# The file explorer Asked for by Bryan on 2026-09-03: replace the session screen's debug button with a folder icon that opens a file and directory viewer for the machine the session runs on. Browse directories, open files with the existing syntax highlighting, line numbers, no wrapping; edit a file behind a pencil icon; create files through a modal like the ones the app already has; work over ssh; open at the session's working directory. Built on 2026-09-03. This is the design, decision by decision with the reason and what was rejected, so that when one changes it is changed here rather than re-argued. The operational half -- how to run it, what to press, what to produce on purpose -- is in AGENTS.md, where the rest of this project's working notes are. ## What it is, in one paragraph A machine's filesystem, seen from the phone through the backend. The explorer belongs to a **setup** (a machine), not to a session: a session only says where to start. Every operation -- list, read, write, create -- is one shell script run through `Transport`, exactly the way the import listing and the usage fetch already work, so the local and the ssh case are one implementation and a machine the backend cannot reach fails with ssh's own message. The phone draws what came back: a listing, a file with its lines coloured by the scanner in `Highlighter.kt`, or an editor over the same text. ## Decisions ### 1. Keyed on the machine, opened from the session Routes live under `/setups/{id}/…`, beside `importable`, because a filesystem is a property of a machine. The session screen's folder button opens the explorer with the session's setup and its `cwd` as the starting directory; a session with no `cwd` opens at the machine's home, which the machine resolves (`cd` with no argument and `pwd -P`), never a path the phone guessed. Nothing in the explorer knows what a session is, so a later entry point from the setups tab is one more caller and no new code. Rejected: routes under `/sessions/{id}/`. The session would be a detour to find the setup, and "browse this machine" from anywhere but a session would need a session to exist first. ### 2. One shell script per operation, over `Transport`, on both transports Each operation is a small POSIX shell script handed to `sh -c script sh "$path" …` through `Transport::capture` (or the stdin-carrying variant below). The path and every other value cross as **positional arguments**, never interpolated into the script -- the same rule `import::find` follows with `"$1"`, and the same reason `ssh::quote` exists: a path is attacker-adjacent input in a server whose job is running commands. A `~` prefix is handled by the same `quote_path`/`expand_home` pair every other path goes through; nothing new is invented for it. The scripts assume GNU coreutils and findutils (`find -printf`, `stat -c`, `sha256sum`, `chmod --reference`). That is already what `import.rs` assumes (`stat -c`, `/proc`), and both machines that exist are Linux. A machine without them fails with that tool's own message, which names what is missing. Rejected: `std::fs` for the local transport and scripts for ssh. Two implementations of "list a directory" drift -- the ordering of entries, what a symlink reports, how a permission error reads -- and the local one is the one that gets tested, so the remote one ships broken. The transport design exists so that a driver never learns which machine it got; the explorer is held to the same rule. The cost is a `sh` process per operation locally, which is under a millisecond. Rejected: a Rust SSH or SFTP library. PLAN.md rule 23 -- the system `ssh` inherits `~/.ssh/config`, agents and jump hosts, and there is one place to configure a connection. SFTP would need a second one. ### 3. The token can now name a path, and that is written down AGENTS.md says of the import route: "the phone picks an **id**, never a path: the server resolves which file that is, so an enrolled token cannot become 'read me an arbitrary file'." The explorer's whole purpose is the path, so it takes one. This is recorded in PLAN.md's Security section as a change to the threat model paragraph, in these terms: the token already gates spawning a bypass-permissions agent in any directory on any machine a setup names, and that agent can already read and write every file its user can. The explorer is a shorter path to authority the token already holds, not new authority. The import route's rule stands where it is, because there a path was unnecessary and refusing it cost nothing. What is *not* changed: no route accepts a command. Listing, reading and writing are fixed scripts; the phone chooses only the path and the bytes. ### 4. Paths are absolute or `~`-prefixed, and the machine answers with the real one Same rule as `POST /sessions/{id}/cwd`: a relative path is refused with the same wording, because where it would be depends on where nothing the reader can see. Every listing answers with `pwd -P` of the directory it listed, so the phone navigates on a resolved absolute path -- the parent of `/home/bob/repos/ai-app` is a string operation on that, and a `~` the session was spawned with is shown as what it turned out to be. The phone never resolves `..` itself. ### 5. A read is capped and typed, and every state it can be in has a word `GET /setups/{id}/file` answers with one of: - `text` -- the content, with its size, mtime and sha256. - `binary` -- the content is not UTF-8. Size reported, nothing shown. - `tooBig` -- over `FILE_LIMIT` (1 MiB to start; see "Numbers to measure"). Size reported so the reader knows what they are looking at. - an error -- no such file, permission denied, machine unreachable -- carrying the machine's message. Four outcomes rather than content-or-error, because a binary file drawn as text and a big file cut off silently are both wrong in ways the reader cannot see, and "couldn't read it" must not look like "it is empty". An empty file is `text` with empty content and is drawn as one empty line numbered 1, which is what it is. Not in the first cut: showing images (the phone has `isImageRef` and a viewer already; the route would serve bytes). Listed under "later". ### 6. A write is conditional on what the reader saw `PUT /setups/{id}/file` carries the sha256 the read reported. The script compares it against the file as it is now and refuses with a distinct exit code if it differs; the server answers **409** with "changed on the machine since you opened it". Agents edit files while people read them; this is the common case, not the exotic one, and silently overwriting an agent's edit with a stale copy is the worst available outcome. The phone offers three ways out and says what each costs: **Overwrite** (theirs is lost), **Reload** (yours is lost), **Cancel** (keep editing, decide later). The write is `cat > "$1.ai-app-tmp" && chmod --reference="$1" "$1.ai-app-tmp" && mv -f -- "$1.ai-app-tmp" "$1"`, with the bytes on stdin. A temp file and a rename, so a connection dropped mid-write leaves the old file whole rather than a truncated one; `chmod --reference` keeps the mode, which a fresh file would otherwise lose (an executable script would stop being one). What this trades away: the inode changes, so a hard link elsewhere stops being the same file. Accepted; editors do the same. The check-then-write is not atomic against a writer landing between the two -- a window of microseconds on the same machine -- and that is accepted too, and noted at the script. The response carries the new size, mtime and sha256, so the editor's precondition is fresh without a second read. ### 7. Create refuses to overwrite `POST /setups/{id}/file {path}` runs under `set -C` (noclobber) and `: > "$1"`, so a name that exists fails with the shell's own message rather than truncating somebody's file. `POST /setups/{id}/dir {path}` is `mkdir --` with the same property. The modal names one thing in the current directory and has a switch for "directory"; a created file opens straight into edit mode, because an empty file is not something to look at. Rejected: create-with-content in one request. The editor is the place content is typed, and a modal with a text area is a second editor. ### 8. The viewer is a list of lines, coloured once The file is scanned once, off the main thread, by `scan` in `Highlighter.kt` with `rulesOf(language)`; the spans are bucketed per line in one pass, and each line's `AnnotatedString` is built when that line is composed. A `LazyColumn` of lines, not one `Text`: text layout is linear in the text, and a 20,000-line file in one `Text` measures all of it to draw a screenful. Lines are drawn with `softWrap = false` inside one shared `horizontalScroll` state, so the whole file scrolls sideways as a block and a line never wraps. Line numbers are a gutter in each row, right-aligned, with the gutter width taken from the digit count of the line count in the same monospace style -- so a 9-line file and a 12,000-line file each get exactly the width they need and nothing is measured by hand. Because nothing wraps, a logical line is one visual line, and the gutter cannot drift from the text it numbers. Gutter numbers take `onSurfaceVariant`; the text takes the scanner's palette on `rawSurface`, the surface every verbatim thing in the app already sits on. The language comes from the file's extension through the same table `fenceLanguage` reads (`FENCE_LANGUAGES` already keys on `kt`, `rs`, `py`, …). One function, `fileLanguage(name)`, takes the part after the last dot and asks that table; it is one table, not two, so a language added for fences is added for files. A file with no entry is drawn plain, for the reason the table's comment gives. Selection: the lines sit inside one `SelectionContainer`, as the transcript does, so a selection can run across lines. ### 9. The editor is the legacy text field with a highlighting transformation Edit mode swaps the viewer for a `BasicTextField(TextFieldValue)` in the same monospace style, inside the same horizontal scroll so it does not wrap, with a `VisualTransformation` that returns the text unchanged and the scanner's spans as styles (`OffsetMapping.Identity`, since no character moves). This is the one Compose API that colours a field's text without replacing the field; the newer `TextFieldState` API has no hook for styles. The gutter is one `Text` of `1\n2\n…` in the same style beside the field, aligned for the same reason as the viewer: no wrap, one line each. Save is a glyph in the header, **disabled** until the text differs from what was loaded (never hidden -- a control that comes and goes makes its own absence the signal), and a `GlyphSpinner` while the write is out. Back with unsaved changes asks; the question says the edits will be lost. The keyboard: the explorer draws over the session, which deliberately has no `imePadding` (see `SessionScreen`'s layout note), so the explorer's own box adds it. Re-scanning on every keystroke is the cost to watch. For a file under `FILE_LIMIT` it is expected to be a few milliseconds (the scanner replaced a library that took 174ms on 200 lines; ours has not been measured on a 1 MiB file). Measure before deciding whether edit mode needs a size below which highlighting is on -- see "Numbers to measure". ### 10. The explorer draws over the session, and back closes it first `Screen.Session` in `AppRoot` gains a `files: FilesTarget?`. When set, the `FilesScreen` is composed **on top of** the session in the same `Box`, and the session stays composed under it: its event stream keeps flowing, its scroll position and draft stay where they were, and returning from a file costs nothing. Back -- the button and the platform gesture -- clears `files` when it is set and goes to the list otherwise. Inside the explorer the same back steps one level: editor → viewer (with the unsaved question), viewer → listing, listing → parent directory it came from, and only from the starting directory does it close. "Back returns; it does not exit." Rejected: a `Screen.Files` beside `Screen.Session`. Every route back from a leaf screen goes to Main today, and a session disposed and re-created on each return refetches its transcript over the tunnel -- exactly the flip between "what did it change" and "what is it saying" this feature is for. The image viewer already made the same choice for the same reason. ### 11. The listing is drawn as it came, sorted at display time Entries carry name, kind (`directory`, `file`, `other`), size, mtime, and whether the entry is a symlink (with the kind being the *target's*, from `find -printf '%Y'`, so a link to a directory navigates). Sorted on the phone, stably: directories first, then case-insensitive name. Dotfiles are shown -- in a repository they are half of what matters. A row is the glyph, the name, and the size for a file; tapping a directory descends, tapping a file opens it. Each directory's entries are kept for as long as the explorer is open, keyed by path, so returning to one does not refetch it; the header's refresh glyph refetches the current one on purpose, and a create refetches the directory it created into, since that is what the operation changed. An empty directory says "Nothing here". A listing that failed says why, in the machine's words, where the rows would be -- never an empty list. Entries are separated by `\0` in the script's output and by `\t` within a line (`find -printf '%y\t%Y\t%s\t%T@\t%f\0'`), so a filename with a newline or a tab in it survives; `parse_entries` is a unit test with exactly those names in it. ### 12. Icons Added to `NerdIcons.kt` **and** `build-icon-font.sh`, then the script rerun and its output committed (it needs network): - `md-folder` U+F024B -- the header button, and directory rows. The same codepoint dev-updater uses, and it must not drift from it, as the cog and the refresh arrow already must not. - `md-plus` U+F0415 -- create. Also dev-updater's. - `md-pencil` U+F03EB -- edit. - `md-content_save` U+F0193 -- save. - `md-file_outline` U+F0224 -- file rows. All five were looked up in Nerd Fonts' own `glyphnames.json` rather than copied from memory, which is the check that a codepoint means the glyph its comment names. **Where the folder button sits**: between the usage chart and the cog, so the header reads widest scope to narrowest and the cog stays at the end where every other screen in this app keeps it. Asked for in that order by Iris on 2026-09-03. ### 13. The render report moves, and the benches move with it The speedometer goes. The report it copies is the standard measurement `transcript-bench.sh` and `stream-bench.sh` read from logcat, so it stays reachable: a "Copy render timings" row in `SessionSettingsDialog`, which is where the session's other about-the-session controls already are. **No script that drives the UI taps by coordinate, and moving this button is where that rule gets enforced** (Bryan, 2026-09-03). Both bench scripts press the button today as `ui-trace record --do 'tap 723 205'`, a position measured once by hand. Anything that moves the header -- this change, a font size, a density, another emulator -- makes that tap land on whatever now sits there, and the script then reports a number that was never measured, which reads exactly like a result. A control is found by the name it already carries for assistive technology (`GlyphButton`'s `label`, a row's text) and pressed at the bounds the screen reports at that moment. That belongs in the tool, not in each script: `ui-trace` in `~/repos/emulator-tools` gains a tap-by-label action (`tap 'Session settings'`, resolving the element's box from the same uiautomator tree `elements` already reads, at the moment of the gesture), and both benches move onto it in the same commit as the button -- cog, then "Copy render timings" -- so the measurement is never unavailable and never wrong quietly. `grep -n "tap [0-9]" app/*.sh` is the check that no coordinate tap is left, and it goes in the emulator-tools README beside the action. Once the action exists, this rule applies to every script that presses something on an Android screen, not only these two. ## HTTP surface Added to the table in `routes.rs`'s module doc: ```text GET /setups/{id}/dir?path=P entries of directory P, and P resolved GET /setups/{id}/file?path=P content of file P, or why not PUT /setups/{id}/file {path, content, ifSha256} -> new size/mtime/sha256 (409 when the file no longer matches ifSha256) POST /setups/{id}/file {path} create empty; refused if it exists POST /setups/{id}/dir {path} create; refused if it exists ``` Bodies use `deny_unknown_fields` like every other body here. Paths in the query string are URL-encoded by `Api.kt`'s existing helper. ```json GET dir -> {"path":"/home/bob/repos/ai-app", "entries":[{"name":"app","kind":"directory","size":4096,"modified":1756900000,"link":false}, {"name":"README.md","kind":"file","size":1234,"modified":1756900000,"link":false}]} GET file -> {"path":"/…/x.rs","kind":"text","size":1234,"modified":…,"sha256":"…","content":"…"} | {"path":"/…/a.png","kind":"binary","size":45678,"modified":…} | {"path":"/…/big.log","kind":"tooBig","size":12345678,"modified":…} PUT file -> {"size":1240,"modified":…,"sha256":"…"} ``` Errors: `BadRequest` with the machine's message for a path that is not there, not allowed or not absolute; the existing 409 variant for the precondition; `Internal` only for the server's own faults. The message is what the phone shows, in place, so it is written to be read there. ## Server work (`server/src/files.rs`) One module, with the same shape as `setups.rs`: the scripts as constants, one `pub async fn` per operation taking `&Transport`, and the parsing as pure functions with tests. 1. `Transport::capture_with_input(launch, stdin)` -- `capture` with bytes on stdin. `ship_attachment` in `routes.rs` builds this by hand today (an `ssh::command`, a `File` on stdin, `output().await`); it moves onto the new helper in the same change, so there is one description of "run this there with this on stdin" rather than two. 2. `list(transport, path) -> Listing`: `cd -- "$1" && pwd -P && find . -mindepth 1 -maxdepth 1 -printf '%y\t%Y\t%s\t%T@\t%f\0'`. First line is the resolved path; the rest is entries. `parse_entries` tested with names containing a tab, a newline, a leading dash and a `'`. 3. `read(transport, path) -> Read`: `stat -c '%s %Y' -- "$1"`, refuse above `FILE_LIMIT` before `cat` so a 2 GB log never crosses the tunnel, then `sha256sum -- "$1"` and `cat -- "$1"`, header lines then bytes; the server splits at the header and decides `text`/`binary` by `String::from_utf8`. 4. `write(transport, path, expected_sha256, bytes) -> Written`: the script in decision 6, with a distinct exit code for the precondition (`exit 3`) that the route maps to 409; anything else is the machine's stderr. 5. `create_file`, `create_dir`: decision 7. 6. Routes in `routes.rs`, each resolving the setup with `setup_by_id` and `Transport::for_setup` as `set_cwd` does. The path check (absolute or `~`) is one function shared with `set_cwd`, which has it inline today. 7. Tests: the parsers; the quoting (a path that tries to close the quote ends up as one absurd argument -- `ssh.rs` has the pattern); and an integration test running each script through `Transport::Here` against a `tempfile` tree, which is cheap because `sh` is there wherever `cargo test` runs. The precondition test writes the file between the read and the write and asserts the 409 path. 8. PLAN.md: the Security paragraph from decision 3, and an "Explorer" section pointing here. AGENTS.md: the layout bullet for `files.rs`. ## App work 1. `Api.kt`: `fetchDir`, `fetchFile`, `writeFile`, `createFile`, `createDir`, and the three data classes (`DirEntry`, `FileContent` as a sealed class with the four kinds, `Written`). 2. `NerdIcons.kt` + `build-icon-font.sh`: decision 12. 3. `Languages.kt` (or `CodeFence.kt`, wherever `FENCE_LANGUAGES` sits): `fileLanguage(name)`. 4. `FileLines.kt`: the pure half of the viewer -- spans bucketed per line, `lineOf(index) -> AnnotatedString` -- so it has a JVM unit test beside `HighlighterTest`, the app's one existing test suite, covering a block comment that spans lines and a file with no trailing newline. 5. `FilesScreen.kt`: the listing, the navigation stack, the per-directory cache, the create dialog (modelled on `AddSetupDialog`: fields, a busy state, the failure shown inside the dialog beside the button that caused it), and the header. `LoadState` for the listing. 6. `FileViewer.kt`: decision 8. `FileEditor.kt`: decision 9, including the conflict dialog. 7. `AppRoot.kt`: decision 10. `SessionScreen.kt`: the folder glyph where the speedometer was, `onFiles(setup, cwd)` out to the root. 8. `SessionSettingsDialog.kt`: the render-report row. In `~/repos/emulator-tools`, `ui-trace`'s tap-by-label action; then the two bench scripts onto it, with no coordinate tap left in `app/*.sh`. ## Numbers to measure, before deciding - Scan time for a 1 MiB source file on the emulator, and on the phone through the render report. That decides whether `FILE_LIMIT` is right and whether edit mode highlights every keystroke or only below a size. - Time to first line for a 1 MiB file over the tunnel: the read, the transfer, the scan, the first composition. If the transfer dominates, the route gains nothing from streaming; if the scan does, it moves to a worker with the plain text drawn first. - The `BasicTextField` at 20,000 lines: whether typing stays responsive. If not, edit mode gets a lower cap than the viewer, stated in the editor rather than discovered by a stuck keyboard. ## Later, deliberately not now - Delete, rename and move. Destructive controls belong here eventually, shown and confirmed rather than hidden, but none of them is needed to read or change a file. - Images in the viewer, through the existing `SessionImageViewer`. - Following an agent's edits live: a file open in the viewer refreshing when a `Write`/`Edit` tool call on the same path lands in the transcript. The transcript already knows the path. - Remembering the last directory per session. - Uploading from the phone into a directory. Attachments already do the upload half; this would be the same route with a chosen destination. - Search within a file, and find-in-files.