$(id -u)" = 0 ]; then "$@";
elif command -v sudo >/dev/null 2>&1 && sudo -n true >/dev/null 2>&1; then sudo -n "$@";
else "$@";
fi
}
mkdir_cmd=mkdir
if ! mkdir -p "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups" 2>/dev/null; then
run_privileged mkdir -p "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups"
fi
share_group=$(getent group users >/dev/null 2>&1 && echo users || id -gn)
if command -v setfacl >/dev/null 2>&1; then
run_privileged setfacl -m "u:$(id -un):rwx,g:$share_group:rwx,m:rwx" "$root" "$root/.forgeflow" "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups" 2>/dev/null || true
run_privileged setfacl -d -m "u:$(id -un):rwx,g:$share_group:rwx,m:rwx" "$root" "$root/.forgeflow" "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups" 2>/dev/null || true
fi
run_privileged chgrp "$share_group" "$root" "$root/.forgeflow" "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups" 2>/dev/null || true
run_privileged chmod 2775 "$root" "$root/.forgeflow" "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups"
if [ -d "$root" ]; then
while IFS= read -r -d '' entry; do
case "$entry" in
"$root/.forgeflow"|"$root/.forgeflow"/*) continue ;;
esac
run_privileged chgrp "$share_group" "$entry" 2>/dev/null || true
if [ -d "$entry" ]; then run_privileged chmod u+rwx,g+rwx,g+s "$entry"; else run_privileged chmod u+rw,g+rw "$entry"; fi
done < <(find "$root" -mindepth 1 \\( ${pruneExpression} \\) -prune -o -print0)
fi
for compose_file in ${composePaths || ""}; do
[ -e "$compose_file" ] || continue
run_privileged chgrp "$share_group" "$compose_file" 2>/dev/null || true
run_privileged chmod u+rw,g+rw "$compose_file"
done
echo "ForgeFlow repaired project write access for $(id -un) and group $share_group without changing preserved runtime paths."
`;
}
async repairWriteAccess({ repository, profileId }) {
const { profile, server, remotePath } = this.resolve(repository, profileId);
const before = await this.inspectWriteAccess({ repository, profileId });
await this.ssh.exec(server.id, bash(this.permissionRepairScript(profile, server, remotePath)), {
timeout: 5 * 60_000,
maxOutput: 4 * 1024 * 1024,
});
const after = await this.inspectWriteAccess({ repository, profileId });
if (!after.ready) {
const error = new Error(
`Write-access repair did not make every required path writable: ${after.blocking.map((item) => item.path).join(", ")}`,
);
error.code = "WRITE_ACCESS_REPAIR_INCOMPLETE";
error.permissionReport = after;
throw error;
}
await this.diagnostics?.info("unraid.write-access.repaired", {
repository: repository.fullName,
profileId,
serverId: server.id,
remotePath,
user: after.identity.user,
});
return { changed: true, normalized: true, before, after };
}
}
return UnraidAccessMethods.prototype;
}
module.exports = { createUnraidAccessMethods };
+76
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@@ -0,0 +1,76 @@
"use strict";
const crypto = require("node:crypto");
const path = require("node:path").posix;
const { shellQuote } = require("./ssh-service.cjs");
const bash = (command) => `printf '%s' ${shellQuote(Buffer.from(`set -euo pipefail\nexport GIT_TERMINAL_PROMPT=0\n${command}`, "utf8").toString("base64"))} | base64 -d | bash`;
function parseMarker(stdout, marker) {
const text = String(stdout || "");
const index = text.lastIndexOf(marker);
if (index < 0) throw new Error(`Server key operation did not return ${marker}.`);
return Object.fromEntries(text.slice(index + marker.length).trim().split(/\r?\n/).map((line) => { const separator = line.indexOf("="); return separator > 0 ? [line.slice(0, separator), line.slice(separator + 1)] : [line, ""]; }));
}
class UnraidDeployKeyHost {
constructor({ ssh }) { this.ssh = ssh; }
paths(repository, server) {
const id = crypto.createHash("sha256").update(String(repository.fullName).toLowerCase()).digest("hex").slice(0, 24);
const directory = path.join(server.basePath, ".forgeflow", "git-credentials", id);
return { directory, privateKey: path.join(directory, "deploy-key"), publicKey: path.join(directory, "deploy-key.pub"), knownHosts: path.join(directory, "known_hosts"), recovery: path.join(directory, "recovery") };
}
remote(repository, profile) {
const value = [repository.localStatus?.remoteUrl, repository.sshUrl, repository.preferredCloneUrl, profile.cloneUrl].map((item) => String(item || "").trim()).find((item) => /^ssh:\/\//i.test(item) || /^[^@\s]+@[^:\s]+:.+/.test(item));
if (!value) throw Object.assign(new Error("Server pull requires a Gitea SSH URL."), { code: "SERVER_GIT_SSH_URL_REQUIRED" });
return value;
}
environment(paths) { return `GIT_SSH_COMMAND=${shellQuote(`ssh -i ${paths.privateKey} -o IdentitiesOnly=yes -o BatchMode=yes -o StrictHostKeyChecking=yes -o UserKnownHostsFile=${paths.knownHosts}`)}`; }
async execute(server, script, options = {}) { return this.ssh.exec(server.id, bash(script), { timeout: options.timeout || 30_000, maxOutput: options.maxOutput || 128 * 1024 }); }
async inspect({ repository, server }) {
const p = this.paths(repository, server); const marker = "__FORGEFLOW_KEY_INSPECT__";
const script = `printf '%s\\n' ${shellQuote(marker)}; printf 'privateKeyPresent=%s\\n' "$([ -s ${shellQuote(p.privateKey)} ] && echo true || echo false)"; printf 'publicKey=%s\\n' "$([ -s ${shellQuote(p.publicKey)} ] && base64 < ${shellQuote(p.publicKey)} | tr -d '\\r\\n' || true)"; printf 'fingerprint=%s\\n' "$([ -s ${shellQuote(p.publicKey)} ] && ssh-keygen -lf ${shellQuote(p.publicKey)} -E sha256 | awk '{print $2}' || true)"; printf 'hostFingerprint=%s\\n' "$([ -s ${shellQuote(p.knownHosts)} ] && ssh-keygen -lf ${shellQuote(p.knownHosts)} -E sha256 | awk '{print $2}' | sort -u | paste -sd, - || true)"`;
const f = parseMarker((await this.execute(server, script)).stdout, marker);
return { privateKeyPresent: f.privateKeyPresent === "true", publicKey: f.publicKey ? Buffer.from(f.publicKey, "base64").toString("utf8").trim() : null, fingerprint: f.fingerprint || null, hostFingerprint: f.hostFingerprint || null };
}
async backup({ repository, server }) {
const p = this.paths(repository, server); const slot = path.join(p.recovery, `backup-${Date.now()}-${crypto.randomUUID()}`); const marker = "__FORGEFLOW_KEY_BACKUP__";
const script = `umask 077; mkdir -p ${shellQuote(slot)}; for name in deploy-key deploy-key.pub known_hosts; do [ ! -e ${shellQuote(p.directory)}/"$name" ] || cp -p ${shellQuote(p.directory)}/"$name" ${shellQuote(slot)}/"$name"; done; printf '%s\\n' ${shellQuote(marker)}; printf 'recovery=%s\\n' ${shellQuote(slot)}; printf 'publicKey=%s\\n' "$([ -s ${shellQuote(p.publicKey)} ] && base64 < ${shellQuote(p.publicKey)} | tr -d '\\r\\n' || true)"`;
const f = parseMarker((await this.execute(server, script)).stdout, marker);
return { recovery: f.recovery, publicKey: f.publicKey ? Buffer.from(f.publicKey, "base64").toString("utf8").trim() : null };
}
async generate({ repository, server }) {
const active = this.paths(repository, server); const directory = path.join(active.directory, `candidate-${crypto.randomUUID()}`); const p = { directory, privateKey: path.join(directory, "deploy-key"), publicKey: path.join(directory, "deploy-key.pub"), knownHosts: path.join(directory, "known_hosts") }; const marker = "__FORGEFLOW_KEY_CANDIDATE__";
const script = `umask 077; mkdir -p ${shellQuote(directory)}; ssh-keygen -q -t ed25519 -N '' -C ${shellQuote(`forgeflow-rotation:${repository.fullName}`)} -f ${shellQuote(p.privateKey)}; cp -p ${shellQuote(active.knownHosts)} ${shellQuote(p.knownHosts)}; chmod 600 ${shellQuote(p.privateKey)} ${shellQuote(p.knownHosts)}; chmod 644 ${shellQuote(p.publicKey)}; printf '%s\\n' ${shellQuote(marker)}; printf 'publicKey=%s\\n' "$(base64 < ${shellQuote(p.publicKey)} | tr -d '\\r\\n')"; printf 'fingerprint=%s\\n' "$(ssh-keygen -lf ${shellQuote(p.publicKey)} -E sha256 | awk '{print $2}')"; printf 'hostFingerprint=%s\\n' "$(ssh-keygen -lf ${shellQuote(p.knownHosts)} -E sha256 | awk '{print $2}' | sort -u | paste -sd, -)"`;
const f = parseMarker((await this.execute(server, script)).stdout, marker);
return { paths: p, publicKey: Buffer.from(f.publicKey, "base64").toString("utf8").trim(), fingerprint: f.fingerprint, hostFingerprint: f.hostFingerprint };
}
async verifyCandidate({ repository, profile, server, candidate }) {
const marker = "__FORGEFLOW_KEY_PROOF__"; const remote = this.remote(repository, profile); const p = candidate.paths;
const script = `output="$(${this.environment(p)} git ls-remote --exit-code ${shellQuote(remote)} ${shellQuote(`refs/heads/${profile.branch}`)})"; printf '%s\\n' ${shellQuote(marker)}; printf 'remoteSha=%s\\n' "$(printf '%s' "$output" | awk 'NR==1 {print $1}')"; printf 'fingerprint=%s\\n' "$(ssh-keygen -lf ${shellQuote(p.publicKey)} -E sha256 | awk '{print $2}')"; printf 'hostFingerprint=%s\\n' "$(ssh-keygen -lf ${shellQuote(p.knownHosts)} -E sha256 | awk '{print $2}' | sort -u | paste -sd, -)"`;
const f = parseMarker((await this.execute(server, script, { timeout: 45_000, maxOutput: 256 * 1024 })).stdout, marker);
return { ready: /^[0-9a-f]{40}$/i.test(f.remoteSha || ""), remoteSha: f.remoteSha || null, fingerprint: f.fingerprint || null, hostFingerprint: f.hostFingerprint || null };
}
async preflightCandidate(context) { const proof = await this.verifyCandidate(context); if (!proof.ready) throw new Error("Candidate preflight did not prove the remote branch."); return proof; }
async promote({ repository, server, candidate }) {
const p = this.paths(repository, server); const c = candidate.paths;
await this.execute(server, `test -s ${shellQuote(c.privateKey)}; test -s ${shellQuote(c.publicKey)}; test -s ${shellQuote(c.knownHosts)}; cp -p ${shellQuote(c.privateKey)} ${shellQuote(p.privateKey)}.new; cp -p ${shellQuote(c.publicKey)} ${shellQuote(p.publicKey)}.new; cp -p ${shellQuote(c.knownHosts)} ${shellQuote(p.knownHosts)}.new; mv ${shellQuote(p.privateKey)}.new ${shellQuote(p.privateKey)}; mv ${shellQuote(p.publicKey)}.new ${shellQuote(p.publicKey)}; mv ${shellQuote(p.knownHosts)}.new ${shellQuote(p.knownHosts)}`);
}
async verifyActive({ repository, profile, server }) { const paths = this.paths(repository, server); return this.verifyCandidate({ repository, profile, server, candidate: { paths } }); }
async rollback({ repository, server, candidate, previous }) {
const p = this.paths(repository, server); const recovery = previous.key.recovery;
await this.execute(server, `for name in deploy-key deploy-key.pub known_hosts; do test ! -s ${shellQuote(recovery)}/"$name" || cp -p ${shellQuote(recovery)}/"$name" ${shellQuote(p.directory)}/"$name"; done; rm -rf -- ${shellQuote(candidate.paths.directory)}`);
}
async commit({ server, candidate }) { await this.execute(server, `rm -rf -- ${shellQuote(candidate.paths.directory)}`); }
async revoke({ repository, server }) {
const p = this.paths(repository, server); const revoked = path.join(p.recovery, `revoked-${Date.now()}-${crypto.randomUUID()}`);
await this.execute(server, `umask 077; mkdir -p ${shellQuote(revoked)}; for name in deploy-key deploy-key.pub known_hosts; do [ ! -e ${shellQuote(p.directory)}/"$name" ] || mv ${shellQuote(p.directory)}/"$name" ${shellQuote(revoked)}/"$name"; done`);
}
async restore({ repository, server }) {
const p = this.paths(repository, server); const marker = "__FORGEFLOW_KEY_RESTORE__";
const script = `slot="$(find ${shellQuote(p.recovery)} -mindepth 1 -maxdepth 1 -type d -print 2>/dev/null | sort | tail -1)"; test -n "$slot"; for name in deploy-key deploy-key.pub known_hosts; do test -s "$slot/$name"; cp -p "$slot/$name" ${shellQuote(p.directory)}/"$name"; done; printf '%s\\n' ${shellQuote(marker)}; printf 'publicKey=%s\\n' "$(base64 < ${shellQuote(p.publicKey)} | tr -d '\\r\\n')"; printf 'fingerprint=%s\\n' "$(ssh-keygen -lf ${shellQuote(p.publicKey)} -E sha256 | awk '{print $2}')"; printf 'hostFingerprint=%s\\n' "$(ssh-keygen -lf ${shellQuote(p.knownHosts)} -E sha256 | awk '{print $2}' | sort -u | paste -sd, -)"`;
const f = parseMarker((await this.execute(server, script)).stdout, marker);
return { publicKey: Buffer.from(f.publicKey, "base64").toString("utf8").trim(), fingerprint: f.fingerprint, hostFingerprint: f.hostFingerprint };
}
}
module.exports = { UnraidDeployKeyHost, parseDeployKeyMarker: parseMarker };
+582
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@@ -0,0 +1,582 @@
"use strict";
function createUnraidDeploymentMethods({
path, crypto, bash, shellQuote, assertFullCommitSha, nativePath, fs,
}) {
class UnraidDeploymentMethods {
pushBundleScript({ repository, profile, remotePath, targetSha, requestId, remotePart, digest, metadata, generated, iconReference, rollback = false }) {
const compose = this.composeInvocation(profile, repository);
const project = String(
profile.composeProject || this.internalSlug(profile, repository),
).trim();
const candidateFiles = [...this.deploymentComposeFiles(profile)];
if (profile.generatedCompose) candidateFiles.push(".forgeflow/compose.metadata.yml");
const candidateCompose = `forgeflow_compose -p ${shellQuote(project)} ${candidateFiles
.map((file) => `-f "$release"/${shellQuote(file)}`)
.join(" ")}`;
const preservePayload = Buffer.from(
[".forgeflow", ".git", ...(profile.preservePaths || [])].join("\n"),
"utf8",
).toString("base64");
const statusJson = this.deploymentStatusDocument({
repository,
profile,
targetSha,
requestId,
rollback,
});
const verification = this.containerVerificationScript(
profile,
repository,
compose,
{ requireRecreated: true },
);
const containerHint = String(
profile.containerName || profile.remoteFolder || repository.name || "",
).trim();
return `
root=${shellQuote(remotePath)}
expected_project=${shellQuote(project)}
tracked_container_hint=${shellQuote(containerHint)}
target=${shellQuote(targetSha)}
request_id=${shellQuote(requestId)}
incoming=${shellQuote(remotePart)}
expected_digest=${shellQuote(digest)}
release_root="$root/.forgeflow/releases/$target"
release="$release_root/source"
staging="$root/.forgeflow/staging/$request_id"
backup="$root/.forgeflow/backups/$request_id"
lock="$root/.forgeflow/deploy.lock"
mkdir -p "$root/.forgeflow/incoming" "$root/.forgeflow/releases" "$root/.forgeflow/staging" "$root/.forgeflow/backups"
if [ -d "$lock" ] && find "$lock" -maxdepth 0 -mmin +120 -print -quit | grep -q .; then
lock_pid=$(cat "$lock/pid" 2>/dev/null || true)
if [ -z "$lock_pid" ] || ! kill -0 "$lock_pid" 2>/dev/null; then rm -rf "$lock"; fi
fi
mkdir "$lock" 2>/dev/null || { echo "Another ForgeFlow deployment is active for $root" >&2; exit 70; }
printf '%s\n' "$request_id" > "$lock/request-id"
printf '%s\n' "$$" > "$lock/pid"
date -u +%Y-%m-%dT%H:%M:%SZ > "$lock/started-at"
restore_needed=false
activation_started=false
is_preserved() {
rel="$1"
while IFS= read -r keep; do
[ -n "$keep" ] || continue
if [ "$rel" = "$keep" ] || [[ "$rel" == "$keep/"* ]]; then return 0; fi
done < "$staging.preserve"
return 1
}
restore_files() {
if [ -f "$backup/present" ]; then
while IFS= read -r rel; do
[ -n "$rel" ] || continue
mkdir -p -- "$root/$(dirname "$rel")"
temp="$root/$rel.forgeflow-restore-$request_id"
cp -a -- "$backup/source/$rel" "$temp" && mv -f -- "$temp" "$root/$rel"
done < "$backup/present"
fi
if [ -f "$backup/absent" ]; then
while IFS= read -r rel; do
[ -n "$rel" ] || continue
case "$rel" in .forgeflow/*) continue ;; esac
[ -e "$root/$rel" ] || [ -L "$root/$rel" ] || continue
rm -f -- "$root/$rel"
done < "$backup/absent"
fi
if [ -f "$backup/generated.present" ]; then
cp -a "$backup/compose.forgeflow.yml" "$root/.forgeflow/compose.forgeflow.yml"
elif [ -f "$backup/generated.created" ]; then
rm -f "$root/.forgeflow/compose.forgeflow.yml"
fi
if [ -f "$backup/metadata.present" ]; then
cp -a "$backup/compose.metadata.yml" "$root/.forgeflow/compose.metadata.yml"
elif [ -f "$backup/metadata.created" ]; then
rm -f "$root/.forgeflow/compose.metadata.yml"
fi
}
restore_images() {
[ -f "$backup/containers.before" ] || return 0
while IFS=$'\t' read -r service container_id image_id image_ref_b64; do
[ -n "$image_id" ] || continue
docker image inspect "$image_id" >/dev/null 2>&1 || continue
image_ref=$(printf '%s' "$image_ref_b64" | base64 -d 2>/dev/null || true)
case "$image_ref" in ''|sha256:*|*@sha256:*) continue ;; esac
docker image tag "$image_id" "$image_ref" >/dev/null 2>&1 || true
done < "$backup/containers.before"
}
restore_runtime() {
[ "$activation_started" = true ] || return 0
restore_images
if cd "$root" 2>/dev/null && ${compose} config >/dev/null 2>&1; then
${compose} up -d --no-build >/dev/null 2>&1 || return 1
old_services=$(${compose} config --services 2>/dev/null | sed '/^$/d')
printf '%s\n' "$old_services" | while IFS= read -r service; do
[ -n "$service" ] || continue
old_id=$(${compose} ps -q "$service" | head -n1)
[ -n "$old_id" ] || exit 1
[ "$(docker inspect -f '{{.State.Running}}' "$old_id" 2>/dev/null || echo false)" = true ] || exit 1
done
fi
}
finish() {
status=$?
trap - EXIT
set +e
if [ "$status" -ne 0 ] && [ "$restore_needed" = true ]; then
restore_files
if ! restore_runtime; then
echo "CRITICAL: source files were restored, but the previous Compose runtime could not be restarted automatically. Backup: $backup" >&2
else
echo "ForgeFlow restored the previous source and runtime after the failed activation." >&2
fi
fi
rm -rf "$staging" "$lock"
exit "$status"
}
trap finish EXIT
actual_digest=$(if command -v sha256sum >/dev/null 2>&1; then sha256sum "$incoming" | awk '{print $1}'; else shasum -a 256 "$incoming" | awk '{print $1}'; fi)
[ "$actual_digest" = "$expected_digest" ] || { echo "Uploaded bundle checksum mismatch" >&2; exit 71; }
tar -tf "$incoming" > "$staging.entries"
if grep -E '(^/|(^|/)\\.\\.(/|$))' "$staging.entries" >/dev/null; then echo "Unsafe path detected in deployment bundle" >&2; exit 72; fi
rm -rf "$staging" "$release_root.pending"
mkdir -p "$staging/source" "$release_root.pending"
tar -xf "$incoming" -C "$staging/source"
if find "$staging/source" -type l -print -quit | grep -q .; then echo "Symbolic links are not accepted in push bundles" >&2; exit 73; fi
mv "$staging/source" "$release_root.pending/source"
find "$release_root.pending/source" -type f -printf '%P\n' | LC_ALL=C sort > "$release_root.pending/managed-files"
rm -rf "$release_root"
mv "$release_root.pending" "$release_root"
rm -f "$incoming" "$staging.entries"
printf '%s' ${shellQuote(preservePayload)} | base64 -d > "$staging.preserve"
for runtime_config in .env compose.override.yml compose.override.yaml docker-compose.override.yml docker-compose.override.yaml; do
if [ -f "$root/$runtime_config" ] && [ ! -e "$release/$runtime_config" ]; then
mkdir -p "$release/$(dirname "$runtime_config")"
cp -a "$root/$runtime_config" "$release/$runtime_config"
fi
done
${profile.generatedCompose ? `mkdir -p "$release/.forgeflow"
cat > "$release/.forgeflow/compose.forgeflow.yml" <<'FORGEFLOW_COMPOSE'
${generated}FORGEFLOW_COMPOSE
cat > "$release/.forgeflow/compose.metadata.yml" <<'FORGEFLOW_METADATA'
${metadata}FORGEFLOW_METADATA` : ""}
cd "$release"
${candidateCompose} config >/dev/null
candidate_services=$(${candidateCompose} config --services 2>/dev/null | sed '/^$/d')
[ -n "$candidate_services" ] || { echo "Candidate Compose project defines no services" >&2; exit 60; }
mkdir -p "$backup/source"
: > "$backup/present"
: > "$backup/absent"
: > "$backup/containers.before"
had_existing_compose=false
if cd "$root" 2>/dev/null && ${compose} config >/dev/null 2>&1; then
had_existing_compose=true
old_services=$(${compose} config --services 2>/dev/null | sed '/^$/d')
printf '%s\n' "$old_services" | while IFS= read -r service; do
[ -n "$service" ] || continue
container_id=$(${compose} ps -q "$service" | head -n1)
image_id=''; image_ref=''
if [ -n "$container_id" ] && docker inspect "$container_id" >/dev/null 2>&1; then
image_id=$(docker inspect -f '{{.Image}}' "$container_id" 2>/dev/null || true)
image_ref=$(docker inspect -f '{{.Config.Image}}' "$container_id" 2>/dev/null || true)
fi
printf '%s\t%s\t%s\t%s\n' "$service" "$container_id" "$image_id" "$(printf '%s' "$image_ref" | base64 | tr -d '\r\n')"
done >> "$backup/containers.before"
fi
if [ -n "$tracked_container_hint" ] && docker inspect "$tracked_container_hint" >/dev/null 2>&1; then
hint_project=$(docker inspect -f '{{index .Config.Labels "com.docker.compose.project"}}' "$tracked_container_hint" 2>/dev/null || true)
if [ -n "$hint_project" ] && [ "$hint_project" != "$expected_project" ]; then
echo "Refusing activation: container $tracked_container_hint belongs to Compose project $hint_project, not $expected_project" >&2
exit 67
fi
fi
# Build all candidate images before any running container is touched.
cd "$release"
${candidateCompose} build
new_manifest="$release_root/managed-files"
while IFS= read -r rel; do
[ -n "$rel" ] || continue
is_preserved "$rel" && continue
parent=$(dirname "$rel")
current="$root"
if [ "$parent" != . ]; then
old_ifs=$IFS; IFS='/'; read -r -a parts <<< "$parent"; IFS=$old_ifs
for part in "\${parts[@]}"; do
current="$current/$part"
[ ! -L "$current" ] || { echo "Refusing to deploy through symlinked parent $current" >&2; exit 74; }
done
fi
[ ! -L "$root/$rel" ] || { echo "Refusing to replace symlinked managed path $rel" >&2; exit 74; }
if [ -d "$root/$rel" ]; then echo "A directory conflicts with managed file $rel" >&2; exit 75; fi
if [ -e "$root/$rel" ]; then
mkdir -p "$backup/source/$(dirname "$rel")"
cp -a -- "$root/$rel" "$backup/source/$rel"
printf '%s\n' "$rel" >> "$backup/present"
else
printf '%s\n' "$rel" >> "$backup/absent"
fi
done < "$new_manifest"
[ -f "$root/.forgeflow/compose.metadata.yml" ] && { cp -a "$root/.forgeflow/compose.metadata.yml" "$backup/compose.metadata.yml"; touch "$backup/metadata.present"; }
[ -f "$root/.forgeflow/compose.forgeflow.yml" ] && { cp -a "$root/.forgeflow/compose.forgeflow.yml" "$backup/compose.forgeflow.yml"; touch "$backup/generated.present"; }
restore_needed=true
while IFS= read -r rel; do
[ -n "$rel" ] || continue
is_preserved "$rel" && continue
mkdir -p -- "$root/$(dirname "$rel")"
temp="$root/$rel.forgeflow-new-$request_id"
cp -a -- "$release/$rel" "$temp"
mv -f -- "$temp" "$root/$rel"
done < "$new_manifest"
mkdir -p "$root/.forgeflow"
${profile.generatedCompose ? `if [ ! -f "$backup/generated.present" ]; then touch "$backup/generated.created"; fi
if [ ! -f "$backup/metadata.present" ]; then touch "$backup/metadata.created"; fi
cat > "$root/.forgeflow/compose.forgeflow.yml.pending" <<'FORGEFLOW_COMPOSE'
${generated}FORGEFLOW_COMPOSE
mv "$root/.forgeflow/compose.forgeflow.yml.pending" "$root/.forgeflow/compose.forgeflow.yml"
cat > "$root/.forgeflow/compose.metadata.yml.pending" <<'FORGEFLOW_METADATA'
${metadata}FORGEFLOW_METADATA
mv "$root/.forgeflow/compose.metadata.yml.pending" "$root/.forgeflow/compose.metadata.yml"` : `cat > "$root/.forgeflow/deployment-metadata.json.pending" <<'FORGEFLOW_METADATA_JSON'
${JSON.stringify({ repository: repository.fullName, environment: profile.environment, commit: targetSha, requestId })}
FORGEFLOW_METADATA_JSON
mv "$root/.forgeflow/deployment-metadata.json.pending" "$root/.forgeflow/deployment-metadata.json"`}
share_group=$(getent group users >/dev/null 2>&1 && echo users || id -gn)
chgrp "$share_group" "$root" "$root/.forgeflow" 2>/dev/null || true
chmod g+rwx "$root" "$root/.forgeflow" 2>/dev/null || true
chmod g+s "$root" "$root/.forgeflow" 2>/dev/null || true
while IFS= read -r rel; do
[ -n "$rel" ] || continue
is_preserved "$rel" && continue
chgrp "$share_group" "$root/$rel" 2>/dev/null || true
chmod u+rw,g+rw "$root/$rel" 2>/dev/null || true
parent="$root/$(dirname "$rel")"
chgrp "$share_group" "$parent" 2>/dev/null || true
chmod g+rwx,g+s "$parent" 2>/dev/null || true
done < "$new_manifest"
cd "$root"
${compose} config >/dev/null
actual_services=$(${compose} config --services 2>/dev/null | sed '/^$/d')
[ -n "$actual_services" ] || { echo "Compose project defines no services" >&2; exit 60; }
if [ "$(printf '%s\n' "$candidate_services" | LC_ALL=C sort)" != "$(printf '%s\n' "$actual_services" | LC_ALL=C sort)" ]; then
echo "Refusing activation because candidate and server Compose service sets differ" >&2
exit 68
fi
before_containers="$backup/containers.before"
hint_before_id=''
if [ -n "$tracked_container_hint" ] && docker inspect "$tracked_container_hint" >/dev/null 2>&1; then
hint_before_id=$(docker inspect -f '{{.Id}}' "$tracked_container_hint" 2>/dev/null || true)
fi
activation_started=true
${compose} up -d --no-build
${verification}
if [ -n "$hint_before_id" ] && docker inspect "$hint_before_id" >/dev/null 2>&1; then
old_hint_running=$(docker inspect -f '{{.State.Running}}' "$hint_before_id" 2>/dev/null || echo false)
[ "$old_hint_running" != true ] || { echo "Compose left the previous container $tracked_container_hint ($hint_before_id) running" >&2; exit 66; }
fi
${this.dockerManRefreshScript(profile, repository, iconReference)}
previous=$(cat "$root/.forgeflow/current-sha" 2>/dev/null || true)
[ -n "$previous" ] || previous=$(git -C "$root" rev-parse HEAD 2>/dev/null || true)
[ -n "$previous" ] && printf '%s' "$previous" > "$root/.forgeflow/previous-sha"
cp "$new_manifest" "$root/.forgeflow/managed-files.pending"
mv "$root/.forgeflow/managed-files.pending" "$root/.forgeflow/managed-files"
printf '%s' "$target" > "$root/.forgeflow/current-sha.pending"
mv "$root/.forgeflow/current-sha.pending" "$root/.forgeflow/current-sha"
cat > "$root/.forgeflow/status.json.pending" <<'FORGEFLOW_STATUS'
${statusJson}
FORGEFLOW_STATUS
mv "$root/.forgeflow/status.json.pending" "$root/.forgeflow/status.json"
restore_needed=false
printf '%s\n' "successful" > "$backup/result"
date -u +%Y-%m-%dT%H:%M:%SZ > "$backup/completed-at"
echo "ForgeFlow safely activated push bundle $target; rollback evidence retained at $backup"
`;
}
async executePushBundle({ repository, profile, server, remotePath, targetSha, requestId, metadata, generated, iconReference, rollback = false }) {
const permissionReport = await this.inspectWriteAccess({
repository,
profileId: profile.id,
});
if (!permissionReport.ready) {
const error = new Error(
`Deployment stopped before upload because write access is missing for: ${permissionReport.blocking.map((item) => item.path).join(", ")}`,
);
error.code = "REMOTE_WRITE_ACCESS_REQUIRED";
error.permissionReport = permissionReport;
throw error;
}
const bundle = await this.createCommitBundle(repository, targetSha, requestId);
const remotePart = path.join(remotePath, ".forgeflow", "incoming", `${requestId}-${targetSha}.tar.part`);
try {
await this.ssh.exec(server.id, bash(`mkdir -p ${shellQuote(path.dirname(remotePart))}`), { timeout: 30_000 });
await this.ssh.uploadFile(server.id, bundle.archivePath, remotePart, { mode: 0o600 });
const script = this.pushBundleScript({ repository, profile, remotePath, targetSha, requestId, remotePart, digest: bundle.sha256, metadata, generated, iconReference, rollback });
return await this.ssh.exec(server.id, bash(script), { timeout: 30 * 60_000, maxOutput: 8 * 1024 * 1024 });
} finally {
await fs.rm(bundle.archivePath, { force: true }).catch(() => {});
}
}
async createServerGitBundle({ repository, profile, server, remotePath, targetSha, requestId }) {
const remote = this.serverGitRemote(repository, profile);
const repositoryId = crypto.createHash("sha256").update(String(repository.fullName).toLowerCase()).digest("hex").slice(0, 24);
const cache = path.join(server.basePath, ".forgeflow", "git-cache", `${repositoryId}.git`);
const remotePart = path.join(remotePath, ".forgeflow", "incoming", `${requestId}-${targetSha}.tar.part`);
const marker = "__FORGEFLOW_SERVER_ARCHIVE__";
const script = `
cache=${shellQuote(cache)}
incoming=${shellQuote(remotePart)}
remote=${shellQuote(remote)}
branch=${shellQuote(profile.branch)}
target=${shellQuote(targetSha)}
mkdir -p "$(dirname "$cache")" "$(dirname "$incoming")"
if [ ! -d "$cache" ]; then git init --bare "$cache" >/dev/null; fi
if git --git-dir="$cache" remote get-url origin >/dev/null 2>&1; then
git --git-dir="$cache" remote set-url origin "$remote"
else
git --git-dir="$cache" remote add origin "$remote"
fi
${this.serverGitEnvironment(repository, profile, server)} git --git-dir="$cache" fetch --force --prune origin "+refs/heads/$branch:refs/remotes/origin/$branch"
git --git-dir="$cache" cat-file -e "$target^{commit}"
git --git-dir="$cache" merge-base --is-ancestor "$target" "refs/remotes/origin/$branch"
archive_tmp="$incoming.$$.tmp"
git --git-dir="$cache" archive --format=tar --output="$archive_tmp" "$target"
[ -s "$archive_tmp" ] || { rm -f "$archive_tmp"; echo "Gitea produced an empty deployment archive" >&2; exit 45; }
mv "$archive_tmp" "$incoming"
digest=$(if command -v sha256sum >/dev/null 2>&1; then sha256sum "$incoming" | awk '{print $1}'; else shasum -a 256 "$incoming" | awk '{print $1}'; fi)
printf '%s\n' ${shellQuote(marker)}
printf 'digest=%s\n' "$digest"
`;
const result = await this.ssh.exec(server.id, bash(script), { timeout: 5 * 60_000, maxOutput: 512 * 1024 });
const output = String(result.stdout || "");
const markerIndex = output.lastIndexOf(marker);
const digest = markerIndex >= 0
? String(output.slice(markerIndex + marker.length).match(/(?:^|\n)digest=([0-9a-f]{64})(?:\n|$)/i)?.[1] || "").toLowerCase()
: "";
if (!digest) throw new Error("The server did not return a valid checksum for the Gitea archive.");
return { remotePart, digest };
}
async executeServerGitBundle({ repository, profile, server, remotePath, targetSha, requestId, metadata, generated, iconReference, rollback = false }) {
const permissionReport = await this.inspectWriteAccess({ repository, profileId: profile.id });
if (!permissionReport.ready) {
const error = new Error(`Deployment stopped before the Gitea fetch because write access is missing for: ${permissionReport.blocking.map((item) => item.path).join(", ")}`);
error.code = "REMOTE_WRITE_ACCESS_REQUIRED";
error.permissionReport = permissionReport;
throw error;
}
const bundle = await this.createServerGitBundle({ repository, profile, server, remotePath, targetSha, requestId });
const script = this.pushBundleScript({ repository, profile, remotePath, targetSha, requestId, remotePart: bundle.remotePart, digest: bundle.digest, metadata, generated, iconReference, rollback });
return this.ssh.exec(server.id, bash(script), { timeout: 30 * 60_000, maxOutput: 8 * 1024 * 1024 });
}
async deploy({ repository, profileId, sha }) {
const targetSha = assertFullCommitSha(sha);
const { profile, server, remotePath } = this.resolve(repository, profileId);
if (profile.deploymentMode === "server-git") {
const verification = await this.verifyServerGitProfile({ repository, profileId });
const requiredChecks = ["remote-branch", "deploy-key-scope", "server-git-access"];
const blocked = verification.checks.filter((check) => requiredChecks.includes(check.id) && check.status !== "pass");
if (blocked.length || !verification.branchSha) {
const error = new Error(`Server pull verification failed: ${blocked.map((check) => check.detail).join("; ") || "the target branch could not be proven"}`);
error.code = "SERVER_GIT_VERIFICATION_FAILED";
error.verification = verification;
throw error;
}
}
const preflight = await this.preflight({ repository, profileId, sha: targetSha });
if (!preflight.summary.ready) {
const error = new Error(`SSH deployment preflight failed: ${preflight.summary.blocking.join(", ")}`);
error.code = "SSH_DEPLOYMENT_PREFLIGHT_FAILED";
throw error;
}
const requestId = crypto.randomUUID();
const mode = ["push-bundle", "server-git", "monitor-only"].includes(profile.deploymentMode)
? profile.deploymentMode
: "push-bundle";
const operation = await this.saveOperation({
id: requestId,
type: "deployment",
action: "deploy",
provider: "ssh-unraid",
repository: repository.fullName,
environment: profile.environment,
profileId,
serverId: server.id,
remotePath,
sha: targetSha,
shortSha: targetSha.slice(0, 7),
status: "running",
logs: [
"Preflight passed.",
mode === "push-bundle"
? "Creating and uploading the exact committed local project directly to Unraid."
: mode === "server-git"
? "Fetching the exact commit from Gitea with a repository-scoped read-only deploy key."
: "This workload is monitor-only and cannot be deployed.",
`Deploying exact commit ${targetSha} in the background.`,
],
});
const generated = profile.generatedCompose ? this.generatedCompose(profile, repository) : "";
const iconReference = await this.prepareIcon(profile, repository, server);
const deploymentRepositoryUrl = mode === "server-git"
? this.serverGitRemote(repository, profile)
: repository.localStatus?.remoteUrl || repository.sshUrl || repository.cloneUrl || repository.htmlUrl || repository.fullName;
const metadata = this.metadataCompose(profile, repository, iconReference, {
sha: targetSha,
repositoryUrl: deploymentRepositoryUrl,
});
const previousState = this.store.getDeploymentState?.(profileId) || null;
void (async () => {
try {
if (mode === "monitor-only") throw new Error("This workload is monitor-only. Select Server pull or Direct copy before deploying.");
const result = mode === "server-git"
? await this.executeServerGitBundle({ repository, profile, server, remotePath, targetSha, requestId, metadata, generated, iconReference })
: await this.executePushBundle({ repository, profile, server, remotePath, targetSha, requestId, metadata, generated, iconReference });
const health = await this.checkHealth(profile.healthcheckUrl);
const finalStatus = health.healthy === false ? "failed" : "success";
const completed = await this.saveOperation({
...operation,
status: finalStatus,
previousSha: previousState?.liveSha || preflight.inspection?.head || null,
health,
logs: [
...operation.logs,
...result.stdout.trim().split("\n").filter(Boolean).slice(-80),
"Docker Compose activation and runtime verification completed.",
health.configured
? `Healthcheck ${health.healthy ? "passed" : "failed"}${health.status ? ` with HTTP ${health.status}` : ""}.`
: "No desktop healthcheck configured; running containers were verified and health remains unverified.",
],
error: health.healthy === false ? "The application healthcheck did not pass after deployment." : null,
});
await this.store.saveDeploymentState(profileId, {
liveSha: targetSha,
previousSha: previousState?.liveSha || preflight.inspection?.head || null,
healthy: health.configured ? health.healthy : null,
runtimeVerification: health.configured ? "desktop-healthcheck" : "running-unverified",
healthStatus: health.status ?? null,
healthLatencyMs: health.latencyMs ?? null,
requestId,
remotePath,
provider: "ssh-unraid",
deploymentMode: mode,
containerName: String(profile.containerName || profile.remoteFolder || repository.name),
containerRunning: true,
dockerMan: {
webUi: this.dockerManWebUi(profile),
icon: iconReference,
shell: this.dockerManShell(profile),
templateExists: profile.manageDockerMan === true || previousState?.dockerMan?.templateExists === true,
configured: Boolean(this.dockerManWebUi(profile) || iconReference || previousState?.dockerMan?.configured),
},
webUiUrl: profile.webUiUrl || (profile.hostPort ? `http://${server.host}:${profile.hostPort}/` : null),
});
void this.refreshProfileState(repository.fullName, profileId).catch(() => {});
await this.diagnostics?.info("unraid.deployment.completed", { requestId, repository: repository.fullName, serverId: server.id, remotePath, sha: targetSha, status: completed.status });
} catch (error) {
await this.saveOperation({
...operation,
status: "failed",
error: error.message,
failure: { stage: mode === "server-git" ? "Gitea server pull / Compose activation" : "Direct copy / Compose activation", message: error.message },
logs: [...operation.logs, error.message, "The live SHA was not promoted. Previous release evidence remains authoritative."],
});
await this.diagnostics?.error("unraid.deployment.failed", { requestId, repository: repository.fullName, serverId: server.id, remotePath, sha: targetSha, error });
}
})();
return operation;
}
async rollback({ repository, profileId, targetSha }) {
const target = assertFullCommitSha(targetSha);
const { profile, server, remotePath } = this.resolve(repository, profileId);
const deploymentState = this.store.getDeploymentState(profileId);
if (!deploymentState?.previousSha || deploymentState.previousSha !== target) {
const error = new Error("Rollback is allowed only to the exact previous SHA reported by ForgeFlow for this deployment profile.");
error.code = "ROLLBACK_TARGET_NOT_PREVIOUS_SHA";
throw error;
}
const rollbackMode = ["push-bundle", "server-git", "monitor-only"].includes(profile.deploymentMode)
? profile.deploymentMode
: "push-bundle";
if (rollbackMode === "push-bundle" && !repository.localPath)
throw new Error("A linked local repository is required for Direct copy rollback verification.");
const requestId = crypto.randomUUID();
const operation = await this.saveOperation({
id: requestId,
type: "deployment",
action: "rollback",
provider: "ssh-unraid",
repository: repository.fullName,
environment: profile.environment,
profileId,
serverId: server.id,
remotePath,
sha: target,
shortSha: target.slice(0, 7),
status: "running",
logs: [`Rolling back to exact commit ${target}.`],
});
const generated = profile.generatedCompose ? this.generatedCompose(profile, repository) : "";
const iconReference = await this.prepareIcon(profile, repository, server);
const rollbackRepositoryUrl = rollbackMode === "server-git"
? this.serverGitRemote(repository, profile)
: repository.localStatus?.remoteUrl || repository.sshUrl || repository.cloneUrl || repository.htmlUrl || repository.fullName;
const metadata = this.metadataCompose(profile, repository, iconReference, {
sha: target,
repositoryUrl: rollbackRepositoryUrl,
});
try {
const mode = rollbackMode;
if (mode === "monitor-only") throw new Error("This workload is monitor-only. Select Server pull or Direct copy before rolling back.");
const result = mode === "server-git"
? await this.executeServerGitBundle({ repository, profile, server, remotePath, targetSha: target, requestId, metadata, generated, iconReference, rollback: true })
: await this.executePushBundle({ repository, profile, server, remotePath, targetSha: target, requestId, metadata, generated, iconReference, rollback: true });
const health = await this.checkHealth(profile.healthcheckUrl);
const finalStatus = health.healthy === false ? "failed" : "rolled-back";
const completed = await this.saveOperation({
...operation,
status: finalStatus,
previousSha: deploymentState.liveSha || null,
health,
error: health.healthy === false ? "The application healthcheck did not pass after rollback." : null,
logs: [
...operation.logs,
...result.stdout.trim().split("\n").filter(Boolean).slice(-80),
"Rollback activation completed.",
health.configured ? `Healthcheck ${health.healthy ? "passed" : "failed"}.` : "Runtime is running; no desktop healthcheck was configured.",
],
});
await this.store.saveDeploymentState(profileId, {
liveSha: target,
previousSha: deploymentState.liveSha || null,
healthy: health.configured ? health.healthy : null,
runtimeVerification: health.configured ? "desktop-healthcheck" : "running-unverified",
healthStatus: health.status ?? null,
healthLatencyMs: health.latencyMs ?? null,
requestId,
remotePath,
provider: "ssh-unraid",
containerRunning: true,
});
if (health.healthy === false) {
const error = new Error("Rollback completed, but the configured healthcheck failed.");
error.code = "ROLLBACK_HEALTHCHECK_FAILED";
error.operationId = completed.id;
throw error;
}
return completed;
} catch (error) {
if (error.code !== "ROLLBACK_HEALTHCHECK_FAILED") {
await this.saveOperation({ ...operation, status: "failed", error: error.message, logs: [...operation.logs, error.message] });
}
throw error;
}
}
}
return UnraidDeploymentMethods.prototype;
}
module.exports = { createUnraidDeploymentMethods };
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"use strict";
function createUnraidInventoryMethods({
shellQuote, path, parseWorkloadInventory, buildWorkloadInventory, classifyInventory,
inventoryRemoteIdentity, deriveDetectedProfile, crypto, matchInventoryContainer,
safeRemoteFolder, bash,
}) {
class UnraidInventoryMethods {
inventoryScript(server) {
const configuredRoots = [...new Set([server.basePath, ...(server.scanRoots || [])])].map((root) => ` add_scan_root ${shellQuote(root)}`).join("\n");
const configuredExcludes = (server.scanExcludes || []).map((name) => ` -o -name ${shellQuote(name)}`).join("");
return `
base=${shellQuote(server.basePath)}
platform=$(uname -srm 2>/dev/null || true)
docker_ok=false; compose_ok=false; compose_v2=false; git_ok=false; tar_ok=false; checksum_ok=false; base_writable=false; compose_version=''
command -v docker >/dev/null 2>&1 && docker_ok=true
if [ "$docker_ok" = true ]; then
if docker compose version >/dev/null 2>&1; then compose_ok=true; compose_v2=true; compose_version=$(docker compose version 2>/dev/null | head -n1); elif command -v docker-compose >/dev/null 2>&1; then compose_ok=true; compose_version=$(docker-compose version 2>/dev/null | head -n1); fi
fi
command -v git >/dev/null 2>&1 && git_ok=true
command -v tar >/dev/null 2>&1 && tar_ok=true
(command -v sha256sum >/dev/null 2>&1 || command -v shasum >/dev/null 2>&1) && checksum_ok=true
if [ -d "$base" ]; then [ -w "$base" ] && base_writable=true; else parent=$(dirname "$base"); [ -d "$parent" ] && [ -w "$parent" ] && base_writable=true; fi
printf '__FORGEFLOW_INVENTORY__\\n'
printf 'H\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\n' "$docker_ok" "$compose_ok" "$git_ok" "$tar_ok" "$checksum_ok" "$base_writable" "$(printf '%s' "$compose_version" | base64 | tr -d '\\r\\n')" "$(printf '%s' "$platform" | base64 | tr -d '\\r\\n')"
ids=''
if [ "$docker_ok" != true ]; then
printf 'W\\t%s\\n' "$(printf '%s' 'Docker is not installed or not in PATH. Compose files and DockerMan templates will still be scanned.' | base64 | tr -d '\\r\\n')"
else
if ! ids=$(docker ps -aq --no-trunc 2>&1); then
printf 'W\\t%s\\n' "$(printf '%s' "Docker inventory failed: $ids. Compose files and DockerMan templates will still be scanned." | head -c 2000 | base64 | tr -d '\\r\\n')"
ids=''
fi
fi
if [ -n "$ids" ]; then
disappeared=0
mapfile -t container_ids <<< "$ids"
# Docker accepts multiple IDs and returns one JSON array. This avoids one
# daemon round-trip per container on larger Unraid installations.
if inspect=$(docker inspect "\${container_ids[@]}" 2>/dev/null); then
printf 'C\\t%s\\n' "$(printf '%s' "$inspect" | base64 | tr -d '\\r\\n')"
else
# A container can disappear between docker ps and inspect. Fall back to
# individual reads so the remaining inventory stays complete.
for container_id in "\${container_ids[@]}"; do
[ -n "$container_id" ] || continue
if inspect=$(docker inspect "$container_id" 2>/dev/null); then
printf 'C\\t%s\\n' "$(printf '%s' "$inspect" | base64 | tr -d '\\r\\n')"
else
disappeared=$((disappeared + 1))
fi
done
fi
if [ "$disappeared" -gt 0 ]; then
printf 'W\\t%s\\n' "$(printf '%s' "$disappeared stale container reference(s) disappeared during inventory; current containers were still processed." | base64 | tr -d '\\r\\n')"
fi
fi
templates_dir=/boot/config/plugins/dockerMan/templates-user
if [ -d "$templates_dir" ]; then
find "$templates_dir" -maxdepth 1 -type f -name '*.xml' -print0 2>/dev/null | while IFS= read -r -d '' template; do
read_tag() { sed -n "s#.*<$1>\\(.*\\)</$1>.*#\\1#p" "$template" | head -n1; }
name=$(read_tag Name)
[ -n "$name" ] || continue
printf 'D\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\n' \\
"$(printf '%s' "$name" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$template" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$(read_tag WebUI)" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$(read_tag Icon)" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$(read_tag Shell)" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$(read_tag Repository)" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$(read_tag Network)" | base64 | tr -d '\\r\\n')"
done
fi
if [ "$compose_ok" = true ]; then
compose_projects=$(docker compose ls --all --format json 2>/dev/null || docker-compose ls --all --format json 2>/dev/null || true)
if [ -n "$compose_projects" ]; then
printf 'P\\t%s\\n' "$(printf '%s' "$compose_projects" | base64 | tr -d '\\r\\n')"
fi
fi
scan_roots=()
add_scan_root() {
candidate=$1
[ -d "$candidate" ] || return 0
for existing in "\${scan_roots[@]}"; do [ "$existing" = "$candidate" ] && return 0; done
scan_roots+=("$candidate")
}
${configuredRoots}
for root in "\${scan_roots[@]}"; do
scan_error=$(mktemp)
while IFS= read -r -d '' primary; do
dir=$(dirname "$primary")
filename=$(basename "$primary")
case "$filename" in
compose.override.yml|compose.override.yaml|docker-compose.override.yml|docker-compose.override.yaml) continue ;;
compose.yml) ;;
compose.yaml) [ -f "$dir/compose.yml" ] && continue ;;
docker-compose.yml) { [ -f "$dir/compose.yml" ] || [ -f "$dir/compose.yaml" ]; } && continue ;;
docker-compose.yaml) { [ -f "$dir/compose.yml" ] || [ -f "$dir/compose.yaml" ] || [ -f "$dir/docker-compose.yml" ]; } && continue ;;
*) { [ -f "$dir/compose.yml" ] || [ -f "$dir/compose.yaml" ] || [ -f "$dir/docker-compose.yml" ] || [ -f "$dir/docker-compose.yaml" ]; } && continue ;;
esac
(
set -- -f "$primary"
files_text=$primary
has_override=false
for extra in "$dir/compose.override.yml" "$dir/compose.override.yaml" "$dir/docker-compose.override.yml" "$dir/docker-compose.override.yaml"; do
[ -f "$extra" ] || continue
has_override=true
set -- "$@" -f "$extra"
files_text="$files_text
$extra"
done
project_name=$(sed -n 's/^name:[[:space:]]*//p' "$primary" 2>/dev/null | head -n1 | cut -d'#' -f1 | tr -d '"' | tr -d "'" | xargs 2>/dev/null || true)
[ -n "$project_name" ] || project_name=$(basename "$dir")
valid=false; services=''; compose_error=''
images=$(awk '
/^[[:space:]]*services:[[:space:]]*($|#)/ { in_services=1; next }
in_services && /^[^[:space:]]/ { exit }
in_services && /^[[:space:]]+image:[[:space:]]*/ {
line=$0; sub(/^[[:space:]]*image:[[:space:]]*/, "", line); sub(/[[:space:]]+#.*/, "", line); gsub(/"/, "", line); print line
}
' "$primary" 2>/dev/null || true)
if [ "$compose_ok" != true ]; then
compose_error='Docker Compose is unavailable; file metadata was still detected.'
elif [ "$compose_v2" = true ]; then
if services=$(cd "$dir" && docker compose "$@" config --services 2>&1); then
valid=true
if [ "$has_override" = true ] || [ -z "$images" ] || printf '%s' "$images" | grep -q '\$'; then images=$(cd "$dir" && docker compose "$@" config --images 2>/dev/null || true); fi
else compose_error=$services; services=''; fi
else
if services=$(cd "$dir" && docker-compose "$@" config --services 2>&1); then
valid=true
if [ "$has_override" = true ] || [ -z "$images" ] || printf '%s' "$images" | grep -q '\$'; then images=$(cd "$dir" && docker-compose "$@" config --images 2>/dev/null || true); fi
else compose_error=$services; services=''; fi
fi
if [ -z "$services" ]; then
services=$(awk '
/^[[:space:]]*services:[[:space:]]*($|#)/ { in_services=1; next }
in_services && /^[^[:space:]]/ { exit }
in_services && /^ [A-Za-z0-9._-]+:[[:space:]]*($|#)/ {
line=$0; sub(/^[[:space:]]*/, "", line); sub(/:.*/, "", line); print line
}
' "$primary" 2>/dev/null || true)
fi
printf 'Y\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\t%s\\n' \\
"$(printf '%s' "$dir" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$files_text" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$project_name" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$services" | base64 | tr -d '\\r\\n')" \\
"$(printf '%s' "$images" | base64 | tr -d '\\r\\n')" \\
"$valid" \\
"$(printf '%s' "$compose_error" | head -c 2000 | base64 | tr -d '\\r\\n')"
)
done < <(find "$root" -mindepth 2 -maxdepth 4 \\( -type d \\( -name .git -o -name node_modules -o -name .forgeflow -o -name releases -o -name backups -o -name staging -o -name incoming -o -name '_audit_quarantine' -o -name 'devrunbook-validation' -o -name 'source-pre-*' -o -name cache -o -name caches -o -name logs -o -name database -o -name databases${configuredExcludes} \\) -prune \\) -o \\( -type f \\( -name '*compose*.yml' -o -name '*compose*.yaml' -o -name 'stack.yml' -o -name 'stack.yaml' \\) -print0 \\) 2>"$scan_error" || true)
if [ -s "$scan_error" ]; then
scan_message=$(printf 'Inventory scan partially failed for %s: %s' "$root" "$(head -n 1 "$scan_error")")
printf 'W\\t%s\\n' "$(printf '%s' "$scan_message" | base64 | tr -d '\\r\\n')"
fi
rm -f "$scan_error"
done
`;
}
allSshProfiles() {
const result = [];
for (const [repositoryFullName, profiles] of Object.entries(this.store.data?.deploymentProfiles || {})) {
for (const profile of profiles || []) {
if (profile?.provider === "ssh-unraid") result.push({ ...profile, _repositoryFullName: repositoryFullName });
}
}
return result;
}
relativeComposeFiles(workload) {
const workingDir = String(workload.compose?.workingDir || "").replace(/\/+$/, "");
const files = (workload.compose?.configFiles || []).map((file) => {
const value = String(file || "").trim();
if (workingDir && value.startsWith(`${workingDir}/`)) return value.slice(workingDir.length + 1);
return value.startsWith("/") ? path.basename(value) : value;
}).filter(Boolean);
return [...new Set(files.length ? files : ["docker-compose.yml"])];
}
profileFromWorkload(repository, server, workload, { linkSource = "manual", deploymentMode = "server-git", remoteFolder = "" } = {}) {
const effectiveDeploymentMode = ["push-bundle", "server-git", "monitor-only"].includes(deploymentMode)
? deploymentMode
: "server-git";
const selectedFolder = safeRemoteFolder(remoteFolder || workload.remoteFolderCandidate || repository.name);
const composeFiles = this.relativeComposeFiles(workload);
const services = [...new Set((workload.compose?.services || [])
.map((service) => String(service || "").trim().toLowerCase().replace(/[^a-z0-9._-]/g, "-"))
.filter(Boolean))];
const primary = workload.containers.find((container) => container.running) || workload.containers[0] || {};
const primaryPort = (primary.ports || []).find((item) => item.hostPort) || primary.ports?.[0] || {};
const remotePath = path.join(server.basePath, selectedFolder);
const preservePaths = new Set([".env", "appdata", "data", "logs", "config", "compose.override.yml"]);
for (const container of workload.containers || []) {
for (const mount of container.mounts || []) {
const source = String(mount.source || "");
if (!source.startsWith(`${remotePath}/`)) continue;
const relative = source.slice(remotePath.length + 1).split("/")[0];
if (relative) preservePaths.add(relative);
}
}
const idPrefix = String(linkSource).startsWith("automatic") ? "auto" : "link";
const profileId = `${idPrefix}-${crypto.createHash("sha256").update(`${server.id}:${repository.fullName}:${workload.workloadId}`).digest("hex").slice(0, 20)}`;
return {
id: profileId,
name: `${server.name} · ${workload.displayName}`,
environment: "production",
provider: "ssh-unraid",
branch: workload.metadata?.branch || repository.defaultBranch || "main",
serverId: server.id,
remoteFolder: selectedFolder,
deploymentMode: effectiveDeploymentMode,
composeFile: composeFiles[0],
composeFiles,
composeProject: workload.compose?.project || "",
composeWorkingDir: workload.compose?.workingDir || "",
composeService: services[0] || String(primary.service || selectedFolder.split("/").pop()).toLowerCase().replace(/[^a-z0-9._-]/g, "-") || "app",
composeServices: services.length ? services : [String(primary.service || selectedFolder.split("/").pop()).toLowerCase().replace(/[^a-z0-9._-]/g, "-") || "app"],
containerName: primary.name || selectedFolder.split("/").pop(),
cloneUrl: workload.metadata?.sourceRepository || repository.sshUrl || repository.cloneUrl || "",
alignRemote: false,
hostPort: primaryPort.hostPort || null,
containerPort: primaryPort.containerPort || null,
webUiUrl: workload.metadata?.webUiUrl || workload.dockerMan?.webUiUrl || "",
iconMode: "none",
iconUrl: "",
iconFilePath: "",
serverIconReference: workload.metadata?.iconUrl || workload.dockerMan?.iconUrl || "",
dockerShell: ["/bin/bash", "/bin/sh"].includes(workload.metadata?.shell) ? workload.metadata.shell : "/bin/sh",
preservePaths: [...preservePaths],
generatedCompose: false,
adoptedFromServer: true,
serverSourceOfTruth: true,
manageDockerMan: false,
forceRecreate: false,
removeOrphans: false,
workloadIdentity: {
workloadId: workload.workloadId,
selector: workload.selector,
linkSource,
linkedAt: new Date().toISOString(),
},
detectedAt: new Date().toISOString(),
detectedMetadata: {
source: `${linkSource}-server-inventory`,
kind: workload.kind,
composeProject: workload.compose?.project || "",
composeFiles,
services,
image: primary.image || "",
dockerManTemplatePath: workload.dockerMan?.templatePath || "",
},
confirmationRequired: !String(linkSource).startsWith("automatic"),
};
}
refreshedProfileFromWorkload(repository, server, workload, existingProfile) {
const configuredRoot = path.join(server.basePath, existingProfile.remoteFolder || "").replace(/\/+$/, "");
const composeWorkingDir = String(workload.compose?.workingDir || "").replace(/\/+$/, "");
const configuredRootOwnsCompose = Boolean(
configuredRoot
&& composeWorkingDir
&& (composeWorkingDir === configuredRoot || composeWorkingDir.startsWith(`${configuredRoot}/`)),
);
const detected = this.profileFromWorkload(repository, server, workload, {
linkSource: existingProfile.workloadIdentity?.linkSource || "automatic-compose",
deploymentMode: ["push-bundle", "server-git", "monitor-only"].includes(existingProfile.deploymentMode)
? existingProfile.deploymentMode
: "push-bundle",
remoteFolder: configuredRootOwnsCompose
? existingProfile.remoteFolder
: workload.remoteFolderCandidate || existingProfile.remoteFolder,
});
const repositoryRelativeComposeFiles = configuredRootOwnsCompose
? [...new Set((workload.compose?.configFiles || []).map((file) => {
const value = String(file || "").trim().replace(/\\/g, "/");
if (value.startsWith(`${configuredRoot}/`)) return value.slice(configuredRoot.length + 1);
return value.startsWith("/") ? "" : value;
}).filter(Boolean))]
: [];
const composeFiles = repositoryRelativeComposeFiles.length
? repositoryRelativeComposeFiles
: detected.composeFiles;
return {
...existingProfile,
deploymentMode: detected.deploymentMode,
remoteFolder: detected.remoteFolder,
composeFile: composeFiles[0],
composeFiles,
composeProject: detected.composeProject,
composeWorkingDir: detected.composeWorkingDir,
composeService: detected.composeService,
composeServices: detected.composeServices,
containerName: detected.containerName || existingProfile.containerName,
hostPort: detected.hostPort || existingProfile.hostPort || null,
containerPort: detected.containerPort || existingProfile.containerPort || null,
webUiUrl: detected.webUiUrl || existingProfile.webUiUrl || "",
serverIconReference: detected.serverIconReference || existingProfile.serverIconReference || "",
dockerShell: detected.dockerShell || existingProfile.dockerShell || "/bin/sh",
preservePaths: [...new Set([...(existingProfile.preservePaths || []), ...(detected.preservePaths || [])])],
generatedCompose: false,
adoptedFromServer: true,
serverSourceOfTruth: true,
manageDockerMan: false,
forceRecreate: false,
removeOrphans: false,
workloadIdentity: detected.workloadIdentity,
detectedAt: detected.detectedAt,
detectedMetadata: detected.detectedMetadata,
};
}
async saveWorkloadState(profile, workload, server, { expectedGiteaSha = null, health = null } = {}) {
const candidateSha = String(workload.metadata?.liveRevision || "");
const previousState = this.store.getDeploymentState?.(profile.id) || {};
const observedLiveSha = /^[0-9a-f]{40,64}$/i.test(candidateSha) ? candidateSha.toLowerCase() : null;
const liveSha = observedLiveSha || previousState.liveSha || null;
const profileRemote = inventoryRemoteIdentity(profile.cloneUrl);
const workloadRemote = inventoryRemoteIdentity(workload.metadata?.sourceRepository);
const repositoryMatches = Boolean(observedLiveSha && profileRemote && workloadRemote && profileRemote === workloadRemote);
const verifiedGiteaSha = /^[0-9a-f]{40}$/i.test(String(expectedGiteaSha || ""))
? String(expectedGiteaSha).toLowerCase()
: null;
const matchesGitea = Boolean(repositoryMatches && verifiedGiteaSha && observedLiveSha === verifiedGiteaSha);
const primary = workload.containers.find((container) => container.running) || workload.containers[0] || {};
const dockerHealthy = workload.runtime.health === "healthy" ? true : workload.runtime.health === "unhealthy" ? false : null;
const effectiveHealthy = workload.runtime.running === false
? false
: health?.configured ? health.healthy : dockerHealthy;
return this.store.saveDeploymentState(profile.id, {
liveSha,
healthy: effectiveHealthy,
healthStatus: health?.status ?? null,
healthLatencyMs: health?.latencyMs ?? null,
runtimeVerification: workload.runtime.running === false ? "stopped" : health?.configured ? "desktop-healthcheck" : workload.runtime.health === "unverified" ? "running-unverified" : workload.runtime.health,
containerRunning: workload.runtime.running,
dockerHealth: primary.health || null,
containerName: primary.name || profile.containerName,
remotePath: path.join(server.basePath, profile.remoteFolder),
provider: "ssh-unraid",
workloadId: workload.workloadId,
composeProject: workload.compose?.project || null,
observedAt: workload.observedAt,
evidence: liveSha ? "container-provenance-label" : "runtime-only",
giteaSha: verifiedGiteaSha,
matchesGitea,
previousSha: previousState.previousSha || null,
});
}
async collectServerInventory(serverId, repositories) {
const server = this.store.getServer(serverId);
if (!server) throw new Error("The deployment server no longer exists.");
const result = await this.ssh.exec(server.id, bash(this.inventoryScript(server)), {
timeout: 180_000,
maxOutput: 64 * 1024 * 1024,
});
const inventory = parseWorkloadInventory(result.stdout);
const profiles = this.allSshProfiles();
const detectedWorkloads = buildWorkloadInventory({
inventory,
server,
repositories,
profiles,
});
const detectedIds = new Set(detectedWorkloads.map((item) => item.workloadId));
const staleLinks = profiles.filter((profile) => profile.serverId === serverId && profile.workloadIdentity?.workloadId && !detectedIds.has(profile.workloadIdentity.workloadId)).map((profile) => ({
workloadId: profile.workloadIdentity.workloadId,
serverId,
displayName: profile.name || profile.remoteFolder || profile._repositoryFullName,
status: "stale",
link: { profileId: profile.id, repositoryFullName: profile._repositoryFullName },
compose: { project: profile.composeProject || "", workingDir: profile.composeWorkingDir || path.join(server.basePath, profile.remoteFolder || ""), configFiles: profile.composeFiles || [profile.composeFile].filter(Boolean), services: profile.composeServices || [profile.composeService].filter(Boolean) },
containers: [],
runtime: { running: false, health: "missing" },
metadata: { sourceRepository: profile.cloneUrl || "", liveRevision: "", branch: profile.branch || "", staleLink: true },
candidates: [{ repositoryFullName: profile._repositoryFullName, repositoryName: profile._repositoryFullName.split("/").pop(), score: 100, exact: true, reasons: ["persisted deployment profile"] }],
remoteFolderCandidate: profile.remoteFolder || "",
observedAt: new Date().toISOString(),
}));
const workloads = classifyInventory([...detectedWorkloads, ...staleLinks], profiles, this.store.getInventoryReviewDecisions?.(serverId) || []);
return { server, inventory, workloads };
}
inventoryResponse(server, inventory, workloads, changes = {}) {
const summary = {
serverId: server.id,
serverName: server.name,
detected: workloads.length,
adopted: Number(changes.adopted || 0),
refreshed: Number(changes.refreshed || 0),
retired: Number(changes.retired || 0),
staleProfiles: Array.isArray(changes.staleProfiles) ? changes.staleProfiles : [],
verified: workloads.filter((item) => item.runtime.health === "healthy" && item.link).length,
linked: workloads.filter((item) => item.status === "linked").length,
unmatched: workloads.filter((item) => !item.link).length,
needsReview: workloads.filter((item) => {
if (item.reviewDecision) return false;
const type = item.classification?.type;
if (type === "duplicate") return item.runtime?.running === true;
if (type === "stale-link") return true;
if (["system-container", "external-container", "temporary-runtime", "backup", "release-folder", "historical-compose", "manually-excluded"].includes(type)) return false;
return item.runtime?.running && ["suggested", "ambiguous", "unmatched"].includes(item.status);
}).length,
duplicates: workloads.filter((item) => item.classification?.type === "duplicate").length,
excluded: workloads.filter((item) => ["system-container", "external-container", "temporary-runtime", "backup", "release-folder", "historical-compose", "manually-excluded"].includes(item.classification?.type)).length,
running: workloads.filter((item) => item.runtime.running).length,
stopped: workloads.filter((item) => !item.runtime.running).length,
};
return {
...summary,
server: { id: server.id, name: server.name, host: server.host, basePath: server.basePath },
capabilities: inventory.capabilities,
warnings: inventory.warnings,
workloads,
observedAt: new Date().toISOString(),
};
}
async scanServerInventory(serverId, repositories, { autoLink = false } = {}) {
const started = Date.now();
const { server, inventory, workloads } = await this.collectServerInventory(serverId, repositories);
let adopted = 0;
const adoptedLinks = [];
if (autoLink) {
const plan = this.reconciliationPlan(server, workloads, repositories, { autoLink: true });
if (plan.additions.length) await this.store.createRecoverySnapshot?.(`automatic-server-links-${serverId}`);
const linkedRepositories = new Set(workloads
.filter((workload) => workload.link?.repositoryFullName)
.map((workload) => String(workload.link.repositoryFullName).toLowerCase()));
for (const addition of plan.additions) {
const workload = workloads.find((item) => item.workloadId === addition.workloadId);
const repository = (repositories || []).find((item) => String(item.fullName).toLowerCase() === String(addition.repositoryFullName).toLowerCase());
const key = String(repository?.fullName || "").toLowerCase();
if (!workload || !repository || linkedRepositories.has(key)) continue;
const linkSource = addition.evidence === "exact-provenance" ? "automatic" : "automatic-runtime-identity";
const profile = this.profileFromWorkload(repository, server, workload, { linkSource, deploymentMode: "server-git" });
const saved = await this.store.saveDeploymentProfile(repository.fullName, profile);
await this.saveWorkloadState(saved, workload, server);
workload.status = "linked";
workload.link = { status: "linked", profileId: saved.id, repositoryFullName: repository.fullName, source: linkSource };
linkedRepositories.add(key);
adopted += 1;
adoptedLinks.push({ repositoryFullName: repository.fullName, profileId: saved.id, workloadId: workload.workloadId });
}
}
const response = this.inventoryResponse(server, inventory, workloads, { adopted });
await this.diagnostics?.info("unraid.workloads.scanned", {
serverId,
detected: response.detected,
linked: response.linked,
needsReview: response.needsReview,
adopted,
adoptedLinks,
readOnly: !autoLink,
durationMs: Date.now() - started,
});
return response;
}
reconciliationPlan(server, workloads, repositories, { autoLink = true } = {}) {
const profiles = this.allSshProfiles().filter((profile) => profile.serverId === server.id);
const activeWorkloadIds = new Set(workloads.filter((item) => item.classification?.type !== "stale-link").map((item) => item.workloadId));
const linkedRepositories = new Set(workloads.filter((item) => item.link?.repositoryFullName).map((item) => String(item.link.repositoryFullName).toLowerCase()));
const additions = [];
const updates = [];
const conflicts = [];
for (const workload of workloads) {
if (["duplicate", "backup", "release-folder", "historical-compose", "system-container", "external-container", "temporary-runtime", "manually-excluded", "stale-link"].includes(workload.classification?.type)) {
if (!workload.reviewDecision && (["historical-compose", "stale-link"].includes(workload.classification?.type) || (workload.classification?.type === "duplicate" && workload.runtime?.running))) conflicts.push({ workloadId: workload.workloadId, displayName: workload.displayName, status: workload.classification.type, reason: workload.classification.reason, candidates: (workload.candidates || []).slice(0, 5).map((item) => ({ repositoryFullName: item.repositoryFullName, score: item.score, exact: item.exact === true })) });
continue;
}
if (workload.link?.profileId && workload.link?.repositoryFullName) {
updates.push({
workloadId: workload.workloadId,
profileId: workload.link.profileId,
repositoryFullName: workload.link.repositoryFullName,
impact: "Refresh detected Compose identity and observed deployment state",
});
continue;
}
const candidate = workload.candidates?.[0];
const unique = workload.candidates?.length === 1;
const exact = unique && (candidate?.exact === true || (candidate?.identityExact === true && candidate.score >= 70));
if (autoLink && exact && workload.runtime?.running && !linkedRepositories.has(String(candidate.repositoryFullName).toLowerCase())) {
additions.push({
workloadId: workload.workloadId,
repositoryFullName: candidate.repositoryFullName,
evidence: candidate.exact ? "exact-provenance" : "exact-runtime-identity",
impact: "Create a server-pull deployment profile; no container changes",
});
linkedRepositories.add(String(candidate.repositoryFullName).toLowerCase());
} else if (["suggested", "ambiguous"].includes(workload.status) || (workload.runtime?.running && workload.candidates?.length)) {
conflicts.push({
workloadId: workload.workloadId,
displayName: workload.displayName,
status: workload.status,
candidates: (workload.candidates || []).slice(0, 5).map((item) => ({ repositoryFullName: item.repositoryFullName, score: item.score, exact: item.exact === true })),
});
}
}
const stale = profiles.filter((profile) =>
String(profile.workloadIdentity?.linkSource || "").startsWith("automatic")
&& profile.workloadIdentity?.workloadId
&& !activeWorkloadIds.has(profile.workloadIdentity.workloadId),
).map((profile) => ({
profileId: profile.id,
repositoryFullName: profile._repositoryFullName,
reason: "workload-missing",
impact: "Review only; ForgeFlow will not remove this profile automatically",
}));
const payload = { serverId: server.id, additions, updates, stale, conflicts };
return {
id: crypto.createHash("sha256").update(JSON.stringify(payload)).digest("hex"),
createdAt: new Date().toISOString(),
...payload,
summary: { additions: additions.length, updates: updates.length, stale: stale.length, conflicts: conflicts.length },
};
}
async planServerInventoryReconciliation(serverId, repositories, options = {}) {
const { server, inventory, workloads } = await this.collectServerInventory(serverId, repositories);
const plan = this.reconciliationPlan(server, workloads, repositories, options);
return { inventory: this.inventoryResponse(server, inventory, workloads), plan };
}
async reconcileServerInventory(serverId, repositories, { autoLink = true, expectedPlanId = "" } = {}) {
const { server, inventory, workloads } = await this.collectServerInventory(serverId, repositories);
const plan = this.reconciliationPlan(server, workloads, repositories, { autoLink });
if (!expectedPlanId || expectedPlanId !== plan.id) {
const error = new Error(expectedPlanId ? "The server inventory changed after the reconciliation preview. Review a fresh plan before applying it." : "Apply reconciliation only with an explicitly reviewed plan ID.");
error.code = expectedPlanId ? "RECONCILIATION_PLAN_STALE" : "RECONCILIATION_PLAN_REQUIRED";
error.plan = plan;
throw error;
}
const recoverySnapshot = await this.store.createRecoverySnapshot?.(`server-reconciliation-${serverId}`) || null;
let adopted = 0;
let refreshed = 0;
let retired = 0;
let staleProfiles = [];
const inventoryStable = (inventory.warnings || []).every((warning) => /stale container reference\(s\) disappeared during inventory/i.test(warning));
if (inventoryStable && workloads.length) {
const activeWorkloadIds = new Set(workloads.filter((item) => item.classification?.type !== "stale-link").map((item) => item.workloadId));
const staleAutomaticProfiles = this.allSshProfiles().filter((profile) =>
profile.serverId === serverId
&& String(profile.workloadIdentity?.linkSource || "").startsWith("automatic")
&& profile.workloadIdentity?.workloadId
&& !activeWorkloadIds.has(profile.workloadIdentity.workloadId),
);
const runningRepositoryLinks = new Set(workloads
.filter((workload) => workload.runtime?.running && workload.link?.repositoryFullName)
.map((workload) => String(workload.link.repositoryFullName).toLowerCase()));
const runningProfileIds = new Set(workloads
.filter((workload) => workload.runtime?.running && workload.link?.profileId)
.map((workload) => workload.link.profileId));
const shadowedAutomaticProfiles = workloads
.filter((workload) => !workload.runtime?.running && workload.shadowedLink?.profileId && !runningProfileIds.has(workload.shadowedLink.profileId) && runningRepositoryLinks.has(String(workload.shadowedLink.repositoryFullName).toLowerCase()))
.map((workload) => this.allSshProfiles().find((profile) => profile.id === workload.shadowedLink.profileId && String(profile._repositoryFullName).toLowerCase() === String(workload.shadowedLink.repositoryFullName).toLowerCase()))
.filter((profile) => profile && String(profile.workloadIdentity?.linkSource || "").startsWith("automatic"));
staleProfiles = [...new Map([...staleAutomaticProfiles, ...shadowedAutomaticProfiles].map((profile) => [profile.id, {
profileId: profile.id,
repositoryFullName: profile._repositoryFullName,
reason: staleAutomaticProfiles.includes(profile) ? "workload-missing" : "shadowed-by-running-workload",
}])).values()];
}
for (const workload of workloads) {
if (workload.status !== "linked" || !workload.link?.profileId || !workload.link?.repositoryFullName) continue;
const repository = (repositories || []).find((item) => String(item.fullName).toLowerCase() === String(workload.link.repositoryFullName).toLowerCase());
const existingProfile = this.store.getDeploymentProfile?.(workload.link.repositoryFullName, workload.link.profileId)
|| this.allSshProfiles().find((item) => item.id === workload.link.profileId && item._repositoryFullName === workload.link.repositoryFullName);
if (!repository || !existingProfile) continue;
const updated = this.refreshedProfileFromWorkload(repository, server, workload, existingProfile);
const saved = await this.store.saveDeploymentProfile(repository.fullName, updated);
await this.saveWorkloadState(saved, workload, server);
refreshed += 1;
}
if (autoLink) {
const alreadyLinkedRepositories = new Set(workloads
.filter((item) => item.runtime?.running && item.link?.repositoryFullName)
.map((item) => String(item.link.repositoryFullName).toLowerCase()));
for (const workload of workloads) {
if (workload.status === "linked") continue;
if (["duplicate", "backup", "release-folder", "historical-compose", "system-container", "external-container", "temporary-runtime", "manually-excluded"].includes(workload.classification?.type)) continue;
const candidate = workload.candidates[0];
const uniqueCandidate = workload.candidates.length === 1;
if (candidate && alreadyLinkedRepositories.has(String(candidate.repositoryFullName).toLowerCase())) continue;
const exactMatch = uniqueCandidate && candidate?.exact === true;
const exactRuntimeIdentity = uniqueCandidate
&& candidate?.identityExact === true
&& candidate.score >= 70
&& workload.runtime?.running === true
&& Boolean(workload.remoteFolderCandidate)
&& !alreadyLinkedRepositories.has(String(candidate.repositoryFullName).toLowerCase());
if (!exactMatch && !exactRuntimeIdentity) continue;
const repository = (repositories || []).find((item) => String(item.fullName).toLowerCase() === String(candidate.repositoryFullName).toLowerCase());
if (!repository) continue;
const linkSource = exactMatch ? "automatic" : "automatic-runtime-identity";
const profile = this.profileFromWorkload(repository, server, workload, { linkSource, deploymentMode: "server-git" });
const saved = await this.store.saveDeploymentProfile(repository.fullName, profile);
await this.saveWorkloadState(saved, workload, server);
workload.status = "linked";
workload.link = { status: "linked", profileId: saved.id, repositoryFullName: repository.fullName, source: linkSource };
alreadyLinkedRepositories.add(String(repository.fullName).toLowerCase());
adopted += 1;
}
}
for (const stale of staleProfiles) {
await this.store.deleteDeploymentProfile(stale.repositoryFullName, stale.profileId);
retired += 1;
}
const response = this.inventoryResponse(server, inventory, workloads, { adopted, refreshed, retired, staleProfiles });
response.recoverySnapshot = recoverySnapshot;
await this.diagnostics?.info("unraid.workloads.reconciled", {
serverId,
detected: response.detected,
adopted,
refreshed,
retired,
});
return response;
}
async discoverServerWorkloads(serverId, repositories) {
const started = Date.now();
const inventory = await this.scanServerInventory(serverId, repositories, { autoLink: true });
const server = this.store.getServer(serverId);
const queue = inventory.workloads.filter((workload) => workload.link?.profileId && workload.link?.repositoryFullName);
const refreshedProfileIds = [];
let giteaUnavailable = false;
let giteaFailureReported = false;
const workers = Array.from({ length: Math.min(5, queue.length) }, async () => {
while (queue.length) {
const workload = queue.shift();
const repository = repositories.find((item) => String(item.fullName).toLowerCase() === String(workload.link.repositoryFullName).toLowerCase());
const profile = this.store.getDeploymentProfile?.(workload.link.repositoryFullName, workload.link.profileId)
|| this.store.getDeploymentProfiles?.(workload.link.repositoryFullName)?.find((item) => item.id === workload.link.profileId)
|| this.allSshProfiles().find((item) => item.id === workload.link.profileId);
if (!repository || !profile) continue;
let expectedGiteaSha = null;
const status = repository.localStatus;
if (status?.head && status.branch?.head === profile.branch && status.branch?.upstream && status.branch.ahead === 0 && status.branch.behind === 0) {
expectedGiteaSha = status.head;
} else if (!giteaUnavailable) {
try {
const [owner, repo] = String(repository.fullName).split("/");
const branch = await this.gitea.getBranch(owner, repo, profile.branch);
expectedGiteaSha = branch?.commit?.id || branch?.commit?.sha || null;
} catch (error) {
if (!error?.status || Number(error.status) >= 500) {
giteaUnavailable = true;
if (!giteaFailureReported) {
giteaFailureReported = true;
await this.diagnostics?.warning("unraid.workloads.gitea-verification-degraded", {
serverId,
message: error.message,
});
}
}
}
}
const health = workload.runtime.running
? await this.checkHealth(profile.healthcheckUrl)
: { configured: false, healthy: false, skipped: "container-stopped" };
await this.saveWorkloadState(profile, workload, server, { expectedGiteaSha, health });
refreshedProfileIds.push(profile.id);
}
});
await Promise.all(workers);
await this.diagnostics?.debug("unraid.workloads.states-refreshed", {
serverId,
profiles: refreshedProfileIds.length,
durationMs: Date.now() - started,
});
return { ...inventory, refreshedProfiles: refreshedProfileIds.length, refreshedProfileIds };
}
async linkServerWorkload({ repository, serverId, workloadId, deploymentMode = "server-git", remoteFolder = "" }) {
const effectiveDeploymentMode = ["push-bundle", "server-git", "monitor-only"].includes(deploymentMode)
? deploymentMode
: "server-git";
const server = this.store.getServer(serverId);
if (!server) throw new Error("The deployment server no longer exists.");
const inventory = await this.scanServerInventory(serverId, [repository]);
const workload = inventory.workloads.find((item) => item.workloadId === workloadId);
if (!workload) throw new Error("The selected server workload no longer exists. Scan the server again.");
const existing = this.allSshProfiles().find((profile) => profile.workloadIdentity?.workloadId === workloadId && profile.serverId === serverId);
if (existing && String(existing._repositoryFullName).toLowerCase() !== String(repository.fullName).toLowerCase()) {
const error = new Error(`This workload is already linked to ${existing._repositoryFullName}. Remove or edit that link first.`);
error.code = "WORKLOAD_ALREADY_LINKED";
throw error;
}
const profile = this.profileFromWorkload(repository, server, workload, { linkSource: "manual", deploymentMode: effectiveDeploymentMode, remoteFolder });
const saved = await this.store.saveDeploymentProfile(repository.fullName, profile);
const state = await this.saveWorkloadState(saved, workload, server);
await this.diagnostics?.info("unraid.workload.linked", { serverId, workloadId, repository: repository.fullName, profileId: saved.id, deploymentMode: effectiveDeploymentMode });
return { profile: saved, state, workload };
}
}
return UnraidInventoryMethods.prototype;
}
module.exports = { createUnraidInventoryMethods };
+622
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@@ -0,0 +1,622 @@
"use strict";
function createUnraidPreflightMethods({
safeRemoteFolder, path, bash, parseInspection, dockerIgnoreHasPath, checksSummary,
inventoryRemoteIdentity, deriveDetectedProfile, decodeBase64Json, shellQuote,
assertFullCommitSha, nativePath, safeRelativeRemoteFile, fs,
}) {
class UnraidPreflightMethods {
async saveOperation(operation) {
const saved = await this.store.addOperation(operation);
this.onOperationChange?.({ operations: [saved] });
return saved;
}
resolve(repository, profileId) {
const profile = this.store.getDeploymentProfile(
repository.fullName,
profileId,
);
if (!profile || profile.provider !== "ssh-unraid")
throw new Error("The SSH / Unraid deployment profile no longer exists.");
const server = this.store.getServer(profile.serverId);
if (!server) throw new Error("The deployment server no longer exists.");
const remoteFolder = safeRemoteFolder(
profile.remoteFolder || repository.name,
);
const remotePath = path.join(server.basePath, remoteFolder);
if (!remotePath.startsWith(`${server.basePath}/`))
throw new Error(
"Remote project path escapes the configured server base path.",
);
const effectiveProfile = {
...profile,
deploymentMode: ["push-bundle", "server-git", "monitor-only"].includes(profile.deploymentMode)
? profile.deploymentMode
: "push-bundle",
};
return { profile: effectiveProfile, server, remoteFolder, remotePath };
}
async discoverExisting({ repository, serverId, remoteFolder = "" }) {
const server = this.store.getServer(serverId);
if (!server) throw new Error("The deployment server no longer exists.");
const folder = safeRemoteFolder(remoteFolder || repository.name);
const remotePath = path.join(server.basePath, folder);
const inventory = await this.scanServerInventory(serverId, [repository], { autoLink: false });
const workload = inventory.workloads.find((item) =>
item.remoteFolderCandidate === folder ||
item.compose?.workingDir === remotePath ||
item.containers.some((container) => (container.mounts || []).some((mount) => {
const source = String(mount.source || "").replace(/\/+$/, "");
return source === remotePath || source.startsWith(`${remotePath}/`);
}))
);
if (!workload) {
const error = new Error(`No Docker or Compose workload could be matched to ${remotePath}. Use Server Inventory to select the running container directly.`);
error.code = "SERVER_WORKLOAD_NOT_FOUND";
throw error;
}
const profile = this.profileFromWorkload(repository, server, workload, {
linkSource: "manual",
deploymentMode: "server-git",
remoteFolder: folder,
});
const source = (value, origin, confidence = "confirmed") => ({
value,
origin,
confidence,
detectedAt: new Date().toISOString(),
overridden: false,
});
const provenance = {
remoteFolder: source(folder, "server-inventory"),
cloneUrl: source(profile.cloneUrl, workload.metadata?.sourceRepository ? "container-provenance" : "repository"),
branch: source(profile.branch, workload.metadata?.branch ? "container-provenance" : "repository"),
composeFile: source(profile.composeFile, "docker-compose-labels"),
composeService: source(profile.composeService, "docker-compose-labels"),
containerName: source(profile.containerName, "docker-inspect"),
hostPort: source(profile.hostPort, "docker-inspect"),
containerPort: source(profile.containerPort, "docker-inspect"),
webUiUrl: source(profile.webUiUrl, workload.dockerMan?.webUiUrl ? "unraid-dockerman" : "docker-labels"),
iconUrl: source(profile.serverIconReference, workload.dockerMan?.iconUrl ? "unraid-dockerman" : "docker-labels"),
dockerShell: source(profile.dockerShell, workload.dockerMan?.shell ? "unraid-dockerman" : "docker-labels"),
};
return {
repository: repository.fullName,
profile: { ...profile, id: undefined, provenance },
provenance,
workload,
runtime: {
remotePath,
containerRunning: workload.runtime.running,
containers: workload.containers.length,
services: workload.compose?.services?.length || workload.containers.length,
ports: workload.runtime.ports,
mounts: workload.containers.flatMap((container) => container.mounts || []),
networks: [...new Set(workload.containers.flatMap((container) => container.networks || []))],
envNames: [],
},
};
}
async inspect({ repository, profileId }) {
const { profile, server, remotePath } = this.resolve(repository, profileId);
const preserveProbe = (profile.preservePaths || [])
.map(
(relativePath) =>
`if [ -e "$root"/${shellQuote(relativePath)} ]; then printf '%s\\n' ${shellQuote(relativePath)}; fi`,
)
.join("\n");
const script = `
root=${shellQuote(remotePath)}
exists=false; root_git=false; head=""; branch=""; remote=""; tracked_changes=""; compose_files=""; nested_git=""; dockerfile=false; dockerignore_content=""; existing_preserve_paths=""
if [ -d "$root" ]; then
exists=true
if [ -d "$root/.git" ]; then
root_git=true
head=$(git -C "$root" rev-parse HEAD 2>/dev/null || true)
branch=$(git -C "$root" branch --show-current 2>/dev/null || true)
remote=$(git -C "$root" remote get-url origin 2>/dev/null || true)
tracked_changes=$(git -C "$root" status --porcelain --untracked-files=no 2>/dev/null | head -n 25 | base64 | tr -d '\\r\\n' || true)
fi
compose_files=$(find "$root" -maxdepth 2 -type f \\( -name 'docker-compose.yml' -o -name 'docker-compose.yaml' -o -name 'compose.yml' -o -name 'compose.yaml' -o -name 'compose.forgeflow.yml' \\) -printf '%P\\n' 2>/dev/null | sort | base64 | tr -d '\\r\\n' || true)
nested_git=$(find "$root" -mindepth 2 -maxdepth 4 -type d -name .git -printf '%h\\n' 2>/dev/null | sed "s#^$root/##" | sort | base64 | tr -d '\\r\\n' || true)
[ -f "$root/Dockerfile" ] && dockerfile=true
[ -f "$root/.dockerignore" ] && dockerignore_content=$(base64 < "$root/.dockerignore" | tr -d '\\r\\n' || true)
existing_preserve_paths=$({ ${preserveProbe || ":"}; } | sort -u | base64 | tr -d '\\r\\n' || true)
fi
printf '__FORGEFLOW_KV__\\n'
printf 'exists=%s\\n' "$exists"
printf 'rootGit=%s\\n' "$root_git"
printf 'head=%s\\n' "$head"
printf 'branch=%s\\n' "$branch"
printf 'remote=%s\\n' "$(printf '%s' "$remote" | base64 | tr -d '\\r\\n')"
printf 'trackedChanges=%s\\n' "$tracked_changes"
printf 'composeFiles=%s\\n' "$compose_files"
printf 'nestedGit=%s\\n' "$nested_git"
printf 'dockerfile=%s\\n' "$dockerfile"
printf 'dockerignoreContent=%s\\n' "$dockerignore_content"
printf 'existingPreservePaths=%s\\n' "$existing_preserve_paths"
`;
const wrapped = bash(script);
const result = await this.ssh.exec(server.id, wrapped, { timeout: 60_000 });
const parsed = parseInspection(result.stdout);
const contextCandidates = [
...new Set([
...(parsed.existingPreservePaths || []),
...(parsed.nestedGit || []),
]),
];
const inspection = {
...parsed,
dockerignore: Boolean(parsed.dockerignoreContent),
dockerignoreGitExcluded: dockerIgnoreHasPath(
parsed.dockerignoreContent,
".git",
),
dockerContextExclusionsMissing: parsed.dockerfile
? contextCandidates.filter(
(item) => !dockerIgnoreHasPath(parsed.dockerignoreContent, item),
)
: [],
serverId: server.id,
serverName: server.name,
remotePath,
profileId: profile.id,
};
await this.diagnostics?.info("unraid.inspected", {
repository: repository.fullName,
serverId: server.id,
remotePath,
exists: inspection.exists,
rootGit: inspection.rootGit,
head: inspection.head,
composeFiles: inspection.composeFiles,
nestedGitCount: inspection.nestedGit.length,
trackedChangeCount: inspection.trackedChanges.length,
dockerContextExclusionsMissing: inspection.dockerContextExclusionsMissing,
});
return inspection;
}
async preflight({ repository, profileId, sha = null }) {
const { profile, server, remotePath } = this.resolve(repository, profileId);
const deploymentMode = ["push-bundle", "server-git", "monitor-only"].includes(profile.deploymentMode)
? profile.deploymentMode
: "push-bundle";
let requestedSha = sha || repository.localStatus?.head;
if (deploymentMode === "server-git" && !sha) {
const [owner, repo] = String(repository.fullName || "").split("/");
const branch = await this.gitea.getBranch(owner, repo, profile.branch);
requestedSha = branch?.commit?.id || branch?.commit?.sha || null;
}
const targetSha = assertFullCommitSha(requestedSha);
const checks = [];
let inspection = null;
let connectionCapabilities = null;
let permissions = null;
if (deploymentMode === "monitor-only") checks.push({
id: "deployment-mode",
label: "Deployment mode",
status: "fail",
detail: "This workload is linked for monitoring only. Select Server pull or Direct copy before deploying.",
});
else checks.push({
id: "deployment-mode",
label: "Deployment mode",
status: "pass",
detail: deploymentMode === "server-git"
? "Unraid fetches the exact Gitea commit with a repository-scoped read-only deploy key."
: "ForgeFlow copies the exact committed local project directly to Unraid and runs Docker Compose there.",
});
if (!repository.localPath) {
checks.push({
id: "local-repository",
label: "Local repository",
status: deploymentMode === "server-git" ? "pass" : "fail",
detail: deploymentMode === "server-git"
? "Not required: the exact commit is fetched from Gitea by the server."
: "Link or clone the repository locally before using Direct copy.",
});
} else {
try {
const localStatus = await this.git.status(repository.localPath);
checks.push({
id: "local-repository",
label: "Local repository",
status: "pass",
detail: localStatus.root,
});
checks.push({
id: "local-branch",
label: "Allowed branch",
status: localStatus.branch.head === profile.branch ? "pass" : deploymentMode === "server-git" ? "warning" : "fail",
detail: `Current: ${localStatus.branch.head || "detached"}; required: ${profile.branch}.`,
});
checks.push({
id: "local-clean",
label: "Clean local working tree",
status: localStatus.clean ? "pass" : deploymentMode === "server-git" ? "warning" : "fail",
detail: localStatus.clean
? "No uncommitted changes."
: `${localStatus.counts.changed} changed file(s) remain.`,
});
checks.push({
id: "deployment-source",
label: deploymentMode === "server-git" ? "Gitea deployment source" : "Direct deployment source",
status: "pass",
detail: deploymentMode === "server-git"
? "Local files are not uploaded; the exact requested commit is fetched from Gitea."
: "The exact committed local HEAD is archived and copied directly to Unraid. No server-side repository access is involved.",
});
const localDeploymentFiles = deploymentMode === "push-bundle" && profile.generatedCompose
? [nativePath.join(repository.localPath, "Dockerfile")]
: deploymentMode === "push-bundle" ? this.deploymentComposeFiles(profile).map((file) =>
nativePath.join(repository.localPath, safeRelativeRemoteFile(file)),
) : [];
const missingDeploymentFiles = [];
for (const file of localDeploymentFiles) {
if (!(await fs.stat(file).catch(() => null))?.isFile()) missingDeploymentFiles.push(file);
}
if (deploymentMode === "push-bundle") checks.push({
id: "local-deployment-file",
label: profile.generatedCompose
? "Dockerfile in repository"
: localDeploymentFiles.length > 1 ? "Compose files in repository" : "Compose file in repository",
status: missingDeploymentFiles.length ? "fail" : "pass",
detail: missingDeploymentFiles.length
? `Missing from the exact local checkout: ${missingDeploymentFiles.join(", ")}`
: localDeploymentFiles.join(", "),
});
} catch (error) {
checks.push({
id: "local-repository",
label: "Local repository",
status: "fail",
detail: error.message,
});
}
}
if (deploymentMode === "server-git") {
const [owner, repo] = String(repository.fullName || "").split("/");
const deploymentFiles = profile.generatedCompose
? ["Dockerfile"]
: this.deploymentComposeFiles(profile);
try {
const existence = await Promise.all(deploymentFiles.map(async (filePath) => ({
filePath,
exists: await this.gitea.repositoryFileExists({ owner, repo, filePath, ref: targetSha }),
})));
const missing = existence.filter((item) => !item.exists).map((item) => item.filePath);
checks.push({
id: "gitea-deployment-files",
label: profile.generatedCompose ? "Dockerfile at Gitea commit" : "Compose files at Gitea commit",
status: missing.length ? "fail" : "pass",
detail: missing.length
? `Missing at exact commit ${targetSha.slice(0, 12)}: ${missing.join(", ")}.`
: `${deploymentFiles.join(", ")} verified at exact commit ${targetSha.slice(0, 12)}.`,
});
} catch (error) {
checks.push({
id: "gitea-deployment-files",
label: "Deployment files at Gitea commit",
status: "fail",
detail: error.message,
});
}
}
try {
const connection = await this.ssh.test(server.id, { trustOnFirstUse: false });
connectionCapabilities = connection.capabilities || {};
checks.push({
id: "ssh",
label: "Desktop → Unraid SSH",
status: "pass",
detail: `${server.username}@${server.host}:${server.port}`,
});
checks.push({
id: "docker-runtime",
label: "Docker runtime",
status: connectionCapabilities.docker && connectionCapabilities.dockerReady ? "pass" : "fail",
detail: connectionCapabilities.dockerReady
? "Docker is reachable by the configured SSH user."
: connectionCapabilities.docker
? "Docker is installed, but the configured SSH user cannot query the daemon."
: "Docker was not detected on the server.",
});
checks.push({
id: "compose-command",
label: "Docker Compose",
status: connectionCapabilities.compose ? "pass" : "fail",
detail: connectionCapabilities.composeVersion || "Docker Compose was not detected on the server.",
});
checks.push({
id: "bundle-tools",
label: deploymentMode === "server-git" ? "Server pull tools" : "Direct copy tools",
status: connectionCapabilities.tar && connectionCapabilities.checksum && (deploymentMode !== "server-git" || connectionCapabilities.git) ? "pass" : "fail",
detail: deploymentMode === "server-git"
? `Git ${connectionCapabilities.git ? "available" : "missing"}; tar ${connectionCapabilities.tar ? "available" : "missing"}; checksum ${connectionCapabilities.checksum ? "available" : "missing"}.`
: connectionCapabilities.tar && connectionCapabilities.checksum
? "tar and a SHA-256 checksum tool are available."
: `tar ${connectionCapabilities.tar ? "available" : "missing"}; checksum tool ${connectionCapabilities.checksum ? "available" : "missing"}.`,
});
checks.push({
id: "server-base-writable",
label: "Deployment storage writable",
status: connectionCapabilities.baseWritable ? "pass" : "fail",
detail: connectionCapabilities.baseWritable ? `${server.basePath} is writable.` : `${server.basePath} cannot be created or written by this SSH user.`,
});
} catch (error) {
checks.push({
id: "ssh",
label: "Desktop → Unraid SSH",
status: "fail",
detail: error.message,
});
}
if (!server.hostFingerprint) checks.push({
id: "host-key",
label: "Server identity",
status: "fail",
detail: "Test and trust the SSH host key first.",
});
else checks.push({
id: "host-key",
label: "Server identity",
status: "pass",
detail: server.hostFingerprint,
});
if (deploymentMode === "server-git") {
const access = await this.probeServerGitAccess({ repository, profile, server });
checks.push({
id: "server-git-access",
label: "Unraid → Gitea read access",
status: access.ready ? "pass" : "fail",
detail: access.ready
? `Read-only deploy key verified${access.remoteSha ? ` at ${access.remoteSha.slice(0, 7)}` : ""}.`
: access.error,
repairAction: access.ready ? null : "configure-server-git-access",
repairLabel: "Configure read-only deploy key",
});
} else checks.push({
id: "transfer-path",
label: "Desktop → Unraid transfer",
status: "pass",
detail: "Files are copied over the configured server connection. No Gitea credential is required on Unraid.",
});
try {
permissions = await this.inspectWriteAccess({ repository, profileId });
const blockingPaths = permissions.blocking.map((target) => target.path);
checks.push({
id: "project-write-access",
label: "Project write access",
status: permissions.ready ? "pass" : "fail",
detail: permissions.ready
? `${permissions.identity.user} can create and atomically replace deployment files in ${remotePath}.`
: `No safe write access for ${permissions.identity.user}: ${blockingPaths.join(", ")}`,
help: permissions.ready
? "ForgeFlow rechecks these paths immediately before every upload and Compose activation."
: "Use Fix write access to repair only the linked project source and ForgeFlow state folders. Preserved runtime data is excluded.",
repairAction: permissions.ready ? null : "repair-deployment-write-access",
repairLabel: "Fix write access",
});
for (const target of permissions.targets.filter(
(item) => item.required && !item.effectiveWritable,
)) {
checks.push({
id: `write-path:${target.id}`,
label: target.label,
status: "fail",
detail: `${target.path} · owner ${target.owner || "unknown"}:${target.group || "unknown"} · mode ${target.mode || "unknown"}. ${target.detail}`,
repairAction: "repair-deployment-write-access",
repairLabel: "Fix write access",
});
}
} catch (error) {
checks.push({
id: "project-write-access",
label: "Project write access",
status: "fail",
detail: error.message,
});
}
try {
inspection = await this.inspect({ repository, profileId });
if (!inspection.exists) {
checks.push({
id: "remote-folder",
label: "Remote project folder",
status: "pass",
detail: `${remotePath} will be created.`,
});
} else {
checks.push({
id: "remote-folder",
label: inspection.rootGit ? "Remote project folder" : "Existing server installation",
status: "pass",
detail: inspection.rootGit
? `${remotePath} currently contains Git commit ${String(inspection.head || "").slice(0, 7) || "unknown"}.`
: `${remotePath} will receive managed release files while preserved and unknown runtime data remains untouched.`,
});
}
if (inspection.rootGit) {
checks.push({
id: "tracked-changes",
label: "Server-side tracked changes",
status: inspection.trackedChanges.length ? "warning" : "pass",
detail: inspection.trackedChanges.length
? `${inspection.trackedChanges.length} tracked server edit(s) exist. Direct copy preserves unknown runtime data and does not depend on the server Git checkout.`
: "No tracked server-only edits detected.",
});
}
if (inspection.nestedGit.length) {
checks.push({
id: "nested-git",
label: "Nested Git repositories",
status: "warning",
detail: `Detected: ${inspection.nestedGit.join(", ")}. ForgeFlow will not delete them automatically.`,
});
}
if (inspection.dockerfile && !inspection.dockerignore) {
checks.push({
id: "dockerignore",
label: "Docker build context",
status: "warning",
detail:
"A Dockerfile exists but .dockerignore is missing. Add one in the repository before large builds.",
});
} else if (inspection.dockerfile && !inspection.dockerignoreGitExcluded) {
checks.push({
id: "dockerignore-git",
label: "Git metadata excluded from Docker",
status: "warning",
detail: ".dockerignore does not explicitly exclude .git.",
});
} else if (inspection.dockerfile) {
checks.push({
id: "dockerignore-git",
label: "Git metadata excluded from Docker",
status: "pass",
detail: ".git is excluded from the Docker build context.",
});
}
if (inspection.dockerContextExclusionsMissing.length) {
checks.push({
id: "dockerignore-runtime",
label: "Runtime data excluded from Docker",
status: "warning",
detail: `Add these existing runtime or legacy paths to .dockerignore: ${inspection.dockerContextExclusionsMissing.join(", ")}.`,
});
} else if (
inspection.dockerfile &&
inspection.existingPreservePaths.length
) {
checks.push({
id: "dockerignore-runtime",
label: "Runtime data excluded from Docker",
status: "pass",
detail:
"Detected preserved runtime paths are excluded from the Docker build context.",
});
}
const composeFiles = profile.generatedCompose
? [".forgeflow/compose.forgeflow.yml"]
: (profile.composeFiles?.length ? profile.composeFiles : [profile.composeFile || "docker-compose.yml"])
.map((value) => safeRelativeRemoteFile(value));
const missingRemoteCompose = composeFiles.filter((composeFile) => !inspection.composeFiles.includes(composeFile));
checks.push({
id: "compose-file",
label: "Compose configuration",
status: "pass",
detail: profile.generatedCompose
? "ForgeFlow will generate an isolated Compose file."
: missingRemoteCompose.length
? `${composeFiles.join(", ")} will be uploaded from the exact local commit.`
: composeFiles.join(", "),
});
} catch (error) {
checks.push({
id: "inspection",
label: "Server project inspection",
status: "fail",
detail: error.message,
});
}
const iconMode =
profile.iconMode ||
(profile.iconFilePath ? "upload" : profile.iconUrl ? "url" : "builtin");
if (iconMode === "upload") {
const iconStat = await fs.stat(profile.iconFilePath).catch(() => null);
checks.push({
id: "dockerman-icon-file",
label: "DockerMan icon upload",
status:
iconStat?.isFile() &&
nativePath.extname(profile.iconFilePath).toLowerCase() === ".png"
? "pass"
: "fail",
detail: iconStat?.isFile()
? profile.iconFilePath
: "The selected local PNG icon file was not found.",
});
} else if (iconMode === "builtin") {
const builtinIcon = nativePath.join(
this.sourcePath,
"src",
"renderer",
"assets",
"itworx-mark.png",
);
const iconStat = await fs.stat(builtinIcon).catch(() => null);
checks.push({
id: "dockerman-icon-builtin",
label: "DockerMan icon",
status: iconStat?.isFile() ? "pass" : "fail",
detail: iconStat?.isFile()
? "Built-in high-contrast ITWorx mark."
: "The built-in ITWorx icon asset is missing.",
});
} else if (iconMode === "url")
checks.push({
id: "dockerman-icon",
label: "DockerMan icon",
status: profile.iconUrl ? "pass" : "fail",
detail:
profile.iconUrl || "Icon URL mode requires an HTTPS or HTTP PNG URL.",
});
else
checks.push({
id: "dockerman-icon",
label: "DockerMan icon",
status: "warning",
detail: "Custom DockerMan icon disabled.",
});
const webUiLabel = this.dockerManWebUi(profile);
checks.push({
id: "dockerman-webui",
label: "DockerMan Web UI action",
status: webUiLabel ? "pass" : "warning",
detail: webUiLabel || "No Web UI URL or host port is configured.",
});
checks.push({
id: "compose-identity",
label: "Safe Docker Compose identity",
status: "pass",
detail: `Internal project/image: ${this.internalSlug(profile, repository)}; visible container: ${profile.containerName || profile.remoteFolder || repository.name}.`,
});
checks.push({
id: "exact-sha",
label: "Exact deployment commit",
status: "pass",
detail: targetSha,
});
return {
provider: "ssh-unraid",
repository: repository.fullName,
environment: profile.environment,
sha: targetSha,
server: { id: server.id, name: server.name, host: server.host },
remotePath,
inspection,
permissions,
checks,
summary: checksSummary(checks),
};
}
}
return UnraidPreflightMethods.prototype;
}
module.exports = { createUnraidPreflightMethods };
+387
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@@ -0,0 +1,387 @@
"use strict";
function createUnraidRuntimeMethods({
safeRelativeRemoteFile, xmlEscape, nativePath, fileSystem, fs, crypto, os, run,
bash, shellQuote, iconReferenceLocalPath,
}) {
class UnraidRuntimeMethods {
internalSlug(profile, repository) {
return (
String(
profile.remoteFolder ||
repository.name ||
profile.composeService ||
"app",
)
.toLowerCase()
.replace(/[^a-z0-9._-]+/g, "-")
.replace(/^-+|-+$/g, "") || "app"
);
}
generatedCompose(profile, repository) {
const service =
String(profile.composeService || repository.name || "app")
.toLowerCase()
.replace(/[^a-z0-9._-]/g, "-") || "app";
const containerName =
String(
profile.containerName ||
profile.remoteFolder ||
repository.name ||
service,
).replace(/[^A-Za-z0-9._-]/g, "-") || service;
if (!profile.hostPort || !profile.containerPort)
throw new Error(
"Host and container ports are required for generated Compose.",
);
return (
[
"services:",
` ${service}:`,
` image: forgeflow/${this.internalSlug(profile, repository)}:${String(profile.environment || "production").toLowerCase()}`,
" build:",
" context: ..",
` container_name: ${containerName}`,
" restart: unless-stopped",
" ports:",
` - "${profile.hostPort}:${profile.containerPort}"`,
].join("\n") + "\n"
);
}
dockerManWebUi(profile) {
if (profile.hostPort) {
let suffix = "/";
try {
const parsed = profile.webUiUrl ? new URL(profile.webUiUrl) : null;
suffix = parsed
? `${parsed.pathname || "/"}${parsed.search || ""}${parsed.hash || ""}`
: "/";
} catch {}
if (!suffix.startsWith("/")) suffix = `/${suffix}`;
return `http://[IP]:[PORT:${profile.hostPort}]${suffix}`;
}
return profile.webUiUrl || "";
}
dockerManShell(profile) {
return String(profile.dockerShell || "/bin/sh")
.toLowerCase()
.includes("bash")
? "bash"
: "sh";
}
dockerManTemplatePath(profile, repository) {
const containerName =
String(
profile.containerName ||
profile.remoteFolder ||
repository.name ||
"app",
).replace(/[^A-Za-z0-9._-]/g, "-") || "app";
return `/boot/config/plugins/dockerMan/templates-user/my-${containerName}.xml`;
}
dockerManTemplate(profile, repository, iconReference = "") {
const containerName =
String(
profile.containerName ||
profile.remoteFolder ||
repository.name ||
"app",
).replace(/[^A-Za-z0-9._-]/g, "-") || "app";
const slug = this.internalSlug(profile, repository);
const environment =
String(profile.environment || "production")
.toLowerCase()
.replace(/[^a-z0-9._-]/g, "-") || "production";
const image = `forgeflow/${slug}:${environment}`;
const webUi = this.dockerManWebUi(profile);
return (
[
'<?xml version="1.0"?>',
'<Container version="2">',
` <Name>${xmlEscape(containerName)}</Name>`,
` <Repository>${xmlEscape(image)}</Repository>`,
" <Registry/>",
" <Network>bridge</Network>",
" <MyIP/>",
` <Shell>${xmlEscape(this.dockerManShell(profile))}</Shell>`,
" <Privileged>false</Privileged>",
" <Support/>",
" <Project/>",
" <Overview>Managed by ForgeFlow through Docker Compose. Use ForgeFlow or the Compose files for configuration changes.</Overview>",
" <Category>Tools:</Category>",
` <WebUI>${xmlEscape(webUi)}</WebUI>`,
" <TemplateURL/>",
` <Icon>${xmlEscape(iconReference)}</Icon>`,
" <ExtraParams/>",
" <PostArgs/>",
" <CPUset/>",
" <DonateText/>",
" <DonateLink/>",
"</Container>",
].join("\n") + "\n"
);
}
iconCacheRefresh(profile, repository, iconReference = "") {
const containerName =
String(
profile.containerName ||
profile.remoteFolder ||
repository.name ||
"app",
).replace(/[^A-Za-z0-9._-]/g, "-") || "app";
const cacheLoop = `for icon_dir in /var/lib/docker/unraid/images /usr/local/emhttp/state/plugins/dynamix.docker.manager/images /var/local/emhttp/plugins/dynamix.docker.manager/images; do [ -d "$icon_dir" ] || continue; rm -f "$icon_dir/${containerName}-icon.png" "$icon_dir/${containerName}.png"; done`;
const invalidateMetadata = `rm -f /usr/local/emhttp/state/plugins/dynamix.docker.manager/docker.json`;
const localIconPath = iconReferenceLocalPath(iconReference);
if (!localIconPath) return `${cacheLoop}\n${invalidateMetadata}`;
return `${cacheLoop}
if [ -f ${shellQuote(localIconPath)} ]; then for icon_dir in /var/lib/docker/unraid/images /usr/local/emhttp/state/plugins/dynamix.docker.manager/images /var/local/emhttp/plugins/dynamix.docker.manager/images; do [ -d "$icon_dir" ] || continue; cp ${shellQuote(localIconPath)} "$icon_dir/${containerName}-icon.png"; chmod 0644 "$icon_dir/${containerName}-icon.png"; done; fi
${invalidateMetadata}`;
}
dockerManRefreshScript(profile, repository, iconReference = "") {
if (profile.manageDockerMan !== true || profile.adoptedFromServer === true || profile.generatedCompose !== true) {
return `echo 'ForgeFlow left the existing DockerMan template unchanged.'`;
}
const templatePath = this.dockerManTemplatePath(profile, repository);
const template = this.dockerManTemplate(profile, repository, iconReference);
return `mkdir -p /boot/config/plugins/dockerMan/templates-user
cat > ${shellQuote(templatePath)} <<'FORGEFLOW_DOCKERMAN_TEMPLATE'
${template}FORGEFLOW_DOCKERMAN_TEMPLATE
chmod 0644 ${shellQuote(templatePath)}
${this.iconCacheRefresh(profile, repository, iconReference)}`;
}
deploymentServices(profile, repository) {
const values = profile.generatedCompose
? [profile.composeService || repository.name || "app"]
: (profile.composeServices?.length ? profile.composeServices : [profile.composeService || repository.name || "app"]);
return [...new Set(values.map((value) => String(value || "").trim().toLowerCase().replace(/[^a-z0-9._-]/g, "-")).filter(Boolean))];
}
deploymentComposeFiles(profile) {
if (profile.generatedCompose) return [".forgeflow/compose.forgeflow.yml"];
const values = profile.composeFiles?.length ? profile.composeFiles : [profile.composeFile || "docker-compose.yml"];
return [...new Set(values
.map((value) => safeRelativeRemoteFile(value))
.filter((value) => value !== ".forgeflow/compose.metadata.yml" && value !== ".forgeflow/compose.forgeflow.yml"))];
}
metadataCompose(profile, repository, iconReference = "", deployment = {}) {
const services = this.deploymentServices(profile, repository);
const labels = {
"net.unraid.docker.managed": "dockerman",
"net.unraid.docker.shell": this.dockerManShell(profile),
"tech.itworx.forgeflow.repository":
deployment.repositoryUrl ||
profile.cloneUrl ||
repository.sshUrl ||
repository.cloneUrl ||
repository.htmlUrl ||
repository.fullName || repository.name || "unknown",
"tech.itworx.forgeflow.branch": profile.branch || "main",
};
if (deployment.sha) labels["tech.itworx.forgeflow.commit"] = deployment.sha;
const webUiLabel = this.dockerManWebUi(profile);
if (webUiLabel) labels["net.unraid.docker.webui"] = webUiLabel;
if (iconReference) labels["net.unraid.docker.icon"] = iconReference;
const output = ["services:"];
for (const service of services) {
output.push(` ${service}:`);
if (profile.generatedCompose) {
const containerName = String(
profile.containerName || profile.remoteFolder || repository.name || service,
).replace(/[^A-Za-z0-9._-]/g, "-") || "app";
output.push(` image: forgeflow/${this.internalSlug(profile, repository)}:${String(profile.environment || "production").toLowerCase().replace(/[^a-z0-9._-]/g, "-")}`);
output.push(` container_name: ${containerName}`);
}
output.push(" labels:");
output.push(...Object.entries(labels).map(([key, value]) => ` ${JSON.stringify(key)}: ${JSON.stringify(value)}`));
}
return `${output.join("\n")}\n`;
}
async prepareIcon(profile, repository, server) {
const mode =
profile.iconMode ||
(profile.iconFilePath ? "upload" : profile.iconUrl ? "url" : "builtin");
if (mode === "none") return profile.serverIconReference || "";
if (mode === "url") {
if (!profile.iconUrl)
throw new Error(
"DockerMan icon URL mode is selected, but no icon URL is configured.",
);
return profile.iconUrl;
}
const localIconPath =
mode === "builtin"
? nativePath.join(
this.sourcePath,
"src",
"renderer",
"assets",
"itworx-mark.png",
)
: profile.iconFilePath;
const stat = await fs.stat(localIconPath).catch(() => null);
if (!stat?.isFile())
throw new Error(
mode === "builtin"
? "The built-in ITWorx DockerMan icon is missing."
: `The selected DockerMan icon file no longer exists: ${localIconPath}`,
);
if (nativePath.extname(localIconPath).toLowerCase() !== ".png")
throw new Error(
"DockerMan icon upload currently accepts PNG files only.",
);
const containerName =
String(
profile.containerName ||
profile.remoteFolder ||
repository.name ||
"app",
).replace(/[^A-Za-z0-9._-]/g, "-") || "app";
const remoteIconPath = `/boot/config/plugins/dockerMan/images/${containerName}-icon.png`;
await this.ssh.uploadFile(server.id, localIconPath, remoteIconPath, {
mode: 0o644,
});
return `file://${remoteIconPath}`;
}
composeInvocation(profile, repository) {
const project = String(profile.composeProject || this.internalSlug(profile, repository)).trim();
const files = [...this.deploymentComposeFiles(profile)];
// A labels-only Compose fragment is valid only when every service key also
// exists in the base definition. Imported profiles can contain stale service
// hints, so adopted workloads must activate from their real server Compose
// files only. ForgeFlow tracks the deployed SHA in .forgeflow/status.json.
if (profile.generatedCompose) files.push(".forgeflow/compose.metadata.yml");
return `forgeflow_compose -p ${shellQuote(project)} ${files.map((file) => `-f ${shellQuote(file)}`).join(" ")}`;
}
composeUpFlags(profile) {
// ForgeFlow never adds destructive recreation or orphan-removal flags.
// Compose may replace a service when its built image or configuration changed,
// but unrelated containers are never deleted by ForgeFlow.
void profile;
return "";
}
containerVerificationScript(profile, repository, compose, { requireRecreated = false } = {}) {
const recreationCheck = requireRecreated
? ` before_id=$(awk -F '\t' -v wanted="$service" '$1 == wanted { print $2; exit }' "$before_containers" 2>/dev/null || true)
if [ -n "$before_id" ] && [ "$before_id" = "$container_id" ]; then
echo "Compose reported success but service $service still uses the previous container $container_id" >&2
exit 65
fi`
: ` before_id=""`;
return `actual_services=$(${compose} config --services 2>/dev/null | sed '/^$/d')
[ -n "$actual_services" ] || { echo "Compose project defines no services" >&2; exit 60; }
printf '%s\n' "$actual_services" | while IFS= read -r service; do
[ -n "$service" ] || continue
attempt=0; container_id=''; running=false; health=''
while [ "$attempt" -lt 30 ]; do
container_id=$(${compose} ps -q "$service" | head -n1)
if [ -n "$container_id" ]; then
running=$(docker inspect -f '{{.State.Running}}' "$container_id" 2>/dev/null || echo false)
health=$(docker inspect -f '{{if .State.Health}}{{.State.Health.Status}}{{end}}' "$container_id" 2>/dev/null || true)
if [ "$running" = true ] && [ "$health" != unhealthy ] && [ "$health" != starting ]; then break; fi
fi
attempt=$((attempt + 1)); sleep 2
done
[ -n "$container_id" ] || { echo "Compose service $service did not create a container" >&2; exit 61; }
[ "$running" = true ] || { echo "Compose service $service is not running after 60 seconds" >&2; exit 62; }
[ "$health" != unhealthy ] && [ "$health" != starting ] || { echo "Compose service $service did not become healthy" >&2; exit 63; }
${recreationCheck}
image_id=$(docker inspect -f '{{.Image}}' "$container_id" 2>/dev/null || true)
printf 'ForgeFlow verified service %s: container=%s previous=%s image=%s\n' "$service" "$container_id" "\${before_id:-none}" "\${image_id:-unknown}"
done`;
}
async checkHealth(url) {
if (!url)
return {
configured: false,
healthy: null,
status: null,
latencyMs: null,
};
let last = null;
for (let attempt = 1; attempt <= 5; attempt += 1) {
const started = Date.now();
try {
const response = await fetch(url, {
signal: AbortSignal.timeout(8_000),
redirect: "manual",
});
last = {
configured: true,
healthy: response.ok,
status: response.status,
latencyMs: Date.now() - started,
};
if (response.ok) return last;
} catch (error) {
last = {
configured: true,
healthy: false,
status: null,
latencyMs: Date.now() - started,
error: error.message,
};
}
if (attempt < 5)
await new Promise((resolve) => setTimeout(resolve, 3_000));
}
return last;
}
hashFile(filePath) {
return new Promise((resolve, reject) => {
const hash = crypto.createHash("sha256");
const stream = fileSystem.createReadStream(filePath);
stream.on("error", reject);
stream.on("data", (chunk) => hash.update(chunk));
stream.on("end", () => resolve(hash.digest("hex")));
});
}
async createCommitBundle(repository, sha, requestId) {
if (!repository.localPath) throw new Error("A linked local repository is required to create a push bundle.");
const bundleDirectory = nativePath.join(os.tmpdir(), "forgeflow-bundles");
await fs.mkdir(bundleDirectory, { recursive: true });
const archivePath = nativePath.join(bundleDirectory, `${requestId}-${sha}.tar`);
await run("git", ["-C", repository.localPath, "archive", "--format=tar", `--output=${archivePath}`, sha], {
timeout: 5 * 60_000,
maxBuffer: 4 * 1024 * 1024,
});
const stat = await fs.stat(archivePath);
if (!stat.isFile() || stat.size <= 0) throw new Error("Git produced an empty deployment bundle.");
return { archivePath, bytes: stat.size, sha256: await this.hashFile(archivePath) };
}
deploymentStatusDocument({ repository, profile, targetSha, requestId, rollback = false }) {
return JSON.stringify({
repository: repository.fullName,
environment: profile.environment,
requested_sha: targetSha,
live_sha: targetSha,
request_id: requestId,
healthy: null,
healthcheck_url_configured: Boolean(profile.healthcheckUrl),
rollback,
deployment_mode: profile.deploymentMode || "push-bundle",
deployed_at: new Date().toISOString(),
});
}
}
return UnraidRuntimeMethods.prototype;
}
module.exports = { createUnraidRuntimeMethods };
+296
View File
@@ -0,0 +1,296 @@
"use strict";
function createUnraidStateMethods({ path, bash, shellQuote, inventoryRemoteIdentity }) {
class UnraidStateMethods {
async refreshProfileState(fullName, profileId, expectedGiteaSha = null) {
const repository = { fullName, name: fullName.split("/").pop() };
const { profile, server, remotePath } = this.resolve(repository, profileId);
const containerName = String(
profile.containerName || profile.remoteFolder || repository.name,
);
const script = `
root=${shellQuote(remotePath)}
container=${shellQuote(containerName)}
template_path=${shellQuote("/boot/config/plugins/dockerMan/templates-user/my-" + containerName + ".xml")}
live=""; previous=""; running=false; docker_health=""; webui=""; icon=""; shell_label=""; template_exists=false
[ -f "$template_path" ] && template_exists=true
[ -f "$root/.forgeflow/current-sha" ] && live=$(cat "$root/.forgeflow/current-sha")
[ -z "$live" ] && [ -d "$root/.git" ] && live=$(git -C "$root" rev-parse HEAD 2>/dev/null || true)
[ -f "$root/.forgeflow/previous-sha" ] && previous=$(cat "$root/.forgeflow/previous-sha")
if docker inspect "$container" >/dev/null 2>&1; then
running=$(docker inspect -f '{{.State.Running}}' "$container" 2>/dev/null || echo false)
docker_health=$(docker inspect -f '{{if .State.Health}}{{.State.Health.Status}}{{end}}' "$container" 2>/dev/null || true)
webui=$(docker inspect -f '{{index .Config.Labels "net.unraid.docker.webui"}}' "$container" 2>/dev/null || true)
icon=$(docker inspect -f '{{index .Config.Labels "net.unraid.docker.icon"}}' "$container" 2>/dev/null || true)
shell_label=$(docker inspect -f '{{index .Config.Labels "net.unraid.docker.shell"}}' "$container" 2>/dev/null || true)
[ -z "$live" ] && live=$(docker inspect -f '{{index .Config.Labels "org.opencontainers.image.revision"}}' "$container" 2>/dev/null || true)
[ -z "$live" ] && live=$(docker inspect -f '{{index .Config.Labels "tech.itworx.forgeflow.commit"}}' "$container" 2>/dev/null || true)
fi
printf '__FORGEFLOW_KV__\n'
printf 'liveSha=%s\n' "$live"
printf 'previousSha=%s\n' "$previous"
printf 'containerRunning=%s\n' "$running"
printf 'dockerHealth=%s\n' "$docker_health"
printf 'webUiLabel=%s\n' "$(printf '%s' "$webui" | base64 | tr -d '\r\n')"
printf 'iconLabel=%s\n' "$(printf '%s' "$icon" | base64 | tr -d '\r\n')"
printf 'shellLabel=%s\n' "$(printf '%s' "$shell_label" | base64 | tr -d '\r\n')"
printf 'templateExists=%s\n' "$template_exists"
`;
const result = await this.ssh.exec(server.id, bash(script), {
timeout: 30_000,
});
const marker = result.stdout.lastIndexOf("__FORGEFLOW_KV__");
if (marker < 0)
throw new Error(
"Unraid state inspection did not return a ForgeFlow marker.",
);
const fields = {};
for (const line of result.stdout
.slice(marker + "__FORGEFLOW_KV__".length)
.trim()
.split(/\r?\n/)) {
const index = line.indexOf("=");
if (index > 0) fields[line.slice(0, index)] = line.slice(index + 1);
}
const decode = (value) => {
try {
return value ? Buffer.from(value, "base64").toString("utf8") : "";
} catch {
return "";
}
};
const containerRunning = fields.containerRunning === "true";
const health = containerRunning
? await this.checkHealth(profile.healthcheckUrl)
: { configured: false, healthy: false, skipped: "container-stopped" };
const dockerHealthy = fields.dockerHealth
? fields.dockerHealth === "healthy"
: null;
const effectiveHealthy = !containerRunning ? false : health.configured ? health.healthy : dockerHealthy;
const runtimeVerification = !containerRunning
? "stopped"
: health.configured
? "desktop-healthcheck"
: dockerHealthy === true
? "docker-healthcheck"
: dockerHealthy === false
? "docker-unhealthy"
: containerRunning
? "running-unverified"
: "stopped";
return this.store.saveDeploymentState(profile.id, {
liveSha: /^[0-9a-f]{40}$/i.test(fields.liveSha || "")
? fields.liveSha
: null,
previousSha: /^[0-9a-f]{40}$/i.test(fields.previousSha || "")
? fields.previousSha
: null,
healthy: effectiveHealthy,
runtimeVerification,
healthStatus: health.status,
healthLatencyMs: health.latencyMs,
containerName,
containerRunning,
dockerHealth: fields.dockerHealth || null,
dockerMan: {
webUi: decode(fields.webUiLabel),
icon: decode(fields.iconLabel),
shell: decode(fields.shellLabel),
templateExists: fields.templateExists === "true",
configured: Boolean(
decode(fields.webUiLabel) ||
decode(fields.iconLabel) ||
fields.templateExists === "true",
),
},
webUiUrl:
profile.webUiUrl ||
(profile.hostPort
? `http://${server.host}:${profile.hostPort}/`
: null),
remotePath,
provider: "ssh-unraid",
giteaSha: /^[0-9a-f]{40}$/i.test(String(expectedGiteaSha || ""))
? expectedGiteaSha
: null,
matchesGitea:
/^[0-9a-f]{40}$/i.test(String(expectedGiteaSha || "")) &&
fields.liveSha === expectedGiteaSha,
});
}
async applyDockerManMetadata({ repository, profileId }) {
const { profile, server, remotePath } = this.resolve(repository, profileId);
if (profile.generatedCompose !== true) {
// Existing Compose files remain authoritative. Applying a generated
// labels-only service fragment can create a phantom service when a stale
// profile hint no longer matches the real Compose service keys.
return this.refreshProfileState(repository.fullName, profileId);
}
const composeFile = profile.generatedCompose
? ".forgeflow/compose.forgeflow.yml"
: safeRelativeRemoteFile(profile.composeFile || "docker-compose.yml");
const iconReference = await this.prepareIcon(profile, repository, server);
const metadata = this.metadataCompose(profile, repository, iconReference);
const compose = this.composeInvocation(profile, repository);
const flags = this.composeUpFlags(profile);
const script = `
root=${shellQuote(remotePath)}
test -d "$root"
mkdir -p "$root/.forgeflow"
cat > "$root/.forgeflow/compose.metadata.yml" <<'FORGEFLOW_METADATA'
${metadata}FORGEFLOW_METADATA
cd "$root"
${compose} config >/dev/null
${compose} up -d --build ${flags}
${this.containerVerificationScript(profile, repository, compose)}
${this.dockerManRefreshScript(profile, repository, iconReference)}
`;
await this.ssh.exec(server.id, bash(script), {
timeout: 10 * 60_000,
maxOutput: 2 * 1024 * 1024,
});
return this.refreshProfileState(repository.fullName, profileId);
}
async refreshOperation(
operationId,
{ includeTerminal = false, state: suppliedState = null } = {},
) {
const operation = this.store.getOperation(operationId);
if (!operation || operation.provider !== "ssh-unraid") return operation;
if (
!includeTerminal &&
["success", "failed", "cancelled", "rolled-back"].includes(
operation.status,
)
)
return operation;
try {
const state =
suppliedState ||
(await this.refreshProfileState(
operation.repository,
operation.profileId,
));
if (
state.liveSha === operation.sha &&
state.containerRunning &&
state.healthy !== false
) {
return this.saveOperation({
...operation,
status: operation.action === "rollback" ? "rolled-back" : "success",
health: { healthy: state.healthy, status: state.healthStatus },
logs: [
...(operation.logs || []),
"Deployment state reconciled from Unraid.",
],
});
}
if (
/^[0-9a-f]{40}$/i.test(String(state.liveSha || "")) &&
state.liveSha !== operation.sha &&
state.containerRunning &&
state.healthy !== false
) {
return this.saveOperation({
...operation,
status: "cancelled",
error: `Superseded by live commit ${state.liveSha.slice(0, 7)}.`,
health: { healthy: state.healthy, status: state.healthStatus },
logs: [
...(operation.logs || []),
`Operation superseded by live Unraid commit ${state.liveSha}.`,
],
});
}
const ageMs =
Date.now() -
new Date(operation.updatedAt || operation.createdAt || 0).getTime();
if (ageMs > 45 * 60_000) {
return this.saveOperation({
...operation,
status: "failed",
error:
"Deployment was interrupted or did not reach the requested commit within 45 minutes.",
logs: [
...(operation.logs || []),
"Stale deployment was marked failed during reconciliation.",
],
});
}
return operation;
} catch {
return operation;
}
}
async reconcileRecordedOperations(profileId, state) {
const operations = this.store.data.operations
.filter(
(item) =>
item.profileId === profileId && item.provider === "ssh-unraid",
)
.sort(
(left, right) =>
new Date(right.updatedAt || right.createdAt || 0) -
new Date(left.updatedAt || left.createdAt || 0),
);
const matching = operations.find(
(item) => item.sha === state.liveSha && item.status === "failed",
);
if (matching && state.containerRunning && state.healthy !== false) {
await this.refreshOperation(matching.id, {
includeTerminal: true,
state,
});
}
const latestFailed = operations.find((item) => item.status === "failed");
if (
latestFailed &&
latestFailed.id !== matching?.id &&
state.matchesGitea &&
state.containerRunning &&
state.healthy !== false
) {
await this.saveOperation({
...latestFailed,
status: "cancelled",
error: `Superseded by Gitea/live commit ${state.liveSha.slice(0, 7)}.`,
logs: [
...(latestFailed.logs || []),
`Reconciled: Gitea and Unraid now both report ${state.liveSha}.`,
],
});
}
return this.store.data.operations
.filter((item) => item.profileId === profileId)
.slice(0, 10);
}
async refreshActiveOperations() {
const active = this.store.data.operations.filter(
(item) =>
item.provider === "ssh-unraid" &&
item.type === "deployment" &&
!["success", "failed", "cancelled", "rolled-back"].includes(
item.status,
),
);
const queue = [...active];
const results = [];
const workers = Array.from({ length: Math.min(4, queue.length) }, async () => {
while (queue.length) {
const operation = queue.shift();
results.push(await this.refreshOperation(operation.id));
}
});
await Promise.all(workers);
return results;
}
}
return UnraidStateMethods.prototype;
}
module.exports = { createUnraidStateMethods };
+37 -15
View File
@@ -33,6 +33,18 @@ function resolveWindowsPowerShellPath(environment = process.env) {
return "powershell.exe";
}
function windowsUpdaterSpawnOptions(cwd) {
return {
// A detached hidden PowerShell child can exit successfully on Windows
// without ever executing its -File script. Normal Windows children survive
// their parent; unref() below releases the event-loop reference instead.
detached: false,
stdio: "ignore",
windowsHide: true,
cwd,
};
}
async function readJsonFile(filePath) {
try {
return JSON.parse(await fs.readFile(filePath, "utf8"));
@@ -279,7 +291,7 @@ class UpdateService {
));
if (!release || release.draft || release.prerelease) {
const error = new Error(
`ForgeFlow ${update.remoteVersion} has no published binary release yet.`,
`ForgeFlow ${update.remoteVersion} has no published binary release yet. The source branch was updated, but the matching Windows installer/portable assets were not published. Run Publish-Missing-Binary-Release.ps1 from the release source or publish the four required assets in Gitea.`,
);
error.code = "BINARY_RELEASE_NOT_FOUND";
throw error;
@@ -305,18 +317,29 @@ class UpdateService {
update.repo,
release.id,
asset.id,
{ downloadUrl: asset.browser_download_url },
),
this.gitea.downloadReleaseAsset(
update.owner,
update.repo,
release.id,
checksumAsset.id,
{ downloadUrl: checksumAsset.browser_download_url },
),
]);
if (binary.length < 1_000_000 || binary[0] !== 0x4d || binary[1] !== 0x5a) {
throw new Error(
"The downloaded Windows update is not a valid executable.",
const preview = binary.subarray(0, 200).toString("utf8").trim();
const looksLikeMetadata =
/^\s*[{[]/.test(preview) || /browser_download_url/i.test(preview);
const error = new Error(
looksLikeMetadata
? "Gitea returned release-asset metadata instead of the Windows executable. Upgrade ForgeFlow with the 0.9.1 installer once; later in-app updates use the actual browser download URL."
: "The downloaded Windows update is not a valid executable.",
);
error.code = looksLikeMetadata
? "RELEASE_ASSET_METADATA_RECEIVED"
: "INVALID_WINDOWS_UPDATE";
throw error;
}
const expectedSha256 = checksumBytes
.toString("utf8")
@@ -439,12 +462,11 @@ class UpdateService {
const childState = { exited: false, code: null, error: null };
let child;
try {
child = this.spawnProcess(executable, args, {
detached: true,
stdio: "ignore",
windowsHide: true,
cwd: this.sourcePath,
});
child = this.spawnProcess(
executable,
args,
windowsUpdaterSpawnOptions(this.sourcePath),
);
} catch (error) {
error.code ||= "UPDATE_HELPER_SPAWN_FAILED";
throw error;
@@ -580,12 +602,11 @@ class UpdateService {
"-UpdateId",
updateId,
];
const child = this.spawnProcess(executable, args, {
detached: true,
stdio: "ignore",
windowsHide: true,
cwd: this.updateDirectory,
});
const child = this.spawnProcess(
executable,
args,
windowsUpdaterSpawnOptions(this.updateDirectory),
);
const childState = { exited: false, code: null, error: null };
child.once?.("error", (error) => {
childState.error = error;
@@ -689,6 +710,7 @@ module.exports = {
UpdateService,
safeRepositoryPart,
resolveWindowsPowerShellPath,
windowsUpdaterSpawnOptions,
waitForUpdaterStarted,
readJsonFile,
readLogTail,
+22
View File
@@ -0,0 +1,22 @@
async function handleCommandActions(event, target, action, repository) {
if (action === "run-command") {
const command = target.dataset.command;
ui.modal = null;
if (command === "overview") ui.currentView = "overview";
else if (command === "deployments") ui.currentView = "deployments";
else if (command === "diagnostics") ui.currentView = "diagnostics";
else if (command === "settings") ui.currentView = "settings";
else if (command === "refresh") await refreshRepositories(true);
else if (command === "open-folder" && repository?.localPath)
await window.forgeflow.openPath(repository.localPath);
else if (command === "git-tools" && repository)
await loadGitTools(repository);
else if (command === "deploy-selected" && canDeploy(repository)) {
const profile = selectedProfile(repository);
if (profile) await runDeploymentPreflight(repository, profile.id);
}
render();
}
else return false;
return true;
}
@@ -0,0 +1,183 @@
async function handleDeploymentOperationActions(event, target, action, repository) {
if (action === "deploy-profile") {
if (repository && String(repository.id) !== String(ui.selectedRepoId))
selectRepository(repository.id, false);
const profile =
repository?.deploymentProfiles?.find(
(item) => item.id === target.dataset.profileId,
) || selectedProfile(repository);
ui.selectedProfileId = profile?.id || null;
if (!profile) return;
const report = await runDeploymentPreflight(repository, profile.id, {
showModal: true,
});
if (!report) return;
} else if (action === "continue-after-preflight") {
const profile = selectedRepository()?.deploymentProfiles?.find(
(item) => item.id === target.dataset.profileId,
);
if (!profile || !ui.deploymentPreflight?.summary?.ready) return;
if (profile.confirmationRequired !== false) {
ui.modal = { type: "deploy-confirm", profileId: profile.id };
render();
} else await executeDeployment(profile.id);
} else if (action === "confirm-deploy")
await executeDeployment(target.dataset.profileId);
else if (action === "rollback-profile") {
if (!repository) repository = profileRepository(target.dataset.profileId);
if (repository && String(repository.id) !== String(ui.selectedRepoId))
selectRepository(repository.id, false);
ui.modal = {
type: "rollback-confirm",
profileId: target.dataset.profileId,
};
render();
} else if (action === "confirm-rollback")
await executeRollback(target.dataset.profileId);
else if (action === "refresh-profile-state") {
if (!repository) repository = profileRepository(target.dataset.profileId);
const profile = repository?.deploymentProfiles?.find(
(item) => item.id === target.dataset.profileId,
);
setLoading(true, `Checking ${profile?.environment || "environment"}`);
try {
const state = await window.forgeflow.refreshProfileState(
repository.fullName,
target.dataset.profileId,
);
profile.state = state;
showToast(
"Environment checked",
state.healthy === false
? "Healthcheck reports an unhealthy state."
: state.liveSha
? `Server reports ${shortSha(state.liveSha)}.`
: "Connection checked; no live SHA reported.",
state.healthy === false ? "error" : "success",
);
} catch (error) {
showToast("Status check failed", error.message, "error");
}
setLoading(false);
} else if (action === "repair-missing-dockerman") {
const targets = ui.repositories.flatMap((candidate) =>
(candidate.deploymentProfiles || [])
.filter(
(profile) =>
profile.provider === "ssh-unraid" &&
profile.state?.containerRunning &&
!dockerManIntegration(profile).ready,
)
.map((profile) => ({ repository: candidate, profile })),
);
if (!targets.length) return;
if (
!confirm(
`Recreate ${targets.length} running container${targets.length === 1 ? "" : "s"} with the missing DockerMan WebUI, icon and template metadata?`,
)
)
return;
setLoading(true, "Repairing missing DockerMan integrations…");
let repaired = 0;
const failures = [];
for (const item of targets) {
try {
await window.forgeflow.applyDockerManMetadata(
item.repository,
item.profile.id,
);
repaired += 1;
} catch (error) {
failures.push(`${item.repository.name}: ${error.message}`);
}
}
await refreshDeploymentTruth(false);
showToast(
failures.length
? "DockerMan repair partially completed"
: "DockerMan integrations repaired",
failures.length
? `${repaired} repaired, ${failures.length} failed.`
: `${repaired} running container${repaired === 1 ? "" : "s"} updated.`,
failures.length ? "error" : "success",
);
setLoading(false);
} else if (action === "apply-dockerman-metadata") {
if (!repository) repository = profileRepository(target.dataset.profileId);
setLoading(
true,
"Applying DockerMan labels, template, icon and WebUI metadata…",
);
try {
await window.forgeflow.applyDockerManMetadata(
repository,
target.dataset.profileId,
);
await refreshRepositories(false);
showToast(
"DockerMan integration repaired",
"The container was recreated with labels, a persistent template, WebUI and icon metadata.",
"success",
);
} catch (error) {
showToast(
"Could not repair DockerMan integration",
error.message,
"error",
);
}
setLoading(false);
} else if (action === "reconcile-deployment") {
if (!repository) repository = profileRepository(target.dataset.profileId);
setLoading(true, "Reconciling ForgeFlow with the live Unraid container…");
try {
await window.forgeflow.reconcileDeployment(
repository.fullName,
target.dataset.profileId,
);
await refreshActiveOperations(false);
await refreshRepositories(false);
showToast(
"Deployment reconciled",
"Live SHA, container health and operation status were refreshed.",
"success",
);
} catch (error) {
showToast("Could not reconcile deployment", error.message, "error");
}
setLoading(false);
} else if (action === "open-profile-webui")
await window.forgeflow.openExternal(target.dataset.url);
else if (action === "open-operation") {
const operation = await window.forgeflow.getOperation(
target.dataset.operationId,
);
if (operation) {
ui.activeDeployment = operation;
ui.currentView = "deployment-run";
render();
startOperationPolling();
}
} else if (action === "refresh-current-operation") {
setLoading(true, "Refreshing deployment status…");
try {
const operation = await window.forgeflow.refreshOperations(
ui.activeDeployment.id,
);
updateOperationInState(operation);
if (!isTerminalOperation(operation.status)) startOperationPolling();
} catch (error) {
showToast("Status refresh failed", error.message, "error");
}
setLoading(false);
} else if (action === "open-run-url")
await window.forgeflow.openExternal(ui.activeDeployment.runUrl);
else if (action === "close-deployment") {
stopOperationPolling();
ui.activeDeployment = null;
ui.currentView = selectedRepository() ? "repository" : "deployments";
render();
}
else return false;
return true;
}
+406
View File
@@ -0,0 +1,406 @@
async function handleDeploymentProfileActions(event, target, action, repository) {
if (action === "configure-deployment") {
ui.deploymentDiscovery = null;
ui.modal = {
type: "deployment-config",
profileId: null,
provider: (ui.boot.state.servers || []).length
? "ssh-unraid"
: "gitea-actions",
};
render();
} else if (action === "edit-deployment-profile") {
ui.deploymentDiscovery = null;
repository = profileRepository(target.dataset.profileId) || repository;
if (repository && String(repository.id) !== String(ui.selectedRepoId))
selectRepository(repository.id, false);
ui.modal = {
type: "deployment-config",
profileId: target.dataset.profileId || null,
provider: repository?.deploymentProfiles?.find(
(item) => item.id === target.dataset.profileId,
)?.provider,
};
render();
} else if (action === "close-modal") {
ui.modal = null;
render();
} else if (action === "select-profile-icon") {
const iconPath = await window.forgeflow.selectImageFile({
title: "Select DockerMan PNG icon",
defaultPath:
document.querySelector("#profile-icon-file")?.value || undefined,
});
if (iconPath) {
document.querySelector("#profile-icon-file").value = iconPath;
const mode = document.querySelector("#profile-icon-mode");
if (mode) mode.value = "upload";
}
} else if (action === "clear-profile-icon") {
const input = document.querySelector("#profile-icon-file");
if (input) input.value = "";
const mode = document.querySelector("#profile-icon-mode");
if (mode) mode.value = "builtin";
} else if (action === "discover-existing-deployment") {
const serverId = document.querySelector("#profile-server")?.value;
const remoteFolder =
document.querySelector("#profile-remote-folder")?.value.trim() ||
safeCloneFolderName(repository);
if (!serverId) {
showToast(
"Select an Unraid server",
"Configure and select the server before importing an existing deployment.",
"error",
);
return;
}
setLoading(
true,
"Reading Git, Compose, Docker and DockerMan from the server…",
);
try {
const result = await window.forgeflow.discoverExistingDeployment(
repository,
serverId,
remoteFolder,
);
ui.deploymentDiscovery = { ...result, repository: repository.fullName };
showToast(
"Existing deployment imported",
`${result.runtime.containers} container(s), ${result.runtime.services} service(s) and ${result.runtime.ports.length} port mapping(s) detected.`,
"success",
);
render();
} catch (error) {
showToast("Could not import deployment", error.message, "error");
}
setLoading(false);
} else if (action === "save-deployment-profile") {
const previousProfile =
repository?.deploymentProfiles?.find(
(item) => item.id === target.dataset.profileId,
) || {};
const provider = document.querySelector("#profile-provider").value;
let maintenanceWindows = [];
try {
maintenanceWindows = (
document.querySelector("#profile-policy-windows")?.value || ""
)
.split("|")
.map((item) => item.trim())
.filter(Boolean)
.map((item) => {
const match = item.match(
/^([0-6](?:,[0-6])*)\s*:\s*((?:[01]\d|2[0-3]):[0-5]\d)-((?:[01]\d|2[0-3]):[0-5]\d)$/,
);
if (!match) throw new Error(`Invalid maintenance window: ${item}`);
return {
days: match[1].split(",").map(Number),
start: match[2],
end: match[3],
};
});
} catch (error) {
showToast("Could not save profile", error.message, "error");
return;
}
const composeFiles =
provider === "ssh-unraid"
? (document.querySelector("#profile-compose-files")?.value || "")
.split(",")
.map((item) => item.trim())
.filter(Boolean)
: [];
const composeServices =
provider === "ssh-unraid"
? (document.querySelector("#profile-compose-services")?.value || "")
.split(",")
.map((item) => item.trim())
.filter(Boolean)
: [];
const profile = {
id: target.dataset.profileId || undefined,
provider,
name: document.querySelector("#profile-name").value.trim(),
environment: document.querySelector("#profile-environment").value.trim(),
branch: document.querySelector("#profile-branch").value.trim(),
healthcheckUrl:
document.querySelector("#profile-healthcheck")?.value.trim() || "",
confirmationRequired: document.querySelector("#profile-confirmation")
.checked,
deploymentPolicy: {
frozen:
document.querySelector("#profile-policy-frozen")?.checked === true,
freezeReason:
document
.querySelector("#profile-policy-freeze-reason")
?.value.trim() || "",
requireNote:
document.querySelector("#profile-policy-note")?.checked === true,
maintenanceWindows,
},
...(provider === "ssh-unraid"
? {
serverId: document.querySelector("#profile-server").value,
remoteFolder: document
.querySelector("#profile-remote-folder")
.value.trim(),
deploymentMode: ["server-git", "push-bundle", "monitor-only"].includes(
document.querySelector("#profile-deployment-mode")?.value,
) ? document.querySelector("#profile-deployment-mode").value : "server-git",
cloneUrl: previousProfile.cloneUrl || "",
alignRemote: false,
generatedCompose:
document.querySelector("#profile-generated-compose").value ===
"true",
composeProject:
document.querySelector("#profile-compose-project")?.value.trim() ||
previousProfile.composeProject ||
"",
composeWorkingDir: previousProfile.composeWorkingDir || "",
composeFiles: composeFiles.length ? composeFiles : ["docker-compose.yml"],
composeFile: composeFiles[0] || "docker-compose.yml",
composeServices: composeServices.length
? composeServices
: [safeCloneFolderName(repository).toLowerCase()],
composeService:
composeServices[0] || safeCloneFolderName(repository).toLowerCase(),
containerName: document
.querySelector("#profile-container-name")
.value.trim(),
hostPort:
Number(document.querySelector("#profile-host-port").value) ||
null,
containerPort:
Number(document.querySelector("#profile-container-port").value) ||
null,
webUiUrl: document.querySelector("#profile-web-ui").value.trim(),
iconMode: document.querySelector("#profile-icon-mode").value,
iconUrl: document.querySelector("#profile-icon-url").value.trim(),
iconFilePath: document
.querySelector("#profile-icon-file")
.value.trim(),
dockerShell: document.querySelector("#profile-docker-shell").value,
preservePaths: document
.querySelector("#profile-preserve-paths")
.value.split(",")
.map((item) => item.trim())
.filter(Boolean),
manageDockerMan:
document.querySelector("#profile-manage-dockerman")?.checked ===
true,
forceRecreate: false,
removeOrphans: false,
adoptedFromServer: Boolean(
ui.deploymentDiscovery || previousProfile.adoptedFromServer,
),
serverSourceOfTruth: Boolean(
ui.deploymentDiscovery || previousProfile.serverSourceOfTruth,
),
workloadIdentity:
ui.deploymentDiscovery?.profile?.workloadIdentity ||
previousProfile.workloadIdentity ||
null,
detectedAt:
ui.deploymentDiscovery?.profile?.detectedAt ||
previousProfile.detectedAt ||
null,
provenance:
ui.deploymentDiscovery?.provenance ||
previousProfile.provenance ||
{},
detectedMetadata:
ui.deploymentDiscovery?.profile?.detectedMetadata ||
previousProfile.detectedMetadata ||
{},
}
: {
workflowFile: document
.querySelector("#profile-workflow")
.value.trim(),
rollbackWorkflowFile: document
.querySelector("#profile-rollback-workflow")
.value.trim(),
statusUrl: document
.querySelector("#profile-status-url")
.value.trim(),
}),
};
setLoading(true, "Saving deployment environment…");
try {
const result = await window.forgeflow.saveDeploymentProfile(
repository.fullName,
profile,
);
ui.boot.state = result.state;
ui.modal = null;
ui.deploymentDiscovery = null;
await refreshRepositories(false);
ui.selectedProfileId = result.profile.id;
showToast(
"Deployment configured",
`${profile.name} targets ${profile.environment}.`,
"success",
);
} catch (error) {
showToast("Could not save profile", error.message, "error");
}
setLoading(false);
} else if (action === "delete-deployment-profile") {
if (
!confirm("Delete this deployment profile? Operation history is retained.")
)
return;
setLoading(true, "Deleting deployment profile…");
try {
const result = await window.forgeflow.deleteDeploymentProfile(
repository.fullName,
target.dataset.profileId,
);
ui.boot.state = result.state;
ui.modal = null;
await refreshRepositories(false);
showToast(
"Profile deleted",
"Deployment environment removed.",
"success",
);
} catch (error) {
showToast("Could not delete profile", error.message, "error");
}
setLoading(false);
} else if (action === "run-deployment-preflight") {
if (!repository) repository = profileRepository(target.dataset.profileId);
await runDeploymentPreflight(repository, target.dataset.profileId);
} else if (action === "manage-deploy-key") {
const profileId = target.dataset.profileId || ui.selectedProfileId;
if (!repository) repository = profileRepository(profileId);
if (!repository || !profileId) return;
setLoading(true, "Inspecting deploy-key lifecycle without changing access…");
try {
const [inventory, rotation, revocation] = await Promise.all([
window.forgeflow.deployKeyInventory(repository, profileId),
window.forgeflow.planDeployKeyRotation(repository, profileId),
window.forgeflow.planDeployKeyRevocation(repository, profileId),
]);
ui.deployKeyLifecycle = { repositoryId: repository.id, profileId, inventory, rotation, revocation };
ui.modal = { type: "deploy-key-lifecycle" };
render();
} catch (error) {
showToast("Could not inspect deploy key", error.message, "error");
} finally { setLoading(false); }
} else if (action === "confirm-rotate-deploy-key") {
const lifecycle = ui.deployKeyLifecycle;
const targetRepository = repositories().find((item) => item.id === lifecycle?.repositoryId);
if (!targetRepository || !lifecycle?.rotation?.id) return;
setLoading(true, "Rotating and verifying the repository deploy key…");
try {
const result = await window.forgeflow.applyDeployKeyRotation(targetRepository, lifecycle.profileId, lifecycle.rotation.id);
if (result.state) ui.boot.state = result.state;
ui.modal = null; ui.deployKeyLifecycle = null;
await refreshRepositories(false, true);
showToast("Deploy key rotated", `New fingerprint ${result.profile?.serverGitAccess?.keyFingerprint || "verified"}.`, "success");
} catch (error) { showToast("Deploy-key rotation failed safely", error.message, "error"); }
finally { setLoading(false); }
} else if (action === "confirm-revoke-deploy-key") {
const lifecycle = ui.deployKeyLifecycle;
const targetRepository = repositories().find((item) => item.id === lifecycle?.repositoryId);
if (!targetRepository || !lifecycle?.revocation?.id) return;
setLoading(true, "Revoking repository access while preserving recovery…");
try {
const result = await window.forgeflow.applyDeployKeyRevocation(targetRepository, lifecycle.profileId, lifecycle.revocation.id);
if (result.state) ui.boot.state = result.state;
ui.modal = null; ui.deployKeyLifecycle = null;
await refreshRepositories(false, true);
showToast("Deploy key revoked", "Server pull is disabled; containers were not changed and recovery is available.", "success");
} catch (error) { showToast("Deploy-key revocation failed", error.message, "error"); }
finally { setLoading(false); }
} else if (action === "restore-deploy-key") {
const lifecycle = ui.deployKeyLifecycle;
const targetRepository = repositories().find((item) => item.id === lifecycle?.repositoryId);
if (!targetRepository || !lifecycle?.profileId) return;
setLoading(true, "Restoring and verifying repository access…");
try {
const result = await window.forgeflow.restoreDeployKey(targetRepository, lifecycle.profileId);
if (result.state) ui.boot.state = result.state;
ui.modal = null; ui.deployKeyLifecycle = null;
await refreshRepositories(false, true);
showToast("Deploy key restored", "Read-only server pull access is verified again.", "success");
} catch (error) { showToast("Deploy-key recovery failed", error.message, "error"); }
finally { setLoading(false); }
} else if (action === "verify-server-git-access") {
const profileId = target.dataset.profileId || ui.selectedProfileId;
if (!repository) repository = profileRepository(profileId);
if (!repository || !profileId) return;
setLoading(true, "Verifying Gitea, deploy key, server commit and runtime…");
try {
const result = await window.forgeflow.verifyServerGitProfile(repository, profileId);
ui.serverGitVerifications[profileId] = result;
render();
const blockers = result.deploymentBlockers || [];
const warnings = result.checks.filter((check) => check.status !== "pass" && !blockers.some((blocker) => blocker.id === check.id));
showToast(
result.readiness,
blockers[0]?.detail || warnings[0]?.detail || `Verified ${result.checks.length} server-pull checks without changing the server.`,
blockers.length ? "error" : warnings.length ? "warning" : "success",
);
} catch (error) {
showToast("Server-pull verification failed", error.message, "error");
} finally {
setLoading(false);
}
} else if (action === "configure-server-git-access") {
const profileId = target.dataset.profileId || ui.selectedProfileId;
if (!repository) repository = profileRepository(profileId);
if (!repository || !profileId) return;
const approved = confirm(
`Configure read-only Gitea access for ${repository.fullName}?\n\nForgeFlow creates a dedicated SSH deploy key on the selected server, adds only its public key to this Gitea repository and pins the observed Gitea SSH host key. The private key never leaves the server.`,
);
if (!approved) return;
setLoading(true, "Configuring repository-scoped Gitea access…");
try {
const result = await window.forgeflow.configureServerGitAccess(repository, profileId);
if (result.state) ui.boot.state = result.state;
await refreshRepositories(false, true);
await refreshDeploymentTruth(false);
showToast(
"Server pull ready",
`Read-only Gitea access verified at ${shortSha(result.remoteSha)}.`,
"success",
);
await runDeploymentPreflight(repository, profileId, { showModal: true });
} catch (error) {
showToast("Could not configure Gitea access", error.message, "error");
} finally {
setLoading(false);
}
} else if (action === "repair-deployment-write-access") {
const profileId = target.dataset.profileId || ui.selectedProfileId;
if (!repository) repository = profileRepository(profileId);
if (!repository || !profileId) return;
const profile = repository.deploymentProfiles?.find((item) => item.id === profileId);
const approved = confirm(
`Repair write access for ${repository.fullName} on ${profile?.name || profile?.environment || "the linked Unraid deployment"}?\n\nForgeFlow will only adjust the linked project source tree and its .forgeflow state folders. Preserved runtime paths such as appdata, data, config and logs are excluded. No container will be stopped, removed or recreated.`,
);
if (!approved) return;
setLoading(true, "Repairing scoped Unraid write access…");
try {
const result = await window.forgeflow.repairDeploymentWriteAccess(
repository,
profileId,
);
showToast(
"Write access normalized",
"Project source and ForgeFlow upload folders now use safe shared write permissions. Preserved runtime data was not changed.",
"success",
);
await runDeploymentPreflight(repository, profileId, { showModal: true });
} catch (error) {
showToast("Write-access repair failed", error.message, "error");
} finally {
setLoading(false);
}
}
else return false;
return true;
}
+185
View File
@@ -0,0 +1,185 @@
async function handleInventoryActions(event, target, action, repository) {
if (action === "scan-server-inventory") {
setLoading(true, "Scanning Docker, Compose and DockerMan workloads…");
try {
await refreshDeploymentTruth(true);
const detected = (ui.serverDiscovery || []).reduce(
(total, item) => total + Number(item.detected || 0),
0,
);
const review = (ui.serverDiscovery || []).reduce(
(total, item) => total + Number(item.needsReview || 0),
0,
);
const failures = (ui.serverDiscovery || []).filter((item) => item.error);
if (failures.length) {
showToast(
"Server scan failed",
failures.map((item) => `${item.serverName || item.serverId}: ${item.error}`).join(" · "),
"error",
);
} else {
showToast(
"Server inventory updated",
`${detected} workload${detected === 1 ? "" : "s"} detected; ${review} require manual review.`,
review ? "info" : "success",
);
}
} catch (error) {
showToast("Server scan failed", error.message, "error");
}
setLoading(false);
} else if (action === "plan-server-reconciliation") {
setLoading(true, "Building a read-only reconciliation preview…");
try {
const result = await window.forgeflow.planServerReconciliation(target.dataset.serverId);
ui.modal = { type: "server-reconciliation-plan", result };
render();
} catch (error) {
showToast("Could not build reconciliation plan", error.message, "error");
}
setLoading(false);
} else if (action === "apply-server-reconciliation") {
setLoading(true, "Applying the reviewed configuration plan…");
try {
const result = await window.forgeflow.applyServerReconciliation(target.dataset.serverId, target.dataset.planId);
if (result.state) ui.boot.state = result.state;
ui.modal = null;
await refreshRepositories(false, true);
await refreshDeploymentTruth(false);
showToast("Reconciliation applied", `${result.adopted || 0} link(s) added and ${result.refreshed || 0} profile(s) refreshed. No containers were changed.`, "success");
} catch (error) {
showToast("Reconciliation was not applied", error.message, "error");
}
setLoading(false);
} else if (action === "quick-link-server-workload") {
const serverResult = (ui.serverDiscovery || []).find(
(item) => item.serverId === target.dataset.serverId,
);
const workload = serverResult?.workloads?.find(
(item) => item.workloadId === target.dataset.workloadId,
);
const linkedRepository = ui.repositories.find(
(item) => item.fullName === target.dataset.repository,
);
if (!workload || !linkedRepository || !workload.remoteFolderCandidate) {
showToast("Automatic link unavailable", "Scan the server again and use Review & link.", "error");
return;
}
setLoading(true, `Linking ${workload.displayName} to ${linkedRepository.fullName}`);
try {
const result = await window.forgeflow.linkServerWorkload(
linkedRepository,
target.dataset.serverId,
target.dataset.workloadId,
"server-git",
workload.remoteFolderCandidate,
);
if (result.state) ui.boot.state = result.state;
ui.selectedProfileId = result.profile?.id || null;
await refreshRepositories(false, true);
await refreshDeploymentTruth(false);
showToast(
"Deployment linked",
`${linkedRepository.fullName} is linked to ${workload.compose?.workingDir || workload.remoteFolderCandidate}. Compose values were read from the server.`,
"success",
);
} catch (error) {
showToast("Could not link deployment", error.message, "error");
}
setLoading(false);
} else if (action === "preview-inventory-review") {
const reviewAction = document.querySelector("#inventory-review-action")?.value || "ignore";
const reason = document.querySelector("#inventory-review-reason")?.value.trim() || "";
const serverId = target.dataset.serverId;
const workloadId = target.dataset.workloadId;
try {
ui.inventoryReviewPlan = await window.forgeflow.planInventoryReview(serverId, workloadId, reviewAction, reason, document.querySelector("#workload-repository")?.value || null);
ui.modal = { type: "inventory-review-plan" };
render();
} catch (error) { showToast("Review preview unavailable", error.message, "error"); }
} else if (action === "apply-inventory-review") {
const plan = ui.inventoryReviewPlan;
if (!plan?.id) return;
setLoading(true, "Saving the evidence-bound inventory decision…");
try {
const result = await window.forgeflow.applyInventoryReview(plan.serverId, plan.workloadId, plan.action, plan.reason, plan.repositoryFullName, plan.id);
if (result.state) ui.boot.state = result.state;
ui.serverDiscovery = (ui.serverDiscovery || []).map((item) => item.serverId === plan.serverId ? result.inventory : item);
ui.inventoryReviewPlan = null; ui.modal = null; render();
showToast("Inventory decision saved", "Containers and Compose runtime were not changed.", "success");
} catch (error) { showToast("Inventory review failed safely", error.message, "error"); }
finally { setLoading(false); }
} else if (action === "link-server-workload") {
const serverResult = (ui.serverDiscovery || []).find(
(item) => item.serverId === target.dataset.serverId,
);
const workload = serverResult?.workloads?.find(
(item) => item.workloadId === target.dataset.workloadId,
);
if (!workload) {
showToast(
"Workload unavailable",
"Scan the server inventory again before linking this workload.",
"error",
);
return;
}
ui.modal = {
type: "workload-link",
serverId: target.dataset.serverId,
workloadId: target.dataset.workloadId,
repositoryFullName:
workload.candidates?.[0]?.repositoryFullName ||
repository?.fullName ||
ui.repositories[0]?.fullName ||
"",
remoteFolder: workload.remoteFolderCandidate || "",
};
render();
} else if (action === "confirm-link-server-workload") {
const repositoryFullName = document
.querySelector("#workload-repository")
?.value.trim();
const deploymentMode = document.querySelector("#workload-deployment-mode")?.value || "server-git";
const remoteFolder = document
.querySelector("#workload-remote-folder")
?.value.trim();
const linkedRepository = ui.repositories.find(
(item) => item.fullName === repositoryFullName,
);
if (!linkedRepository) {
showToast(
"Choose a repository",
"The workload must be linked to a ForgeFlow project.",
"error",
);
return;
}
setLoading(true, "Saving the permanent server workload link…");
try {
const result = await window.forgeflow.linkServerWorkload(
linkedRepository,
target.dataset.serverId,
target.dataset.workloadId,
deploymentMode,
remoteFolder,
);
if (result.state) ui.boot.state = result.state;
ui.modal = null;
ui.selectedProfileId = result.profile?.id || null;
await refreshRepositories(false, true);
await refreshDeploymentTruth(false);
showToast(
"Workload linked",
`${linkedRepository.fullName} now uses direct desktop-to-Unraid copy and the Compose configuration detected on the server.`,
"success",
);
} catch (error) {
showToast("Could not link workload", error.message, "error");
}
setLoading(false);
}
else return false;
return true;
}

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