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* chore: bump version to 0.16.00.16Christophe Besson6 hours1-1/+1
| | | | Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
* chore: bump version to 0.15.0Christophe Besson5 days1-1/+1
| | | | Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* chore: bump version to 0.14.0Christophe Besson11 days1-1/+1
| | | | | Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01T6jPTeocXA1BePekdsgPya
* fix(packaging): three MSIX first-run regressions found by a real sideloadChristophe Besson13 days1-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | A second-machine sideload of the MSIX target surfaced three things the earlier verification round (which only proved the package installs and runs) had missed: 1. meshbay-node missing from PATH. installer.nsh's customInstall adds node-runtime\ to HKCU\Environment at install time -- an unelevated per-user write, never blocked by MSIX's no-elevation rule, only by the more basic fact that an AppX/MSIX install runs no custom code at all. packaging/win/ensure-node-path.ps1 (idempotent, no admin verb) plus main.js's winEnsureNodeOnPath() do it from the app itself instead, once per launch, shipped to Full and MSIX (not Light, nothing to add there). Verified live via the Node inspector protocol: the entry was in HKCU\Environment\Path after a launch, absent before. 2. A daemon that crashes on startup failed silently. spawnNodeDetached() used stdio: 'ignore', so a real crash reproduced live (a second instance colliding with the first on 127.0.0.1:18000) left waitForNode()'s generic 60s timeout as the only failure ever shown. spawnNodeDetachedWatched() pipes stdio and watches ~2.5s, rejecting immediately with the daemon's own stderr on an early exit; a survivor has its streams released and runs fully detached exactly as before. First version bounded the captured text by line count and a live test showed that cut the actual OSError line -- two uvicorn/asyncio tracebacks followed it in the real capture -- so it is bounded by characters instead. 3. No hint that a startup-mode choice exists. The install-time radio page was the only place this was ever offered, and nothing replaces it now that no install-time page can exist at all. SetupWelcome (the existing first-run banner) grew a conditional hint, shown only while a bundled node is present and neither autostart nor service mode is configured yet. Considered and rejected: linking straight to the Node page -- its route is gated on a linked hub node key, false on the exact fresh-install screen this hint targets, so the link would have been dead on arrival. New key setup.node_startup_hint, added to all ten locale catalogues. test_packaging_win.py gained six tests pinning all three (69 total). Full plan and verification detail: C:\Users\admin\devel\msix-installer.md section 13 (out of repo). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* feat(packaging): an MSIX target for Microsoft Store submissionChristophe Besson2026-09-111-2/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Store certification of the NSIS "MSI/EXE" submission failed on three checks (silent-install verification, Add/Remove Programs entry, bundleware check) -- traced and reproduced live to one cause: SmartScreen blocks an unsigned, internet-downloaded installer at the shell layer before Microsoft's own unattended validation bot ever gets to run it. MSIX sidesteps this class of failure entirely: submitted through the Store's native pipeline, there is no browser-download-then-launch step for SmartScreen to intercept, and Microsoft signs the package itself at publish time -- free, and specific to this submission type (Trusted Signing remains a paid service for the MSI/EXE path). Full plan and findings: C:\Users\admin\devel\msix-installer.md (out of repo). electron-builder.msix.yml carries the same bundle as Full (node runtime, ffmpeg, both service scripts) -- an AppX/MSIX install never elevates, by design, but that changes only *when* the two elevated operations can run, not whether the daemon ships. No main.js changes were needed: the on-demand elevation path for service-mode (winElevateServiceMode(), driven from the Node page) already existed for a different reason and depends only on service-mode.ps1 being present as an extraResource, true for any packaged Windows target. identityName/publisher/publisherDisplayName are the real values from Partner Center's app-identity reservation, not placeholders. build-win-msix.ps1 points electron-builder at the system Windows 10 SDK (auto-detected) instead of letting it download its own bundled copy -- that download's 7z extraction creates symlinks this target never uses and fails without SeCreateSymbolicLinkPrivilege, reproduced on this machine. build/appx/ carries the four tile images the AppX target requires regardless of showNameOnTiles, generated once from the existing app icon (see that directory's README) since the system-SDK redirect has no vendor samples to fall back to. build/appx-extensions.xml declares windows.startupTask by hand rather than via electron-builder's addAutoLaunchExtension, which always targets the Electron shell -- this points at the bundled node binary instead, matching what "starts at sign in" already means for Full. Verified live via a signed sideload install (self-signed test cert, cleaned up after): the package installs and the app runs correctly. One finding worth carrying forward -- the declared network capabilities (internetClientServer, privateNetworkClientServer) do not create any firewall exemption for this app, most likely because automatic capability-based exemption is an AppContainer-sandbox property and this app deliberately runs full-trust, outside any sandbox. Not a regression: no install-time elevation was possible either way, so the cost is the same one-time OS firewall prompt firewall.ps1's own header already documents as its fallback today. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* feat(packaging): a Light installer target with no bundled node runtimeChristophe Besson2026-09-111-1/+2
| | | | | | | | | | | | | | | | | | | | | | | | | MeshBay Light ships the Electron client + UI only -- no PyInstaller node freeze, no ffmpeg, no service install/autostart. Two standalone electron-builder configs (Full via package.json's build field, Light via electron-builder.light.yml passed with --config, which reads only that file -- confirmed against app-builder-lib's own config loader) rather than one config branching on a flag. build-win-common.ps1 holds the steps both orchestrators share (Node check, npm ci, Electron bump, sync-ui) so build-win.ps1 (Full) and the new build-win-light.ps1 cannot drift apart; build-win.ps1 is refactored to dot-source it with no behavior change (rebuilt and diffed byte-identical output). installer-light.nsh keeps the one thing Light still needs -- an unconditional firewall rule, since the client listens too -- and none of the service-mode/autostart machinery installer.nsh carries, which has nothing to gate without a bundled node. dist-light/ (Light's own electron-builder output dir) gets its own .gitignore line since the bare dist/ rule does not match it. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* feat: MNP 3.0 — a transfer needs a leaseChristophe Besson2026-09-091-2/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Stage 4 of ~/next/improve-downloads.md, the flag day. Leases become compulsory and a 2.x peer is refused at the handshake. **The bound on leaseless reads (§3.4.1) did not exist, and it is what makes the rest mean anything.** Browsing a group is never subject to a transfer slot — that is an operator decision and a requirement: a member must be able to browse a group at capacity exactly as they browse an idle one. But "not leased" cannot mean "unbounded", or a client that simply omits `tr` transfers outside every cap and the caps are decoration. A session may now read two distinct files at once without a lease: one because a viewer looks at one file, two so that prefetching the next photo stays possible. A count of files and not a byte budget, because a RAW photo is 60-80 MB and is browsing while a 40 MB archive is a download, and no size threshold separates them. Thumbnails, posters and cover art never reach this check at all — they resolve out of the node's own cache. It is a fairness control among cooperating clients, in the company of `max_concurrent_streams`, and is not a defence against a member determined to saturate a node's disk. That member is a member, and the answer to them is `member revoke`. **MNP_VERSION and MNP_MIN_SUPPORTED both move to 3.0**, on both sides. The messages are additive; the requirement is not. An opt-in switch would leave a leaseless branch reachable on every node, which is finding C6's lesson — a transport that accepted a bare JWT — one feature later. **The desktop client now checks before it connects.** The SPA is served by the hub and picks up a new client on reload; the application ships its own interface, so an un-updated one would sign in, list groups, and fail every connection with `version_too_old` — a refusal in a protocol vocabulary with nothing anyone can act on. It asks `/v1/hub/version` for `client.minimum` and says so plainly instead. An unreachable hub is deliberately *not* "too old": a captive portal or a closed laptop must not make starting the application impossible. **Every package is aligned on 0.13.0.** `meshbay-client/package.json` had drifted to 1.0.0 while the Python packages were on 0.12.0 — invisible until something compared those numbers, and then load-bearing: an installed client announcing 1.0.0 sorts above a 0.13.0 minimum and walks through the gate meant to stop it. That is stated in the code rather than left to be rediscovered; it is acceptable exactly once, because the operator is updating every client, node and hub by hand for this flag day. A new test fails if two packages ever disagree again, and another fails if the hub would refuse the client the tree builds. Node suite 1209 passed, hub suite 861 passed. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01HCGdheDLxGReuKHga3BtST
* chore(client): bump electron 44.1.1 → 44.2.0 in package.jsonChristophe Besson2026-09-061-2/+2
| | | | Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
* feat(packaging): bundle ffmpeg in the Windows installer by defaultChristophe Besson2026-09-051-1/+3
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | winget install ffmpeg was considered and rejected as the mechanism: it needs network access and winget/App Installer present at the exact moment setup runs, and its failure mode is silent -- video just does not stream, with nothing pointing back at ffmpeg. Not viable for a non-technical install. MeshBay transcodes browser-incompatible video to H.264 (-c:v libx264, webrtc_server.py) -- a real encode, not remux -- so this needs a genuine GPL ffmpeg build; no LGPL-only build includes an H.264 encoder, since libx264 itself is GPL. packaging/win/fetch-ffmpeg.ps1 (new) Downloads, checksum-verifies and stages ffmpeg for the build. Source: BtbN/FFmpeg-Builds' Windows x86_64 gpl-shared preset -- shared DLLs rather than two independent static binaries, which is what nearly tripled this: the "full" static build many devs already have via winget is ~220 MB *per executable*. Pinned to one dated release tag (immutable once published) and its own sha256, not the "latest" alias BtbN repoints on every auto-build -- verified by hand first (downloaded, hash matched, ran a real encode+probe with libx264) before pinning. ffplay.exe (an SDL2 player, ~17 MB) is dropped; MeshBay never invokes it. Cached after the first build. Runs its own smoke test (encode + probe a real clip) so a broken fetch fails at build time, not for the first user who tries to watch something. packaging/win/LICENSE-ffmpeg.txt (new) GPLv3 notice + where the corresponding source is, required because this redistributes a GPL binary even though it is unmodified and only ever invoked as a subprocess. Ships alongside ffmpeg.exe in the installer. build-node-runtime.ps1 / build-win.ps1 Bundling is now the DEFAULT, replacing the old opt-in -FfmpegDir (which copied from a local directory and left most builds without ffmpeg at all). -SkipFfmpeg opts out for a smaller, streaming-less local-iteration build. Also fixes a real bug the ffmpeg change exposed rather than caused: the final `--help` smoke test did `$help -notmatch "meshbay-node"` against $help captured as a PowerShell ARRAY (one element per line) -- -notmatch on a collection is a FILTER, not a boolean test, and returns the non-matching elements; any non-empty array is truthy in if() regardless of content. Once --help wrapped past one line (it now does, with autostart/service in the verb list) this threw unconditionally. Fixed by joining to one string before matching, and pinned by a new test so a future edit cannot silently reintroduce the collection-vs-scalar trap. Verified: downloaded and hashed the pinned release by hand (matches), ran a real libx264 encode + ffprobe against the extracted build, fetch-ffmpeg.ps1 end to end (161 MB staged), a full build-node-runtime.ps1 run (308 MB node-runtime/) and a full installer build (MeshBay-Setup- 1.0.0.exe, 210.8 MB with ffmpeg bundled). Node suite 850 pass / 25 skip. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* feat: opt-in Windows service mode (boot-time, one elevation) + v1.0.0Christophe Besson2026-09-041-1/+9
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | The per-user Startup-folder launcher (W3) only ever runs after this user signs in. A real Windows Service would start earlier, but under LocalSystem/NetworkService -- accounts with no normal profile, so %LOCALAPPDATA%\meshbay\ (config, keystore, data) would not exist for it. Relocating storage to make that work is real surgery, deliberately not done here. Instead: a Scheduled Task, created once with admin rights, that runs AS THIS USER at boot without needing them to sign in first. `schtasks /create ... /ru <user> /rp ""` with no `/it` registers an S4U (Service For User) logon -- no password stored anywhere, and unlike LocalSystem it loads this account's own profile, so config_dir()/ data_dir() need zero changes. The cost: S4U carries no network credential, which the node never needed -- everything it touches is local disk plus outbound internet. Creating the task needs admin (a boot trigger touches system-wide scheduler state, the same reason /sc onlogon needed it); querying/starting/stopping an existing one does not -- Task Scheduler grants the owning user that much itself, which is what lets the Node page's Start/Stop/Restart drive it with no further UAC prompts. meshbay_node/platform.py service_install/_remove/_status/_run/_end -- mirrors autostart_* but for the Scheduled Task; TASK_NAME moved here (was decorative before) meshbay_node/daemon.py new `service install|remove|start|stop|status` verb; restart-daemon and reset now check for the service task too packaging/win/service.ps1 the installer-side equivalent (extraResource); status/run/end never self-elevate -- only install/remove do, exactly matching what Task Scheduler itself requires packaging/win/service-mode.ps1 ONE elevated helper running service.ps1 + firewall.ps1 together, so choosing service mode costs exactly one UAC prompt, not two build/installer.nsh the install-time choice: "run as a background service?" (one elevation, both jobs) vs the existing per-user + separate firewall question. Checked first, unelevated, so re-running setup with everything already configured asks nothing. Uninstall offers the matching one-elevation cleanup, default No. src/main.js winServiceTaskStatus/Run/End, wired into node:installed, node:service-status/-stop/-restart and node:start: when the Scheduled Task exists, drive it; otherwise fall back to the existing per-user spawn/kill path. This is the hard requirement -- Start/Stop/Restart from the Node page must work in either mode. node-page.js / locales a hint explaining why the per-user autostart toggle is absent when service mode is active (info.mode from the backend, no new field to gate on -- it just isn't sent in that case) package.json: 0.1.0 -> 1.0.0. Verified: electron-builder compiles the new NSIS choice logic and ships all three scripts; service.ps1's S4U install fails cleanly (Access denied) when run unelevated, and its status/run/end never touch "runas". Cannot verify the elevated success path myself (no admin in this session) -- that needs a real UAC click. Node suite 843 pass / 25 skip; test_packaging_win.py pins the one-elevation property, the S4U flags, and that main.js actually checks the service task in all three handlers. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* feat(packaging): offer one elevated firewall step instead of two dialogsChristophe Besson2026-09-041-0/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Installing used to mean clicking through two separate Windows "Allow access" prompts later — one for MeshBay.exe, one for meshbay-node.exe — each confusing on its own and worse before the exe carried a version resource. Adding a firewall rule needs admin, and the installer is deliberately per-user with no elevation, so this can only ever be opt-in. packaging/win/firewall.ps1 (new, shipped as an extraResource at resources\firewall.ps1): idempotent add/remove of the two inbound UDP rules ("MeshBay", "MeshBay Node"), grouped, logged to %TEMP%\meshbay-firewall.log. Locates both executables from its own path, no arguments needed beyond the action. build/installer.nsh: customInstall asks "Allow MeshBay through Windows Firewall now?" and runs firewall.ps1 via NSIS ExecShellWait "runas" — one UAC prompt — only when not ${Silent}; declining or dismissing UAC falls back to Windows' own per-process prompts, unchanged. customUnInstall offers the same in reverse, defaulted to No (a stale rule for a deleted exe is inert, so this should not nag on the way out) and skipped for a silent uninstall. Verified: rebuilt MeshBay-Setup-0.1.0.exe (electron-builder compiles the new LogicLib.nsh / ExecShellWait NSIS successfully); firewall.ps1 run unelevated fails cleanly into its log ("Access is denied") rather than silently doing nothing, confirming the fallback path. Node suite 835 pass / 25 skip. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* feat: Windows installer (W4) — one per-user NSIS package, client + nodeChristophe Besson2026-09-041-2/+25
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | `npm run dist:win` produces MeshBay-Setup-<version>.exe: the Electron client and, beside it under resources/node-runtime/, the frozen meshbay-node daemon (meshbay-common inside it). No hub. Per-user, no elevation — matches the W3 constraint that a logon-triggered scheduled task needs admin. electron-builder / package.json build.win nsis, build/icon.ico, extraResources -> node-runtime/ build.nsis oneClick:false perMachine:false allowElevation:false allowToChangeInstallationDirectory:true dist:win -> packaging/win/build-win.ps1 (mirrors dist -> build-client.sh) packaging/win/ meshbay-node.spec + node-entry.py PyInstaller freeze of meshbay_node.daemon:main. The awkward deps (aiortc, av, aioquic, pydantic_core, uvicorn, watchdog, guessit, blake3, tzdata) are pulled in whole with collect_all — that list is expected to grow when a frozen run raises ModuleNotFoundError. build-node-runtime.ps1 throwaway venv -> pip install -> PyInstaller -> packages/meshbay-client/node-runtime/ (gitignored) build-win.ps1 Node>=22 check, npm ci, Electron bump, sync-ui, node runtime, electron-builder --win nsis bump-electron.mjs the Chromium-CVE "build against latest Electron" policy, out of the PS script (5.1 here-string terminator rules) README.md PyInstaller, not the python-embed zip: the frozen meshbay-node.exe is a genuine relocatable single binary, which is what src/main.js:findNodeBinary spawns (process.resourcesPath/node-runtime/meshbay-node.exe when packaged) and what the W3 autostart launcher points at. The embeddable zip needs pip to make that wrapper and the wrapper bakes in an absolute interpreter path. build/installer.nsh: on uninstall, taskkill meshbay-node.exe and delete the W3 Startup .vbs (it would point wscript at a deleted binary every sign-in). %LOCALAPPDATA%\meshbay\ — node.toml, keystore.enc — is never touched. ffmpeg is not bundled by default (node finds it on PATH); build-win.ps1 -FfmpegDir copies ffmpeg.exe/ffprobe.exe in for a self-contained installer. Verified on the Windows guest: PyInstaller freeze builds first try (node-runtime 147 MB), frozen `meshbay-node status` talks to the live daemon's loopback API; electron-builder --win nsis produces MeshBay-Setup-0.1.0.exe (155 MB), oneClick/perMachine flags applied, node-runtime bundled at the path findNodeBinary expects. test_packaging_win.py (14) pins the config invariants and the NSIS <-> platform.py autostart seam. Node suite 798 pass / 34 skip. Open: Authenticode signing (13.9 — unsigned => SmartScreen), Windows CI (18.3), electron-updater. First clean-machine install + DPAPI + autostart round-trip is a manual check. Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
* chore(client): build against the latest Electron, and stop defining the ↵Christophe Besson2026-09-031-22/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | package twice Chromium CVEs are fixed in Electron releases, and a client built against an old one ships those holes to every user. That is a certain harm; a build that breaks on a new Electron is a repairable one. build-client.sh now bumps to the latest on every build, prints the comparison, and lets the build fail if it cannot cope — the failure is the signal to fix, not a reason to stay behind. It writes package.json and the lockfile on purpose: the new pin is meant to be committed. A registry it cannot reach is a warning, not a failure. Exercised by pinning back to 42.9.2 and building: "==> Electron 42.9.2 -> 44.1.1", exit 0, electron=44.1.1 in the packaged output. Note npm audit would have said nothing about any of this — Chromium CVEs fixed in Electron do not reliably reach the npm advisory database. Separately, package.json declared linux.target [deb, rpm] with its own deb/rpm depends, so `npm run dist` built a second package under the same name. The two had drifted: /opt/MeshBay/meshbay-client against /opt/meshbay-client/meshbay, and Depends: python3-meshbay-common naming none of the Electron runtime libraries the real DEBIAN/control lists — it would have installed cleanly and then refused to start. Nothing in the tree referenced `npm run dist`, which is why the drift was free to happen. That config is gone, "dist" delegates to build-client.sh, and test_desktop_shell.py refuses its return. `--dir` was re-run with no linux block at all: exit 0, same binary build-client.sh consumes. It needs appId, productName and files, nothing else. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01AbwJDbNTkiRUh7HTWEoyss
* chore(client): declare author and homepage in the client package.jsonChristophe Besson2026-09-031-0/+2
| | | | | | | | | | | | | | | | | | | | | | | | | | electron-builder warned `author is missed in the package.json` on every build, including the `--dir` one build-client.sh runs, and refused the deb/rpm targets outright over it and over a missing homepage. Both were pre-existing — builder 25 emitted the identical warning — and had simply never been hit, because those targets had never been built. The values are copied verbatim from packaging/deb/meshbay-client/DEBIAN/ control, which already declared them, so the two cannot disagree. Not added: `desktopName`, despite the warning that asks for it. The path this project actually ships (build-client.sh + packaging/desktop/ meshbay.desktop) already sets StartupWMClass=MeshBay, and src/main.js sets --class to match for dev runs. The warning concerns the .desktop electron-builder generates for its own deb/rpm targets, which is not what gets installed. That is the larger thing found here and left open: `npm run dist` defines a second, incompatible layout for a package of the same name — /opt/MeshBay/meshbay-client against /opt/meshbay-client/meshbay. See ~/next/npm-audit.md §9. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01AbwJDbNTkiRUh7HTWEoyss
* chore(client): clear 12 npm advisories — electron-builder 26, electron 42.11.1Christophe Besson2026-09-031-4/+4
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | npm audit reported 12 findings (11 high, 1 critical), every one transitive and every one reached through electron-builder. The critical was tar (<=7.5.20), a family of path-traversal and symlink-poisoning advisories. electron-builder is a devDependency and build.files is src/** and ui/**, so none of it ships: the exposure was to whoever builds a release, not to users. Real, since a build machine producing signed artefacts is worth attacking, but it should not have been read as "the client has a critical vulnerability". electron-builder ^26.15.3 takes the audit to 0 on its own. It is a major, so it was measured rather than assumed: a --dir Linux build passed before and after, and the config used here (appId, files, linux.target, deb/rpm.depends) is nowhere near where 26's breaking changes are. The produced app.asar is not byte-identical to 25's, which matters only for 18.7's hash-and-compare story and is a release note, not a defect. electron ^42.11.1 is a patch bump inside the range already declared, where Electron ships its security backports. The built binary was launched under xvfb: two processes alive after 25s, empty log. That is the part that counts — test_desktop_shell.py pins the security contract by reading source, so it would stay green through any runtime regression. protobufjs's override floor goes ^7.5.5 -> ^7.6.5. The override itself is load-bearing and must stay: removing it drops castv2-client's protobufjs to 6.11.6, which carries a critical RCE advisory — and unlike everything above, protobufjs ships inside the application. But ^7.5.5 permitted 7.5.5, which is inside a high advisory's range (<=7.6.4); npm happened to resolve 7.6.6, so the protection was incidental rather than structural. Electron 44 is deliberately not taken here: two majors and a different Chromium, and nothing in the suite would notice a regression. It needs its own launch session. Audit and evidence: ~/next/npm-audit.md (not in the repo). Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01AbwJDbNTkiRUh7HTWEoyss
* feat(packaging): 4-package .deb/.rpm build system under /optChristophe Besson2026-08-311-0/+3
| | | | | | | | | | | | | | | | | | Shared venv architecture: meshbay-common owns the Python venv with all pip deps pre-installed; hub and node add only their code into it. Client is a standalone Electron app. No pip runs at install time. - Add build scripts (packaging/build/) for common, hub, node, client - Add orchestrator build-packages.sh with deb/rpm auto-detection - Add .deb control/postinst for all 4 packages - Add .rpm specs for all 4 packages (replaces python3-meshbay-common) - Add Gnome .desktop launcher and icon resizing - Add firewalld services (meshbay-cast, meshbay-node) and UFW profiles - Update systemd units to use /opt/meshbay-common/venv/bin/ paths - TMDB token baked into node package at build time via QE/node.env - Fix package-lock.json sync for protobufjs override Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
* fix: move meshbay-client build scripts out of gitignored build/ dirChristophe Besson2026-08-221-1/+1
| | | | | | | | The root .gitignore ignores build/ (Python convention), which silently prevented sync-ui.js and its companion index.html from being committed. Rename to scripts/ so the files are tracked normally. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
* feat: LAN Wi-Fi casting to Chromecast via local HTTP relayChristophe Besson2026-08-211-1/+8
| | | | | | | | | | | | | | | | | | | | | | Re-serve decrypted fMP4 video over HTTP on the LAN so a Chromecast can play the stream. The relay runs in the Electron main process — same trust boundary as downloads and MSE playback. - cast-relay.js: HTTP server with BoxAccumulator (reassembles WebRTC chunks into moof+mdat pairs), ring buffer, backpressure, finish() for clean end-of-stream, fixed port range 19550-19553 - cast-chromecast.js: mDNS discovery (bonjour-service) + CASTV2 protocol (castv2-client), connect/reload/disconnect lifecycle - Seek-aware: relay restarts on every seek, Chromecast reloads new URL; generation counter prevents stale async errors from killing active restarts; landingPlayheadRef suppresses programmatic seeking events - Device picker in video top bar with scan, device selection, copy-URL fallback, and cast status indicator - IPC bridge (main/preload/platform) for start/push/stop/finish/status/ discover/chromecastConnect/chromecastReload/chromecastDisconnect - Phase 3 design doc for DLNA/Smart TV in docs/cast-smart-tv.md Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
* fix(client): the desktop client runs, and running it corrected three thingsChristophe Besson2026-08-181-6/+20
| | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | | Electron 42 / Chromium 148, launched under xvfb. The packaged interface mounts over `app://` with a secure context, `crypto.subtle` present, Argon2 WASM loaded, and no console errors. Three statements in the design were wrong, and only launching it found them. **A CSP in a `<meta>` tag silently drops `frame-ancestors`.** Chromium says so in the console. A policy carrying a directive that does nothing is worse than one without it, so the policy is sent as a header by the protocol handler — which is also the only thing serving the interface, so one source instead of two. **`secure: true` is not what makes the service worker register.** Chromium refuses a worker on a custom scheme whatever its privileges: "The URL protocol of the current origin ('app://meshbay') is not supported". The application has no service worker and needs none — it saves through a native dialog, which is the better of the two paths. `sw.js` stays in the package because the same files serve the browser, where it is one of only three ways to write a large file. What `secure: true` is actually for was measured at the same time: without it **the whole of `crypto.subtle` is undefined**. The first probe loaded a `data:` URL and every algorithm failed with TypeError, AES-GCM included — which is why the probe was rewritten before believing its answer. X25519 and Ed25519 are both present on Chromium 148, settling the version floor left open as O6. **The renderer cannot call the hub.** Its origin is `app://meshbay` and CORS refuses it. The hub has *no CORS middleware at all* — its API is reachable from no web origin whatever — and that is worth keeping. Widening it for `app://meshbay` would be worse than it looks: that origin is not a credential, since any Electron application can claim the same scheme and host name. So every hub call leaves from the main process, exactly as saving a file does, and it refuses any origin that is not the hub the user signed in to. `platform.apiFetch()` is `fetch` in a browser and the bridge in the application, so no caller has to know which it got. `transport.js` reaches it through a global because it is a classic script, not a module — the alternative was a second fetch path, which is how two callers of one hub start disagreeing about how to reach it. Verified from inside Electron: the main process gets 200 from /v1/hub/version, the renderer is refused by CORS, and **a script served by the hub is refused by the policy** — T3's mitigation demonstrated rather than asserted. Build note, written into the README because it will bite the next person: **Ubuntu 24.04's nodejs 18 cannot install Electron at all** — the download script `require()`s an ESM module, which Node gained in 22. Node 24 LTS, checksum-verified against nodejs.org, is what this was built with. package-lock.json is committed; builds use `npm ci`, not `npm install`. 799 tests pass, e2e.py still passes end to end. The session harness needed a platform stub: it lifts `hubFetch` out of app.js as text and runs it, so the adapter is now part of the environment it models. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* feat(client): the platform seam, and an Electron shell that has never been runChristophe Besson2026-08-181-0/+29
Stage D, and the honest half of it. D1 — the seam (done, and verified) ---------------------------------- `static/platform.js`. `HUB` becomes `platform.hubBase()` and the transport is built with the same base, so one address has one source. In a browser it returns '' and every path stays relative to the origin that served the page — the acceptance criterion for this split was "the browser SPA behaves identically", and it does. `platform.js` joins `_ASSETS`, or a change to it would not move the content hash and a cached browser would never ask for it. D2 — the shell (written, never launched) ----------------------------------------- **There is no npm on this machine. Electron was never installed and `packages/meshbay-client/` has not been run once.** That is stated here rather than discovered later. What is there: a main process serving the packaged interface over a privileged `app://` scheme (`secure` and `standard` are not cosmetic — without them the service worker refuses to register and streamed downloads break silently), a preload exposing an enumerated bridge that never passes a filesystem path, a window with `sandbox`, `contextIsolation` and no node integration, navigation away from the package refused, and a CSP where the hub is reachable over connect-src and is not a script source. The hub address arrives as a process argument because `platform.hubBase()` runs before anything can await. `test_desktop_shell.py` pins each of those by reading the source — the treatment `test_downloads.py` already gives the three browser save paths. It catches a property being removed and proves nothing about the application running. Two were checked by breaking them. The interface is *copied* into the package by `build/sync-ui.js` from the hub's static directory, and `ui/` is gitignored: a silent fork is the only real way to end up maintaining the interface twice. D3 — partial ------------ The bridge, and the part worth having now: safeStorage's backend is reported rather than assumed. On Linux it falls back to a fixed key when no keyring is running, silently — someone who believes the OS is holding their keys is told when it is not. The native key lifecycle belongs with D4 and needs a running application to mean anything. D8 — partial, and a real defect found -------------------------------------- `meshbay-node.spec` installed the SYSTEM template — the one carrying `User=%i` — into `%{_userunitdir}`. A user unit already runs as its owner and cannot carry `User=`; systemd refuses the file, so the packaged unit could never have started. Nothing noticed because nobody had built and installed the RPM. Two units now: the template to `%{_unitdir}`, and a new `meshbay-node-user.service` that a person enables themselves without a password — which is what lets the desktop client install a node without asking for one. It carries ExecReload, so `meshbay-node reload` does not have to stop a service somebody is streaming from, and documents the drop-in for a drive outside the home, RequiresMountsFor included. 798 tests pass; e2e.py still passes end to end. Nothing here was built or launched: no npm, no rpmbuild. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>