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ab747ce53d |
Say what "open in container" is doing, and land on the pane doing it
Build App (Preview) / compute-version (pull_request) Successful in 4s
Build App (Preview) / create-release (pull_request) Successful in 1s
Build App (Preview) / build-macos (pull_request) Successful in 2m40s
Build App (Preview) / build-linux (pull_request) Successful in 5m33s
Build App (Preview) / build-windows (pull_request) Successful in 5m40s
Build App (Preview) / prune-previews (pull_request) Successful in 1s
Opening a page is a container probe, a browser launch, a page load and often a viewer start — several seconds during which the only feedback was the click itself. Worse from a terminal, where the result appears in a pane the user is not looking at. So: the backend emits progress on the existing `container-progress` channel at each step, the Browser tab renders that line whenever it is set — the progress belongs to the project, not to whoever pressed the button, which is what lets a terminal-initiated open report anywhere at all — and the terminal's "In container" now selects the project's Browser tab before starting, so the line has somewhere to appear. Selecting a sub-tab from outside needed a route: `ProjectHome` keeps it in local state, so `openProjectHomeTab` parks a request in the store and the pane consumes it once. Consumed once, so it cannot fight the user's own clicking afterwards. Preview releases now prune themselves to the newest KEEP_PREVIEWS (2), in a job that runs only if all three platforms published — a half-finished run must not evict a good older build. The cleanup workflow's manual sweep stays as the backstop. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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f68d9c5788 |
Open a page in the container's browser, at a viewport you choose
Build App / compute-version (pull_request) Successful in 4s
Build App / build-macos (pull_request) Successful in 2m31s
Build App / build-linux (pull_request) Successful in 5m14s
Build App / build-windows (pull_request) Successful in 5m56s
Build App / create-tag (pull_request) Skipped
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The pane could only ever watch a browser something else had published. This opens one: a URL and a viewport, launched inside the container and bound so the pane picks it up. Two uses, one action — a sign-in page, where the callback listener is *in* the container and the loop closes with no host round trip and no auth bridge, and a dev server on container loopback, which is how you watch a UI Claude is building. Reachable from both places the question comes up: "Open a page…" in the Browser tab, and an "In container" button on the terminal's URL prompt. Verified first, because it decided the design: a second client cannot join a bound browser. `chromium.connect()` against the published endpoint times out in every URL form (`ws+unix://…`, with and without the trailing path) — that socket speaks the dashboard's own transport, not the public connect protocol. Whoever launches is therefore the only process that can drive, so the helper is resident and holds the handle, and live resize applies to pages we opened and never to `@playwright/mcp`'s. Those take `--viewport-size` / `PLAYWRIGHT_MCP_VIEWPORT_SIZE` at launch, which the docs now say. The viewport is the interesting half. Resizing the *window* does nothing to the page — the viewer is a CDP screencast, so a bigger window is the same pixels drawn larger, which is why pages have been looking like they were rendered small. `page.setViewportSize()` genuinely reflows: measured against a `@media (max-width: 900px)` rule, it fires at 800×600 and clears at 1440×900. Match-window mode pushes the pop-out's settled size into it, debounced by generation counter because a drag emits `Resized` continuously and each one costs a container exec. Control is a polled JSON file in /tmp: no port, no second listener, nothing added to the proxy's surface, and URLs travel as argv to `node` so no shell ever parses one. A re-open with a helper already up navigates instead of relaunching — otherwise the second page would throw away the session the first one just signed into. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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bd72781482 |
Install one Playwright tree, and notice when a container has two
Setup installed `playwright@latest` and `@playwright/cli@latest` together. Verified on a real container, that produces a tree that looks right and is broken: `@playwright/cli@0.1.18` pins `playwright-core@1.63.0-alpha`, npm hoists it, and `playwright@latest` (1.62.1) nests its own `playwright-core@1.62.1` beside it. The two cores want different browser revisions. The browser step runs the *resolved* — hoisted — CLI, so it downloads chromium-1237. Every script Claude writes says `require("playwright")`, gets the nested 1.62.1, and dies with: Executable doesn't exist at …/chromium_headless_shell-1234/… while the pane reports a browser installed, because one is. This is deterministic, not bad luck: every container set up through the pane lands in it. So the viewer package is installed first, and the `playwright` version installed after it is the one that package pins — read from the manifest npm just wrote, falling back to `@latest` only if it cannot be read. One core, one browser revision, both halves agreeing. Re-running "Set up Playwright" repairs an already-split tree. Detection now asks the question directly rather than listing a cache: it asks each resolved copy for `chromium.executablePath()` and whether that file exists — the viewer's copy *and* the one `require("playwright")` returns, since those are routinely different. `needs_browser()` covers "installed but not launchable", and the pane names both halves instead of saying "install a browser" over a cache that visibly has one. An absent field is "the probe didn't answer", never "skewed": containers predating these fields must not be told their browsers are wrong. The Rust side gets that from Option; the TypeScript mirror needed `!= null`, which an existing test caught. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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a41d93ea46 |
Fix the review's findings: drag on pointer events, read the window back
Build App / compute-version (pull_request) Successful in 4s
Build App / build-macos (pull_request) Successful in 2m30s
Build App / build-linux (pull_request) Successful in 5m11s
Build App / build-windows (pull_request) Successful in 5m23s
Build App / create-tag (pull_request) Skipped
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Ten findings from the review of the previous commit, all applied. **The tab drag is now pointer events, not HTML5 drag-and-drop.** Two independent reasons, either one fatal. Tauri's `dragDropEnabled` blocks HTML5 drag inside the webview on Windows, and it cannot just be turned off — `TerminalView` needs Tauri's native drag-drop event, which is the only one that carries dropped *file paths*. And an HTML5 drag carries a `DataTransfer`: released over any text field in the app, the default handler types `term:<uuid>` into it, and in Config that is then saved with the project. Pointer events have neither problem, and the drag is measured from the tabs on screen rather than from the event target, so the marker and the drop agree even over the marker itself. Escape abandons a drag; a press under 4px stays a click; the click that ends a drag does not select. **`Ctrl+Shift+←/→` no longer swallows word-wise selection.** It is bound on `document` in the capture phase, so in any input — the rename field, Config, Settings — it was taking the OS's extend-selection chord *and* silently reordering the strip. Guarded by `inTextField()`, which excludes xterm's helper textarea: that is an input-method shim, and the terminal is where the shortcut matters most. **The pop-out's state is read from the window, never remembered.** The pane is unmounted whenever another Project Home sub-tab is selected, so "Keep on top" came back Off over a window still floating on top. `get_browser_view_popout_state` returns both facts from the window itself, and the change event carries them. `poppedOut` is tri-state: until the answer arrives the iframe is not mounted, because guessing "not popped out" is what flashes a second viewer onto the browser. Also: `popout::close` and the off-status emit in the supervisor are behind the same epoch guard as the deregistration above them, so a supervisor whose teardown outlives a restart can no longer destroy the *new* session's window; `close()` returns its `destroy()` error instead of logging it and reporting success, since the pane restores its iframe on success; the drop marker is `pointer-events-none` and is placed before the first *visible* tab at or past the slot, so it neither refuses a drop nor vanishes when a `tabOrder` entry renders nothing; and the "Keep on top" Toggle's accessible name now matches its visible text. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d73096c937 |
Reorder tabs by dragging, and pop the browser view into its own window
Build App / compute-version (pull_request) Successful in 3s
Build App / build-macos (pull_request) Successful in 2m31s
Build App / build-linux (pull_request) Successful in 5m35s
Build App / build-windows (pull_request) Successful in 6m9s
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Two things the UI couldn't do: rearrange the tab strip, and watch the browser while working somewhere else. **Drag to reorder.** `moveTab`/`moveActiveTab` on the store, HTML5 drag on the strip with a marker showing where the drop lands, `Ctrl+Shift+←/→` for the same thing without a mouse. Reordering deliberately does not select what it moves, so a drag aimed at a background tab doesn't yank the main area away from a terminal mid-run. A tab being renamed is not draggable — a draggable ancestor swallows the mouse-drag that selects text in its input. **Pop the browser view out.** `browser_view/popout.rs` opens the view's existing token-bearing loopback URL as a second OS window, with a "Keep on top" toggle so it can float above the app. Window-only: the viewer, the proxy and the container are untouched, so popping out and back interrupts nothing. Three things it rests on: - No capability lists that window, so it has no IPC surface — right for a page served out of a container, and it must stay that way. - The app CSP is irrelevant to it: `frame-src` constrains what the app's document may *embed*, and this is a top-level document. The port range and the token gate are what actually protect it, unchanged. - The window is owned by the session, so the supervisor's teardown closes it. A window onto a viewer that no longer exists is worse than none. The pane drops its iframe while popped out — two viewers can both *drive* the browser, and two cursors on one page is not a feature. `lib.rs`'s `on_window_event` is now guarded on `label() == "main"`. It fires for every window and its body stops every container and exits, so without the guard closing a pop-out would quit the app. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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77567ac2ae |
Merge remote-tracking branch 'origin/main' into feature/corporate-ca
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Build App / build-macos (pull_request) Successful in 2m28s
Build App / build-windows (pull_request) Successful in 5m20s
Build Container / build-container (pull_request) Successful in 9m58s
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# Conflicts: # app/src/lib/tauri-commands.ts |
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4fdfed7955 |
Bake the browser's runtime libraries into the base image
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Build App / build-macos (pull_request) Successful in 2m28s
Build App / build-windows (pull_request) Successful in 5m13s
Build Container / build-container (pull_request) Successful in 13m11s
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`npx playwright install chromium` downloaded ~150 MB of browser that then died with "error while loading shared libraries: libglib-2.0.so.0" — verified, not inferred, against the current image. The image shipped none of Chromium's shared libraries, which is why `apt install google-chrome-stable` looked like the cure: apt was quietly installing the same set as Chrome's own dependencies. Installing them at runtime instead converges on the worst possible state. The libraries land in the container's writable layer, so they are re-paid after every Reset and *lost* on base-image migration, which replays apt from a manifest. The browsers ride in ~/.cache/ms-playwright, inside the home volume, and survive both — leaving a 400 MB browser present with its libraries gone. So the libraries are baked and the browsers are not: each half now lives where it already persists. The layer runs `npx --yes playwright@latest install-deps chromium` rather than a hand-written apt list. Ubuntu 24.04's 64-bit-time_t transition renamed a swathe of these packages (libasound2t64, libatk1.0-0t64, libglib2.0-0t64, …) and a new Chromium dependency would drift straight back into the launch failure this exists to prevent; letting Playwright name its own dependencies is self-maintaining. It sits immediately after Node — npx is its only prerequisite — and well above the shim COPYs, so editing a shim does not re-run it. The `--dry-run` that follows is a build-time assertion, not decoration: on a platform Playwright has no list for, `install-deps` prints a warning and returns having installed **nothing, with exit status 0**. Without the assertion that ships a broken image behind a clean build log. Measured, on a build of this file with the layer applied over an otherwise identical image: +99 packages, +334 MiB unpacked and +119 MiB compressed (2950 → 3284 MiB, 759 → 878 MiB). Two thirds of that is not reachable by trimming — libgbm1, which Chromium needs, pulls mesa-libgallium, which pulls libllvm20. A chromium-only apt list measures 247 MiB against install-deps' 341 MiB; the ~94 MiB difference is xvfb and the CJK/emoji fonts, kept because the base ships no fonts at all and every page this feature exists to display would otherwise render as tofu. Verified on real builds, both architectures: a `--platform linux/arm64` build of this file installs the same 99 packages and passes the same assertion. On the new amd64 image, `playwright install chromium` with no `--with-deps` and no `install-deps` launches headless Chromium 151.0.7922.34 and loads a page; on the old image the identical script fails on libglib-2.0.so.0. `install.rs` no longer runs `install-deps` unconditionally — that would be a minutes-long apt run for nothing on a current image. It asks `install-deps --dry-run` first and skips the install when everything is present, saying which of the two happened on the progress stream. The check is Playwright's rather than a probe of our own for library names, so check and fix cannot disagree about what the dependency set is. Note that `--dry-run` exits 0 both when everything is installed and when Playwright has no list for the platform, so the verdict is read from its output. Containers on older images stay the normal case until people migrate, and they still work: on such an image the simulation cannot even resolve the package names (the index is cleaned in every base image), which reports as "couldn't tell" and installs — the right answer. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01KSP2KNPhuWKQ4DL5TZEn3k |
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7a5823cb2b |
Inject the corporate CA certificate into containers
Build App / compute-version (pull_request) Successful in 6s
Build App / build-macos (pull_request) Successful in 2m30s
Build App / build-windows (pull_request) Successful in 5m16s
Build Container / build-container (pull_request) Successful in 10m15s
Build App / build-linux (pull_request) Successful in 6m35s
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Behind a TLS-terminating corporate proxy every HTTPS call inside a container fails — npm, pip, git, curl, the browser-view pane, and Claude Code's own API requests. There was no mechanism at all: installing the certificate by hand inside a container is lost on Reset and had to be repeated per project. A global CA path in AppSettings with a per-project override on Project, taking either a single certificate file or a directory. It is bind-mounted read-only at /tmp/.host-ca (mirroring /tmp/.host-ssh and /tmp/.host-aws) and applied by entrypoint.sh on every start, so it survives recreation, migration and Reset. Four things this gets right that are easy to get wrong: * update-ca-certificates globs *.crt case-sensitively, so a .pem that is merely copied in is ignored in silence. Certificates are renamed, by container_cert_name() in Rust and a mirrored few lines of shell. * The system store only serves curl/git/apt. Node — and so Claude Code itself — needs NODE_EXTRA_CA_CERTS, Python needs REQUESTS_CA_BUNDLE/SSL_CERT_FILE, and Chromium reads neither: it wants ~/.pki/nssdb, seeded with certutil (libnss3-tools, added to the image). * Those vars are set from Rust at creation, never exported by the entrypoint — a terminal is a docker exec and sees nothing the entrypoint exported. They are emitted empty when no CA is configured, since docker commit bakes env into the snapshot image. * triple-c.ca-fingerprint hashes the certificate bytes as well as the path, so a CA rotated in at the same location still forces a recreation. Verified end to end against a real container and a self-signed CA: curl, node, python and git all complete a TLS handshake against a server signed by it and all three fail in the same container without it; the env vars are visible from a docker exec session; the store is cleaned when the setting is cleared. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01KSP2KNPhuWKQ4DL5TZEn3k |
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a5bcc462a7 |
Browser view: find every Playwright, and set one up in two clicks
Build App / compute-version (pull_request) Successful in 14s
Build App / build-macos (pull_request) Successful in 2m30s
Build App / build-windows (pull_request) Successful in 5m18s
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Detection missed the npx cache, so a Playwright installed through Claude
Code's MCP setup (`npx @playwright/mcp@latest`, which unpacks into
~/.npm/_npx/<hash>/node_modules and no node_modules at all) was invisible.
The probe now globs that cache alongside the existing roots and reports
every root it consulted.
It also read `has_bind` off whichever manifest resolved first. Verified
that npm does not hoist for global installs and that the `playwright`
wrapper ships no types/types.d.ts, so `npm i -g playwright` made the pane
call a current build "predates browser.bind()". The probe now hops from
the wrapper to its nested playwright-core.
The messages no longer offer `@playwright/mcp` as a way through setup: it
bundles a playwright-core that binds but never `@playwright/cli`, so that
route could not have worked. It is named only for what it does do.
New `install.rs` + two commands do the setup, streaming on the existing
`container-progress` event and re-probing on success:
* playwright + @playwright/cli into /workspace as `claude`, --no-save.
/workspace is not a bind mount (projects mount at
/workspace/{mount_name}), so nothing of the user's is touched, no sudo
is needed, and Node resolves it from scripts in the project.
* A browser, as its own action with the size stated first: apt libraries
as root, then the download, then a real headless launch to prove it
works. The base image ships none of Chromium's shared libraries, which
is why a download could succeed and the browser still not start.
Chromium and the Chrome channel are both offered — @playwright/mcp
asks for `chrome` specifically. A certificate failure is reported as a
container trust-store problem rather than a broken install.
Installing is always user-initiated; opening the tab only probes.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01KSP2KNPhuWKQ4DL5TZEn3k
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2de00b3c55 |
Fix review findings: secrets in snapshots, URL spoofing, migration data loss
Adversarial review of the branch produced findings across four areas. This addresses them, plus the Windows CI environment. Secrets. commit_container_snapshot baked the container's full env into the per-project snapshot image, so the shared OAuth token — and the AWS keys, git token and gateway master key — outlived revocation and were readable via docker inspect. Verified against Engine 29.6 that a commit body's config merges over the container's: keys cannot be dropped but can be overwritten, so all of them now commit as KEY=. clear_claude_token additionally rewrites images from earlier builds and reports honestly when a tag could not be rewritten. The recommendation to move the token out of env entirely was not taken, with reasoning: apiKeyHelper is a different auth method that outranks CLAUDE_CODE_OAUTH_TOKEN rather than a transport for it, and no file-based delivery exists. The durable exposure — the image — is what is closed here. Separately noted, not fixed: entrypoint.sh captures the token into the scheduler's .env inside the persisted volume. URL spoofing. Three call sites reached openUrl with container-controlled strings, one of which the review missed (the WebLinksAddon handler). The sign-in URL was scraped from container output with a longest-match tie-break and no userinfo check, so claude.ai@evil.tld rendered as "claude.ai…" in a truncating element. There is now one sanitizer in front of every sink — scheme allowlist, no userinfo, C0/C1 and quote rejection, host allowlist for the sign-in case, first-match — and the origin renders un-truncated. The toast is keyed so a changed URL remounts, closing a bait-and-switch where the user read one URL and clicked another. Migration. The rollback pin was best-effort: a tag failure was logged and the migration continued past remove_container, after which the final commit overwrote the only copy of the old system layer. It now aborts before anything destructive and reads the tag back. /var was destroyed while the ordinary recreate path preserves it — making the "safe" alternative to Reset more destructive than Reset's alternative; data-bearing subtrees are now detected and disclosed in the pre-flight rather than copied, since tarring a live database onto a different base's packages is a corruption risk. resume_migration now verifies the migration-state label instead of reporting success for a container that never swapped. dismiss actually resolves the record rather than leaving the feature permanently refusing to migrate. Start and Reset are guarded while a migration is live. Lifecycle. The gateway no longer publishes on 0.0.0.0 — bind address and advertised URL are derived together so they cannot drift. Disabling it now stops it. App exit runs teardown concurrently under a budget with a visible shutting-down state instead of blocking for minutes. Auto-starts retry when Docker is not up yet, and the polling-recovery path now reconciles, so interrupted migrations are still recovered. Auth-bridge forwards are capped, closing a container-driven fd exhaustion. Windows CI. build-windows failed on this branch with "linker link.exe not found". The runner had no MSVC build tools and the workflow assumed a hand-provisioned machine, so a bare runner registers, accepts jobs and fails at link time after downloading the whole crate graph. The job now installs the VC++ workload when vswhere cannot find it, matching how it already conditionally installs Rust and Node. 192 Rust tests, 274 frontend tests, both builds clean, zero warnings. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d42b741337 |
Migrate a project onto a new base image without losing its volumes
Projects were pinned to the image they were first created from. Both create paths preferred triple-c-snapshot-<id>:latest whenever it existed, and container_needs_recreation compared the container's live image against the triple-c.image label — which create_container wrote from the same image it created from. A tautology that could never fire. The only escape was Reset, which calls remove_project_volumes and destroys the login, skills and transcripts. Measured consequences on this host: real projects are missing socat (so the auth bridge cannot tunnel) and bubblewrap (so sandbox mode does not work), plus Mission Control and triple-c-sso-refresh, and sit 61 packages behind the base including ca-certificates, openssl and curl. Detection. create_container now writes triple-c.base-image-id (the image ID, not RepoDigests, which local-built and custom images do not have) and triple-c.create-image. container_needs_recreation takes the expected create-image and compares against the latter, so the check means something. base-image-id is deliberately NOT compared: a base bump would otherwise silently recreate from the snapshot, consuming the "you should migrate" signal without migrating. Staleness is surfaced, never acted on automatically. Migration keeps the volumes. /home/claude and ~/.claude are volumes and the image's copy is seed-only — permanently masked after first mount — so the login, ~/.claude.json, skills, transcripts, scheduler tasks, SSH keys, cargo, uv, ruff and Claude Code itself re-attach untouched. Only root-level state is rebuilt: apt packages are replayed against the new base rather than copied, so no stale libc is dragged forward, and /usr/local, /opt and the non-bind-mounted parts of /workspace are copied verbatim with tar --skip-old-files so they can never clobber a newer base binary. docker diff is not used: on a snapshot-derived container it reports only changes since the last commit. Raw image-vs-image diffing is filtered through dpkg ownership because it otherwise lies — 8,677 raw path differences on a real project reduced to 2 genuinely user-authored files, both loose /workspace-root files. Crash safety. snapshot:latest keeps pointing at the old image until the final commit, so any crash before it self-heals on next start. Later crashes are caught by reconcile_project_statuses. The rollback pin is a docker tag: 0.057s and 0 bytes. Rollback restores the system layer only — volumes are never touched — and the UI says so rather than implying a time machine. Fixes an infinite recreation loop shipped with the MCP removal. docker commit propagates labels to the image, so a container created from a snapshot inherited its non-empty triple-c.mcp-fingerprint and the one-shot shim recreated it again on every start, forever. Lineage labels are now always written explicitly. Documents the second, separate bug this uncovered: Dockerfile changes under /home/claude never reach an existing project, migration or not, because the volume masks them. Anything that must stay upgradable belongs in /usr/local/bin or /opt, or must be seeded by entrypoint.sh. 145 Rust tests, 227 frontend tests, both builds clean. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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cc5f691677 |
Add llama.cpp backend, model gateway, URL relay and browser view
Four features, plus a latent bug fix.
llama.cpp backend. Claude Code only ever speaks the Anthropic Messages
API — confirmed empirically by pointing it at a logging server, which
received POST /v1/messages?beta=true. llama-server implements that
natively (verified in its README, alongside --port default 8080), so
this is a plain base-URL backend with no translation shim, the same
shape as Ollama. Its --api-key defaults to none, so the auth token is a
placeholder Claude Code requires and llama-server ignores.
Model alias fix. ANTHROPIC_DEFAULT_HAIKU_MODEL is documented as "also
used for background functionality", and Triple-C set none of the alias
vars. So on every custom-endpoint backend, Claude Code resolved `haiku`
to an Anthropic model id and sent it to a local server that does not
have it — background features failed silently. All four
ANTHROPIC_DEFAULT_{OPUS,SONNET,HAIKU,FABLE}_MODEL vars are now pinned to
the backend's configured model, with an optional Haiku override, and
blanked for Anthropic and Bedrock so those keep Claude Code's defaults.
The deprecated ANTHROPIC_SMALL_FAST_MODEL is never emitted. Existing
Ollama and OpenAI-Compatible containers are recreated once so the new
env reaches them; the snapshot is preserved.
Model gateway. Optional LiteLLM sibling container, off by default,
mirroring stt.rs — this is what makes real OpenAI usable, since
api.openai.com has no /v1/messages. Pinned to v1.96.0 by tag and digest:
the 1.82.7/1.82.8 malware was PyPI-only and never affected the official
images, which is precisely why this builds FROM the image rather than
pip-installing, but 1.84.0 is still the floor for proxy CVEs (API-key
SQLi, Host-header auth bypass, MCP auth bypass). Binds 0.0.0.0 because
project containers consume it, and therefore always sets a master_key —
LiteLLM without one accepts any key. The provider key lives in the OS
keychain and is uploaded into a volume, never an image layer or label.
URL relay. A container-side xdg-open/BROWSER shim opens URLs in the
host's browser. Uses an OSC sequence to /dev/tty rather than a printed
sentinel, because the shim usually runs as a grandchild of a process
capturing its children's output. Degrades to printing the URL when no
terminal is attached, so scheduled tasks do not hang. Only http/https,
with control characters rejected before new URL() — which strips
newlines, so java\nscript: would otherwise parse as javascript:. Nothing
auto-opens; the user confirms. The web terminal shows a tap-to-open
banner instead, since that browser may be a phone across a tunnel.
Browser view. A Project Home tab that watches and takes over the browser
Claude drives with Playwright, using Playwright's own dashboard. Zero
image cost — Playwright stays user-installed. It does not reuse the auth
bridge's PortForward, which binds an unauthenticated port: correct for a
throwaway OAuth listener, wrong for mouse and keyboard control of a
browser in a passwordless-sudo container. Instead a token-gated loopback
proxy checks Host, then token or a forbidden-header origin signal,
before a byte reaches the container. Host ports are confined to
47820..=47827 so CSP frame-src can enumerate them rather than widening
to a wildcard, with a test asserting the two agree.
188 frontend tests, 107 Rust tests, both builds clean.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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7d00390e1f |
Add scheduled task creation, and stop a bad cron unscheduling everything
Build App / compute-version (pull_request) Successful in 4s
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Completes the Automation tab: it could list, toggle, run, log and remove tasks but not create them, so task creation still meant dropping to the CLI. Adds add_scheduled_task and update_scheduled_task, plus a task editor with cron presets and a plain-English reading of the expression. Every field is free user text, so all of it goes to the scheduler as a bare argv vector through bollard — no shell, no quoting. Validation is shape-only rather than metacharacter scrubbing: length caps, no control characters in single-line fields, no leading-dash name, absolute working_dir. Verified by round-tripping a prompt containing `; rm -rf /`, `$(id)`, backticks and newlines: it landed byte-for-byte in the task JSON with nothing executed. The scheduler CLI has no `edit`, so update is add-then-remove with the add first — a rejected edit leaves the original intact. The new id is surfaced in the editor rather than hidden. Root-cause fix, and the more serious half of this commit: triple-c-scheduler never validated --schedule, and rebuild_crontab regenerates the entire crontab and pipes it to `crontab`, which rejects the whole file if any line is malformed — with the error thrown away by `2>/dev/null || true`. A single bad schedule therefore silently unscheduled every other task in the container while reporting success. Reproduced directly. It matters because the global CLAUDE.md tells Claude to drive this CLI, so Claude could trigger it unprompted. `add` now validates the expression and exits non-zero, and rebuild_crontab reports a rejected crontab instead of swallowing it, keeping the offending file for inspection. Verified against the real CLI in this container: a bad schedule is refused without disturbing an existing task's crontab entry, and `0 9 * * 1-5`, `*/30 * * * *`, `0,30 8-17 * * *` and `0 0 1 1 *` are all still accepted. The Rust layer validates independently, agreeing with vixie cron on 23 probed expressions including `1/2` and `*/0` being invalid. 121 frontend tests, 44 Rust tests, both builds clean. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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cf3b021c72 |
Confirm before Reset, and rewrite the docs for the new UI
Reset is destructive in a way its name does not advertise: rebuild_project_container deletes both project volumes, so it wipes the claude login, anything installed in the container, and every saved session transcript. It was a single unconfirmed click in the overflow menu, while the comparably destructive Remove already confirmed. Adds ConfirmResetModal, which names each loss and says explicitly that the host-side mounted folders are untouched. Docs: the user guides still described the pre-Project-Home UI. Sixteen factually wrong statements corrected, including "expand the Config panel" (six sites), the actions table (Reset and Remove are in an overflow menu, Files is a tab), a progress modal that no longer exists, a double-click-to-rename gesture ProjectRow never had, the Full Permissions boolean, an incomplete reserved-env list, and the claim in TECHNICAL.md that OAuth tokens survive a Reset. Both layout diagrams and the project tree were rebuilt from the filesystem. New sections cover permission modes with the exact CLI mapping, Project Home, Sessions, capability tiles, Automation, shared authentication, the Auth Bridge and its security posture, and keyboard shortcuts. Known gap recorded rather than papered over: the Automation tab manages existing scheduled tasks but cannot create them — no add command is registered — so task creation remains `triple-c-scheduler add` in the terminal. 87 frontend tests, 34 Rust tests, both builds clean. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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d95ba54a69 |
Add shared-auth-token UI and make cancelling actually cancel
UI for the shared Claude token: a Settings section showing token state with Authenticate and Revoke, an acquisition modal built on the shared Modal (sign-in link handed to the host browser via the opener plugin, plus the code input that answers `setup-token`'s stdin prompt — the flow cannot complete without it), and a per-project opt-out toggle shown only for the Anthropic backend. Cancellation: acquire_claude_token previously had only two exits, completion and a 15-minute timeout, and held the single-flight guard for the whole time. Closing the dialog therefore locked the user out of retrying for up to 15 minutes. Adds cancel_claude_token, backed by a oneshot claimed and released in lockstep with the input guard, selected on in the run loop so it wins the race and tears the exec down. The dialog's Cancel now calls it and closes either way. Also refreshes CLAUDE.md, which had drifted: it documented the deleted ProjectCard, and asserted that new IPC commands need permission grants in capabilities/default.json — they do not, that file covers plugin commands only. Adds the conventions that would otherwise bite: container_needs_recreation() is purely label-based and never diffs env, so container-affecting state needs its own label; and #[serde(default)] on a bool yields false regardless of intent. Corrects the claim that Reset preserves credentials. Reset calls remove_project_volumes, which deletes both the home and claude-config volumes, so it wipes ~/.claude, the OAuth token, installed skills and session transcripts. 84 frontend tests, 34 Rust tests, both builds clean. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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01a2f6aec8 |
Add Project Home, Auth Bridge, shared auth token, and Tier-1 polish
Project Home (DESIGN-REVIEW §B2): the project is promoted from a 280px
sidebar card to a first-class main-area view. ProjectCard.tsx (1,257
lines) is replaced by a select-only ProjectRow plus tabs for Overview,
Sessions, Automation, Config and Files. The PortMappings, FileManager
and ContainerProgress modals are absorbed rather than reimplemented.
Config gains a Saved/Saving/Failed indicator — save-on-blur failures
previously reached only console.error.
Tier-1 polish (DESIGN-REVIEW §A): new elevation, muted-accent, disabled
and focus-ring tokens; a global :focus-visible ring with every
focus:outline-none removed; filled buttons moved to --accent-emphasis
and white-on-success toggles retired, fixing three WCAG AA failures
(2.1:1, 2.5:1, 2.4:1); a shared Modal primitive with role="dialog",
focus trap and restore, adopted by all remaining modals; status
indicators that carry a glyph and word rather than colour alone.
Ctrl+Shift+W closes a tab, deliberately not Ctrl+W — that is readline's
kill-word, used constantly in the terminal this app is built around.
Auth Bridge: a general loopback-callback bridge so browser logins run
inside a container (aws sso login, Concourse fly login, claude login)
can complete against the host browser. Listeners are discovered from
/proc/net/tcp{,6} — ss/netstat/lsof are absent from the image — bound on
host 127.0.0.1 only, and tunnelled in over the Docker API via socat,
which keeps working on Docker Desktop where container IPs are not
routable. Falls back to [::1] because Node resolves localhost to IPv6
first, so claude login often binds ::1 alone. Opt-in per project.
This extracts create_attached_exec() and moves the existing terminal
session path onto it, so there is one attached-exec implementation
rather than two.
Shared auth token: `claude setup-token` is run in a container, the token
is stored in the OS keychain and injected as CLAUDE_CODE_OAUTH_TOKEN
into Anthropic-backend projects. Contrary to the initial design note,
setup-token uses an Anthropic-hosted redirect and blocks on a stdin
paste prompt rather than a loopback callback, so a stdin command is
required for the flow to complete.
The token is never logged, never returned to the frontend, and is
redacted from the streamed output with a stateful matcher that withholds
any tail that could still grow into a secret. Change detection uses a
random rotation id rather than a hash, since a hash in a docker-inspect
readable label would be an offline verification oracle.
Frontend 33 -> 51 tests; Rust 34 tests. Both builds clean.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
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