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Commits
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9f403cddab |
Render markdown, and stop wiping messages still waiting to be read
Two things, both about the transcript telling the truth about itself. Markdown is rendered rather than shown as its source. The parsing is mikepenz/multiplatform-markdown-renderer, not something written here: markdown is somebody else's specification, and a hand-written subset of one disagrees with it at the edges, which is where the bug reports come from. `Markdown.kt` is only the mapping onto this app's palette, so code, links and rules take the Catppuccin values the rest of the app uses rather than the renderer's defaults. The queued-message list was cleared wholesale whenever a turn ended. But the backend holds a queue of its own and takes one message per turn, so a turn ending is precisely the moment the *rest* are still waiting -- the bubbles vanished while the messages were on their way, which reads as everything after the first having been dropped. Now a held message leaves the list exactly two ways: the session reads it, which arrives as a UserMessage, or its send failed and there is nothing to wait for. Measured first, because the report was that the backend dropped them: three messages sent behind one long turn were all delivered in order (ONE, TWO, THREE) against current main, so the loss was in the display. Verified on the emulator: headings, emphasis, inline code, nested lists, a quote bar, a fenced block, a rule and a link all render, and the three queued messages sit through their turn. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> |
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362d436d4f |
Let sessions outlive the backend, and never resume one twice
Three `claude` processes ended up running against this checkout on 2026-08-29, and the account hit its session limit. One cause, several ways in. An agent imported the Claude Code session it was *itself* running in. That is an ordinary import, and importing runs `--resume` -- so a second CLI attached to a file the first was still writing. The whole 65 MB conversation, 154 embedded screenshots included, was re-appended to the transcript under a new prompt id; both copies then read each other's writes as work done elsewhere, and the adopted one was billed for re-reading all of it. Meanwhile `shutdown_all` asked each session to stop and the process exited immediately, so the SIGKILL timer died with the runtime, the stop was unreliable, and whatever survived was orphaned with nothing written down to find it by. The processes leaked either way. So leak them on purpose, and be able to pick them back up. A session's process now outlives the backend and is adopted again on the way up, which is worth having for its own sake: restarting the server no longer ends a turn somebody is waiting on. Its stdio lives in the session directory -- a fifo opened read-write so the process is its own last writer and never reads EOF, plus stdout/stderr logs read from a byte offset. `session::process` records the pid *and* the kernel's start time for it, because a pid alone is reused and adopting a stranger's would mean never resuming the real conversation. That makes the fix structural rather than a check: everything goes through `ClaudeDriver::launch`, which adopts if it can and starts if it cannot, and `--resume` is reachable only on the second path. `Driver` gains two ways out where it had one -- `detach` (coming back) and `stop` (the session is being deleted, so the process must not survive). Importing a session that is open is now refused outright. Claude Code keeps `~/.claude/sessions/<pid>.json` for every live session, so this is a measurement rather than a guess; it reports no/yes/unknown, because a machine that keeps no such record cannot answer and "could not check" is not "nobody is using it". `SessionStatus` gains `Unknown` for the same reason. Also here, found on the way: - A reconnecting phone was sent the entire backlog. Opening a session was bounded to a page but reconnecting was not, so a long disconnect delivered thousands of events one frame at a time. Past `CATCH_UP_LIMIT` the stream sends a `reset` frame and the newest window, and the client rebuilds from it as it does on open -- without the reset the window is spliced onto rows no longer adjacent to it. - A session's status was assumed idle at launch. Read from the transcript instead, so a restart stops claiming an exited session is waiting for you. - `llama-server`'s stdout was piped and never drained, so a chatty one blocked on a full pipe buffer mid-load. It goes to a log now. - A turn that exited or errored never emitted `Idle`, so the queue stayed "running" for good: every later message was held forever and, since a message is only recorded when taken, vanished with nothing on screen. - Two doc comments had drifted onto the wrong functions. Verified by killing the server mid-turn: the process survived, finished its turn unattended (12.8 KB of output nothing was reading), and the restarted server adopted it -- one process, all 700 lines in the transcript, no hole, and it still took a new message afterwards. Deleting a session stops its process; a 266-event backlog resets while a 16-event one streams. 46 tests, clippy and rustfmt clean, app compiles and lints. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01VETa8afmpWaYezLCqJhDB8 |
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4370c467ca |
Discover this machine's providers instead of asserting them
A fresh install wrote a `claude-cli` provider into the local setup unconditionally. Nothing looked for `claude`; the list was hardcoded in `Config::seed`, so on any machine without it -- which is every machine but the dev VM -- the phone was offered a provider that cannot spawn, stated with exactly the confidence of one that had been checked. Discovery already existed and was already right: `setups::discover` probes with `command -v` over the transport, includes echo for the local one because it runs in-process, and records the resolved path rather than the bare name. Only the local setup skipped it, which is the one place the answer felt obvious enough not to ask. So `seed` now takes the providers it is given, and seeding asks this machine the same question it asks any other. It moved out of `SessionManager::new` into an awaited step in main, because asking is I/O and a constructor that quietly spawns a subprocess surprises every caller. A discovery that fails seeds `echo` alone and says so, since echo is true wherever this server runs -- falling back to the hardcoded list would be the same bug with an extra step. The test that covered this agreed with the bug, because both were written from the same assumption: it asserted the seed contains `claude-cli`. It now asserts the opposite -- that the seed invents nothing -- and the session tests seed echo explicitly rather than relying on a constructor that would make them pass or fail on whether `claude` happens to be installed on whoever runs them. Verified by running a server on a PATH holding only `sh`: it seeds `echo` alone. With claude and llama-server present it finds both. 34 tests. |
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2c925a679f |
Take XDG resolution from the shared crate too
Sixth and last of the modules that were the link rather than this product. main.rs loses config_home, data_home and xdg_dir, and its test module with them -- it held one test, which moved to the crate that now holds the code. The helpers gained a `product` parameter, matching certs::ensure and netif::wg_address, which is what keeps two products' state apart while resolving it identically. Verified by running it: with only XDG_CONFIG_HOME and XDG_DATA_HOME set and no --config or --data-dir, the server puts its certificates in $XDG_CONFIG_HOME/ai-app/certs and its sessions in $XDG_DATA_HOME/ai-app/sessions, and still prints an aiapp:// enrollment URI. 35 tests here and 19 in the crate, clippy silent, rustfmt clean. |
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aa05ff9336 |
Take the link from wg-app-link instead of keeping a second copy
The five modules underneath this backend that were never about AI sessions -- the pinned CA and leaf, QR enrollment and the bearer token, wg0 binding and the certificate's SANs, owner-only files, and the RON house rules -- were written twice, once here and once in dev-updater, and had drifted. They now come from the submodule, as a path dependency so both projects stay locked to one commit. What stayed is what makes this project itself: the routes, the drivers, the config schema, and the auth middleware, which is generic over this server's state. Sharing a transport is worth doing; sharing an API would mean inventing a vocabulary neither project wants. Four dependencies go with the code -- rcgen, qrcode, subtle and if-addrs are no longer named here at all -- and the three that remain are now described by what still uses them rather than by what used to. Verified by running it, not only by building: a fresh server generates its CA, prints an `aiapp://enroll` QR with the scheme now passed as a parameter, covers 127.0.0.1, 10.0.2.2 and wg0's 10.66.0.1 in the leaf, answers an enrolled token and returns 401 without one, and writes config.ron in the house rules with every file owner-only. 36 tests pass, clippy is silent, rustfmt is clean. |
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19e3531c5d |
Add, rename and remove machines from the phone -- without letting it name commands
The gap PLAN.md recorded: setups were readable but only hand-editable, so
adding a machine meant a shell on the backend.
**The design decision, made with Bryan, is that the phone never composes a
command.** A setup carries providers, and a provider carries something to
run -- so a route that accepted a command from the request body would make
the enrolled token arbitrary code execution on every machine a setup names,
and the transport already reaches those over ssh. Instead the phone sends
connection details, and the server asks the machine itself what it has:
one `command -v` round trip per setup, matched against a table of the
drivers this server knows. The phone's authority is "add this machine",
never "run this".
Worth recording that this was a narrower change than it first appeared: the
token could already run anything on the backend, because the spawn screen
offers `bypassPermissions` with a free-text working directory. Discovery
does not close that door. What it does is keep the *list of what can run*
out of the phone's reach, and make adding a machine a thing you cannot get
wrong by typing.
It is also simply better to use. Nobody wants to type an absolute path on a
phone keyboard, and a machine whose binaries have moved answers correctly
on the next probe. The cost is that a program somewhere unusual is
invisible -- `command -v` follows PATH under a non-interactive ssh session,
which is not the PATH a person sees when they log in. That is the trade,
and the escape hatch is editing config.ron on the backend, which is exactly
the authority the phone is not being given.
Setups now have an **id separate from their label**, so renaming a machine
does not orphan the sessions that name it; a session stores the id, and
every row resolves the current label when it is built. `POST /setups/probe`
tries a machine without saving anything, so a wrong address or an
unauthorised key is caught while the form that caused it is still on
screen. Deleting is refused while sessions still run there, and says which
ones rather than cascading.
Every mutation goes through one `update`: clone, apply, save, then commit,
so a failed write leaves the previous state intact and reports why.
Verified against a running server, including a real ssh machine (this VM,
via a throwaway loopback key since removed): probing here found echo and
claude-cli; probing over ssh found claude-cli and correctly no echo, which
runs in-process and exists only where this server does; an unreachable
machine came back with ssh's own words ("connect to host ... Connection
timed out"); adding derived the id `loopback-vm` from "loopback vm";
renaming kept the id; deleting was refused while a session used it, naming
it, and succeeded once nothing did.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw
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ecac404fd4 |
A setup is a machine, and it carries what that machine can run
Providers and hosts were two independent lists, and a session named one of each. They were never independent: a provider only exists on a machine where that program is installed, so the spawn screen offered the whole cross-product, including "the Claude CLI on the box that hasn't got it". The picker could not know, because nothing in the model said. Now a setup is a machine -- optional ssh, plus the providers it has -- and spawning is two choices in order: pick a setup, then one of its providers. The impossible pairs stop being expressible rather than being validated against. Provider names are unique within a setup and only within one, so two machines can each have a `claude-cli`, which was previously either a name collision or two entries called things like "claude" and "claude on the vm". It also settles the "Run on" problem properly. That control was offered for every provider but honoured only by the Claude driver -- an echo session sent to a host ran locally and said otherwise. There is no such control now: the machine is chosen first, and echo is a provider of the setup with no ssh, where it belongs, since it runs in-process and has no transport to cross. The built-in echo provider is gone as a concept. It used to be conjured at read time and never written to the file, which meant a provider nobody could see or edit; it is now seeded into the config on first run alongside claude-cli. What the file says is what there is, and deleting it is a choice rather than a state to be repaired. A config in the old shape is refused with instructions rather than loaded. `Config` defaults unknown fields away, so `providers:` and `hosts:` would otherwise have vanished into an empty config that was then seeded over -- a migration nobody would notice until their setups were gone. Verified against a running server and on the emulator: a fresh install seeds "this machine" with echo and claude-cli and the file reads cleanly; a two-setup config lists both with their own providers; spawning on a setup works and the session row names it; asking for a provider a setup lacks says which it offers, and an unknown setup says which exist. On the phone, selecting "dev vm" narrows the provider chips to that machine's one and shows its address. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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3deeffd1e7 |
Run GGUF models through llama-server, and stop orphaning them
The second half of the llama.cpp work: a session can now name a downloaded model and talk to it. `llama-server` is spawned through the same transport as any other driver, polled until the model is loaded, then driven over its OpenAI-compatible streaming endpoint and translated into the same events the Claude driver emits -- so the transcript, the SSE stream and the phone need to know nothing new. **The conversation is rebuilt from the transcript, not held in the driver.** llama-server is stateless between requests, so the whole history goes with every one, and the obvious place to keep it is a Vec in the driver. That fails the requirement: memory in a driver is invisible to a second device and gone on restart, and this app is meant to work across devices. Reading it back also means the model is prompted with exactly what the phone was shown -- including a reply that was interrupted half way, which is in the transcript because the deltas were already emitted. That leaves the Claude driver as the odd one out rather than this one: the CLI's memory of a conversation is a cache in front of the same transcript, not a second truth. Said so at the top of llama.rs, because it is the sort of inconsistency that gets "fixed" in the wrong direction. Session settings arrive as a driver-interpreted `params` map rather than new typed fields, so the shared schema does not grow one dialect's vocabulary. Context size, gpu layers and threads become server flags; temperature and the rest ride on each request, so changing them need not reload a model. **Also fixes an orphan this feature would have created.** Drivers set kill_on_drop, which covers a session being deleted -- but nothing drops on the way out of a SIGTERM, so signalling the server left its children running. For the Claude CLI that is untidy; for a llama-server holding a model it is gigabytes belonging to nobody. The server now stops its sessions on SIGTERM and SIGINT. Found by killing a test server and noticing two 600 MB processes still resident. Remote llama sessions are refused rather than half-working: the model is reached over HTTP, and forwarding that port to an ssh host is the "reach this port" operation the transport does not have yet. Verified end to end against a real model: downloaded Qwen3-0.6B Q8_0 through the app's own download route, spawned a session on it, and held a two-turn conversation -- "my favourite colour is teal" then "what is my favourite colour?", answered "teal", which is the transcript replay doing its job. Token counts arrive. An earlier attempt with the IQ2_XXS quant produced fluent nonsense, which turned out to be the quantisation rather than the pipeline: llama-cli produces the same from that file directly. Four unit tests cover the fold and the path guard. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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9d29776f02 |
Download GGUF models from HuggingFace, watchably
The first half of the llama.cpp work Bryan asked for: browse HuggingFace, fetch a model, and see how far it has got from any device. The design is dev-updater's build-progress shape with the four changes its author recommended after living with it, since a model download is an hour where a build is two minutes: - **A run has an id.** Without one "not downloading" means three different things -- finished, never started, or someone else's run ended while you were away -- and over an hour that ambiguity is certain rather than theoretical. A device compares the run it was watching to the run reported now. - **Outcomes outlive their run**, so a phone that was asleep at the moment of completion can still find out what happened. - **Cancel exists.** Retrofitting cancellation into a blocking loop is miserable, and several gigabytes over someone's data plan is not something to have no answer for. - **Progress is bytes, not a parsed marker.** We own the loop, so it counts directly; `total` is whatever Content-Length said and nothing else, and stays absent when the server sends none rather than becoming a bar drawn from a guess. The download owns its own thread rather than the blocking pool, which exists for short work. It resumes through HTTP Range, and trusts the 206 rather than the request -- a server that ignores Range answers 200 with the whole file, and appending to that would corrupt it. `truncate(false)` on the open is load-bearing for the same reason and says so. Searching is proxied through the server rather than done from the phone, because the app trusts exactly one certificate -- this one -- and the machine that must do the downloading is also the one whose view of what exists matters. Verified against the real HuggingFace, not a mock: searched, listed a repository's GGUFs, downloaded 234 MB with live byte progress, cancelled mid-flight, confirmed the partial survived, restarted and watched it resume at 162 MB rather than 0, and let it finish. The result's sha256 matches the one HuggingFace publishes for that file, so the resume is byte-correct and not merely the right length. llama.cpp then loaded it and ran inference. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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c12ab7f098 |
Take rustfmt's defaults
The code was hand-formatted -- close to rustfmt's output but not it, mostly in keeping chains and call arguments on one line where the formatter would break them. That is a per-line decision every future change has to make again, and reproducing it would mean a config whose only job is to preserve how the code already looks. So this is `cargo fmt` at its defaults, with no rustfmt.toml, which is where the sibling dev-updater checkout already sits: it is clean at the defaults today, so the two repos now agree on layout without either of them configuring it. Formatting only -- no behaviour, no renames, nothing reordered. Verified after: cargo test (35 pass), cargo clippy --all-targets clean, cargo fmt --check clean. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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19de699bfa |
Follow dev-updater's own config to RON
The same move, for the same reason: this file is written and read by hand, and JSON has no comments to say why a host is configured the way it is. Both house rules come across with it, in config.rs's `format` module and nowhere else -- a file is the *body* of the config, so no outer parentheses and nothing indented for them, and `Some` is implicit, which is what makes `skip_serializing_if` on every optional field load-bearing rather than tidiness. The switch is outright: there is no reader for the old format. That is invisible everywhere except here, because this file holds the enrolled token hashes -- starting empty leaves the phone unable to talk to the server and looks, from the phone, like the config having been lost. So a config.json left beside the new file is named in the log and left alone, rather than read or deleted. One wart, documented at DriverKind: the kebab-case spelling is the string the phone compares against, so it stays, and the file pays for it with `kind: r#claude-cli` -- a hyphen is not a RON identifier. Renaming the variant would change what an already-installed build is talking to. Verified: cargo test, cargo clippy --all-targets, and a real start against a scratch state directory -- a hand-typed config with comments and a bare `port: 2222` loads, and what the server writes back sits at column 0 with no Some(...) in it. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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99bcc341c1 |
Cleanup pass: one home for duplicated logic, stale comments out
Nothing behavioral except two status codes; mostly removing places where the same rule was written down more than once and could drift. - server/src/private.rs: the owner-only create/write helpers, which config.rs, certs.rs, and the session dirs each had their own copy of (certs.rs even duplicated the explanatory comment). One module owns the modes now, so the "nothing this server writes is readable by anyone else" property is checkable in one place. - server/src/media.rs: the image media-type/extension table, which the four places that have to agree on it each spelled out separately -- storing an upload, serving it back, building a content block, saving a produced image. The differing *defaults* stay at the call sites with the reasoning, since they genuinely differ by direction. - routes.rs: a missing file was a 400 and an unreadable one a 400 with a hand-rolled log line; they are now 404 and Internal respectively. UnknownSession became NotFound, since it was the only 404-with-message. - main.rs: xdg_dir takes the variable's value instead of reading the environment, which drops the unsafe set_var from its test and lets the test actually assert the relative-path rule. - echo.rs had its own 4-byte hex generator beside session::random_hex. - claude.rs: the two impl Translator blocks were one type's methods. - Stale comments: phase-2 markers on shipped work, a permission-mode list that had drifted from the CLI's, "dev-updater" as the leaf certificate's fallback common name, a half-written sentence in build-apk.sh. - App: the JSONArray walk written out in four fetchers, the four near-identical BackHandlers in AppRoot, and SessionScreen's inline fully-qualified names where the file otherwise imports. - server/wg-test.log was committed by accident; *.log is ignored now, and the gitignore comments describe where state actually lives. - PLAN.md's backend layout gains the new modules and drops hosts.rs for the ssh.rs that was built instead. Verified: 35 server tests, clippy clean, app compiles warning-free, and a scratch server driven over curl -- attachment upload/serve round-trip with both a known and an unknown content type, the new 404s, transcript and session-dir deletion, plus a real claude-cli session answering a prompt. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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56491f84b0 |
Follow the sibling project's rename to dev-updater
It is no longer "local" -- it serves over WireGuard rather than the LAN -- and it is specifically for developing new apps. Renaming the references here at the same time keeps one name to search for across both repos. Also drops the last references to gen-dev-cert.sh, which the in-process certificate generation replaced: the build script and the Gradle task now say to start the server once, and test-wg-tunnel.sh reads the certificates from the XDG directory rather than the repo. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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65743b899d |
Generate the TLS certificates in process
gen-dev-cert.sh is gone. The server ensures its own certificates on start, which removes a setup step to remember, a dependency on whatever openssl was installed, and a second place for the "which addresses?" answer to live -- the leaf now covers every local IPv4 plus loopback and the emulator's host alias, so nobody maintains a hardcoded IP. The split that mattered in the script is kept and now enforced by tests: the CA is generated once and left alone, because the app pins it and replacing it strands every installed copy; the leaf is cheap and reissued every start, so covering a new address is a restart. Both are written owner-only into a directory outside the repo. Two things the tests caught. DirBuilder's mode applies only when the directory is created, so a directory that already existed kept whatever permissions it had while holding a private key -- the mode is now set explicitly, in the session directories too. And loading the leaf into the real RustlsConfig needs the crypto provider installed, which main does but tests don't. Verified end to end: deleted the certs, started the server, watched it generate a CA and warn that installed apps now pin the wrong one, rebuilt the APK against the new CA, and reinstalled -- the emulator connects over a certificate that never existed as a pasted constant. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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ce349af414 |
Drop the in-repo state fallback
Nothing has run against the host's backend yet, so there is no old config or transcript to keep working -- the XDG paths are simply where state lives. Removing the fallback takes repo_root() with it, since finding the repo from the running executable existed only to locate that legacy state. AGENTS.md gets the arrangement that replaced it: the host builds and runs from its own clone outside the shared mount, and code reaches it by push to gitea, which this VM's key is not authorized for. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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d2d2832ec8 |
Keep state and keys out of the shared repo
The dev VM is treated as untrusted, and the repo is a read-write virtiofs mount shared with the backend host -- so a CA private key sitting in it is a key that machine can sign with, and a leaf signed by this CA is one the phone's pinned app accepts without question. Pinning against a CA the attacker holds is no pinning at all. So certificates are now generated on the machine that serves them, into $XDG_CONFIG_HOME/ai-app/certs at 0700 with 0600 keys (AI_APP_CERTS overrides), and config.json and session transcripts move to the XDG config and data directories. Transcripts move for a plainer reason than the keys: they are whole conversations, and they were world-readable at 0644. Two smaller things fall out. The host and VM stop sharing one config, which had already put a test token on the production backend. And state stops living where `git clean -xdf` would take the enrollment and every transcript with it. State that predates the move is still read from the repo, with a warning naming where to move it, so an existing install keeps working rather than silently coming up on an empty config -- the precedence is covered by a test, since picking the wrong file would otherwise be silent. Verified: 31 tests, clippy clean; the certificate script writing 0700/0600 into an overridden directory; and the server logging the fallback and serving from it. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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fff1fb49e8 |
Providers and hosts: what runs, and where, as independent choices
A session now names a provider (what: driver kind, command, models) and optionally a host (where: an ssh target). Keeping them independent is what the real setup needs -- the backend runs where the phone can reach it, which isn't where the CLI is installed -- and it means any provider can be sent to any host rather than a machine being baked into one. The first provider is claude-cli, named for the CLI rather than bare "claude", which would suggest the credit-billed API. A fresh config is seeded with it so a new install has something to spawn and a worked example to edit; echo stays a built-in provider needing no config. ssh.rs builds the child process either way: locally, or `ssh -T` with BatchMode and keepalives, every argument single-quoted for the remote shell (a working directory that tries to close the quote and start a command is covered by a test), and `exec` so dropping the connection takes the CLI down instead of orphaning it. App: the spawn screen reads /providers and /hosts instead of hardcoded lists, so config changes need no rebuild. Chip rows are FlowRow, fixing the reported bug where a row of models that didn't fit wrapped *inside* each chip -- one letter of "haiku" per line -- rather than onto a second line. Verified: 29 tests, clippy clean; the same claude-cli provider run once locally and once over ssh, with the remote one visibly in a different environment; an unknown host name refused with the configured list; and the spawn screen on the emulator showing server-driven providers, hosts, and models that wrap. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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29f8b31f0b |
WireGuard bring-up: host setup script, in-VM test tunnel, portable repo_root
wg-setup-host.sh sets up the tunnel on the backend host: keys generated there and kept there, wg0.conf, wg-quick enabled, and the phone's config printed as a scannable QR. Split tunnel (AllowedIPs is only the backend subnet), single-address addressing per PLAN.md, and the three things it can't do for you -- router UDP forward, DDNS, hairpin check -- spelled out at the end. test-wg-tunnel.sh stands up a real WireGuard tunnel between two network namespaces inside one machine, so the production posture (bind wg0 and nothing else) is testable with no router, phone, or internet exposure. Verified: real handshake, server listening on 10.66.0.1:8443 only, and an authorized request from inside the tunnel answering 200 over pinned TLS -- the leaf's 10.66.0.1 SAN is what a phone will validate too. repo_root() now resolves from the running executable before falling back to the compiled-in path: the repo is shared host<->VM over virtiofs at different absolute paths with a shared target/, so a binary built on one side and run on the other looked for its config where nothing exists. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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3c97a5ef28 |
Phase 3: usage screen
GET /usage serves the numbers behind Claude Code's /usage, read with the CLI's own stored OAuth credentials (nothing to configure). The endpoint is undocumented, so parsing is defensive -- the generic limits[] array becomes labeled window bars, unknown kinds surface under their raw name, and any failure degrades to an 'unavailable' snapshot with the reason. One UsageProvider per paid service behind a caching monitor that enforces the >=180s minimum poll regardless of phone refreshes; no background polling at all. ureq (rustls) does the outbound call, with the process-level CryptoProvider now chosen explicitly in main -- ureq brings ring while axum-server brings aws-lc-rs, and with both in the graph rustls refuses to guess. App: a Usage screen off the session list -- per-window bars colored by utilization with relative reset times. Verified live: 74%/26%/16% windows rendered against the real endpoint. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |
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967fc814ab |
Phase 1 server: TLS + token auth, session registry, EchoDriver, SSE with cursors
The whole pipe behind one Driver trait and a common event model: spawn/list/delete sessions, message + question answering, append-only JSONL transcripts whose sequence numbers are the phone's resume cursor (surviving backend restarts), bearer-token middleware wrapping every route including the fallback, wg0-only binding that fails closed, and first-run token enrollment via a terminal QR. Verified: cargo test (10), clippy clean, and curl end-to-end over pinned TLS -- auth rejection, spawn, streamed SSE replay/resume, /question round trip, restart continuing seq numbers, delete removing everything. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_017xn8nHw1tw1R6PtiY1eEtw |