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No files matched your search
@@ -0,0 +1,6 @@
|
||||
# xtask convention (https://github.com/matklad/cargo-xtask), without folding
|
||||
# every crate in this repo into one workspace -- they are deliberately
|
||||
# independent (see run-tests.sh, which cds into each). `cargo xtask apk`
|
||||
# from the repo root runs xtask/src/main.rs directly.
|
||||
[alias]
|
||||
xtask = "run --quiet --manifest-path xtask/Cargo.toml --"
|
||||
@@ -0,0 +1,244 @@
|
||||
---
|
||||
name: ai-app-rigs
|
||||
description: ai-app's test rigs, harness scripts and reference measurements - ui-sandbox.sh, debug-transcript.sh, transcript-bench.sh, stream-bench.sh, trace-draw.sh, the /usage fixture vocabulary, the fake CLI, the rule that no UI-driving script may tap a coordinate, how to test llama.cpp and ssh on this machine, how importing behaves, and the scroll/stream/explorer numbers not worth re-measuring. Read before running or writing a benchmark, driving the app's UI from a script, exercising the session lifecycle, testing a llama or remote session, or touching the import screen.
|
||||
---
|
||||
|
||||
# ai-app: rigs, harnesses and measurements
|
||||
|
||||
Moved out of `AGENTS.md` on 2026-09-04 so it is read when it is relevant
|
||||
rather than sent with every request in this repo -- it was 12 KB of the 35 KB
|
||||
that file cost on every one. Unchanged in the move, and still the only copy.
|
||||
|
||||
## The rigs
|
||||
|
||||
Each exists because something was invisible without it.
|
||||
|
||||
- **`app/ui-sandbox.sh`** — a second `ai-server` with its own `$HOME`, config
|
||||
and data directory, holding eight invented Claude Code transcripts and a
|
||||
`claude` that is two lines of shell. **That isolation is the point**: the
|
||||
import screen lists whatever is in `~/.claude/projects`, which in this VM is
|
||||
real agent transcripts, so exercising *delete* against the ordinary server
|
||||
deletes somebody's conversation and exercising *import* starts a real
|
||||
`--resume` on the owner's account.
|
||||
Its port and root derive from the checkout's name, so two checkouts'
|
||||
sandboxes cannot reach each other, and its token is generated once into
|
||||
`~/.config/ai-app/sandbox-token` and carried across restarts along with any
|
||||
the enrolment flow appended — so the emulator app is enrolled **once** (the
|
||||
start banner prints the command) and stays enrolled. It shares the real TLS
|
||||
certificates, because the installed APK pins that CA.
|
||||
Driving verbs, so none of this is re-derived per session:
|
||||
`./ui-sandbox.sh spawn [title]` (an echo session, prints its id),
|
||||
`./ui-sandbox.sh send SID text|@file`, and
|
||||
`./ui-sandbox.sh api /path [curl args]`.
|
||||
`./ui-sandbox.sh keep` restarts the server without wiping the sessions and
|
||||
enrolment already there — for when the fixture under test was expensive to
|
||||
build; plain `start` wipes them, which is right for the list-screen
|
||||
fixtures and wrong for that.
|
||||
It passes `--delay` by default, and `AI_SANDBOX_BIG_MB` puts one large
|
||||
transcript among the small ones while `AI_SANDBOX_SPAWN_DELAY` makes the
|
||||
fake CLI slow to start. Both exist because operations that finish in
|
||||
milliseconds have states on the way that nothing can observe, and an
|
||||
unobservable state is one where broken and working look identical.
|
||||
It also builds a fixture tree at the sandbox home's `~/files` for the
|
||||
explorer, holding the states otherwise only reachable by finding a real
|
||||
machine in one: an empty directory, a name with a tab and one with an
|
||||
apostrophe, a binary file, one over `FILE_LIMIT`, one `chmod 000`, a
|
||||
symlink to a directory and a broken one, a source file per language, and
|
||||
the three sizes the limits were measured against (`edit-32k.rs`,
|
||||
`edit-128k.rs`, `big-source.rs`). Point a session at it with
|
||||
`./ui-sandbox.sh api /sessions/<id>/cwd -X POST -H 'content-type: application/json' -d '{"cwd":"~/files"}'`.
|
||||
The explorer's 409 is produced by editing the file on the machine
|
||||
(`printf … > file`) between pressing the pencil and pressing save.
|
||||
- **`app/debug-transcript.sh`** — a real conversation on the emulator. The
|
||||
echo driver is the right rig for most things and the wrong one for anything
|
||||
whose cost scales with what was actually written: a real reply is longer,
|
||||
is real markdown, and carries tool calls whose input and output are
|
||||
kilobytes. Two faults were invisible until a real transcript was loaded — a
|
||||
page of history landing mid-fling threw the reader back to the newest end,
|
||||
and parsing one real reply took 51ms against 4.6ms for a synthetic one.
|
||||
`-b` takes the biggest conversation on the machine rather than the newest,
|
||||
which is what a scrolling test wants; `--stop` takes it down.
|
||||
It copies the transcript into `/tmp` and gives the server a `HOME` of its
|
||||
own, so the import can only see the copy — importing spawns `claude
|
||||
--resume`, and against the real file that is a second CLI writing to a
|
||||
conversation somebody may still be in. **A transcript never goes in this
|
||||
repository**: they hold whatever was said, read and written in that
|
||||
session, and `~/repos` is shared with the host besides.
|
||||
- **`/usage` in an echo session puts up an invented meter**, which is how the
|
||||
rate-limit screens' states are reached without spending quota: `/usage 42`,
|
||||
`/usage 95 20` (minutes left), `/usage 42 never` (the between-blocks window
|
||||
with no reset time), `/usage 42 unreadable`, `/usage notloggedin`,
|
||||
`/usage unreachable`, `/usage failed`, `/usage off`. The vocabulary is
|
||||
`usage::Fixture`'s, since those are its states. With none set an echo
|
||||
session meters nothing, which is the ordinary case and draws no bar.
|
||||
- **A fake CLI exercises the process lifecycle without a token.** Point a
|
||||
`claude_cli` provider's `command` at a two-line script — `#!/bin/sh` and
|
||||
`cat > /dev/null` — and it behaves the way the lifecycle code cares about:
|
||||
it holds the fifo open, records a real pid, writes nothing, and dies on a
|
||||
signal. So adopt, stop, restart and start are all drivable without a real
|
||||
`--resume` and without spending a turn on somebody's account. Reach for
|
||||
this when what is under test is *whether a process is running*, and for
|
||||
`debug-transcript.sh` when it is *what the transcript draws*.
|
||||
- **`app/transcript-bench.sh`** is the standard scroll measurement: it opens
|
||||
the first session (or `-k` keeps the current screen), scrolls a fixed
|
||||
gesture loop, and prints the app's render report — the same one the in-app
|
||||
copy button produces, whose `on screen:` line names what the viewport was
|
||||
holding. Compare two runs with the same gestures; the emulator's absolute
|
||||
frame times transfer nothing, the report's accounting does. Run it either
|
||||
side of any change under `Markdown*.kt`, `Transcript*.kt` or
|
||||
`SessionScreen.kt`'s list, and put the report in the commit. The numbers
|
||||
that move first are the worst `record: one block`, the reparse mean while
|
||||
streaming, and the draw phase's accounting line.
|
||||
- **`app/stream-bench.sh [-k] FILE`** is that measurement for a reply still
|
||||
arriving. It taps "Jump to latest" so the list is pinned to the newest end,
|
||||
resets the report, sends FILE, waits for the transcript to stop growing,
|
||||
and prints. Both of those are corrections to a first version that measured
|
||||
nothing: a transcript parked further back never redraws while a reply
|
||||
streams into it, and a session is idle at *both* ends of a turn, so polling
|
||||
for idle answers before the turn has started.
|
||||
- **`app/trace-draw.sh`** names what a scrolling frame spends inside the
|
||||
framework, from `atrace` text output with no trace processor needed. It is
|
||||
how the cost of a layout node per link was attributed to the framework
|
||||
rather than guessed at.
|
||||
|
||||
### Driving the UI
|
||||
|
||||
**No script that drives this app's UI presses a coordinate.** Every control
|
||||
is found by the name it already carries for assistive technology —
|
||||
`ui-trace record --do "tap 'Session settings'"` — which resolves the label
|
||||
against the screen at the moment of the gesture and fails the whole run when
|
||||
it is not there. `app/bench-lib.sh` is what the bench scripts share for it. A
|
||||
coordinate is a position measured once by hand, and anything that moves the
|
||||
control makes the tap land on whatever now sits there — the bench then
|
||||
reports a number that was never measured, which reads exactly like a result.
|
||||
Both bench scripts pressed the render report at `tap 723 205` until that
|
||||
button moved into the session settings dialog on 2026-09-03. The check that
|
||||
none has crept back:
|
||||
|
||||
grep -n "tap [0-9]" app/*.sh
|
||||
|
||||
Swipes are still coordinates, deliberately: a gesture across a scrolling area
|
||||
is a distance rather than a control.
|
||||
|
||||
**Two traps in the emulator bench loop**, each of which cost a run.
|
||||
`adb shell pm clear` removes the enrolment and the notification permission
|
||||
along with the saved anchors, so the next run measures a permission dialog —
|
||||
re-enrol with the command `ui-sandbox.sh` prints, and
|
||||
`pm grant … POST_NOTIFICATIONS`. And a saved scroll anchor is per session id,
|
||||
so the only way two builds start a scroll from the same place is a *fresh
|
||||
session for each*.
|
||||
|
||||
**The emulator is `~/repos/emulator-tools`' business, not this repo's.**
|
||||
`emu up` creates and boots the AVD named after this checkout — whatever `emu
|
||||
name` prints, never a name typed out here, since this file is the same in
|
||||
every clone. `run-android.sh` is that plus a build and an install. The `adb`
|
||||
on `PATH` after sourcing `android-env.sh` is that repo's wrapper, which fills
|
||||
in `-s` from the same rule. Gradle does not go through it, so a Gradle init
|
||||
script from `emulator-tools` runs `emu check` before `installDebug`,
|
||||
`uninstallDebug` and `connectedAndroidTest` and fails rather than fanning out
|
||||
to every attached device; when it refuses, say which device you mean at the
|
||||
moment you use it — `ANDROID_SERIAL=$(emu serial) ./gradlew …`.
|
||||
|
||||
### Testing llama.cpp and ssh here
|
||||
|
||||
**Both are set up here as of 2026-09-04** and need nothing typed. The
|
||||
prebuilt CPU llama.cpp lives outside the repo at `~/.local/opt/llama.cpp`
|
||||
(the 15 MB `ubuntu-x64` release asset) and is symlinked as
|
||||
`/usr/local/bin/llama-server`, which is what makes **discovery find it over
|
||||
ssh**: `~/.local/bin` is not on the PATH a non-interactive ssh session gets.
|
||||
It resolves its own libraries through `$ORIGIN`, so no `LD_LIBRARY_PATH` is
|
||||
needed. One model is downloaded — `unsloth/Qwen3-0.6B-GGUF/Qwen3-0.6B-Q8_0.gguf`,
|
||||
639 MB under `~/.local/share/ai-app/models` — and answers at usable speed on
|
||||
this VM's 8 cores. **Do not test with a 2-bit quant**: the
|
||||
IQ2_XXS of that model produces fluent nonsense, which reads exactly like a
|
||||
broken driver — `llama-cli` produces the same from the file directly, which
|
||||
is how to tell the two apart in a hurry.
|
||||
|
||||
There is no second machine, so **ssh this VM to itself**. That is set up
|
||||
too: the key is `~/.config/ai-app/ssh-self` (its public half is in
|
||||
`~/.ssh/authorized_keys`, labelled removable), and the real config carries a
|
||||
setup called **"this vm over ssh"** — `bob@127.0.0.1` with that
|
||||
`identityFile` plus
|
||||
`options: ["StrictHostKeyChecking=no", "UserKnownHostsFile=/tmp/ai-app-known-hosts"]`
|
||||
so it touches nothing real — offering `claude-cli` and `llama-cpp`. It is the
|
||||
whole rig for "does a remote llama session work", since the far machine is
|
||||
this one and the model file is the same file. For a throwaway setup of your
|
||||
own, point a provider's `command` at something harmless like `/bin/echo`
|
||||
rather than at `claude`: the transport is what is under test, the process
|
||||
exiting immediately is the signal, and it costs no tokens. The remote login
|
||||
shell here is **fish**; the
|
||||
remote script and `ssh.rs`'s POSIX quoting happen to mean the same thing in
|
||||
both, but that is luck rather than design, and a shell that is neither is the
|
||||
thing to suspect first if a remote spawn ever mangles an argument.
|
||||
|
||||
## Importing
|
||||
|
||||
The import list reports each session's **size as well as its line count**,
|
||||
because the two disagree in the way that matters: these transcripts embed
|
||||
screenshots as base64, so one line can be a megabyte. On this machine a 69 MB
|
||||
session has 3,427 lines and a 44 MB one has 6,792 — nothing about a line
|
||||
count tells you what continuing a session will cost. Shown, not warned about;
|
||||
importing a large session is a choice somebody is entitled to make.
|
||||
|
||||
**Never import a Claude Code session that is open in a terminal.** The app
|
||||
refuses it — see PLAN.md for the incident that made that a refusal rather
|
||||
than a warning.
|
||||
|
||||
**One Claude Code session id can name two files, and the listing offers it
|
||||
once.** Resuming from a different working directory makes the CLI write a
|
||||
second transcript with the same id under that directory's project folder — an
|
||||
ordinary state of a machine, not corruption. Everything downstream addresses
|
||||
a session by id, and the phone keyed its list on it, so two rows sharing one
|
||||
**closed the app** on a Compose duplicate-key throw. `parse_listing` keeps
|
||||
the copy with the most lines, because the other is usually a few-hundred-byte
|
||||
stub and is often the *newer* of the two, so recency is the wrong key.
|
||||
Deleting removes every copy rather than the first, or the row came back after
|
||||
a delete that reported success. The phone's half is `uniqueItems`, which
|
||||
every list keyed on a server-chosen id goes through: a repeat there must
|
||||
never be able to close the app, whatever produced it.
|
||||
|
||||
**Deleting a session offers to take the machine's own transcript with it** —
|
||||
`DELETE /sessions/{id}?deleteForeign=true`, behind a switch in the
|
||||
confirmation, and only where the driver keeps a record of its own
|
||||
(`keepsOwnTranscript`, which today means Claude Code). Off by default,
|
||||
because leaving that copy is what makes an ordinary delete recoverable — and
|
||||
the dialog's paragraph is rewritten when it is on rather than appended to,
|
||||
since the sentence promising the conversation "should still be there to
|
||||
import again" is exactly the one the switch makes false. The server deletes
|
||||
the machine's copy *first*, so a machine it cannot reach leaves the session
|
||||
where it was instead of half-deleted.
|
||||
|
||||
## Measurements worth not re-taking
|
||||
|
||||
- **What the transcript screen costs to scroll.** Taken 2026-08-30 on the GPU
|
||||
emulator against a real imported transcript with the server at
|
||||
`--delay 120`. Settled and flinging fast, both into fresh history and back
|
||||
through rows already drawn: **5.2–5.9% janky frames, 99th percentile
|
||||
29–32ms, 0–2 slow UI-thread frames.** The stock Settings app on the same
|
||||
device is 3.3% and 38ms, so this is at the platform floor. The number that
|
||||
is *not* at the floor is the first few seconds after opening a session,
|
||||
where every row on the way is being composed for the first time; that is
|
||||
inherent to a lazy list and it is why a measurement taken before the screen
|
||||
settles reads three times worse. **Settle first, then reset `gfxinfo`.**
|
||||
- **The reset path is not reachable by reopening a session.** Measured
|
||||
2026-09-04 against a session streaming at 20 events a second: reopening one
|
||||
with an anchor 1,800 events back connects **87–119 events behind**, well
|
||||
under `CATCH_UP_LIMIT`'s 200, because the restore is two requests — the
|
||||
opening page, then one span covering the whole distance. To exercise the
|
||||
reset at all you have to lower `CATCH_UP_LIMIT` in a throwaway build; at 5
|
||||
the app takes the reset on a live connection, clears, refills and carries
|
||||
on without reconnecting.
|
||||
- **The session screen's stream survives backgrounding here** — 20 seconds at
|
||||
the launcher while 415 events were produced brought no reconnect at all,
|
||||
which is not what the comment above that loop expects, and is most likely
|
||||
this emulator being headless rather than the phone's behaviour.
|
||||
- **Reopening a cached session costs one request for one event** (the probe),
|
||||
and scrolling the whole conversation back costs nothing more; a cold open
|
||||
of the same 500-event session is two pages, 100 events. Measured
|
||||
2026-09-04 on the emulator against the sandbox.
|
||||
- **Reading is cheap and editing is not.** The viewer handles a 1 MiB,
|
||||
28,000-line file because it draws one row per line; the editor is one
|
||||
`BasicTextField`, which costs two seconds a frame at 128 kB and stops the
|
||||
app at 1 MiB, so `EDIT_LIMIT` caps it at 32 kB with the reason said on
|
||||
screen. If you make the editor faster, that number is what to move.
|
||||
EXPLORER.md's "What the measurements said" has the rest.
|
||||
@@ -55,4 +55,21 @@ components: [
|
||||
// the terminal the QR would be printed on.
|
||||
enroll: "server/enroll-link.sh",
|
||||
),
|
||||
// E5 (RUST.md): app/shellApp packaged by the xtask instead of Gradle
|
||||
// (cargo ndk -> javac -> d8 -> aapt2 -> zipalign -> apksigner), signed
|
||||
// with the same release key as "app" above so the two can install
|
||||
// over each other -- a separate component, not a mode of "app" above,
|
||||
// because it is a different applicationId (com.example.aiapp.shell)
|
||||
// built by a different tool from different sources. No `cwd`: it
|
||||
// defaults to this checkout's root, which both the `cargo xtask`
|
||||
// alias (`.cargo/config.toml`, resolved relative to the working
|
||||
// directory cargo is run from) and `cargo xtask apk`'s own publishing
|
||||
// step (`xtask/build/outputs/apk/<mode>/*.apk`, matching discover.rs's
|
||||
// `*/build/outputs/apk/*/*.apk` pattern -- see apk.rs's module doc)
|
||||
// both need.
|
||||
Apk(
|
||||
name: "shell",
|
||||
modes: ["release", "debug"],
|
||||
build: "cargo xtask apk",
|
||||
),
|
||||
],
|
||||
+14
@@ -1,6 +1,7 @@
|
||||
.gradle/
|
||||
build/
|
||||
app/androidApp/build/
|
||||
app/shellApp/build/
|
||||
local.properties
|
||||
.kotlin/
|
||||
*.iml
|
||||
@@ -9,6 +10,11 @@ local.properties
|
||||
server/target/
|
||||
event-model/target/
|
||||
client-core/target/
|
||||
android-shell/target/
|
||||
|
||||
# E3's native library, built by cargo-ndk straight into the Gradle module
|
||||
# (RUST.md) -- an artifact, like server/target/ above, not source.
|
||||
app/shellApp/src/main/jniLibs/
|
||||
|
||||
# Server logs from a development run (ai-server.log by convention,
|
||||
# wg-test.log from ./test-wg-tunnel.sh).
|
||||
@@ -26,3 +32,11 @@ sessions/
|
||||
|
||||
# iris, the in-house UI library, is vendored at iris/ and built by cargo.
|
||||
iris/target/
|
||||
iris/android-app/target/
|
||||
|
||||
# E5's packaging xtask (RUST.md). `build/` above already covers
|
||||
# xtask/build/outputs/apk (the published APK, see apk.rs's module doc).
|
||||
# The repo root has no Cargo workspace, so this is xtask's own
|
||||
# intermediate working files (target/xtask/apk/...), not a shared one.
|
||||
xtask/target/
|
||||
/target/
|
||||
@@ -5,11 +5,14 @@ replacing the Claude app for daily use. Rust/Axum backend on the desktop,
|
||||
Kotlin/Compose Android app, WireGuard + pinned self-signed TLS + bearer token
|
||||
between them.
|
||||
|
||||
**`PLAN.md` is the design source of truth** — every decision with its date,
|
||||
its rationale, and what was rejected. Read it before changing anything
|
||||
**`docs/PLAN.md` is the design source of truth** — every decision with its
|
||||
date, its rationale, and what was rejected. Read it before changing anything
|
||||
structural, and update it in place when a decision changes rather than
|
||||
letting this file and the plan become two versions of the truth. This file is
|
||||
the working notes layer: layout, commands, rigs, and things that have bitten.
|
||||
The design and working documents live under `docs/` — everything except this
|
||||
file and `CLAUDE.md`, which stay at the root because that is where Claude
|
||||
Code and other agent harnesses look for them.
|
||||
|
||||
The central design point, worth not undoing by accident: **a session is a
|
||||
child process, translated into one common event model.** A new session type
|
||||
@@ -22,7 +25,7 @@ Mirrors `../dev-updater` deliberately: same stack (axum 0.8 +
|
||||
axum-server/rustls, tokio, clap; Kotlin 2.4.x + Compose Multiplatform, single
|
||||
`:androidApp` module), same cert scheme, same registry pattern. Read
|
||||
dev-updater's `README.md` and `AGENTS.md` before diverging from them.
|
||||
Module-by-module intent is in PLAN.md's "Backend layout".
|
||||
Module-by-module intent is in `docs/PLAN.md`'s "Backend layout".
|
||||
|
||||
- `server/` — the Rust backend (`ai-server`). `routes.rs`'s module doc
|
||||
comment is the HTTP table and the surface's source of truth.
|
||||
@@ -40,16 +43,23 @@ Module-by-module intent is in PLAN.md's "Backend layout".
|
||||
projects version-locked to the commit this repo pins. What deliberately did
|
||||
**not** move is the API surface and the config *schema*: routes, drivers,
|
||||
sessions and setups are what makes this project itself.
|
||||
- `EXPLORER.md` — the file explorer's design (`server/src/files.rs` and
|
||||
`FilesScreen.kt` / `FileViewer.kt` / `FileEditor.kt`).
|
||||
- `TRANSCRIPT_CACHE.md` — the phone's copy of what it has been sent. Read it
|
||||
before touching `TranscriptCache.kt`, `TranscriptSource.kt`, or the opening
|
||||
and stream effects in `SessionScreen.kt`.
|
||||
- `TODO.md` — the working list.
|
||||
- `RUST.md` — the plan for moving the app to Rust (on the `rustify`
|
||||
branch of the `ai-app-2` clone): what has to be reproduced, the
|
||||
framework decision, and the ordered experiments with their pass
|
||||
conditions. Read it before touching anything under that branch.
|
||||
- `docs/` — every design and working document except this file and
|
||||
`CLAUDE.md`:
|
||||
- `docs/EXPLORER.md` — the file explorer's design (`server/src/files.rs`
|
||||
and `FilesScreen.kt` / `FileViewer.kt` / `FileEditor.kt`).
|
||||
- `docs/TRANSCRIPT_CACHE.md` — the phone's copy of what it has been sent.
|
||||
Read it before touching `TranscriptCache.kt`, `TranscriptSource.kt`, or
|
||||
the opening and stream effects in `SessionScreen.kt`.
|
||||
- `docs/TODO.md` — the working list.
|
||||
- `docs/RUST.md` — the plan for moving the app to Rust (on the `rustify`
|
||||
branch of the `ai-app-2` clone): what has to be reproduced, the
|
||||
framework decision, and the ordered experiments with their pass
|
||||
conditions. Read it before touching anything under that branch.
|
||||
- `docs/IRIS.md`, `docs/IRIS_TODO.md`, `docs/DECISIONS.md`,
|
||||
`docs/LAYOUT.md`, `docs/TEXTURES.md`, `docs/CLIENT_CORE.md` — iris's
|
||||
own public API log, working list, decisions log, layout/render design,
|
||||
and texture-atlas design, and the client-core crate's design,
|
||||
respectively.
|
||||
- `.dev-updater.ron` — what Dev Updater builds here: the server (run as
|
||||
`service: Managed(…)`, supervised by Dev Updater's own implementation
|
||||
rather than a script kept here) and the APK, in parallel. It points at
|
||||
@@ -86,7 +96,11 @@ two icon buttons the same width without either being given one — and why
|
||||
:androidApp:compileDebugKotlin :androidApp:lintDebug
|
||||
:androidApp:testDebugUnitTest`. The unit tests are JVM-only and cover the
|
||||
syntax highlighter, the ANSI parser and the transcript cache — the app's
|
||||
pure logic with no Android in it.
|
||||
pure logic with no Android in it. Touching anything under `BenchFixture.kt`,
|
||||
`BenchNetwork.kt`, `BenchRun.kt` or the `bench` build type also needs
|
||||
`:androidApp:compileBenchKotlin :androidApp:lintBench` — a second build
|
||||
type compiles separately and lint has caught real bugs debug alone never
|
||||
would (see "Android Lint" below).
|
||||
- **Android Lint is not optional and is not run by a build.** It found a
|
||||
crash that had been shipping (`java.time` on a minSdk-24 app with
|
||||
desugaring off) and later a permission check that silently dropped every
|
||||
@@ -146,6 +160,27 @@ two icon buttons the same width without either being given one — and why
|
||||
|
||||
Each exists because something was invisible without it.
|
||||
|
||||
- **The `bench` build type and `app/bench-fixture/`** exist for P0 (RUST.md
|
||||
and DECISIONS.md's 2026-09-05 entries), the phone benchmark gate Iris
|
||||
asked for before porting continues: a deterministic, checked-in synthetic
|
||||
transcript (`app/bench-fixture/generate.py`, never a real one) that both
|
||||
this app and iris open with no server, so a frame-time comparison
|
||||
measures the renderer rather than the data. `./build-apk.sh bench` builds
|
||||
it — own application id (`com.example.aiapp.bench`) and label ("AI
|
||||
Sessions bench") so it installs beside a real enrollment rather than
|
||||
replacing it. Opening it goes straight to a session screen holding the
|
||||
fixture (no enrollment, no permission prompts) with a "Run benchmark"
|
||||
control beside "Copy" in session settings: it drives the same scroll loop
|
||||
and streaming phase `transcript-bench.sh`/`stream-bench.sh` drive over
|
||||
`ui-trace`, but in-process, since a real phone has no usable system
|
||||
tracing and no agent can drive one (this-machine-android's skill).
|
||||
`BenchFixture.kt`/`BenchNetwork.kt` fake the backend by installing a
|
||||
`URLStreamHandlerFactory` that answers `TranscriptSource`/`EventStream`'s
|
||||
requests from an in-memory copy of the fixture instead of opening a
|
||||
socket — so the fold, the paging and `uniqueItems` under test are the
|
||||
screen's real ones, never a shortcut built just for this. The report
|
||||
gains a `bench:` section (process CPU time, peak RSS, battery current) on
|
||||
every build, empty except when `BenchRun.kt` filled it in.
|
||||
- **`app/ui-sandbox.sh`** — a second `ai-server` with its own `$HOME`, config
|
||||
and data directory, holding eight invented Claude Code transcripts and a
|
||||
`claude` that is two lines of shell. **That isolation is the point**: the
|
||||
@@ -226,6 +261,13 @@ Each exists because something was invisible without it.
|
||||
framework, from `atrace` text output with no trace processor needed. It is
|
||||
how the cost of a layout node per link was attributed to the framework
|
||||
rather than guessed at.
|
||||
- **`iris/android-app/build-apk.sh [debug|release] [--abi ...] [--features
|
||||
...]`** builds iris-android-app's cdylib (`cargo ndk`) and its APK
|
||||
(Gradle) in one step and verifies the result (`aapt2`/`apksigner`), and
|
||||
**`iris/android-app/run-bench.sh [--apk PATH]`** installs it on this
|
||||
checkout's own emulator, taps "Run benchmark" by label, and prints the
|
||||
report -- written so the P0 build/install/tap/read-report cycle stops
|
||||
being retyped by hand each time (docs/RUST.md's P0 box).
|
||||
|
||||
### Driving the UI
|
||||
|
||||
@@ -312,7 +354,7 @@ means here:
|
||||
## Sessions outlive the backend
|
||||
|
||||
Since 2026-08-29 a session's process is deliberately left running when
|
||||
`ai-server` stops, and adopted again when it starts. PLAN.md has the design;
|
||||
`ai-server` stops, and adopted again when it starts. docs/PLAN.md has the design;
|
||||
day to day:
|
||||
|
||||
- **Stopping the server no longer stops the sessions.** After `pkill
|
||||
@@ -345,7 +387,7 @@ count tells you what continuing a session will cost. Shown, not warned about;
|
||||
importing a large session is a choice somebody is entitled to make.
|
||||
|
||||
**Never import a Claude Code session that is open in a terminal.** The app
|
||||
refuses it — see PLAN.md for the incident that made that a refusal rather
|
||||
refuses it — see docs/PLAN.md for the incident that made that a refusal rather
|
||||
than a warning.
|
||||
|
||||
**One Claude Code session id can name two files, and the listing offers it
|
||||
@@ -521,4 +563,4 @@ belongs in `~/.claude/TOOLCHAIN.md` or `~/.claude/MACHINE.md` instead.
|
||||
`BasicTextField`, which costs two seconds a frame at 128 kB and stops the
|
||||
app at 1 MiB, so `EDIT_LIMIT` caps it at 32 kB with the reason said on
|
||||
screen. If you make the editor faster, that number is what to move.
|
||||
EXPLORER.md's "What the measurements said" has the rest.
|
||||
docs/EXPLORER.md's "What the measurements said" has the rest.
|
||||
@@ -0,0 +1,44 @@
|
||||
# Decisions awaiting review
|
||||
|
||||
Choices made while working autonomously, for Bryan to keep or change. Each
|
||||
says what was picked and why; the detail is in the design doc it names.
|
||||
Delete an entry once it has been looked at.
|
||||
|
||||
## Subagent views (2026-09-05, `SUBAGENTS.md`)
|
||||
|
||||
Made on my own judgement, limited blast radius:
|
||||
|
||||
1. **A subagent is a transcript, not a session.** It has no process,
|
||||
controls or settings; it is addressed as `/sessions/{id}/subagents/{sub}`
|
||||
and stored under the session's directory, so deleting the session takes
|
||||
it. Alternative rejected: registering it as a session of its own, which
|
||||
would give it a card in the main list and a driver that can do nothing.
|
||||
2. **Read-only view is the session screen minus its controls**, rather than
|
||||
a second, simpler transcript screen. Keeps paging, caching, selection
|
||||
and rendering in one place. Cost: a `readOnly` mode threaded through
|
||||
`SessionScreen`.
|
||||
3. **The list only carries a count.** Each session row says how many
|
||||
subagents it has; their titles and statuses are fetched when the card is
|
||||
expanded. Keeps `GET /sessions` from reading every subagent transcript.
|
||||
Consequence: an expanded card's statuses refresh with the list, not live.
|
||||
4. **Expanded/collapsed is remembered per session on the phone**, not on
|
||||
the server. Collapsed by default, per the transcript convention that new
|
||||
things arrive collapsed.
|
||||
5. **Subagents of imported sessions are not shown.** The import path still
|
||||
skips `isSidechain` records; the CLI's own `subagents/agent-*.jsonl` files
|
||||
are not read. Only subagents run while this backend was watching exist.
|
||||
6. **Echo grows `/subagent [n]`** as the test rig, so nothing here needs a
|
||||
paid turn to exercise.
|
||||
|
||||
Deferred, because they reach further than this feature:
|
||||
|
||||
- **Live status on the list.** Whether the session list should follow a
|
||||
stream at all (it refreshes on demand today) decides whether subagent
|
||||
status can ever be live there. Not changed.
|
||||
- **Nested subagents.** A subagent's own Task calls are shown as tool calls
|
||||
in its transcript and are not given transcripts of their own. Supporting
|
||||
that is the same mechanism one level down, but the UI would need nested
|
||||
expanders.
|
||||
|
||||
- **The subagent status row says "context unknown".** Nothing measures a
|
||||
subagent's context; the row could leave it out rather than admit it.
|
||||
@@ -1,79 +0,0 @@
|
||||
# iris: notable public API changes
|
||||
|
||||
For Iris to read on her own time. Each entry is a change to iris's public
|
||||
surface that a widget author or app author would notice: a trait method
|
||||
added, removed or re-shaped; a type that callers construct differently; a
|
||||
capability that moved. Small and trivial changes do not go here.
|
||||
|
||||
An entry gives the date, what changed, why, and a short before/after where
|
||||
it helps judge the change without the session that made it. Newest first.
|
||||
|
||||
## 2026-09-04: `Widget::draw` reports the size it used; `desired_width`/`desired_height` are gone
|
||||
|
||||
A widget used to implement three methods (`draw`, `desired_width`,
|
||||
`desired_height`); it now implements one, `fn draw(&mut self, painter: &mut
|
||||
Painter) -> Size`, which draws into `painter.region()` and returns how much
|
||||
of it was used. Why: the two extra methods routinely re-simulated what
|
||||
`draw` was about to do anyway (`Span::desired_ortho` copied its own draw
|
||||
loop to get cross-axis sizing right) — one visit per widget per frame
|
||||
instead of up to three. A container that needs a child's size before
|
||||
placing it (alignment, centering) draws the child once at a provisional
|
||||
region, reads the returned `Size`, and calls the new `Painter::reposition`
|
||||
to move it into its final spot — an O(1) offset write, not a second draw. A
|
||||
widget whose drawn output never depends on the size it's given (a
|
||||
fixed-size `Rect`, a decoded `Image`) overrides the new `fn
|
||||
is_size_independent(&self) -> bool { false }` to `true`, which skips
|
||||
redrawing it when only its offered region changes shape.
|
||||
|
||||
```rust
|
||||
// before
|
||||
fn draw(&mut self, painter: &mut Painter) { /* ... */ }
|
||||
fn desired_width(&mut self, ctx: &mut SizeCtx) -> Len { /* ... */ }
|
||||
fn desired_height(&mut self, ctx: &mut SizeCtx) -> Len { /* ... */ }
|
||||
|
||||
// after
|
||||
fn draw(&mut self, painter: &mut Painter) -> Size { /* ... */ }
|
||||
```
|
||||
|
||||
`SizeCtx` and `Cache` are gone with it — see `LAYOUT.md` for the full
|
||||
design, the move-offset mechanism this shipped alongside, and the file
|
||||
list.
|
||||
|
||||
## 2026-09-04: texture pipeline rebuilt off the binding array
|
||||
|
||||
`Textures`/`TextureHandle`, `GlyphPrimitive`, and `UiRenderNode::new` all
|
||||
changed shape. Why: the old pipeline bound every texture ever drawn in one
|
||||
`binding_array<texture_2d<f32>>` and asked every device, unconditionally,
|
||||
for `VK_EXT_descriptor_indexing` — a real share of Android GPUs lack it,
|
||||
and it failed outright on the Android emulator's software Vulkan. See
|
||||
TEXTURES.md's "Recommended shape" and "Implemented, 2026-09-04".
|
||||
|
||||
- **`UiRenderNode::new` drops its `limits: UiLimits` parameter, and
|
||||
`UiLimits` is gone.** Before: `UiRenderNode::new(&device, &queue,
|
||||
&config, UiLimits::default())`. After: `UiRenderNode::new(&device,
|
||||
&queue, &config)`. Nothing replaces it — there are no more
|
||||
binding-array limits to size.
|
||||
- **`src/default/render.rs`'s device request asks for no features and no
|
||||
binding-array limits.** Before: `required_features:
|
||||
Features::TEXTURE_BINDING_ARRAY | Features::PARTIALLY_BOUND_BINDING_ARRAY
|
||||
| Features::SAMPLED_TEXTURE_AND_STORAGE_BUFFER_ARRAY_NON_UNIFORM_INDEXING`
|
||||
plus two `max_binding_array_*` limits. After: `Features::empty()` (the
|
||||
`DeviceDescriptor` default) and only `max_buffer_size` set, which was
|
||||
never about the binding array.
|
||||
- **`TextureHandle` has no `primitive()` method any more**; a caller
|
||||
outside `iris` shouldn't have been calling it (it fed the old renderer's
|
||||
internals), but if something did: use `image_index()` for a standalone
|
||||
image's bind-group index. There is no equivalent for a page — a page has
|
||||
no bind group of its own now, see below.
|
||||
- **`GlyphPrimitive` has no public constructor from a struct literal.**
|
||||
Before: `GlyphPrimitive { uv_min, uv_max, view_idx, sampler_idx, color,
|
||||
flags }`. After: `GlyphPrimitive::new(uv_min, uv_max, layer, color,
|
||||
flags)` — one `layer` (the shared atlas array's layer) instead of a
|
||||
`view_idx`/`sampler_idx` pair, since a page is now a layer of one array
|
||||
texture rather than its own bound texture.
|
||||
- **A widget author drawing images is unaffected**: `Painter::texture`/
|
||||
`texture_at`/`texture_within` and `Textures::add` keep their signatures.
|
||||
What changed underneath is that each standalone image now gets its own
|
||||
`wgpu::BindGroup` and draw call instead of a slot in the shared array —
|
||||
invisible from the widget API, visible only in `UiRenderNode`'s internals
|
||||
and in `iris`'s device requirements.
|
||||
@@ -1,66 +0,0 @@
|
||||
# iris: known problems and things still to build
|
||||
|
||||
Iris's own list for the library, recorded 2026-09-04 in her words where it
|
||||
matters, so the agents working through RUST.md pick these up in a sensible
|
||||
order rather than rediscovering them. Each item says where it sits in the
|
||||
order and what "done" looks like. Tick and date them in place.
|
||||
|
||||
## Fix
|
||||
|
||||
- [x] **Input does not fall through by input type (2026-09-04).**
|
||||
`SensorUi::run_sensors` (`src/default/sense.rs`) used to set "consumed,
|
||||
stop checking lower layers" from mere hover — a widget registered for
|
||||
nothing but `click()` blocked a `Scroll` meant for whatever was behind
|
||||
it, since "the cursor is over this widget" and "this widget handled the
|
||||
event" were the same check. Fixed by judging consumption per input
|
||||
kind: with no button transition and no scroll happening this frame
|
||||
("momentary" activity), the topmost hovered widget still wins, same as
|
||||
before; when something momentary *is* happening, only a widget whose
|
||||
registered senses actually include a matching non-hover one (checked
|
||||
via a new `TypeEventManager::registered`, which lists what a widget
|
||||
registered without running anything) consumes it, so a widget with only
|
||||
`Hovering`/click handlers can no longer block a scroll from reaching a
|
||||
list underneath. `iris/src/sense_tests.rs` builds a button-over-a-list
|
||||
`Stack` with a plain `HasEvents` impl (no GPU or window) and checks both
|
||||
directions: a scroll over the button reaches the list, and a real click
|
||||
still reaches the button — confirmed to fail on the pre-fix code and
|
||||
pass after.
|
||||
|
||||
## Build
|
||||
|
||||
- [ ] **Benchmarks**, not unit tests, run on demand (a `benches/` or a
|
||||
script under `iris/`, never in `cargo test`). The scenario that matters
|
||||
most is a **message list** — chat apps and this app's transcript alike —
|
||||
stressed with many messages and many images. One case in particular:
|
||||
**resizing an input box** (typing enough text to grow it) that pushes a
|
||||
long list of messages above it must stay very fast and recalculate
|
||||
almost nothing — a move of everything above, not a re-layout. That is
|
||||
exactly the O(1) move chain in LAYOUT.md; the benchmark is what proves
|
||||
it. Done when the numbers are in this file with the command, and the
|
||||
input-box case reports draws re-run, not just frame time.
|
||||
- [ ] **Masks defined relative to each other.** Wanted: mask A multiplies
|
||||
by something *and also* applies mask B — a mask can reference a parent
|
||||
mask, the way the move chain references a parent offset. Today masks
|
||||
are independent regions. Design it beside the move chain (same shape:
|
||||
a parent index and a bounded walk in the shader); do it when a real
|
||||
widget needs it, not before.
|
||||
- [ ] **Positions as a single float per scroll.** Iris raised, and half
|
||||
rejected, letting a scroll update one float rather than positions:
|
||||
input handling cares about most elements in a list, so absolute
|
||||
positions must be computed on the CPU anyway. LAYOUT.md's design
|
||||
already lands here (GPU walks the chain, CPU resolves on demand for
|
||||
hit tests). Keep the CPU resolution lazy and per query; do not
|
||||
materialise every row's absolute position per frame.
|
||||
- [ ] **Animations, last.** Cosmetic, so after everything above. Must be
|
||||
**modular — a piece of the library rather than a core part forced into
|
||||
everything, the same way input is**. Whatever the mechanism, a widget
|
||||
that does not animate must pay nothing and import nothing for it.
|
||||
|
||||
## Reconsider
|
||||
|
||||
- [ ] **`WidgetView`.** Iris is unsure of it: what she wants is an easy way
|
||||
to compose a widget from others (a button is the main case). With
|
||||
sizing folded into `draw`, composing may be easy enough that `View` is
|
||||
redundant. Decide after the layout change lands, by writing a button
|
||||
both ways and keeping the one that is shorter to explain; delete the
|
||||
other rather than keeping two ways.
|
||||
+141
@@ -0,0 +1,141 @@
|
||||
# Subagents
|
||||
|
||||
A session's subagents -- the helpers a Claude Code session starts through its
|
||||
Task tool -- each get a transcript of their own, listed under the session's
|
||||
card and readable in the same transcript view the session has. Designed
|
||||
2026-09-05; the decisions Bryan has not yet reviewed are in `DECISIONS.md`.
|
||||
|
||||
## What a subagent is here
|
||||
|
||||
**A subagent is a second transcript owned by a session, in the same event
|
||||
model, with no process and no controls.** It is not a session: it cannot be
|
||||
messaged, stopped or started, and it has no setup, model or usage of its
|
||||
own. Everything it shares with a session -- the transcript file format, the
|
||||
paging routes, the SSE stream, the phone's cache and rendering -- is reused
|
||||
by addressing, not by copying.
|
||||
|
||||
The CLI reports a subagent's messages on the parent's own stream-json
|
||||
output, each carrying `parent_tool_use_id` = the id of the Task `tool_use`
|
||||
that started it. Before this the translator dropped those lines
|
||||
(`subagent_events_are_not_duplicated_into_the_transcript`); now it routes
|
||||
them to that subagent's own translator and transcript. The parent's
|
||||
transcript still shows only the Task call itself.
|
||||
|
||||
## Storage
|
||||
|
||||
Under the session directory:
|
||||
|
||||
```
|
||||
<session>/subagents/<tool_use_id>/meta.json {title, created}
|
||||
<session>/subagents/<tool_use_id>/transcript.jsonl same SeqEvent lines as the session's
|
||||
```
|
||||
|
||||
The id is the Task tool_use id (`toolu_…`), which is unique, stable across a
|
||||
backend restart, and already the key everything on the parent side uses.
|
||||
Only ids matching `[A-Za-z0-9_-]+` are ever created or looked up, since the
|
||||
id becomes a path.
|
||||
|
||||
The transcript's sequence numbers are its own, starting at 1. `Transcript`,
|
||||
`read_window`, `catch_up` and `read_after` work on it unchanged.
|
||||
|
||||
Its path out: deleting the session deletes its directory, subagents included.
|
||||
There is no separate delete.
|
||||
|
||||
## Lifecycle, as events in the subagent's transcript
|
||||
|
||||
1. Created on the first child line for an unseen parent id (or, when the
|
||||
parent Task call was seen, at that call). First lines written:
|
||||
`Status Running`, then `UserMessage { text: <the Task's prompt> }` when
|
||||
the prompt is known -- it genuinely is the subagent's first user turn.
|
||||
2. Every child line is translated by that subagent's own `Translator`
|
||||
(one per subagent: tool ids are unique but streaming deltas are by
|
||||
content-block index, and parallel subagents interleave).
|
||||
3. **The parent's `tool_result` never finishes a subagent.** The Task tool
|
||||
runs in the background by default: the `tool_result` -- "Async agent
|
||||
launched..." -- arrives the moment it *starts*, while the subagent goes
|
||||
on working for however long its own turn takes, sometimes minutes. What
|
||||
ends it is its own turn ending: the raw API's `message_delta` on its
|
||||
stream carrying `stop_reason: "end_turn"` (a `stop_reason` of `tool_use`
|
||||
is the model about to call one, not an end), or a `result` line for its
|
||||
own turn if a future CLI version ever sends one. Either maps to
|
||||
`Status Exited`; the subagent's vocabulary has no `Idle`, so the
|
||||
equivalent event `dispatch` produces for an ordinary session is dropped
|
||||
rather than written. A shipped version of this finished on the
|
||||
`tool_result` instead, which read a running background agent as
|
||||
"finished" with its transcript truncated at the moment it launched.
|
||||
4. **A child line for a subagent that already finished reopens it**
|
||||
(`Status Running`) rather than being dropped: a background Task can be
|
||||
sent another message long after its first turn ended, and that is
|
||||
exactly what a further line for it means. Same transcript, same child
|
||||
`Translator`, just picking back up.
|
||||
5. When the parent session's process exits (`Status Exited` on the
|
||||
session), every subagent still `Running` gets `Status Exited` too: its
|
||||
process was the parent's.
|
||||
|
||||
A subagent that was mid-flight when the backend restarted keeps working:
|
||||
the registry reopens the existing transcript on the next child line, and
|
||||
the file continues its sequence -- the same reopening #4 describes, whether
|
||||
what closed it was a restart or its own `end_turn`. If its turn ended while
|
||||
the backend was down nothing recorded that until the next line arrives, so
|
||||
its last status stays `Running`, which the list reports as **unknown**
|
||||
rather than as running (see the wire shape) until then.
|
||||
|
||||
Title: the Task call's `description` input, then ` (<subagent_type>)` when
|
||||
one is given; falling back to the tool's name when the child arrives before
|
||||
(or without) the parent call being seen.
|
||||
|
||||
## Server layout
|
||||
|
||||
- `session/subagent.rs` -- the registry: `Subagents` (per session, in
|
||||
`Shared`), `Subagent` (its `Transcript` behind a mutex plus a
|
||||
`broadcast::Sender<SeqEvent>`), `record(id, event)`, `start(id, title,
|
||||
prompt)`, `finish(id)`, `reopen(id)`, `finish_all()`, `list()` from disk. Drivers get an
|
||||
`Arc<Subagents>` beside their `EventSink`; llama ignores it.
|
||||
- `session/claude/translate.rs` -- routes child lines by parent id, holds
|
||||
one child `Translator` per subagent, remembers pending Task calls'
|
||||
description/prompt/subagent_type.
|
||||
- `session/echo.rs` -- `/subagent [n]`: the test rig. Starts *n* (default 1)
|
||||
subagents at once, each named "helper k". Each writes the prompt as its
|
||||
user message, streams a few words of text, runs one `Bash` tool call, then
|
||||
finishes about three seconds after starting, and the parent's Task calls
|
||||
end when their subagent does. Three seconds so the running state can be
|
||||
seen on the phone.
|
||||
- `routes.rs` -- three routes, in the doc table.
|
||||
|
||||
## Wire shape
|
||||
|
||||
```
|
||||
GET /sessions/{id} SessionInfo gains `subagents: N` (count, 0 when none)
|
||||
GET /sessions same field on each row
|
||||
GET /sessions/{id}/subagents [{id, title, status, created, lastActivity}], oldest first
|
||||
GET /sessions/{id}/subagents/{sub}/transcript exactly the session transcript's query and answer
|
||||
GET /sessions/{id}/subagents/{sub}/events?after=N exactly the session events stream
|
||||
```
|
||||
|
||||
`status` is the transcript's last `Status` event, serialised like a session's
|
||||
(`running`, `exited`), except that a subagent whose session is not itself
|
||||
running cannot be running: the list answers `unknown` for that one. The
|
||||
phone words these as *running*, *finished* and *unknown* on the subcard.
|
||||
|
||||
The count on `SessionInfo` is a directory listing, so the list stays cheap.
|
||||
The per-subagent status is only read when the list route is asked for.
|
||||
|
||||
## Phone
|
||||
|
||||
- `SessionSummary.subagents: Int`. A card with a non-zero count ends in an
|
||||
expander row -- a full-width `Chevron(Pointing.Down)` row that flips to
|
||||
`Pointing.Up` -- collapsed by default. Expanding fetches
|
||||
`/sessions/{id}/subagents` and draws one `OutlinedCard` per subagent,
|
||||
indented inside the session card, the way dev-updater draws a project's
|
||||
components: title, then the status word and a relative time. The
|
||||
expansion state is per session id and survives a refresh of the list.
|
||||
- Tapping a subcard opens `Screen.Subagent`, which is `SessionScreen` in
|
||||
**read-only** form: the same transcript, paging, cache, selection,
|
||||
images and status row, with the composer, the process button, the model
|
||||
picker, the files button, the settings cog and the usage bar left out.
|
||||
The header shows the subagent's title with the session's title beneath
|
||||
it. Back returns to the list.
|
||||
- Addressing: `fetchTranscript`, `EventStream`, `TranscriptSource` and the
|
||||
cache take a transcript address rather than a session id --
|
||||
`sessions/{id}` or `sessions/{id}/subagents/{sub}` -- so the cache nests a
|
||||
subagent's copy under its session's and the same code serves both.
|
||||
Generated
+1081
File diff suppressed because it is too large.
Load diff
@@ -0,0 +1,36 @@
|
||||
[package]
|
||||
name = "android-shell"
|
||||
version = "0.1.0"
|
||||
edition = "2024"
|
||||
|
||||
# The JNI bridge behind E3's two Java stub classes (`MainActivity`,
|
||||
# `NotificationService` -- see RUST.md's "How much Java is unavoidable" for
|
||||
# why those two classes cannot be anything but Java/Kotlin, registered from
|
||||
# the manifest by name). Everything they would otherwise have done in
|
||||
# Kotlin -- the SSE follow loop, deciding where a notification is shown,
|
||||
# picking a session for a share -- is here instead, built on `client-core`
|
||||
# so the networking and parsing are not duplicated a third time next to the
|
||||
# server and the Kotlin app.
|
||||
#
|
||||
# `cdylib` for `System.loadLibrary`; `lib` too so `cargo test`/`clippy` run
|
||||
# on a normal host target without an Android NDK toolchain, the same
|
||||
# posture `client-core` and `server` already have.
|
||||
|
||||
[lib]
|
||||
name = "android_shell"
|
||||
crate-type = ["cdylib", "lib"]
|
||||
|
||||
[dependencies]
|
||||
client-core = { path = "../client-core" }
|
||||
jni = "0.22"
|
||||
log = "0.4"
|
||||
|
||||
# `LogErrorAndDefault` (the `native_method!` error policy this crate uses
|
||||
# throughout, see lib.rs) logs through the `log` facade, which is a no-op
|
||||
# without a backend installed -- so without this, every recoverable error
|
||||
# at a native entry point would be silently dropped rather than reaching
|
||||
# logcat. Android-only: nothing else here needs it, and it does not build
|
||||
# off-device (see `notify::ensure_logger`'s call site, the only place this
|
||||
# is used).
|
||||
[target.'cfg(target_os = "android")'.dependencies]
|
||||
android_logger = "0.15"
|
||||
@@ -0,0 +1,152 @@
|
||||
//! Thin wrappers around the five `Env` calls this crate makes constantly
|
||||
//! (a class name, a method name and a signature, all as plain `&str`).
|
||||
//!
|
||||
//! `jni` 0.22 wants a class or method *name* as `AsRef<JNIStr>` (its own
|
||||
//! modified-UTF-8 type; `JNIString::new` is the runtime conversion, used
|
||||
//! here uniformly rather than switching to the compile-time `jni_str!`
|
||||
//! literal macro call by call -- these are a handful of short, one-off
|
||||
//! lookups, not a hot loop, so the difference is not worth two code paths
|
||||
//! for the same thing) and a *signature* as a parsed `MethodSignature`/
|
||||
//! `FieldSignature`, which is why those go through
|
||||
//! `RuntimeMethodSignature`/`RuntimeFieldSignature::from_str` instead: the
|
||||
//! parsed form is what lets these calls skip re-validating the signature
|
||||
//! against the arguments on every call, which is the whole reason `jni`
|
||||
//! moved to it.
|
||||
//!
|
||||
//! **The classloader gotcha, found by testing (2026-09-05).** A class
|
||||
//! lookup by name (`find_class`, `new_object`, `call_static_method`,
|
||||
//! `get_static_field` -- anything that resolves a *class*, as opposed to
|
||||
//! `call_method` on an object it already has, which needs no such lookup)
|
||||
//! defaults to `FindClass`'s ordinary search when it cannot find the
|
||||
//! calling thread a classloader through `Thread.getContextClassLoader()`.
|
||||
//! That default is fine on a thread the JVM itself started -- an
|
||||
//! `onCreate`/`onStartCommand` callback -- but every one of these calls
|
||||
//! from `android-shell`'s own background thread (the notification
|
||||
//! follow-loop, the share upload) is running on a thread *Rust* spawned
|
||||
//! and attached with `JavaVM::attach_current_thread`, which the platform
|
||||
//! never gave an app classloader. Framework classes
|
||||
//! (`android.app.Notification$Builder`, ...) still resolve, because they
|
||||
//! are reachable from the bootstrap loader `FindClass` falls back to --
|
||||
//! `androidx.core.app.NotificationManagerCompat` is not, since it is
|
||||
//! packaged inside this app's own APK. The failure was
|
||||
//! `Error::NoClassDefFound`, logged by `notify::show`'s `LogErrorAndDefault`
|
||||
//! as "failed to resolve Java class ... (class not found or linkage
|
||||
//! error)" -- on a real device this reads as "the notification silently
|
||||
//! never arrives," since the whole call is inside the follow loop and the
|
||||
//! ongoing foreground notification (built on the main thread, in
|
||||
//! `try_start`, before the background thread exists) posts fine either
|
||||
//! way. `remember_class_loader` caches the app's own `ClassLoader` the
|
||||
//! first time any entry point has a `Context` to ask, and every class
|
||||
//! lookup below goes through it explicitly via `LoaderContext::Loader`
|
||||
//! rather than the thread-dependent default -- so it is correct on the
|
||||
//! main thread and on this crate's own background threads alike.
|
||||
|
||||
use jni::Env;
|
||||
use jni::errors::Result;
|
||||
use jni::objects::{JClass, JClassLoader, JObject, JValue, JValueOwned};
|
||||
use jni::refs::{Global, LoaderContext};
|
||||
use jni::signature::{RuntimeFieldSignature, RuntimeMethodSignature};
|
||||
use jni::strings::JNIString;
|
||||
use std::sync::OnceLock;
|
||||
|
||||
static CLASS_LOADER: OnceLock<Global<JClassLoader<'static>>> = OnceLock::new();
|
||||
|
||||
/// Caches `context`'s own `ClassLoader`, the first time this is called.
|
||||
/// Cheap to call from every entry point that has a `Context` on hand
|
||||
/// (`MainActivity`'s and `NotificationService`'s all do): later calls are
|
||||
/// a `OnceLock::get` and nothing else.
|
||||
pub fn remember_class_loader(env: &mut Env, context: &JObject) -> Result<()> {
|
||||
if CLASS_LOADER.get().is_some() {
|
||||
return Ok(());
|
||||
}
|
||||
// context.getClass().getClassLoader() -- resolved via `call_method` on
|
||||
// real objects throughout, so this needs no class-name lookup of its
|
||||
// own and has nothing to bootstrap.
|
||||
let class_obj = call_method(env, context, "getClass", "()Ljava/lang/Class;", &[])?.l()?;
|
||||
let loader_obj = call_method(
|
||||
env,
|
||||
&class_obj,
|
||||
"getClassLoader",
|
||||
"()Ljava/lang/ClassLoader;",
|
||||
&[],
|
||||
)?
|
||||
.l()?;
|
||||
let loader = env.cast_local::<JClassLoader>(loader_obj)?;
|
||||
let global = env.new_global_ref(&loader)?;
|
||||
// Lost the race with another entry point calling this concurrently --
|
||||
// both loaders name the same app, so either one is fine and there is
|
||||
// nothing to reconcile.
|
||||
let _ = CLASS_LOADER.set(global);
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Resolves `name` (slash-separated, e.g. `androidx/core/app/NotificationCompat`)
|
||||
/// through the cached app classloader when one has been remembered, and
|
||||
/// through the ordinary default otherwise -- which is every call made
|
||||
/// before any entry point has run, and is also correct for a main-thread
|
||||
/// caller, so there is no case this makes worse.
|
||||
fn resolve_class<'local>(env: &mut Env<'local>, name: &str) -> Result<JClass<'local>> {
|
||||
match CLASS_LOADER.get() {
|
||||
Some(loader) => {
|
||||
let binary_name = name.replace('/', ".");
|
||||
LoaderContext::Loader(loader).load_class(env, JNIString::new(&binary_name), true)
|
||||
}
|
||||
None => env.find_class(JNIString::new(name)),
|
||||
}
|
||||
}
|
||||
|
||||
pub fn find_class<'local>(env: &mut Env<'local>, name: &str) -> Result<JClass<'local>> {
|
||||
resolve_class(env, name)
|
||||
}
|
||||
|
||||
/// A new Java string as a plain `JObject` -- what every call site here
|
||||
/// wants it as (`JValue::Object` takes `&JObject`, not `&JString`, and
|
||||
/// `JString: Into<JObject>` is the documented way across).
|
||||
pub fn jstr_obj<'local>(env: &mut Env<'local>, text: impl AsRef<str>) -> Result<JObject<'local>> {
|
||||
Ok(env.new_string(text)?.into())
|
||||
}
|
||||
|
||||
pub fn new_object<'local>(
|
||||
env: &mut Env<'local>,
|
||||
class: &str,
|
||||
sig: &str,
|
||||
args: &[JValue],
|
||||
) -> Result<JObject<'local>> {
|
||||
let sig = RuntimeMethodSignature::from_str(sig)?;
|
||||
let class = resolve_class(env, class)?;
|
||||
env.new_object(class, sig.method_signature(), args)
|
||||
}
|
||||
|
||||
pub fn call_method<'local>(
|
||||
env: &mut Env<'local>,
|
||||
obj: &JObject,
|
||||
method: &str,
|
||||
sig: &str,
|
||||
args: &[JValue],
|
||||
) -> Result<JValueOwned<'local>> {
|
||||
let sig = RuntimeMethodSignature::from_str(sig)?;
|
||||
env.call_method(obj, JNIString::new(method), sig.method_signature(), args)
|
||||
}
|
||||
|
||||
pub fn call_static_method<'local>(
|
||||
env: &mut Env<'local>,
|
||||
class: &str,
|
||||
method: &str,
|
||||
sig: &str,
|
||||
args: &[JValue],
|
||||
) -> Result<JValueOwned<'local>> {
|
||||
let sig = RuntimeMethodSignature::from_str(sig)?;
|
||||
let class = resolve_class(env, class)?;
|
||||
env.call_static_method(class, JNIString::new(method), sig.method_signature(), args)
|
||||
}
|
||||
|
||||
pub fn get_static_field<'local>(
|
||||
env: &mut Env<'local>,
|
||||
class: &str,
|
||||
field: &str,
|
||||
sig: &str,
|
||||
) -> Result<JValueOwned<'local>> {
|
||||
let sig = RuntimeFieldSignature::from_str(sig)?;
|
||||
let class = resolve_class(env, class)?;
|
||||
env.get_static_field(class, JNIString::new(field), sig.field_signature())
|
||||
}
|
||||
@@ -0,0 +1,131 @@
|
||||
//! The JNI bridge behind E3's two Java stub classes. See `Cargo.toml`'s
|
||||
//! package comment for what this crate is and RUST.md's E3 entry for the
|
||||
//! design decisions.
|
||||
//!
|
||||
//! Each native method is declared with `jni`'s [`native_method!`] macro
|
||||
//! rather than a hand-written `#[no_mangle] extern "system" fn Java_...`:
|
||||
//! the macro derives the mangled export name and the JNI signature from the
|
||||
//! Rust function itself, so the two cannot drift apart the way a
|
||||
//! hand-typed name string and a hand-typed `"(Landroid/...;)V"` signature
|
||||
//! routinely do. `error_policy = LogErrorAndDefault` matches
|
||||
//! `Notifications.kt`'s own posture: a failure here (a lost connection, a
|
||||
//! JNI call that threw) is reported to logcat, not thrown back into Java
|
||||
//! as an exception that would crash the app over something recoverable.
|
||||
//!
|
||||
//! Each `const _: NativeMethod = native_method! { ... };` binding is
|
||||
//! otherwise unused by name -- `_` is the idiomatic way to keep a
|
||||
//! side-effecting const (here, generating the `#[export_name]`d function
|
||||
//! the JVM resolves by the JNI naming convention) without a `dead_code`
|
||||
//! warning for a binding nothing reads.
|
||||
|
||||
mod jcall;
|
||||
mod notify;
|
||||
mod settings;
|
||||
mod share;
|
||||
|
||||
use jni::errors::LogErrorAndDefault;
|
||||
use jni::objects::{JClass, JObject};
|
||||
use jni::sys::jint;
|
||||
use jni::{Env, NativeMethod, native_method};
|
||||
|
||||
/// Installs the `log` backend that routes to logcat, once per process.
|
||||
/// Without it, `LogErrorAndDefault` (every native method below) and any
|
||||
/// `log::error!` inside `jni` itself (e.g. `JString`'s `Display` fallback)
|
||||
/// call into the `log` facade's default no-op logger, and a real failure
|
||||
/// vanishes with nothing on logcat to say so -- silently *more* wrong than
|
||||
/// crashing, since nothing on screen or in the log says a notification was
|
||||
/// dropped. Called from every entry point below rather than a Java-side
|
||||
/// `Application.onCreate`, since this crate deliberately has no such class
|
||||
/// to hook (see RUST.md's E3 entry on the two-Java-classes floor).
|
||||
fn ensure_logger() {
|
||||
static ONCE: std::sync::Once = std::sync::Once::new();
|
||||
ONCE.call_once(|| {
|
||||
#[cfg(target_os = "android")]
|
||||
android_logger::init_once(
|
||||
android_logger::Config::default()
|
||||
.with_max_level(log::LevelFilter::Debug)
|
||||
.with_tag("android-shell"),
|
||||
);
|
||||
});
|
||||
}
|
||||
|
||||
// The parameters are spelled as their Java types, not as `JObject`: the
|
||||
// macro encodes each argument into the exported symbol's JNI signature
|
||||
// (and JNI resolves `Java_...` names *by* that signature), so a generic
|
||||
// `JObject` here would export `(Ljava/lang/Object;...)` against a Java
|
||||
// method actually declared `(Landroid/app/Activity;...)` -- two different
|
||||
// symbols that never resolve to each other, silently, with no compiler
|
||||
// error on either side. `android.app.Activity` etc. have no dedicated
|
||||
// Rust wrapper in this crate, so they fall back to plain `JObject` in the
|
||||
// implementation functions below (the "Built-in Types" note in
|
||||
// `native_method!`'s docs).
|
||||
const _: NativeMethod = native_method! {
|
||||
java_type = "com.example.aiapp.shell.MainActivity",
|
||||
static extern fn native_handle_intent(activity: android.app.Activity, intent: android.content.Intent) -> (),
|
||||
error_policy = LogErrorAndDefault,
|
||||
};
|
||||
|
||||
/// `MainActivity.nativeHandleIntent` -- called from `onCreate` and
|
||||
/// `onNewIntent`. See `share::handle_intent` for what an intent can mean.
|
||||
fn native_handle_intent<'local>(
|
||||
env: &mut Env<'local>,
|
||||
_class: JClass<'local>,
|
||||
activity: JObject<'local>,
|
||||
intent: JObject<'local>,
|
||||
) -> Result<(), jni::errors::Error> {
|
||||
ensure_logger();
|
||||
jcall::remember_class_loader(env, &activity)?;
|
||||
share::handle_intent(env, &activity, &intent)
|
||||
}
|
||||
|
||||
const _: NativeMethod = native_method! {
|
||||
java_type = "com.example.aiapp.shell.NotificationService",
|
||||
static extern fn native_sync(context: android.content.Context) -> (),
|
||||
error_policy = LogErrorAndDefault,
|
||||
};
|
||||
|
||||
/// `NotificationService.nativeSync` -- called both from `MainActivity` (an
|
||||
/// enrollment may have just landed) and from `NotificationService.sync`
|
||||
/// itself. See `notify::sync`.
|
||||
fn native_sync<'local>(
|
||||
env: &mut Env<'local>,
|
||||
_class: JClass<'local>,
|
||||
context: JObject<'local>,
|
||||
) -> Result<(), jni::errors::Error> {
|
||||
ensure_logger();
|
||||
jcall::remember_class_loader(env, &context)?;
|
||||
notify::sync(env, &context)
|
||||
}
|
||||
|
||||
const _: NativeMethod = native_method! {
|
||||
java_type = "com.example.aiapp.shell.NotificationService",
|
||||
static extern fn native_on_start_command(service: android.app.Service) -> jint,
|
||||
error_policy = LogErrorAndDefault,
|
||||
};
|
||||
|
||||
/// `NotificationService.nativeOnStartCommand`. See `notify::on_start_command`.
|
||||
fn native_on_start_command<'local>(
|
||||
env: &mut Env<'local>,
|
||||
_class: JClass<'local>,
|
||||
service: JObject<'local>,
|
||||
) -> Result<jint, jni::errors::Error> {
|
||||
ensure_logger();
|
||||
jcall::remember_class_loader(env, &service)?;
|
||||
Ok(notify::on_start_command(env, service))
|
||||
}
|
||||
|
||||
const _: NativeMethod = native_method! {
|
||||
java_type = "com.example.aiapp.shell.NotificationService",
|
||||
static extern fn native_on_destroy() -> (),
|
||||
error_policy = LogErrorAndDefault,
|
||||
};
|
||||
|
||||
/// `NotificationService.nativeOnDestroy`. See `notify::on_destroy`.
|
||||
fn native_on_destroy<'local>(
|
||||
_env: &mut Env<'local>,
|
||||
_class: JClass<'local>,
|
||||
) -> Result<(), jni::errors::Error> {
|
||||
ensure_logger();
|
||||
notify::on_destroy();
|
||||
Ok(())
|
||||
}
|
||||
@@ -0,0 +1,556 @@
|
||||
//! Where a notification is said, and the foreground service that keeps
|
||||
//! the connection open while the app is closed. Ported from
|
||||
//! `Notifications.kt`'s `NotificationService`, minus the "session on
|
||||
//! screen" / "hand to the app as a banner" branches: those read
|
||||
//! process-wide state that only exists because a screen is drawn to
|
||||
//! register against, and this experiment draws no screen yet (that is
|
||||
//! E4's job, on iris). So every notification here takes the third branch
|
||||
//! Kotlin's `show` already had -- the platform's own drawer -- which is
|
||||
//! also exactly the case E3's pass condition asks for: **a notification
|
||||
//! arrives with the app closed.**
|
||||
|
||||
use std::sync::atomic::{AtomicBool, Ordering};
|
||||
use std::time::Duration;
|
||||
|
||||
use client_core::api::UreqTransport;
|
||||
use client_core::notifications::{SessionNotification, follow_notifications};
|
||||
use jni::Env;
|
||||
use jni::errors::Result;
|
||||
use jni::objects::{JObject, JValue};
|
||||
use jni::sys::{JNI_TRUE, jint};
|
||||
|
||||
use crate::settings::{self, ServerSettings};
|
||||
|
||||
const ALERT_CHANNEL: &str = "sessions";
|
||||
const ONGOING_CHANNEL: &str = "connection";
|
||||
const ONGOING_ID: i32 = 1;
|
||||
const ALERT_ID: i32 = 2;
|
||||
/// Same backoff as `Notifications.kt`'s `RECONNECT_DELAY_MS`.
|
||||
const RECONNECT_DELAY: Duration = Duration::from_millis(5_000);
|
||||
|
||||
/// Whether the follow-loop thread is already running. **A deviation from
|
||||
/// `Notifications.kt`, found by testing rather than planned**: the Kotlin
|
||||
/// `onStartCommand` spawns a fresh `thread(isDaemon = true) { follow(...) }`
|
||||
/// on *every* call, with nothing to notice a previous one is still going --
|
||||
/// and `sync()` calling `startForegroundService` when the service is
|
||||
/// already running is an ordinary Android start, not a restart, so
|
||||
/// `onStartCommand` runs again. Enrolling from `MainActivity` (which calls
|
||||
/// `sync` once itself, then again inside `handle_enrollment` after saving
|
||||
/// the token) hits exactly this path and was observed opening **two**
|
||||
/// concurrent connections to `/notifications` from one process -- caught
|
||||
/// on this build via `adb logcat` showing two `jni::vm::java_vm: Attached
|
||||
/// thread ai-app-notifications` lines for one enrollment. Guarded here
|
||||
/// rather than left to match Kotlin's behaviour exactly, since duplicating
|
||||
/// a live connection is a resource leak with no upside; worth carrying the
|
||||
/// same guard back to `Notifications.kt` separately.
|
||||
static RUNNING: AtomicBool = AtomicBool::new(false);
|
||||
|
||||
/// Set by `nativeOnDestroy`, checked by the follow loop between
|
||||
/// reconnects. **Known gap, recorded rather than hidden**: unlike
|
||||
/// `HttpURLConnection.disconnect()` in the Kotlin original, nothing here
|
||||
/// can interrupt a `ureq` read already blocked inside one connection --
|
||||
/// `Transport::stream` hands back a plain `Read` with no cancellation
|
||||
/// handle. So a stop lands at the next reconnect, not mid-read. `/notifications`
|
||||
/// is idle between events (a keep-alive, per `server/src/routes.rs`), so in
|
||||
/// practice this is a bounded wait rather than a hang; closing that gap
|
||||
/// for real means adding a cancellation point to `client_core::Transport`,
|
||||
/// which is a decision affecting every caller of that trait, not just this
|
||||
/// one -- left for whoever next depends on prompt shutdown.
|
||||
static STOPPING: AtomicBool = AtomicBool::new(false);
|
||||
|
||||
fn static_int(env: &mut Env, class: &str, field: &str) -> Result<i32> {
|
||||
crate::jcall::get_static_field(env, class, field, "I")?.i()
|
||||
}
|
||||
|
||||
fn notification_manager<'l>(env: &mut Env<'l>, context: &JObject) -> Result<JObject<'l>> {
|
||||
crate::jcall::call_static_method(
|
||||
env,
|
||||
"androidx/core/app/NotificationManagerCompat",
|
||||
"from",
|
||||
"(Landroid/content/Context;)Landroidx/core/app/NotificationManagerCompat;",
|
||||
&[JValue::Object(context)],
|
||||
)?
|
||||
.l()
|
||||
}
|
||||
|
||||
fn create_channel(
|
||||
env: &mut Env,
|
||||
manager: &JObject,
|
||||
id: &str,
|
||||
name: &str,
|
||||
importance: i32,
|
||||
) -> Result<()> {
|
||||
let id_j = crate::jcall::jstr_obj(env, id)?;
|
||||
let builder = crate::jcall::new_object(
|
||||
env,
|
||||
"androidx/core/app/NotificationChannelCompat$Builder",
|
||||
"(Ljava/lang/String;I)V",
|
||||
&[JValue::Object(&id_j), JValue::Int(importance)],
|
||||
)?;
|
||||
let name_j = crate::jcall::jstr_obj(env, name)?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&builder,
|
||||
"setName",
|
||||
"(Ljava/lang/CharSequence;)Landroidx/core/app/NotificationChannelCompat$Builder;",
|
||||
&[JValue::Object(&name_j)],
|
||||
)?;
|
||||
let channel = crate::jcall::call_method(
|
||||
env,
|
||||
&builder,
|
||||
"build",
|
||||
"()Landroidx/core/app/NotificationChannelCompat;",
|
||||
&[],
|
||||
)?
|
||||
.l()?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
manager,
|
||||
"createNotificationChannel",
|
||||
"(Landroidx/core/app/NotificationChannelCompat;)V",
|
||||
&[JValue::Object(&channel)],
|
||||
)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Two channels, because they are two different things to be told -- see
|
||||
/// `Notifications.kt`'s `createChannels` for the reasoning; the names and
|
||||
/// importances here are copied from it exactly, since a phone that has
|
||||
/// seen both apps should not learn two different vocabularies for the
|
||||
/// same fact.
|
||||
fn create_channels(env: &mut Env, context: &JObject) -> Result<()> {
|
||||
let manager = notification_manager(env, context)?;
|
||||
let default = static_int(
|
||||
env,
|
||||
"androidx/core/app/NotificationManagerCompat",
|
||||
"IMPORTANCE_DEFAULT",
|
||||
)?;
|
||||
let min = static_int(
|
||||
env,
|
||||
"androidx/core/app/NotificationManagerCompat",
|
||||
"IMPORTANCE_MIN",
|
||||
)?;
|
||||
create_channel(
|
||||
env,
|
||||
&manager,
|
||||
ALERT_CHANNEL,
|
||||
"Sessions needing attention",
|
||||
default,
|
||||
)?;
|
||||
create_channel(env, &manager, ONGOING_CHANNEL, "Staying connected", min)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
fn new_intent_for<'l>(
|
||||
env: &mut Env<'l>,
|
||||
context: &JObject,
|
||||
class_name: &str,
|
||||
) -> Result<JObject<'l>> {
|
||||
let target_class = crate::jcall::find_class(env, class_name)?;
|
||||
crate::jcall::new_object(
|
||||
env,
|
||||
"android/content/Intent",
|
||||
"(Landroid/content/Context;Ljava/lang/Class;)V",
|
||||
&[JValue::Object(context), JValue::Object(&target_class)],
|
||||
)
|
||||
}
|
||||
|
||||
/// The intent a tap on an alert opens -- mirrors `Notifications.kt`'s
|
||||
/// `sessionIntent`, including building the URI through `Uri.Builder`
|
||||
/// rather than string concatenation, for the same reason: an id needing
|
||||
/// escaping must survive the round trip.
|
||||
fn session_intent<'l>(
|
||||
env: &mut Env<'l>,
|
||||
context: &JObject,
|
||||
session_id: &str,
|
||||
) -> Result<JObject<'l>> {
|
||||
let intent = new_intent_for(env, context, "com/example/aiapp/shell/MainActivity")?;
|
||||
let action_view = crate::jcall::jstr_obj(env, "android.intent.action.VIEW")?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&intent,
|
||||
"setAction",
|
||||
"(Ljava/lang/String;)Landroid/content/Intent;",
|
||||
&[JValue::Object(&action_view)],
|
||||
)?;
|
||||
let builder = crate::jcall::new_object(env, "android/net/Uri$Builder", "()V", &[])?;
|
||||
let scheme = crate::jcall::jstr_obj(env, settings::SCHEME)?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&builder,
|
||||
"scheme",
|
||||
"(Ljava/lang/String;)Landroid/net/Uri$Builder;",
|
||||
&[JValue::Object(&scheme)],
|
||||
)?;
|
||||
let authority = crate::jcall::jstr_obj(env, "session")?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&builder,
|
||||
"authority",
|
||||
"(Ljava/lang/String;)Landroid/net/Uri$Builder;",
|
||||
&[JValue::Object(&authority)],
|
||||
)?;
|
||||
let path = crate::jcall::jstr_obj(env, session_id)?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&builder,
|
||||
"appendPath",
|
||||
"(Ljava/lang/String;)Landroid/net/Uri$Builder;",
|
||||
&[JValue::Object(&path)],
|
||||
)?;
|
||||
let uri = crate::jcall::call_method(env, &builder, "build", "()Landroid/net/Uri;", &[])?.l()?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&intent,
|
||||
"setData",
|
||||
"(Landroid/net/Uri;)Landroid/content/Intent;",
|
||||
&[JValue::Object(&uri)],
|
||||
)?;
|
||||
Ok(intent)
|
||||
}
|
||||
|
||||
fn pending_activity<'l>(
|
||||
env: &mut Env<'l>,
|
||||
context: &JObject,
|
||||
intent: &JObject,
|
||||
) -> Result<JObject<'l>> {
|
||||
let update_current = static_int(env, "android/app/PendingIntent", "FLAG_UPDATE_CURRENT")?;
|
||||
let immutable = static_int(env, "android/app/PendingIntent", "FLAG_IMMUTABLE")?;
|
||||
crate::jcall::call_static_method(
|
||||
env,
|
||||
"android/app/PendingIntent",
|
||||
"getActivity",
|
||||
"(Landroid/content/Context;ILandroid/content/Intent;I)Landroid/app/PendingIntent;",
|
||||
&[
|
||||
JValue::Object(context),
|
||||
JValue::Int(0),
|
||||
JValue::Object(intent),
|
||||
JValue::Int(update_current | immutable),
|
||||
],
|
||||
)?
|
||||
.l()
|
||||
}
|
||||
|
||||
fn builder_call<'l>(
|
||||
env: &mut Env<'l>,
|
||||
builder: &JObject<'l>,
|
||||
method: &str,
|
||||
sig: &str,
|
||||
args: &[JValue],
|
||||
) -> Result<()> {
|
||||
crate::jcall::call_method(env, builder, method, sig, args)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// The type Android 14+ requires a foreground service to declare, and
|
||||
/// nothing before it -- mirrors `Notifications.kt`'s `foregroundType`.
|
||||
fn foreground_type(env: &mut Env) -> Result<i32> {
|
||||
let sdk = static_int(env, "android/os/Build$VERSION", "SDK_INT")?;
|
||||
let upside_down_cake = static_int(env, "android/os/Build$VERSION_CODES", "UPSIDE_DOWN_CAKE")?;
|
||||
if sdk >= upside_down_cake {
|
||||
static_int(
|
||||
env,
|
||||
"android/content/pm/ServiceInfo",
|
||||
"FOREGROUND_SERVICE_TYPE_SPECIAL_USE",
|
||||
)
|
||||
} else {
|
||||
Ok(0)
|
||||
}
|
||||
}
|
||||
|
||||
fn ongoing_notification<'l>(env: &mut Env<'l>, context: &JObject) -> Result<JObject<'l>> {
|
||||
let channel = crate::jcall::jstr_obj(env, ONGOING_CHANNEL)?;
|
||||
let builder = crate::jcall::new_object(
|
||||
env,
|
||||
"androidx/core/app/NotificationCompat$Builder",
|
||||
"(Landroid/content/Context;Ljava/lang/String;)V",
|
||||
&[JValue::Object(context), JValue::Object(&channel)],
|
||||
)?;
|
||||
let title = crate::jcall::jstr_obj(env, "Watching for sessions that need you")?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setContentTitle",
|
||||
"(Ljava/lang/CharSequence;)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Object(&title)],
|
||||
)?;
|
||||
let icon = static_int(env, "android/R$drawable", "stat_notify_sync")?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setSmallIcon",
|
||||
"(I)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Int(icon)],
|
||||
)?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setOngoing",
|
||||
"(Z)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Bool(JNI_TRUE)],
|
||||
)?;
|
||||
let priority_min = static_int(env, "androidx/core/app/NotificationCompat", "PRIORITY_MIN")?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setPriority",
|
||||
"(I)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Int(priority_min)],
|
||||
)?;
|
||||
crate::jcall::call_method(env, &builder, "build", "()Landroid/app/Notification;", &[])?.l()
|
||||
}
|
||||
|
||||
/// Starts the service if there is a server to connect to, and stops it
|
||||
/// otherwise -- mirrors `Notifications.kt`'s `NotificationService.sync`.
|
||||
pub fn sync(env: &mut Env, context: &JObject) -> Result<()> {
|
||||
let service_intent =
|
||||
new_intent_for(env, context, "com/example/aiapp/shell/NotificationService")?;
|
||||
if settings::load(env, context)?.is_none() {
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
context,
|
||||
"stopService",
|
||||
"(Landroid/content/Intent;)Z",
|
||||
&[JValue::Object(&service_intent)],
|
||||
)?;
|
||||
return Ok(());
|
||||
}
|
||||
create_channels(env, context)?;
|
||||
crate::jcall::call_static_method(
|
||||
env,
|
||||
"androidx/core/content/ContextCompat",
|
||||
"startForegroundService",
|
||||
"(Landroid/content/Context;Landroid/content/Intent;)V",
|
||||
&[JValue::Object(context), JValue::Object(&service_intent)],
|
||||
)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// The `Service.onStartCommand` body -- loads settings, starts the
|
||||
/// foreground notification, and spawns the follow-loop thread. Answers the
|
||||
/// platform's `START_STICKY`/`START_NOT_STICKY` constant, read from the
|
||||
/// framework rather than hardcoded so a wrong guess at their values cannot
|
||||
/// silently pick the other behaviour.
|
||||
pub fn on_start_command(env: &mut Env, service: JObject) -> jint {
|
||||
match try_start(env, &service) {
|
||||
Ok(true) => static_int(env, "android/app/Service", "START_STICKY").unwrap_or(1),
|
||||
Ok(false) => {
|
||||
let _ = crate::jcall::call_method(env, &service, "stopSelf", "()V", &[]);
|
||||
static_int(env, "android/app/Service", "START_NOT_STICKY").unwrap_or(2)
|
||||
}
|
||||
Err(e) => {
|
||||
log_error(env, "onStartCommand", &e);
|
||||
static_int(env, "android/app/Service", "START_NOT_STICKY").unwrap_or(2)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
fn try_start(env: &mut Env, service: &JObject) -> Result<bool> {
|
||||
let Some(settings) = settings::load(env, service)? else {
|
||||
return Ok(false);
|
||||
};
|
||||
let ca = settings::load_pinned_ca(env)?;
|
||||
let notification = ongoing_notification(env, service)?;
|
||||
let fg_type = foreground_type(env)?;
|
||||
crate::jcall::call_static_method(
|
||||
env,
|
||||
"androidx/core/app/ServiceCompat",
|
||||
"startForeground",
|
||||
"(Landroid/app/Service;ILandroid/app/Notification;I)V",
|
||||
&[
|
||||
JValue::Object(service),
|
||||
JValue::Int(ONGOING_ID),
|
||||
JValue::Object(¬ification),
|
||||
JValue::Int(fg_type),
|
||||
],
|
||||
)?;
|
||||
|
||||
// See `RUNNING`'s doc: a second `onStartCommand` while the loop from
|
||||
// the first is still going -- the ordinary case for this service,
|
||||
// since `sync()` is called from more than one place -- must not open
|
||||
// a second connection.
|
||||
if RUNNING.swap(true, Ordering::SeqCst) {
|
||||
return Ok(true);
|
||||
}
|
||||
|
||||
let vm = env.get_java_vm()?;
|
||||
let context = env.new_global_ref(service)?;
|
||||
STOPPING.store(false, Ordering::SeqCst);
|
||||
std::thread::Builder::new()
|
||||
.name("ai-app-notifications".to_string())
|
||||
.spawn(move || {
|
||||
// Requests a *permanent* attachment (detached only when this thread
|
||||
// exits), matching the Kotlin original's `thread(isDaemon = true)`:
|
||||
// this is the long-lived follow loop, not a one-shot callback.
|
||||
let _: jni::errors::Result<()> = vm.attach_current_thread(|env| {
|
||||
follow_loop(env, &context, settings, &ca);
|
||||
Ok(())
|
||||
});
|
||||
})
|
||||
.ok();
|
||||
Ok(true)
|
||||
}
|
||||
|
||||
/// Follows the backend's notification stream, reconnecting until stopped
|
||||
/// -- mirrors `Notifications.kt`'s `follow`. A dropped connection is the
|
||||
/// ordinary case, so it retries quietly and forever; nothing is shown when
|
||||
/// it cannot connect, for the same reason as the Kotlin original: a
|
||||
/// notification saying "I could not tell you whether anything happened" is
|
||||
/// noise about a condition nobody can act on.
|
||||
fn follow_loop(env: &mut Env, context: &JObject, settings: ServerSettings, ca: &[u8]) {
|
||||
while !STOPPING.load(Ordering::SeqCst) {
|
||||
if let Ok(transport) = UreqTransport::new(settings.base_url(), settings.token.clone(), ca) {
|
||||
let _ = follow_notifications(&transport, |notification| {
|
||||
if let Err(e) = show(env, context, ¬ification) {
|
||||
log_error(env, "show", &e);
|
||||
}
|
||||
!STOPPING.load(Ordering::SeqCst)
|
||||
});
|
||||
}
|
||||
if STOPPING.load(Ordering::SeqCst) {
|
||||
return;
|
||||
}
|
||||
std::thread::sleep(RECONNECT_DELAY);
|
||||
}
|
||||
}
|
||||
|
||||
/// One notification per session, replacing that session's previous one --
|
||||
/// mirrors `Notifications.kt`'s `show`, minus the on-screen/banner
|
||||
/// branches this module's doc comment explains.
|
||||
fn show(env: &mut Env, context: &JObject, notification: &SessionNotification) -> Result<()> {
|
||||
let manager = notification_manager(env, context)?;
|
||||
let sdk = static_int(env, "android/os/Build$VERSION", "SDK_INT")?;
|
||||
let tiramisu = static_int(env, "android/os/Build$VERSION_CODES", "TIRAMISU")?;
|
||||
let allowed = if sdk < tiramisu {
|
||||
true
|
||||
} else {
|
||||
let permission = crate::jcall::jstr_obj(env, "android.permission.POST_NOTIFICATIONS")?;
|
||||
let granted = static_int(
|
||||
env,
|
||||
"android/content/pm/PackageManager",
|
||||
"PERMISSION_GRANTED",
|
||||
)?;
|
||||
let result = crate::jcall::call_static_method(
|
||||
env,
|
||||
"androidx/core/content/ContextCompat",
|
||||
"checkSelfPermission",
|
||||
"(Landroid/content/Context;Ljava/lang/String;)I",
|
||||
&[JValue::Object(context), JValue::Object(&permission)],
|
||||
)?
|
||||
.i()?;
|
||||
result == granted
|
||||
};
|
||||
let enabled =
|
||||
crate::jcall::call_method(env, &manager, "areNotificationsEnabled", "()Z", &[])?.z()?;
|
||||
if !allowed || !enabled {
|
||||
return Ok(());
|
||||
}
|
||||
let intent = session_intent(env, context, ¬ification.session_id)?;
|
||||
let pending = pending_activity(env, context, &intent)?;
|
||||
let channel = crate::jcall::jstr_obj(env, ALERT_CHANNEL)?;
|
||||
let builder = crate::jcall::new_object(
|
||||
env,
|
||||
"androidx/core/app/NotificationCompat$Builder",
|
||||
"(Landroid/content/Context;Ljava/lang/String;)V",
|
||||
&[JValue::Object(context), JValue::Object(&channel)],
|
||||
)?;
|
||||
let title = crate::jcall::jstr_obj(env, ¬ification.title)?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setContentTitle",
|
||||
"(Ljava/lang/CharSequence;)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Object(&title)],
|
||||
)?;
|
||||
let text = crate::jcall::jstr_obj(env, notification.kind.attention_line())?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setContentText",
|
||||
"(Ljava/lang/CharSequence;)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Object(&text)],
|
||||
)?;
|
||||
let icon = static_int(env, "android/R$drawable", "stat_notify_chat")?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setSmallIcon",
|
||||
"(I)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Int(icon)],
|
||||
)?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setContentIntent",
|
||||
"(Landroid/app/PendingIntent;)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Object(&pending)],
|
||||
)?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setAutoCancel",
|
||||
"(Z)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Bool(JNI_TRUE)],
|
||||
)?;
|
||||
let when = (notification.at * 1000.0) as i64;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setWhen",
|
||||
"(J)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Long(when)],
|
||||
)?;
|
||||
builder_call(
|
||||
env,
|
||||
&builder,
|
||||
"setShowWhen",
|
||||
"(Z)Landroidx/core/app/NotificationCompat$Builder;",
|
||||
&[JValue::Bool(JNI_TRUE)],
|
||||
)?;
|
||||
let built =
|
||||
crate::jcall::call_method(env, &builder, "build", "()Landroid/app/Notification;", &[])?
|
||||
.l()?;
|
||||
let tag = crate::jcall::jstr_obj(env, ¬ification.session_id)?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&manager,
|
||||
"notify",
|
||||
"(Ljava/lang/String;ILandroid/app/Notification;)V",
|
||||
&[
|
||||
JValue::Object(&tag),
|
||||
JValue::Int(ALERT_ID),
|
||||
JValue::Object(&built),
|
||||
],
|
||||
)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Ends the follow loop -- mirrors `Notifications.kt`'s `onDestroy`, with
|
||||
/// the gap this module's `STOPPING` doc explains.
|
||||
pub fn on_destroy() {
|
||||
STOPPING.store(true, Ordering::SeqCst);
|
||||
// `RUNNING`'s path out. Same race as `STOPPING` itself (this doc's own
|
||||
// comment): the old thread may still be inside a blocked read when a
|
||||
// new `onStartCommand` follows immediately, which would spawn a
|
||||
// second one before the first has actually stopped. Narrower than not
|
||||
// resetting at all -- a service destroyed and never restarted would
|
||||
// otherwise wedge `RUNNING` true forever -- and no worse than the
|
||||
// known gap already accepted above.
|
||||
RUNNING.store(false, Ordering::SeqCst);
|
||||
}
|
||||
|
||||
pub fn log_error(env: &mut Env, where_: &str, error: &jni::errors::Error) {
|
||||
let message = format!("android-shell: {where_}: {error}");
|
||||
let _ = (|| -> Result<()> {
|
||||
let tag = crate::jcall::jstr_obj(env, "android-shell")?;
|
||||
let msg = crate::jcall::jstr_obj(env, &message)?;
|
||||
crate::jcall::call_static_method(
|
||||
env,
|
||||
"android/util/Log",
|
||||
"e",
|
||||
"(Ljava/lang/String;Ljava/lang/String;)I",
|
||||
&[JValue::Object(&tag), JValue::Object(&msg)],
|
||||
)?;
|
||||
Ok(())
|
||||
})();
|
||||
}
|
||||
@@ -0,0 +1,141 @@
|
||||
//! Enrollment: where the backend is, and the Keystore-sealed token to
|
||||
//! reach it. This crate does not reimplement the Android Keystore AES-GCM
|
||||
//! sealing in Rust -- it calls the same `wg-app-link` `ServerStore` Kotlin
|
||||
//! class the production app already uses (see `ServerConfig.kt`), through
|
||||
//! JNI, for two reasons: that code is shared with Dev Updater and already
|
||||
//! tested, and the sealed value on a real phone is keyed to the exact
|
||||
//! Keystore alias that class already uses -- reimplementing the crypto
|
||||
//! here would either duplicate it or invalidate an existing enrollment.
|
||||
|
||||
use jni::Env;
|
||||
use jni::errors::Result;
|
||||
use jni::objects::{JObject, JString, JValue};
|
||||
|
||||
/// Where the backend is and how to authenticate to it -- the Rust twin of
|
||||
/// `wg-app-link`'s `ServerSettings` data class, read back field by field
|
||||
/// rather than kept as a live JNI reference, so it can cross a thread
|
||||
/// boundary (a `JObject` is tied to one `Env`/thread).
|
||||
#[derive(Debug, Clone)]
|
||||
pub struct ServerSettings {
|
||||
pub host: String,
|
||||
pub port: i32,
|
||||
pub token: String,
|
||||
}
|
||||
|
||||
impl ServerSettings {
|
||||
pub fn base_url(&self) -> String {
|
||||
format!("https://{}:{}", self.host, self.port)
|
||||
}
|
||||
}
|
||||
|
||||
/// This experiment's own scheme and Keystore alias -- distinct from the
|
||||
/// production app's (`aiapp` / `aiapp-token-key`) so the two can be
|
||||
/// installed side by side on the same development device without
|
||||
/// colliding over which one a scanned QR or a deep link resolves to. See
|
||||
/// RUST.md's E3 entry for why they are not the same value.
|
||||
pub(crate) const SCHEME: &str = "aiappshell";
|
||||
const KEY_ALIAS: &str = "aiapp-shell-token-key";
|
||||
const STORE_CLASS: &str = "com/example/wgapplink/ServerStore";
|
||||
const SETTINGS_CLASS: &str = "com/example/wgapplink/ServerSettings";
|
||||
|
||||
fn new_store<'l>(env: &mut Env<'l>) -> Result<JObject<'l>> {
|
||||
let scheme = crate::jcall::jstr_obj(env, SCHEME)?;
|
||||
let alias = crate::jcall::jstr_obj(env, KEY_ALIAS)?;
|
||||
crate::jcall::new_object(
|
||||
env,
|
||||
STORE_CLASS,
|
||||
"(Ljava/lang/String;Ljava/lang/String;)V",
|
||||
&[JValue::Object(&scheme), JValue::Object(&alias)],
|
||||
)
|
||||
}
|
||||
|
||||
fn read_settings(env: &mut Env, settings_obj: &JObject) -> Result<ServerSettings> {
|
||||
let host = get_string(env, settings_obj, "getHost")?;
|
||||
let port = crate::jcall::call_method(env, settings_obj, "getPort", "()I", &[])?.i()?;
|
||||
let token = get_string(env, settings_obj, "getToken")?;
|
||||
Ok(ServerSettings { host, port, token })
|
||||
}
|
||||
|
||||
fn get_string(env: &mut Env, obj: &JObject, getter: &str) -> Result<String> {
|
||||
let value = crate::jcall::call_method(env, obj, getter, "()Ljava/lang/String;", &[])?.l()?;
|
||||
let jstr: JString = env.cast_local::<JString>(value)?;
|
||||
jstr.try_to_string(env)
|
||||
}
|
||||
|
||||
/// The stored enrollment, or `None` when there is not one -- mirrors
|
||||
/// `ServerConfig.kt`'s `loadServerSettings`.
|
||||
pub fn load(env: &mut Env, context: &JObject) -> Result<Option<ServerSettings>> {
|
||||
let store = new_store(env)?;
|
||||
let settings_obj = crate::jcall::call_method(
|
||||
env,
|
||||
&store,
|
||||
"load",
|
||||
"(Landroid/content/Context;)Lcom/example/wgapplink/ServerSettings;",
|
||||
&[JValue::Object(context)],
|
||||
)?
|
||||
.l()?;
|
||||
if settings_obj.is_null() {
|
||||
return Ok(None);
|
||||
}
|
||||
Ok(Some(read_settings(env, &settings_obj)?))
|
||||
}
|
||||
|
||||
/// Seals and stores `settings` -- mirrors `ServerConfig.kt`'s `saveServerSettings`.
|
||||
pub fn save(env: &mut Env, context: &JObject, settings: &ServerSettings) -> Result<()> {
|
||||
let store = new_store(env)?;
|
||||
let host = crate::jcall::jstr_obj(env, &settings.host)?;
|
||||
let token = crate::jcall::jstr_obj(env, &settings.token)?;
|
||||
let settings_obj = crate::jcall::new_object(
|
||||
env,
|
||||
SETTINGS_CLASS,
|
||||
"(Ljava/lang/String;ILjava/lang/String;)V",
|
||||
&[
|
||||
JValue::Object(&host),
|
||||
JValue::Int(settings.port),
|
||||
JValue::Object(&token),
|
||||
],
|
||||
)?;
|
||||
crate::jcall::call_method(
|
||||
env,
|
||||
&store,
|
||||
"save",
|
||||
"(Landroid/content/Context;Lcom/example/wgapplink/ServerSettings;)V",
|
||||
&[JValue::Object(context), JValue::Object(&settings_obj)],
|
||||
)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// Parses an `aiappshell://enroll?...` URI -- mirrors `ServerConfig.kt`'s
|
||||
/// `parseEnrollmentUri`, asking the same Kotlin code that already owns the
|
||||
/// query-parameter rules rather than re-deriving them here.
|
||||
pub fn parse_enrollment_uri(env: &mut Env, uri: &JObject) -> Result<Option<ServerSettings>> {
|
||||
let store = new_store(env)?;
|
||||
let settings_obj = crate::jcall::call_method(
|
||||
env,
|
||||
&store,
|
||||
"parseEnrollmentUri",
|
||||
"(Landroid/net/Uri;)Lcom/example/wgapplink/ServerSettings;",
|
||||
&[JValue::Object(uri)],
|
||||
)?
|
||||
.l()?;
|
||||
if settings_obj.is_null() {
|
||||
return Ok(None);
|
||||
}
|
||||
Ok(Some(read_settings(env, &settings_obj)?))
|
||||
}
|
||||
|
||||
/// The CA this build pins, generated at build time the same way
|
||||
/// `androidApp`'s `generatePinnedCert` task does (see `build.gradle.kts`)
|
||||
/// but into a plain Java constant, since this module has no Kotlin of its
|
||||
/// own to generate into.
|
||||
pub fn load_pinned_ca(env: &mut Env) -> Result<Vec<u8>> {
|
||||
let value = crate::jcall::get_static_field(
|
||||
env,
|
||||
"com/example/aiapp/shell/PinnedCa",
|
||||
"PINNED_CA_PEM",
|
||||
"Ljava/lang/String;",
|
||||
)?
|
||||
.l()?;
|
||||
let jstr: JString = env.cast_local::<JString>(value)?;
|
||||
Ok(jstr.try_to_string(env)?.into_bytes())
|
||||
}
|
||||
@@ -0,0 +1,183 @@
|
||||
//! Deep links and the share sheet -- ported from `MainActivity.kt`'s
|
||||
//! `handleIntent`/`onNewIntent` and `Share.kt`'s `sharedContent`.
|
||||
//!
|
||||
//! **Scope cut, recorded rather than silent**: only shared *text*
|
||||
//! (`Intent.EXTRA_TEXT`) is attached to a session. `Attachments.kt`'s
|
||||
//! upload path -- `ContentResolver` reads of a shared file/photo URI,
|
||||
//! bitmap downscaling, EXIF rotation -- is real work of its own and is not
|
||||
//! ported here, because `client-core`'s `ApiClient` does not have the
|
||||
//! `/sessions/{id}/attachments` route yet either (see `CLIENT_CORE.md`'s
|
||||
//! "not covered" list). So `ACTION_SEND`/`ACTION_SEND_MULTIPLE` with a
|
||||
//! `content://` stream and no text falls through to a toast saying so,
|
||||
//! rather than silently doing nothing. Closing this gap is the same
|
||||
//! `client-core` work whichever caller needs it next.
|
||||
//!
|
||||
//! **Which session a share lands in** is also a placeholder: with no
|
||||
//! screen drawn yet (E4's job), there is no picker to ask, so this attaches
|
||||
//! to whichever session has the latest `last_activity` -- the one most
|
||||
//! likely to be what somebody meant. Worth revisiting once a real screen
|
||||
//! exists to ask instead of guessing.
|
||||
|
||||
use client_core::api::{ApiClient, UreqTransport};
|
||||
use jni::Env;
|
||||
use jni::errors::Result;
|
||||
use jni::objects::{JObject, JString, JValue};
|
||||
|
||||
use crate::notify;
|
||||
use crate::settings;
|
||||
|
||||
const ACTION_SEND: &str = "android.intent.action.SEND";
|
||||
const ACTION_SEND_MULTIPLE: &str = "android.intent.action.SEND_MULTIPLE";
|
||||
const ACTION_VIEW: &str = "android.intent.action.VIEW";
|
||||
const EXTRA_TEXT: &str = "android.intent.extra.TEXT";
|
||||
|
||||
fn get_string_method(env: &mut Env, obj: &JObject, method: &str) -> Result<Option<String>> {
|
||||
let value = crate::jcall::call_method(env, obj, method, "()Ljava/lang/String;", &[])?.l()?;
|
||||
if value.is_null() {
|
||||
return Ok(None);
|
||||
}
|
||||
let jstr: JString = env.cast_local::<JString>(value)?;
|
||||
Ok(Some(jstr.try_to_string(env)?))
|
||||
}
|
||||
|
||||
fn toast(env: &mut Env, context: &JObject, message: &str) -> Result<()> {
|
||||
let message = crate::jcall::jstr_obj(env, message)?;
|
||||
crate::jcall::call_static_method(
|
||||
env,
|
||||
"com/example/aiapp/shell/MainActivity",
|
||||
"toast",
|
||||
"(Landroid/content/Context;Ljava/lang/String;)V",
|
||||
&[JValue::Object(context), JValue::Object(&message)],
|
||||
)?;
|
||||
Ok(())
|
||||
}
|
||||
|
||||
/// The one place an incoming intent is sorted into what it means -- mirrors
|
||||
/// `MainActivity.kt`'s `handleIntent`.
|
||||
pub fn handle_intent(env: &mut Env, activity: &JObject, intent: &JObject) -> Result<()> {
|
||||
let action = get_string_method(env, intent, "getAction")?;
|
||||
if matches!(
|
||||
action.as_deref(),
|
||||
Some(ACTION_SEND) | Some(ACTION_SEND_MULTIPLE)
|
||||
) {
|
||||
return handle_share(env, activity, intent);
|
||||
}
|
||||
if action.as_deref() != Some(ACTION_VIEW) {
|
||||
return Ok(());
|
||||
}
|
||||
let uri = crate::jcall::call_method(env, intent, "getData", "()Landroid/net/Uri;", &[])?.l()?;
|
||||
if uri.is_null() {
|
||||
return Ok(());
|
||||
}
|
||||
let scheme = get_string_method(env, &uri, "getScheme")?;
|
||||
if scheme.as_deref() != Some(settings::SCHEME) {
|
||||
return Ok(());
|
||||
}
|
||||
match get_string_method(env, &uri, "getHost")?.as_deref() {
|
||||
Some("session") => handle_session_open(env, activity, &uri),
|
||||
Some("enroll") => handle_enrollment(env, activity, &uri),
|
||||
_ => Ok(()),
|
||||
}
|
||||
}
|
||||
|
||||
fn handle_session_open(env: &mut Env, activity: &JObject, uri: &JObject) -> Result<()> {
|
||||
let Some(session_id) = get_string_method(env, uri, "getLastPathSegment")? else {
|
||||
return Ok(());
|
||||
};
|
||||
// There is no session screen yet (E4's job); the toast is this
|
||||
// experiment's stand-in proof that the tap was routed to the right
|
||||
// session id.
|
||||
toast(env, activity, &format!("Opened session {session_id}"))
|
||||
}
|
||||
|
||||
fn handle_enrollment(env: &mut Env, activity: &JObject, uri: &JObject) -> Result<()> {
|
||||
match settings::parse_enrollment_uri(env, uri)? {
|
||||
Some(parsed) => {
|
||||
settings::save(env, activity, &parsed)?;
|
||||
notify::sync(env, activity)?;
|
||||
toast(
|
||||
env,
|
||||
activity,
|
||||
&format!("Enrolled with {}", parsed.base_url()),
|
||||
)
|
||||
}
|
||||
None => toast(env, activity, "Not a valid enrollment code"),
|
||||
}
|
||||
}
|
||||
|
||||
/// The share sheet -- mirrors `Share.kt`'s `sharedContent` for what counts
|
||||
/// as a share, and `AttachmentButton`'s upload-then-message pattern for
|
||||
/// what happens to it, minus attachments per this module's doc comment.
|
||||
fn handle_share(env: &mut Env, activity: &JObject, intent: &JObject) -> Result<()> {
|
||||
let extra_text = crate::jcall::jstr_obj(env, EXTRA_TEXT)?;
|
||||
let text = crate::jcall::call_method(
|
||||
env,
|
||||
intent,
|
||||
"getStringExtra",
|
||||
"(Ljava/lang/String;)Ljava/lang/String;",
|
||||
&[JValue::Object(&extra_text)],
|
||||
)?
|
||||
.l()?;
|
||||
let text = if text.is_null() {
|
||||
None
|
||||
} else {
|
||||
let jstr: JString = env.cast_local::<JString>(text)?;
|
||||
Some(jstr.try_to_string(env)?)
|
||||
};
|
||||
let Some(text) = text.filter(|t| !t.trim().is_empty()) else {
|
||||
return toast(
|
||||
env,
|
||||
activity,
|
||||
"Nothing to share -- only shared text is supported so far",
|
||||
);
|
||||
};
|
||||
|
||||
// Network I/O must not run on the calling thread: `handle_intent` is
|
||||
// called from `onCreate`/`onNewIntent`, both on the main thread, and a
|
||||
// blocking socket read there is a `NetworkOnMainThreadException`. So
|
||||
// the actual send happens on a JNI-attached background thread, the
|
||||
// same shape `notify::try_start`'s follow loop uses; `toast` from that
|
||||
// thread is safe because `MainActivity.toast` itself hops back to the
|
||||
// main looper (see that method).
|
||||
let vm = env.get_java_vm()?;
|
||||
let activity_ref = env.new_global_ref(activity)?;
|
||||
std::thread::spawn(move || {
|
||||
let _: jni::errors::Result<()> = vm.attach_current_thread(|env| {
|
||||
share_in_background(env, &activity_ref, text);
|
||||
Ok(())
|
||||
});
|
||||
});
|
||||
Ok(())
|
||||
}
|
||||
|
||||
fn share_in_background(env: &mut Env, activity: &JObject, text: String) {
|
||||
let outcome = attach_to_a_session(env, activity, &text);
|
||||
let message = match outcome {
|
||||
Ok(title) => format!("Shared into \"{title}\""),
|
||||
Err(message) => message,
|
||||
};
|
||||
let _ = toast(env, activity, &message);
|
||||
}
|
||||
|
||||
fn attach_to_a_session(
|
||||
env: &mut Env,
|
||||
activity: &JObject,
|
||||
text: &str,
|
||||
) -> std::result::Result<String, String> {
|
||||
let settings = settings::load(env, activity)
|
||||
.map_err(|e| e.to_string())?
|
||||
.ok_or_else(|| "Not enrolled yet".to_string())?;
|
||||
let ca = settings::load_pinned_ca(env).map_err(|e| e.to_string())?;
|
||||
let transport = UreqTransport::new(settings.base_url(), settings.token.clone(), &ca)
|
||||
.map_err(|e| e.to_string())?;
|
||||
let client = ApiClient::new(transport);
|
||||
let sessions = client.fetch_sessions().map_err(|e| e.to_string())?;
|
||||
let target = sessions
|
||||
.into_iter()
|
||||
.max_by(|a, b| a.last_activity.total_cmp(&b.last_activity))
|
||||
.ok_or_else(|| "No session to share into".to_string())?;
|
||||
client
|
||||
.send_message(&target.id, text, &[])
|
||||
.map_err(|e| e.to_string())?;
|
||||
Ok(target.title)
|
||||
}
|
||||
@@ -102,6 +102,16 @@ android {
|
||||
targetSdk = 37
|
||||
versionCode = 1
|
||||
versionName = "1.0"
|
||||
// Read by MainActivity to decide, at startup, whether this is the P0 benchmark build
|
||||
// (docs/RUST.md's P0 box) rather than the app somebody enrolled. False everywhere except
|
||||
// the `bench` build type below, which overrides it.
|
||||
buildConfigField("boolean", "FIXTURE_MODE", "false")
|
||||
}
|
||||
buildFeatures {
|
||||
// Only for FIXTURE_MODE above; nothing else here reaches for generated BuildConfig fields.
|
||||
buildConfig = true
|
||||
// Only for the bench build type's resValue("string", "app_name", ...) below.
|
||||
resValues = true
|
||||
}
|
||||
packaging {
|
||||
resources { excludes += "/META-INF/{AL2.0,LGPL2.1}" }
|
||||
@@ -131,6 +141,35 @@ android {
|
||||
isMinifyEnabled = false
|
||||
if (keystore != null) signingConfig = signingConfigs.getByName("release")
|
||||
}
|
||||
// P0's benchmark build (docs/RUST.md, docs/DECISIONS.md's 2026-09-05 entry): release
|
||||
// optimisations so a frame time measured here means what release means everywhere else in
|
||||
// this project, its own application id so it installs beside a real enrollment rather than
|
||||
// replacing it, and FIXTURE_MODE so MainActivity opens straight onto the fixture session
|
||||
// instead of asking to be enrolled. Signed with the same key as release -- it never talks
|
||||
// to a real backend, so there is no CA of its own to mismatch, and a second keystore would
|
||||
// be one more secret to keep off this machine's shared mount for no benefit.
|
||||
create("bench") {
|
||||
initWith(getByName("release"))
|
||||
// :link (wg-app-link) has no "bench" build type of its own -- it is a library shared
|
||||
// with dev-updater and has no reason to know this project invented one -- so this says
|
||||
// which of its build types to link against instead.
|
||||
matchingFallbacks += listOf("release")
|
||||
applicationIdSuffix = ".bench"
|
||||
// "AI Sessions bench" everywhere the OS shows the app's name (launcher, recents,
|
||||
// Settings): this resValue overrides res/values/strings.xml's app_name for this
|
||||
// build type alone, and AndroidManifest.xml's android:label reads @string/app_name
|
||||
// rather than a literal so a build type can override it without touching the
|
||||
// manifest.
|
||||
resValue("string", "app_name", "AI Sessions bench")
|
||||
buildConfigField("boolean", "FIXTURE_MODE", "true")
|
||||
if (keystore != null) signingConfig = signingConfigs.getByName("release")
|
||||
}
|
||||
}
|
||||
sourceSets {
|
||||
// The fixture both bench builds (this one and iris's) open with; see
|
||||
// app/bench-fixture/README.md. Read directly from its own directory rather than copied
|
||||
// into androidApp/src -- one file to keep in sync with the generator, not two.
|
||||
getByName("bench").assets.directories.add("../bench-fixture/assets")
|
||||
}
|
||||
compileOptions {
|
||||
sourceCompatibility = JavaVersion.VERSION_21
|
||||
|
||||
@@ -25,7 +25,7 @@
|
||||
the fix is a judgement about how this app should look. Drop this
|
||||
suppression when a real icon lands. -->
|
||||
<application
|
||||
android:label="AI Sessions"
|
||||
android:label="@string/app_name"
|
||||
android:allowBackup="true"
|
||||
android:theme="@android:style/Theme.Material.Light.NoActionBar"
|
||||
tools:ignore="MissingApplicationIcon">
|
||||
|
||||
@@ -142,6 +142,20 @@ data class SessionSummary(
|
||||
val keepsOwnTranscript: Boolean,
|
||||
/** How much the session asks before acting; null when it was never set. */
|
||||
val permissionMode: String?,
|
||||
/**
|
||||
* How hard the model thinks, or null for the CLI's own default.
|
||||
*
|
||||
* Null is a level somebody can choose, not only one to start in -- see [EFFORT_LEVELS]. It is
|
||||
* reported rather than assumed for the same reason [permissionMode] is.
|
||||
*/
|
||||
val effort: String?,
|
||||
/**
|
||||
* Whether a thinking level does anything here -- a Claude CLI session, not a llama or echo one.
|
||||
*
|
||||
* Asked of the server rather than worked out from the provider's name, because this is a
|
||||
* property of the driver's *kind* and the phone only has the name.
|
||||
*/
|
||||
val takesEffort: Boolean,
|
||||
/**
|
||||
* Whether this continues a session the machine already had, which changes what deleting means.
|
||||
*/
|
||||
@@ -153,6 +167,24 @@ data class SessionSummary(
|
||||
* itself from a default is one you can turn off while believing you are reading it.
|
||||
*/
|
||||
val notify: Boolean,
|
||||
/**
|
||||
* Whether this session sends itself a message once its account's usage limit lifts, and what
|
||||
* that message says.
|
||||
*
|
||||
* The message is what the server would actually send, with its own default already filled in,
|
||||
* so the field shows the words rather than an empty box standing for them.
|
||||
*/
|
||||
val autoResume: Boolean,
|
||||
val autoResumeMessage: String,
|
||||
/**
|
||||
* When the server next intends to check whether the limit has lifted, in epoch seconds, or null
|
||||
* when nothing is waiting.
|
||||
*
|
||||
* A time to *ask*, not a time to resume: the server checks the meter at that moment and waits
|
||||
* again if the limit is still on. Worded that way wherever it is shown, because a promise this
|
||||
* app cannot keep is worse than no time at all.
|
||||
*/
|
||||
val resumeAt: Double?,
|
||||
/**
|
||||
* The directory the session works in, or null where it was never given one.
|
||||
*
|
||||
@@ -178,8 +210,27 @@ data class SessionSummary(
|
||||
* server because that is where a provider's kind is known.
|
||||
*/
|
||||
val maxImageEdge: Int?,
|
||||
/**
|
||||
* Which of `GET /usage`'s snapshots is about this session, and null where nothing meters it.
|
||||
*
|
||||
* The rate-limit bar answers a question about an *account*, and what decides which account --
|
||||
* if any -- is the provider this session runs, not the machine it runs on. Pairing by machine
|
||||
* alone drew the Claude CLI's five-hour window under every echo session on a machine that also
|
||||
* has the CLI: a quota that session cannot spend and could never run down. Decided by the
|
||||
* server for the same reason [maxImageEdge] is -- it is a fact about the provider's kind, and
|
||||
* this app has only its name.
|
||||
*/
|
||||
val usageProvider: String?,
|
||||
val status: String,
|
||||
val lastActivity: Double,
|
||||
/**
|
||||
* How many subagents this session has, however their own status now reads.
|
||||
*
|
||||
* A directory listing on the server rather than a status read per subagent, so the list stays
|
||||
* cheap; the per-subagent state is only fetched when the card is expanded. Zero on a server
|
||||
* that predates subagents, so this app still opens against one.
|
||||
*/
|
||||
val subagents: Int,
|
||||
)
|
||||
|
||||
private fun parseSession(session: JSONObject) =
|
||||
@@ -192,14 +243,24 @@ private fun parseSession(session: JSONObject) =
|
||||
title = session.getString("title"),
|
||||
model = session.optString("model").ifEmpty { null },
|
||||
permissionMode = session.optString("permissionMode").ifEmpty { null },
|
||||
effort = session.optString("effort").ifEmpty { null },
|
||||
takesEffort = session.optBoolean("takesEffort", false),
|
||||
imported = session.optBoolean("imported", false),
|
||||
notify = session.optBoolean("notify", true),
|
||||
autoResume = session.optBoolean("autoResume", false),
|
||||
// The server sends its own default rather than nothing, so an empty answer means an older
|
||||
// server -- and this app's word for it is the same word.
|
||||
autoResumeMessage =
|
||||
session.optString("autoResumeMessage").ifEmpty { DEFAULT_RESUME_MESSAGE },
|
||||
resumeAt = if (session.has("resumeAt")) session.getDouble("resumeAt") else null,
|
||||
cwd = session.optString("cwd").ifEmpty { null },
|
||||
contextTokens =
|
||||
if (session.has("contextTokens")) session.getLong("contextTokens") else null,
|
||||
maxImageEdge = session.optInt("maxImageEdge", 0).takeIf { it > 0 },
|
||||
usageProvider = session.optString("usageProvider").ifEmpty { null },
|
||||
status = session.getString("status"),
|
||||
lastActivity = session.getDouble("lastActivity"),
|
||||
subagents = session.optInt("subagents", 0),
|
||||
)
|
||||
|
||||
fun fetchSessions(settings: ServerSettings): List<SessionSummary> =
|
||||
@@ -215,6 +276,35 @@ fun fetchSessions(settings: ServerSettings): List<SessionSummary> =
|
||||
fun fetchSession(settings: ServerSettings, sessionId: String): SessionSummary =
|
||||
requestFromServer(settings, "/sessions/$sessionId") { parseSession(it.jsonObject()) }
|
||||
|
||||
/**
|
||||
* One row of `GET /sessions/{id}/subagents`, oldest first.
|
||||
*
|
||||
* A subagent is a second transcript owned by a session -- no process, no controls of its own -- so
|
||||
* this carries only what a card needs to draw and to open it; see SUBAGENTS.md. [status] is
|
||||
* "running", "exited" or "unknown": a subagent whose session is not itself running cannot be
|
||||
* running, and the list says so rather than reporting a state that cannot hold.
|
||||
*/
|
||||
data class SubagentSummary(
|
||||
val id: String,
|
||||
val title: String,
|
||||
val status: String,
|
||||
val created: Double,
|
||||
val lastActivity: Double,
|
||||
)
|
||||
|
||||
fun fetchSubagents(settings: ServerSettings, sessionId: String): List<SubagentSummary> =
|
||||
requestFromServer(settings, "/sessions/$sessionId/subagents") {
|
||||
it.jsonObjects { row ->
|
||||
SubagentSummary(
|
||||
id = row.getString("id"),
|
||||
title = row.getString("title"),
|
||||
status = row.getString("status"),
|
||||
created = row.getDouble("created"),
|
||||
lastActivity = row.getDouble("lastActivity"),
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
// What the server offers, so the spawn screen has no hardcoded lists: a setup added to the server's
|
||||
// config.ron appears here with no app rebuild.
|
||||
//
|
||||
@@ -375,6 +465,12 @@ data class SshDetails(
|
||||
* Where files attached from here land on that machine; null for the session's own directory.
|
||||
*/
|
||||
val attachmentsDir: String? = null,
|
||||
/**
|
||||
* Where that machine keeps its GGUF models; null for the same place the backend keeps its own
|
||||
* (`~/.local/share/ai-app/models`, read on that machine). A llama.cpp session serves the file
|
||||
* from the machine it runs on, so this is where its models are looked for and listed.
|
||||
*/
|
||||
val modelsDir: String? = null,
|
||||
)
|
||||
|
||||
private fun SshDetails.toJson() =
|
||||
@@ -382,6 +478,7 @@ private fun SshDetails.toJson() =
|
||||
if (port != null) put("port", port)
|
||||
if (!identityFile.isNullOrBlank()) put("identityFile", identityFile)
|
||||
if (!attachmentsDir.isNullOrBlank()) put("attachmentsDir", attachmentsDir)
|
||||
if (!modelsDir.isNullOrBlank()) put("modelsDir", modelsDir)
|
||||
}
|
||||
|
||||
/** What a machine turns out to have, without saving anything. */
|
||||
@@ -450,6 +547,8 @@ fun spawnSession(
|
||||
model: String? = null,
|
||||
cwd: String? = null,
|
||||
permissionMode: String? = null,
|
||||
/** Null for whatever the server's default is; see [fetchDefaultEffort]. */
|
||||
effort: String? = null,
|
||||
params: Map<String, String> = emptyMap(),
|
||||
/** Continue this Claude Code session instead of starting an empty one. */
|
||||
import: String? = null,
|
||||
@@ -467,6 +566,7 @@ fun spawnSession(
|
||||
if (!model.isNullOrBlank()) put("model", model)
|
||||
if (!cwd.isNullOrBlank()) put("cwd", cwd)
|
||||
if (!permissionMode.isNullOrBlank()) put("permissionMode", permissionMode)
|
||||
if (!effort.isNullOrBlank()) put("effort", effort)
|
||||
if (!import.isNullOrBlank()) put("import", import)
|
||||
if (params.isNotEmpty()) {
|
||||
put("params", JSONObject(params.toMap<String, Any>()))
|
||||
@@ -906,7 +1006,7 @@ fun startImport(
|
||||
*/
|
||||
fun fetchTranscript(
|
||||
settings: ServerSettings,
|
||||
sessionId: String,
|
||||
address: TranscriptAddress,
|
||||
before: Long? = null,
|
||||
limit: Int = 80,
|
||||
// Count [limit] in rows, not events, joining a reply's streamed deltas into one -- so a page of
|
||||
@@ -925,7 +1025,7 @@ fun fetchTranscript(
|
||||
if (coalesce) append("&coalesce=true")
|
||||
if (after != null) append("&after=").append(after)
|
||||
}
|
||||
return requestFromServer(settings, "/sessions/$sessionId/transcript$query") { connection ->
|
||||
return requestFromServer(settings, "/${address.urlPath}/transcript$query") { connection ->
|
||||
val body = JSONArray(connection.inputStream.bufferedReader().readText())
|
||||
// The text as well as the event: the transcript cache stores the one and the fold needs the
|
||||
// other, and they have to be the same line.
|
||||
@@ -973,6 +1073,56 @@ fun setSessionModel(settings: ServerSettings, sessionId: String, model: String)
|
||||
*/
|
||||
val PERMISSION_MODES = listOf("manual", "acceptEdits", "auto", "bypassPermissions", "plan")
|
||||
|
||||
/**
|
||||
* What a new session's thinking level is when nothing chose one, or null for the CLI's own.
|
||||
*
|
||||
* Held by the server rather than by this phone, because a second device would otherwise spawn
|
||||
* sessions at a level the first one's owner never picked.
|
||||
*/
|
||||
fun fetchDefaultEffort(settings: ServerSettings): String? =
|
||||
requestFromServer(settings, "/defaults") {
|
||||
it.jsonObject().optString("effort").ifEmpty { null }
|
||||
}
|
||||
|
||||
/** Sets what new sessions start at. Nothing already running changes. */
|
||||
fun setDefaultEffort(settings: ServerSettings, level: String?) {
|
||||
requestFromServer(
|
||||
settings,
|
||||
"/defaults",
|
||||
method = "POST",
|
||||
jsonBody = JSONObject().put("effort", level ?: JSONObject.NULL).toString(),
|
||||
) {}
|
||||
}
|
||||
|
||||
/**
|
||||
* How hard the model thinks, as `claude --effort` takes them, cheapest first.
|
||||
*
|
||||
* Not offered alongside the model and the permission mode on the session's own bar, because it does
|
||||
* not behave like them: the CLI has a control request for those two and none for this (checked
|
||||
* against 2.1.258), so a level is settled when the process is launched. Changing it therefore stops
|
||||
* the process, which is what the working directory beside it in this dialog does, and why it is
|
||||
* here rather than on a bar whose other controls take effect mid-turn.
|
||||
*/
|
||||
val EFFORT_LEVELS = listOf("low", "medium", "high", "xhigh", "max")
|
||||
|
||||
/** What the picker shows, and sends as null, for a session that has chosen no level. */
|
||||
const val DEFAULT_EFFORT = "default"
|
||||
|
||||
/**
|
||||
* Records how hard a session thinks and **stops its process**, since the level is read when the
|
||||
* process is launched. The next message, or Start, runs one that has it.
|
||||
*
|
||||
* [level] is null for the CLI's own default.
|
||||
*/
|
||||
fun setSessionEffort(settings: ServerSettings, sessionId: String, level: String?) {
|
||||
requestFromServer(
|
||||
settings,
|
||||
"/sessions/$sessionId/effort",
|
||||
method = "POST",
|
||||
jsonBody = JSONObject().put("effort", level ?: JSONObject.NULL).toString(),
|
||||
) {}
|
||||
}
|
||||
|
||||
/** Switches how much a running session asks before acting, also in place. */
|
||||
fun setSessionPermissionMode(settings: ServerSettings, sessionId: String, mode: String) {
|
||||
requestFromServer(
|
||||
@@ -984,6 +1134,36 @@ fun setSessionPermissionMode(settings: ServerSettings, sessionId: String, mode:
|
||||
}
|
||||
|
||||
/** Turns this session's notifications on or off. Stored on the backend -- see `SessionConfig`. */
|
||||
/**
|
||||
* What an auto-resume says when nothing else was typed. Mirrors the server's own default, so a
|
||||
* cleared field shows the word that would actually be sent instead of going blank.
|
||||
*/
|
||||
const val DEFAULT_RESUME_MESSAGE = "continue"
|
||||
|
||||
/**
|
||||
* Turns auto-resume on or off and sets what it would say, in one request because they are one
|
||||
* decision -- see the server's `/sessions/{id}/auto-resume`.
|
||||
*/
|
||||
fun setSessionAutoResume(
|
||||
settings: ServerSettings,
|
||||
sessionId: String,
|
||||
autoResume: Boolean,
|
||||
message: String?,
|
||||
) {
|
||||
requestFromServer(
|
||||
settings,
|
||||
"/sessions/$sessionId/auto-resume",
|
||||
method = "POST",
|
||||
jsonBody =
|
||||
JSONObject()
|
||||
.put("autoResume", autoResume)
|
||||
// Empty means the server's default rather than a session poked with nothing to
|
||||
// read, which is the same rule the server applies to the field.
|
||||
.put("message", message?.trim()?.ifEmpty { null } ?: JSONObject.NULL)
|
||||
.toString(),
|
||||
) {}
|
||||
}
|
||||
|
||||
fun setSessionNotify(settings: ServerSettings, sessionId: String, notify: Boolean) {
|
||||
requestFromServer(
|
||||
settings,
|
||||
@@ -1074,6 +1254,26 @@ private fun parseDownload(o: JSONObject) =
|
||||
error = if (o.has("error")) o.getString("error") else null,
|
||||
)
|
||||
|
||||
/**
|
||||
* The models on one machine, which is the list a llama.cpp session there can choose from.
|
||||
*
|
||||
* Not [fetchModels], which is what the *backend* has downloaded. A session serves its model from
|
||||
* the machine it runs on, so for a machine reached over ssh those are two different lists -- and
|
||||
* offering the backend's would name files that are not there, turning a choice that cannot work
|
||||
* into a session that fails when it tries to load one.
|
||||
*/
|
||||
fun fetchSetupModels(settings: ServerSettings, setupId: String): List<LocalModel> =
|
||||
requestFromServer(settings, "/setups/${setupId.urlEncoded()}/models") { connection ->
|
||||
JSONArray(connection.inputStream.bufferedReader().readText()).mapObjects { m ->
|
||||
LocalModel(
|
||||
key = m.getString("key"),
|
||||
repo = m.getString("repo"),
|
||||
file = m.getString("file"),
|
||||
bytes = m.getLong("bytes"),
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
fun fetchModels(settings: ServerSettings): Models =
|
||||
requestFromServer(settings, "/models") { connection ->
|
||||
val body = JSONObject(connection.inputStream.bufferedReader().readText())
|
||||
|
||||
@@ -1,7 +1,9 @@
|
||||
package com.example.aiapp
|
||||
|
||||
import androidx.activity.compose.BackHandler
|
||||
import androidx.compose.foundation.background
|
||||
import androidx.compose.foundation.layout.Box
|
||||
import androidx.compose.foundation.layout.fillMaxSize
|
||||
import androidx.compose.foundation.layout.imePadding
|
||||
import androidx.compose.foundation.layout.padding
|
||||
import androidx.compose.material3.AlertDialog
|
||||
@@ -34,7 +36,23 @@ import kotlinx.coroutines.withContext
|
||||
* session, spawning one, and settings.
|
||||
*/
|
||||
private sealed class Screen {
|
||||
data object Main : Screen()
|
||||
/**
|
||||
* The session list, with a subagent's own transcript over it when [subagent] is set.
|
||||
*
|
||||
* A layer on this screen rather than a screen of its own, for the same reason [Session.files]
|
||||
* is: [SessionListScreen] owns which cards are expanded and what each expansion fetched, kept
|
||||
* in `remember`, and a subagent is opened from a card's expander. As a sibling `Screen` it was
|
||||
* disposed and recreated on every return, which lost that state -- an expanded card collapsed
|
||||
* itself the moment its own subagent's view was closed.
|
||||
*/
|
||||
data class Main(val subagent: SubagentTarget? = null) : Screen()
|
||||
|
||||
/**
|
||||
* One subagent's own transcript, read-only. See [SessionScreen]'s `subagent` parameter and
|
||||
* SUBAGENTS.md's "Phone". Closing it returns to [Main] under it, not to [Session]: a subagent
|
||||
* is opened from the session list's card rather than from inside the session it belongs to.
|
||||
*/
|
||||
data class SubagentTarget(val summary: SessionSummary, val subagent: SubagentSummary)
|
||||
|
||||
/**
|
||||
* One session, with the file explorer over it when [files] is set.
|
||||
@@ -81,7 +99,7 @@ fun AppRoot(
|
||||
val context = LocalContext.current
|
||||
val scope = rememberCoroutineScope()
|
||||
var settings by remember(settingsVersion) { mutableStateOf(loadServerSettings(context)) }
|
||||
var screen by remember { mutableStateOf<Screen>(Screen.Main) }
|
||||
var screen by remember { mutableStateOf<Screen>(Screen.Main()) }
|
||||
// A notification tap this could not follow, and why. Null both before one is asked for and
|
||||
// after one succeeds, since success is a screen rather than a message.
|
||||
var failedOpen by remember { mutableStateOf<FailedOpen?>(null) }
|
||||
@@ -96,7 +114,7 @@ fun AppRoot(
|
||||
share = shareRequest
|
||||
// A session already open takes it. Otherwise the list is where the choice is made,
|
||||
// whatever screen was showing: Spawn and Settings have nowhere to put a file.
|
||||
if (screen !is Screen.Session) screen = Screen.Main
|
||||
if (screen !is Screen.Session) screen = Screen.Main()
|
||||
}
|
||||
}
|
||||
|
||||
@@ -123,7 +141,7 @@ fun AppRoot(
|
||||
existing = null,
|
||||
onSaved = { saved ->
|
||||
settings = saved
|
||||
screen = Screen.Main
|
||||
screen = Screen.Main()
|
||||
},
|
||||
onBack = null,
|
||||
)
|
||||
@@ -136,7 +154,7 @@ fun AppRoot(
|
||||
// shows, so it always refetches.
|
||||
val goToMain = {
|
||||
reloadToken++
|
||||
screen = Screen.Main
|
||||
screen = Screen.Main()
|
||||
}
|
||||
if (screen !is Screen.Main) {
|
||||
BackHandler(onBack = goToMain)
|
||||
@@ -185,6 +203,9 @@ fun AppRoot(
|
||||
reloadToken = reloadToken,
|
||||
share = share,
|
||||
onOpen = { screen = Screen.Session(it) },
|
||||
onOpenSubagent = { summary, subagent ->
|
||||
screen = here.copy(subagent = Screen.SubagentTarget(summary, subagent))
|
||||
},
|
||||
onSpawn = { screen = Screen.Spawn },
|
||||
onImported = { imported ->
|
||||
reloadToken++
|
||||
@@ -192,6 +213,27 @@ fun AppRoot(
|
||||
},
|
||||
onSettings = { screen = Screen.Settings },
|
||||
)
|
||||
// Its own back handler is registered after MainScreen's, so it is the one the
|
||||
// platform asks first while a subagent is open -- the same rule the files
|
||||
// explorer's handler follows over its session, below.
|
||||
here.subagent?.let { target ->
|
||||
BackHandler { screen = here.copy(subagent = null) }
|
||||
// Its own opaque background: this screen was always the sole content under
|
||||
// the theme's own Surface before, so it never had to paint one -- stacked over
|
||||
// the list here, the space between its own cards let the list underneath show
|
||||
// through without this. The same fix FilesScreen needed over its session.
|
||||
Box(Modifier.fillMaxSize().background(MaterialTheme.colorScheme.background)) {
|
||||
key(target.summary.id, target.subagent.id) {
|
||||
SessionScreen(
|
||||
settings = current,
|
||||
summary = target.summary,
|
||||
onBack = { screen = here.copy(subagent = null) },
|
||||
onFiles = {},
|
||||
subagent = target.subagent,
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
is Screen.Session ->
|
||||
// Keyed on the id, because a different session is a different screen rather than this
|
||||
|
||||
@@ -0,0 +1,108 @@
|
||||
package com.example.aiapp
|
||||
|
||||
import android.content.Context
|
||||
import java.util.concurrent.CopyOnWriteArrayList
|
||||
|
||||
/**
|
||||
* P0's benchmark gate (see docs/RUST.md and docs/DECISIONS.md's 2026-09-05 entry): an in-process
|
||||
* fake of the backend, so the `bench` build type can drive a real session screen -- the real
|
||||
* [TranscriptSource], the real fold, the real paging -- with no server and no network permission.
|
||||
*
|
||||
* Only ever installed when [BuildConfig.FIXTURE_MODE] is true (see [MainActivity]); everything else
|
||||
* in this build compiles it in but never calls it, since Kotlin has no per-build-type source set
|
||||
* that both [MainActivity] (which every variant compiles) and this can share without one.
|
||||
*
|
||||
* The design: [requestFromServer] and [Sse] talk to `https://$FIXTURE_HOST:$FIXTURE_PORT` through
|
||||
* ordinary `java.net.URL`, exactly as they would talk to a real server. A
|
||||
* [java.net.URLStreamHandlerFactory] registered once for the whole process intercepts every
|
||||
* `https://` connection to that host and answers from this object's in-memory event log instead of
|
||||
* opening a socket -- see BenchNetwork.kt. Everything above that (TranscriptSource, SessionScreen,
|
||||
* the fold, uniqueItems) never learns the difference.
|
||||
*/
|
||||
object BenchFixture {
|
||||
const val FIXTURE_HOST = "bench.fixture.invalid"
|
||||
const val FIXTURE_PORT = 1
|
||||
|
||||
/** How many of the fixture's events are the opening backlog; see bench-fixture/README.md. */
|
||||
private const val BACKLOG_COUNT = 3200
|
||||
|
||||
val settings = ServerSettings(FIXTURE_HOST, FIXTURE_PORT, "bench")
|
||||
|
||||
/** The session id every bench run opens; nothing else in this build ever mints one. */
|
||||
const val SESSION_ID = "bench-fixture-session"
|
||||
|
||||
/**
|
||||
* The whole transcript, seq order, growing as [pushLive] is called during the streaming phase.
|
||||
* Read by both the REST page handler and the SSE handler, so a page requested mid- stream and a
|
||||
* live frame agree on what has "already happened" -- the same thing a real server's own
|
||||
* transcript file guarantees.
|
||||
*/
|
||||
private val log = CopyOnWriteArrayList<Pair<String, SeqEvent>>()
|
||||
|
||||
/** The events not yet appended to [log] -- the streaming phase's own source. */
|
||||
private var streamTail: List<Pair<String, SeqEvent>> = emptyList()
|
||||
|
||||
private val images = mutableMapOf<String, ByteArray>()
|
||||
|
||||
@Volatile private var loaded = false
|
||||
|
||||
/**
|
||||
* Parses the bundled fixture once. Safe to call more than once; only the first does anything.
|
||||
*/
|
||||
@Synchronized
|
||||
fun ensureLoaded(context: Context) {
|
||||
if (loaded) return
|
||||
val lines =
|
||||
context.assets.open("transcript.jsonl").bufferedReader().readLines().filter {
|
||||
it.isNotBlank()
|
||||
}
|
||||
val parsed = lines.map { it to parseSeqEvent(it) }
|
||||
log.addAll(parsed.take(BACKLOG_COUNT))
|
||||
streamTail = parsed.drop(BACKLOG_COUNT)
|
||||
for (name in listOf("bench1.png", "bench2.png")) {
|
||||
images[name] = context.assets.open(name).readBytes()
|
||||
}
|
||||
loaded = true
|
||||
}
|
||||
|
||||
/** The events the streaming phase has left to send. */
|
||||
fun remainingStreamEvents(): Int = streamTail.size
|
||||
|
||||
/** Sends the next fixture event onto the live log, as a real SSE frame would arrive. */
|
||||
fun pushNextLiveEvent(): Boolean {
|
||||
val next = streamTail.firstOrNull() ?: return false
|
||||
streamTail = streamTail.drop(1)
|
||||
log.add(next)
|
||||
return true
|
||||
}
|
||||
|
||||
/** Undoes [pushNextLiveEvent] and reloads the opening backlog, for running the bench twice. */
|
||||
@Synchronized
|
||||
fun resetToBacklog(context: Context) {
|
||||
loaded = false
|
||||
log.clear()
|
||||
ensureLoaded(context)
|
||||
}
|
||||
|
||||
fun fileBytes(name: String): ByteArray? = images[name]
|
||||
|
||||
/**
|
||||
* Raw JSON lines with seq > [after], in order -- what an `/events?after=` connection replays.
|
||||
*/
|
||||
fun linesAfter(after: Long): List<String> =
|
||||
log.filter { it.second.seq > after }.map { it.first }
|
||||
|
||||
/**
|
||||
* One REST page: [fetchTranscript]'s `before`/`limit`/`after`, against the growing log. Ignores
|
||||
* `coalesce` -- the fixture's own deltas are already split the way a real reply streams, and
|
||||
* what the benchmark exercises is the fold and the paging, not the server's row-joining, which
|
||||
* client-core's own port tracks separately (CLIENT_CORE.md).
|
||||
*/
|
||||
fun page(before: Long?, limit: Int, after: Long?): List<String> {
|
||||
val upper = before ?: (log.lastOrNull()?.second?.seq?.plus(1) ?: 1L)
|
||||
val candidates = log.filter {
|
||||
it.second.seq < upper && (after == null || it.second.seq > after)
|
||||
}
|
||||
return candidates.takeLast(limit).map { it.first }
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,181 @@
|
||||
package com.example.aiapp
|
||||
|
||||
import java.io.ByteArrayInputStream
|
||||
import java.io.IOException
|
||||
import java.io.InputStream
|
||||
import java.io.PipedInputStream
|
||||
import java.io.PipedOutputStream
|
||||
import java.net.HttpURLConnection
|
||||
import java.net.URL
|
||||
import java.net.URLStreamHandler
|
||||
import java.net.URLStreamHandlerFactory
|
||||
import java.security.Principal
|
||||
import java.security.cert.Certificate
|
||||
import javax.net.ssl.HttpsURLConnection
|
||||
import javax.net.ssl.SSLPeerUnverifiedException
|
||||
import org.json.JSONArray
|
||||
|
||||
/**
|
||||
* Installs the process-wide interception [BenchFixture] needs. Idempotent and safe to call more
|
||||
* than once; the JDK only allows [URL.setURLStreamHandlerFactory] to be called successfully once
|
||||
* per process, and a second real call throws -- so this guards it rather than relying on every
|
||||
* caller to remember.
|
||||
*
|
||||
* Scoped to [BenchFixture.FIXTURE_HOST]: any other `https://` URL falls through to the platform's
|
||||
* ordinary handler, so this only ever changes behaviour for the one host the bench build invents.
|
||||
*/
|
||||
@Synchronized
|
||||
fun installFixtureNetworkOnce() {
|
||||
if (installed) return
|
||||
installed = true
|
||||
URL.setURLStreamHandlerFactory(
|
||||
URLStreamHandlerFactory { protocol ->
|
||||
if (protocol != "https") null
|
||||
else
|
||||
object : URLStreamHandler() {
|
||||
override fun openConnection(url: URL): HttpURLConnection =
|
||||
if (url.host == BenchFixture.FIXTURE_HOST) FixtureConnection(url)
|
||||
else
|
||||
// The bench build makes no other https call -- this factory is
|
||||
// installed only in FIXTURE_MODE (MainActivity) -- so there is
|
||||
// deliberately no delegate to a platform handler here: once a
|
||||
// URLStreamHandlerFactory is installed there is no supported way to
|
||||
// ask the JDK for its own default handler back, and re-entering this
|
||||
// same factory for the fallback would recurse forever rather than
|
||||
// reach one.
|
||||
throw java.io.IOException(
|
||||
"bench build's fixture network has no route to https host " +
|
||||
"${url.host} -- only ${BenchFixture.FIXTURE_HOST} is served"
|
||||
)
|
||||
}
|
||||
}
|
||||
)
|
||||
}
|
||||
|
||||
private var installed = false
|
||||
|
||||
/**
|
||||
* Answers one request against [BenchFixture] instead of opening a socket. Implements just enough of
|
||||
* [HttpsURLConnection] for [requestFromServer] and [Sse] to work unmodified: both only call
|
||||
* `connect`/`disconnect`, set a handful of request properties they never need answered, and read
|
||||
* `responseCode` and `inputStream`.
|
||||
*/
|
||||
private class FixtureConnection(url: URL) : HttpsURLConnection(url) {
|
||||
private var input: InputStream? = null
|
||||
private var writer: Thread? = null
|
||||
|
||||
override fun connect() {
|
||||
if (input != null) return
|
||||
input = route(url.path, url.query)
|
||||
}
|
||||
|
||||
override fun disconnect() {
|
||||
writer?.interrupt()
|
||||
try {
|
||||
input?.close()
|
||||
} catch (_: IOException) {}
|
||||
}
|
||||
|
||||
override fun usingProxy() = false
|
||||
|
||||
override fun getResponseCode(): Int {
|
||||
connect()
|
||||
return 200
|
||||
}
|
||||
|
||||
override fun getInputStream(): InputStream {
|
||||
connect()
|
||||
return input!!
|
||||
}
|
||||
|
||||
override fun getErrorStream(): InputStream? = null
|
||||
|
||||
// Nothing here reads any of these; implemented only because HttpsURLConnection declares them
|
||||
// abstract. A fixture never negotiates real TLS, so each says exactly that rather than
|
||||
// fabricating a plausible-looking certificate.
|
||||
override fun getCipherSuite() = "none (bench fixture, no TLS)"
|
||||
|
||||
override fun getLocalCertificates(): Array<Certificate>? = null
|
||||
|
||||
override fun getServerCertificates(): Array<Certificate> =
|
||||
throw SSLPeerUnverifiedException("bench fixture connection presents no certificate")
|
||||
|
||||
override fun getPeerPrincipal(): Principal =
|
||||
throw SSLPeerUnverifiedException("bench fixture connection presents no certificate")
|
||||
|
||||
override fun getLocalPrincipal(): Principal? = null
|
||||
|
||||
/**
|
||||
* [path] is `/sessions/{id}/...`; everything else this build's fixture is asked for is a bug.
|
||||
*/
|
||||
private fun route(path: String, query: String?): InputStream {
|
||||
val params =
|
||||
(query ?: "")
|
||||
.split("&")
|
||||
.filter { it.contains('=') }
|
||||
.associate {
|
||||
val (k, v) = it.split("=", limit = 2)
|
||||
k to java.net.URLDecoder.decode(v, "UTF-8")
|
||||
}
|
||||
return when {
|
||||
path.endsWith("/transcript") -> {
|
||||
val lines =
|
||||
BenchFixture.page(
|
||||
before = params["before"]?.toLongOrNull(),
|
||||
limit = params["limit"]?.toIntOrNull() ?: 80,
|
||||
after = params["after"]?.toLongOrNull(),
|
||||
)
|
||||
val body = JSONArray(lines.map { org.json.JSONObject(it) })
|
||||
ByteArrayInputStream(body.toString().toByteArray())
|
||||
}
|
||||
path.endsWith("/events") -> openEventsStream(params["after"]?.toLongOrNull() ?: 0L)
|
||||
path.contains("/files/") -> {
|
||||
val name = path.substringAfterLast("/files/")
|
||||
val bytes =
|
||||
BenchFixture.fileBytes(name)
|
||||
?: throw IOException("bench fixture has no file named $name")
|
||||
ByteArrayInputStream(bytes)
|
||||
}
|
||||
else -> throw IOException("bench fixture has no route for $path")
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* A live SSE body: [BenchFixture.linesAfter] replayed immediately, then polled every 50ms for
|
||||
* anything [BenchFixture.pushNextLiveEvent] has added since -- the same shape a real backend's
|
||||
* backlog-then-follow gives [Sse], just polled instead of woken, which is a fixture's business
|
||||
* rather than something worth a condition variable for.
|
||||
*/
|
||||
private fun openEventsStream(after: Long): InputStream {
|
||||
val pipeIn = PipedInputStream(1 shl 16)
|
||||
val pipeOut = PipedOutputStream(pipeIn)
|
||||
var sent = after
|
||||
val thread = Thread {
|
||||
try {
|
||||
while (!Thread.currentThread().isInterrupted) {
|
||||
val fresh = BenchFixture.linesAfter(sent)
|
||||
for (line in fresh) {
|
||||
pipeOut.write("data: $line\n\n".toByteArray())
|
||||
pipeOut.flush()
|
||||
sent = org.json.JSONObject(line).getLong("seq")
|
||||
}
|
||||
Thread.sleep(50)
|
||||
}
|
||||
} catch (_: InterruptedException) {
|
||||
// disconnect() -- the ordinary way this ends.
|
||||
} catch (_: IOException) {
|
||||
// The reader side (Sse) closed its end.
|
||||
} finally {
|
||||
try {
|
||||
pipeOut.close()
|
||||
} catch (_: IOException) {}
|
||||
}
|
||||
}
|
||||
.also {
|
||||
it.isDaemon = true
|
||||
it.start()
|
||||
}
|
||||
writer = thread
|
||||
return pipeIn
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,325 @@
|
||||
package com.example.aiapp
|
||||
|
||||
import android.content.Context
|
||||
import android.os.BatteryManager
|
||||
import android.os.Process
|
||||
import android.view.View
|
||||
import androidx.compose.foundation.gestures.FlingBehavior
|
||||
import androidx.compose.foundation.lazy.LazyListState
|
||||
import androidx.compose.ui.focus.FocusRequester
|
||||
import androidx.core.view.ViewCompat
|
||||
import androidx.core.view.WindowInsetsCompat
|
||||
import androidx.core.view.WindowInsetsControllerCompat
|
||||
import java.io.File
|
||||
import kotlinx.coroutines.CoroutineScope
|
||||
import kotlinx.coroutines.delay
|
||||
import kotlinx.coroutines.isActive
|
||||
import kotlinx.coroutines.launch
|
||||
|
||||
/**
|
||||
* P0's scripted benchmark, run in-process instead of by a shell script: the phone has no usable
|
||||
* system tracing (this-machine-android's skill) and no agent can drive it, so the same scroll loop
|
||||
* and streaming phase `transcript-bench.sh`/`stream-bench.sh` drive over `ui-trace` are reproduced
|
||||
* here against [LazyListState] and [BenchFixture] directly. Only reachable from the `bench` build
|
||||
* (see [SessionSettingsDialog]'s `onRunBenchmark`), but compiled into every build for the reason
|
||||
* [BenchFixture]'s doc comment gives.
|
||||
*
|
||||
* **v2 (2026-09-06)**, asked for by Iris because the v1 fling was too gentle to stress-test the
|
||||
* scroll path and said nothing about typing or the keyboard. Four phases now, each a slice of the
|
||||
* same [FrameStats] recording ([FrameStats.markPhase]/[FrameStats.phaseLines] -- one recorder, not
|
||||
* two): **fling** (real `FlingBehavior`, not `animateScrollBy`), **stream** (unchanged from v1),
|
||||
* **type** (600 fixed characters into the real composer `TextFieldValue`, then deleted), and
|
||||
* **keyboard** (five show/hide cycles). The exact constants below are also written into
|
||||
* `docs/RUST.md`'s P0 box, "Benchmark v2 (2026-09-06)", so the iris half implements the identical
|
||||
* spec -- changing a number here without updating that box makes the two apps measure different
|
||||
* things while looking like the same benchmark.
|
||||
*/
|
||||
object BenchRun {
|
||||
/** transcript-bench.sh's default: 6 cycles of 4 swipes each, kept as the pre-v2 comparison. */
|
||||
private const val CYCLES = 6
|
||||
private const val SWIPE_PX = 900f
|
||||
private const val SWIPE_MS = 200
|
||||
private const val SWIPE_PAUSE_MS = 500L
|
||||
|
||||
/**
|
||||
* Fling phase (v2): a real fling through the list's own [FlingBehavior], not `animateScrollBy`
|
||||
* -- Iris's ask was that it "travel way faster" than the old tween-based swipe, and a tween can
|
||||
* never exceed the distance it is told to cover in the time it is given, while a real fling
|
||||
* decays from an initial velocity the way a finger flick does. 12,000 px/s is roughly a hard,
|
||||
* fast flick on a ~420dp/in device (about 30 dp/ms-equivalent initial speed); chosen well above
|
||||
* the ~4,500 px/s a moderate `animateScrollBy` swipe implies, so this phase exercises the fast
|
||||
* end of what the platform's fling decay produces rather than the gentle one v1 measured.
|
||||
*/
|
||||
private const val FLING_VELOCITY_PX_S = 12_000f
|
||||
|
||||
private const val FLING_COUNT = 8
|
||||
private const val FLING_SETTLE_CAP_MS = 3_000L
|
||||
private const val FLING_PAUSE_MS = 300L
|
||||
|
||||
/** stream-bench.sh's shape: a real reply arrives as many small deltas, not one big write. */
|
||||
private const val STREAM_EVENTS_PER_SEC = 20
|
||||
private const val STREAM_SECONDS = 20
|
||||
|
||||
/**
|
||||
* Type phase (v2): sentences built from long, multisyllabic words so the composer actually
|
||||
* wraps across lines rather than fitting one, and long enough (600 chars) that the composer's
|
||||
* own height grows over several frames, pushing the transcript above it upward the same way a
|
||||
* real long message does. Exactly this string is also in `docs/RUST.md`'s P0 box so the iris
|
||||
* half types the identical content.
|
||||
*/
|
||||
const val TYPE_TEXT =
|
||||
"Benchmarking this transcript screen requires unusually long, multisyllabic words so " +
|
||||
"wrapping and reflow are properly exercised: internationalization, " +
|
||||
"counterproductiveness, disproportionately, incomprehensibility, " +
|
||||
"deinstitutionalization, uncharacteristically, overenthusiastically, " +
|
||||
"misunderstanding, straightforwardness, telecommunications, and interdisciplinary " +
|
||||
"collaboration all push a narrow composer field to wrap across several lines while " +
|
||||
"the transcript above is pushed upward by the growing keyboard-adjacent box, which " +
|
||||
"is exactly what a real reader typing a long message sees happening now!!!"
|
||||
|
||||
private const val TYPE_CHAR_DELAY_MS = 50L
|
||||
|
||||
/**
|
||||
* Keyboard phase (v2): five show/hide cycles, a second apart, is enough to see whether the
|
||||
* transition is ever actually observed rather than being a one-off fluke either way.
|
||||
*/
|
||||
private const val KEYBOARD_CYCLES = 5
|
||||
private const val KEYBOARD_SHOW_WAIT_MS = 1_000L
|
||||
private const val KEYBOARD_HIDE_WAIT_MS = 1_000L
|
||||
|
||||
/**
|
||||
* Scrolls, flings, streams, types and toggles the keyboard, then returns the extra report lines
|
||||
* P0 asked for (per-phase travel/typing/keyboard counts, plus CPU time, peak RSS, battery
|
||||
* current) -- [FrameStats] and [DebugStats] are reset first, exactly as `copyRenderReport`
|
||||
* resets them, so the two accountings cover the same stretch of work.
|
||||
*/
|
||||
suspend fun run(
|
||||
context: Context,
|
||||
scope: CoroutineScope,
|
||||
listState: LazyListState,
|
||||
flingBehavior: FlingBehavior,
|
||||
composerFocus: FocusRequester,
|
||||
setComposerText: (String) -> Unit,
|
||||
view: View,
|
||||
): List<String> {
|
||||
FrameStats.reset()
|
||||
DebugStats.reset()
|
||||
val cpuStartMs = Process.getElapsedCpuTime()
|
||||
|
||||
val battery = BatterySampler(context)
|
||||
// Launched in the caller's scope rather than a fresh coroutineScope{} here, which would
|
||||
// suspend this function until the sampler job ended -- and it only ends when told to.
|
||||
val samplerJob = scope.launch {
|
||||
while (isActive) {
|
||||
battery.sample()
|
||||
delay(1000)
|
||||
}
|
||||
}
|
||||
|
||||
val travel = runFlingPhase(listState, flingBehavior)
|
||||
val sent = runStreamPhase()
|
||||
runTypePhase(listState, composerFocus, setComposerText, view)
|
||||
val keyboard = runKeyboardPhase(context, view)
|
||||
|
||||
samplerJob.cancel()
|
||||
val cpuMs = Process.getElapsedCpuTime() - cpuStartMs
|
||||
val rssLine = peakRssLine()
|
||||
val batteryLine = battery.finish()
|
||||
|
||||
return listOf(
|
||||
" fling: $FLING_COUNT flings out + $FLING_COUNT back at" +
|
||||
" ${FLING_VELOCITY_PX_S.toInt()}px/s, travel $travel",
|
||||
" scroll: $CYCLES cycles (${CYCLES * 4} swipes, legacy tween), " +
|
||||
"streamed $sent/${STREAM_EVENTS_PER_SEC * STREAM_SECONDS} fixture events",
|
||||
" type: ${TYPE_TEXT.length} characters inserted then deleted, one per" +
|
||||
" ${TYPE_CHAR_DELAY_MS}ms",
|
||||
keyboard,
|
||||
" process CPU time over this run: ${cpuMs}ms",
|
||||
rssLine,
|
||||
batteryLine,
|
||||
)
|
||||
}
|
||||
|
||||
/**
|
||||
* Phase 1: starting pinned at the newest end, [FLING_COUNT] flings away from it (toward older
|
||||
* messages) through the list's real fling path, then [FLING_COUNT] back. Positive velocity here
|
||||
* matches this list's existing scroll-offset convention (`TranscriptList`'s `reverseLayout`
|
||||
* pins index 0 -- the newest item -- at the bottom; a positive scroll offset moves the viewport
|
||||
* toward higher indices, i.e. away from the newest end and toward older content), the same sign
|
||||
* the pre-v2 swipe loop below already used for its first two swipes.
|
||||
*/
|
||||
private suspend fun runFlingPhase(
|
||||
listState: LazyListState,
|
||||
flingBehavior: FlingBehavior,
|
||||
): String {
|
||||
FrameStats.markPhase("fling")
|
||||
listState.scrollToItem(0)
|
||||
val start = position(listState)
|
||||
repeat(FLING_COUNT) {
|
||||
listState.scroll { with(flingBehavior) { performFling(FLING_VELOCITY_PX_S) } }
|
||||
waitForSettle(listState)
|
||||
delay(FLING_PAUSE_MS)
|
||||
}
|
||||
val outward = position(listState)
|
||||
repeat(FLING_COUNT) {
|
||||
listState.scroll { with(flingBehavior) { performFling(-FLING_VELOCITY_PX_S) } }
|
||||
waitForSettle(listState)
|
||||
delay(FLING_PAUSE_MS)
|
||||
}
|
||||
val back = position(listState)
|
||||
return "start=$start outward=$outward end=$back"
|
||||
}
|
||||
|
||||
private fun position(listState: LazyListState) =
|
||||
"idx=${listState.firstVisibleItemIndex}/off=${listState.firstVisibleItemScrollOffset}px"
|
||||
|
||||
/** Belt-and-suspenders on top of `performFling` already suspending until its own decay ends. */
|
||||
private suspend fun waitForSettle(listState: LazyListState) {
|
||||
val startedAt = System.currentTimeMillis()
|
||||
while (
|
||||
listState.isScrollInProgress &&
|
||||
System.currentTimeMillis() - startedAt < FLING_SETTLE_CAP_MS
|
||||
) {
|
||||
delay(16)
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Phase 2 (unchanged from v1): pinned to the newest end before streaming starts, the way
|
||||
* stream-bench.sh's "Jump to latest" tap is -- a reply streamed into a list parked further back
|
||||
* arrives off-screen and the report would show nothing happened.
|
||||
*/
|
||||
private suspend fun runStreamPhase(): Int {
|
||||
FrameStats.markPhase("stream")
|
||||
var sent = 0
|
||||
val total = STREAM_EVENTS_PER_SEC * STREAM_SECONDS
|
||||
while (sent < total && BenchFixture.remainingStreamEvents() > 0) {
|
||||
BenchFixture.pushNextLiveEvent()
|
||||
sent++
|
||||
delay(1000L / STREAM_EVENTS_PER_SEC)
|
||||
}
|
||||
// Lets the last few deltas land and draw before the next phase starts.
|
||||
delay(300)
|
||||
return sent
|
||||
}
|
||||
|
||||
/**
|
||||
* Phase 3: focuses the real composer, shows the keyboard if the platform allows it, then types
|
||||
* [TYPE_TEXT] one character at a time through the same `TextFieldValue` state a real keystroke
|
||||
* updates, and deletes it the same way -- this is what exercises wrapping and the transcript
|
||||
* being pushed upward, not a single big write.
|
||||
*/
|
||||
private suspend fun runTypePhase(
|
||||
listState: LazyListState,
|
||||
composerFocus: FocusRequester,
|
||||
setComposerText: (String) -> Unit,
|
||||
view: View,
|
||||
) {
|
||||
FrameStats.markPhase("type")
|
||||
listState.scrollToItem(0)
|
||||
composerFocus.requestFocus()
|
||||
showIme(view.context, view)
|
||||
// Lets focus and the keyboard's opening animation land before typing starts, so the frames
|
||||
// this phase records are the wrap/reflow it is measuring, not the keyboard opening.
|
||||
delay(300)
|
||||
var typed = ""
|
||||
for (ch in TYPE_TEXT) {
|
||||
typed += ch
|
||||
setComposerText(typed)
|
||||
delay(TYPE_CHAR_DELAY_MS)
|
||||
}
|
||||
delay(200)
|
||||
while (typed.isNotEmpty()) {
|
||||
typed = typed.dropLast(1)
|
||||
setComposerText(typed)
|
||||
delay(TYPE_CHAR_DELAY_MS)
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Phase 4: [KEYBOARD_CYCLES] show/hide cycles through the same [WindowInsetsControllerCompat]
|
||||
* path a real IME toggle goes through, reporting how many of each were actually confirmed by
|
||||
* [android.view.WindowInsets.isVisible] rather than assumed from having asked -- UI_RULES:
|
||||
* never present an inferred value as a measured one. If the platform never shows it even once,
|
||||
* this says so in words rather than reporting a phase with no keyboard in it.
|
||||
*/
|
||||
private suspend fun runKeyboardPhase(context: Context, view: View): String {
|
||||
FrameStats.markPhase("keyboard")
|
||||
var shown = 0
|
||||
var hidden = 0
|
||||
repeat(KEYBOARD_CYCLES) {
|
||||
showIme(context, view)
|
||||
delay(KEYBOARD_SHOW_WAIT_MS)
|
||||
if (imeVisible(view)) shown++
|
||||
hideIme(context, view)
|
||||
delay(KEYBOARD_HIDE_WAIT_MS)
|
||||
if (!imeVisible(view)) hidden++
|
||||
}
|
||||
return if (shown == 0) {
|
||||
" keyboard: could not be shown ($KEYBOARD_CYCLES attempts, 0 confirmed visible)"
|
||||
} else {
|
||||
" keyboard: shown $shown/$KEYBOARD_CYCLES, hidden $hidden/$KEYBOARD_CYCLES" +
|
||||
" (confirmed via isImeVisible)"
|
||||
}
|
||||
}
|
||||
|
||||
private fun controller(context: Context, view: View): WindowInsetsControllerCompat? {
|
||||
val window = context.activity()?.window ?: return null
|
||||
return WindowInsetsControllerCompat(window, view)
|
||||
}
|
||||
|
||||
private fun showIme(context: Context, view: View) {
|
||||
controller(context, view)?.show(WindowInsetsCompat.Type.ime())
|
||||
}
|
||||
|
||||
private fun hideIme(context: Context, view: View) {
|
||||
controller(context, view)?.hide(WindowInsetsCompat.Type.ime())
|
||||
}
|
||||
|
||||
private fun imeVisible(view: View): Boolean =
|
||||
ViewCompat.getRootWindowInsets(view)?.isVisible(WindowInsetsCompat.Type.ime()) ?: false
|
||||
|
||||
/** VmHWM from /proc/self/status: the process's high-water mark, in kB, since it started. */
|
||||
private fun peakRssLine(): String {
|
||||
val kb =
|
||||
try {
|
||||
File("/proc/self/status")
|
||||
.readLines()
|
||||
.firstOrNull { it.startsWith("VmHWM:") }
|
||||
?.trim()
|
||||
?.removePrefix("VmHWM:")
|
||||
?.trim()
|
||||
?.removeSuffix("kB")
|
||||
?.trim()
|
||||
?.toLongOrNull()
|
||||
} catch (_: Exception) {
|
||||
null
|
||||
}
|
||||
return " peak RSS: " +
|
||||
(kb?.let { "${it}kB" } ?: "unavailable (/proc/self/status unreadable)")
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Samples [BatteryManager.BATTERY_PROPERTY_CURRENT_NOW] (microamps) once a second for the length of
|
||||
* a run. The property returns `Int.MIN_VALUE` on hardware that does not support it -- most
|
||||
* emulators -- and that is reported as "unavailable" rather than folded into an average with the
|
||||
* real samples, which would silently understate every number after it. See UI_RULES: never present
|
||||
* an inferred value as a measured one.
|
||||
*/
|
||||
private class BatterySampler(context: Context) {
|
||||
private val manager = context.getSystemService(BatteryManager::class.java)
|
||||
private val samples = mutableListOf<Int>()
|
||||
|
||||
fun sample() {
|
||||
val value = manager?.getIntProperty(BatteryManager.BATTERY_PROPERTY_CURRENT_NOW)
|
||||
if (value != null && value != Int.MIN_VALUE) samples.add(value)
|
||||
}
|
||||
|
||||
fun finish(): String {
|
||||
if (samples.isEmpty()) return " battery current: unavailable on this device"
|
||||
val meanUa = samples.sum() / samples.size
|
||||
return " battery current: mean ${meanUa}µA over ${samples.size} samples" +
|
||||
" (min ${samples.min()}, max ${samples.max()})"
|
||||
}
|
||||
}
|
||||
@@ -127,6 +127,20 @@ fun debugReport(
|
||||
frames: List<String>,
|
||||
accounting: List<String>,
|
||||
crash: String?,
|
||||
/**
|
||||
* P0's benchmark-only measurements (process CPU time, peak RSS, battery current) -- empty on
|
||||
* every path but [BenchRun.runP0Benchmark], which is the only caller that has them. A section
|
||||
* heading only appears when there is something to put under it, so an ordinary copy from the
|
||||
* render-report button reads exactly as it did before this existed.
|
||||
*/
|
||||
extra: List<String> = emptyList(),
|
||||
/**
|
||||
* Bench v2's per-phase frame accounting ([FrameStats.phaseLines]) --
|
||||
* fling/stream/type/keyboard, each a slice of the same frames the whole-run sections below
|
||||
* still cover in full. Empty on every path but the scripted bench run, same reasoning as
|
||||
* [extra].
|
||||
*/
|
||||
phaseFrames: List<String> = emptyList(),
|
||||
): String = buildString {
|
||||
appendLine("ai-app render report")
|
||||
appendLine(device)
|
||||
@@ -141,6 +155,11 @@ fun debugReport(
|
||||
appendLine("transcript:")
|
||||
transcript.forEach { appendLine(it) }
|
||||
appendLine()
|
||||
if (phaseFrames.isNotEmpty()) {
|
||||
appendLine("per phase:")
|
||||
phaseFrames.forEach { appendLine(it) }
|
||||
appendLine()
|
||||
}
|
||||
appendLine("frames:")
|
||||
frames.forEach { appendLine(it) }
|
||||
appendLine()
|
||||
@@ -152,6 +171,11 @@ fun debugReport(
|
||||
appendLine("work since this was last copied:")
|
||||
val work = DebugStats.lines()
|
||||
if (work.isEmpty()) appendLine(" nothing recorded") else work.forEach { appendLine(it) }
|
||||
if (extra.isNotEmpty()) {
|
||||
appendLine()
|
||||
appendLine("bench:")
|
||||
extra.forEach { appendLine(it) }
|
||||
}
|
||||
}
|
||||
|
||||
/** Puts [text] on the clipboard under [label], which is what the system offers as its name. */
|
||||
|
||||
@@ -12,6 +12,10 @@ import androidx.compose.ui.Alignment
|
||||
import androidx.compose.ui.Modifier
|
||||
import androidx.compose.ui.graphics.Color
|
||||
import androidx.compose.ui.unit.dp
|
||||
import java.time.Instant
|
||||
import java.time.ZoneId
|
||||
import java.time.format.DateTimeFormatter
|
||||
import java.time.format.FormatStyle
|
||||
|
||||
/**
|
||||
* A line across the transcript saying what left the session's context.
|
||||
@@ -47,3 +51,40 @@ fun TranscriptDivider(text: String, color: Color, modifier: Modifier = Modifier)
|
||||
fun ClearedRow(modifier: Modifier = Modifier) {
|
||||
TranscriptDivider("Context cleared", clearedColor, modifier)
|
||||
}
|
||||
|
||||
/**
|
||||
* The mark running out of quota leaves.
|
||||
*
|
||||
* The same red the usage bar takes when a window is spent, because it is the same fact in a second
|
||||
* place: colour by consequence, so "there is nothing left to spend" is learned once.
|
||||
*
|
||||
* A time rather than a countdown. The row is folded once and never re-measured, so a span would go
|
||||
* stale on screen the moment it was drawn; and this is when the *account* said it would reset,
|
||||
* which is not a promise about when the session picks back up. A limit the session was told no
|
||||
* reset time for says nothing about one -- that state has its own words rather than a plausible
|
||||
* number.
|
||||
*/
|
||||
@Composable
|
||||
fun LimitRow(item: TranscriptItem.LimitNote, modifier: Modifier = Modifier) {
|
||||
TranscriptDivider(limitSummary(item.resetsAt, ZoneId.systemDefault()), overLimitColor, modifier)
|
||||
}
|
||||
|
||||
/**
|
||||
* What the row says. Split out so the wording is testable without a screen, since the two states it
|
||||
* has to keep apart -- a reset time that arrived and one that never did -- are exactly the pair
|
||||
* that reads the same when it goes wrong.
|
||||
*
|
||||
* [zone] is a parameter rather than read here so a test says the same thing wherever it runs.
|
||||
*/
|
||||
fun limitSummary(resetsAt: Double?, zone: ZoneId): String {
|
||||
val at = resetsAt?.let {
|
||||
try {
|
||||
DateTimeFormatter.ofLocalizedTime(FormatStyle.SHORT)
|
||||
.withZone(zone)
|
||||
.format(Instant.ofEpochSecond(it.toLong()))
|
||||
} catch (_: Exception) {
|
||||
null
|
||||
}
|
||||
}
|
||||
return if (at == null) "Usage limit reached" else "Usage limit reached • resets $at"
|
||||
}
|
||||
@@ -14,7 +14,7 @@ private const val RESET_EVENT = "reset"
|
||||
* mean. [close] from any thread ends it, and the caller owns reconnecting -- with the last seq it
|
||||
* saw as the new cursor.
|
||||
*/
|
||||
class EventStream(settings: ServerSettings, private val sessionId: String) {
|
||||
class EventStream(settings: ServerSettings, private val address: TranscriptAddress) {
|
||||
private val stream = Sse(settings)
|
||||
|
||||
fun close() = stream.close()
|
||||
@@ -35,7 +35,7 @@ class EventStream(settings: ServerSettings, private val sessionId: String) {
|
||||
// one and the screen folds the other, and they have to be the same line.
|
||||
onEvent: (raw: String, event: SeqEvent) -> Unit,
|
||||
) {
|
||||
stream.run("/sessions/$sessionId/events?after=$after", onOpen) { name, data ->
|
||||
stream.run("/${address.urlPath}/events?after=$after", onOpen) { name, data ->
|
||||
// A named frame carries no payload and a data frame has no name.
|
||||
if (name == RESET_EVENT) onReset()
|
||||
else if (data.isNotEmpty()) onEvent(data, parseSeqEvent(data))
|
||||
|
||||
@@ -157,6 +157,18 @@ sealed class SessionEvent {
|
||||
*/
|
||||
data object Cleared : SessionEvent()
|
||||
|
||||
/**
|
||||
* The session stopped because its account's usage limit was reached.
|
||||
*
|
||||
* Its own event rather than an [Error] carrying the CLI's sentence, because it is a state
|
||||
* rather than something that went wrong -- and because the raw sentence is `Claude AI usage
|
||||
* limit reached|1788546972`, which is not readable by the person it is shown to.
|
||||
*
|
||||
* [resetsAt] is epoch seconds and null where the session was told nothing. Only the server acts
|
||||
* on it; what this draws it as is a time, not a countdown, because nothing here re-measures it.
|
||||
*/
|
||||
data class LimitReached(val resetsAt: Double?) : SessionEvent()
|
||||
|
||||
data class Error(val message: String) : SessionEvent()
|
||||
|
||||
/**
|
||||
@@ -261,6 +273,10 @@ fun parseSeqEvent(json: String): SeqEvent {
|
||||
trigger = body.optString("trigger").ifEmpty { null },
|
||||
)
|
||||
"cleared" -> SessionEvent.Cleared
|
||||
"limitReached" ->
|
||||
SessionEvent.LimitReached(
|
||||
if (body.has("resetsAt")) body.getDouble("resetsAt") else null
|
||||
)
|
||||
"error" -> SessionEvent.Error(body.getString("message"))
|
||||
else -> SessionEvent.Unknown(type)
|
||||
}
|
||||
|
||||
@@ -42,6 +42,21 @@ object FrameStats {
|
||||
private val gpu = ArrayList<Long>()
|
||||
private var since = System.currentTimeMillis()
|
||||
|
||||
/**
|
||||
* Where a named phase of a scripted run (bench v2's fling/stream/type/keyboard) started, as an
|
||||
* index into [total] and a wall-clock time -- not a second recorder, just a mark on this one,
|
||||
* so a phase's frames are the same [FrameMetrics] the whole-run report already has, sliced.
|
||||
*/
|
||||
private data class PhaseMark(val name: String, val startIndex: Int, val startMs: Long)
|
||||
|
||||
private val phaseMarks = ArrayList<PhaseMark>()
|
||||
|
||||
/** Call at the start of each named phase of a scripted run; see [BenchRun]. */
|
||||
@Synchronized
|
||||
fun markPhase(name: String) {
|
||||
phaseMarks += PhaseMark(name, total.size, System.currentTimeMillis())
|
||||
}
|
||||
|
||||
@Synchronized
|
||||
fun add(metrics: FrameMetrics) {
|
||||
// The first frame after a window opens includes inflating it and is nobody's scroll.
|
||||
@@ -69,6 +84,7 @@ object FrameStats {
|
||||
listOf(total, waited, input, animation, layout, draw, sync, issue, swap, gpu).forEach {
|
||||
it.clear()
|
||||
}
|
||||
phaseMarks.clear()
|
||||
since = System.currentTimeMillis()
|
||||
}
|
||||
|
||||
@@ -95,6 +111,38 @@ object FrameStats {
|
||||
) + if (gpu.isEmpty()) emptyList() else listOf(phase("gpu ", gpu))
|
||||
}
|
||||
|
||||
/**
|
||||
* One block per [markPhase] call: how many frames landed between that mark and the next (or the
|
||||
* end of the run, for the last one), how many were late, the total/p50/p90/p99, the worst
|
||||
* single frame, and how long the phase actually ran. Marks with no frames between them (a phase
|
||||
* that finished before a frame was drawn) still get a line rather than being silently dropped
|
||||
* -- UI_RULES' "say what you don't know" applies to a phase as much as to a single number.
|
||||
*/
|
||||
@Synchronized
|
||||
fun phaseLines(refreshHz: Float): List<String> {
|
||||
if (phaseMarks.isEmpty()) return emptyList()
|
||||
val budget = if (refreshHz > 0) 1000.0 / refreshHz else 16.7
|
||||
val lines = ArrayList<String>()
|
||||
phaseMarks.forEachIndexed { i, mark ->
|
||||
val endIndex = if (i + 1 < phaseMarks.size) phaseMarks[i + 1].startIndex else total.size
|
||||
val endMs =
|
||||
if (i + 1 < phaseMarks.size) phaseMarks[i + 1].startMs
|
||||
else System.currentTimeMillis()
|
||||
val samples = total.subList(mark.startIndex, endIndex)
|
||||
val seconds = (endMs - mark.startMs) / 1000.0
|
||||
lines += " ${mark.name}: ${samples.size} frames over ${"%.1f".format(seconds)}s"
|
||||
if (samples.isEmpty()) {
|
||||
lines += " no frames recorded in this phase"
|
||||
} else {
|
||||
val late = samples.count { it / 1_000_000.0 > budget }
|
||||
lines += " late: $late (${percent(late, samples.size)})"
|
||||
lines += " " + phase("total ", samples)
|
||||
lines += " worst ${"%.1fms".format(samples.max() / 1_000_000.0)}"
|
||||
}
|
||||
}
|
||||
return lines
|
||||
}
|
||||
|
||||
/** How long the frames recorded here spent in their draw phase, and how many there were. */
|
||||
@Synchronized fun drawPhase(): Pair<Long, Int> = draw.sum() to draw.size
|
||||
|
||||
|
||||
@@ -66,6 +66,35 @@ class MainActivity : ComponentActivity() {
|
||||
// Transparent status bar on every version; the Surface below paints through underneath it
|
||||
// and content insets itself. Same reasoning as dev-updater's MainActivity.
|
||||
enableEdgeToEdge()
|
||||
|
||||
// The `bench` build's entire purpose (P0, docs/RUST.md): open straight onto the session
|
||||
// screen against BenchFixture's in-process fake backend, with no enrollment, no network
|
||||
// permission, and no notification prompt -- none of them mean anything with no server and
|
||||
// no real device to notify. See BenchFixture.kt and BenchNetwork.kt for how a screen built
|
||||
// to talk to a real backend is made to talk to this instead. Still needs the same
|
||||
// status/navigation-bar padding the ordinary flow below applies: edge-to-edge is the
|
||||
// platform's own default from Android 15 on this app's targetSdk, with or without the call
|
||||
// above, so skipping the padding here put the header's own buttons under the status bar --
|
||||
// there to look at, but not there for `ui-trace`'s tap-by-label to land on.
|
||||
if (BuildConfig.FIXTURE_MODE) {
|
||||
installFixtureNetworkOnce()
|
||||
BenchFixture.ensureLoaded(this)
|
||||
setContent {
|
||||
MaterialTheme(colorScheme = AiAppColors) {
|
||||
Surface(modifier = Modifier.fillMaxSize()) {
|
||||
Box(Modifier.fillMaxSize().statusBarsPadding().navigationBarsPadding()) {
|
||||
SessionScreen(
|
||||
settings = BenchFixture.settings,
|
||||
summary = benchSessionSummary(),
|
||||
onBack = { finish() },
|
||||
onFiles = {},
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
return
|
||||
}
|
||||
// Dark status-bar icons only over a light background, decided from the scheme rather than
|
||||
// fixed. It was hardcoded to `true`, which was right against the default light surface and
|
||||
// became unreadable the moment the app wore Catppuccin Mocha.
|
||||
@@ -147,6 +176,33 @@ class MainActivity : ComponentActivity() {
|
||||
}
|
||||
}
|
||||
|
||||
/** The one session the `bench` build ever shows -- BenchFixture's session id, nothing else. */
|
||||
private fun benchSessionSummary() =
|
||||
SessionSummary(
|
||||
id = BenchFixture.SESSION_ID,
|
||||
setup = "bench",
|
||||
setupName = "bench",
|
||||
provider = "bench",
|
||||
title = "P0 benchmark",
|
||||
model = null,
|
||||
keepsOwnTranscript = false,
|
||||
permissionMode = null,
|
||||
effort = null,
|
||||
takesEffort = false,
|
||||
imported = false,
|
||||
notify = false,
|
||||
autoResume = false,
|
||||
autoResumeMessage = "",
|
||||
resumeAt = null,
|
||||
cwd = null,
|
||||
contextTokens = null,
|
||||
maxImageEdge = null,
|
||||
usageProvider = null,
|
||||
status = "idle",
|
||||
lastActivity = 0.0,
|
||||
subagents = 0,
|
||||
)
|
||||
|
||||
// launchMode="singleTop": an enrollment scan, or a notification tapped while the app is open,
|
||||
// lands here rather than in a second activity instance.
|
||||
override fun onNewIntent(intent: Intent) {
|
||||
|
||||
@@ -48,6 +48,8 @@ fun MainScreen(
|
||||
/** What another app shared in and no session has taken yet; see [ShareRequest]. */
|
||||
share: ShareRequest? = null,
|
||||
onOpen: (SessionSummary) -> Unit,
|
||||
/** Opens one session's subagent, from the expander under its card. */
|
||||
onOpenSubagent: (SessionSummary, SubagentSummary) -> Unit,
|
||||
onSpawn: () -> Unit,
|
||||
onImported: (SessionSummary) -> Unit,
|
||||
onSettings: () -> Unit,
|
||||
@@ -139,6 +141,7 @@ fun MainScreen(
|
||||
settings = settings,
|
||||
reloadToken = token,
|
||||
onOpen = onOpen,
|
||||
onOpenSubagent = onOpenSubagent,
|
||||
onSpawn = onSpawn,
|
||||
)
|
||||
MainTab.Import ->
|
||||
|
||||
@@ -1,7 +1,9 @@
|
||||
package com.example.aiapp
|
||||
|
||||
import androidx.compose.foundation.ExperimentalFoundationApi
|
||||
import androidx.compose.foundation.clickable
|
||||
import androidx.compose.foundation.combinedClickable
|
||||
import androidx.compose.foundation.layout.Arrangement
|
||||
import androidx.compose.foundation.layout.Box
|
||||
import androidx.compose.foundation.layout.Column
|
||||
import androidx.compose.foundation.layout.Row
|
||||
@@ -9,6 +11,7 @@ import androidx.compose.foundation.layout.Spacer
|
||||
import androidx.compose.foundation.layout.fillMaxSize
|
||||
import androidx.compose.foundation.layout.fillMaxWidth
|
||||
import androidx.compose.foundation.layout.height
|
||||
import androidx.compose.foundation.layout.heightIn
|
||||
import androidx.compose.foundation.layout.padding
|
||||
import androidx.compose.foundation.layout.width
|
||||
import androidx.compose.foundation.lazy.LazyColumn
|
||||
@@ -17,6 +20,7 @@ import androidx.compose.material3.Card
|
||||
import androidx.compose.material3.CircularProgressIndicator
|
||||
import androidx.compose.material3.FloatingActionButton
|
||||
import androidx.compose.material3.MaterialTheme
|
||||
import androidx.compose.material3.OutlinedCard
|
||||
import androidx.compose.material3.Switch
|
||||
import androidx.compose.material3.Text
|
||||
import androidx.compose.material3.TextButton
|
||||
@@ -30,6 +34,8 @@ import androidx.compose.runtime.setValue
|
||||
import androidx.compose.ui.Alignment
|
||||
import androidx.compose.ui.Modifier
|
||||
import androidx.compose.ui.platform.LocalContext
|
||||
import androidx.compose.ui.semantics.contentDescription
|
||||
import androidx.compose.ui.semantics.semantics
|
||||
import androidx.compose.ui.unit.dp
|
||||
import kotlinx.coroutines.Dispatchers
|
||||
import kotlinx.coroutines.launch
|
||||
@@ -47,12 +53,40 @@ fun SessionListScreen(
|
||||
settings: ServerSettings,
|
||||
reloadToken: Int,
|
||||
onOpen: (SessionSummary) -> Unit,
|
||||
/** Opens one session's subagent, from the expander under its card. */
|
||||
onOpenSubagent: (SessionSummary, SubagentSummary) -> Unit,
|
||||
onSpawn: () -> Unit,
|
||||
) {
|
||||
val scope = rememberCoroutineScope()
|
||||
var listState by remember { mutableStateOf<LoadState<List<SessionSummary>>>(LoadState.Loading) }
|
||||
var confirmingDelete by remember { mutableStateOf<SessionSummary?>(null) }
|
||||
|
||||
// Which session cards are expanded to show their subagents, and what each expansion fetched.
|
||||
// Ids rather than a flag on the row for the same reason `deleting` is: the rows are rebuilt
|
||||
// from
|
||||
// whatever the server last said, and this belongs to the reader's own choice, which survives a
|
||||
// refresh.
|
||||
var expandedSessions by remember { mutableStateOf(setOf<String>()) }
|
||||
var subagentLoads by remember {
|
||||
mutableStateOf(mapOf<String, LoadState<List<SubagentSummary>>>())
|
||||
}
|
||||
|
||||
fun loadSubagents(sessionId: String) {
|
||||
subagentLoads = subagentLoads + (sessionId to LoadState.Loading)
|
||||
scope.launch {
|
||||
subagentLoads =
|
||||
subagentLoads +
|
||||
(sessionId to
|
||||
try {
|
||||
LoadState.Loaded(
|
||||
withContext(Dispatchers.IO) { fetchSubagents(settings, sessionId) }
|
||||
)
|
||||
} catch (e: ApiException) {
|
||||
LoadState.failed(e)
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// Failures that belong to one session rather than to the list, keyed by its id and shown on its
|
||||
// own card. The two scopes are decided by whether the server answered: it answered and refused,
|
||||
// so this says nothing about the other rows.
|
||||
@@ -84,6 +118,14 @@ fun SessionListScreen(
|
||||
withContext(Dispatchers.IO) {
|
||||
transcriptCache.retainOnly(loaded.value.map { it.id }.toSet())
|
||||
}
|
||||
// A session gone from this answer cannot still be expanded, and an expanded one
|
||||
// that is still here asks again -- its subagents may have changed since the
|
||||
// last
|
||||
// fetch.
|
||||
val ids = loaded.value.map { it.id }.toSet()
|
||||
expandedSessions = expandedSessions intersect ids
|
||||
subagentLoads = subagentLoads.filterKeys { it in ids }
|
||||
expandedSessions.forEach(::loadSubagents)
|
||||
loaded
|
||||
} catch (e: ApiException) {
|
||||
LoadState.failed(e)
|
||||
@@ -127,6 +169,17 @@ fun SessionListScreen(
|
||||
deleting = session.id in deleting,
|
||||
onOpen = { onOpen(session) },
|
||||
onLongPress = { confirmingDelete = session },
|
||||
expanded = session.id in expandedSessions,
|
||||
subagents = subagentLoads[session.id],
|
||||
onToggleSubagents = {
|
||||
if (session.id in expandedSessions) {
|
||||
expandedSessions = expandedSessions - session.id
|
||||
} else {
|
||||
expandedSessions = expandedSessions + session.id
|
||||
loadSubagents(session.id)
|
||||
}
|
||||
},
|
||||
onOpenSubagent = { subagent -> onOpenSubagent(session, subagent) },
|
||||
)
|
||||
Spacer(Modifier.height(12.dp))
|
||||
}
|
||||
@@ -225,7 +278,7 @@ fun SessionListScreen(
|
||||
deleteSession(settings, session.id, alsoDeleteForeign)
|
||||
// After it succeeded, not before: a refused delete leaves the
|
||||
// session exactly as it was, and its transcript with it.
|
||||
transcriptCache.session(session.id).purge()
|
||||
transcriptCache.session(TranscriptAddress(session.id)).purge()
|
||||
}
|
||||
// Only this row, and only what changed. Refetching the list instead
|
||||
// put every other session back through loading and handed the
|
||||
@@ -276,6 +329,12 @@ private fun SessionCard(
|
||||
deleting: Boolean,
|
||||
onOpen: () -> Unit,
|
||||
onLongPress: () -> Unit,
|
||||
/** Whether the expander below is open. Collapsed by default; see [SessionListScreen]. */
|
||||
expanded: Boolean,
|
||||
/** What the expander's own fetch answered, or null before it has been asked. */
|
||||
subagents: LoadState<List<SubagentSummary>>?,
|
||||
onToggleSubagents: () -> Unit,
|
||||
onOpenSubagent: (SubagentSummary) -> Unit,
|
||||
) {
|
||||
BusyItem(label = if (deleting) "deleting" else null) {
|
||||
Card(
|
||||
@@ -332,11 +391,105 @@ private fun SessionCard(
|
||||
color = MaterialTheme.colorScheme.error,
|
||||
)
|
||||
}
|
||||
// Nothing at all for a card with no subagents: a disabled expander here would be
|
||||
// noise on every ordinary session's card. Its own row at the bottom rather than
|
||||
// beside the title or the machine line, so opening it never displaces text that was
|
||||
// already on screen -- see UI_RULES on a control not displacing the text beside it.
|
||||
if (session.subagents > 0) {
|
||||
Spacer(Modifier.height(8.dp))
|
||||
// The platform's minimum touch height, not the chevron's own ten or so dp:
|
||||
// at the chevron's height a tap meant for it landed on the first subcard
|
||||
// beneath and opened a subagent instead.
|
||||
Row(
|
||||
horizontalArrangement = Arrangement.Center,
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier =
|
||||
Modifier.fillMaxWidth()
|
||||
.heightIn(min = 48.dp)
|
||||
.clickable(enabled = !deleting, onClick = onToggleSubagents)
|
||||
.semantics {
|
||||
contentDescription =
|
||||
if (expanded) "Collapse subagents" else "Expand subagents"
|
||||
},
|
||||
) {
|
||||
Chevron(if (expanded) Pointing.Up else Pointing.Down)
|
||||
}
|
||||
if (expanded) {
|
||||
Spacer(Modifier.height(4.dp))
|
||||
Column(verticalArrangement = Arrangement.spacedBy(8.dp)) {
|
||||
when (subagents) {
|
||||
null,
|
||||
is LoadState.Loading ->
|
||||
CircularProgressIndicator(
|
||||
modifier = Modifier.width(20.dp).height(20.dp),
|
||||
strokeWidth = 2.dp,
|
||||
)
|
||||
is LoadState.Error ->
|
||||
// Said here rather than left silent: a fetch that failed and an
|
||||
// expander that simply found nothing must not look the same --
|
||||
// see UI_RULES on designing the unknown state first.
|
||||
Text(
|
||||
subagents.message,
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.error,
|
||||
)
|
||||
is LoadState.Loaded ->
|
||||
subagents.value.forEach { subagent ->
|
||||
SubagentCard(
|
||||
subagent,
|
||||
onClick = { onOpenSubagent(subagent) },
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* One subagent, indented inside its session's card -- the way dev-updater draws a project's
|
||||
* components (`ComponentCard`, `UpdaterScreen.kt`): an outlined card, not the session card's own
|
||||
* filled one, so the nesting reads as one step rather than as another session.
|
||||
*/
|
||||
@Composable
|
||||
private fun SubagentCard(subagent: SubagentSummary, onClick: () -> Unit) {
|
||||
OutlinedCard(Modifier.fillMaxWidth().clickable(onClick = onClick)) {
|
||||
Column(Modifier.padding(horizontal = 12.dp, vertical = 8.dp)) {
|
||||
Text(subagent.title, style = MaterialTheme.typography.titleSmall)
|
||||
Spacer(Modifier.height(2.dp))
|
||||
Row(modifier = Modifier.fillMaxWidth()) {
|
||||
Text(
|
||||
subagentStatusLabel(subagent.status),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
modifier = Modifier.weight(1f),
|
||||
)
|
||||
Text(
|
||||
relativeTime(subagent.lastActivity),
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* The subcard's word for a subagent's status -- see SUBAGENTS.md's "Wire shape". Its own function
|
||||
* rather than a branch inside [StatusText], because a subagent's three states are not that
|
||||
* composable's five: "exited" reads as "finished" here, since its process was always its parent's
|
||||
* and never something of its own to have merely stopped.
|
||||
*/
|
||||
private fun subagentStatusLabel(status: String) =
|
||||
when (status) {
|
||||
"running" -> "running"
|
||||
"exited" -> "finished"
|
||||
else -> "unknown"
|
||||
}
|
||||
|
||||
@Composable
|
||||
fun StatusText(status: String) {
|
||||
val (label, color) =
|
||||
|
||||
@@ -12,6 +12,7 @@ import androidx.activity.result.PickVisualMediaRequest
|
||||
import androidx.activity.result.contract.ActivityResultContracts
|
||||
import androidx.compose.foundation.background
|
||||
import androidx.compose.foundation.clickable
|
||||
import androidx.compose.foundation.gestures.ScrollableDefaults
|
||||
import androidx.compose.foundation.gestures.awaitEachGesture
|
||||
import androidx.compose.foundation.gestures.awaitFirstDown
|
||||
import androidx.compose.foundation.layout.Box
|
||||
@@ -64,12 +65,15 @@ import androidx.compose.runtime.snapshots.Snapshot
|
||||
import androidx.compose.ui.Alignment
|
||||
import androidx.compose.ui.Modifier
|
||||
import androidx.compose.ui.draw.drawWithContent
|
||||
import androidx.compose.ui.focus.FocusRequester
|
||||
import androidx.compose.ui.focus.focusRequester
|
||||
import androidx.compose.ui.graphics.graphicsLayer
|
||||
import androidx.compose.ui.input.pointer.PointerEventPass
|
||||
import androidx.compose.ui.input.pointer.pointerInput
|
||||
import androidx.compose.ui.layout.onSizeChanged
|
||||
import androidx.compose.ui.platform.LocalContext
|
||||
import androidx.compose.ui.platform.LocalDensity
|
||||
import androidx.compose.ui.platform.LocalView
|
||||
import androidx.compose.ui.semantics.contentDescription
|
||||
import androidx.compose.ui.semantics.semantics
|
||||
import androidx.compose.ui.text.TextRange
|
||||
@@ -216,16 +220,33 @@ fun SessionScreen(
|
||||
share: ShareRequest? = null,
|
||||
/** Said once [share] has been attached here, so it is not attached again. */
|
||||
onShareTaken: () -> Unit = {},
|
||||
/**
|
||||
* Draws this screen read-only, on a subagent's own transcript instead of the session's.
|
||||
*
|
||||
* A subagent has no process and no controls of its own -- see SUBAGENTS.md's "Phone" -- so
|
||||
* every gate below keyed on this switches off the composer, the files button, the settings cog,
|
||||
* the usage bar and notifications, while everything that draws a transcript (paging, cache,
|
||||
* selection, images, the status row, stream reconnects) is reused unchanged, pointed at
|
||||
* [address] instead of the session's own.
|
||||
*/
|
||||
subagent: SubagentSummary? = null,
|
||||
) {
|
||||
DebugStats.count("session screen recomposed")
|
||||
val isSubagent = subagent != null
|
||||
val address = TranscriptAddress(summary.id, subagent?.id)
|
||||
val scope = rememberCoroutineScope()
|
||||
val topEdgeHeld = remember { TopEdgeHold() }
|
||||
var items by remember { mutableStateOf(listOf<TranscriptItem>()) }
|
||||
var status by remember { mutableStateOf(summary.status) }
|
||||
var status by remember { mutableStateOf(subagent?.status ?: summary.status) }
|
||||
// Seeded from the row this screen was opened from, so a conversation already under way says how
|
||||
// much it is holding before any turn happens here. Null is "nobody has measured it", which is a
|
||||
// different answer from an empty context and is drawn differently.
|
||||
var contextTokens by remember(summary.id) { mutableStateOf(summary.contextTokens) }
|
||||
//
|
||||
// A subagent has no context measurement of its own, so it always starts unmeasured rather than
|
||||
// borrowing the parent session's figure -- see UI_RULES on not showing an inferred value as one
|
||||
// that was measured.
|
||||
var contextTokens by
|
||||
remember(address) { mutableStateOf(if (isSubagent) null else summary.contextTokens) }
|
||||
// When the current compaction started. The moment comes off the `compacting` status event
|
||||
// itself -- the server timestamps every transcript line -- rather than off this device noticing
|
||||
// one, which is what makes it survive leaving the session and reopening it.
|
||||
@@ -241,7 +262,13 @@ fun SessionScreen(
|
||||
val context = LocalContext.current
|
||||
// Seeded from what was left in the box last time and written back on every keystroke, so
|
||||
// leaving the screen does not throw away a half-typed message. See `Drafts.kt`.
|
||||
var input by remember(summary.id) { mutableStateOf(atEnd(loadDraft(context, summary.id))) }
|
||||
//
|
||||
// A subagent has no box to type into, so it never touches a draft at all -- not this session's,
|
||||
// which is what reading one keyed only by `summary.id` would do here.
|
||||
var input by
|
||||
remember(summary.id) {
|
||||
mutableStateOf(if (isSubagent) atEnd("") else atEnd(loadDraft(context, summary.id)))
|
||||
}
|
||||
// A model the reader has chosen and not yet confirmed. See [ModelSwitchWarning]: switching
|
||||
// makes the session re-read the whole conversation.
|
||||
var pendingModel by remember { mutableStateOf<String?>(null) }
|
||||
@@ -294,27 +321,26 @@ fun SessionScreen(
|
||||
// Reload throws away what it was reading from.
|
||||
val cache = remember(settings) { TranscriptCache(cacheRoot(context, settings)) }
|
||||
val source =
|
||||
remember(summary.id, epoch) {
|
||||
TranscriptSource(settings, summary.id, cache.session(summary.id))
|
||||
}
|
||||
remember(address, epoch) { TranscriptSource(settings, address, cache.session(address)) }
|
||||
// Whether the cached tail has been shown to still be the server's own line. Nothing is resumed
|
||||
// from a cached cursor until it has, and a probe that could not be made leaves this false for
|
||||
// the stream loop to try again.
|
||||
var probePassed by remember(summary.id, epoch) { mutableStateOf(false) }
|
||||
var probePassed by remember(address, epoch) { mutableStateOf(false) }
|
||||
// Whether the opening effect is still settling that question. It draws the cached rows and
|
||||
// lifts [ready] before the answer arrives, which is the point of the cache -- so the stream
|
||||
// below waits for this rather than for `ready`, or it asks the same question twice.
|
||||
var probing by remember(summary.id, epoch) { mutableStateOf(true) }
|
||||
var probing by remember(address, epoch) { mutableStateOf(true) }
|
||||
// The oldest sequence number loaded, and whether there is more behind it. Paging backwards is
|
||||
// what keeps opening a long session cheap.
|
||||
var oldestSeq by remember { mutableLongStateOf(0L) }
|
||||
// Where this session was last being read, from this device's own store. Read once, because the
|
||||
// answer stops being interesting the moment the list is on screen.
|
||||
val savedAnchor = remember(summary.id, epoch) { loadScrollAnchor(context, summary.id) }
|
||||
// Where this transcript was last being read, from this device's own store, keyed by the address
|
||||
// rather than the session id so a subagent's saved position cannot collide with its session's.
|
||||
// Read once, because the answer stops being interesting the moment the list is on screen.
|
||||
val savedAnchor = remember(address, epoch) { loadScrollAnchor(context, address.cachePath) }
|
||||
// Whether the saved position is still being put back. Nothing is drawn while it is: opening at
|
||||
// the newest end and then travelling to the anchor is exactly the journey a reader must never
|
||||
// see.
|
||||
var restoring by remember(summary.id, epoch) { mutableStateOf(savedAnchor != null) }
|
||||
var restoring by remember(address, epoch) { mutableStateOf(savedAnchor != null) }
|
||||
// Messages the server has taken and the session has not read yet, by the id that will resolve
|
||||
// them. From the event stream rather than from what this screen sent, so they survive leaving
|
||||
// the session -- and a message sent from another device is drawn waiting on this one too.
|
||||
@@ -327,11 +353,22 @@ fun SessionScreen(
|
||||
var loadingHistory by remember { mutableStateOf(false) }
|
||||
var ready by remember { mutableStateOf(false) }
|
||||
// Replies parsed ahead of the rows that draw them; see [ParsedReplies].
|
||||
val replies = remember(summary.id) { ParsedReplies() }
|
||||
// Keyed like everything else describing one session's transcript. `rememberLazyListState` saves
|
||||
// through `rememberSaveable`, and this screen restores by its own anchor instead -- two
|
||||
// restores would fight over the first frame.
|
||||
val listState = remember(summary.id) { LazyListState() }
|
||||
val replies = remember(address) { ParsedReplies() }
|
||||
// Keyed like everything else describing one transcript. `rememberLazyListState` saves through
|
||||
// `rememberSaveable`, and this screen restores by its own anchor instead -- two restores would
|
||||
// fight over the first frame.
|
||||
val listState = remember(address) { LazyListState() }
|
||||
// The list's own fling path -- what a real flick decays through -- captured here so BenchRun's
|
||||
// fling phase can drive `LazyListState.scroll` through exactly the `FlingBehavior` this
|
||||
// screen's
|
||||
// `TranscriptList` already uses by not overriding it (its `LazyColumn` takes no `flingBehavior`
|
||||
// argument, so this is the same default it gets).
|
||||
val flingBehavior = ScrollableDefaults.flingBehavior()
|
||||
// Where BenchRun's type phase focuses before it types, and the view it toggles the keyboard on
|
||||
// -- both bench-only, but cheap enough (a remembered object, a CompositionLocal read) to hold
|
||||
// unconditionally rather than behind a second code path only the bench build compiles.
|
||||
val composerFocus = remember { FocusRequester() }
|
||||
val view = LocalView.current
|
||||
// Whether the newest message is on screen right now. The list is reversed, so the newest end is
|
||||
// the scrolling start: nothing behind you is exactly being at the bottom. Asked of the scroll
|
||||
// state rather than of item indices, because a zero-height first item makes an index ambiguous.
|
||||
@@ -637,7 +674,7 @@ fun SessionScreen(
|
||||
// ended and carries live events only. The window comes from this phone's own copy when there is
|
||||
// one, and then costs a single request to check that the server's transcript is still the one
|
||||
// it came from. See TRANSCRIPT_CACHE.md.
|
||||
LaunchedEffect(summary.id, epoch) {
|
||||
LaunchedEffect(address, epoch) {
|
||||
/**
|
||||
* One opening window onto the screen, whichever side it came from.
|
||||
*
|
||||
@@ -667,11 +704,16 @@ fun SessionScreen(
|
||||
// A replay is as old as the last visit; the row this screen was opened from was
|
||||
// fetched moments ago. So the transcript comes from the cache and everything that
|
||||
// is not the transcript comes from the summary -- otherwise a session that finished
|
||||
// an hour ago opens saying "working" until the stream connects.
|
||||
status = summary.status
|
||||
model = summary.model
|
||||
permissionMode = summary.permissionMode ?: "auto"
|
||||
if (summary.status != "compacting") compactingSince = null
|
||||
// an hour ago opens saying "working" until the stream connects. A subagent's status
|
||||
// comes from its own summary, never the parent session's: they are two different
|
||||
// things running or not, and the parent's model and permission mode do not apply to
|
||||
// it at all.
|
||||
status = subagent?.status ?: summary.status
|
||||
if (!isSubagent) {
|
||||
model = summary.model
|
||||
permissionMode = summary.permissionMode ?: "auto"
|
||||
}
|
||||
if (status != "compacting") compactingSince = null
|
||||
// Nothing to put back, so these rows are the screen and the probe can return under
|
||||
// them. A restore still has history to fetch and is gated below.
|
||||
if (savedAnchor == null) ready = true
|
||||
@@ -798,7 +840,7 @@ fun SessionScreen(
|
||||
// at the top on their return. Switching apps is a choice somebody made, not a fault to report.
|
||||
// Stopping the stream deliberately makes the drop a close rather than an error, and resuming
|
||||
// reconnects from the same cursor.
|
||||
LaunchedEffect(summary.id, ready, epoch, lifecycleOwner) {
|
||||
LaunchedEffect(address, ready, epoch, lifecycleOwner) {
|
||||
if (!ready) return@LaunchedEffect
|
||||
// The opening effect draws cached rows and lifts `ready` *before* it has checked that the
|
||||
// cursor under them is still the server's, so `ready` is no longer the whole gate. Without
|
||||
@@ -868,17 +910,22 @@ fun SessionScreen(
|
||||
// The screen going away entirely, which the lifecycle scope above does not cover: a composable
|
||||
// can leave the composition while the activity stays started. Keyed on the epoch as well, so
|
||||
// Reload's replacement source is the one a later disposal closes.
|
||||
DisposableEffect(summary.id, epoch) { onDispose { source.close() } }
|
||||
DisposableEffect(address, epoch) { onDispose { source.close() } }
|
||||
|
||||
// Nothing gets announced about the session somebody is reading; see NotificationService.
|
||||
// RESUMED rather than STARTED because "looking at it" means the foreground.
|
||||
LaunchedEffect(summary.id, lifecycleOwner) {
|
||||
lifecycleOwner.repeatOnLifecycle(Lifecycle.State.RESUMED) {
|
||||
NotificationService.showing(context, summary.id)
|
||||
try {
|
||||
awaitCancellation()
|
||||
} finally {
|
||||
NotificationService.stoppedShowing(summary.id)
|
||||
//
|
||||
// Not for a subagent: it has no notifications of its own, and it is not the session this would
|
||||
// otherwise mark as being read.
|
||||
if (!isSubagent) {
|
||||
LaunchedEffect(summary.id, lifecycleOwner) {
|
||||
lifecycleOwner.repeatOnLifecycle(Lifecycle.State.RESUMED) {
|
||||
NotificationService.showing(context, summary.id)
|
||||
try {
|
||||
awaitCancellation()
|
||||
} finally {
|
||||
NotificationService.stoppedShowing(summary.id)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -924,7 +971,7 @@ fun SessionScreen(
|
||||
val (index, offset, awayFromNewest) = settled
|
||||
saveScrollAnchor(
|
||||
context,
|
||||
summary.id,
|
||||
address.cachePath,
|
||||
// Nothing to restore at the newest end, which is where a session with no anchor
|
||||
// opens anyway. One *before* the index, because item zero is the "below" slot.
|
||||
if (!awayFromNewest) null
|
||||
@@ -947,7 +994,7 @@ fun SessionScreen(
|
||||
//
|
||||
// There is no correction beside this one. Following the newest message is not an effect: the
|
||||
// list is reversed, so an arriving message extends the end the viewport is pinned to.
|
||||
val unitSizes = remember(summary.id) { HashMap<Any, Int>() }
|
||||
val unitSizes = remember(address) { HashMap<Any, Int>() }
|
||||
LaunchedEffect(listState, moreHistory) {
|
||||
snapshotFlow { listState.layoutInfo }
|
||||
.collect { info ->
|
||||
@@ -983,21 +1030,25 @@ fun SessionScreen(
|
||||
}
|
||||
}
|
||||
|
||||
LaunchedEffect(summary.setupName, summary.provider) {
|
||||
offeredModels =
|
||||
try {
|
||||
withContext(Dispatchers.IO) {
|
||||
fetchSetups(settings)
|
||||
.firstOrNull { it.name == summary.setupName }
|
||||
?.providers
|
||||
?.firstOrNull { it.name == summary.provider }
|
||||
?.models
|
||||
.orEmpty()
|
||||
// Only for the model picker, which a subagent does not have.
|
||||
if (!isSubagent) {
|
||||
LaunchedEffect(summary.setupName, summary.provider) {
|
||||
offeredModels =
|
||||
try {
|
||||
withContext(Dispatchers.IO) {
|
||||
fetchSetups(settings)
|
||||
.firstOrNull { it.name == summary.setupName }
|
||||
?.providers
|
||||
?.firstOrNull { it.name == summary.provider }
|
||||
?.models
|
||||
.orEmpty()
|
||||
}
|
||||
} catch (_: Exception) {
|
||||
// Not worth reporting: the picker simply has nothing to offer, which is
|
||||
// visible.
|
||||
emptyList()
|
||||
}
|
||||
} catch (_: Exception) {
|
||||
// Not worth reporting: the picker simply has nothing to offer, which is visible.
|
||||
emptyList()
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -1148,8 +1199,9 @@ fun SessionScreen(
|
||||
}
|
||||
|
||||
// One poll for the machines' limits, read by everything on this screen that reports them.
|
||||
val usageFeed = rememberUsageFeed(settings)
|
||||
val usage = usageFeed.forSetup(summary.setup)
|
||||
// Nothing meters a subagent -- it has no account of its own -- so it never starts this poll.
|
||||
val usageFeed = if (isSubagent) null else rememberUsageFeed(settings)
|
||||
val usage = usageFeed?.forSession(summary) ?: SessionUsage.NotMetered
|
||||
RecordFrames()
|
||||
var usageOpen by remember { mutableStateOf(false) }
|
||||
var settingsOpen by remember { mutableStateOf(false) }
|
||||
@@ -1191,7 +1243,12 @@ fun SessionScreen(
|
||||
// the bench scripts keep working when this moves again. They pressed it at a hand-measured
|
||||
// coordinate until 2026-09-03, and anything that moved the header made that tap land on
|
||||
// whatever now sat there -- reporting a number that was never measured.
|
||||
val copyRenderReport = {
|
||||
// Shared by the ordinary "Copy" button and (bench build only) "Run benchmark": what differs
|
||||
// between them is only whether there is a [extra] section, built by BenchRun.run beforehand --
|
||||
// everything about assembling, copying and logging the report is exactly the same act either
|
||||
// way, and a second copy of it beside `onRunBenchmark` below would be the two silently
|
||||
// disagreeing about what "the report" contains the first time either one changed.
|
||||
fun buildAndCopyReport(extra: List<String> = emptyList()) {
|
||||
val report =
|
||||
debugReport(
|
||||
device =
|
||||
@@ -1213,6 +1270,11 @@ fun SessionScreen(
|
||||
accounting =
|
||||
FrameStats.drawPhase().let { (nanos, count) -> drawAccounting(nanos, count) },
|
||||
crash = lastCrash(context),
|
||||
extra = extra,
|
||||
// Empty outside a BenchRun.run pass -- copyRenderReport's own reset below clears
|
||||
// the
|
||||
// marks along with everything else, so an ordinary copy never has any to show.
|
||||
phaseFrames = FrameStats.phaseLines(context.refreshHz()),
|
||||
)
|
||||
context.copyToClipboard("ai-app render report", report)
|
||||
// Also to the log, so a session driving the app over adb can read the same report the
|
||||
@@ -1226,6 +1288,29 @@ fun SessionScreen(
|
||||
DebugStats.reset()
|
||||
Toast.makeText(context, "Copied render report", Toast.LENGTH_SHORT).show()
|
||||
}
|
||||
val copyRenderReport = { buildAndCopyReport() }
|
||||
// Bench build only: P0's scripted fling/stream/type/keyboard benchmark (BenchRun.kt), against
|
||||
// the fixture session opened below instead of a real server. Null everywhere else -- see
|
||||
// [SessionSettingsDialog]'s onRunBenchmark.
|
||||
val runBenchmark: (() -> Unit)? =
|
||||
if (BuildConfig.FIXTURE_MODE) {
|
||||
{
|
||||
settingsOpen = false
|
||||
scope.launch {
|
||||
val extra =
|
||||
BenchRun.run(
|
||||
context = context,
|
||||
scope = scope,
|
||||
listState = listState,
|
||||
flingBehavior = flingBehavior,
|
||||
composerFocus = composerFocus,
|
||||
setComposerText = { text -> input = atEnd(text) },
|
||||
view = view,
|
||||
)
|
||||
buildAndCopyReport(extra)
|
||||
}
|
||||
}
|
||||
} else null
|
||||
Box(Modifier.fillMaxSize()) {
|
||||
Column(Modifier.fillMaxSize()) {
|
||||
Row(
|
||||
@@ -1236,20 +1321,35 @@ fun SessionScreen(
|
||||
// A ring's worth, which is what the arrow already keeps on its other three sides.
|
||||
Spacer(Modifier.width(GLYPH_BUTTON_MARGIN))
|
||||
Column(Modifier.weight(1f)) {
|
||||
Text(title, style = MaterialTheme.typography.titleMedium)
|
||||
// Machine first, then what runs on it -- the same order and the same wording
|
||||
// everywhere this pair appears, so it reads as one fact rather than two
|
||||
// sentences with different grammar.
|
||||
//
|
||||
// No model. The picker in the footer already shows what this session is set to,
|
||||
// and showing it twice means two things to keep in step -- they disagreed for a
|
||||
// moment on every model change.
|
||||
Text(
|
||||
"${summary.setupName} · ${summary.provider}",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
// A subagent's own title, with the session's beneath it in a smaller style --
|
||||
// the header says whose conversation this is as well as what it is. Otherwise
|
||||
// just the session's title, as before.
|
||||
if (subagent != null) {
|
||||
Text(subagent.title, style = MaterialTheme.typography.titleMedium)
|
||||
Text(
|
||||
title,
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
} else {
|
||||
Text(title, style = MaterialTheme.typography.titleMedium)
|
||||
// Machine first, then what runs on it -- the same order and the same
|
||||
// wording everywhere this pair appears, so it reads as one fact rather than
|
||||
// two sentences with different grammar.
|
||||
//
|
||||
// No model. The picker in the footer already shows what this session is set
|
||||
// to, and showing it twice means two things to keep in step -- they
|
||||
// disagreed for a moment on every model change.
|
||||
Text(
|
||||
"${summary.setupName} · ${summary.provider}",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
}
|
||||
}
|
||||
// None of this is a subagent's: it has no files of its own to browse, no settings,
|
||||
// and nothing meters it -- see SUBAGENTS.md's "Phone".
|
||||
//
|
||||
// Beside the provider it reports on, which is the line directly to its left. Its
|
||||
// real home is this provider's settings, which do not exist yet. A session on a
|
||||
// provider with no such service gets an honest "unavailable" rather than a hidden
|
||||
@@ -1264,42 +1364,47 @@ fun SessionScreen(
|
||||
// Usage, files, settings -- widest scope first, narrowing to the right, so the cog
|
||||
// stays at the end where every other screen keeps it. Asked for in this order by
|
||||
// Iris on 2026-09-03.
|
||||
Row {
|
||||
GlyphButton(
|
||||
USAGE_GLYPH,
|
||||
"Usage",
|
||||
{ usageOpen = true },
|
||||
colour = usageGlyphColour(usage),
|
||||
)
|
||||
// The machine's files, which is where the answer to "what did it actually
|
||||
// change" is. It opens *over* this screen rather than replacing it.
|
||||
GlyphButton(
|
||||
FOLDER_GLYPH,
|
||||
"Files",
|
||||
onClick = {
|
||||
onFiles(
|
||||
FilesTarget(
|
||||
setup = summary.setup,
|
||||
setupName = summary.setupName,
|
||||
// Where this session works, and the machine's own home when it
|
||||
// was never given a directory -- resolved there rather than
|
||||
// guessed at here, since this app does not know that home.
|
||||
start = summary.cwd?.takeIf { it.isNotBlank() } ?: "~",
|
||||
if (!isSubagent) {
|
||||
Row {
|
||||
GlyphButton(
|
||||
USAGE_GLYPH,
|
||||
"Usage",
|
||||
{ usageOpen = true },
|
||||
colour = usageGlyphColour(usage),
|
||||
)
|
||||
// The machine's files, which is where the answer to "what did it actually
|
||||
// change" is. It opens *over* this screen rather than replacing it.
|
||||
GlyphButton(
|
||||
FOLDER_GLYPH,
|
||||
"Files",
|
||||
onClick = {
|
||||
onFiles(
|
||||
FilesTarget(
|
||||
setup = summary.setup,
|
||||
setupName = summary.setupName,
|
||||
// Where this session works, and the machine's own home when
|
||||
// it was never given a directory -- resolved there rather
|
||||
// than guessed at here, since this app does not know that
|
||||
// home.
|
||||
start = summary.cwd?.takeIf { it.isNotBlank() } ?: "~",
|
||||
)
|
||||
)
|
||||
)
|
||||
},
|
||||
)
|
||||
// What it opens is about this session, so it sits at the end of the session's
|
||||
// own row. A cog and not a word because there will be more, and a bar of words
|
||||
// has nowhere to put it.
|
||||
GlyphButton(SETTINGS_GLYPH, "Session settings", { settingsOpen = true })
|
||||
},
|
||||
)
|
||||
// What it opens is about this session, so it sits at the end of the
|
||||
// session's own row. A cog and not a word because there will be more, and a
|
||||
// bar of words has nowhere to put it.
|
||||
GlyphButton(SETTINGS_GLYPH, "Session settings", { settingsOpen = true })
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Under the header, above everything the session itself says: it is a fact about the
|
||||
// machine rather than a turn in the conversation, and it is the number that decides
|
||||
// whether to keep going.
|
||||
SessionUsageBar(usage)
|
||||
// whether to keep going. Nothing meters a subagent.
|
||||
if (!isSubagent) {
|
||||
SessionUsageBar(usage)
|
||||
}
|
||||
|
||||
(streamError ?: actionError)?.let { message ->
|
||||
Text(
|
||||
@@ -1545,6 +1650,7 @@ fun SessionScreen(
|
||||
is TranscriptItem.ClearedNote -> ClearedRow()
|
||||
is TranscriptItem.CompactedNote ->
|
||||
CompactedRow(item)
|
||||
is TranscriptItem.LimitNote -> LimitRow(item)
|
||||
// Never reached: a peer message is flattened into
|
||||
// its own units. Here because a `when` over the
|
||||
// item kinds has to stay exhaustive.
|
||||
@@ -1643,185 +1749,211 @@ fun SessionScreen(
|
||||
)
|
||||
}
|
||||
|
||||
// Kept for a subagent -- see SUBAGENTS.md's "Phone" -- with the wording that turns
|
||||
// "exited" into "finished" for one, since it has no process to leave running or stop.
|
||||
SessionStatusRow(
|
||||
status = status,
|
||||
compactingFor = compactingFor,
|
||||
contextTokens = contextTokens,
|
||||
subagent = isSubagent,
|
||||
)
|
||||
|
||||
// Between the transcript and the box: above what is being typed, so the list does not
|
||||
// cover the thing the command is about, and below everything that explains it.
|
||||
CommandSuggestions(
|
||||
// Nothing to suggest about a suggestion that was just taken. `/compact` is a whole
|
||||
// command *and* a prefix of itself, so picking it left the list standing there with
|
||||
// the one row already chosen. Held by what was picked rather than by a flag, so
|
||||
// typing anything else brings the list back without a second thing to reset.
|
||||
commands = if (input.text == picked) emptyList() else suggestedCommands(input.text),
|
||||
onPick = { command ->
|
||||
// At the end of what was inserted, which is where the reader carries on typing:
|
||||
// a command with an argument is put in the box half-written, and a cursor left
|
||||
// at the front makes the next keystroke the first character of "/rename".
|
||||
input = atEnd(command.typed())
|
||||
picked = command.typed()
|
||||
},
|
||||
)
|
||||
|
||||
// Always enabled -- a send while the session is running becomes a steering message
|
||||
// injected at the next tool boundary, which is the point of the whole app.
|
||||
//
|
||||
// The field gets a row of its own, above the buttons: sharing one put the full width
|
||||
// behind three controls, so the thing being typed into was the narrowest on the row.
|
||||
Column(Modifier.fillMaxWidth().padding(8.dp)) {
|
||||
// Directly above the box they will be sent from, so what is attached is visible
|
||||
// rather than counted: the "+2" on the button below said how many and never which.
|
||||
PendingAttachments(
|
||||
settings = settings,
|
||||
sessionId = summary.id,
|
||||
refs = pendingAttachments,
|
||||
onRemove = { pendingAttachments = pendingAttachments - it },
|
||||
)
|
||||
OutlinedTextField(
|
||||
value = input,
|
||||
onValueChange = {
|
||||
input = it
|
||||
saveDraft(context, summary.id, it.text)
|
||||
// Everything from here down is the composer: a subagent cannot be messaged, so none of
|
||||
// it applies -- see SUBAGENTS.md's "Phone".
|
||||
if (!isSubagent) {
|
||||
// Between the transcript and the box: above what is being typed, so the list does
|
||||
// not cover the thing the command is about, and below everything that explains it.
|
||||
CommandSuggestions(
|
||||
// Nothing to suggest about a suggestion that was just taken. `/compact` is a
|
||||
// whole command *and* a prefix of itself, so picking it left the list standing
|
||||
// there with the one row already chosen. Held by what was picked rather than by
|
||||
// a flag, so typing anything else brings the list back without a second thing
|
||||
// to
|
||||
// reset.
|
||||
commands =
|
||||
if (input.text == picked) emptyList() else suggestedCommands(input.text),
|
||||
onPick = { command ->
|
||||
// At the end of what was inserted, which is where the reader carries on
|
||||
// typing: a command with an argument is put in the box half-written, and a
|
||||
// cursor left at the front makes the next keystroke the first character of
|
||||
// "/rename".
|
||||
input = atEnd(command.typed())
|
||||
picked = command.typed()
|
||||
},
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
// No longer "(+image)": the images are on screen above this, and a placeholder
|
||||
// saying so said it in words beside the thing itself.
|
||||
placeholder = { Text("Message") },
|
||||
maxLines = 4,
|
||||
)
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
) {
|
||||
// Photo or file, asked here rather than by two buttons: the row is full, and
|
||||
// attaching is one action whichever picker answers it.
|
||||
var attaching by remember { mutableStateOf(false) }
|
||||
Box {
|
||||
// Just "+". The count it used to carry was standing in for showing them.
|
||||
BubbleButton(onClick = { attaching = true }) { Text("+") }
|
||||
DropdownMenu(
|
||||
expanded = attaching,
|
||||
onDismissRequest = { attaching = false },
|
||||
// See PickerButton: without this the menu opens a status bar's height
|
||||
// away from the button in an edge-to-edge activity.
|
||||
properties = PopupProperties(clippingEnabled = false),
|
||||
shape = BubbleMenuShape,
|
||||
) {
|
||||
DropdownMenuItem(
|
||||
text = { Text("Photo") },
|
||||
onClick = {
|
||||
attaching = false
|
||||
pickImage.launch(
|
||||
PickVisualMediaRequest(
|
||||
ActivityResultContracts.PickVisualMedia.ImageOnly
|
||||
)
|
||||
)
|
||||
},
|
||||
)
|
||||
DropdownMenuItem(
|
||||
text = { Text("File") },
|
||||
onClick = {
|
||||
attaching = false
|
||||
pickFile.launch(arrayOf("*/*"))
|
||||
},
|
||||
)
|
||||
}
|
||||
}
|
||||
// The settings share what is left after the actions have taken what they need.
|
||||
// A Row hands out intrinsic widths in order and clips whatever runs past the
|
||||
// edge, so with these laid out first the arrival of Stop pushed Send off the
|
||||
// screen entirely -- the app's central control, gone at the moment it is most
|
||||
// in use.
|
||||
|
||||
// Always enabled -- a send while the session is running becomes a steering message
|
||||
// injected at the next tool boundary, which is the point of the whole app.
|
||||
//
|
||||
// The field gets a row of its own, above the buttons: sharing one put the full
|
||||
// width
|
||||
// behind three controls, so the thing being typed into was the narrowest on the
|
||||
// row.
|
||||
Column(Modifier.fillMaxWidth().padding(8.dp)) {
|
||||
// Directly above the box they will be sent from, so what is attached is visible
|
||||
// rather than counted: the "+2" on the button below said how many and never
|
||||
// which.
|
||||
PendingAttachments(
|
||||
settings = settings,
|
||||
sessionId = summary.id,
|
||||
refs = pendingAttachments,
|
||||
onRemove = { pendingAttachments = pendingAttachments - it },
|
||||
)
|
||||
OutlinedTextField(
|
||||
value = input,
|
||||
onValueChange = {
|
||||
input = it
|
||||
saveDraft(context, summary.id, it.text)
|
||||
},
|
||||
// BenchRun's type phase requests focus on this exact field
|
||||
// (`composerFocus`)
|
||||
// so it types through the real composer rather than a stand-in.
|
||||
modifier = Modifier.fillMaxWidth().focusRequester(composerFocus),
|
||||
// No longer "(+image)": the images are on screen above this, and a
|
||||
// placeholder saying so said it in words beside the thing itself.
|
||||
placeholder = { Text("Message") },
|
||||
maxLines = 4,
|
||||
)
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.weight(1f),
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
) {
|
||||
if (offeredModels.isNotEmpty()) {
|
||||
// Photo or file, asked here rather than by two buttons: the row is full,
|
||||
// and
|
||||
// attaching is one action whichever picker answers it.
|
||||
var attaching by remember { mutableStateOf(false) }
|
||||
Box {
|
||||
// Just "+". The count it used to carry was standing in for showing
|
||||
// them.
|
||||
BubbleButton(onClick = { attaching = true }) { Text("+") }
|
||||
DropdownMenu(
|
||||
expanded = attaching,
|
||||
onDismissRequest = { attaching = false },
|
||||
// See PickerButton: without this the menu opens a status bar's
|
||||
// height away from the button in an edge-to-edge activity.
|
||||
properties = PopupProperties(clippingEnabled = false),
|
||||
shape = BubbleMenuShape,
|
||||
) {
|
||||
DropdownMenuItem(
|
||||
text = { Text("Photo") },
|
||||
onClick = {
|
||||
attaching = false
|
||||
pickImage.launch(
|
||||
PickVisualMediaRequest(
|
||||
ActivityResultContracts.PickVisualMedia.ImageOnly
|
||||
)
|
||||
)
|
||||
},
|
||||
)
|
||||
DropdownMenuItem(
|
||||
text = { Text("File") },
|
||||
onClick = {
|
||||
attaching = false
|
||||
pickFile.launch(arrayOf("*/*"))
|
||||
},
|
||||
)
|
||||
}
|
||||
}
|
||||
// The settings share what is left after the actions have taken what they
|
||||
// need. A Row hands out intrinsic widths in order and clips whatever runs
|
||||
// past the edge, so with these laid out first the arrival of Stop pushed
|
||||
// Send off the screen entirely -- the app's central control, gone at the
|
||||
// moment it is most in use.
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.weight(1f),
|
||||
) {
|
||||
if (offeredModels.isNotEmpty()) {
|
||||
PickerButton(
|
||||
current = modelLabel(model),
|
||||
// What the machine offers, plus the state a session is in when
|
||||
// it has chosen none of them. The button has always been able
|
||||
// to
|
||||
// say "default"; until this the list could not, so leaving it
|
||||
// was a one-way trip.
|
||||
options = listOf(DEFAULT_MODEL) + offeredModels,
|
||||
// Not set here. The button follows what the session reports it
|
||||
// is set to, which arrives a moment later and is sometimes a
|
||||
// different answer -- a name the CLI resolved, or no change at
|
||||
// all on a provider whose model is fixed. Asked about first,
|
||||
// unless there is nothing to lose by it -- see
|
||||
// [ModelSwitchWarning].
|
||||
onPick = { chosen ->
|
||||
if (
|
||||
modelLabel(chosen) == modelLabel(model) ||
|
||||
!worthWarningAbout(status, contextTokens, items)
|
||||
) {
|
||||
act { setSessionModel(settings, summary.id, chosen) }
|
||||
} else {
|
||||
pendingModel = chosen
|
||||
}
|
||||
},
|
||||
)
|
||||
}
|
||||
PickerButton(
|
||||
current = modelLabel(model),
|
||||
// What the machine offers, plus the state a session is in when it
|
||||
// has chosen none of them. The button has always been able to say
|
||||
// "default"; until this the list could not, so leaving it was a
|
||||
// one-way trip.
|
||||
options = listOf(DEFAULT_MODEL) + offeredModels,
|
||||
// Not set here. The button follows what the session reports it is
|
||||
// set to, which arrives a moment later and is sometimes a different
|
||||
// answer -- a name the CLI resolved, or no change at all on a
|
||||
// provider whose model is fixed. Asked about first, unless there is
|
||||
// nothing to lose by it -- see [ModelSwitchWarning].
|
||||
current = permissionMode,
|
||||
options = PERMISSION_MODES,
|
||||
onPick = { chosen ->
|
||||
if (
|
||||
modelLabel(chosen) == modelLabel(model) ||
|
||||
!worthWarningAbout(status, contextTokens, items)
|
||||
) {
|
||||
act { setSessionModel(settings, summary.id, chosen) }
|
||||
} else {
|
||||
pendingModel = chosen
|
||||
}
|
||||
act { setSessionPermissionMode(settings, summary.id, chosen) }
|
||||
},
|
||||
)
|
||||
}
|
||||
PickerButton(
|
||||
current = permissionMode,
|
||||
options = PERMISSION_MODES,
|
||||
onPick = { chosen ->
|
||||
act { setSessionPermissionMode(settings, summary.id, chosen) }
|
||||
},
|
||||
)
|
||||
}
|
||||
// The same filled shape as the button beside it, not an outlined one: these are
|
||||
// two things you can do about the session, and weighting one as secondary said
|
||||
// they were a primary action and its qualifier. What separates them is the
|
||||
// colour and the mark, which is what they mean.
|
||||
//
|
||||
// Always here, rather than arriving with the turn as it used to. A control that
|
||||
// comes and goes makes its own presence the signal, and a button always in the
|
||||
// same place also cannot push Send off the end of the row by turning up.
|
||||
val process =
|
||||
when {
|
||||
running -> ProcessAction.Pause
|
||||
status == "exited" -> ProcessAction.Start
|
||||
else -> ProcessAction.Stop
|
||||
}
|
||||
Button(
|
||||
onClick = {
|
||||
processInFlight = true
|
||||
act(onDone = { processInFlight = false }) {
|
||||
process.perform(settings, summary.id)
|
||||
// The same filled shape as the button beside it, not an outlined one: these
|
||||
// are two things you can do about the session, and weighting one as
|
||||
// secondary said they were a primary action and its qualifier. What
|
||||
// separates them is the colour and the mark, which is what they mean.
|
||||
//
|
||||
// Always here, rather than arriving with the turn as it used to. A control
|
||||
// that comes and goes makes its own presence the signal, and a button
|
||||
// always
|
||||
// in the same place also cannot push Send off the end of the row by turning
|
||||
// up.
|
||||
val process =
|
||||
when {
|
||||
running -> ProcessAction.Pause
|
||||
status == "exited" -> ProcessAction.Start
|
||||
else -> ProcessAction.Stop
|
||||
}
|
||||
},
|
||||
enabled = !processInFlight,
|
||||
colors = actionButtonColors(process.colour()),
|
||||
) {
|
||||
Glyph(
|
||||
process.glyph,
|
||||
colour = LocalContentColor.current,
|
||||
modifier = Modifier.semantics { contentDescription = process.label },
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.width(8.dp))
|
||||
// The paper plane, with a clock on it while a turn is in flight: sending then
|
||||
// queues the message for the next tool boundary rather than starting a turn of
|
||||
// its own, and the two have to be told apart at a glance. The label says the
|
||||
// same thing to a screen reader.
|
||||
//
|
||||
// Disabled while there is nothing to send, rather than pressable and silent:
|
||||
// `send` has always returned early on an empty composer, so the button promised
|
||||
// something it would not do. Disabled and not hidden, for the reason above.
|
||||
Button(
|
||||
onClick = { send() },
|
||||
enabled = input.text.isNotBlank() || pendingAttachments.isNotEmpty(),
|
||||
colors = actionButtonColors(if (running) queueColor else sendColor),
|
||||
) {
|
||||
Glyph(
|
||||
if (running) QUEUE_GLYPH else SEND_GLYPH,
|
||||
colour = LocalContentColor.current,
|
||||
modifier =
|
||||
Modifier.semantics { contentDescription = sendLabel(running) },
|
||||
)
|
||||
Button(
|
||||
onClick = {
|
||||
processInFlight = true
|
||||
act(onDone = { processInFlight = false }) {
|
||||
process.perform(settings, summary.id)
|
||||
}
|
||||
},
|
||||
enabled = !processInFlight,
|
||||
colors = actionButtonColors(process.colour()),
|
||||
) {
|
||||
Glyph(
|
||||
process.glyph,
|
||||
colour = LocalContentColor.current,
|
||||
modifier =
|
||||
Modifier.semantics { contentDescription = process.label },
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.width(8.dp))
|
||||
// The paper plane, with a clock on it while a turn is in flight: sending
|
||||
// then queues the message for the next tool boundary rather than starting a
|
||||
// turn of its own, and the two have to be told apart at a glance. The label
|
||||
// says the same thing to a screen reader.
|
||||
//
|
||||
// Disabled while there is nothing to send, rather than pressable and
|
||||
// silent:
|
||||
// `send` has always returned early on an empty composer, so the button
|
||||
// promised something it would not do. Disabled and not hidden, for the
|
||||
// reason above.
|
||||
Button(
|
||||
onClick = { send() },
|
||||
enabled = input.text.isNotBlank() || pendingAttachments.isNotEmpty(),
|
||||
colors = actionButtonColors(if (running) queueColor else sendColor),
|
||||
) {
|
||||
Glyph(
|
||||
if (running) QUEUE_GLYPH else SEND_GLYPH,
|
||||
colour = LocalContentColor.current,
|
||||
modifier =
|
||||
Modifier.semantics { contentDescription = sendLabel(running) },
|
||||
)
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1832,7 +1964,7 @@ fun SessionScreen(
|
||||
// is the screen's business rather than any row's. See [SessionImageViewer].
|
||||
fullImage?.let { ref -> SessionImageViewer(settings, summary.id, ref) { fullImage = null } }
|
||||
if (usageOpen) {
|
||||
UsageDialog(feed = usageFeed, onDismiss = { usageOpen = false })
|
||||
usageFeed?.let { UsageDialog(feed = it, onDismiss = { usageOpen = false }) }
|
||||
}
|
||||
if (settingsOpen) {
|
||||
// Measured when the dialog opens rather than kept up to date: what the reader is being told
|
||||
@@ -1846,6 +1978,8 @@ fun SessionScreen(
|
||||
settings = settings,
|
||||
sessionId = summary.id,
|
||||
title = title,
|
||||
effort = summary.effort.takeIf { summary.takesEffort },
|
||||
takesEffort = summary.takesEffort,
|
||||
cachedBytes = cachedBytes,
|
||||
// The purge finishes before the epoch moves, because the relaunched opening effect
|
||||
// reads the same directory and would otherwise draw what is about to be deleted. The
|
||||
@@ -1869,6 +2003,7 @@ fun SessionScreen(
|
||||
},
|
||||
onDismiss = { settingsOpen = false },
|
||||
onCopyRenderReport = copyRenderReport,
|
||||
onRunBenchmark = runBenchmark,
|
||||
)
|
||||
}
|
||||
}
|
||||
@@ -2122,6 +2257,13 @@ private fun SessionStatusRow(
|
||||
/** Context the session is holding, or null where nothing has measured it. */
|
||||
contextTokens: Long?,
|
||||
modifier: Modifier = Modifier,
|
||||
/**
|
||||
* Whether this row is for a subagent rather than a session, which changes only one word:
|
||||
* "exited" reads as "finished" there too, the same as the subagent list's own card -- a
|
||||
* subagent's process was always its parent's, so "exited" would read as a fault rather than the
|
||||
* ordinary way one of these ends.
|
||||
*/
|
||||
subagent: Boolean = false,
|
||||
) {
|
||||
DebugStats.count("status row recomposed")
|
||||
Row(
|
||||
@@ -2178,7 +2320,7 @@ private fun SessionStatusRow(
|
||||
Text(
|
||||
when (status) {
|
||||
"idle" -> "idle"
|
||||
"exited" -> "exited"
|
||||
"exited" -> if (subagent) "finished" else "exited"
|
||||
"awaitingInput" -> "your turn"
|
||||
"unknown" -> "can't tell"
|
||||
else -> status
|
||||
@@ -2249,7 +2391,7 @@ private const val ONE_TAP_MS = 250L
|
||||
* session is set to without spending a second line on saying it.
|
||||
*/
|
||||
@Composable
|
||||
private fun PickerButton(current: String, options: List<String>, onPick: (String) -> Unit) {
|
||||
fun PickerButton(current: String, options: List<String>, onPick: (String) -> Unit) {
|
||||
var open by remember { mutableStateOf(false) }
|
||||
// When an outside touch last closed the menu.
|
||||
//
|
||||
|
||||
@@ -6,8 +6,10 @@ import androidx.compose.foundation.layout.Spacer
|
||||
import androidx.compose.foundation.layout.fillMaxWidth
|
||||
import androidx.compose.foundation.layout.height
|
||||
import androidx.compose.foundation.layout.width
|
||||
import androidx.compose.foundation.rememberScrollState
|
||||
import androidx.compose.foundation.text.KeyboardActions
|
||||
import androidx.compose.foundation.text.KeyboardOptions
|
||||
import androidx.compose.foundation.verticalScroll
|
||||
import androidx.compose.material3.AlertDialog
|
||||
import androidx.compose.material3.CircularProgressIndicator
|
||||
import androidx.compose.material3.MaterialTheme
|
||||
@@ -26,6 +28,10 @@ import androidx.compose.ui.Alignment
|
||||
import androidx.compose.ui.Modifier
|
||||
import androidx.compose.ui.text.input.ImeAction
|
||||
import androidx.compose.ui.unit.dp
|
||||
import java.time.Instant
|
||||
import java.time.ZoneId
|
||||
import java.time.format.DateTimeFormatter
|
||||
import java.time.format.FormatStyle
|
||||
import kotlinx.coroutines.Dispatchers
|
||||
import kotlinx.coroutines.launch
|
||||
import kotlinx.coroutines.withContext
|
||||
@@ -54,6 +60,16 @@ fun SessionSettingsDialog(
|
||||
*/
|
||||
title: String,
|
||||
onRenamed: (String) -> Unit,
|
||||
/**
|
||||
* How hard the model thinks, as the session reports it, or null for the CLI's own default.
|
||||
*
|
||||
* Taken from the row this dialog was opened over rather than fetched, because unlike the
|
||||
* notification switch there is nothing else that changes it: the level is this app's to set and
|
||||
* the server does not resolve it into something else.
|
||||
*/
|
||||
effort: String?,
|
||||
/** Whether a level does anything here; the row is left out entirely where it does not. */
|
||||
takesEffort: Boolean,
|
||||
/**
|
||||
* What this phone is holding of the conversation, or null while that is being measured -- see
|
||||
* the Reload row below, which is what would discard it.
|
||||
@@ -66,9 +82,18 @@ fun SessionSettingsDialog(
|
||||
* measures is that screen's own state.
|
||||
*/
|
||||
onCopyRenderReport: () -> Unit,
|
||||
/**
|
||||
* Runs P0's scripted scroll-and-stream benchmark and copies the extended report, or null on
|
||||
* every build but `bench` -- see [BuildConfig.FIXTURE_MODE] and BenchRun.kt. Null rather than
|
||||
* always-present-but-disabled: this has no meaning at all outside the bench build, and a
|
||||
* control with nothing behind it on every other build is not a state worth drawing.
|
||||
*/
|
||||
onRunBenchmark: (() -> Unit)? = null,
|
||||
) {
|
||||
val scope = rememberCoroutineScope()
|
||||
var name by remember(sessionId) { mutableStateOf(title) }
|
||||
var level by remember(sessionId) { mutableStateOf(effort) }
|
||||
var effortError by remember { mutableStateOf<String?>(null) }
|
||||
var saving by remember { mutableStateOf(false) }
|
||||
var error by remember { mutableStateOf<String?>(null) }
|
||||
// Null until the server has been asked. The row this dialog was opened over is a snapshot of
|
||||
@@ -77,6 +102,16 @@ fun SessionSettingsDialog(
|
||||
// and a spinner sits beside it, which is what not knowing looks like.
|
||||
var notify by remember(sessionId) { mutableStateOf<Boolean?>(null) }
|
||||
var notifyError by remember { mutableStateOf<String?>(null) }
|
||||
// The same three-state shape the notification switch has, for the same reason: until the
|
||||
// server has answered, the switch is disabled rather than showing a position nothing confirmed.
|
||||
var autoResume by remember(sessionId) { mutableStateOf<Boolean?>(null) }
|
||||
var resumeMessage by remember(sessionId) { mutableStateOf(DEFAULT_RESUME_MESSAGE) }
|
||||
// When the server next intends to ask whether the limit has lifted, or null when nothing is
|
||||
// waiting. Read once with everything else: it moves on the server's schedule, not this
|
||||
// screen's, and a figure that redrew itself here would be this app re-measuring what it was
|
||||
// told.
|
||||
var resumeAt by remember(sessionId) { mutableStateOf<Double?>(null) }
|
||||
var resumeError by remember { mutableStateOf<String?>(null) }
|
||||
// Where the session works. Null until the server has been asked, for the same reason the switch
|
||||
// above is. An empty answer is a session that was never given a directory, which is not the
|
||||
// same as one whose directory is unknown -- the field is only enabled once one of those is
|
||||
@@ -90,6 +125,9 @@ fun SessionSettingsDialog(
|
||||
try {
|
||||
val fresh = withContext(Dispatchers.IO) { fetchSession(settings, sessionId) }
|
||||
notify = fresh.notify
|
||||
autoResume = fresh.autoResume
|
||||
resumeMessage = fresh.autoResumeMessage
|
||||
resumeAt = fresh.resumeAt
|
||||
cwd = fresh.cwd.orEmpty()
|
||||
typedCwd = fresh.cwd.orEmpty()
|
||||
} catch (e: ApiException) {
|
||||
@@ -97,6 +135,8 @@ fun SessionSettingsDialog(
|
||||
// instead of offering a position nothing confirmed.
|
||||
notifyError = e.message
|
||||
notify = null
|
||||
resumeError = e.message
|
||||
autoResume = null
|
||||
}
|
||||
}
|
||||
|
||||
@@ -125,6 +165,26 @@ fun SessionSettingsDialog(
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Chooses a thinking level, which ends the process the old level was launched with.
|
||||
*
|
||||
* Put back if the request is refused, for the reason the notification switch below gives: a
|
||||
* control that stays where it was put after a refusal is stating something untrue.
|
||||
*/
|
||||
fun setEffort(chosen: String?) {
|
||||
val was = level
|
||||
level = chosen
|
||||
effortError = null
|
||||
scope.launch {
|
||||
try {
|
||||
withContext(Dispatchers.IO) { setSessionEffort(settings, sessionId, chosen) }
|
||||
} catch (e: ApiException) {
|
||||
level = was
|
||||
effortError = e.message
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Moved optimistically so the switch answers the finger that moved it, and put back if the
|
||||
// request is refused -- a switch that waits for a round trip reads as broken on a slow tunnel,
|
||||
// and one that stays moved after a refusal lies.
|
||||
@@ -142,6 +202,39 @@ fun SessionSettingsDialog(
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
* Turns auto-resume on or off, or changes what it would say.
|
||||
*
|
||||
* One request for both, because the server takes one: switching it on and typing the message
|
||||
* are two halves of the same decision, and sending them separately would leave a moment where
|
||||
* the session is armed with the old words.
|
||||
*
|
||||
* Put back if refused, like the notification switch. Turning it off also clears what was
|
||||
* scheduled -- said here rather than only on the server, or the row would go on naming a time
|
||||
* that no longer exists.
|
||||
*/
|
||||
fun setAutoResume(on: Boolean, message: String) {
|
||||
val wasOn = autoResume
|
||||
val wasMessage = resumeMessage
|
||||
val wasAt = resumeAt
|
||||
autoResume = on
|
||||
resumeMessage = message
|
||||
if (!on) resumeAt = null
|
||||
resumeError = null
|
||||
scope.launch {
|
||||
try {
|
||||
withContext(Dispatchers.IO) {
|
||||
setSessionAutoResume(settings, sessionId, on, message)
|
||||
}
|
||||
} catch (e: ApiException) {
|
||||
autoResume = wasOn
|
||||
resumeMessage = wasMessage
|
||||
resumeAt = wasAt
|
||||
resumeError = e.message
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Nothing to do when the name has not changed, so the button says so rather than sending a
|
||||
// request whose success would look exactly like the failure of having typed nothing.
|
||||
val changed = name.trim().isNotEmpty() && name.trim() != title
|
||||
@@ -168,7 +261,10 @@ fun SessionSettingsDialog(
|
||||
onDismissRequest = onDismiss,
|
||||
title = { Text("Session settings") },
|
||||
text = {
|
||||
Column {
|
||||
// Scrollable, because this dialog grew past a screenful: a Material dialog constrains
|
||||
// its own height and clips what does not fit, so the last control on the list is one
|
||||
// large system font away from being unreachable with nothing on screen to say so.
|
||||
Column(Modifier.verticalScroll(rememberScrollState())) {
|
||||
OutlinedTextField(
|
||||
value = name,
|
||||
onValueChange = { name = it },
|
||||
@@ -212,6 +308,70 @@ fun SessionSettingsDialog(
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.height(8.dp))
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
) {
|
||||
Text("Resume after a usage limit", modifier = Modifier.weight(1f))
|
||||
if (autoResume == null && resumeError == null) {
|
||||
CircularProgressIndicator(
|
||||
modifier = Modifier.width(16.dp).height(16.dp),
|
||||
strokeWidth = 2.dp,
|
||||
)
|
||||
Spacer(Modifier.width(8.dp))
|
||||
}
|
||||
Switch(
|
||||
checked = autoResume == true,
|
||||
onCheckedChange = { setAutoResume(it, resumeMessage) },
|
||||
enabled = autoResume != null,
|
||||
)
|
||||
}
|
||||
// Disabled rather than hidden while the switch is off: a field that comes and goes
|
||||
// makes its own presence the signal, and a visible one teaches what the switch will
|
||||
// do. Committed on the keyboard's Done rather than on every keystroke, so typing a
|
||||
// sentence is one request instead of one per letter.
|
||||
OutlinedTextField(
|
||||
value = resumeMessage,
|
||||
onValueChange = { resumeMessage = it },
|
||||
label = { Text("Message to send") },
|
||||
// What an empty field means, in the field: the server's own word rather than a
|
||||
// session poked with nothing to read.
|
||||
placeholder = { Text(DEFAULT_RESUME_MESSAGE) },
|
||||
singleLine = true,
|
||||
enabled = autoResume == true,
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
keyboardOptions = KeyboardOptions(imeAction = ImeAction.Done),
|
||||
keyboardActions =
|
||||
KeyboardActions(onDone = { setAutoResume(true, resumeMessage) }),
|
||||
)
|
||||
// What it does and what it costs, in the order it happens. The last sentence is the
|
||||
// one that matters: the time below is when the server will *ask*, not a promise
|
||||
// about when the session speaks.
|
||||
Text(
|
||||
"When this session stops because the account is out of quota, the server " +
|
||||
"checks the limit and sends this message once it has lifted. It checks " +
|
||||
"again if the limit is still on.",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
// Only where something is actually waiting. Absent is not a state worth a row: a
|
||||
// session that has not hit a limit has nothing scheduled, which the reader can see
|
||||
// from the switch.
|
||||
resumeAt?.let { at ->
|
||||
Text(
|
||||
"Waiting now -- next check ${formatCheckTime(at)}.",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
}
|
||||
resumeError?.let {
|
||||
Text(
|
||||
it,
|
||||
color = MaterialTheme.colorScheme.error,
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.height(8.dp))
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
@@ -257,6 +417,44 @@ fun SessionSettingsDialog(
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
)
|
||||
}
|
||||
// Left out rather than disabled, the one place this dialog does that: a disabled
|
||||
// control teaches what the thing can do, and a llama session cannot do this at all
|
||||
// -- the row would be teaching something false about it.
|
||||
if (takesEffort) {
|
||||
Spacer(Modifier.height(8.dp))
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
) {
|
||||
Text("Thinking", modifier = Modifier.weight(1f))
|
||||
PickerButton(
|
||||
current = level ?: DEFAULT_EFFORT,
|
||||
// The level the CLI picks for itself is in the list as well as in the
|
||||
// button, so leaving a level is not a one-way trip -- the same
|
||||
// correction the model picker carries.
|
||||
options = listOf(DEFAULT_EFFORT) + EFFORT_LEVELS,
|
||||
onPick = { chosen ->
|
||||
setEffort(chosen.takeIf { it != DEFAULT_EFFORT })
|
||||
},
|
||||
)
|
||||
}
|
||||
// What it costs, said where it is about to be pressed, like Move above: the
|
||||
// CLI reads the level when it launches and has no control request for
|
||||
// changing one.
|
||||
Text(
|
||||
"Changing this stops the session's process. It starts again with the " +
|
||||
"next message, or with Start.",
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
effortError?.let {
|
||||
Text(
|
||||
it,
|
||||
color = MaterialTheme.colorScheme.error,
|
||||
style = MaterialTheme.typography.bodySmall,
|
||||
)
|
||||
}
|
||||
}
|
||||
Spacer(Modifier.height(8.dp))
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
@@ -317,6 +515,21 @@ fun SessionSettingsDialog(
|
||||
Text("Render timings", modifier = Modifier.weight(1f))
|
||||
TextButton(onClick = onCopyRenderReport) { Text("Copy") }
|
||||
}
|
||||
// Bench-build only: see [onRunBenchmark]. Named exactly "Run benchmark" because
|
||||
// ui-trace and the emulator smoke run find it by that label, the same way every
|
||||
// other control here is found -- see AGENTS.md's "Driving the UI".
|
||||
onRunBenchmark?.let { run ->
|
||||
Spacer(Modifier.height(8.dp))
|
||||
Row(
|
||||
verticalAlignment = Alignment.CenterVertically,
|
||||
modifier = Modifier.fillMaxWidth(),
|
||||
) {
|
||||
Glyph(SPEED_GLYPH, colour = MaterialTheme.colorScheme.onSurface)
|
||||
Spacer(Modifier.width(8.dp))
|
||||
Text("P0 benchmark", modifier = Modifier.weight(1f))
|
||||
TextButton(onClick = run) { Text("Run benchmark") }
|
||||
}
|
||||
}
|
||||
}
|
||||
},
|
||||
// Disabled rather than absent while there is nothing to save: a button that comes and goes
|
||||
@@ -329,3 +542,21 @@ fun SessionSettingsDialog(
|
||||
dismissButton = { TextButton(onClick = onDismiss) { Text("Close") } },
|
||||
)
|
||||
}
|
||||
|
||||
/**
|
||||
* When the server will next look, as a local time.
|
||||
*
|
||||
* A time rather than a countdown, for the reason the transcript's own limit row gives: this screen
|
||||
* reads the figure once, and a span drawn from a value nothing refreshes goes stale while somebody
|
||||
* is looking at it.
|
||||
*/
|
||||
private fun formatCheckTime(epochSeconds: Double): String =
|
||||
try {
|
||||
DateTimeFormatter.ofLocalizedTime(FormatStyle.SHORT)
|
||||
.withZone(ZoneId.systemDefault())
|
||||
.format(Instant.ofEpochSecond(epochSeconds.toLong()))
|
||||
} catch (_: Exception) {
|
||||
// A time that cannot be read is not a time to show: the sentence above still says a check
|
||||
// is coming, which is the part the reader can act on.
|
||||
"soon"
|
||||
}
|
||||
@@ -70,13 +70,22 @@ class UsageFeed(
|
||||
/** Ask the backend again now. The dialog's refresh button; the poll does it on its own. */
|
||||
val refresh: () -> Unit,
|
||||
) {
|
||||
/** What [setup]'s own limits came back as. See [usageFor] for why the states are these. */
|
||||
fun forSetup(setup: String): SessionUsage =
|
||||
when (val state = snapshots) {
|
||||
/**
|
||||
* What meters [session], and what that meter came back as. See [usageFor] for the states.
|
||||
*
|
||||
* A session rather than a machine, because a machine is not what is metered: one machine runs
|
||||
* the Claude CLI and an echo session side by side, and only the first of them spends anything.
|
||||
*/
|
||||
fun forSession(session: SessionSummary): SessionUsage {
|
||||
// Settled without asking anybody: a session nothing meters has nothing to check, and
|
||||
// "checking" is what the fetch's own states would say about it for as long as one is out.
|
||||
val provider = session.usageProvider ?: return SessionUsage.NotMetered
|
||||
return when (val state = snapshots) {
|
||||
is LoadState.Loading -> SessionUsage.Waiting
|
||||
is LoadState.Error -> SessionUsage.Unavailable(state.message)
|
||||
is LoadState.Loaded -> usageFor(state.value, setup)
|
||||
is LoadState.Loaded -> usageFor(state.value, session.setup, provider)
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -158,9 +167,15 @@ fun SessionUsageBar(usage: SessionUsage, modifier: Modifier = Modifier) {
|
||||
}
|
||||
}
|
||||
|
||||
// Nothing at all for a machine that meters nothing: a row saying "unknown" there would report a
|
||||
// problem about a setup somebody chose, on every screen, forever.
|
||||
if (usage is SessionUsage.NotMetered) {
|
||||
// Nothing at all for a session that meters nothing: a row saying "unknown" there would report
|
||||
// a problem about a setup somebody chose, on every screen, forever.
|
||||
//
|
||||
// And nothing while the first fetch is out, which is a different silence. A request in flight
|
||||
// is not a state to report -- and the session that meters nothing is exactly the one this
|
||||
// cannot yet tell apart, so "5-hour usage: checking" appeared under an echo session for half a
|
||||
// second and was then taken away. A row that has to be withdrawn is worse than one that
|
||||
// arrives late.
|
||||
if (usage is SessionUsage.NotMetered || usage is SessionUsage.Waiting) {
|
||||
return
|
||||
}
|
||||
|
||||
@@ -171,9 +186,10 @@ fun SessionUsageBar(usage: SessionUsage, modifier: Modifier = Modifier) {
|
||||
// Words, not a colour and not an empty bar: every one of these is a different kind of
|
||||
// answer from "this much is used", and only words carry a difference in kind.
|
||||
when (val state = usage) {
|
||||
SessionUsage.NotMetered -> Unit
|
||||
// Both handled above, before the row exists at all.
|
||||
SessionUsage.NotMetered,
|
||||
SessionUsage.Waiting -> Unit
|
||||
is SessionUsage.Unavailable -> UsageNote("5-hour usage unknown -- ${state.why}")
|
||||
SessionUsage.Waiting -> UsageNote("5-hour usage: checking")
|
||||
is SessionUsage.Known -> {
|
||||
val window = state.windows.firstOrNull { it.kind == "session" }
|
||||
if (window == null) {
|
||||
@@ -234,16 +250,22 @@ private fun fiveHourLabel(window: UsageWindow, now: OffsetDateTime): String {
|
||||
}
|
||||
|
||||
/**
|
||||
* One machine's snapshot, out of every machine's.
|
||||
* One meter's snapshot, out of every machine's: [setup]'s row for [provider].
|
||||
*
|
||||
* Both halves are needed to pick it. A machine can hold more than one meter -- the Claude CLI's
|
||||
* account and, while a test has one set, an echo session's invented one -- and a snapshot is one
|
||||
* service on one machine.
|
||||
*
|
||||
* Every way of having *failed* to get numbers is [SessionUsage.Unavailable] with the reason in it.
|
||||
* None of them may look like zero, and none may look like [SessionUsage.NotMetered], which is the
|
||||
* machine having no quota rather than the question going unanswered.
|
||||
*/
|
||||
fun usageFor(snapshots: List<UsageSnapshot>, setup: String): SessionUsage {
|
||||
// No snapshot at all means the backend never asked, which it only does for a machine with
|
||||
// nothing metered on it. That is a different answer from having asked and failed.
|
||||
val mine = snapshots.firstOrNull { it.setup == setup } ?: return SessionUsage.NotMetered
|
||||
fun usageFor(snapshots: List<UsageSnapshot>, setup: String, provider: String): SessionUsage {
|
||||
// No snapshot at all means the backend never asked, which it only does where there is nothing
|
||||
// to ask about. That is a different answer from having asked and failed.
|
||||
val mine =
|
||||
snapshots.firstOrNull { it.setup == setup && it.provider == provider }
|
||||
?: return SessionUsage.NotMetered
|
||||
if (mine.state != "ok") {
|
||||
return SessionUsage.Unavailable(mine.detail ?: mine.state)
|
||||
}
|
||||
|
||||
@@ -236,6 +236,7 @@ private fun AddSetupDialog(
|
||||
var address by remember { mutableStateOf("") }
|
||||
var identity by remember { mutableStateOf("") }
|
||||
var attachmentsDir by remember { mutableStateOf("") }
|
||||
var modelsDir by remember { mutableStateOf("") }
|
||||
var tested by remember { mutableStateOf<String?>(null) }
|
||||
var testing by remember { mutableStateOf(false) }
|
||||
|
||||
@@ -250,6 +251,7 @@ private fun AddSetupDialog(
|
||||
port = typedPort,
|
||||
identityFile = identity.trim().ifEmpty { null },
|
||||
attachmentsDir = attachmentsDir.trim().ifEmpty { null },
|
||||
modelsDir = modelsDir.trim().ifEmpty { null },
|
||||
)
|
||||
}
|
||||
|
||||
@@ -293,6 +295,14 @@ private fun AddSetupDialog(
|
||||
label = { Text("Folder for attached files (optional)") },
|
||||
singleLine = true,
|
||||
)
|
||||
// Where that machine's GGUFs are, for a llama.cpp session on it. Blank means
|
||||
// the same place this backend keeps its own downloads, read on that machine.
|
||||
OutlinedTextField(
|
||||
value = modelsDir,
|
||||
onValueChange = { modelsDir = it },
|
||||
label = { Text("Folder for models (optional)") },
|
||||
singleLine = true,
|
||||
)
|
||||
tested?.let {
|
||||
Spacer(Modifier.height(8.dp))
|
||||
Text(it, style = MaterialTheme.typography.bodySmall)
|
||||
|
||||
@@ -61,18 +61,31 @@ fun SpawnScreen(
|
||||
// "auto" rather than "manual": on a phone every ask is a round trip to a question card, and
|
||||
// answering "allow Bash?" dozens of times per task is what this app exists to avoid.
|
||||
var permissionMode by remember { mutableStateOf("auto") }
|
||||
// Null until the server has been asked, and null again if it answers "no level chosen" -- the
|
||||
// two are told apart by [defaultsAsked], because a picker that shows a level before the answer
|
||||
// arrives is one you can spawn at without having chosen it.
|
||||
var effort by remember { mutableStateOf<String?>(null) }
|
||||
var defaultsAsked by remember { mutableStateOf(false) }
|
||||
var busy by remember { mutableStateOf(false) }
|
||||
// Only the spawn's own failure. The fetch's lives in `options`: this one leaves a filled-in
|
||||
// form worth keeping, and that one leaves nothing to fill in.
|
||||
var spawnError by remember { mutableStateOf<String?>(null) }
|
||||
// Downloaded models, for a llama provider to choose between. Kept separate from the setups: a
|
||||
// Claude session needs none, so failing to list them must not stop the screen rendering.
|
||||
// The models on the *chosen machine*, for a llama provider to choose between. Kept separate
|
||||
// from the setups: a Claude session needs none, so failing to list them must not stop the
|
||||
// screen rendering. Refetched when the machine changes, because a model is a file on one
|
||||
// machine -- see [fetchSetupModels].
|
||||
var models by remember { mutableStateOf<List<LocalModel>>(emptyList()) }
|
||||
var modelKey by remember { mutableStateOf<String?>(null) }
|
||||
var contextSize by remember { mutableStateOf("") }
|
||||
var temperature by remember { mutableStateOf("") }
|
||||
|
||||
LaunchedEffect(Unit) {
|
||||
// Separate from the setups fetch below and deliberately not fatal: failing to learn the
|
||||
// default must leave a screen you can still spawn from, so the picker stays on "default"
|
||||
// and says so rather than the whole form refusing to draw.
|
||||
runCatching { withContext(Dispatchers.IO) { fetchDefaultEffort(settings) } }
|
||||
.onSuccess { effort = it }
|
||||
defaultsAsked = true
|
||||
options =
|
||||
try {
|
||||
val fetched = withContext(Dispatchers.IO) { fetchSetups(settings) }
|
||||
@@ -83,9 +96,6 @@ fun SpawnScreen(
|
||||
} catch (e: ApiException) {
|
||||
LoadState.failed(e)
|
||||
}
|
||||
models =
|
||||
runCatching { withContext(Dispatchers.IO) { fetchModels(settings).local } }
|
||||
.getOrDefault(emptyList())
|
||||
}
|
||||
|
||||
Column(Modifier.fillMaxSize().verticalScroll(rememberScrollState()).padding(16.dp)) {
|
||||
@@ -115,6 +125,17 @@ fun SpawnScreen(
|
||||
is LoadState.Loaded -> state.value
|
||||
}
|
||||
val setup = setups.firstOrNull { it.name == setupName }
|
||||
// Whichever machine is chosen now, asked again when that changes. The old machine's list
|
||||
// is dropped first rather than left on screen: a file name from another machine looks
|
||||
// exactly like one from this one.
|
||||
LaunchedEffect(setup?.id) {
|
||||
models = emptyList()
|
||||
modelKey = null
|
||||
val id = setup?.id ?: return@LaunchedEffect
|
||||
models =
|
||||
runCatching { withContext(Dispatchers.IO) { fetchSetupModels(settings, id) } }
|
||||
.getOrDefault(emptyList())
|
||||
}
|
||||
val current = setup?.providers?.firstOrNull { it.name == providerName }
|
||||
// Only the Claude CLI has models, a working directory and permission modes; keying the
|
||||
// extra fields on the kind rather than the provider name keeps a second Claude provider
|
||||
@@ -175,12 +196,13 @@ fun SpawnScreen(
|
||||
)
|
||||
|
||||
if (isLlama) {
|
||||
// A llama session names one of the models this backend has downloaded, so the choice is
|
||||
// that list rather than free text -- a name that is not on disk is a session that
|
||||
// cannot start.
|
||||
// A llama session names one of the models on the machine it will run on, so the
|
||||
// choice is that list rather than free text -- a name that is not on that machine's
|
||||
// disk is a session that cannot start.
|
||||
if (models.isEmpty()) {
|
||||
Text(
|
||||
"No models downloaded yet. Get one from the Models screen first.",
|
||||
"No models on ${setup?.name ?: "this machine"}. The Models screen downloads " +
|
||||
"to the backend; another machine needs the file put there itself.",
|
||||
style = MaterialTheme.typography.bodyMedium,
|
||||
color = MaterialTheme.colorScheme.onSurfaceVariant,
|
||||
)
|
||||
@@ -251,6 +273,19 @@ fun SpawnScreen(
|
||||
selected = permissionMode,
|
||||
onSelect = { permissionMode = it },
|
||||
)
|
||||
Spacer(Modifier.height(16.dp))
|
||||
|
||||
// Says what it does to *later* spawns as well, because it does: the level chosen here
|
||||
// is stored as the default, which is the whole way that default is set. A picker that
|
||||
// quietly changed a global would be the same control with the fact left out.
|
||||
ChipGroup(
|
||||
label = "Thinking (kept as the default for new sessions)",
|
||||
options = listOf(DEFAULT_EFFORT) + EFFORT_LEVELS,
|
||||
// The CLI's own default is a level in the list, so this cannot be a one-way trip.
|
||||
// Disabled-looking until the server has answered, for the reason above.
|
||||
selected = if (defaultsAsked) effort ?: DEFAULT_EFFORT else null,
|
||||
onSelect = { chosen -> effort = chosen.takeIf { it != DEFAULT_EFFORT } },
|
||||
)
|
||||
}
|
||||
Spacer(Modifier.height(24.dp))
|
||||
|
||||
@@ -268,6 +303,13 @@ fun SpawnScreen(
|
||||
try {
|
||||
val spawned =
|
||||
withContext(Dispatchers.IO) {
|
||||
// Stored before the spawn and not after it: choosing a level is
|
||||
// an intent about new sessions in general, so a spawn that then
|
||||
// fails must not also lose the choice. Non-fatal for the same
|
||||
// reason the fetch above is -- the session is what was asked for.
|
||||
if (isClaude) {
|
||||
runCatching { setDefaultEffort(settings, effort) }
|
||||
}
|
||||
spawnSession(
|
||||
settings,
|
||||
// The id, not the label: labels are editable and the server
|
||||
@@ -280,6 +322,7 @@ fun SpawnScreen(
|
||||
if (isLlama) modelKey else model.trim().takeIf { isClaude },
|
||||
cwd = cwd.trim().takeIf { isClaude },
|
||||
permissionMode = permissionMode.takeIf { isClaude },
|
||||
effort = effort.takeIf { isClaude },
|
||||
// Sent only when set, so blank means "whatever llama.cpp does
|
||||
// by default" rather than a zero.
|
||||
params =
|
||||
|
||||
@@ -0,0 +1,27 @@
|
||||
package com.example.aiapp
|
||||
|
||||
/**
|
||||
* Where one transcript lives: a session's own, or one of its subagents'.
|
||||
*
|
||||
* The single mechanism [fetchTranscript], [EventStream], [TranscriptSource] and
|
||||
* [TranscriptCache.session] all take, rather than each growing its own branch between a session and
|
||||
* a subagent -- see SUBAGENTS.md's "Phone" and "Wire shape". A caller that has only a session id
|
||||
* builds one with the one-argument constructor; a subagent's screen supplies both ids.
|
||||
*/
|
||||
data class TranscriptAddress(val sessionId: String, val subagentId: String? = null) {
|
||||
/** The URL segment naming this transcript, before `/transcript` or `/events`. */
|
||||
val urlPath: String
|
||||
get() =
|
||||
if (subagentId == null) "sessions/$sessionId"
|
||||
else "sessions/$sessionId/subagents/$subagentId"
|
||||
|
||||
/**
|
||||
* Where this transcript's cache lives on the phone, relative to the cache root.
|
||||
*
|
||||
* A subagent's nests under its session's directory rather than sitting beside it, so deleting a
|
||||
* session's cache directory takes its subagents' with it -- the same one-way door the server's
|
||||
* own storage describes.
|
||||
*/
|
||||
val cachePath: String
|
||||
get() = if (subagentId == null) sessionId else "$sessionId/subagents/$subagentId"
|
||||
}
|
||||
@@ -35,8 +35,15 @@ class TranscriptCache(
|
||||
private val root: File,
|
||||
private val warn: (String) -> Unit = { Log.w("ai-app", it) },
|
||||
) {
|
||||
/** The cache for one session, whether or not anything has been stored for it yet. */
|
||||
fun session(id: String): SessionCache = SessionCache(File(root, id), warn)
|
||||
/**
|
||||
* The cache for one transcript, whether or not anything has been stored for it yet.
|
||||
*
|
||||
* A subagent's [TranscriptAddress.cachePath] nests it under its session's directory, so
|
||||
* deleting the session (below) takes its subagents' caches with it -- there is no separate
|
||||
* purge for one.
|
||||
*/
|
||||
fun session(address: TranscriptAddress): SessionCache =
|
||||
SessionCache(File(root, address.cachePath), warn)
|
||||
|
||||
/**
|
||||
* Deletes every session directory not in [ids], called after a successful list fetch. The path
|
||||
|
||||
@@ -175,6 +175,18 @@ sealed class TranscriptItem {
|
||||
val preTokens: Long?,
|
||||
val postTokens: Long?,
|
||||
) : TranscriptItem()
|
||||
|
||||
/**
|
||||
* The account ran out of quota, so the turn stopped here.
|
||||
*
|
||||
* A divider rather than an error: nothing failed, and what a reader scrolling back needs from
|
||||
* it is the same thing a clear or a compaction gives them -- why the conversation stops at this
|
||||
* line.
|
||||
*
|
||||
* [resetsAt] is epoch seconds and null where the session was told nothing, which is a state the
|
||||
* row has words for rather than a time it invents.
|
||||
*/
|
||||
data class LimitNote(override val seq: Long, val resetsAt: Double?) : TranscriptItem()
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -458,6 +470,7 @@ fun foldEvent(items: List<TranscriptItem>, entry: SeqEvent): List<TranscriptItem
|
||||
} else {
|
||||
items + TranscriptItem.ImageItem(entry.seq, event.ref)
|
||||
}
|
||||
is SessionEvent.LimitReached -> items + TranscriptItem.LimitNote(entry.seq, event.resetsAt)
|
||||
is SessionEvent.Cleared -> items + TranscriptItem.ClearedNote(entry.seq)
|
||||
is SessionEvent.Compacted ->
|
||||
items + TranscriptItem.CompactedNote(entry.seq, event.preTokens, event.postTokens)
|
||||
|
||||
@@ -18,7 +18,7 @@ import java.util.concurrent.atomic.AtomicReference
|
||||
*/
|
||||
class TranscriptSource(
|
||||
private val settings: ServerSettings,
|
||||
private val sessionId: String,
|
||||
private val address: TranscriptAddress,
|
||||
val cache: SessionCache,
|
||||
) {
|
||||
private val stream = AtomicReference<EventStream?>(null)
|
||||
@@ -65,7 +65,7 @@ class TranscriptSource(
|
||||
val tail = cache.tail() ?: return false
|
||||
// `before = seq + 1` is the newest event with seq <= the cursor, which is the event *at*
|
||||
// the cursor when the server still has one there.
|
||||
val answer = fetchTranscript(settings, sessionId, before = tail.seq + 1, limit = 1)
|
||||
val answer = fetchTranscript(settings, address, before = tail.seq + 1, limit = 1)
|
||||
val matches =
|
||||
answer.size == 1 &&
|
||||
try {
|
||||
@@ -83,7 +83,7 @@ class TranscriptSource(
|
||||
*/
|
||||
suspend fun fetchOpening(): List<SeqEvent> {
|
||||
DebugStats.count("transcript page from server")
|
||||
val page = fetchTranscript(settings, sessionId, limit = OPENING_WINDOW)
|
||||
val page = fetchTranscript(settings, address, limit = OPENING_WINDOW)
|
||||
page.forEach { (line, entry) -> cache.append(line, entry.seq) }
|
||||
cache.flush()
|
||||
return page.map { it.second }
|
||||
@@ -108,7 +108,7 @@ class TranscriptSource(
|
||||
val page =
|
||||
fetchTranscript(
|
||||
settings,
|
||||
sessionId,
|
||||
address,
|
||||
before = before,
|
||||
limit = limit,
|
||||
coalesce = coalesce,
|
||||
@@ -131,7 +131,7 @@ class TranscriptSource(
|
||||
* well lose.
|
||||
*/
|
||||
fun follow(after: Long, onOpen: () -> Unit, onReset: () -> Unit, onEvent: (SeqEvent) -> Unit) {
|
||||
val opened = EventStream(settings, sessionId)
|
||||
val opened = EventStream(settings, address)
|
||||
stream.getAndSet(opened)?.close()
|
||||
try {
|
||||
opened.run(after, onOpen, onReset) { raw, entry ->
|
||||
|
||||
@@ -0,0 +1,6 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<resources>
|
||||
<!-- Overridden by the `bench` build type's resValue (build.gradle.kts) to "AI Sessions bench",
|
||||
so the two are never mistaken for each other in the launcher or in Settings. -->
|
||||
<string name="app_name">AI Sessions</string>
|
||||
</resources>
|
||||
@@ -0,0 +1,32 @@
|
||||
package com.example.aiapp
|
||||
|
||||
import java.time.ZoneId
|
||||
import kotlin.test.Test
|
||||
import kotlin.test.assertEquals
|
||||
import kotlin.test.assertTrue
|
||||
|
||||
/**
|
||||
* What the transcript says where a session ran out of quota.
|
||||
*
|
||||
* The pair worth a test is the one that reads the same when it goes wrong: a reset time that
|
||||
* arrived and one that never did. The second must not turn into a plausible-looking time, because a
|
||||
* reader has no way of telling an invented one from a reported one.
|
||||
*/
|
||||
class LimitRowTest {
|
||||
private val utc = ZoneId.of("UTC")
|
||||
|
||||
@Test
|
||||
fun `a reported reset time is shown as a time`() {
|
||||
// 2026-09-05T12:00:00Z. Asserted as a prefix and the clock reading rather than as the
|
||||
// whole string: the platform's own short-time format is what this asks for, and it
|
||||
// differs by JDK and locale down to which space character separates the meridiem.
|
||||
val summary = limitSummary(1_788_609_600.0, utc)
|
||||
assertTrue(summary.startsWith("Usage limit reached • resets "), summary)
|
||||
assertTrue(summary.contains("12:00"), summary)
|
||||
}
|
||||
|
||||
@Test
|
||||
fun `a limit with no reset time says only what is known`() {
|
||||
assertEquals("Usage limit reached", limitSummary(null, utc))
|
||||
}
|
||||
}
|
||||
@@ -23,7 +23,7 @@ class TranscriptCacheTest {
|
||||
|
||||
private fun cache() = TranscriptCache(File(temp, "v1/host_8443")) { said += it }
|
||||
|
||||
private fun session(id: String = "s") = cache().session(id)
|
||||
private fun session(id: String = "s") = cache().session(TranscriptAddress(id))
|
||||
|
||||
private fun line(seq: Long, type: String = "toolStart") =
|
||||
"""{"seq":$seq,"ts":1.5,"type":"$type","id":"x"}"""
|
||||
|
||||
@@ -0,0 +1,28 @@
|
||||
# The P0 benchmark fixture
|
||||
|
||||
`transcript.jsonl` is a synthetic transcript in the app's own event model (the JSON lines
|
||||
`GET /sessions/{id}/transcript` returns; see `Events.kt`'s `parseSeqEvent` and
|
||||
`server/src/session/driver.rs`) -- never a real one. It is what both the Compose `bench` build
|
||||
and iris's bench build open with no server, so the two apps draw exactly the same content and a
|
||||
frame-time comparison is measuring the renderer rather than the data.
|
||||
|
||||
Generated by `./generate.py` (Python stdlib only, seeded -- `SEED = 20260905` -- so re-running it
|
||||
reproduces the same file byte for byte). It writes into `assets/` -- a separate directory from this
|
||||
script and README, because the Compose `bench` build type points its own asset source set straight
|
||||
at `assets/` (`app/androidApp/build.gradle.kts`'s `sourceSets { getByName("bench") }`), and a Python
|
||||
script and a markdown file have no business inside an APK:
|
||||
|
||||
- `transcript.jsonl` -- 3,601 events. The first 3,200 (`BACKLOG_COUNT`) are the scrolled-back
|
||||
history the benchmark opens with: user turns, tool calls with kilobyte-scale input/output,
|
||||
assistant replies built from headings, bold/italic/inline code, a link, fenced code blocks that
|
||||
rotate through rust/kotlin/python/sh/json/toml, a markdown table, two embedded images, and
|
||||
periodic `usageDelta`/`compacted` events. The remaining 400 (`STREAM_COUNT`) are not part of the
|
||||
opening window -- both bench harnesses replay them at a fixed rate (20/s) through the same live
|
||||
fold path a real SSE reply arrives on, which is P0's "streaming phase."
|
||||
- `bench1.png`, `bench2.png` -- tiny (8x8) flat-colour PNGs, base64-free on disk but served the
|
||||
same way a real attachment is (`GET /sessions/{id}/files/{name}`), referenced by the two
|
||||
`"type":"image"` events in the transcript.
|
||||
|
||||
Regenerate after changing the shape (a new event type, a different backlog/stream split) with
|
||||
`./generate.py`, and commit the result -- it is checked in rather than generated at build time so
|
||||
both apps' bench builds embed the identical bytes without needing this script at build time.
|
||||
Binary file not shown.
|
After Width: | Height: | Size: 74 B |
Binary file not shown.
|
After Width: | Height: | Size: 74 B |
File diff suppressed because it is too large.
Load diff
Executable
+186
@@ -0,0 +1,186 @@
|
||||
#!/usr/bin/env python3
|
||||
"""Generates transcript.jsonl -- the synthetic fixture P0's benchmark opens in both apps.
|
||||
|
||||
Deterministic (fixed seed), so a Compose bench APK and an iris bench APK draw byte-identical
|
||||
content: the point of the fixture is a like-for-like comparison, not a realistic one.
|
||||
|
||||
Never a real transcript -- see AGENTS.md's ui-sandbox.sh, which this borrows its vocabulary
|
||||
style from (headings, code fences, a table, a link) rather than reusing its Claude-Code JSONL
|
||||
shape. This file's shape is the *app's own event model* instead: one JSON object per line,
|
||||
matching what GET /sessions/{id}/transcript returns and what Events.kt's parseSeqEvent reads
|
||||
(server/src/session/driver.rs is the source of truth for the field names).
|
||||
|
||||
./generate.py writes transcript.jsonl and bench1.png/bench2.png here
|
||||
|
||||
BACKLOG_COUNT events (seq 1..BACKLOG_COUNT) are the scrolled-back history the benchmark opens
|
||||
with. A further STREAM_COUNT events (seq BACKLOG_COUNT+1..) are not part of the opening window;
|
||||
both bench harnesses replay them at a fixed rate as the "streaming reply" phase, appended through
|
||||
the same live path a real SSE reply arrives on. Keeping both halves in one file means one
|
||||
generator and one seed to keep in sync, rather than two fixtures that can drift apart.
|
||||
"""
|
||||
import base64
|
||||
import json
|
||||
import random
|
||||
import struct
|
||||
import zlib
|
||||
from pathlib import Path
|
||||
|
||||
SEED = 20260905
|
||||
BACKLOG_COUNT = 3200
|
||||
STREAM_COUNT = 400
|
||||
HERE = Path(__file__).resolve().parent / "assets"
|
||||
|
||||
random.seed(SEED)
|
||||
|
||||
LANGUAGES = ["rust", "kotlin", "python", "sh", "json", "toml"]
|
||||
|
||||
CODE_SNIPPETS = {
|
||||
"rust": '''fn fold_event(items: Vec<Item>, seq: u64) -> Vec<Item> {
|
||||
// a comment worth keeping: this is the fold the app's own screen runs
|
||||
let mut out = items;
|
||||
out.push(Item::new(seq));
|
||||
out
|
||||
}''',
|
||||
"kotlin": '''fun foldEvent(items: List<TranscriptItem>, entry: SeqEvent): List<TranscriptItem> {
|
||||
// mirrors the server's own event model, one item per line
|
||||
return items + TranscriptItem.from(entry)
|
||||
}''',
|
||||
"python": '''def render_report(frames, cpu_ms, rss_kb):
|
||||
# printed for a human to paste back, so every number carries its unit
|
||||
return f"{frames} frames, {cpu_ms}ms cpu, {rss_kb}kb peak rss"''',
|
||||
"sh": '''#!/bin/sh
|
||||
# scripted scroll loop, the shape transcript-bench.sh drives on a phone
|
||||
for i in $(seq 1 24); do
|
||||
ui-trace record --do "swipe 540 700 540 1600 200"
|
||||
done''',
|
||||
"json": '{"seq": 1, "type": "status", "state": "running"}',
|
||||
"toml": '''[package]
|
||||
name = "bench-fixture"
|
||||
version = "0.1.0"''',
|
||||
}
|
||||
|
||||
HEADINGS = [
|
||||
"## Plan",
|
||||
"## What changed",
|
||||
"## Why this approach",
|
||||
"### Open questions",
|
||||
"## Results",
|
||||
]
|
||||
|
||||
WORDS = (
|
||||
"session render report frame budget scroll transcript fold event cache "
|
||||
"cursor probe stream backlog swipe fixture bench compose iris widget layout "
|
||||
"measure place draw tool call token context window anchor"
|
||||
).split()
|
||||
|
||||
|
||||
def paragraph(n=24):
|
||||
words = [random.choice(WORDS) for _ in range(n)]
|
||||
words[0] = words[0].capitalize()
|
||||
text = " ".join(words) + "."
|
||||
# Sprinkle markdown inline spans so the syntax highlighter/markdown parser sees a real mix.
|
||||
text = text.replace(" fold ", " **fold** ", 1)
|
||||
text = text.replace(" cursor ", " *cursor* ", 1)
|
||||
text = text.replace(" cache ", " `cache` ", 1)
|
||||
if "bench" in text:
|
||||
text = text.replace(
|
||||
" bench ", " [bench](https://example.com/bench) ", 1
|
||||
)
|
||||
return text
|
||||
|
||||
|
||||
def make_png(rgb, size=8):
|
||||
"""A tiny, valid PNG -- flat colour, no external dependency."""
|
||||
|
||||
def chunk(tag, data):
|
||||
c = tag + data
|
||||
return struct.pack(">I", len(data)) + c + struct.pack(">I", zlib.crc32(c))
|
||||
|
||||
sig = b"\x89PNG\r\n\x1a\n"
|
||||
ihdr = struct.pack(">IIBBBBB", size, size, 8, 2, 0, 0, 0)
|
||||
raw = b""
|
||||
for _ in range(size):
|
||||
raw += b"\x00" + bytes(rgb) * size
|
||||
idat = zlib.compress(raw)
|
||||
return sig + chunk(b"IHDR", ihdr) + chunk(b"IDAT", idat) + chunk(b"IEND", b"")
|
||||
|
||||
|
||||
def main():
|
||||
HERE.mkdir(exist_ok=True)
|
||||
lines = []
|
||||
seq = 1
|
||||
ts = 1_788_000_000.0
|
||||
|
||||
def emit(type_, **fields):
|
||||
nonlocal seq, ts
|
||||
obj = {"seq": seq, "ts": round(ts, 3), "type": type_}
|
||||
obj.update(fields)
|
||||
lines.append(json.dumps(obj, separators=(",", ":")))
|
||||
seq += 1
|
||||
ts += random.uniform(0.05, 2.0)
|
||||
|
||||
emit("status", state="running")
|
||||
emit("settings", model="bench-model", permissionMode="auto")
|
||||
|
||||
image_refs = []
|
||||
turn = 0
|
||||
while seq <= BACKLOG_COUNT:
|
||||
turn += 1
|
||||
emit("userMessage", text=f"Turn {turn}: {paragraph(12)}", id=None, attachments=[])
|
||||
|
||||
# A tool call with kilobyte-scale input/output every few turns.
|
||||
if turn % 3 == 0:
|
||||
tool_id = f"tool-{turn}"
|
||||
big_input = json.dumps({"path": f"/repo/file_{turn}.rs", "content": paragraph(400)})
|
||||
emit("toolStart", id=tool_id, tool="Edit", input=big_input)
|
||||
big_output = "\n".join(paragraph(60) for _ in range(20))
|
||||
emit("toolUpdate", id=tool_id, output=big_output[: len(big_output) // 2])
|
||||
emit("toolEnd", id=tool_id, output=big_output)
|
||||
|
||||
# A reply: a heading, prose, a fenced block in a rotating language, a table, then deltas.
|
||||
emit("assistantText", delta=f"{random.choice(HEADINGS)}\n\n")
|
||||
emit("assistantText", delta=paragraph(30) + "\n\n")
|
||||
lang = LANGUAGES[turn % len(LANGUAGES)]
|
||||
emit("assistantText", delta=f"```{lang}\n{CODE_SNIPPETS[lang]}\n```\n\n")
|
||||
if turn % 5 == 0:
|
||||
emit(
|
||||
"assistantText",
|
||||
delta="| column | value |\n|---|---|\n| a | " + paragraph(3) + " |\n\n",
|
||||
)
|
||||
# A run of small deltas -- the shape a live reply actually streams in.
|
||||
for _ in range(random.randint(3, 8)):
|
||||
emit("assistantText", delta=paragraph(6) + " ")
|
||||
|
||||
# A couple of images, base64 PNGs, the way a real transcript embeds a screenshot.
|
||||
if turn in (10, 40):
|
||||
ref = f"bench{len(image_refs) + 1}.png"
|
||||
image_refs.append(ref)
|
||||
emit("image", ref=ref, about=None)
|
||||
|
||||
emit("usageDelta", tokens=random.randint(200, 4000), context=random.randint(2000, 180000))
|
||||
|
||||
if turn % 15 == 0:
|
||||
emit(
|
||||
"compacted",
|
||||
preTokens=180000,
|
||||
postTokens=20000,
|
||||
trigger="auto",
|
||||
)
|
||||
|
||||
# The streaming-phase tail: one long reply, built entirely from text deltas, the shape a
|
||||
# bench harness replays at a fixed events/sec through the live fold path.
|
||||
emit("userMessage", text="One more, streamed live for the benchmark's timing phase.", id=None, attachments=[])
|
||||
while seq <= BACKLOG_COUNT + STREAM_COUNT:
|
||||
emit("assistantText", delta=paragraph(5) + " ")
|
||||
emit("status", state="idle")
|
||||
|
||||
(HERE / "transcript.jsonl").write_text("\n".join(lines) + "\n")
|
||||
|
||||
(HERE / "bench1.png").write_bytes(make_png((220, 90, 90)))
|
||||
(HERE / "bench2.png").write_bytes(make_png((90, 150, 220)))
|
||||
|
||||
print(f"wrote {len(lines)} events ({BACKLOG_COUNT} backlog + {STREAM_COUNT} stream) to transcript.jsonl")
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
+9
-3
@@ -4,6 +4,11 @@
|
||||
# ./build-apk.sh the release build, signed (what the phone runs)
|
||||
# ./build-apk.sh debug the debug build, for reproducing something the
|
||||
# emulator scripts would build anyway
|
||||
# ./build-apk.sh bench P0's benchmark build (own app id, "AI Sessions
|
||||
# bench" label, opens straight onto the fixture
|
||||
# session -- see docs/RUST.md's P0 box and
|
||||
# app/bench-fixture/README.md). Signed the same
|
||||
# as release; never touches the CA it pins.
|
||||
#
|
||||
# Dev Updater's `.dev-updater.ron` at the checkout root spells these out as
|
||||
# build modes, one command line each; it passes nothing else, so the word
|
||||
@@ -25,8 +30,9 @@ VARIANT=${1:-release}
|
||||
case "$VARIANT" in
|
||||
release) TASK=assembleRelease ;;
|
||||
debug) TASK=assembleDebug ;;
|
||||
bench) TASK=assembleBench ;;
|
||||
*)
|
||||
echo "build-apk.sh: unknown variant '$VARIANT' (release, debug)" >&2
|
||||
echo "build-apk.sh: unknown variant '$VARIANT' (release, debug, bench)" >&2
|
||||
exit 2
|
||||
;;
|
||||
esac
|
||||
@@ -81,7 +87,7 @@ fi
|
||||
# uninstalling it first: the signatures differ, and Android refuses to
|
||||
# update across them.
|
||||
KEYSTORE="${AI_APP_KEYSTORE:-${XDG_CONFIG_HOME:-$HOME/.config}/ai-app/release.jks}"
|
||||
if [ "$VARIANT" = release ] && [ ! -f "$KEYSTORE" ]; then
|
||||
if { [ "$VARIANT" = release ] || [ "$VARIANT" = bench ]; } && [ ! -f "$KEYSTORE" ]; then
|
||||
KEYTOOL="${JAVA_HOME:+$JAVA_HOME/bin/keytool}"
|
||||
KEYTOOL="${KEYTOOL:-keytool}"
|
||||
if ! command -v "$KEYTOOL" >/dev/null 2>&1; then
|
||||
@@ -97,7 +103,7 @@ if [ "$VARIANT" = release ] && [ ! -f "$KEYSTORE" ]; then
|
||||
-keyalg RSA -keysize 2048 -validity 10000 \
|
||||
-storepass "$PASSWORD" -keypass "$PASSWORD" -dname "CN=ai-app" >/dev/null 2>&1)
|
||||
fi
|
||||
if [ "$VARIANT" = release ]; then
|
||||
if [ "$VARIANT" = release ] || [ "$VARIANT" = bench ]; then
|
||||
AI_APP_KEYSTORE="$KEYSTORE"
|
||||
AI_APP_KEYSTORE_PASSWORD=$(cat "$KEYSTORE.password")
|
||||
export AI_APP_KEYSTORE AI_APP_KEYSTORE_PASSWORD
|
||||
|
||||
Executable
+34
@@ -0,0 +1,34 @@
|
||||
#!/bin/sh
|
||||
# RUST.md's I5 "Where iris's frame time goes" pass (2026-09-05). The same
|
||||
# 24-swipe/6-cycle loop as transcript-bench.sh's, extracted for iris's own
|
||||
# demo app -- transcript-bench.sh itself is Compose-specific (opens by
|
||||
# session title through the Compose app's own UI) and cannot be called
|
||||
# directly against dev.iris.android.demo.
|
||||
#
|
||||
# MUST be run from inside this checkout (not /tmp): ui-trace/adb pick which
|
||||
# emulator to target from the current directory's basename (the
|
||||
# per-checkout-AVD rule), and a previous pass lost two attempts to a `cd`
|
||||
# into /tmp that made this resolve to a nonexistent "tmp" checkout.
|
||||
set -eu
|
||||
cd "$(dirname "$0")"
|
||||
. ./android-env.sh >/dev/null 2>&1
|
||||
|
||||
cycles=${1:-6}
|
||||
|
||||
ui-trace record -d 3000 --do "tap 'Reset frame report'" -o /tmp/iris-bench-reset.txt >/dev/null
|
||||
adb logcat -c
|
||||
|
||||
DO=""
|
||||
i=0
|
||||
while [ "$i" -lt "$cycles" ]; do
|
||||
DO="$DO --do 'swipe 540 700 540 1600 200' --do 'wait 500'"
|
||||
DO="$DO --do 'swipe 540 700 540 1600 200' --do 'wait 500'"
|
||||
DO="$DO --do 'swipe 540 1600 540 700 200' --do 'wait 500'"
|
||||
DO="$DO --do 'swipe 540 1600 540 700 200' --do 'wait 500'"
|
||||
i=$((i + 1))
|
||||
done
|
||||
eval ui-trace record -d $((cycles * 16000 + 20000)) $DO -o /tmp/iris-bench-scroll.txt >/dev/null
|
||||
|
||||
ui-trace record -d 3000 --do "tap 'Frame report'" -o /tmp/iris-bench-report.txt >/dev/null
|
||||
sleep 1
|
||||
adb logcat -d -s iris-android-app:I | grep "iris frame report:"
|
||||
@@ -17,6 +17,11 @@ dependencyResolutionManagement {
|
||||
|
||||
include(":androidApp")
|
||||
|
||||
// E3 (RUST.md): the Kotlin/Java shell over android-shell's JNI bridge, a
|
||||
// separate module from :androidApp so the ~13,000 lines of working Compose
|
||||
// UI there are untouched. See shellApp/build.gradle.kts's module comment.
|
||||
include(":shellApp")
|
||||
|
||||
// The app half of wg-app-link, resolved by path through the submodule so
|
||||
// this checkout and the crate it consumes move together -- the same
|
||||
// arrangement `server/` uses for the Rust half. See that repo's README.
|
||||
|
||||
@@ -0,0 +1,163 @@
|
||||
plugins { alias(libs.plugins.androidApplication) }
|
||||
|
||||
// E3 (RUST.md): the Kotlin/Java shell being replaced by a thin JNI bridge
|
||||
// into Rust (`../../android-shell`). Deliberately its own module rather
|
||||
// than a rewrite of `:androidApp` in place -- that module is ~13,000 lines
|
||||
// of working Compose UI this experiment does not touch, and the two can be
|
||||
// installed side by side on the same development device (see
|
||||
// `settings.SCHEME`'s doc in `android-shell` for why the deep-link scheme
|
||||
// and Keystore alias are not the production app's). No Compose plugin, no
|
||||
// Kotlin source of its own: `MainActivity`/`NotificationService` are plain
|
||||
// Java, and the CA constant below is generated as Java too.
|
||||
//
|
||||
// The CA this build pins is baked in the same way `androidApp`'s does --
|
||||
// see that module's `build.gradle.kts` comment for the reasoning (the
|
||||
// trust boundary follows the machine that builds, never a pasted copy).
|
||||
// `PinnedCa.java`'s package must match `android-shell`'s
|
||||
// `settings::load_pinned_ca` lookup (`com/example/aiapp/shell/PinnedCa`).
|
||||
val pinnedCaPath: String =
|
||||
System.getenv("AI_APP_CA")
|
||||
?: "${System.getenv("XDG_CONFIG_HOME") ?: "${System.getProperty("user.home")}/.config"}" +
|
||||
"/ai-app/certs/ca.pem"
|
||||
|
||||
abstract class GeneratePinnedCa : DefaultTask() {
|
||||
@get:Input abstract val caPath: Property<String>
|
||||
|
||||
@get:InputFile
|
||||
@get:Optional
|
||||
@get:PathSensitive(PathSensitivity.NONE)
|
||||
abstract val caCertificate: RegularFileProperty
|
||||
|
||||
@get:OutputDirectory abstract val outputDir: DirectoryProperty
|
||||
|
||||
@TaskAction
|
||||
fun generate() {
|
||||
val path = caPath.get()
|
||||
val ca = File(path)
|
||||
if (!ca.isFile) {
|
||||
throw GradleException(
|
||||
"No CA certificate at $path.\n" +
|
||||
"Start ai-server (or app/ui-sandbox.sh) once on this machine first -- it " +
|
||||
"generates the CA this build pins.\n" +
|
||||
"Set AI_APP_CA=/path/to/ca.pem to build against a different one."
|
||||
)
|
||||
}
|
||||
val pem = ca.readText().trim()
|
||||
if (!pem.startsWith("-----BEGIN CERTIFICATE-----")) {
|
||||
throw GradleException("$path is not a PEM certificate.")
|
||||
}
|
||||
val dir = outputDir.get().dir("com/example/aiapp/shell").asFile
|
||||
dir.mkdirs()
|
||||
// Same reasoning as androidApp's generatePinnedCert: the text block
|
||||
// must start immediately after the opening `"""`, or
|
||||
// CertificateFactory stops recognising the "-----BEGIN" preamble.
|
||||
File(dir, "PinnedCa.java")
|
||||
.writeText(
|
||||
"""
|
||||
|// Generated from $path by the generatePinnedCa task. Do not edit.
|
||||
|package com.example.aiapp.shell;
|
||||
|
|
||||
|public final class PinnedCa {
|
||||
| private PinnedCa() {}
|
||||
| public static final String PINNED_CA_PEM = ""${'"'}
|
||||
|$pem""${'"'};
|
||||
|}
|
||||
|"""
|
||||
.trimMargin()
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
val generatePinnedCa =
|
||||
tasks.register<GeneratePinnedCa>("generatePinnedCa") {
|
||||
val ca = file(pinnedCaPath)
|
||||
caPath.set(pinnedCaPath)
|
||||
if (ca.isFile) {
|
||||
caCertificate.set(ca)
|
||||
}
|
||||
}
|
||||
|
||||
android {
|
||||
namespace = "com.example.aiapp.shell"
|
||||
compileSdk = 37
|
||||
|
||||
defaultConfig {
|
||||
applicationId = "com.example.aiapp.shell"
|
||||
minSdk = 24
|
||||
targetSdk = 37
|
||||
versionCode = 1
|
||||
versionName = "1.0"
|
||||
}
|
||||
// Same reasoning and same key as androidApp's (see that module's comment): E5 (RUST.md)
|
||||
// signs its own, Gradle-free build with this same keystore, and the two can only
|
||||
// `adb install -r` over each other if they carry the same certificate.
|
||||
val keystore = System.getenv("AI_APP_KEYSTORE")
|
||||
signingConfigs {
|
||||
if (keystore != null) {
|
||||
create("release") {
|
||||
storeFile = file(keystore)
|
||||
storePassword = System.getenv("AI_APP_KEYSTORE_PASSWORD")
|
||||
keyAlias = "ai-app"
|
||||
keyPassword = storePassword
|
||||
}
|
||||
}
|
||||
}
|
||||
buildTypes {
|
||||
getByName("release") {
|
||||
isMinifyEnabled = false
|
||||
if (keystore != null) signingConfig = signingConfigs.getByName("release")
|
||||
}
|
||||
}
|
||||
compileOptions {
|
||||
sourceCompatibility = JavaVersion.VERSION_21
|
||||
targetCompatibility = JavaVersion.VERSION_21
|
||||
}
|
||||
}
|
||||
|
||||
// E5 (RUST.md): the xtask dexes and packages this module's Java sources itself, but it does
|
||||
// not resolve Maven dependencies -- reimplementing a dependency resolver was out of scope for a
|
||||
// packaging step, so this one task is the single place Gradle still runs in that pipeline. It
|
||||
// asks the dependency graph for the *post-transform* jars (AARs already unpacked to a classes
|
||||
// jar, the same artifact type AGP's own dexing task consumes) rather than the raw configuration,
|
||||
// which would hand back .aar files d8 cannot read directly.
|
||||
val artifactType = Attribute.of("artifactType", String::class.java)
|
||||
|
||||
tasks.register("printRuntimeClasspathJars") {
|
||||
description = "Writes the resolved release runtime classpath jars, one per line, for xtask."
|
||||
val outputFile = layout.buildDirectory.file("xtask/runtime-classpath.txt")
|
||||
outputs.file(outputFile)
|
||||
val jars =
|
||||
configurations
|
||||
.getByName("releaseRuntimeClasspath")
|
||||
.incoming
|
||||
.artifactView { attributes.attribute(artifactType, "android-classes-jar") }
|
||||
.files
|
||||
// Captured as a plain FileCollection (not the ArtifactView itself, which the
|
||||
// configuration cache cannot serialize) so this task is still cacheable.
|
||||
inputs.files(jars)
|
||||
doLast {
|
||||
val file = outputFile.get().asFile
|
||||
file.parentFile.mkdirs()
|
||||
file.writeText(jars.joinToString("\n") { it.absolutePath })
|
||||
}
|
||||
}
|
||||
|
||||
androidComponents {
|
||||
onVariants { variant ->
|
||||
variant.sources.java?.addGeneratedSourceDirectory(generatePinnedCa, GeneratePinnedCa::outputDir)
|
||||
}
|
||||
}
|
||||
|
||||
dependencies {
|
||||
// The Keystore-sealed enrollment (ServerStore/ServerSettings) --
|
||||
// android-shell's settings.rs calls into this Kotlin class directly
|
||||
// over JNI rather than re-sealing the token in Rust; see that file's
|
||||
// module doc.
|
||||
implementation(project(":link"))
|
||||
// NotificationCompat/NotificationManagerCompat/NotificationChannelCompat/
|
||||
// ServiceCompat -- android-shell's notify.rs calls these classes over
|
||||
// JNI so the pre-26 fallback behaviour (no channels) lives once, in
|
||||
// the library that already has it, rather than being re-derived as a
|
||||
// set of Build.VERSION.SDK_INT branches in Rust.
|
||||
implementation(libs.androidx.core.ktx)
|
||||
}
|
||||
@@ -0,0 +1,62 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<manifest xmlns:android="http://schemas.android.com/apk/res/android"
|
||||
xmlns:tools="http://schemas.android.com/tools">
|
||||
<!-- Mirrors androidApp's manifest (AGENTS.md: reuse it rather than
|
||||
re-deriving it) for the permissions and declarations E3 actually
|
||||
exercises. Not carried over: the QR scanner activity (this
|
||||
experiment enrolls via the aiappshell://enroll deep link directly,
|
||||
per AGENTS.md's ui-sandbox.sh banner) and the app icon warning
|
||||
suppression below, for the same reason androidApp's is there. -->
|
||||
<uses-permission android:name="android.permission.INTERNET" />
|
||||
<uses-permission android:name="android.permission.ACCESS_LOCAL_NETWORK" />
|
||||
<uses-permission android:name="android.permission.POST_NOTIFICATIONS" />
|
||||
<uses-permission android:name="android.permission.FOREGROUND_SERVICE" />
|
||||
<uses-permission android:name="android.permission.FOREGROUND_SERVICE_SPECIAL_USE" />
|
||||
|
||||
<application
|
||||
android:label="AI Sessions (shell)"
|
||||
android:allowBackup="true"
|
||||
android:theme="@android:style/Theme.Material.Light.NoActionBar"
|
||||
tools:ignore="MissingApplicationIcon">
|
||||
<activity
|
||||
android:name=".MainActivity"
|
||||
android:exported="true"
|
||||
android:launchMode="singleTop">
|
||||
<intent-filter>
|
||||
<action android:name="android.intent.action.MAIN" />
|
||||
<category android:name="android.intent.category.LAUNCHER" />
|
||||
</intent-filter>
|
||||
<!-- Enrollment: aiappshell://enroll?host=...&port=...&token=...,
|
||||
per AGENTS.md's ui-sandbox.sh banner (fed to this app with
|
||||
`adb shell am start -a android.intent.action.VIEW -d
|
||||
'aiappshell://enroll?...'`, or -n'd at this component
|
||||
directly if a second app also claims the aiapp scheme). -->
|
||||
<intent-filter>
|
||||
<action android:name="android.intent.action.VIEW" />
|
||||
<category android:name="android.intent.category.DEFAULT" />
|
||||
<category android:name="android.intent.category.BROWSABLE" />
|
||||
<data android:scheme="aiappshell" android:host="enroll" />
|
||||
</intent-filter>
|
||||
<!-- The share sheet - see android-shell's share.rs. -->
|
||||
<intent-filter>
|
||||
<action android:name="android.intent.action.SEND" />
|
||||
<action android:name="android.intent.action.SEND_MULTIPLE" />
|
||||
<category android:name="android.intent.category.DEFAULT" />
|
||||
<data android:mimeType="*/*" />
|
||||
</intent-filter>
|
||||
</activity>
|
||||
|
||||
<!-- specialUse, not dataSync, for the reason androidApp's manifest
|
||||
gives: a connection that has to keep listening overnight
|
||||
cannot accept dataSync's six-hour cap. -->
|
||||
<service
|
||||
android:name=".NotificationService"
|
||||
android:exported="false"
|
||||
android:foregroundServiceType="specialUse">
|
||||
<property
|
||||
android:name="android.app.PROPERTY_SPECIAL_USE_FGS_SUBTYPE"
|
||||
android:value="E3 experiment: holds one connection to the sandbox server so a
|
||||
session that needs an answer can be reported while the app is closed." />
|
||||
</service>
|
||||
</application>
|
||||
</manifest>
|
||||
@@ -0,0 +1,50 @@
|
||||
package com.example.aiapp.shell;
|
||||
|
||||
import android.app.Activity;
|
||||
import android.content.Context;
|
||||
import android.content.Intent;
|
||||
import android.os.Bundle;
|
||||
import android.os.Handler;
|
||||
import android.os.Looper;
|
||||
import android.widget.Toast;
|
||||
|
||||
/**
|
||||
* E3's floor, per RUST.md's "How much Java is unavoidable": a class the framework
|
||||
* constructs by name from the manifest, with its lifecycle methods handing straight to Rust
|
||||
* (android-shell's {@code share::handle_intent}). No Compose, no layout -- there is no screen to
|
||||
* draw yet (that is E4's job, on iris); {@link #toast} is this experiment's stand-in for showing
|
||||
* something happened.
|
||||
*/
|
||||
public class MainActivity extends Activity {
|
||||
static {
|
||||
System.loadLibrary("android_shell");
|
||||
}
|
||||
|
||||
@Override
|
||||
protected void onCreate(Bundle savedInstanceState) {
|
||||
super.onCreate(savedInstanceState);
|
||||
NotificationService.sync(this);
|
||||
nativeHandleIntent(this, getIntent());
|
||||
}
|
||||
|
||||
// launchMode="singleTop": a notification tap or a share while this activity is already on
|
||||
// top lands here rather than in a second instance -- same reasoning as MainActivity.kt's.
|
||||
@Override
|
||||
protected void onNewIntent(Intent intent) {
|
||||
super.onNewIntent(intent);
|
||||
setIntent(intent);
|
||||
nativeHandleIntent(this, intent);
|
||||
}
|
||||
|
||||
/**
|
||||
* Called from android-shell, sometimes from a background thread (a share's network call is
|
||||
* never made on the calling thread -- see share.rs). {@code Toast} itself is main-thread-only,
|
||||
* so this hops there with a {@link Handler} rather than assuming the caller already has.
|
||||
*/
|
||||
static void toast(Context context, String message) {
|
||||
new Handler(Looper.getMainLooper())
|
||||
.post(() -> Toast.makeText(context, message, Toast.LENGTH_LONG).show());
|
||||
}
|
||||
|
||||
private static native void nativeHandleIntent(Activity activity, Intent intent);
|
||||
}
|
||||
@@ -0,0 +1,45 @@
|
||||
package com.example.aiapp.shell;
|
||||
|
||||
import android.app.Service;
|
||||
import android.content.Context;
|
||||
import android.content.Intent;
|
||||
import android.os.IBinder;
|
||||
|
||||
/**
|
||||
* E3's second unavoidable Java class (RUST.md): a foreground service constructed by the framework
|
||||
* from the manifest, existing only to hand its lifecycle to android-shell's {@code notify} module
|
||||
* -- the SSE follow loop, deciding what a notification says, and posting it are all Rust reached
|
||||
* through these three native calls. See {@code Notifications.kt}'s {@code NotificationService} for
|
||||
* the Kotlin original this mirrors.
|
||||
*/
|
||||
public class NotificationService extends Service {
|
||||
static {
|
||||
System.loadLibrary("android_shell");
|
||||
}
|
||||
|
||||
@Override
|
||||
public IBinder onBind(Intent intent) {
|
||||
return null;
|
||||
}
|
||||
|
||||
@Override
|
||||
public int onStartCommand(Intent intent, int flags, int startId) {
|
||||
return nativeOnStartCommand(this);
|
||||
}
|
||||
|
||||
@Override
|
||||
public void onDestroy() {
|
||||
nativeOnDestroy();
|
||||
}
|
||||
|
||||
/** Starts this service if there is a server to connect to, and stops it otherwise. */
|
||||
static void sync(Context context) {
|
||||
nativeSync(context);
|
||||
}
|
||||
|
||||
private static native void nativeSync(Context context);
|
||||
|
||||
private static native int nativeOnStartCommand(Service service);
|
||||
|
||||
private static native void nativeOnDestroy();
|
||||
}
|
||||
@@ -7,7 +7,7 @@ edition = "2024"
|
||||
# with `server/` via `event-model`), the REST + SSE clients for its HTTP
|
||||
# surface (see `server/src/routes.rs`'s module doc for the table), the
|
||||
# transcript fold and cache, the markdown block model, the syntax
|
||||
# highlighter and the ANSI parser. See CLIENT_CORE.md at the repo root for
|
||||
# highlighter and the ANSI parser. See `docs/CLIENT_CORE.md` for
|
||||
# what this holds today, what it does not yet, and how it corresponds to
|
||||
# the Kotlin it replaces.
|
||||
#
|
||||
|
||||
@@ -0,0 +1,152 @@
|
||||
//! What a Rust client needs to reach one enrolled server: host, port and
|
||||
//! bearer token. Mirrors the shape `ServerConfig.kt`/`Api.kt`'s
|
||||
//! `handleEnrollment` parses out of an `aiapp://enroll?host=H&port=P&token=T`
|
||||
//! deep link -- the exact link `wg-app-link`'s `enroll` module mints and
|
||||
//! `app/ui-sandbox.sh`'s banner prints, so any Rust client can enrol from
|
||||
//! the same text a phone would scan as a QR, with no second format
|
||||
//! invented for it (RUST.md's E4).
|
||||
//!
|
||||
//! What this type deliberately does not decide: where it is persisted, and
|
||||
//! under what file permissions. A phone seals its token in the Android
|
||||
//! Keystore; a desktop client has its own `$XDG_CONFIG_HOME/<app>/`
|
||||
//! directory and its own file-mode conventions (MACHINE.md: owner-only,
|
||||
//! never in the repo). Both are caller-specific, so they stay out of this
|
||||
//! crate per the code rules' "ask for the least you need" -- see
|
||||
//! `iris/desktop-app/src/config.rs` for the desktop instance.
|
||||
|
||||
use serde::{Deserialize, Serialize};
|
||||
|
||||
/// One enrolled server: reachable at `https://{host}:{port}`, authenticated
|
||||
/// with `token` as a bearer header. Does not carry the pinned CA -- that is
|
||||
/// a public certificate rather than a secret, and where to find it differs
|
||||
/// by caller (a phone pins the one its APK was built against; a desktop
|
||||
/// client is told a path).
|
||||
#[derive(Debug, Clone, PartialEq, Serialize, Deserialize)]
|
||||
pub struct EnrolledServer {
|
||||
pub host: String,
|
||||
pub port: u16,
|
||||
pub token: String,
|
||||
}
|
||||
|
||||
impl EnrolledServer {
|
||||
/// Parses `aiapp://enroll?host=H&port=P&token=T` (query order does not
|
||||
/// matter; unrecognised keys are ignored). `token` is percent-decoded,
|
||||
/// since `ui-sandbox.sh` encodes it precisely because a raw token can
|
||||
/// contain `+`, which turns into a space if left to a naive splitter.
|
||||
pub fn parse_link(link: &str) -> Result<Self, String> {
|
||||
let query = link.split_once('?').map(|(_, q)| q).ok_or_else(|| {
|
||||
format!(
|
||||
"'{link}' has no query string (expected \
|
||||
aiapp://enroll?host=...&port=...&token=...)"
|
||||
)
|
||||
})?;
|
||||
|
||||
let mut host = None;
|
||||
let mut port = None;
|
||||
let mut token = None;
|
||||
for pair in query.split('&') {
|
||||
let Some((key, value)) = pair.split_once('=') else {
|
||||
continue;
|
||||
};
|
||||
let value = percent_decode(value);
|
||||
match key {
|
||||
"host" => host = Some(value),
|
||||
"port" => port = Some(value),
|
||||
"token" => token = Some(value),
|
||||
_ => {}
|
||||
}
|
||||
}
|
||||
|
||||
let host = host.ok_or_else(|| format!("'{link}' is missing 'host'"))?;
|
||||
let port_str = port.ok_or_else(|| format!("'{link}' is missing 'port'"))?;
|
||||
let port: u16 = port_str
|
||||
.parse()
|
||||
.map_err(|e| format!("'{link}''s port ('{port_str}') is not a number: {e}"))?;
|
||||
let token = token.ok_or_else(|| format!("'{link}' is missing 'token'"))?;
|
||||
|
||||
Ok(Self { host, port, token })
|
||||
}
|
||||
|
||||
/// Where a `client_core::api::UreqTransport` reaches this server.
|
||||
pub fn base_url(&self) -> String {
|
||||
format!("https://{}:{}", self.host, self.port)
|
||||
}
|
||||
}
|
||||
|
||||
fn percent_decode(s: &str) -> String {
|
||||
let bytes = s.as_bytes();
|
||||
let mut out = Vec::with_capacity(bytes.len());
|
||||
let mut i = 0;
|
||||
while i < bytes.len() {
|
||||
if bytes[i] == b'%'
|
||||
&& i + 2 < bytes.len()
|
||||
&& let Ok(byte) =
|
||||
u8::from_str_radix(std::str::from_utf8(&bytes[i + 1..i + 3]).unwrap_or(""), 16)
|
||||
{
|
||||
out.push(byte);
|
||||
i += 3;
|
||||
continue;
|
||||
}
|
||||
out.push(bytes[i]);
|
||||
i += 1;
|
||||
}
|
||||
String::from_utf8_lossy(&out).into_owned()
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use super::*;
|
||||
|
||||
#[test]
|
||||
fn parses_host_port_and_token() {
|
||||
let server =
|
||||
EnrolledServer::parse_link("aiapp://enroll?host=127.0.0.1&port=8547&token=abcDEF123")
|
||||
.unwrap();
|
||||
assert_eq!(
|
||||
server,
|
||||
EnrolledServer {
|
||||
host: "127.0.0.1".to_string(),
|
||||
port: 8547,
|
||||
token: "abcDEF123".to_string(),
|
||||
}
|
||||
);
|
||||
assert_eq!(server.base_url(), "https://127.0.0.1:8547");
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn field_order_does_not_matter() {
|
||||
let server =
|
||||
EnrolledServer::parse_link("aiapp://enroll?token=tok&port=443&host=example.com")
|
||||
.unwrap();
|
||||
assert_eq!(server.host, "example.com");
|
||||
assert_eq!(server.port, 443);
|
||||
assert_eq!(server.token, "tok");
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn a_percent_encoded_token_is_decoded() {
|
||||
// ui-sandbox.sh's own reason for encoding: a raw '+' would
|
||||
// otherwise arrive as a space.
|
||||
let server =
|
||||
EnrolledServer::parse_link("aiapp://enroll?host=h&port=1&token=a%2Bb%2Fc").unwrap();
|
||||
assert_eq!(server.token, "a+b/c");
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn a_missing_field_is_named_in_the_error() {
|
||||
let err = EnrolledServer::parse_link("aiapp://enroll?host=h&port=1").unwrap_err();
|
||||
assert!(
|
||||
err.contains("token"),
|
||||
"error should name the missing field: {err}"
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn a_non_numeric_port_is_named_in_the_error() {
|
||||
let err = EnrolledServer::parse_link("aiapp://enroll?host=h&port=x&token=t").unwrap_err();
|
||||
assert!(
|
||||
err.contains("port"),
|
||||
"error should name the offending field: {err}"
|
||||
);
|
||||
}
|
||||
}
|
||||
@@ -1,11 +1,13 @@
|
||||
//! The app's pure logic, shared between the server and any Rust client --
|
||||
//! see `CLIENT_CORE.md` at the repo root for what lives here and what does
|
||||
//! see `docs/CLIENT_CORE.md` for what lives here and what does
|
||||
//! not yet.
|
||||
|
||||
pub mod ansi;
|
||||
pub mod api;
|
||||
pub mod config;
|
||||
pub mod event_stream;
|
||||
pub mod highlight;
|
||||
pub mod notifications;
|
||||
pub mod sse;
|
||||
pub mod transcript_cache;
|
||||
pub mod transcript_fold;
|
||||
|
||||
@@ -0,0 +1,162 @@
|
||||
//! `GET /notifications`, the attention stream PLAN.md's "Notifications: two
|
||||
//! places, never both" describes. Ported from the parsing half of
|
||||
//! `app/.../Notifications.kt`'s `NotificationService` -- the framing
|
||||
//! ([`crate::sse`]) and the wire shape ([`SessionNotification`],
|
||||
//! [`NotificationKind`], mirroring `server/src/session/mod.rs`'s
|
||||
//! `Notification`/`NotificationKind`).
|
||||
//!
|
||||
//! What is deliberately **not** here, because it is a decision rather than
|
||||
//! logic: whether a given notification is shown at all (the session on
|
||||
//! screen gets nothing), handed to the app as a banner, or posted to the
|
||||
//! platform's own notification drawer. That three-way choice reads
|
||||
//! process-wide state (what screen is open, whether the app is in front)
|
||||
//! that has no meaning to a pure crate with no UI and no Android in it --
|
||||
//! see `android-shell` for where it lives for this port.
|
||||
|
||||
use std::io::{BufRead, BufReader};
|
||||
|
||||
use serde::Deserialize;
|
||||
|
||||
use crate::api::{ApiError, Transport};
|
||||
use crate::sse::SseReader;
|
||||
|
||||
/// One frame of `GET /notifications`, matching `server/src/session/mod.rs`'s
|
||||
/// `Notification` field for field.
|
||||
#[derive(Debug, Clone, PartialEq, Deserialize)]
|
||||
#[serde(rename_all = "camelCase")]
|
||||
pub struct SessionNotification {
|
||||
pub session_id: String,
|
||||
pub title: String,
|
||||
pub kind: NotificationKind,
|
||||
/// Epoch seconds, so a phone that was asleep can say how long ago.
|
||||
pub at: f64,
|
||||
}
|
||||
|
||||
/// Mirrors `server/src/session/mod.rs`'s `NotificationKind` -- serialized
|
||||
/// the same way, so this deserializes the wire's `"awaitingInput"` /
|
||||
/// `"finished"` directly rather than through a string match.
|
||||
#[derive(Debug, Clone, Copy, PartialEq, Eq, Deserialize)]
|
||||
#[serde(rename_all = "camelCase")]
|
||||
pub enum NotificationKind {
|
||||
AwaitingInput,
|
||||
Finished,
|
||||
}
|
||||
|
||||
impl NotificationKind {
|
||||
/// What a notification asks of the reader, in the words they see --
|
||||
/// ported verbatim from `Notifications.kt`'s `attentionLine`. One
|
||||
/// function because the same fact is shown in two places (the
|
||||
/// platform's drawer and the app's own banner) and two mappings of one
|
||||
/// word drift.
|
||||
pub fn attention_line(self) -> &'static str {
|
||||
match self {
|
||||
NotificationKind::AwaitingInput => "Waiting for you",
|
||||
NotificationKind::Finished => "Finished",
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/// Follows `/notifications`, calling `on_notification` for each frame until
|
||||
/// the connection drops or the callback asks to stop (by returning
|
||||
/// `false`). Reconnecting is the caller's job -- mirroring
|
||||
/// `NotificationService.follow`'s retry loop, which is a platform policy
|
||||
/// (how long to wait, whether to give up) rather than parsing logic.
|
||||
pub fn follow_notifications(
|
||||
transport: &dyn Transport,
|
||||
mut on_notification: impl FnMut(SessionNotification) -> bool,
|
||||
) -> Result<(), ApiError> {
|
||||
let body = transport.stream("/notifications")?;
|
||||
let mut lines = BufReader::new(body).lines();
|
||||
let mut reader = SseReader::new();
|
||||
while let Some(line) = lines.next().transpose().map_err(|e| ApiError {
|
||||
message: format!("Can't reach the server -- retrying. ({e})"),
|
||||
status: None,
|
||||
})? {
|
||||
let Some(frame) = reader.feed_line(&line) else {
|
||||
continue;
|
||||
};
|
||||
if frame.data.is_empty() {
|
||||
continue;
|
||||
}
|
||||
let notification: SessionNotification =
|
||||
serde_json::from_str(&frame.data).map_err(|e| ApiError {
|
||||
message: format!("The server sent a notification this build couldn't parse: {e}"),
|
||||
status: None,
|
||||
})?;
|
||||
if !on_notification(notification) {
|
||||
return Ok(());
|
||||
}
|
||||
}
|
||||
Ok(())
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use super::*;
|
||||
use crate::api::{Body, RawResponse};
|
||||
use std::io::Cursor;
|
||||
|
||||
struct FixtureTransport {
|
||||
body: &'static str,
|
||||
}
|
||||
|
||||
impl Transport for FixtureTransport {
|
||||
fn request(
|
||||
&self,
|
||||
_method: &str,
|
||||
_path: &str,
|
||||
_body: Option<Body>,
|
||||
) -> Result<RawResponse, ApiError> {
|
||||
unimplemented!("this fixture only serves a stream")
|
||||
}
|
||||
|
||||
fn stream(&self, _path: &str) -> Result<Box<dyn std::io::Read + Send>, ApiError> {
|
||||
Ok(Box::new(Cursor::new(self.body.as_bytes().to_vec())))
|
||||
}
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn a_notification_frame_parses_both_kinds() {
|
||||
let transport = FixtureTransport {
|
||||
body: "data:{\"sessionId\":\"s1\",\"title\":\"fix the bug\",\"kind\":\"awaitingInput\",\"at\":1.0}\n\n\
|
||||
data:{\"sessionId\":\"s2\",\"title\":\"add tests\",\"kind\":\"finished\",\"at\":2.0}\n\n",
|
||||
};
|
||||
let mut seen = Vec::new();
|
||||
follow_notifications(&transport, |n| {
|
||||
seen.push((n.session_id, n.kind));
|
||||
true
|
||||
})
|
||||
.unwrap();
|
||||
assert_eq!(
|
||||
seen,
|
||||
vec![
|
||||
("s1".to_string(), NotificationKind::AwaitingInput),
|
||||
("s2".to_string(), NotificationKind::Finished),
|
||||
]
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn the_caller_can_stop_early() {
|
||||
let transport = FixtureTransport {
|
||||
body: "data:{\"sessionId\":\"s1\",\"title\":\"a\",\"kind\":\"finished\",\"at\":1.0}\n\n\
|
||||
data:{\"sessionId\":\"s2\",\"title\":\"b\",\"kind\":\"finished\",\"at\":2.0}\n\n",
|
||||
};
|
||||
let mut count = 0;
|
||||
follow_notifications(&transport, |_| {
|
||||
count += 1;
|
||||
count < 1
|
||||
})
|
||||
.unwrap();
|
||||
assert_eq!(count, 1);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn attention_line_matches_the_kotlin_original() {
|
||||
assert_eq!(
|
||||
NotificationKind::AwaitingInput.attention_line(),
|
||||
"Waiting for you"
|
||||
);
|
||||
assert_eq!(NotificationKind::Finished.attention_line(), "Finished");
|
||||
}
|
||||
}
|
||||
@@ -1,7 +1,7 @@
|
||||
//! This phone's copy of the transcripts it has already been sent, so
|
||||
//! reopening a session does not download it again. Ported from
|
||||
//! `app/.../TranscriptCache.kt`; see `TRANSCRIPT_CACHE.md` at the repo root
|
||||
//! for the design and `CLIENT_CORE.md` for how this file corresponds to it.
|
||||
//! `app/.../TranscriptCache.kt`; see `docs/TRANSCRIPT_CACHE.md`
|
||||
//! for the design and `docs/CLIENT_CORE.md` for how this file corresponds to it.
|
||||
//!
|
||||
//! What is stored is the server's own JSON for one event per line, in
|
||||
//! transcript order. Reading the cache means running the same [`seq_of`]
|
||||
|
||||
@@ -112,6 +112,13 @@ pub enum TranscriptItem {
|
||||
ClearedNote {
|
||||
seq: u64,
|
||||
},
|
||||
/// The account's usage limit stopped the turn; `resets_at` is epoch
|
||||
/// seconds when the dialect said when it lifts (`LimitNote` in
|
||||
/// `TranscriptItems.kt`).
|
||||
LimitNote {
|
||||
seq: u64,
|
||||
resets_at: Option<f64>,
|
||||
},
|
||||
CompactedNote {
|
||||
seq: u64,
|
||||
pre_tokens: Option<u64>,
|
||||
@@ -131,6 +138,7 @@ impl TranscriptItem {
|
||||
| Self::CommandRow { seq, .. }
|
||||
| Self::Note { seq, .. }
|
||||
| Self::ClearedNote { seq }
|
||||
| Self::LimitNote { seq, .. }
|
||||
| Self::CompactedNote { seq, .. } => *seq,
|
||||
Self::QuestionCard(card) => card.seq,
|
||||
}
|
||||
@@ -525,6 +533,14 @@ pub fn fold_event(items: &[TranscriptItem], entry: &SeqEvent) -> Vec<TranscriptI
|
||||
items.push(TranscriptItem::ClearedNote { seq });
|
||||
items
|
||||
}
|
||||
Event::LimitReached { resets_at } => {
|
||||
let mut items = items.to_vec();
|
||||
items.push(TranscriptItem::LimitNote {
|
||||
seq,
|
||||
resets_at: *resets_at,
|
||||
});
|
||||
items
|
||||
}
|
||||
Event::Compacted {
|
||||
pre_tokens,
|
||||
post_tokens,
|
||||
@@ -606,6 +622,37 @@ pub fn group_tool_runs(items: &[TranscriptItem]) -> Vec<TranscriptRow> {
|
||||
rows
|
||||
}
|
||||
|
||||
/// Folds a page of raw transcript lines (`ApiClient::fetch_transcript_page`'s
|
||||
/// `Vec<Value>`) into the flat item list this module works over. A line
|
||||
/// this build can't parse fails the whole page rather than being skipped --
|
||||
/// CODE_RULES's "an enumeration must be able to say 'it broke'" -- since
|
||||
/// silently dropping one event could hide, say, a user message that then
|
||||
/// looks like it was never sent. Moved here from `desktop-app`'s `app.rs`
|
||||
/// (RUST.md's E4) when the Android transcript client (I5) needed the same
|
||||
/// fold: "write the logic once" applies to any caller embedding
|
||||
/// `transcript-ui` against a live server, not just the first one.
|
||||
pub fn fold_page(values: &[serde_json::Value]) -> Result<Vec<TranscriptItem>, String> {
|
||||
let mut items = Vec::new();
|
||||
for value in values {
|
||||
let event: SeqEvent = serde_json::from_value(value.clone()).map_err(|e| {
|
||||
format!("the server sent a transcript line this build couldn't parse: {e}")
|
||||
})?;
|
||||
items = fold_event(&items, &event);
|
||||
}
|
||||
Ok(items)
|
||||
}
|
||||
|
||||
/// The wire `seq` a raw transcript line carries -- the live-stream resume
|
||||
/// cursor after loading a page must be this, not a folded item's `seq()`.
|
||||
/// A folded `AssistantMsg` keeps the seq of the *first* delta it
|
||||
/// accumulated (`fold_event`'s own doc), so resuming from that seq would
|
||||
/// re-deliver every delta already folded into it, duplicating the tail of
|
||||
/// a reply that was mid-stream when the page was fetched -- found via a
|
||||
/// real screenshot in E4 (RUST.md), where the assistant's line doubled.
|
||||
pub fn raw_seq(value: &serde_json::Value) -> Option<u64> {
|
||||
value.get("seq")?.as_u64()
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use super::*;
|
||||
@@ -824,4 +871,88 @@ mod tests {
|
||||
other => panic!("expected a QuestionCard, got {other:?}"),
|
||||
}
|
||||
}
|
||||
|
||||
fn line(seq: u64, json: serde_json::Value) -> serde_json::Value {
|
||||
let mut obj = json;
|
||||
obj["seq"] = serde_json::json!(seq);
|
||||
obj["ts"] = serde_json::json!(1.0);
|
||||
obj
|
||||
}
|
||||
|
||||
/// The regression for a bug a real `run-headless.sh` screenshot found
|
||||
/// in `desktop-app` (E4, RUST.md): resuming the live stream from the
|
||||
/// last *item's* seq re-delivers the deltas already folded into a
|
||||
/// still-open assistant message, doubling its tail. `raw_seq` of the
|
||||
/// last wire line must be the true high-water mark instead, which for a
|
||||
/// run of deltas is higher than every item's own `seq()`.
|
||||
#[test]
|
||||
fn the_resume_cursor_is_the_last_wire_seq_not_the_last_items_seq() {
|
||||
let values = vec![
|
||||
line(1, serde_json::json!({"type": "userMessage", "text": "hi"})),
|
||||
line(
|
||||
2,
|
||||
serde_json::json!({"type": "assistantText", "delta": "a"}),
|
||||
),
|
||||
line(
|
||||
3,
|
||||
serde_json::json!({"type": "assistantText", "delta": "b"}),
|
||||
),
|
||||
line(
|
||||
4,
|
||||
serde_json::json!({"type": "assistantText", "delta": "c"}),
|
||||
),
|
||||
];
|
||||
let after = raw_seq(values.last().unwrap()).unwrap();
|
||||
assert_eq!(after, 4);
|
||||
|
||||
let items = fold_page(&values).unwrap();
|
||||
let assistant_seq = items
|
||||
.iter()
|
||||
.find(|i| matches!(i, TranscriptItem::AssistantMsg { .. }))
|
||||
.unwrap()
|
||||
.seq();
|
||||
assert_eq!(assistant_seq, 2);
|
||||
assert_ne!(
|
||||
after, assistant_seq,
|
||||
"the fixed bug: these must differ here"
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn a_page_folds_into_one_settled_assistant_message() {
|
||||
let values = vec![
|
||||
line(1, serde_json::json!({"type": "userMessage", "text": "hi"})),
|
||||
line(
|
||||
2,
|
||||
serde_json::json!({"type": "assistantText", "delta": "hel"}),
|
||||
),
|
||||
line(
|
||||
3,
|
||||
serde_json::json!({"type": "assistantText", "delta": "lo"}),
|
||||
),
|
||||
];
|
||||
let items = fold_page(&values).unwrap();
|
||||
assert_eq!(
|
||||
items,
|
||||
vec![
|
||||
TranscriptItem::UserMsg {
|
||||
seq: 1,
|
||||
text: "hi".to_string(),
|
||||
attachments: Vec::new(),
|
||||
},
|
||||
TranscriptItem::AssistantMsg {
|
||||
seq: 2,
|
||||
text: "hello".to_string(),
|
||||
settled: false,
|
||||
},
|
||||
]
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn an_unparseable_line_fails_the_whole_page() {
|
||||
let values = vec![serde_json::json!({"seq": 1, "ts": 1.0, "type": "not-a-real-type"})];
|
||||
let err = fold_page(&values).unwrap_err();
|
||||
assert!(err.contains("couldn't parse"));
|
||||
}
|
||||
}
|
||||
@@ -26,6 +26,7 @@ next (a Masonry or iris transcript screen, most likely).
|
||||
| `api.rs` | `Api.kt` | Partial -- see below |
|
||||
| `event_stream.rs` | `EventStream.kt` | Done |
|
||||
| `transcript_fold.rs` | `TranscriptItems.kt`, `ToolRows.kt` | Partial -- see below |
|
||||
| `config.rs` | `ServerConfig.kt`'s `handleEnrollment` | New, desktop-only so far -- see below |
|
||||
| *(not started)* | `TranscriptSource.kt` | Not started |
|
||||
| *(not ported, and may never be)* | `TranscriptUnits.kt` | Out of scope -- see below |
|
||||
|
||||
@@ -103,6 +104,21 @@ deciding how `event_model` itself represents "a shape I don't recognise"
|
||||
-- a shared-model decision affecting `server/` too, not a `client-core`-only
|
||||
fix, so it is recorded here rather than silently worked around.
|
||||
|
||||
## `config.rs`: `EnrolledServer`
|
||||
|
||||
`EnrolledServer` (host, port, bearer token) plus `parse_link`, which reads
|
||||
the exact `aiapp://enroll?host=H&port=P&token=T` deep link
|
||||
`wg-app-link`'s `enroll` mints and `ServerConfig.kt`'s `handleEnrollment`
|
||||
parses on the phone -- so any Rust client enrols from the same text a
|
||||
phone would scan as a QR, with no second format invented for it (RUST.md's
|
||||
E4, DECISIONS.md 2026-09-05). Deliberately does not decide where it is
|
||||
persisted or under what file permissions -- a phone seals its token in the
|
||||
Android Keystore, `iris/desktop-app/src/config.rs` writes it to
|
||||
`$XDG_CONFIG_HOME/ai-app-desktop/enrollment.json` at 0600 -- since that is
|
||||
caller-specific (the code rules' "ask for the least you need"). Its only
|
||||
caller today is `desktop-app`; a future Android build of this crate would
|
||||
be a second one, not a reason to move the type.
|
||||
|
||||
## What is not started at all
|
||||
|
||||
- **`TranscriptSource.kt`** -- the layer that decides whether a page comes
|
||||
@@ -0,0 +1,293 @@
|
||||
# Decisions taken for Iris to review
|
||||
|
||||
Short list of design choices made by the design agent without asking, so
|
||||
they can be judged and reversed later. Detail lives in RUST.md (and IRIS.md
|
||||
for iris API changes); this file is only the summary. Newest first. Items
|
||||
marked **DEFERRED** are ones the agent chose not to decide alone.
|
||||
|
||||
## 2026-09-05
|
||||
|
||||
- **iris no longer asks every device for compute-shader limits it never
|
||||
uses.** `adapter.request_device` (both `iris/src/android/render.rs` and
|
||||
`iris/src/default/render.rs`) used `Limits::default()` plus an override
|
||||
for `max_buffer_size`, and `Limits::default()` unconditionally requests
|
||||
desktop-tier compute limits (`max_compute_workgroups_per_dimension:
|
||||
65535`, per `wgpu_types`) even though nothing in `iris`/`iris-core`
|
||||
creates a `ComputePipeline` or writes a `@compute` shader stage —
|
||||
confirmed by grepping the whole tree, not assumed. That crashed
|
||||
`request_device` outright on the Android emulator's software GL path
|
||||
(`EMU_GPU=software`, `--features force-gles`): SwiftShader's GL reports
|
||||
itself as OpenGL ES 3.0, which has no compute shaders at all, so the
|
||||
adapter's real limit is 0 against the unconditional request for 65535 —
|
||||
`RUST.md`'s "Software mode ... crashes for a third, different reason,"
|
||||
2026-09-05, earlier today. The same would happen on any real
|
||||
GLES-3.0-only Android device, not just the emulator. Fixed by a new
|
||||
`iris_core::device_limits()` (`iris/core/src/render/mod.rs`), shared by
|
||||
both platform backends so the two requests cannot drift, that zeros the
|
||||
six `max_compute_*` fields explicitly rather than switching to a
|
||||
downlevel `Limits` preset — `Limits::downlevel_webgl2_defaults()` was
|
||||
considered and rejected: it also zeros
|
||||
`max_storage_buffers_per_shader_stage`, and `shader.wgsl`'s vertex stage
|
||||
reads four `var<storage>` buffers (rects, glyphs, masks, move_offsets),
|
||||
so that preset would trade the compute crash for a bind-group-layout
|
||||
one on the same downlevel hardware this is meant to support. No
|
||||
capability check or fallback path was needed since nothing is being
|
||||
disabled — the request is simply narrowed to what the pipeline actually
|
||||
uses. `rigs/gpu-probe`'s own mirrored limits (it is deliberately its own
|
||||
crate, not a workspace member, so it cannot call `device_limits()`
|
||||
directly) were updated to match, and confirm `IRIS DEVICE: ok` against
|
||||
this VM's own Vulkan and GL adapters. **Not verified this pass**: the
|
||||
specific SwiftShader-ES-3.0 crash this fixes, on-device — the
|
||||
`EMU_GPU=software` cold boot this needs would have force-restarted this
|
||||
checkout's emulator while another session was actively running its own
|
||||
app on it (`com.example.aiapp` had window focus at the time), so it was
|
||||
left for a pass when the emulator is free rather than disrupting that
|
||||
session. Everything reachable without the emulator is clean: `cargo
|
||||
fmt`/`clippy --workspace --all-targets`/`test --workspace`, `cargo ndk
|
||||
build`/`clippy` for `iris-android-app` with `force-gles`, and
|
||||
`gpu-probe` against this VM's own Vulkan and GL(ES 3.2, which still has
|
||||
compute and so would not have reproduced the crash even before this
|
||||
fix — not a substitute for the real ES-3.0 test).
|
||||
|
||||
- **P0's Compose half is built and smoke-tested on the emulator** — the
|
||||
`bench` build type, the shared `app/bench-fixture/` transcript, and an
|
||||
in-process fake backend (`BenchFixture.kt`/`BenchNetwork.kt`) that
|
||||
answers `TranscriptSource`/`EventStream` from an in-memory event log
|
||||
instead of a real server, so the fold and paging under test are the real
|
||||
ones. Full account, the smoke run's report, and what is deliberately
|
||||
left (the iris half, the real on-phone runs) are in RUST.md's P0 box.
|
||||
Not a decision to review so much as the gate itself now being runnable —
|
||||
flagged here because it is the first half of something Iris explicitly
|
||||
asked to see before P1.
|
||||
|
||||
- **P0's iris half is also built and smoke-tested on the emulator,
|
||||
2026-09-05.** A new `bench` Cargo feature on `iris-android-app`, on top
|
||||
of `transcript-screen`: the same checked-in fixture (`include_str!`, no
|
||||
asset pipeline needed), the same 24-swipe scroll loop animated through
|
||||
`List::scroll` and the same 400-event/20s streaming phase through
|
||||
`fold_event`, "Run benchmark"/"Copy report" as named accessible
|
||||
controls, and the same three added report fields (process CPU time,
|
||||
peak RSS, battery current) via direct JNI calls
|
||||
(`bench_jni.rs::PlatformHandle`) since `android_view` has no
|
||||
`BatteryManager`/`ClipboardManager` wrapper of its own. One small public
|
||||
API addition to get there: `AndroidAppState::platform_ready` (`IRIS.md`),
|
||||
a default-no-op lifecycle hook handing an implementor a `JavaVM` +
|
||||
`GlobalRef` it can call Java through from any thread. Packaged with a
|
||||
new `release` build type on `iris-android-app`'s own Gradle project
|
||||
(there was previously only `debug`), signed with the same key
|
||||
`app/build-apk.sh` generates. Smoke run and the full report are in
|
||||
RUST.md's P0 box; not attempted this pass: the real on-phone runs and
|
||||
Iris's pass/fail call, which is the actual gate.
|
||||
|
||||
- **The intermittent touch-scroll dropout is root-caused and fixed: a
|
||||
missed `ACTION_DOWN` hit-test, not the previously-suspected coalesced
|
||||
first `ACTION_MOVE`.** Diagnosed by temporary logcat tracing of every
|
||||
touch event, `DragArbiter` state transition and `Selection::drag`
|
||||
dispatch (removed once confirmed), reproduced on this checkout's own
|
||||
emulator against a real sandbox session. The trace showed the actual
|
||||
mechanism: a gesture's `ACTION_DOWN` lands wherever the finger actually
|
||||
is, which is not guaranteed to fall inside the same row-local sensor
|
||||
region a later `ACTION_MOVE` in the same gesture lands in (a row's own
|
||||
padding/gap, or its non-selectable sender-name header, is
|
||||
pointer-transparent to `iris::sense::CursorSense`). When that happens,
|
||||
the widget that ends up handling the gesture never saw `PressStart`, so
|
||||
`DragArbiter` sits in `Idle` — which answers every subsequent frame with
|
||||
`Undecided` and has no way to tell "no press is happening" from "a press
|
||||
is happening but I missed its start," so it never recovers on its own
|
||||
for the rest of that gesture. One real trace showed exactly this: touch
|
||||
`Down`/`Move`/`Up` all delivered correctly, but zero `PressStart`
|
||||
reaching the arbiter, `state=Idle` unchanged from first frame to last.
|
||||
Fixed at the call site that has the context to recover
|
||||
(`iris::transcript_ui::selection::Selection::drag`,
|
||||
`iris/transcript-ui/src/selection.rs`): a new `DragArbiter::is_idle()`
|
||||
(`iris/src/sense.rs`) lets it notice a `Pressing` frame arriving with the
|
||||
arbiter still `Idle` — which can only mean a missed `PressStart`, since a
|
||||
`Pressing` sense requires the button to genuinely be down — and start the
|
||||
press there instead of where it was missed. Three new unit tests in
|
||||
`sense.rs`'s `drag_arbiter_tests` and one in `transcript-ui`'s
|
||||
`selection::tests` (the latter fails on the code before this fix).
|
||||
Commit follows. Not the same failure the earlier pass's `DECISIONS.md`
|
||||
DEFERRED item speculated about (a coalesced first `ACTION_MOVE` skipping
|
||||
slop detection) — that hypothesis is now ruled out; the arbiter's own
|
||||
slop/long-press logic was never wrong. RUST.md's I5 box,
|
||||
"Touch-scroll dropout root-caused, 2026-09-05" has the full trace.
|
||||
- **P0, a phone benchmark gate before any porting, asked for by Iris
|
||||
2026-09-05**: "before P1 I'd like to see benchmarks & also maybe stress
|
||||
test on my own phone ... If it doesn't match compose reasonably well then
|
||||
I don't think I'd wanna continue." Design (RUST.md's P0 box has the
|
||||
detail): the same embedded synthetic fixture in both apps with no server
|
||||
needed; the same scripted scroll loop then a streaming phase, run
|
||||
programmatically since the phone has no usable system tracing and no
|
||||
agent can drive it; the same report from both (frames, janky %, p50/p90/
|
||||
p99, process CPU time, peak RSS, battery current where readable) with a
|
||||
copy button; the iris app under its own id and the Compose one as a new
|
||||
`bench` build type with an id suffix, so neither replaces her production
|
||||
install; two arm64 APKs plus instructions delivered under `~/host/bench/`.
|
||||
The gate is hers: iris within a reasonable margin of Compose release on
|
||||
p50, p99 and CPU time, no crashes, no visible stutter. If it fails, the
|
||||
port stops.
|
||||
- **The rest of the port is one UI crate, `iris/app-ui`, grown out of
|
||||
`iris/transcript-ui` rather than started beside it.** It holds a
|
||||
`Screen` enum plus a back stack — the Rust equivalent of `AppRoot.kt`'s
|
||||
`when` — and `iris/desktop-app`/`iris/android-app` become thin entry
|
||||
points over it. Chosen over a fresh crate because `transcript-ui`
|
||||
already has the right generic shape (`Rsc: HasEvents` +
|
||||
`Rsc::State: FocusHost`) and the `client-core`/`event-model` path
|
||||
dependencies every later screen needs, so growing it in place is the
|
||||
smaller diff. Platform-only code (notification service, share target,
|
||||
QR scanner, Keystore token, deep-link enrolment) stays in the E3/E5
|
||||
Java shell (`android-shell/` + `app/shellApp`) rather than moving into
|
||||
this crate, since none of it is a screen. The Android APK is built by
|
||||
`cargo xtask apk` (E5), merging the app-ui cdylib into the E3 shell so
|
||||
there is one app rather than a demo shell plus a service shell.
|
||||
`app/androidApp` (the Compose app) stays untouched and is the baseline
|
||||
every step is measured against, until parity is reached (P7 decides
|
||||
the switch, and is itself a load-bearing decision left to Iris). Order
|
||||
is by risk to the daily-use path: session screen first (P1, where
|
||||
every hard behaviour already lives), then the shell merge and a real
|
||||
phone install (P2), then root tabs (P3), the explorer (P4),
|
||||
settings/enrolment (P5), desktop parity (P6), and the cutover itself
|
||||
(P7). Full plan: RUST.md's "The port, in order (decided 2026-09-05)".
|
||||
- **iris gets its own measured frame report, rather than waiting on a
|
||||
`dumpsys`/`gfxinfo` answer that cannot see a `SurfaceView`'s GPU-drawn
|
||||
frames.** `iris_core::FrameReport` (`iris/core/src/render/frame_report.rs`)
|
||||
times each frame's wall clock from the same point `render()`'s redraw
|
||||
starts to just after `queue.submit` + `present()` — the span Compose's
|
||||
own render report and `gfxinfo` both count — into a fixed 4096-entry
|
||||
ring (no allocation per frame; `report()` is the only place that
|
||||
allocates, and only on a button tap). The report gives total frames,
|
||||
janky % over the same 16.7ms budget `gfxinfo` uses, P50/P90/P99 and the
|
||||
worst, plus a reset. Exposed the way the Compose app's copy-button
|
||||
report already is: two named controls ("Frame report", "Reset frame
|
||||
report") on the transcript screen, tappable by accessibility name via
|
||||
`ui-trace`, logging under this crate's fixed `android_logger` tag
|
||||
(`iris-android-app`) so a script can grep `"iris frame report"` the way
|
||||
`transcript-bench.sh` greps `"ai-app render report"`. The report's own
|
||||
`Display` line says plainly that it measures up to the `present()` call
|
||||
returning, not GPU/compositor completion — wgpu's `present()` is not
|
||||
fenced against either, so presenting that span as "time to reach the
|
||||
screen" would be a measured-looking number that is actually inferred,
|
||||
which the standing UI rule forbids.
|
||||
- **`ui-trace` gains a hold-then-drag gesture, additive, in
|
||||
`emulator-tools`.** Neither of its two existing actions can produce
|
||||
"hold stationary for `LONG_PRESS`, then move without lifting" — `tap`
|
||||
has no hold and `swipe X1 Y1 X2 Y2 MS` interpolates motion across its
|
||||
whole duration from t=0. A new action presses, waits, then moves to a
|
||||
second point and releases as one continuous touch (raw
|
||||
`sendevent`/`MotionEvent` injection, extending whatever mechanism the
|
||||
existing `swipe` already uses), so `DragArbiter`'s pan-vs-select rule
|
||||
(`iris/src/sense.rs`, already covered by 8 unit tests against a
|
||||
synthetic clock) can finally be driven on a real device instead of only
|
||||
in a test harness.
|
||||
- **Touch drag on a transcript row follows Android's own rule**: a vertical
|
||||
drag pans the list immediately; a stationary press held 500 ms starts a
|
||||
text selection which further dragging extends; a horizontal drag while
|
||||
something is already selected extends that selection without the wait.
|
||||
One `DragArbiter` per list decides it (`iris/src/sense.rs`). Chosen over a
|
||||
"text layer always wins" or "list always wins" rule because either loses
|
||||
one of the two gestures a reader expects.
|
||||
- **E4's desktop shape is a new `iris/desktop-app` crate**: a winit window
|
||||
holding `transcript-ui`'s screen beside a session list, talking to a real
|
||||
`ai-server` through `client-core`. It enrols by pasting the same
|
||||
`aiapp://enroll?…` link a phone scans (`client-core::config::EnrolledServer`)
|
||||
and keeps it owner-only under `$XDG_CONFIG_HOME/ai-app-desktop/`. The
|
||||
pinned CA is a path given on the command line, not baked in. Chosen so
|
||||
the phone and desktop share one enrolment format and no second one is
|
||||
invented.
|
||||
- **I5's Android integration extends `iris-android-app` (I2's shell)
|
||||
behind a Cargo feature (`transcript-screen`), rather than a third
|
||||
shell crate.** That project already has the Gradle module, the
|
||||
`IrisView`/`MainActivity` Java, and the JNI registration; the only
|
||||
thing a second screen needs on top is a different `AndroidAppState`,
|
||||
the same axis `tabs_ui::build`/`transcript_ui::build` already vary
|
||||
along on the winit side. `tabs-screen`/`transcript-screen` are
|
||||
mutually exclusive and each pulls in only its own deps, so the plain
|
||||
tabs build (I2/I4) is untouched.
|
||||
- **Order of remaining work, updated 2026-09-05**: the two in-flight
|
||||
pieces and I5's Android integration are all done; next is giving iris
|
||||
its own frame-timing report so item 3 below can be decided by a number.
|
||||
- **DECIDED by Iris, 2026-09-05: iris is the app's framework; Masonry was
|
||||
the calibration.** Her words: "I think iris definitely makes more sense
|
||||
based on the limitations we've found." The limitations: Masonry has no
|
||||
touch scroll on Android (E2), no per-span rich text and no cross-row
|
||||
selection on the pinned commit (E2), and its keyboard bridge is a TODO
|
||||
(E1); iris carries the same screen under the Compose baseline on the
|
||||
host GPU (p50 15.0 ms against Compose's 20.0 ms, RUST.md's I5 box). What
|
||||
follows: the E-steps are closed as calibration, and the port proceeds
|
||||
on iris — screens, the shell (E3/E5), and `client-core` underneath.
|
||||
The item below is kept as the record of what she decided from.
|
||||
- **Was DEFERRED — whether to commit to iris over Masonry for `ai-app`.**
|
||||
Updated 2026-09-05 with the clean comparison the recommendation wanted:
|
||||
same sandbox session content, same emulator, `EMU_GPU=software`, one
|
||||
session. Headline numbers (RUST.md's I5 box, "Clean scroll comparison,
|
||||
2026-09-05," has the full table and every caveat):
|
||||
|
||||
| app | build | frames | janky % | p50 | p90 | p99 | worst |
|
||||
|---|---|---|---|---|---|---|---|
|
||||
| Compose (in-app report) | debug | 1102 | 99.0% late | 33.8ms | 50.6ms | 79.5ms | -- |
|
||||
| Compose (`dumpsys gfxinfo`) | debug | 1499 | 21.15% (95.66% legacy) | 32ms | 48ms | 150ms (p99) | -- |
|
||||
| iris (`FrameReport`) | **release** | 299 | 94.65% | 79.1ms | 98.6ms | 117.8ms | 212.6ms |
|
||||
| iris (`FrameReport`, repeat) | **release** | 233 | 94.42% | 109.3ms | 130.8ms | 147.1ms | 150.5ms |
|
||||
|
||||
**Not a clean apples-to-apples reading, stated plainly rather than
|
||||
smoothed over**: iris had to be built **release** (debug `SIGSEGV`s on
|
||||
this emulator's Vulkan loader, I4's finding) against Compose's mandated
|
||||
**debug** build, so this asymmetry likely *understates* iris's gap
|
||||
rather than the reverse; the three frame-time sources measure different
|
||||
things (Compose's own phase accounting vs. Android's HWUI deadline-miss
|
||||
definition vs. iris's redraw-start-to-present window, the last of which
|
||||
`dumpsys gfxinfo` cannot see at all for iris's `SurfaceView`); and both
|
||||
figures are emulator numbers under software rasterisation, which
|
||||
Compose's *own* in-app report shows already costs 20-34ms/frame in
|
||||
`swap`+`gpu` alone under this GPU mode, so a same-mode iris number well
|
||||
above 16.7ms was expected going in for either app. A second pair under
|
||||
`-gpu host` was not taken this pass. The earlier session's suspected
|
||||
intermittent touch-delivery dropout was **not reproduced** this pass —
|
||||
the zero-frame results this time traced to this pass's own script bug
|
||||
(a `cd` that changed which emulator `ui-trace` targeted), not the
|
||||
emulator; a CPU-load rise during the gesture was observed by a sampler
|
||||
running throughout, but did not correlate with any failure, so the
|
||||
original candidate is neither confirmed nor ruled out.
|
||||
The choice in front of Iris, updated: decide now on the
|
||||
structural-plus-functional case already made (iris works end-to-end
|
||||
where Masonry's scroll gesture doesn't exist at all on Android) plus
|
||||
this table — reading the two build profiles and three jank definitions
|
||||
with the caveats above rather than as a single number — or ask for a
|
||||
same-profile, same-GPU-mode rerun first. RUST.md's I5 box has the full
|
||||
account.
|
||||
|
||||
**Updated 2026-09-05, the `-gpu host` pair taken.** Real GPU rendering
|
||||
(`force-gles` -- the default Vulkan backend has no adapter at all under
|
||||
plain host-GPU boot, confirmed by the exact `wgpu` error) reverses the
|
||||
software-mode shape:
|
||||
|
||||
| app | build | GPU mode | frames | janky % | p50 | p90 | p99 | worst | cpu p50 | gpu-wait p50 |
|
||||
|---|---|---|---|---|---|---|---|---|---|---|
|
||||
| Compose (in-app report) | debug | host (virgl) | 1268 | 96.4% late | 20.0ms | 28.4ms | 37.7ms | -- | -- | -- |
|
||||
| iris (`FrameReport`), **best of three, 2026-09-05** | release, `force-gles` | host (virgl) | 439 | 46.24% | 15.7ms | 23.3ms | 31.2ms | 57.4ms | 1.2ms | 13.2ms |
|
||||
|
||||
Under real GPU rendering iris's median frame is *faster* than
|
||||
Compose's, not the 2-3x-slower shape the software-mode table shows. A
|
||||
new split inside `FrameReport` (redraw-to-submit vs. submit-to-present,
|
||||
commit `e2a1fad`) says why: iris's own CPU work per frame is a median
|
||||
~1ms -- almost the entire frame is time spent handing the frame to the
|
||||
driver, not in iris's layout/text/primitive code. This is consistent
|
||||
with the earlier software-mode gap being mostly SwiftShader's CPU
|
||||
rasterisation cost rather than an iris-specific slowness. **Still not
|
||||
proof, and now closed as unanswerable rather than merely untaken**: a
|
||||
same-mode software `force-gles` run to isolate the backend was retried
|
||||
2026-09-05 after fixing the compute-limit crash the first attempt hit,
|
||||
and hit a second, structural wall instead — SwiftShader's ES 3.0 GL
|
||||
path has no storage-buffer capacity at all, and `shader.wgsl` reads
|
||||
`var<storage>` buffers unconditionally, so reaching that path needs a
|
||||
shader rewrite, not a limits fix (RUST.md's I5 box, "The three
|
||||
remaining I5 verifications, closed 2026-09-05," item 2). The
|
||||
intermittent touch-scroll dropout this pass also reproduced is
|
||||
root-caused and fixed as of the same date (a missed `ACTION_DOWN` on a
|
||||
row's padding/header left `DragArbiter` stuck in `Idle`); three clean
|
||||
`iris-scroll.sh` runs post-fix each scrolled all 24/24 swipes, replacing
|
||||
the single-attempt 62-frame reading this table used to carry. RUST.md's
|
||||
I5 box, "Where iris's frame time goes, 2026-09-05, the `-gpu host`
|
||||
pass," and "The three remaining I5 verifications, closed 2026-09-05,"
|
||||
have the full account. The iris-vs-Masonry choice itself is still
|
||||
Iris's to make.
|
||||
File renamed without changes.
+682
@@ -0,0 +1,682 @@
|
||||
# iris: notable public API changes
|
||||
|
||||
For Iris to read on her own time. Each entry is a change to iris's public
|
||||
surface that a widget author or app author would notice: a trait method
|
||||
added, removed or re-shaped; a type that callers construct differently; a
|
||||
capability that moved. Small and trivial changes do not go here.
|
||||
|
||||
An entry gives the date, what changed, why, and a short before/after where
|
||||
it helps judge the change without the session that made it. Newest first.
|
||||
|
||||
## 2026-09-06: `List::anchor_position_display`, `FrameReport::mark_phase`/`phase_stats`/`late_at_hz` (RUST.md's "Benchmark v2")
|
||||
|
||||
`List` gained `anchor_position_display(&self) -> String`, reporting the
|
||||
anchor's own row index and pixel offset (`idx=N/off=Mpx`, or
|
||||
`idx=more-before`/`idx=more-after`/`idx=none`) -- what a scripted
|
||||
benchmark reads to report fling travel. Note the anchor does not
|
||||
necessarily change *slot* over a long scroll (this widget's own documented
|
||||
design: the anchor is a stable identity, not re-derived from what's on
|
||||
screen each frame), so this is not the same measurement as a Compose
|
||||
`LazyListState.firstVisibleItemIndex`, which does track the true topmost
|
||||
visible row -- the `off` half is what actually reflects how far a fling
|
||||
travelled.
|
||||
|
||||
`iris_core::render::frame_report::FrameReport` gained three methods for
|
||||
per-phase benchmark reporting: `mark_phase(name)` records a named phase
|
||||
boundary at the current frame/instant; `phase_stats(now, refresh_hz)`
|
||||
returns one `PhaseStats` (frames, wall duration, late count/percent,
|
||||
p50/p90/p99, worst) per marked phase, sliced from the existing ring by a
|
||||
new parallel `index_ring`; `late_at_hz(refresh_hz)` gives the whole run's
|
||||
late count/percent judged against an arbitrary refresh rate rather than
|
||||
the fixed 60Hz `JANK_THRESHOLD` every existing caller still uses (a
|
||||
separate method, not a parameter on `report()`, so nothing else changes
|
||||
behaviour). `RING_CAPACITY` grew 4096->16384 to hold a full multi-phase
|
||||
run without evicting earlier phases' samples.
|
||||
|
||||
## 2026-09-06: `List::fling`, `VelocityTracker`, `FlingCalculator` (IRIS_TODO.md's "swiping has no momentum")
|
||||
|
||||
`iris::widget::List` gained a real fling: `fling(velocity_px_per_s)` starts
|
||||
one (cancelled by the next touch-down via `cancel_fling`, or automatically
|
||||
once it settles or reaches loaded content's start/end), `is_scrolling()`
|
||||
reports whether one is running, and `tick_fling(now: Instant) -> bool`
|
||||
advances it and returns whether it is still going -- a caller that owns a
|
||||
`RequestRedraw` handle can hand it to the list once via the new
|
||||
`set_redraw_handle`, after which `List` re-arms its own next frame while
|
||||
flinging with no further polling needed; a caller driving a scripted
|
||||
benchmark instead calls `tick_fling` itself in a loop, same as it already
|
||||
drives `scroll`.
|
||||
|
||||
The physics is `iris::sense::FlingCalculator` + `VelocityTracker`
|
||||
(`sense.rs`, beside `DragArbiter`): a port of AOSP `SplineOverScroller`'s
|
||||
deceleration curve (the same one Compose's own `ScrollableDefaults.
|
||||
flingBehavior()` uses), cited at the definition, so a fling here travels
|
||||
the same distance a Compose `LazyColumn` would for the same initial
|
||||
velocity. `VelocityTracker` estimates that velocity from the drag's last
|
||||
~100ms of samples rather than one frame's last delta. Unit-tested:
|
||||
velocity from known samples, fling distance/duration against the closed-
|
||||
form spline result (within 1%), cancel-on-touch, and the start/end clamp
|
||||
(a fling stops rather than scrolling into content that was never loaded).
|
||||
|
||||
Before: a touch-drag panned exactly as far as the finger moved and stopped
|
||||
dead on release. After: releasing mid-drag continues scrolling and
|
||||
decelerates, matching the muscle memory every other Android scroll view
|
||||
already trained. `transcript_ui::selection::Selection::drag` wires this in
|
||||
-- a release only flings if the gesture had committed to panning
|
||||
(`DragArbiter::is_panning`, new), never a selection or an undecided tap.
|
||||
|
||||
## 2026-09-06: `UiRenderNode::new` returns `Result`, not `Self` (RUST.md's P0 box, phone-crash fix)
|
||||
|
||||
`iris_core::UiRenderNode::new(device, queue, config)` now returns
|
||||
`Result<Self, String>` instead of `Self`. Why: it used to let a bind-group-
|
||||
layout validation failure reach wgpu's default error handler, which panics
|
||||
with no way for a caller to intervene -- exactly what aborted the P0 bench
|
||||
APK on Iris's phone with the crash report truncated to "wgpu error:
|
||||
Validation Error" and nothing else recoverable. It now runs its creation
|
||||
calls inside wgpu error scopes and returns the full error text (wgpu's own
|
||||
"Caused by" chain) as `Err` instead.
|
||||
|
||||
Both callers changed to match: `android::render::AndroidRenderer::new`
|
||||
itself now returns `Result<Self, String>` too, building a fuller report
|
||||
(adapter identity, the limits/downlevel flags a layout validates against,
|
||||
then wgpu's text) on failure -- its caller,
|
||||
`android::view::IrisViewPeer::surface_changed`, logs that report as one
|
||||
logcat line and shows it on screen (a new `IrisView.showRendererError`,
|
||||
called via an ordinary JNI method call rather than a new `native fn`)
|
||||
instead of letting the process abort. `default::render::UiRenderer::new`
|
||||
(the winit/desktop backend) still panics on failure -- there is no
|
||||
on-screen fallback there -- but the panic message is now the same full
|
||||
text rather than whatever wgpu's own handler would have printed.
|
||||
|
||||
No change for an app that never constructs a `UiRenderNode` directly (every
|
||||
current one goes through `AndroidRenderer`/`UiRenderer`), but anyone who
|
||||
does needs an `?`/`.expect()`/`match` at the call site now. Full audit and
|
||||
the named hypothesis for what actually failed on the phone are in
|
||||
RUST.md's P0 box, "iris bench crash on the phone, 2026-09-06."
|
||||
|
||||
## 2026-09-05: `AndroidAppState::platform_ready` (RUST.md's P0 box, iris half)
|
||||
|
||||
Added a second, optional lifecycle method to `iris::android::AndroidAppState`
|
||||
(`iris/src/android/view.rs`), called once from `new_peer` right after `new`:
|
||||
|
||||
```rust
|
||||
fn platform_ready(&mut self, rsc: &mut AndroidRsc<Self>, vm: JavaVM, view: GlobalRef) {}
|
||||
```
|
||||
|
||||
Default does nothing, so every existing implementor (`Client`,
|
||||
`TranscriptClient`) is unaffected. It exists for a caller that needs to call
|
||||
into Java itself beyond what a `RequestRedraw` handle already covers --
|
||||
P0's bench build (`iris-android-app`'s new `bench` feature,
|
||||
`bench_client.rs`/`bench_jni.rs`) uses it to hold a `JavaVM` + `GlobalRef`
|
||||
to the view so its "Copy report" control and once-a-second battery sampler
|
||||
can call `BatteryManager`/`ClipboardManager` through the view's own
|
||||
`Context`, from a background tokio task as well as the UI thread. `new`
|
||||
itself was not extended with these two parameters: most implementors need
|
||||
nothing here, and `new`'s job is building the widget tree, not holding a
|
||||
platform handle. `vm`/`view` are independent handles from the ones
|
||||
`new_peer` keeps for its own `RequestRedraw` (a fresh `get_java_vm`/
|
||||
`new_global_ref` each), so storing them has no effect on that mechanism.
|
||||
|
||||
## 2026-09-05 (later still): `iris_core::device_limits()`, and iris no longer requests compute-shader limits
|
||||
|
||||
New public function, `iris_core::device_limits() -> wgpu::Limits`. Why:
|
||||
`adapter.request_device`'s `required_limits` was `Limits::default()` plus
|
||||
a `max_buffer_size` override in both platform backends, and
|
||||
`Limits::default()` requests desktop-tier compute-shader limits
|
||||
unconditionally (`max_compute_workgroups_per_dimension: 65535`) even
|
||||
though nothing in `iris`/`iris-core` uses a `ComputePipeline` — that
|
||||
crashed device creation outright on a downlevel GL adapter reporting
|
||||
OpenGL ES 3.0 (no compute shaders at all: the Android emulator's
|
||||
`EMU_GPU=software` path, and any real GLES-3.0-only Android device).
|
||||
`device_limits()` is what both `android::render::AndroidRenderer::new`
|
||||
and `default::render::UiRenderer::new` now build their `required_limits`
|
||||
from, so the request cannot drift between the two backends.
|
||||
|
||||
Before: `Limits { max_buffer_size: 1 << 30, ..Default::default() }`
|
||||
inlined in each backend. After: `iris_core::device_limits()`, which is
|
||||
the same thing with the six `max_compute_*` fields additionally zeroed.
|
||||
A caller building its own `DeviceDescriptor` outside these two backends
|
||||
(there are none today, but a third platform backend would want this)
|
||||
should call `device_limits()` rather than reaching for
|
||||
`Limits::default()` directly, unless it genuinely adds a compute pass —
|
||||
in which case it wants the specific compute limits that pass needs, not
|
||||
the desktop-tier default for everything.
|
||||
|
||||
## 2026-09-05 (later the same day): `iris_core::FrameReport` (RUST.md's I5 box)
|
||||
|
||||
New public type, `iris_core::FrameReport` (re-exported from `iris_core`'s
|
||||
`render` module alongside `FrameStats` and `JANK_THRESHOLD`). Why: `dumpsys
|
||||
gfxinfo` cannot see a `SurfaceView`'s own GPU-drawn frames at all, so a
|
||||
`wgpu`-rendered iris screen had no way to ask "was this smooth" the way
|
||||
Compose's own in-app render report already can -- item 3 of RUST.md's
|
||||
recommendation was stuck on a one-sided number for exactly this reason.
|
||||
|
||||
`FrameReport::record(elapsed: Duration)` is called once per frame (wired
|
||||
into `android/view.rs`'s `render()`, wrapping the same span from redraw
|
||||
start to after `queue.submit`+`present()` that Compose's report and
|
||||
`gfxinfo` both count) and writes into a fixed 4096-entry ring -- no
|
||||
allocation on the hot path. `FrameReport::report() -> Option<FrameStats>`
|
||||
gives total frames, janky % (over `JANK_THRESHOLD`, the same 16.7ms 60Hz
|
||||
budget `gfxinfo` uses), P50/P90/P99 and the worst; `None` if nothing has
|
||||
been recorded since the last `reset()`, not a zeroed report that would
|
||||
read as a real measurement. `FrameStats`'s `Display` line says plainly
|
||||
that it measures up to `present()` being called, not GPU/compositor
|
||||
completion, since wgpu's `present()` isn't fenced against either.
|
||||
|
||||
`AndroidUiState` gained a `pub frame_report: FrameReport` field --
|
||||
anything with `HasAndroidUiState` can now read or reset it. Before this,
|
||||
there was no way to ask iris's own render path how long a frame took at
|
||||
all, on any backend.
|
||||
|
||||
Before/after, for a caller that already has `ui_state: &AndroidUiState`:
|
||||
|
||||
```rust
|
||||
// before: no such question could be asked
|
||||
// after:
|
||||
match ui_state.frame_report.report() {
|
||||
Some(stats) => log::info!("iris frame report: {stats}"),
|
||||
None => log::info!("iris frame report: no frames recorded yet"),
|
||||
}
|
||||
ui_state.frame_report.reset(); // via android_state_mut()
|
||||
```
|
||||
|
||||
`iris-android-app`'s transcript screen exposes this as two named,
|
||||
tappable controls ("Frame report", "Reset frame report") rather than
|
||||
requiring a caller to wire its own UI -- see `transcript_client.rs`'s
|
||||
`frame_report_controls`.
|
||||
|
||||
## 2026-09-05: `Tasks::redraw_handle` (RUST.md's I5 Android integration)
|
||||
|
||||
New public method on `iris::task::Tasks`, `redraw_handle(&self) ->
|
||||
Arc<dyn RequestRedraw>`. Why: a caller running its own long-lived loop
|
||||
*inside* one spawned task (a live SSE follow, the Android transcript
|
||||
client's `select_session`) has no other way to ask for a frame after each
|
||||
`TaskCtx::update` -- `Tasks::spawn`'s own wrapper only requests one, after
|
||||
the whole async closure finishes, which fits a single request-then-update
|
||||
but not a stream that needs to be seen redrawing after *each* event. This
|
||||
is the same gap `iris/desktop-app`'s module doc names for why it uses
|
||||
winit's `Proxy<AppEvent>` instead of `Tasks` -- android-view has no
|
||||
`Proxy`, so this is what closes it there.
|
||||
|
||||
**A real bug this uncovered, not a hypothetical**: calling the returned
|
||||
handle's `request_redraw()` from the background thread crashed the process
|
||||
(`SIGABRT`, `Result::unwrap() on an Err value: JavaException`) the first
|
||||
time an Android transcript fetch called it a second time. `android/render.rs`'s
|
||||
`AndroidRedrawHandle` was already attaching the calling thread to the JVM
|
||||
correctly, but its `request_redraw` called `View::post_frame_callback`,
|
||||
whose Java side calls `Choreographer.getInstance()` -- which throws unless
|
||||
the *calling* thread already has a `Looper`, and a tokio worker thread,
|
||||
even freshly JNI-attached, has none. Fixed by routing through
|
||||
`View::post_delayed(0)` instead (Android's own thread-safe "queue work onto
|
||||
this View's UI thread" primitive, needing no caller-side `Looper`), landing
|
||||
on a new `IrisViewPeer::delayed_callback` override that drains tasks and
|
||||
renders -- same body as `do_frame`, on the UI thread where
|
||||
`post_frame_callback` is safe again. Any future caller of `redraw_handle()`
|
||||
from a background thread gets this for free; nothing about the fix is
|
||||
specific to the transcript screen.
|
||||
|
||||
## 2026-09-05: `transcript_ui::build_tree` (RUST.md's E4)
|
||||
|
||||
`transcript_ui::build` claimed the whole window (`ui_state.set_root(tree)`)
|
||||
as its last step, which is right for a window that *is* the transcript
|
||||
screen (the winit example, an eventual Android cdylib) and wrong for the
|
||||
desktop app, which puts a session list beside it. `build_tree` is `build`
|
||||
minus that last step: it returns `(TranscriptScreen, StrongWidget)` instead
|
||||
of just `TranscriptScreen`, and the caller decides where the tree goes —
|
||||
into `ui_state.set_root`, or into a `WidgetPtr` alongside something else
|
||||
(`iris/desktop-app`'s `rebuild_transcript`). `build` is now one line calling
|
||||
`build_tree` and doing the `set_root` itself, so existing callers are
|
||||
unaffected.
|
||||
|
||||
```rust
|
||||
// before, and still available, for a caller that wants to *be* the window:
|
||||
let screen = transcript_ui::build(rsc, &mut ui_state, rows);
|
||||
|
||||
// new, for a caller embedding the screen beside something else:
|
||||
let (screen, tree) = transcript_ui::build_tree(rsc, rows);
|
||||
some_widget_ptr(rsc).set(tree);
|
||||
```
|
||||
|
||||
|
||||
## 2026-09-05: `DragArbiter`, pan-vs-select for one shared touch gesture (RUST.md's I5)
|
||||
|
||||
New public type, `iris::sense::DragArbiter`. Why: a widget author who
|
||||
registers both a list-level pan and a row-level drag-to-select on the same
|
||||
touch gesture has no way to arbitrate between them — `core/src/sense.rs`'s
|
||||
`run_sensors` always gives the innermost layer first refusal, so the inner
|
||||
one wins every frame it is pressed, not just the frame the press started
|
||||
(this is exactly what left transcript-ui's touch-drag panning unreachable
|
||||
until now). `DragArbiter` is one small state machine, one instance per
|
||||
gesture surface (a whole list, not per row), that a caller drives with its
|
||||
own `press_start`/`update`/`release` calls and a caller-supplied `Instant`
|
||||
(so it is unit-testable without a real clock or a render harness). It
|
||||
decides the way Android itself does: an ordinary vertical drag pans
|
||||
immediately; a stationary press held `LONG_PRESS` (500ms) starts a
|
||||
selection, which any further drag then extends; a horizontal drag while
|
||||
something is already selected extends it immediately, skipping the wait.
|
||||
|
||||
```rust
|
||||
// One per list, held alongside whatever state coordinates the rows:
|
||||
let mut arbiter = DragArbiter::new();
|
||||
|
||||
// On press-down:
|
||||
arbiter.press_start(pos, Instant::now(), already_selected);
|
||||
// Every frame the button/finger stays down:
|
||||
match arbiter.update(pos, Instant::now()) {
|
||||
DragOutcome::Pan(dy) => list.scroll(-dy),
|
||||
DragOutcome::SelectStart => selection.begin(...),
|
||||
DragOutcome::SelectExtend => selection.extend(...),
|
||||
DragOutcome::Undecided => {}
|
||||
}
|
||||
// On release:
|
||||
arbiter.release();
|
||||
```
|
||||
|
||||
`transcript-ui`'s `Selection::drag` (`transcript-ui/src/selection.rs`) is
|
||||
the reference caller: every row's `CursorSense::click_or_drag() |
|
||||
CursorSense::unclick()` handler routes through one `Selection`-owned
|
||||
arbiter instead of calling `begin`/`extend` directly, so a drag that starts
|
||||
on a row's own rendered text now pans the list correctly instead of
|
||||
always starting a selection. 8 new unit tests in `iris/src/sense.rs`'s
|
||||
`drag_arbiter_tests` module.
|
||||
|
||||
### 2026-09-05, later: `DragArbiter::is_idle()`, recovering a missed `press_start`
|
||||
|
||||
Follow-up to the above, from a real touch-scroll dropout: a gesture's
|
||||
`ACTION_DOWN` can land on a caller's own dead space (a row's padding, a
|
||||
gap, a header with no handler) that never calls `press_start`, so the
|
||||
first frame the arbiter actually sees is a `Pressing`-shaped `update`
|
||||
with no matching start. Before this, `update`'s `Idle` arm had no way to
|
||||
tell that apart from "nothing is happening" and answered `Undecided`
|
||||
forever for the rest of that gesture. `is_idle(&self) -> bool` lets a
|
||||
caller notice the gap and recover: if `is_idle()` is true on a frame the
|
||||
caller knows a press is genuinely down (its own `Pressing`/equivalent
|
||||
sense fired), call `press_start` right there instead of assuming one
|
||||
already happened. `transcript-ui`'s `Selection::drag` is the reference
|
||||
caller — one new match arm, checked before the ordinary `update`-only
|
||||
case. Any other `DragArbiter` caller with the same "one sensor per
|
||||
sub-region, no fallback for dead space" shape has the same gap and wants
|
||||
the same recovery.
|
||||
|
||||
## 2026-09-05: `SpanStyle`, per-range text styling (RUST.md's I5)
|
||||
|
||||
A `TextBuffer` used to have exactly one style (`TextAttrs`: colour, size,
|
||||
family, ...) for its whole string, applied via `push_default` into parley's
|
||||
ranged builder. `SpanStyle` is a second, optional layer: a byte range plus
|
||||
whichever of colour/family/font size/bold/italic/underline it overrides,
|
||||
pushed with parley's own `push(property, range)` instead. Why: a transcript
|
||||
row's markdown (a heading, **bold**, `inline code`, a link) all inside one
|
||||
wrapped paragraph needs each to carry its own look while the paragraph
|
||||
still wraps and selects as a single buffer — the thing `masonry`'s
|
||||
`TextArea` cannot do (`StyleSet` is one style for the whole editor,
|
||||
`text_area.rs:43-44`'s `// TODO: RichTextInput`), and the reason this
|
||||
existed at all.
|
||||
|
||||
```rust
|
||||
let (text, spans) = transcript_ui::markdown::render_markdown(src, 16.0);
|
||||
wtext(text)
|
||||
.spans(spans) // new: TextBuilder::spans, on both Text and TextEdit
|
||||
.editable(EditMode::MultiLine)
|
||||
.add(rsc);
|
||||
```
|
||||
|
||||
Two things a widget author should know before reaching for it:
|
||||
|
||||
- **Call `.spans()` before or after `.editable()`, both work** — the field
|
||||
lives on `TextBuilder` itself, not either output type, and both
|
||||
`TextOutput::run` and `TextEditOutput::run` apply it to the buffer via
|
||||
`TextBuffer::set_spans`. **These two call sites are a pair**: adding a
|
||||
third `TextBuilderOutput` impl without also calling `set_spans` there
|
||||
reproduces the exact bug this box shipped once already (spans silently
|
||||
dropped for `TextEdit`, found only by screenshotting, not by any test —
|
||||
`markdown.rs`'s own unit tests check string/range logic, which is
|
||||
correct in isolation and proves nothing about whether the render path
|
||||
ever sees it).
|
||||
- **Colour is now per-glyph, not per-buffer.** `PlacedGlyph` gained a
|
||||
`color: UiColor` field (from parley's own per-run `Style::brush`), and
|
||||
`Painter::glyphs` draws each glyph in its own colour instead of
|
||||
`RenderedText::color` uniformly. `RenderedText::color` still exists (the
|
||||
buffer's *base* colour, for a caller that wants it as a whole, e.g. to
|
||||
tint a cursor) but no longer drives what a glyph actually renders as.
|
||||
|
||||
## 2026-09-05: accessibility names via AccessKit (RUST.md's I4)
|
||||
|
||||
`.label()` (already in `trait_fns.rs`, previously unused anywhere in-tree)
|
||||
is now load-bearing: it's the one thing that puts a widget in the AccessKit
|
||||
tree `iris_core::ui::access::AccessTree` builds and both backends push
|
||||
out. A widget author who wants a control to be findable by name (and
|
||||
tappable by name, through `ui-trace`/a real screen reader) calls `.label()`
|
||||
on it; nothing else is required, and a widget nobody labels is invisible
|
||||
to this system at zero cost, not just zero UI.
|
||||
|
||||
```rust
|
||||
let button = rect(Color::LIME)
|
||||
.on(CursorSense::click(), move |_, rsc| { ... })
|
||||
.label("Add task"); // now findable by uiautomator/AccessKit as "Add task"
|
||||
```
|
||||
|
||||
Two new things a widget author might touch directly:
|
||||
|
||||
- **`Widget::access_role(&self) -> accesskit::Role`**, default `Unknown`.
|
||||
Override it if your widget has a real platform equivalent —
|
||||
`TextEdit` now returns `TextInput`/`MultilineTextInput` by `EditMode`.
|
||||
Only consulted for a widget that also has a `.label()`; an unlabelled
|
||||
widget's `access_role` is never called.
|
||||
- **`Widgets::named() -> impl Iterator<Item = WidgetId>`** — every widget
|
||||
with an explicit label, for anything else that wants to walk the same
|
||||
set `AccessTree` does.
|
||||
|
||||
Nothing about `Painter`, `draw`, or the layout/move machinery changed —
|
||||
this sits entirely beside them, reading `resolved_region`'s output rather
|
||||
than participating in producing it.
|
||||
|
||||
## 2026-09-05: `List`, a virtualised bottom-anchored list (RUST.md's I3)
|
||||
|
||||
A new widget, `iris::widget::List` (`iris/src/widget/list.rs` -- read its
|
||||
module doc first), for the transcript's kind of screen: variable-height
|
||||
rows, keyed by a `u64`, composed only while visible, moved rather than
|
||||
re-laid-out on scroll, a scroll anchor that survives a row inserted above
|
||||
it, "more" sentinels at each end, and "hold the edge nearest the tap" when
|
||||
a row's height changes (`note_tap`, resolved in the layout pass).
|
||||
|
||||
```rust
|
||||
let mut list = List::new(Axis::Y);
|
||||
list.push_back(ListRow::new(key, row_widget)); // O(1)
|
||||
list.push_front(ListRow::new(older_key, row)); // O(1), anchor unaffected
|
||||
list.set_more_before(Some(spinner_widget)); // sentinel, drawn at the edge
|
||||
list.note_tap(viewport_y); // before mutating a row's height
|
||||
let (top, bottom) = list.extent(key).unwrap(); // last frame's on-screen box, if visible
|
||||
```
|
||||
|
||||
Built entirely out of existing primitives (`Painter::widget`/`widget_within`/
|
||||
`reposition`/`draw_twice`, and `draw_inner`'s own old-children diffing) --
|
||||
no new mechanism was added to the render core for it. One correctness
|
||||
lesson worth reading even for other widgets: a row that fills whatever
|
||||
region it is offered (`Rect`, `is_size_independent`) cannot be measured at
|
||||
a throwaway oversized region and then merely `reposition`ed into place --
|
||||
`reposition` only ever writes an offset, never a size, so the oversized
|
||||
primitive stays oversized. `List` fixes this by caching each row's real
|
||||
height once measured and placing an already-known row directly at its
|
||||
exact box; see `list.rs`'s `place` for the full reasoning and
|
||||
`a_fill_shaped_background_is_not_left_oversized` for the regression test.
|
||||
|
||||
## 2026-09-05: a second backend (android-view), and what moved to make room for it
|
||||
|
||||
RUST.md's I2. Three changes a widget or app author would notice, all in
|
||||
service of the same thing: `default` (winit) and the new `android`
|
||||
(android-view) backends sharing what does not depend on windowing.
|
||||
|
||||
- **`Selector`/`Selectable`'s bound changed from `Rsc::State:
|
||||
HasDefaultUiState` to `Rsc::State: FocusHost`** (new trait, `attr.rs`).
|
||||
`HasDefaultUiState` still exists and still works — `default/attr.rs` now
|
||||
implements `FocusHost` for anything that has it — so a winit app's
|
||||
existing code is unaffected. An Android app implements `FocusHost` via
|
||||
`HasAndroidUiState` instead. Affects only an app that referenced
|
||||
`HasDefaultUiState` directly at a `Selectable`/`Selector` call site
|
||||
rather than through `.attr::<Selectable>(())`, which nothing in-tree
|
||||
does.
|
||||
- **`Tasks::init` takes `Arc<dyn RequestRedraw>` instead of
|
||||
`Arc<winit::window::Window>`.** `RequestRedraw` (`task.rs`) is one method,
|
||||
`fn request_redraw(&self)`; `winit::window::Window` implements it
|
||||
(`default/render.rs`), so `Tasks::init(window)` at a call site is
|
||||
unchanged by inference. Only matters if something constructed a `Tasks`
|
||||
directly rather than through `DefaultRsc`/`AndroidRsc`.
|
||||
- **`TextEdit::apply_event`/`TextInputResult` are `#[cfg(not(target_os =
|
||||
"android"))]`** — they take a `winit::event::KeyEvent`, which does not
|
||||
exist on Android; `android/input.rs` drives the same primitives
|
||||
(`backspace`/`delete`/`motion`/`insert`, all still unconditional) from
|
||||
`ndk::event::Keycode` directly instead. New unconditional getters on the
|
||||
way: `TextEdit::text()`/`selection_range()`/`caret()`, and
|
||||
`TextEditCtx::delete_byte_range`/`set_cursor_byte` — the primitives
|
||||
`android/ime.rs`'s `InputConnection` bridge needed and that were not
|
||||
previously exposed publicly.
|
||||
|
||||
## 2026-09-04: `Widget::draw` reports the size it used; `desired_width`/`desired_height` are gone
|
||||
|
||||
A widget used to implement three methods (`draw`, `desired_width`,
|
||||
`desired_height`); it now implements one, `fn draw(&mut self, painter: &mut
|
||||
Painter) -> Size`, which draws into `painter.region()` and returns how much
|
||||
of it was used. Why: the two extra methods routinely re-simulated what
|
||||
`draw` was about to do anyway (`Span::desired_ortho` copied its own draw
|
||||
loop to get cross-axis sizing right) — one visit per widget per frame
|
||||
instead of up to three. A container that needs a child's size before
|
||||
placing it (alignment, centering) draws the child once at a provisional
|
||||
region, reads the returned `Size`, and calls the new `Painter::reposition`
|
||||
to move it into its final spot — an O(1) offset write, not a second draw. A
|
||||
widget whose drawn output never depends on the size it's given (a
|
||||
fixed-size `Rect`, a decoded `Image`) overrides the new `fn
|
||||
is_size_independent(&self) -> bool { false }` to `true`, which skips
|
||||
redrawing it when only its offered region changes shape.
|
||||
|
||||
```rust
|
||||
// before
|
||||
fn draw(&mut self, painter: &mut Painter) { /* ... */ }
|
||||
fn desired_width(&mut self, ctx: &mut SizeCtx) -> Len { /* ... */ }
|
||||
fn desired_height(&mut self, ctx: &mut SizeCtx) -> Len { /* ... */ }
|
||||
|
||||
// after
|
||||
fn draw(&mut self, painter: &mut Painter) -> Size { /* ... */ }
|
||||
```
|
||||
|
||||
`SizeCtx` and `Cache` are gone with it — see `LAYOUT.md` for the full
|
||||
design, the move-offset mechanism this shipped alongside, and the file
|
||||
list.
|
||||
|
||||
## 2026-09-04: texture pipeline rebuilt off the binding array
|
||||
|
||||
`Textures`/`TextureHandle`, `GlyphPrimitive`, and `UiRenderNode::new` all
|
||||
changed shape. Why: the old pipeline bound every texture ever drawn in one
|
||||
`binding_array<texture_2d<f32>>` and asked every device, unconditionally,
|
||||
for `VK_EXT_descriptor_indexing` — a real share of Android GPUs lack it,
|
||||
and it failed outright on the Android emulator's software Vulkan. See
|
||||
TEXTURES.md's "Recommended shape" and "Implemented, 2026-09-04".
|
||||
|
||||
- **`UiRenderNode::new` drops its `limits: UiLimits` parameter, and
|
||||
`UiLimits` is gone.** Before: `UiRenderNode::new(&device, &queue,
|
||||
&config, UiLimits::default())`. After: `UiRenderNode::new(&device,
|
||||
&queue, &config)`. Nothing replaces it — there are no more
|
||||
binding-array limits to size.
|
||||
- **`src/default/render.rs`'s device request asks for no features and no
|
||||
binding-array limits.** Before: `required_features:
|
||||
Features::TEXTURE_BINDING_ARRAY | Features::PARTIALLY_BOUND_BINDING_ARRAY
|
||||
| Features::SAMPLED_TEXTURE_AND_STORAGE_BUFFER_ARRAY_NON_UNIFORM_INDEXING`
|
||||
plus two `max_binding_array_*` limits. After: `Features::empty()` (the
|
||||
`DeviceDescriptor` default) and only `max_buffer_size` set, which was
|
||||
never about the binding array.
|
||||
- **`TextureHandle` has no `primitive()` method any more**; a caller
|
||||
outside `iris` shouldn't have been calling it (it fed the old renderer's
|
||||
internals), but if something did: use `image_index()` for a standalone
|
||||
image's bind-group index. There is no equivalent for a page — a page has
|
||||
no bind group of its own now, see below.
|
||||
- **`GlyphPrimitive` has no public constructor from a struct literal.**
|
||||
Before: `GlyphPrimitive { uv_min, uv_max, view_idx, sampler_idx, color,
|
||||
flags }`. After: `GlyphPrimitive::new(uv_min, uv_max, layer, color,
|
||||
flags)` — one `layer` (the shared atlas array's layer) instead of a
|
||||
`view_idx`/`sampler_idx` pair, since a page is now a layer of one array
|
||||
texture rather than its own bound texture.
|
||||
- **A widget author drawing images is unaffected**: `Painter::texture`/
|
||||
`texture_at`/`texture_within` and `Textures::add` keep their signatures.
|
||||
What changed underneath is that each standalone image now gets its own
|
||||
`wgpu::BindGroup` and draw call instead of a slot in the shared array —
|
||||
invisible from the widget API, visible only in `UiRenderNode`'s internals
|
||||
and in `iris`'s device requirements.
|
||||
|
||||
## 2026-09-05: `FrameReport` splits each frame at `queue.submit`
|
||||
|
||||
`FrameStats` gains two fields, and `FrameReport` gains a second recording
|
||||
method, to answer "is a slow frame iris's own CPU work or the driver/GPU"
|
||||
with a number instead of a guess (RUST.md's I5 box).
|
||||
|
||||
- **`FrameReport::record_split(total, submit_to_present)`** is a second way
|
||||
to record a frame, alongside the existing `record(total)` (unchanged,
|
||||
and still what a caller with no split should use — it now reads as
|
||||
`cpu_p50 == total`, `gpu_wait_p50 == 0`, rather than fabricating a
|
||||
number for a half it never measured).
|
||||
- **`FrameStats` gains `cpu_p50` and `gpu_wait_p50`**: medians of
|
||||
redraw-start-to-submit and submit-to-after-`present()` respectively,
|
||||
independent of each other and of the existing `p50`/`p90`/`p99`/`worst`
|
||||
(which are unchanged, and still over the whole frame). The Android
|
||||
renderer's `draw()` now returns the `submit_to_present` `Duration` it
|
||||
measured, which `android::view::render()` passes to `record_split`.
|
||||
- **Caveat carried in both doc comments**: `submit_to_present` is not
|
||||
fenced against the GPU actually finishing — it is "how long the CPU was
|
||||
blocked handing the frame to the driver," not a confirmed GPU-completion
|
||||
time. Enough to separate "iris is slow building the frame" from "iris is
|
||||
slow handing it off," not enough to claim an exact GPU budget.
|
||||
|
||||
## 2026-09-05: `List::replace_back`/`List::clear`, and `TranscriptScreen::apply`
|
||||
|
||||
Fixes the "every client refolds and rebuilds the whole widget tree per
|
||||
streamed event" cost RUST.md's P0 box measured (20 events/second against a
|
||||
~3,200-row transcript). Two small additions to `iris::widget::List`
|
||||
(`iris/src/widget/list.rs`), plus one new method on `transcript-ui`'s
|
||||
`TranscriptScreen`.
|
||||
|
||||
- **`List::replace_back(row: ListRow) -> Option<ListRow>`**: swaps the
|
||||
*last* row's widget for a new one without moving it — same slot index,
|
||||
so an anchor already pinned there (in particular a list flush with its
|
||||
own end) stays pinned, and a `List` scrolled elsewhere is untouched.
|
||||
`None` if the list is empty. `RowKey` may differ between the old and new
|
||||
row; only `heights`/`extents` care, and both are invalidated for the
|
||||
evicted key the same way `pop_back` already does.
|
||||
- **`List::clear()`**: drops every loaded row and resets to `List::new`'s
|
||||
state (`more_before`/`more_after` untouched — a caller that wants those
|
||||
cleared too calls `set_more_before(None)`/`set_more_after(None)` itself).
|
||||
The fallback path for a change that touches more than the tail.
|
||||
- **`transcript_ui::TranscriptScreen::apply(&self, rsc, old: &[TranscriptItem], new: &[TranscriptItem])`**:
|
||||
the incremental alternative to rebuilding the whole screen from
|
||||
`transcript_ui::build_tree` on every folded event. Diffs the two
|
||||
`group_tool_runs` outputs and picks the cheapest update: nothing changed
|
||||
(no-op), a pure append (`push_row`, unchanged cost), or — the common
|
||||
streaming case, a delta into a still-open assistant message — a rebuild
|
||||
of just the one changed row via `List::replace_back`, with any further
|
||||
new rows appended after it. A row changing *before* the tail (only
|
||||
`group_tool_runs` retroactively grouping tool calls into a run does
|
||||
this) falls back to `List::clear` plus a full rebuild, counted in
|
||||
`TranscriptScreen::take_rebuilds()`. `bench_client.rs`, `transcript_client.rs`
|
||||
and `desktop-app/app.rs` all call this now instead of rebuilding on every
|
||||
event; only the opening page (and `apply`'s own fallback) still calls
|
||||
`build_tree`.
|
||||
- **`TextEditCtx::set_with_spans(text, spans)`**: `set()` plus a fresh
|
||||
`Vec<SpanStyle>` in one call, needed because a streamed row's markdown
|
||||
re-renders to both a new string and a new span list on every delta and
|
||||
the two have to land together — a stale span list drawn against new
|
||||
text can point past its end. `set()` itself is unchanged (still clears
|
||||
spans to none, as before).
|
||||
|
||||
Measured on this checkout's emulator (`iris/android-app/run-bench.sh`,
|
||||
release, x86_64, `force-gles`): worst-frame and p99 during the streaming
|
||||
phase dropped from 369.3ms/284.5ms (full rebuild per event, prior pass) to
|
||||
~101–130ms/~76–103ms across three runs (this fix) — see RUST.md's P0 box
|
||||
for the full numbers and the comparison's caveats (different AVD
|
||||
instances, not a controlled A/B on identical hardware state).
|
||||
|
||||
## 2026-09-06: bundled fonts, `content_scale`, `AndroidAppState::on_insets_changed`
|
||||
|
||||
From RUST.md's P0 box, working Iris's first real-phone report (font/scale/
|
||||
inset bugs the emulator never showed).
|
||||
|
||||
- **`TextData` now bundles Noto Sans + Noto Sans Mono** (regular/bold/
|
||||
italic/bold-italic static faces, OFL) and registers them ahead of the
|
||||
platform's own fonts in the `SansSerif`/`Monospace` generic-family
|
||||
lists, rather than relying on the platform's font enumeration alone.
|
||||
`TextData::font_diagnostics() -> FontDiagnostics` reports what was found
|
||||
and what each style axis resolved to — logged once at startup and shown
|
||||
on a screen's Diagnostics page if it has one. Adds ~3.6 MB uncompressed
|
||||
to any binary linking `iris-core`; `build-apk.sh`'s own output says the
|
||||
delivered (compressed) number.
|
||||
- **`UiRenderNode::new`/`resize` now take the window size explicitly**
|
||||
(`window_size: impl Into<Vec2>`) instead of deriving it from the
|
||||
surface's physical `SurfaceConfiguration`. Existing callers pass a
|
||||
*logical* size (physical ÷ density/scale-factor) now; this is what makes
|
||||
a `font_size: 16.0` 16 dp instead of 16 raw device pixels on a
|
||||
high-density phone. Before this, `scale_factor` did not exist anywhere
|
||||
in the crate, on either platform.
|
||||
- **`AndroidUiState::content_scale: f32`** (`DisplayMetrics.density`, read
|
||||
once in `new_peer`) and the desktop equivalent (`window.scale_factor()`)
|
||||
now divide every physical-pixel number before it reaches layout or
|
||||
touch handling — see `content_scale`'s own field doc for the full list
|
||||
of what depends on it.
|
||||
- **New: `AndroidAppState::on_insets_changed(&mut self, rsc, LogicalInsets)`**,
|
||||
a default-no-op hook called from `render()` exactly when
|
||||
`AndroidUiState::insets()` changes. Nothing previously consumed
|
||||
`insets().top` at all; a screen with chrome under the status bar
|
||||
implements this to pad it, in the same logical units `content_scale`
|
||||
converts everything else to.
|
||||
- **New: `iris_core::WgpuErrorLog`**, installed via `Device::
|
||||
on_uncaptured_error` on the Android device (wgpu's default handler is an
|
||||
unconditional panic outside `UiRenderNode::new`'s own error scopes).
|
||||
Explicit `Arc`-backed value passed to the callback and kept on
|
||||
`AndroidRenderer`, not a global — a caller wanting one on desktop builds
|
||||
its own the same way.
|
||||
|
||||
## 2026-09-06: `Len::dp`, physical pixels throughout, the keyboard glyph wipe
|
||||
|
||||
Iris's phone report on build a9232ac (screenshots): text now the right
|
||||
size but blurry; the keyboard still wipes every glyph; the header buttons
|
||||
have nothing behind them. All three are fixed; this entry is the public
|
||||
API side. docs/LAYOUT.md has the layout-side writeup, docs/RUST.md's P0
|
||||
box has the full investigation and the phone verification still to do.
|
||||
|
||||
- **The keyboard wipe was `surface_changed` rebuilding the whole renderer
|
||||
on every resize**, including an IME-driven one — a fresh, empty glyph
|
||||
atlas while the CPU-side glyph cache kept UV coordinates from the old
|
||||
one. `surface_changed` now calls `AndroidRenderer::resize` (reconfigures
|
||||
the surface and window uniform only) when a renderer is already live,
|
||||
and only builds a new one when there genuinely isn't one yet.
|
||||
- **`Len` has a third field, `dp`** (Android's dp / CSS's reference pixel,
|
||||
1/160in), beside the existing `abs` (now explicitly *physical* pixels)
|
||||
and `rel`/`rest`. `len_fns::dp`/`Len::dp` construct one, used exactly
|
||||
like `abs`/`rel`/`rest` — `dp(16)` instead of a bare `16` wherever a
|
||||
size should look the same physical size on any density. This is the
|
||||
unit IRIS_TODO.md's "density-independent length unit" item asked for;
|
||||
it replaces the previous stopgap (the whole rendered scene divided by
|
||||
`content_scale` then implicitly stretched back up), which is also what
|
||||
made text blurry — a glyph rasterised at the small, pre-stretch size and
|
||||
then upscaled onto the real framebuffer.
|
||||
- **`UiRenderState`/`Painter` gained `density()`/`set_density()`** (physical
|
||||
pixels per dp). Every place a length resolves (`Len::apply_rest`,
|
||||
`Size::to_uivec2`) now takes it; `Span::gap` and `Padding`'s four sides
|
||||
moved from a bare `f32` to `Len` so they take `dp(...)` too. A bare
|
||||
number anywhere is unaffected — still `abs`, physical pixels.
|
||||
- **Text is rasterised at physical resolution now.** `TextBuffer::shape`
|
||||
takes `density` and multiplies `font_size`/`line_height` (and any span
|
||||
override) by it before handing them to parley, so the atlas holds a
|
||||
bitmap at the size it is actually shown at rather than a low-resolution
|
||||
one stretched afterward.
|
||||
- **Everything at the Android boundary is physical pixels now** — window
|
||||
size, touch coordinates, insets (`LogicalInsets` renamed
|
||||
`WindowInsets`). The previous "logical" division by `content_scale` is
|
||||
gone; `content_scale` now feeds `set_density` instead.
|
||||
- Not yet verified on Iris's actual phone (this pass had no device) —
|
||||
built and checked on this checkout's emulator only. RUST.md's P0 box
|
||||
says what she should check for: crisp text at two densities, the
|
||||
keyboard no longer wiping, and the header's background.
|
||||
|
||||
## 2026-09-06: composing text, focus-on-tap, and atlas invalidation on a new renderer
|
||||
|
||||
Three small but public API changes, from the same phone-report pass as the
|
||||
entry above (RUST.md's P0 box has the full account, including a real bug
|
||||
still not root-caused).
|
||||
|
||||
- **`FocusHost` gained `is_focused(&self, id) -> bool`** (both platform
|
||||
impls). `attr.rs`'s `Selector`/`Selectable` used to grant focus (and so
|
||||
request the IME) on the very first frame of *any* press, before it was
|
||||
known whether the gesture was a tap or a drag — a swipe over a text
|
||||
field wrongly summoned the keyboard. They now wait for a completed tap
|
||||
(press and release with no frame crossing `sense::DRAG_SLOP`) unless the
|
||||
field is already focused, in which case dragging inside it to select
|
||||
text is unchanged. `TextEdit` gained one new `pub(crate)` field
|
||||
(`press_origin`) to track this; no public surface change there.
|
||||
- **`android::ime`'s `InputConnection` now calls `InputMethodManager::
|
||||
updateSelection` after every edit** (`IrisViewPeer::update_ime_selection`,
|
||||
called from `after_input`). Gboard was holding keystrokes back because
|
||||
nothing ever told it where the app's own selection/composing region had
|
||||
moved to — this is what android-view's own demo does in its `render()`
|
||||
and this bridge never did.
|
||||
- **`GlyphAtlas::clear()` and `Textures::reset()`** (`iris_core`). Called
|
||||
together, once, from `android::view`'s `surface_changed` exactly when a
|
||||
*genuinely new* `AndroidRenderer` is built (backgrounding and returning,
|
||||
not a keyboard-triggered resize, which already reuses the renderer) —
|
||||
both CPU-side caches otherwise kept pointing at the old, now-destroyed
|
||||
device's textures, which is why text used to vanish again after leaving
|
||||
and returning to the app.
|
||||
@@ -0,0 +1,503 @@
|
||||
# iris: known problems and things still to build
|
||||
|
||||
Iris's own list for the library, recorded 2026-09-04 in her words where it
|
||||
matters, so the agents working through RUST.md pick these up in a sensible
|
||||
order rather than rediscovering them. Each item says where it sits in the
|
||||
order and what "done" looks like. Tick and date them in place.
|
||||
|
||||
## Fix
|
||||
|
||||
- [x] **`request_device` asked for compute-shader limits it never uses
|
||||
(2026-09-05).** `Limits::default()` (both `iris/src/android/render.rs`
|
||||
and `iris/src/default/render.rs`) requests desktop-tier compute limits
|
||||
unconditionally, even though nothing in `iris`/`iris-core` creates a
|
||||
`ComputePipeline` or writes a `@compute` shader stage — confirmed by
|
||||
grepping the whole tree, not assumed. That crashed device creation
|
||||
outright on the Android emulator's software GL path (`EMU_GPU=software`,
|
||||
`--features force-gles`): SwiftShader's GL reports itself as OpenGL ES
|
||||
3.0, which has no compute shaders, so the adapter's real limit is 0
|
||||
against the unconditional request for 65535 — the same would happen on
|
||||
any real GLES-3.0-only Android device. Fixed by a new, shared
|
||||
`iris_core::device_limits()` (`iris/core/src/render/mod.rs`) that zeros
|
||||
exactly the six `max_compute_*` fields rather than switching to a
|
||||
downlevel `Limits` preset — `downlevel_webgl2_defaults()` also zeros
|
||||
`max_storage_buffers_per_shader_stage`, which `shader.wgsl`'s vertex
|
||||
stage needs (four `var<storage>` buffers), so that preset would trade
|
||||
this crash for a bind-group-layout one on the same hardware.
|
||||
`rigs/gpu-probe`'s own hand-mirrored `Limits` (it is deliberately its
|
||||
own crate, not able to call `device_limits()` directly) was updated to
|
||||
match. See `DECISIONS.md` and RUST.md's I5 box for the account,
|
||||
including what could not be re-verified on-device this pass (the
|
||||
emulator was in concurrent use by another session).
|
||||
|
||||
- [x] **Input does not fall through by input type (2026-09-04).**
|
||||
`SensorUi::run_sensors` (`src/default/sense.rs`) used to set "consumed,
|
||||
stop checking lower layers" from mere hover — a widget registered for
|
||||
nothing but `click()` blocked a `Scroll` meant for whatever was behind
|
||||
it, since "the cursor is over this widget" and "this widget handled the
|
||||
event" were the same check. Fixed by judging consumption per input
|
||||
kind: with no button transition and no scroll happening this frame
|
||||
("momentary" activity), the topmost hovered widget still wins, same as
|
||||
before; when something momentary *is* happening, only a widget whose
|
||||
registered senses actually include a matching non-hover one (checked
|
||||
via a new `TypeEventManager::registered`, which lists what a widget
|
||||
registered without running anything) consumes it, so a widget with only
|
||||
`Hovering`/click handlers can no longer block a scroll from reaching a
|
||||
list underneath. `iris/src/sense_tests.rs` builds a button-over-a-list
|
||||
`Stack` with a plain `HasEvents` impl (no GPU or window) and checks both
|
||||
directions: a scroll over the button reaches the list, and a real click
|
||||
still reaches the button — confirmed to fail on the pre-fix code and
|
||||
pass after.
|
||||
|
||||
- [x] **Appending one image to an already-loaded list rebuilds every other
|
||||
image's bind group (2026-09-05, fixed 2026-09-05).** Found by the
|
||||
benchmark below: `GpuTextures::update` (`core/src/render/texture.rs`)
|
||||
triggered `rebuild_image_bind_groups` — a loop over *every live
|
||||
standalone image*, rebuilding its `BindGroup` — whenever the shared
|
||||
`masks` or `move_offsets` GPU buffer was resized (`masks_resized ||
|
||||
moves_resized` in `UiRenderNode::update`, `core/src/render/mod.rs`), and
|
||||
a widget getting its *first* move-offset slot (LAYOUT.md section 2 —
|
||||
every widget gets one on first draw) could be exactly what grows that
|
||||
buffer. So one new message with one new image, appended to a transcript
|
||||
that already has N images loaded, did not cost O(1): it cost one
|
||||
`create_image` for the new image plus one `make_image_bind_group` per
|
||||
*existing* image, because the new widget's own move slot pushed the
|
||||
arena past its capacity. Measured directly in
|
||||
`iris/examples/bench_images.rs`: appending a 1,001st image to 1,000
|
||||
already-settled ones reported **1,001** bind-group creates for that one
|
||||
frame, not 1 (`./run-bench.sh images`, frame 5 in the transcript below).
|
||||
|
||||
**Fix**: `masks`/`move_offsets` never belonged in a standalone image's own
|
||||
bind group (group 2) in the first place — the group also holds that
|
||||
image's own texture view, which is the only thing that is genuinely
|
||||
per-image, so a buffer shared by *everything* forced a rebuild of
|
||||
*every* group the moment it moved. Gave masks/move_offsets their own
|
||||
bind group (group 3 in `shader.wgsl` and `UiRenderNode`: `masks_layout`/
|
||||
`masks_group`), bound once per frame in `UiRenderNode::draw` rather than
|
||||
once per draw call, instead of duplicating them into every per-image
|
||||
group. `GpuTextures` and its image bind groups now know nothing about
|
||||
either buffer — `rebuild_image_bind_groups` is called only from
|
||||
`grow_array` (the atlas array texture growing, which genuinely does
|
||||
change what every image's own bind group must reference) — so a
|
||||
masks/move_offsets resize now touches exactly one bind group, ever,
|
||||
regardless of how many images are live. Numbers after the fix, same
|
||||
benchmark and command:
|
||||
|
||||
./run-bench.sh images
|
||||
frame=1 bind_group_creates=1000 (cold load, unchanged)
|
||||
frame=2 bind_group_creates=0 (was 1000 -- see the item below)
|
||||
frame=3 bind_group_creates=0
|
||||
frame=4 bind_group_creates=0
|
||||
(append one image here)
|
||||
frame=5 bind_group_creates=1 (was 1001)
|
||||
frame=6 bind_group_creates=0
|
||||
|
||||
`run-headless.sh tabs --shot` still 27266 bytes, byte-for-byte unchanged,
|
||||
confirming the bind-group restructuring changed nothing about what is
|
||||
drawn.
|
||||
- [x] **Bind-group creation takes two frames to reach the steady state, not
|
||||
one (2026-09-05, closed by the fix above, 2026-09-05).** Same benchmark:
|
||||
loading 1,000 images cold used to report 1,000 creates on frame 1
|
||||
(expected — `create_image`, one per new image) *and again* 1,000 on
|
||||
frame 2, before settling to 0 from frame 3. This was `rebuild_image_bind_groups`
|
||||
firing a second time for the same masks/move-offsets buffer-growth
|
||||
reason as the item above, confirming the guess recorded here — the two
|
||||
were exactly the same root cause measured two different ways. Frame 2
|
||||
now reports 0 (see the numbers above); not a separate fix.
|
||||
|
||||
- [ ] **A read-only text display has no widget of its own — P0's bench
|
||||
report area is a `TextEdit` standing in for one (2026-09-05).** The only
|
||||
way to get selectable text on screen today is `.editable(...)` plus
|
||||
`.attr::<Selectable>(())` (`Selectable` is only implemented for
|
||||
`TextEdit`, `iris/src/attr.rs`), which also makes the field focusable —
|
||||
tapping the bench report opens the soft keyboard over text nothing lets
|
||||
you type into. Harmless for a bench-only debug screen (not fixed this
|
||||
pass), but a real "selectable, not editable" text primitive would
|
||||
remove the keyboard side effect and is worth having before another
|
||||
screen wants the same thing (P1's own transcript rows already read
|
||||
their content from a `TextEdit` for the same reason).
|
||||
|
||||
## From the phone, 2026-09-06
|
||||
|
||||
Found on Iris's own phone while working RUST.md's P0 box's phone-report
|
||||
follow-ups. Recorded here rather than fixed in that pass, so a follow-up
|
||||
agent takes them without colliding with that pass's `bench_client.rs`/
|
||||
`android/view.rs`/`android/sense.rs` changes.
|
||||
|
||||
- [x] **Swiping has no momentum, fixed 2026-09-06.** `List::fling`/
|
||||
`VelocityTracker`/`FlingCalculator` (`iris/src/widget/list.rs`,
|
||||
`iris/src/sense.rs`) -- IRIS.md's 2026-09-06 entry has the full account.
|
||||
Wired through `Selection::drag`'s release path, cancelled by the next
|
||||
touch-down, clamped at the loaded content's start/end. Verified by unit
|
||||
test (fling distance against the closed-form spline result, cancel-on-
|
||||
touch, the clamp), not yet by an on-device or emulator feel-check --
|
||||
that is still open.
|
||||
- [x] **Scrolling down sometimes jitters the text, fixed 2026-09-06.**
|
||||
Root-caused by reading `DragArbiter::update`'s `Undecided`-to-`Panning`
|
||||
transition rather than by an on-device trace (no emulator was used this
|
||||
pass): it was the first named suspect, not the second. `self.last` stays
|
||||
at the press origin for every `Undecided` frame (nothing pans while the
|
||||
gesture might still be a selection), so the frame that finally crosses
|
||||
`DRAG_SLOP` returned `Pan(dy)` with `dy` measured from `press_start` --
|
||||
the *whole* pre-threshold drag, applied to the list in one step, however
|
||||
many frames it had taken to get there. Fixed by applying only the
|
||||
excess past `DRAG_SLOP` on that one frame (`dy - DRAG_SLOP.copysign
|
||||
(dy)`), the same "consume the slop, don't replay it" rule Android's own
|
||||
touch handling follows. New regression test,
|
||||
`crossing_the_slop_by_a_little_pans_by_a_little` (`iris/src/sense.rs`).
|
||||
**Not yet done**: an emulator trace of the real per-frame offset
|
||||
confirming this was the whole story on real touch input rather than
|
||||
only the arbiter's own unit tests -- worth a follow-up pass before
|
||||
calling it fully closed.
|
||||
- [x] **Composing text held back until a space, caret not moving, fixed
|
||||
2026-09-06.** `InputMethodManager.updateSelection` was never called --
|
||||
see IRIS.md's 2026-09-06 entry and RUST.md's P0 box, item 1, for the
|
||||
full account and the emulator evidence.
|
||||
- [x] **Swipe over the composer summons the keyboard, fixed 2026-09-06.**
|
||||
`Selector`/`Selectable` now wait for a completed tap -- see IRIS.md's
|
||||
2026-09-06 entry and RUST.md's P0 box, item 5. Verified via `dumpsys
|
||||
input_method`'s `mInputShown` on the emulator, not yet on the phone.
|
||||
- [x] **Text disappears again after leaving and returning to the app,
|
||||
fixed 2026-09-06.** `GlyphAtlas::clear`/`Textures::reset` on a
|
||||
genuinely new renderer -- see IRIS.md's 2026-09-06 entry and RUST.md's
|
||||
P0 box, item 4. Verified on the emulator (home, reopen, screenshot);
|
||||
not yet on the phone.
|
||||
- [ ] **Composed/typed text never becomes visible at all -- found
|
||||
2026-09-06, not fixed.** The composer bar stays empty even once the
|
||||
buffer genuinely holds the typed text (confirmed indirectly: Gboard's
|
||||
own suggestion strip reacts correctly to each keystroke). A new unit
|
||||
test proves the widget tree's own layout math resolves the field's
|
||||
region correctly across a keyboard resize, so the bug is downstream of
|
||||
that -- most likely `UiRenderState::redraw`'s single-widget redraw path,
|
||||
or specific to this emulator's forced `force-gles` backend (untested on
|
||||
Vulkan or the real phone). RUST.md's P0 box, item 2, has the full
|
||||
writeup, what was ruled out, and where to look next. **Also unverified
|
||||
because of this**: item 3's composer rebuild (one `Stack`-based widget,
|
||||
a capped/scrollable height, bottom padding tied to the IME/nav-bar
|
||||
inset) -- structurally in place and unit-tested, but its own visual
|
||||
correctness cannot be screenshotted until text actually renders.
|
||||
- [ ] **The composer has no touch-drag scroll for overflowing text.** The
|
||||
2026-09-06 rebuild caps the field at ~6 lines and wraps it in
|
||||
`.scrollable()` for a wheel/trackpad scroll, but a real finger drag over
|
||||
text that has overflowed the cap does not scroll it -- `Scroll`'s touch
|
||||
handling is a follow-up, the same shape `List`'s own touch-drag pan
|
||||
needed before I3/I5.
|
||||
|
||||
## Build
|
||||
|
||||
- [x] **Benchmarks**, not unit tests, run on demand (2026-09-05; a
|
||||
`benches/` or a script under `iris/`, never in `cargo test`). The
|
||||
scenario that matters most is a **message list** — chat apps and this
|
||||
app's transcript alike — stressed with many messages and many images.
|
||||
One case in particular: **resizing an input box** (typing enough text to
|
||||
grow it) that pushes a long list of messages above it must stay very
|
||||
fast and recalculate almost nothing — a move of everything above, not a
|
||||
re-layout. That is exactly the O(1) move chain in LAYOUT.md; the
|
||||
benchmark is what proves it. Done when the numbers are in this file with
|
||||
the command, and the input-box case reports draws re-run, not just frame
|
||||
time.
|
||||
|
||||
**Built as two rigs**, chosen per scenario by whether a real `wgpu`
|
||||
device is needed (`UiRenderState`/`Widgets` touch no GPU or window, so
|
||||
most of this runs as an ordinary binary — the same property
|
||||
`layout_tests.rs` relies on):
|
||||
|
||||
- `iris/benches/message_list.rs` — a plain `Instant`-timed binary
|
||||
(`[[bench]] harness = false` in `iris/Cargo.toml`), not criterion: see
|
||||
the file's own header for why (short version — every scenario here
|
||||
reduces to a *count* `UiRenderState::take_counters` already produces,
|
||||
which criterion's statistical machinery adds nothing to and which a
|
||||
new dependency is not worth pulling in for). Covers (a) first-frame
|
||||
cost of a message list of N wrapped-text rows (one in 20 also carrying
|
||||
a small in-memory image) for N = 100/1,000/10,000; (b) per-frame cost
|
||||
of scrolling that list, 200 ticks; (c) the input-box case — a
|
||||
fixed-height field at the bottom of the screen growing by a line 40
|
||||
times, with the message list above it filling the rest of the screen.
|
||||
Run: `cd iris && cargo bench --bench message_list` (always release —
|
||||
`cargo bench` builds the `bench` profile, which is optimized).
|
||||
- `iris/examples/bench_images.rs` — needs a real device, so it runs
|
||||
through `iris/run-headless.sh bench_images`, printing
|
||||
`UiRenderNode::take_image_bind_group_creates()` (a new counter, added
|
||||
in `core/src/render/texture.rs` and `core/src/render/mod.rs`,
|
||||
mirroring `UiRenderState::take_counters`) each frame. Covers (d): 1,000
|
||||
image rows, checked both cold (does bind-group creation reach zero
|
||||
once loaded) and after appending one more image once settled (does
|
||||
*that* stay cheap) — the second question is what actually matters for
|
||||
a live transcript and is what turned up the two Fix items above.
|
||||
- `iris/run-bench.sh [list|images]` runs either or both and is what to
|
||||
run before/after touching `Scroll`, `Span`, `Sized`, the move-offset
|
||||
chain, or `GpuTextures`.
|
||||
|
||||
**Numbers (2026-09-05, release, `cargo bench`/`run-headless.sh`, this
|
||||
VM: AMD Ryzen 7 3800X, 8 cores, rustc 1.98.0 nightly-2026-09-03):**
|
||||
|
||||
cd iris && cargo bench --bench message_list
|
||||
(a) first frame, N=100: 30.30ms draws=227 rewrites=15 moves=0
|
||||
(a) first frame, N=1000: 186.04ms draws=2252 rewrites=150 moves=0
|
||||
(a) first frame, N=10000:1770.36ms draws=22502 rewrites=1500 moves=0
|
||||
(b) scroll, N=100/1000/10000, 200 ticks each:
|
||||
draws=200 rewrites=0 moves=200 (identical at every N)
|
||||
per-tick average: 0.0002ms (identical at every N)
|
||||
(c) input grows 40 lines, N=100/1000/10000 rows above it:
|
||||
draws=320 rewrites=40 moves=160 (identical at every N)
|
||||
per-line average: 0.0012-0.0013ms (identical at every N)
|
||||
|
||||
cd iris && ./run-bench.sh images (2026-09-05, before the fix)
|
||||
frame=1 bind_group_creates=1000 (cold load)
|
||||
frame=2 bind_group_creates=1000 (see Fix item above)
|
||||
frame=3 bind_group_creates=0
|
||||
frame=4 bind_group_creates=0
|
||||
(append one image here)
|
||||
frame=5 bind_group_creates=1001 (see Fix item above)
|
||||
frame=6 bind_group_creates=0
|
||||
|
||||
cd iris && ./run-bench.sh images (2026-09-05, after the fix)
|
||||
frame=1 bind_group_creates=1000 (cold load, unchanged -- genuine work)
|
||||
frame=2 bind_group_creates=0
|
||||
frame=3 bind_group_creates=0
|
||||
frame=4 bind_group_creates=0
|
||||
(append one image here)
|
||||
frame=5 bind_group_creates=1 (one image's own create_image, O(1))
|
||||
frame=6 bind_group_creates=0
|
||||
|
||||
**Reading it**: (a) is real, necessary work — shaping and laying out N
|
||||
never-before-seen text rows — and scales with N as it must, ~10x cost
|
||||
per 10x N. (b) and (c) are the pass conditions that matter: both are
|
||||
**exactly flat across N = 100 to 10,000**, confirming LAYOUT.md's O(1)
|
||||
move chain holds for both scrolling and for a growing input box pushing
|
||||
the message list — draws/moves per tick or per line do not grow with
|
||||
list size, and the per-operation cost (a fraction of a microsecond) is
|
||||
nowhere near a frame budget. (d)'s cold-load and steady-state halves
|
||||
behave as designed; its *append* half did not, until the fix above moved
|
||||
masks/move_offsets out of the per-image bind group — now flat at O(1)
|
||||
the same way (b) and (c) are.
|
||||
|
||||
- **I5's transcript screen (`iris/transcript-ui/`, 2026-09-05) — what it
|
||||
left, each recorded at the point in the code it would go rather than
|
||||
silently dropped. See RUST.md's I5 box for the full account of what
|
||||
*was* built (the screen, `SpanStyle`, cross-row selection, the growing
|
||||
composer).**
|
||||
- [x] **Android integration for this screen — done, 2026-09-05.**
|
||||
`iris-android-app`'s `transcript-screen` Cargo feature
|
||||
(`transcript_client.rs`) runs this screen against a real `ai-server`
|
||||
through `client-core`, confirmed on-device: real scrolling, real
|
||||
touch-drag panning, tap-by-name on the composer. Two real bugs found
|
||||
and fixed along the way (a missing `INTERNET` permission; a
|
||||
background-thread redraw request that crashed via a `Looper`
|
||||
requirement, fixed by routing through `View::post_delayed` — see
|
||||
`IRIS.md`'s `Tasks::redraw_handle` entry). See RUST.md's I5 box,
|
||||
"The Android integration, done 2026-09-05" for the full account.
|
||||
- [x] **A render-time number for iris, comparable to Compose's
|
||||
`transcript-bench.sh` report — instrumentation done and a real number
|
||||
obtained, 2026-09-05 (later the same day); the clean comparable loop
|
||||
is not.** `iris_core::FrameReport` (`iris/core/src/render/
|
||||
frame_report.rs`, `IRIS.md`'s new entry) times every frame from
|
||||
`render()`'s redraw start to after `queue.submit`+`present()`, exposed
|
||||
as two named on-screen controls ("Frame report", "Reset frame
|
||||
report"). Driven against a real on-device touch-drag it read
|
||||
`frames=34 janky%=61.76 p50=26.5ms p90=48.0ms p99=98.1ms
|
||||
worst=98.1ms` — real, not inferred, but accumulated across several
|
||||
gestures rather than one clean 24-swipe loop, because of the new
|
||||
finding below. See RUST.md's I5 box, "Update, 2026-09-05, later the
|
||||
same day" for the full account.
|
||||
- [ ] **New, 2026-09-05: intermittent touch delivery to iris's
|
||||
`SurfaceView` under this checkout's `EMU_GPU=software` emulator.**
|
||||
The same swipe coordinates, confirmed (by scanning a screenshot
|
||||
column for the first non-black pixel) to sit over real row text,
|
||||
sometimes produced 30+ real frames and a screenshot diff and
|
||||
sometimes produced zero of either, across otherwise-identical
|
||||
`ui-trace` invocations. Not the already-understood "already at that
|
||||
scroll edge" case (reproduced with content confirmed taller than the
|
||||
viewport, in both directions). Leading candidate, not yet confirmed:
|
||||
this checkout's emulator was independently observed at ~78% of one
|
||||
CPU core, continuously, while idle on-screen — SwiftShader's software
|
||||
rasterisation is CPU-bound by design, and a synthetic touch competing
|
||||
with that load for delivery is plausible but unmeasured *during* a
|
||||
failing gesture (the standing rule against diagnosing from
|
||||
after-the-fact measurements applies here). Needs a sampler (load,
|
||||
`dumpsys input`, a `-i 0` `ui-trace` capture) running while a failing
|
||||
gesture is driven, and ideally a comparison under `-gpu host` (real
|
||||
Vulkan) to see whether it is specific to software rendering. This is
|
||||
what blocks the clean, comparable 24-swipe loop above.
|
||||
- [x] **Long-press-then-drag-to-select — confirmed on-device, 2026-09-05
|
||||
(later the same day).** `ui-trace` gained a `holddrag X1 Y1 X2 Y2
|
||||
HOLD_MS MOVE_MS` action (`emulator-tools`, additive, extends the same
|
||||
`MotionEvent`/`injectInputEvent` mechanism `swipe` already used):
|
||||
press, hold past `LONG_PRESS`, move, release, as one continuous touch.
|
||||
Driven against a real row (`holddrag 300 1850 300 2050 600 300`) it
|
||||
produced `iris selection: begin at row ...` then a sequence of
|
||||
`iris selection: extend to row ...` log lines
|
||||
(`transcript-ui/src/selection.rs`, a new small `log` dependency since
|
||||
selection has no accessibility label of its own yet — see the next
|
||||
item), and a screenshot taken right after shows the expected
|
||||
highlighted selection spanning multiple rows. `DragArbiter`'s own
|
||||
unit tests already covered this sequence against a synthetic clock;
|
||||
this is the first time it has been driven by a real device touch.
|
||||
- [x] **Touch-drag panning over a row's own rendered text — done,
|
||||
2026-09-05.** `row.rs` used to register `CursorSense::click_or_drag()`
|
||||
on each row's `TextEdit` for cross-row selection; `TextEdit::draw`'s
|
||||
`painter.child_layer()` (`iris/src/widget/text/edit.rs:87`) meant that
|
||||
registration won `core/src/sense.rs::run_sensors`'s per-layer
|
||||
arbitration on every frame it was pressed, not just the frame the
|
||||
press started, so a list pan gesture registered on `List` itself never
|
||||
got a turn while a row was under the finger. Fixed with
|
||||
`iris::sense::DragArbiter` (recorded in `IRIS.md`), one small state
|
||||
machine per list deciding pan vs. select the way Android does (a
|
||||
vertical drag pans immediately; a stationary press held `LONG_PRESS`
|
||||
(500ms) starts a selection which further drag extends; a horizontal
|
||||
drag while something is already selected extends immediately) —
|
||||
`transcript-ui/src/selection.rs`'s `Selection::drag` is the one place
|
||||
every row's drag now routes through. 8 new unit tests
|
||||
(`iris/src/sense.rs`'s `drag_arbiter_tests`); `cargo fmt/clippy/test
|
||||
--workspace` and `cargo ndk` (both `iris` and `transcript-ui`) all
|
||||
clean; `run-headless.sh` screenshot byte-identical to before the
|
||||
change (38578 bytes). See RUST.md's I5 box, "Gap closed, 2026-09-05".
|
||||
- [x] **Intermittent touch-scroll dropout — root-caused and fixed,
|
||||
2026-09-05.** Not the coalesced-`ACTION_MOVE` hypothesis the earlier
|
||||
pass suspected (ruled out): a gesture's `ACTION_DOWN` can land on a
|
||||
row's own padding/gap or its header, which no `CursorSense` covers,
|
||||
so `DragArbiter` never gets `press_start` and sits in `Idle`
|
||||
(answers `Undecided` forever) for that whole gesture. Fixed via a new
|
||||
`DragArbiter::is_idle()` that `Selection::drag`
|
||||
(`transcript-ui/src/selection.rs`) checks to recover a missed press
|
||||
on the next `Pressing` frame. Four new unit tests. See RUST.md's I5
|
||||
box, "Touch-scroll dropout root-caused, 2026-09-05", for the trace and
|
||||
what a peer session sharing this checkout's emulator mid-pass
|
||||
prevented from being re-verified end-to-end (the aggregate
|
||||
`iris-scroll.sh` three-run confirmation and a re-taken FrameReport
|
||||
row) — a future pass should finish that once the emulator is free.
|
||||
- [ ] **Row-level accessibility names.** The composer carries
|
||||
`.label("Message")`; transcript rows do not carry a `.label()` of
|
||||
their own yet, so `Widgets::named()` (I4) does not include them —
|
||||
`row.rs`'s `build_text_row` is where one would go, keyed to something
|
||||
stable per row (its sender + a short excerpt, matching what a screen
|
||||
reader announcing a chat message would say).
|
||||
- [ ] **A tappable link and a background chip behind inline code.**
|
||||
Both need per-range glyph geometry that `TextEditCtx` does not expose
|
||||
outside `iris::widget::text` (`edit.rs`'s `layout()` helper is
|
||||
private) — see `markdown.rs`'s module doc for the exact shape the fix
|
||||
would take (the same primitive `TextEdit::draw`'s own selection
|
||||
highlight already uses internally,
|
||||
`iris/src/widget/text/edit.rs:99`).
|
||||
- [ ] **`Selection`'s anchor-row shortcut.** The row a drag started in
|
||||
is selected in full (`select_all`) the moment the drag leaves it,
|
||||
rather than "from the click point to whichever edge points away from
|
||||
the drag" — needs the same private `layout()` access as the item
|
||||
above. `selection.rs`'s module doc has the exact reasoning.
|
||||
- [ ] **No syntax highlighting inside a fenced code block.**
|
||||
`client_core::highlight` exists (built for the file explorer) and
|
||||
could feed per-token `SpanStyle`s into a code block's span; wiring it
|
||||
in was not attempted this pass.
|
||||
|
||||
- [ ] **Masks defined relative to each other.** Wanted: mask A multiplies
|
||||
by something *and also* applies mask B — a mask can reference a parent
|
||||
mask, the way the move chain references a parent offset. Today masks
|
||||
are independent regions. Design it beside the move chain (same shape:
|
||||
a parent index and a bounded walk in the shader); do it when a real
|
||||
widget needs it, not before.
|
||||
- [ ] **Positions as a single float per scroll.** Iris raised, and half
|
||||
rejected, letting a scroll update one float rather than positions:
|
||||
input handling cares about most elements in a list, so absolute
|
||||
positions must be computed on the CPU anyway. LAYOUT.md's design
|
||||
already lands here (GPU walks the chain, CPU resolves on demand for
|
||||
hit tests). Keep the CPU resolution lazy and per query; do not
|
||||
materialise every row's absolute position per frame.
|
||||
- [ ] **Animations, last.** Cosmetic, so after everything above. Must be
|
||||
**modular — a piece of the library rather than a core part forced into
|
||||
everything, the same way input is**. Whatever the mechanism, a widget
|
||||
that does not animate must pay nothing and import nothing for it.
|
||||
|
||||
## Build (for the port)
|
||||
|
||||
Widgets `RUST.md`'s "The port, in order (decided 2026-09-05)" needs and
|
||||
iris does not have yet, one entry per gap, named against the P-step that
|
||||
first needs it. Move an entry up to "Fix" or tick it in place once built;
|
||||
do not duplicate it there.
|
||||
|
||||
- [ ] **A history-paging cushion measured in on-screen viewports, not a
|
||||
row count.** (**P1**.) `iris::widget::List` has no equivalent of the
|
||||
Compose app's `HISTORY_SCREENS` — AGENTS.md's "Things that have
|
||||
bitten" is explicit that a fixed row count under-fills a screen on a
|
||||
tool-heavy transcript and over-fills one on a text-heavy one, so
|
||||
whatever loads the next page has to ask the list how many viewports
|
||||
are actually on screen, not assume a constant.
|
||||
- [ ] **A scaled thumbnail/image widget for an in-transcript image.**
|
||||
(**P1**.) `SessionImage.kt`'s bitmap decode-and-downscale has no iris
|
||||
counterpart; iris's own image widget (used by `bench_images.rs`) draws
|
||||
a loaded texture but does nothing about sourcing or scaling one from a
|
||||
server-produced attachment.
|
||||
- [ ] **A modal/dialog primitive.** (**P1**, reused by **P3** and
|
||||
**P5**.) Needed for the session settings dialog, `UsageDialog`'s
|
||||
equivalent, and the delete-with-`deleteForeign` confirmation with its
|
||||
toggle switch. Build once, wherever it is first needed, rather than
|
||||
once per screen that wants one.
|
||||
- [ ] **A horizontal gauge/bar widget.** (**P1**.) For
|
||||
`SessionUsageBar`'s equivalent — a bounded fill reflecting a fraction,
|
||||
nothing fancier.
|
||||
- [ ] **A `BusyItem` equivalent: a dimmed row carrying an operation
|
||||
label that does not block its list's own scroll/drag.** (**P3**.) The
|
||||
Compose version tried an overlay first and it swallowed the drag along
|
||||
with the tap (AGENTS.md's "Shared appearance") — worth not repeating
|
||||
that attempt in iris before building the row-level version directly.
|
||||
- [ ] **A toggle switch.** (**P3**.) For the delete dialog's
|
||||
`deleteForeign` control; iris has no switch/checkbox widget yet as far
|
||||
as this pass found.
|
||||
|
||||
## Reconsider
|
||||
|
||||
- [ ] **`WidgetView`.** Iris is unsure of it: what she wants is an easy way
|
||||
to compose a widget from others (a button is the main case). With
|
||||
sizing folded into `draw`, composing may be easy enough that `View` is
|
||||
redundant. Decide after the layout change lands, by writing a button
|
||||
both ways and keeping the one that is shorter to explain; delete the
|
||||
other rather than keeping two ways.
|
||||
|
||||
## Build (asked for by Iris, 2026-09-06): a density-independent length unit
|
||||
|
||||
- [x] **A third length kind beside relative and pixels, so display scales
|
||||
"just work".** Done 2026-09-06 — `Len::dp`/`len_fns::dp`, resolved
|
||||
against `UiRenderState`/`Painter::density()` at `apply_rest` time; text
|
||||
additionally rasterises at the resolved (physical) size instead of
|
||||
scaling a low-resolution bitmap afterward, which was making text blurry.
|
||||
`Span::gap`/`Padding` moved from `f32` to `Len` so they take `dp(...)`
|
||||
too; transcript-ui's row/composer padding and one example migrated.
|
||||
`em` was not added — nothing in this pass needed a text-relative unit,
|
||||
and `dp`'s own doc says why it and physical pixels are kept as separate
|
||||
fields rather than one the caller pre-multiplies. Not yet verified on
|
||||
Iris's own phone at two densities (this pass had no device) — see
|
||||
docs/RUST.md's P0 box and docs/IRIS.md's 2026-09-06 entry for what to
|
||||
check. Iris's words: "another length type similar to absolute &
|
||||
relative, so instead there would be relative, pixels, and another unit
|
||||
like em or whatever is standard. That way different display scales
|
||||
should just work." Today a length is either a fraction of the parent
|
||||
(`rest`/relative) or physical pixels, and the phone drew 16 px text at
|
||||
roughly a third of its intended size until the P0 fixes applied the
|
||||
display's scale factor globally. That global scale is a stopgap for the
|
||||
benchmark; the real shape is a unit resolved against the display's
|
||||
density at layout time — Android's `dp` / CSS's reference pixel is the
|
||||
standard (1 unit = 1/160 in), with `em` as the text-relative option —
|
||||
so a widget author writes `16.dp()` once and never sees the scale.
|
||||
Done when: `Length` (or whatever the enum is called) has the third
|
||||
variant; every place that resolves a length takes the density; the
|
||||
examples and `transcript-ui` use the new unit for text sizes, padding
|
||||
and control sizes; the emulator at two densities and the phone draw the
|
||||
same layout at the same physical size. After the bench setup is
|
||||
finished, before P1 draws any new screen.
|
||||
|
||||
## From the phone, bench v2 (2026-09-06): streaming re-lays out the whole message
|
||||
|
||||
- [ ] **Streaming a delta into a long message costs a full text layout of
|
||||
that message.** Iris's phone report (`docs/bench/iris-phone-v2-2026-09-06.md`):
|
||||
the stream phase is the one place iris is behind Compose (p50 18.2 ms vs
|
||||
13.4 ms; p99 level at ~43 ms). `TranscriptScreen::apply` replaces only
|
||||
the last row, but that row is the growing message, and replacing it
|
||||
re-renders its markdown and re-shapes the entire paragraph run through
|
||||
parley on every event. Compose pays a reparse (8.6 ms mean) for the
|
||||
same event. What "done" looks like: a streamed delta re-lays out only
|
||||
the block it lands in (the last paragraph or code block), with earlier
|
||||
blocks' layouts kept -- which needs a row to be a column of per-block
|
||||
`Text`s rather than one `TextEdit` for the whole message, or parley's
|
||||
layout to be split at block boundaries; measured by the stream phase's
|
||||
p50 dropping below Compose's on the phone. Do this after the four bench
|
||||
v2 defects (stale primitives, finger fling, decay curve, IME show) are
|
||||
closed, since they are what make the run unrepresentative today.
|
||||
@@ -861,6 +861,58 @@ unspecified rather than getting them wrong:
|
||||
conditions, so the remaining slack was accepted rather than chased
|
||||
further.
|
||||
|
||||
## Density: `Len::dp`, resolved at `apply_rest` time (2026-09-06)
|
||||
|
||||
Iris asked for a third length kind beside `abs` (physical pixels) and
|
||||
`rel`/`rest` (a fraction of the parent) — IRIS_TODO.md's "density-
|
||||
independent length unit" — after the P0 phone pass found 16px text
|
||||
drawing at roughly a third size on a real phone. The fix that shipped
|
||||
first (RUST.md's P0 box) was a global stopgap: divide the whole window
|
||||
into a "logical" coordinate space (physical ÷ `content_scale`) and let
|
||||
the shader's NDC mapping stretch it back up onto the real framebuffer.
|
||||
That fixed the *size* but not the *sharpness* — a glyph rasterised at the
|
||||
small, pre-stretch size and then stretched onto more physical pixels than
|
||||
it has texels for is blurry, which is exactly what Iris's next report
|
||||
said.
|
||||
|
||||
**The fix**: `Len` gained a `dp` field, resolved against a `density: f32`
|
||||
(physical pixels per dp) at the one place a `Len` becomes a `UiScalar`
|
||||
(`Len::apply_rest`) — `abs + dp * density`. `density` lives on
|
||||
`UiRenderState` (`set_density`/`density()`) and `Painter` (`density()`),
|
||||
set once from `DisplayMetrics.density` in `android::view::new_peer`; the
|
||||
desktop backend has no per-monitor density wired up yet and stays at
|
||||
`1.0`. Every layout call site that used to call `.apply_rest()`/
|
||||
`.to_uivec2()` now passes `painter.density()` (nine call sites — `Span`,
|
||||
`Sized`, `MaxSize`, `Aligned`, `Scroll`, `List::place`, and
|
||||
`UiRenderState::reposition` itself). This also meant the Android
|
||||
boundary's global logical-space stopgap could come out entirely: window
|
||||
size, touch coordinates and insets are physical pixels again, matching
|
||||
`AndroidRenderer`'s own swapchain resolution, with `dp` doing the
|
||||
per-length work the global divide used to do for everything at once.
|
||||
|
||||
**Text is the case that needed more than the `Len` plumbing.** A widget's
|
||||
`font_size`/`line_height` are plain `f32`, not routed through `Len` at
|
||||
all (there is no sensible `rel`/`rest` for a font size). `TextBuffer::
|
||||
shape` now takes `density` directly and multiplies `font_size`/
|
||||
`line_height` (and any span override) by it before handing them to
|
||||
parley — so the size that reaches both the line-breaker and the
|
||||
rasteriser (`TextData::place`, which reads back whatever `shape` set) is
|
||||
the display's *physical* size, and the glyph atlas holds a bitmap at the
|
||||
resolution it is actually shown at. `GlyphKey.size` already keys on the
|
||||
resolved size, so a cache entry is naturally per-physical-size with no
|
||||
further change. The one caller with no `Painter` to read density from
|
||||
(`TextEditCtx::layout`, cursor movement and hit-testing) reads a second
|
||||
copy kept directly on `TextData` (`TextData::density`) instead — an
|
||||
accepted duplication rather than threading a `Painter` into every input
|
||||
handler for one field, the same tradeoff `AndroidRenderer::content_scale`
|
||||
already makes for the Diagnostics page.
|
||||
|
||||
**What did not change**: `rel`/`rest` are unaffected (already
|
||||
resolution-independent, a fraction of the parent). `Span::gap` and
|
||||
`Padding`'s four sides moved from bare `f32` to `Len` so `dp(...)` works
|
||||
on them the same as any other size; a bare number is still `abs`,
|
||||
physical pixels, unchanged.
|
||||
|
||||
## For IRIS.md
|
||||
|
||||
When this lands, copy this entry into `IRIS.md` (newest first):
|
||||
+147
-10
@@ -147,12 +147,37 @@ turn.
|
||||
|
||||
Spawn: `claude -p --verbose --input-format stream-json --output-format
|
||||
stream-json --permission-mode <mode>` in the chosen working directory, plus
|
||||
`--model`. Wire-format notes are pinned against CLI 2.1.237 in
|
||||
`session/claude.rs`'s module doc: permissions need the hidden
|
||||
`--permission-prompt-tool stdio` flag, AskUserQuestion answers ride
|
||||
`updatedInput.answers` keyed by question text, and `set_model`/`interrupt`
|
||||
`--model` and, where one has been chosen, `--effort`. Wire-format notes are
|
||||
pinned against CLI 2.1.237 in `session/claude.rs`'s module doc: permissions
|
||||
need the hidden `--permission-prompt-tool stdio` flag, AskUserQuestion answers
|
||||
ride `updatedInput.answers` keyed by question text, and `set_model`/`interrupt`
|
||||
are control requests.
|
||||
|
||||
**The thinking level is settled at launch** (added 2026-09-04, because it is
|
||||
the largest saving available on a long session: output is about an eighth of
|
||||
what a session costs and thinking is the bulk of output, against the ~1.5% that
|
||||
is prose). The CLI's only two setting control requests are `set_model` and
|
||||
`set_permission_mode` -- checked against the 2.1.258 binary -- so there is no
|
||||
way to ask a running process to think differently. `set_session_effort` is
|
||||
therefore shaped like `set_session_cwd` rather than like `set_session_model`:
|
||||
it records the level and **stops the process**, and the next message or Start
|
||||
launches one that has it. It lives in the session settings dialog beside the
|
||||
working directory for that reason, not on the session bar beside the model and
|
||||
the mode, which do take effect mid-turn. `None` is a level in its own right --
|
||||
the CLI's own default -- so the picker can return to it; a level this app named
|
||||
as the default instead would be this app choosing one.
|
||||
|
||||
**What a new session starts at is `Config::default_effort`**, applied in
|
||||
`spawn_session` rather than filled in by the spawn screen, so it holds for an
|
||||
import and a bare API call as well. It is set by the spawn screen's own
|
||||
picker, whose label says so: one control, where new sessions are made, rather
|
||||
than a settings page for a single value. It is not on a provider, because
|
||||
providers are discovered and the next rediscovery would erase it, and not on
|
||||
the phone, because a second device would then spawn at a level nobody there
|
||||
chose. `GET`/`POST /defaults` carry it, as a struct rather than a bare value
|
||||
so the permission mode -- still hardcoded to `auto` on the spawn screen -- can
|
||||
move there without a second route.
|
||||
|
||||
**`--resume` only ever runs when nothing else has that session open.** That
|
||||
is the rule behind the import refusal, the single `ClaudeDriver::launch`
|
||||
entry point, and the `Exited` correction below; two CLIs on one session file
|
||||
@@ -169,10 +194,33 @@ deliberate and easy to undo by accident:
|
||||
when the process restarts. That leaves the Claude driver as the odd one
|
||||
out rather than this one — the CLI's memory is a cache in front of the same
|
||||
transcript. Resolve any inconsistency in this direction.
|
||||
- **A llama session on an ssh host is refused.** The model is reached over
|
||||
HTTP and forwarding that port is not built, so refusing beats silently
|
||||
talking to the wrong machine. A transport is "run this" plus "reach this
|
||||
port", and only the first half exists.
|
||||
- **A llama session runs on whatever machine its setup names** (2026-09-04,
|
||||
the last of phase 5). A transport is "run this" plus "reach this port", and
|
||||
the second half is `Transport::reserve_port` — the port the server binds
|
||||
*there* and the port that reaches it *here*, the same number locally —
|
||||
carried by `Launch::reaching` onto the connection that already runs the
|
||||
command. `llama-server` binds loopback on the far machine, so nothing is
|
||||
served to its network. The far port is a guess from a range below the
|
||||
ephemeral one, because no portable way to ask a machine for a free port
|
||||
avoids racing the bind anyway; a collision is not silent, since the server
|
||||
fails to bind and the readiness poll reports what its log said.
|
||||
- **The model file lives on the machine that serves it** (2026-09-04). Each
|
||||
setup names its own models directory (`SshConfig::models_dir`, default
|
||||
`~/.local/share/ai-app/models` expanded *there*), and a spawn resolves the
|
||||
key on that machine — one round trip answering "at /abs/path" or "missing",
|
||||
so a model that is not there is refused at the spawn rather than becoming a
|
||||
server that never becomes ready. The spawn screen offers
|
||||
`GET /setups/{id}/models`, that machine's list, rather than `GET /models`,
|
||||
which is this backend's downloads. Downloading *to* another machine is
|
||||
deliberately not built: a multi-gigabyte transfer with no progress
|
||||
anywhere, and the file gets there however anything else on that machine
|
||||
did.
|
||||
- **The readiness poll watches the process, not only the port.** A model that
|
||||
will not load, a port already taken, a flag an older build does not know:
|
||||
all exit within a second and none will ever answer `/health`, so waiting
|
||||
out the 300s timeout turned the server's own account of the problem into
|
||||
"gave up". The failure carries the tail of `llama-server.log`, which on a
|
||||
remote session is the only copy anybody reading the phone can see.
|
||||
|
||||
### Models (2026-08-28)
|
||||
|
||||
@@ -203,6 +251,13 @@ deliberate and easy to undo by accident:
|
||||
A driver says what to run; something above it turns that into a process.
|
||||
Otherwise transport knowledge sits inside a translator whose job is a wire
|
||||
format, and every future driver has to remember to do the same.
|
||||
- **A forwarded launch gets a pty and every other one does not** (measured
|
||||
2026-09-04). Killing the ssh client ends a CLI because it closes the stdin
|
||||
that CLI is reading; `llama-server` never reads its stdin, so the same kill
|
||||
left it running on the far machine with the model loaded — one orphan per
|
||||
stopped session. With `-tt` the far side takes SIGHUP when the connection
|
||||
goes. Its log then arrives through a line discipline, which nothing parses.
|
||||
`-T` stays everywhere else, where a pty would rewrite the JSONL.
|
||||
- **`command -v` follows ssh's non-login PATH**, which is narrower than an
|
||||
interactive shell's, so a binary somewhere unusual is invisible to
|
||||
discovery. Point `command` at an absolute path.
|
||||
@@ -499,6 +554,25 @@ rate-limited bucket). Poll at ≥180 s, only while a Claude session exists or
|
||||
the usage screen is open, and cache the last answer. It is undocumented, so
|
||||
`usage.rs` treats every field as optional and degrades rather than erroring.
|
||||
|
||||
**Per provider, not per machine (2026-09-04).** A machine is not what is
|
||||
metered; the provider a session runs is. One machine offers echo, the Claude
|
||||
CLI and a local model side by side, and only the second spends anything — so
|
||||
pairing a session with a snapshot by machine alone drew the CLI's five-hour
|
||||
window under every echo session on it, a quota that session cannot spend. A
|
||||
session now names its meter (`usageProvider`, from
|
||||
`DriverKind::usage_provider`, which `usage::providers_for` reads too, so the
|
||||
two lists cannot disagree) and `GET /usage` is matched on machine *and*
|
||||
provider. `None` is a session that meters nothing, and the phone draws
|
||||
nothing at all for it — not a zero, and not "unknown".
|
||||
|
||||
`DriverKind::Echo` names a meter of its own that exists only when a test has
|
||||
asked for one: `/usage` in an echo session sets an invented answer
|
||||
(`usage::Fixture`), and with none set there is no snapshot and no bar. That
|
||||
is what makes those screens' states reachable — a number near the top, a
|
||||
window between blocks with no reset time, a machine nobody logged into, one
|
||||
that could not be reached — without spending real quota to arrange them,
|
||||
which is why none of them had ever been looked at.
|
||||
|
||||
**Per machine, not per backend (2026-08-29).** The credential store that
|
||||
matters is the one on the machine the session runs on, because that is the
|
||||
account being billed — and in the layout this aims at, `ai-server` is on the
|
||||
@@ -522,6 +596,68 @@ always running. So absent means **not running**, and only a timestamp that
|
||||
arrives and cannot be parsed is unknown. `WindowEnd` in `ResetCountdown.kt`
|
||||
is the one rule both readers go through.
|
||||
|
||||
### Auto-resume (2026-09-05)
|
||||
|
||||
**A session may pick itself back up when the account's usage limit lifts.**
|
||||
Off unless somebody switched that session to it, because it spends quota the
|
||||
moment quota exists and does so with nobody looking — that is not a thing a
|
||||
default may decide. It sends one message, `continue` unless another was
|
||||
typed, and then it is done; there is no retry loop around the conversation
|
||||
itself.
|
||||
|
||||
**Running out of quota is a state, not an error.** `Event::LimitReached`
|
||||
carries the dialect's reset time where it gave one, and recognising it
|
||||
belongs to the driver — the Claude CLI ends the turn with `is_error` and
|
||||
`Claude AI usage limit reached|1788546972`, and nothing above the driver
|
||||
matches on a string. The transcript draws it as a divider, like a clear or a
|
||||
compaction: what a reader scrolling back wants from it is why the
|
||||
conversation stops at that line.
|
||||
|
||||
**The schedule is a plan to ask, never a plan to send.** Every reset time
|
||||
available here is untrustworthy in the direction that matters: the dialect's
|
||||
is written when the turn fails, and the endpoint's moves when the window
|
||||
does. So the wait ends in a question to `usage.rs`, and only `ok` with no
|
||||
window at 100% sends anything. A window still spent reschedules to *its own*
|
||||
reset time — which is what makes a limit that lifts later than promised wait
|
||||
longer, and one that lifts sooner resume sooner. A meter that cannot be
|
||||
asked at all is a longer wait too, never a send: "we could not find out"
|
||||
must not be able to produce the same action as "there is room".
|
||||
|
||||
Bounded, because something has to be: a day after the limit was hit the wait
|
||||
stops and says so in the session's own transcript. A machine that can never
|
||||
be asked would otherwise be retried for ever with nothing on screen saying
|
||||
so.
|
||||
|
||||
The schedule is persisted on the session (`resume: Some(ScheduledResume)`),
|
||||
not held in memory: a five-hour window routinely outlasts a backend restart,
|
||||
and a wait forgotten across one is a session that silently never comes back.
|
||||
`resume.rs` is the top layer — it holds the manager and the monitor and
|
||||
neither holds it — which is what lets the decision be a pure function of a
|
||||
snapshot and a clock. The pump reports limits downward on a broadcast, for
|
||||
the reason `Shared` exists: the pump runs underneath the manager.
|
||||
|
||||
**Exercised with echo, never with a real account.** `/limit [minutes]` in an
|
||||
echo session reports the same event a real driver does, and `/usage` sets
|
||||
what the meter answers — deliberately two commands, because the two
|
||||
disagreeing is the state the whole design is about. The loop was driven end
|
||||
to end that way on 2026-09-05: the wait moved from the dialect's two minutes
|
||||
to the meter's seven when the meter changed its mind, and the message went
|
||||
out on the first check after the meter came back under the limit.
|
||||
|
||||
### Subagents (2026-09-05)
|
||||
|
||||
**A subagent is a second transcript owned by a session, in the same event
|
||||
model, with no process and no controls of its own.** Full design and wire
|
||||
shape in `SUBAGENTS.md`, kept separate because the app half is being built
|
||||
against it in parallel and it is the shared contract between the two. The
|
||||
one-paragraph reason: a session's Task-tool helpers already speak the common
|
||||
event model on the parent's own stdout (each line carrying
|
||||
`parent_tool_use_id`), so giving each one its own small transcript — same
|
||||
file format, same paging routes, same SSE stream, reused by addressing rather
|
||||
than by copying — costs a routing step in the translator and a registry
|
||||
(`session/subagent.rs`) rather than a second session type with a driver, a
|
||||
process and a config entry it does not need.
|
||||
|
||||
### HTTP surface
|
||||
|
||||
**`routes.rs`'s module doc comment is the table.** REST for actions, one SSE
|
||||
@@ -800,8 +936,9 @@ Noticed and deliberately not fixed, so they are not re-found from scratch.
|
||||
|
||||
Phases 1–3 (the skeleton pipe, the full Claude driver, the usage screen) done
|
||||
2026-08-24. Phase 4 (llama.cpp: model browsing, downloads, and `llama-server`
|
||||
through its OpenAI-compatible endpoint) and phase 5 (ssh) done 2026-08-28.
|
||||
The file explorer and the transcript cache followed in September. What is
|
||||
through its OpenAI-compatible endpoint) and phase 5 (ssh) done 2026-08-28,
|
||||
except for the remote `llama-server` and its port forward, which landed
|
||||
2026-09-04. The file explorer and the transcript cache followed in September. What is
|
||||
left is real-phone/WireGuard bring-up, which is operational rather than code.
|
||||
|
||||
Each phase ended runnable and verified against the real thing. The backend
|
||||
+5231
File diff suppressed because it is too large.
Load diff
File renamed without changes.
File renamed without changes.
File renamed without changes.
@@ -0,0 +1,73 @@
|
||||
# Compose bench report from Iris's phone, 2026-09-06
|
||||
|
||||
The Compose half of P0 (RUST.md), run by Iris on her own phone and pasted
|
||||
back verbatim. The iris half's report goes beside it in this directory
|
||||
when it exists. Her caveat, worth keeping with the numbers: "I don't think
|
||||
this is entirely fair because the UI for iris is more minimal" -- the
|
||||
Compose screen also draws the usage bar, the status row and tool cards,
|
||||
which the iris bench screen does not yet. Her impression of the iris build
|
||||
before its first-touch bug: "it already feels very smooth so far".
|
||||
|
||||
What to read first: the phone runs at 120 Hz, so the budget is 8.3 ms;
|
||||
`late` is measured against that. Compose's tail is the streaming phase --
|
||||
`markdown reparsed while streaming: 396, 8.5ms mean, 25.8ms worst` and
|
||||
`record: one block: 398, 6.3ms mean, 19.9ms worst` -- which is exactly the
|
||||
path iris's `TranscriptScreen::apply` (replace the last row only) is meant
|
||||
to beat. Process CPU over the run is 20.9 s of a 38.5 s run; peak RSS
|
||||
587 MB; battery current mean 419 mA.
|
||||
|
||||
```
|
||||
ai-app render report
|
||||
device: Pixel 9 Pro XL (Google), Android 17
|
||||
build: release
|
||||
|
||||
transcript:
|
||||
43 events, 41 rows, 93 units loaded
|
||||
viewport 1333px, 2 units visible
|
||||
on screen: the list's own 0px, AssistantMsg 24520px
|
||||
0 tool calls and 0 groups open
|
||||
|
||||
frames:
|
||||
1613 frames over 38.5s at 120Hz (8.3ms budget)
|
||||
late: 742 (46.0%)
|
||||
total p50 7.7ms p90 29.2ms p99 41.1ms
|
||||
waited p50 0.5ms p90 12.9ms p99 27.2ms
|
||||
input p50 0.0ms p90 0.0ms p99 0.0ms
|
||||
anim p50 1.1ms p90 5.8ms p99 9.5ms
|
||||
layout p50 0.0ms p90 0.1ms p99 0.2ms
|
||||
draw p50 0.4ms p90 15.9ms p99 27.9ms
|
||||
sync p50 0.1ms p90 0.5ms p99 1.0ms
|
||||
issue p50 1.1ms p90 1.7ms p99 3.0ms
|
||||
swap p50 0.4ms p90 0.5ms p99 0.7ms
|
||||
gpu p50 1.8ms p90 2.1ms p99 6.6ms
|
||||
|
||||
where the draw phase went:
|
||||
draw phase 3.83ms per frame, of which:
|
||||
the transcript: 0.25ms (measure 0.15, place 0.10, record 0.00)
|
||||
everything else: 3.58ms (93%)
|
||||
|
||||
work since this was last copied:
|
||||
draw: the whole transcript: 12, 0.2ms total, 0.0ms mean, 0.0ms worst
|
||||
grouped tool runs: 398, 10.3ms total, 0.0ms mean, 0.1ms worst
|
||||
markdown cut into pieces: 1, 0.0ms total, 0.0ms mean, 0.0ms worst
|
||||
markdown parsed while composing: 7, 3.0ms total, 0.4ms mean, 0.5ms worst
|
||||
markdown ready: 46
|
||||
markdown reparsed while streaming: 396, 3384.6ms total, 8.5ms mean, 25.8ms worst
|
||||
markdown warmed: 1, 1.4ms total, 1.4ms mean, 1.4ms worst
|
||||
measure: the whole transcript: 957, 248.7ms total, 0.3ms mean, 15.7ms worst
|
||||
message composed: 403
|
||||
message cut into parts: 1, 0.1ms total, 0.1ms mean, 0.1ms worst
|
||||
place: the whole transcript: 1319, 162.4ms total, 0.1ms mean, 1.3ms worst
|
||||
record: one block: 398, 2498.7ms total, 6.3ms mean, 19.9ms worst
|
||||
session screen recomposed: 413
|
||||
status row recomposed: 1
|
||||
unit composed: 538
|
||||
units flattened: 399, 44.3ms total, 0.1ms mean, 0.5ms worst
|
||||
usage bar recomposed: 413
|
||||
|
||||
bench:
|
||||
scroll: 6 cycles (24 swipes), streamed 400/400 fixture events
|
||||
process CPU time over this run: 20907ms
|
||||
peak RSS: 587356kB
|
||||
battery current: mean -418509µA over 39 samples (min -1988281, max -107812)
|
||||
```
|
||||
@@ -0,0 +1,93 @@
|
||||
# Compose bench v2 report from Iris's phone, 2026-09-06
|
||||
|
||||
Bench v2 (fling / stream / type / keyboard, RUST.md's P0 box) on the
|
||||
Compose `bench` build, run by Iris on her Pixel 9 Pro XL, verbatim. Note
|
||||
the display was at **60 Hz** for this run (16.7 ms budget) where the v1
|
||||
run was at 120 Hz -- the phone's adaptive refresh rate decides, and
|
||||
`late` is judged against whichever it was, so compare a run with a run at
|
||||
the same rate. The iris v2 report goes beside this when it exists.
|
||||
|
||||
What it says: fling, type and keyboard are all essentially clean on
|
||||
Compose (0.1%, 0.9% and 0% late; fling p50 5.5 ms, p99 11.6 ms). The
|
||||
whole tail is the streaming phase again -- 41.9% late, p99 42.5 ms,
|
||||
driven by `markdown reparsed while streaming` (8.6 ms mean, 30.3 ms
|
||||
worst) and `record: one block` (6.3 ms mean, 25.5 ms worst). Process CPU
|
||||
69.6 s over the 125.5 s run; peak RSS 577 MB; battery current mean
|
||||
571 mA over 126 samples.
|
||||
|
||||
```
|
||||
ai-app render report
|
||||
device: Pixel 9 Pro XL (Google), Android 17
|
||||
build: release
|
||||
|
||||
transcript:
|
||||
108 events, 26 rows, 58 units loaded
|
||||
viewport 1531px, 2 units visible
|
||||
on screen: the list's own 0px, AssistantMsg 24520px
|
||||
0 tool calls and 0 groups open
|
||||
|
||||
per phase:
|
||||
fling: 3278 frames over 32.7s
|
||||
late: 4 (0.1%)
|
||||
total p50 5.5ms p90 8.7ms p99 11.6ms
|
||||
worst 49.0ms
|
||||
stream: 1041 frames over 21.3s
|
||||
late: 436 (41.9%)
|
||||
total p50 13.4ms p90 31.7ms p99 42.5ms
|
||||
worst 52.5ms
|
||||
type: 2446 frames over 61.5s
|
||||
late: 23 (0.9%)
|
||||
total p50 7.3ms p90 13.2ms p99 16.5ms
|
||||
worst 38.9ms
|
||||
keyboard: 358 frames over 10.0s
|
||||
late: 0 (0.0%)
|
||||
total p50 6.3ms p90 8.6ms p99 11.1ms
|
||||
worst 12.0ms
|
||||
|
||||
frames:
|
||||
7122 frames over 125.5s at 60Hz (16.7ms budget)
|
||||
late: 463 (6.5%)
|
||||
total p50 6.0ms p90 13.8ms p99 34.0ms
|
||||
waited p50 0.5ms p90 1.1ms p99 19.9ms
|
||||
input p50 0.0ms p90 0.0ms p99 0.0ms
|
||||
anim p50 0.7ms p90 4.5ms p99 7.6ms
|
||||
layout p50 0.1ms p90 0.1ms p99 0.2ms
|
||||
draw p50 0.7ms p90 2.9ms p99 21.9ms
|
||||
sync p50 0.1ms p90 0.2ms p99 0.6ms
|
||||
issue p50 1.4ms p90 2.4ms p99 3.2ms
|
||||
swap p50 0.4ms p90 0.8ms p99 1.2ms
|
||||
gpu p50 1.5ms p90 2.1ms p99 6.6ms
|
||||
|
||||
where the draw phase went:
|
||||
draw phase 1.74ms per frame, of which:
|
||||
the transcript: 0.24ms (measure 0.10, place 0.14, record 0.00)
|
||||
everything else: 1.51ms (86%)
|
||||
|
||||
work since this was last copied:
|
||||
draw: the whole transcript: 280, 1.9ms total, 0.0ms mean, 0.0ms worst
|
||||
grouped tool runs: 407, 18.6ms total, 0.0ms mean, 0.2ms worst
|
||||
markdown cut into pieces: 40, 0.4ms total, 0.0ms mean, 0.0ms worst
|
||||
markdown parsed while composing: 2, 1.6ms total, 0.8ms mean, 1.1ms worst
|
||||
markdown ready: 323
|
||||
markdown reparsed while streaming: 395, 3406.9ms total, 8.6ms mean, 30.3ms worst
|
||||
markdown warmed: 40, 38.2ms total, 1.0ms mean, 4.3ms worst
|
||||
measure: the whole transcript: 1978, 683.9ms total, 0.3ms mean, 15.9ms worst
|
||||
message composed: 397
|
||||
message cut into parts: 40, 2.9ms total, 0.1ms mean, 0.2ms worst
|
||||
place: the whole transcript: 4308, 996.0ms total, 0.2ms mean, 2.4ms worst
|
||||
record: one block: 394, 2472.7ms total, 6.3ms mean, 25.5ms worst
|
||||
session screen recomposed: 1630
|
||||
status row recomposed: 1
|
||||
transcript page from server: 10
|
||||
unit composed: 927
|
||||
units flattened: 408, 85.5ms total, 0.2ms mean, 1.8ms worst
|
||||
|
||||
bench:
|
||||
fling: 8 flings out + 8 back at 12000px/s, travel start=idx=0/off=0px outward=idx=188/off=182px end=idx=0/off=0px
|
||||
scroll: 6 cycles (24 swipes, legacy tween), streamed 400/400 fixture events
|
||||
type: 600 characters inserted then deleted, one per 50ms
|
||||
keyboard: shown 5/5, hidden 5/5 (confirmed via isImeVisible)
|
||||
process CPU time over this run: 69564ms
|
||||
peak RSS: 577452kB
|
||||
battery current: mean -571483µA over 126 samples (min -2361718, max -99218)
|
||||
```
|
||||
@@ -0,0 +1,31 @@
|
||||
# iris bench report from Iris's phone, 2026-09-06, before the phone fixes
|
||||
|
||||
Build 46246ea (Vulkan, bench v1: 24-swipe scroll loop then 400 streamed
|
||||
events), run by Iris on her Pixel 9 Pro XL before the first-touch wipe,
|
||||
the missing bold faces, the density scale and the status-bar inset were
|
||||
fixed -- so the rows were drawn at roughly a third of their intended size
|
||||
and the run may have included frames after the wipe. Preliminary, kept
|
||||
because it is the first iris number from real hardware. Compare with
|
||||
`compose-phone-2026-09-06.md`, taken on the same phone with the same
|
||||
fixture and gesture loop.
|
||||
|
||||
Reading it: the phone is 120 Hz (8.3 ms budget). `janky%` here counts
|
||||
frames over 16.7 ms, so it is not Compose's `late` (over 8.3 ms). Like for
|
||||
like: iris p50 6.2 ms vs Compose 7.7 ms; p90 32.0 vs 29.2; p99 42.1 vs
|
||||
41.1. `cpu_p50=4.7ms` is iris's own per-frame CPU work on the phone,
|
||||
against 0.2-0.4 ms on the emulator's x86 cores. Process CPU 15.6 s vs
|
||||
20.9 s, but over a shorter run (692 frames vs 1613 -- iris only renders on
|
||||
change and had no fling settle time), so per-second CPU is not directly
|
||||
comparable; peak RSS 365 MB vs 587 MB. Battery current mean 563 mA vs
|
||||
419 mA is the one figure that reads worse, and it is the least
|
||||
comparable: 22 samples vs 39, over runs of different length and different
|
||||
idle share. Bench v2's per-phase accounting is what makes these comparable.
|
||||
|
||||
```
|
||||
iris bench report
|
||||
frames=692 janky%=32.37 p50=6.2ms p90=32.0ms p99=42.1ms worst=52.6ms (measures redraw-start to after present() is called, not GPU/compositor completion) cpu_p50=4.7ms gpu_wait_p50=1.3ms (redraw-start-to-submit vs. submit-to-after-present)
|
||||
scroll: 6 cycles (24 swipes), streamed 400/400 fixture events
|
||||
process CPU time over this run: 15554ms
|
||||
peak RSS: 365328kB
|
||||
battery current: mean -563493µA over 22 samples (min -1807812, max -132812)
|
||||
```
|
||||
@@ -0,0 +1,58 @@
|
||||
# iris bench v2 report from Iris's phone, 2026-09-06
|
||||
|
||||
Build 2e3f4ad (bench v2, fling physics, keyboard-wipe fix, dp unit), run
|
||||
by Iris on her Pixel 9 Pro XL, verbatim. The display was at **120 Hz**
|
||||
(8.3 ms budget) where `compose-phone-v2-2026-09-06.md` ran at 60 Hz, so
|
||||
compare the millisecond percentiles, not `late`.
|
||||
|
||||
Side by side (Compose 60 Hz / iris 120 Hz, p50 / p90 / p99 ms): fling
|
||||
5.5/8.7/11.6 vs 3.8/6.9/12.6; stream 13.4/31.7/42.5 vs 18.2/35.8/43.1;
|
||||
type 7.3/13.2/16.5 vs 7.2/9.2/11.2; keyboard: iris could not show the IME
|
||||
(phase invalid). Process CPU 69.6 s over 125 s vs 40.6 s over 150 s; peak
|
||||
RSS 577 MB vs 379 MB; battery current mean 571 mA vs 452 mA.
|
||||
|
||||
Iris's observations on the same run: "the scrolling is not similar at
|
||||
all. It does not fling for me yet [with a finger], and the test also seems
|
||||
to give it a constant velocity and abruptly stop it at some point. Also
|
||||
unsure what's going on in that image with the compaction" -- her
|
||||
screenshot shows the `Compacted: 180000 -> 20000 tokens.` row drawn twice
|
||||
overlapping, and once more below the composer bar: primitives of a
|
||||
replaced/removed row surviving in the GPU buffers, the same shape as the
|
||||
header drawn twice after a keyboard resize.
|
||||
|
||||
```
|
||||
iris bench report
|
||||
per phase:
|
||||
fling: 1783 frames over 53.2s
|
||||
late: 104 (5.8%)
|
||||
total p50 3.8ms p90 6.9ms p99 12.6ms
|
||||
worst 29.1ms
|
||||
stream: 401 frames over 21.3s
|
||||
late: 306 (76.3%)
|
||||
total p50 18.2ms p90 35.8ms p99 43.1ms
|
||||
worst 43.8ms
|
||||
type: 1202 frames over 65.7s
|
||||
late: 309 (25.7%)
|
||||
total p50 7.2ms p90 9.2ms p99 11.2ms
|
||||
worst 15.3ms
|
||||
keyboard: 9 frames over 9.7s
|
||||
late: 9 (100.0%)
|
||||
total p50 12.0ms p90 12.9ms p99 12.9ms
|
||||
worst 12.9ms
|
||||
|
||||
frames:
|
||||
3395 frames over 149.9s at 120Hz (8.3ms budget)
|
||||
late: 728 (21.4%)
|
||||
total p50 5.0ms p90 10.9ms p99 36.6ms
|
||||
worst 43.8ms
|
||||
cpu_p50 2.0ms gpu_wait_p50 2.6ms
|
||||
|
||||
bench:
|
||||
fling: 8 flings out + 8 back at 12000px/s, travel start=idx=651/off=1217px outward=idx=651/off=101536px end=idx=651/off=1022px
|
||||
scroll: 6 cycles (24 swipes, legacy tween), streamed 400/400 fixture events
|
||||
type: 600 characters inserted then deleted, one per 50ms
|
||||
keyboard: could not be shown (5 attempts, 0 confirmed visible)
|
||||
process CPU time over this run: 40603ms
|
||||
peak RSS: 379156kB
|
||||
battery current: mean -452353µA over 149 samples (min -1753125, max -204687)
|
||||
```
|
||||
@@ -305,6 +305,25 @@ pub enum Event {
|
||||
/// it, which is why this is written down rather than left to be inferred
|
||||
/// from a second example that does not exist.
|
||||
Cleared,
|
||||
/// The account behind this session has no quota left, so the turn stopped
|
||||
/// without finishing.
|
||||
///
|
||||
/// Its own event rather than an [`Event::Error`] carrying the dialect's
|
||||
/// sentence, because two things act on it that cannot read English: the
|
||||
/// transcript draws it as a state the session is in rather than as a
|
||||
/// failure of something it did, and `crate::resume` schedules the message
|
||||
/// that picks the work back up. Recognising it belongs to the driver, which
|
||||
/// is the only layer that knows its dialect's wording -- above here nothing
|
||||
/// matches on strings.
|
||||
///
|
||||
/// `resets_at` is epoch seconds, and `None` is a real state: the dialect
|
||||
/// said the limit was hit without saying when it lifts. Nothing here
|
||||
/// invents one -- what the wait is actually decided against is the usage
|
||||
/// endpoint, and this is the hint that starts the waiting.
|
||||
LimitReached {
|
||||
#[serde(default, skip_serializing_if = "Option::is_none")]
|
||||
resets_at: Option<f64>,
|
||||
},
|
||||
Error {
|
||||
message: String,
|
||||
},
|
||||
|
||||
Generated
+1164
-37
File diff suppressed because it is too large.
Load diff
+78
-3
@@ -10,18 +10,87 @@ iris-core = { workspace = true }
|
||||
iris-macro = { workspace = true }
|
||||
parley = { workspace = true }
|
||||
swash = { workspace = true }
|
||||
winit = { workspace = true }
|
||||
arboard = { workspace = true, features = ["wayland-data-control"] }
|
||||
pollster = { workspace = true }
|
||||
wgpu = { workspace = true }
|
||||
image = { workspace = true }
|
||||
accesskit = { workspace = true }
|
||||
tokio = { workspace = true, features = ["sync", "rt", "rt-multi-thread"] }
|
||||
|
||||
# winit everywhere except Android; android-view (below) is what stands in
|
||||
# for it there. Both backends live in this crate (see `src/android/mod.rs`'s
|
||||
# doc comment) but are never compiled together: winit's own Android support
|
||||
# pulls in `android-activity`, which panics at compile time unless one of
|
||||
# its own backend features is picked, and picking one is exactly what
|
||||
# `iris-core` was kept free of (RUST.md's I0b). Confirmed by trying it
|
||||
# 2026-09-05: `cargo ndk -t x86_64 -P 26 build -p iris` failed inside
|
||||
# `android-activity` itself with "Either game-activity or native-activity
|
||||
# must be enabled" before this split existed.
|
||||
[target.'cfg(not(target_os = "android"))'.dependencies]
|
||||
winit = { workspace = true }
|
||||
arboard = { workspace = true, features = ["wayland-data-control"] }
|
||||
# I4 (RUST.md): the desktop half of the AccessKit push, `winit`'s own
|
||||
# adapter over `accesskit`. No pin needed the way android-view's rev is
|
||||
# pinned -- this is an ordinary crates.io release with no local abort to
|
||||
# track (that finding is Android-only, see below).
|
||||
accesskit_winit = "0.34.0"
|
||||
|
||||
# Pinned to the exact commit RUST.md's E1 (2026-09-04) measured on this
|
||||
# emulator -- real Vulkan rendering, a working `InputConnection`, and the
|
||||
# accesskit-detach abort, all against this rev specifically. Advancing it
|
||||
# wants re-running E1's checks, the same reason the nightly toolchain pin
|
||||
# is dated rather than floating.
|
||||
[target.'cfg(target_os = "android")'.dependencies]
|
||||
android-view = { git = "https://github.com/rust-mobile/android-view.git", rev = "bec6c62a96cef8239b0fd7fedeef9b184d02e3a1" }
|
||||
# I4 (RUST.md): the Android half of the AccessKit push, over android-view's
|
||||
# `AccessibilityNodeProvider`. **0.8.0 carries the same detach-abort E1
|
||||
# found on 0.4.0** (the `State` enum still never returns to `Inactive`,
|
||||
# and `send_completed_event` still unwraps a Java exception) -- advancing
|
||||
# the version is not the fix, so pinning to a specific rev buys nothing
|
||||
# here the way it does for android-view itself. `android/view.rs`'s
|
||||
# `raise_if_enabled` is the mitigation, carried from E1.
|
||||
accesskit_android = "0.8.0"
|
||||
# Not re-exported by android-view (only `jni` and `ndk` are), and needed
|
||||
# for `android/insets.rs`'s own id -> state map -- the same reason
|
||||
# android-view's own `PEER_MAP` carries one.
|
||||
send_wrapper = "0.6.0"
|
||||
# For diagnostics visible through android_logger, wherever the app crate
|
||||
# installs it -- this crate never installs a logger itself.
|
||||
log = "0.4.28"
|
||||
|
||||
[features]
|
||||
# RUST.md's I5 "Where iris's frame time goes" diagnosis: forces the Android
|
||||
# `wgpu::Instance` to `Backends::GL` instead of `Backends::PRIMARY`, so the
|
||||
# same build can be measured against SwiftShader's software Vulkan ICD (the
|
||||
# default) or virgl's GLES path, without a second env-var plumbing path that
|
||||
# nothing on this machine can hand to an already-launched Android process
|
||||
# (there is no `am start` environment and no system-property reader here to
|
||||
# add one). Android-only; `android/render.rs` is the only reader.
|
||||
force-gles = []
|
||||
|
||||
[dev-dependencies]
|
||||
tokio = { workspace = true, features = ["sync", "rt", "rt-multi-thread", "time"] }
|
||||
# The tabs example's widget tree. A dev-dependency cycle back to this
|
||||
# package is fine -- cargo excludes dev-dependencies from the graph used
|
||||
# to build the library itself, so this only matters for `--examples`.
|
||||
tabs-ui = { path = "tabs-ui" }
|
||||
|
||||
# Plain Instant-timed binaries, not criterion -- see benches/message_list.rs's
|
||||
# header for why. `harness = false` opts out of the unstable `#[bench]`
|
||||
# test-crate harness cargo would otherwise want, in favour of an ordinary
|
||||
# `fn main()`.
|
||||
[[bench]]
|
||||
name = "message_list"
|
||||
harness = false
|
||||
|
||||
[workspace]
|
||||
members = ["core", "macro"]
|
||||
members = ["core", "macro", "tabs-ui", "transcript-ui", "desktop-app"]
|
||||
# android-app pulls in android-view, which needs the NDK sysroot to link
|
||||
# -- excluded so `cargo build --workspace --all-targets` on the host stays
|
||||
# buildable. Cross-compile it from its own directory (its own single-crate
|
||||
# workspace, since it has no `[workspace]` table of its own and this
|
||||
# exclusion stops it inheriting this one): `cd android-app && cargo ndk
|
||||
# -t x86_64 -P 26 build`.
|
||||
exclude = ["android-app"]
|
||||
|
||||
[workspace.package]
|
||||
version = "0.1.0"
|
||||
@@ -37,6 +106,12 @@ parley = "0.11.1"
|
||||
swash = "0.2.10"
|
||||
fxhash = "0.2.1"
|
||||
arboard = "3.6.1"
|
||||
accesskit = "0.25.0"
|
||||
iris-core = { path = "core" }
|
||||
iris-macro = { path = "macro" }
|
||||
tokio = "1.49.0"
|
||||
# Current stable as of 2026-09-05 (`cargo search`) -- I5's markdown block
|
||||
# model, the same crate E2's uncommitted `e2-transcript` experiment used for
|
||||
# the identical job (RUST.md), rather than reimplementing a CommonMark
|
||||
# parser.
|
||||
pulldown-cmark = "0.13.4"
|
||||
@@ -0,0 +1,6 @@
|
||||
.gradle/
|
||||
build/
|
||||
app/build/
|
||||
# Rebuilt by `cargo ndk -o app/src/main/jniLibs/ build` before every
|
||||
# Gradle build -- see RUST.md's I2 for the exact command.
|
||||
app/src/main/jniLibs/
|
||||
Generated
+5222
File diff suppressed because it is too large.
Load diff
@@ -0,0 +1,74 @@
|
||||
[package]
|
||||
name = "iris-android-app"
|
||||
version = "0.1.0"
|
||||
edition = "2024"
|
||||
|
||||
# Deliberately outside the `iris` workspace (see that Cargo.toml's
|
||||
# `[workspace] exclude`): this crate exists only to be cross-compiled with
|
||||
# `cargo ndk` for the emulator/a phone, and pulls in android-view, which
|
||||
# needs the NDK sysroot to link. Folding it into the main workspace would
|
||||
# make `cargo build --workspace --all-targets` -- the host command RUST.md
|
||||
# and AGENTS.md both require to stay clean -- try to link a cdylib against
|
||||
# libraries that do not exist on this machine. See RUST.md's I2.
|
||||
|
||||
[lib]
|
||||
name = "main"
|
||||
crate-type = ["cdylib"]
|
||||
|
||||
[dependencies]
|
||||
iris = { path = "../" }
|
||||
android-view = { git = "https://github.com/rust-mobile/android-view.git", rev = "bec6c62a96cef8239b0fd7fedeef9b184d02e3a1" }
|
||||
android_logger = "0.15.0"
|
||||
log = "0.4.28"
|
||||
# `tabs-screen` (default, I2/I4's demo) and `transcript-screen` (I5's
|
||||
# Android integration) are mutually exclusive -- one `ActiveClient` type is
|
||||
# compiled in, never both (`lib.rs`'s doc comment) -- so both sets of deps
|
||||
# are optional and each screen's feature pulls in only its own. Without
|
||||
# this, building `--features transcript-screen` alone (default features
|
||||
# still on) left `tabs-ui` linked but never referenced under that cfg,
|
||||
# which Cargo's `unused_dependencies` lint (on by default) correctly flags.
|
||||
tabs-ui = { path = "../tabs-ui", optional = true }
|
||||
transcript-ui = { path = "../transcript-ui", optional = true }
|
||||
client-core = { path = "../../client-core", optional = true }
|
||||
event-model = { path = "../../event-model", optional = true }
|
||||
serde_json = { version = "1", features = ["float_roundtrip"], optional = true }
|
||||
# P0's bench build only (docs/RUST.md): `getrusage(RUSAGE_SELF)` for
|
||||
# process CPU time, matching `libc::getrusage`'s mention in that box over
|
||||
# parsing `/proc/self/stat` by hand and assuming `USER_HZ`. Already in the
|
||||
# workspace's own dependency tree transitively (`iris/Cargo.lock`, pinned
|
||||
# at 0.2.179) -- this makes it a direct dependency at the same version
|
||||
# rather than a second, possibly-drifting resolution.
|
||||
libc = { version = "0.2.179", optional = true }
|
||||
# P0's bench build only: the scroll animation and the streaming phase are
|
||||
# both a sequence of `sleep`s inside the async task `rsc.spawn_task` already
|
||||
# runs on iris's own tokio runtime (`iris/src/task.rs`'s `Tasks::init`), and
|
||||
# the battery sampler is a second, concurrent task on that same runtime
|
||||
# (`tokio::spawn`) -- so this crate needs `tokio` directly rather than only
|
||||
# through `iris`. `rt`+`time` only: no I/O, no macros, nothing this crate
|
||||
# doesn't call. Version matches the one `iris`'s own dependency tree already
|
||||
# resolves to (`iris/Cargo.lock`), so there is one copy of the runtime, not
|
||||
# two.
|
||||
tokio = { version = "1.53.1", features = ["rt", "time"], optional = true }
|
||||
|
||||
[features]
|
||||
default = ["tabs-screen"]
|
||||
tabs-screen = ["dep:tabs-ui"]
|
||||
transcript-screen = ["dep:transcript-ui", "dep:client-core", "dep:event-model", "dep:serde_json"]
|
||||
# RUST.md's I5 "Where iris's frame time goes": forces the GLES backend
|
||||
# instead of SwiftShader's software Vulkan. See `iris/Cargo.toml`'s own doc
|
||||
# on the feature this forwards to.
|
||||
force-gles = ["iris/force-gles"]
|
||||
# P0's iris half (docs/RUST.md, docs/AGENTS.md's "The rigs"): the same
|
||||
# checked-in fixture, scroll loop and streaming phase the Compose `bench`
|
||||
# build type drives, run here against `transcript-ui`'s real screen with no
|
||||
# server. Depends on `transcript-screen` for `transcript-ui`/`client-core`/
|
||||
# `event-model` -- `lib.rs`'s `ActiveClient` selection gives this feature
|
||||
# priority over `transcript-screen`'s own `TranscriptClient` when both are
|
||||
# listed, which is how this crate's build command names both explicitly.
|
||||
bench = ["transcript-screen", "dep:libc", "dep:tokio"]
|
||||
|
||||
[profile.release]
|
||||
panic = "abort"
|
||||
|
||||
[profile.dev]
|
||||
panic = "abort"
|
||||
@@ -0,0 +1,61 @@
|
||||
plugins {
|
||||
id("com.android.application")
|
||||
}
|
||||
|
||||
// The Rust side (this directory's Cargo.toml) is built separately with
|
||||
// `cargo ndk`, straight into src/main/jniLibs/ -- see the repo-root
|
||||
// AGENTS.md-style comment at the top of Cargo.toml for why this crate
|
||||
// stays outside the main Rust workspace, and RUST.md's I2 for the exact
|
||||
// build command.
|
||||
android {
|
||||
namespace = "dev.iris.android.demo"
|
||||
compileSdk = 37
|
||||
|
||||
defaultConfig {
|
||||
applicationId = "dev.iris.android.demo"
|
||||
minSdk = 26
|
||||
targetSdk = 34
|
||||
versionCode = 1
|
||||
versionName = "1.0"
|
||||
}
|
||||
|
||||
// A release build must be signed, and the key is per machine rather than per repo -- same
|
||||
// reasoning and the same key as `app/build-apk.sh` (the Compose app): it is what a phone
|
||||
// recognises the app by, and a secret never lives in a checkout (the mount is shared with an
|
||||
// untrusted VM). `build-apk.sh` generates this key once and points at it through the
|
||||
// environment; without it a release build here is unsigned, which is fine for everything
|
||||
// except installing.
|
||||
def keystore = System.getenv("AI_APP_KEYSTORE")
|
||||
signingConfigs {
|
||||
if (keystore != null) {
|
||||
release {
|
||||
storeFile = file(keystore)
|
||||
storePassword = System.getenv("AI_APP_KEYSTORE_PASSWORD")
|
||||
keyAlias = "ai-app"
|
||||
keyPassword = storePassword
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
buildTypes {
|
||||
debug {
|
||||
}
|
||||
// P0's iris half (docs/RUST.md's P0 box): the build a phone actually runs. The `.so`
|
||||
// itself is built separately with `cargo ndk --release --features "transcript-screen
|
||||
// force-gles bench"` straight into src/main/jniLibs/ (this crate's own Cargo.toml) --
|
||||
// Gradle here only packages and signs whatever is already there, the same division as the
|
||||
// debug/tabs-screen build this project started with. `applicationIdSuffix` keeps it
|
||||
// installable beside a debug build of the tabs demo rather than replacing it.
|
||||
release {
|
||||
applicationIdSuffix ".bench"
|
||||
if (keystore != null) {
|
||||
signingConfig = signingConfigs.release
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
compileOptions {
|
||||
sourceCompatibility = JavaVersion.VERSION_17
|
||||
targetCompatibility = JavaVersion.VERSION_17
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,31 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<manifest xmlns:android="http://schemas.android.com/apk/res/android">
|
||||
|
||||
<!-- Only needed by the transcript-screen feature (RUST.md's I5),
|
||||
which talks to a real ai-server; the plain tabs demo (I2/I4) makes
|
||||
no network call and never noticed this was missing. Absent,
|
||||
UreqTransport::new's connect failed with EPERM (Operation not
|
||||
permitted), not the ECONNREFUSED/ENETUNREACH a firewall or a dead
|
||||
server would give: a seccomp-level socket denial reads nothing
|
||||
like a network problem, which is what made it worth a comment. -->
|
||||
<uses-permission android:name="android.permission.INTERNET" />
|
||||
|
||||
<application
|
||||
android:allowBackup="true"
|
||||
android:label="iris android-view demo"
|
||||
android:theme="@android:style/Theme.Material.Light.NoActionBar">
|
||||
<activity
|
||||
android:name=".MainActivity"
|
||||
android:configChanges="orientation|screenSize|screenLayout|keyboardHidden"
|
||||
android:exported="true"
|
||||
android:windowSoftInputMode="adjustResize">
|
||||
<intent-filter>
|
||||
<action android:name="android.intent.action.MAIN" />
|
||||
<category android:name="android.intent.category.LAUNCHER" />
|
||||
</intent-filter>
|
||||
|
||||
<meta-data android:name="android.app.lib_name" android:value="main" />
|
||||
</activity>
|
||||
</application>
|
||||
|
||||
</manifest>
|
||||
@@ -0,0 +1,155 @@
|
||||
package dev.iris.android.demo;
|
||||
|
||||
import android.app.Activity;
|
||||
import android.content.ClipData;
|
||||
import android.content.ClipboardManager;
|
||||
import android.content.Context;
|
||||
import android.view.Gravity;
|
||||
import android.view.View;
|
||||
import android.view.ViewGroup;
|
||||
import android.widget.Button;
|
||||
import android.widget.FrameLayout;
|
||||
import android.widget.LinearLayout;
|
||||
import android.widget.ScrollView;
|
||||
import android.widget.TextView;
|
||||
|
||||
import org.linebender.android.rustview.RustView;
|
||||
|
||||
/**
|
||||
* android-view's abstract base plus the two native methods it has no hook
|
||||
* for: window insets and unregistering this view's entry in
|
||||
* iris::android::insets's side table. See iris/src/android/insets.rs's doc
|
||||
* comment for why those could not ride along on an existing android-view
|
||||
* callback the way the back gesture does.
|
||||
*/
|
||||
public final class IrisView extends RustView {
|
||||
@Override
|
||||
protected native long newViewPeer(Context context);
|
||||
|
||||
native void applyWindowInsetsNative(
|
||||
long peer, int left, int top, int right, int bottom, int imeBottom);
|
||||
|
||||
native void unregisterInsetsNative(long peer);
|
||||
|
||||
public IrisView(Context context) {
|
||||
super(context);
|
||||
}
|
||||
|
||||
void applyWindowInsets(int left, int top, int right, int bottom, int imeBottom) {
|
||||
applyWindowInsetsNative(mViewPeer, left, top, right, bottom, imeBottom);
|
||||
}
|
||||
|
||||
@Override
|
||||
protected void onDetachedFromWindow() {
|
||||
unregisterInsetsNative(mViewPeer);
|
||||
super.onDetachedFromWindow();
|
||||
}
|
||||
|
||||
/**
|
||||
* Called from the Rust side (iris/src/android/view.rs's
|
||||
* `show_renderer_error`) when `AndroidRenderer::new` fails instead of
|
||||
* drawing -- an ordinary instance method rather than a `native` one,
|
||||
* since this call is Rust reaching into Java rather than the other
|
||||
* direction. Replaces the whole activity content with plain,
|
||||
* selectable, scrollable text rather than leaving the last frame (or a
|
||||
* blank surface) on screen with no way to report what happened:
|
||||
* UI_RULES.md's "a failure is reported where it happened, and says
|
||||
* what to do next." No dialog and no styling beyond what is needed to
|
||||
* read and copy the text -- this path exists for exactly the crash it
|
||||
* replaces, so it must not depend on anything that could itself fail
|
||||
* to render.
|
||||
*/
|
||||
void showRendererError(String report) {
|
||||
Context context = getContext();
|
||||
if (!(context instanceof Activity)) {
|
||||
return;
|
||||
}
|
||||
Activity activity = (Activity) context;
|
||||
TextView text = new TextView(activity);
|
||||
text.setText(report);
|
||||
text.setTextIsSelectable(true);
|
||||
text.setGravity(Gravity.TOP | Gravity.START);
|
||||
int pad = (int) (16 * activity.getResources().getDisplayMetrics().density);
|
||||
text.setPadding(pad, pad, pad, pad);
|
||||
ScrollView scroll = new ScrollView(activity);
|
||||
scroll.addView(text);
|
||||
activity.setContentView(scroll);
|
||||
}
|
||||
|
||||
private static final String DIAGNOSTICS_OVERLAY_TAG = "iris-diagnostics-overlay";
|
||||
|
||||
/**
|
||||
* The bench build's keyboard diagnostics capture
|
||||
* (`bench_client.rs`'s `on_insets_changed` /
|
||||
* `capture_keyboard_diagnostics`, via `bench_jni.rs`'s
|
||||
* `PlatformHandle::show_diagnostics_overlay`): unlike
|
||||
* `showRendererError` above, this adds a panel *over* this view
|
||||
* (`MainActivity`'s `FrameLayout` still holds `IrisView` underneath,
|
||||
* running) rather than replacing the activity's content, and gives it
|
||||
* a Copy button and a Close that removes the panel -- so it draws
|
||||
* (and can be read) whether or not iris itself is still putting
|
||||
* anything on screen, without abandoning the session that produced
|
||||
* it. Runs on the UI thread regardless of which thread calls it,
|
||||
* since the call comes from a background task (a delayed capture
|
||||
* after the keyboard opens), and touching the view tree off the UI
|
||||
* thread is undefined.
|
||||
*/
|
||||
void showDiagnosticsOverlay(String report) {
|
||||
Context context = getContext();
|
||||
if (!(context instanceof Activity)) {
|
||||
return;
|
||||
}
|
||||
Activity activity = (Activity) context;
|
||||
activity.runOnUiThread(() -> {
|
||||
ViewGroup parent = (ViewGroup) getParent();
|
||||
if (parent == null) {
|
||||
return;
|
||||
}
|
||||
View existing = parent.findViewWithTag(DIAGNOSTICS_OVERLAY_TAG);
|
||||
if (existing != null) {
|
||||
parent.removeView(existing);
|
||||
}
|
||||
|
||||
float density = activity.getResources().getDisplayMetrics().density;
|
||||
int pad = (int) (16 * density);
|
||||
|
||||
LinearLayout overlay = new LinearLayout(activity);
|
||||
overlay.setTag(DIAGNOSTICS_OVERLAY_TAG);
|
||||
overlay.setOrientation(LinearLayout.VERTICAL);
|
||||
overlay.setBackgroundColor(0xEE000000);
|
||||
overlay.setPadding(pad, pad, pad, pad);
|
||||
|
||||
TextView text = new TextView(activity);
|
||||
text.setText(report);
|
||||
text.setTextIsSelectable(true);
|
||||
text.setTextColor(0xFFFFFFFF);
|
||||
ScrollView scroll = new ScrollView(activity);
|
||||
scroll.addView(text);
|
||||
overlay.addView(scroll, new LinearLayout.LayoutParams(
|
||||
LinearLayout.LayoutParams.MATCH_PARENT, 0, 1f));
|
||||
|
||||
LinearLayout buttonRow = new LinearLayout(activity);
|
||||
buttonRow.setOrientation(LinearLayout.HORIZONTAL);
|
||||
buttonRow.setPadding(0, pad, 0, 0);
|
||||
|
||||
Button copy = new Button(activity);
|
||||
copy.setText("Copy");
|
||||
copy.setOnClickListener(v -> {
|
||||
ClipboardManager clipboard =
|
||||
(ClipboardManager) activity.getSystemService(Context.CLIPBOARD_SERVICE);
|
||||
if (clipboard != null) {
|
||||
clipboard.setPrimaryClip(ClipData.newPlainText("iris diagnostics", report));
|
||||
}
|
||||
});
|
||||
Button close = new Button(activity);
|
||||
close.setText("Close");
|
||||
close.setOnClickListener(v -> parent.removeView(overlay));
|
||||
buttonRow.addView(copy);
|
||||
buttonRow.addView(close);
|
||||
overlay.addView(buttonRow);
|
||||
|
||||
parent.addView(overlay, new FrameLayout.LayoutParams(
|
||||
FrameLayout.LayoutParams.MATCH_PARENT, FrameLayout.LayoutParams.MATCH_PARENT));
|
||||
});
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,66 @@
|
||||
package dev.iris.android.demo;
|
||||
|
||||
import android.app.Activity;
|
||||
import android.os.Build;
|
||||
import android.os.Bundle;
|
||||
import android.view.WindowInsets;
|
||||
import android.widget.FrameLayout;
|
||||
|
||||
/**
|
||||
* The android-view backend's demo activity (RUST.md's I2): one IrisView
|
||||
* filling the window, running iris's tabs example through
|
||||
* iris-android-app's Rust side. Mirrors android-view's own
|
||||
* DemoActivity, plus the window-insets wiring that has no android-view
|
||||
* counterpart.
|
||||
*/
|
||||
public final class MainActivity extends Activity {
|
||||
static {
|
||||
System.loadLibrary("main");
|
||||
}
|
||||
|
||||
@Override
|
||||
public void onCreate(Bundle state) {
|
||||
super.onCreate(state);
|
||||
IrisView view = new IrisView(this);
|
||||
view.setLayoutParams(new FrameLayout.LayoutParams(
|
||||
FrameLayout.LayoutParams.MATCH_PARENT, FrameLayout.LayoutParams.MATCH_PARENT));
|
||||
view.setFocusable(true);
|
||||
view.setFocusableInTouchMode(true);
|
||||
FrameLayout layout = new FrameLayout(this);
|
||||
layout.addView(view);
|
||||
setContentView(layout);
|
||||
view.requestFocus();
|
||||
|
||||
view.setOnApplyWindowInsetsListener((v, insets) -> {
|
||||
int left = insets.getSystemWindowInsetLeft();
|
||||
int top = insets.getSystemWindowInsetTop();
|
||||
int right = insets.getSystemWindowInsetRight();
|
||||
int bottom = insets.getSystemWindowInsetBottom();
|
||||
// The manifest declares adjustResize (AGENTS.md: without it the
|
||||
// keyboard pans the whole window instead of resizing it), and
|
||||
// under adjustResize the window itself shrinks to make room for
|
||||
// the keyboard -- which is exactly the condition under which
|
||||
// WindowInsets.Type.ime()'s own *inset amount* reports zero: it
|
||||
// measures how much of the window the keyboard overlaps, and
|
||||
// resize already made that overlap zero by construction. That
|
||||
// numeric inset is not a usable "is the keyboard open" signal
|
||||
// here (found while root-causing why bench_client.rs's keyboard
|
||||
// phase and auto-diagnostics never fired on the emulator despite
|
||||
// the keyboard visibly opening -- RUST.md's P0 box). What does
|
||||
// survive adjustResize is the boolean isVisible() answer, set
|
||||
// from the platform's own start/end of the transition over a
|
||||
// different path than the inset amount -- the same fact
|
||||
// AGENTS.md's "Things that have bitten" already names for the
|
||||
// Compose side's identical trap. Passed through as a 0/1 stand-
|
||||
// in for the ime_bottom pixel amount, since nothing on the Rust
|
||||
// side reads it as a real pixel value -- only `> 0.0`.
|
||||
int imeBottom = 0;
|
||||
if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.R
|
||||
&& insets.isVisible(WindowInsets.Type.ime())) {
|
||||
imeBottom = 1;
|
||||
}
|
||||
((IrisView) v).applyWindowInsets(left, top, right, bottom, imeBottom);
|
||||
return insets;
|
||||
});
|
||||
}
|
||||
}
|
||||
+153
@@ -0,0 +1,153 @@
|
||||
package org.linebender.android.rustview;
|
||||
|
||||
import android.os.Bundle;
|
||||
import android.os.Handler;
|
||||
import android.view.KeyEvent;
|
||||
import android.view.inputmethod.CompletionInfo;
|
||||
import android.view.inputmethod.CorrectionInfo;
|
||||
import android.view.inputmethod.ExtractedText;
|
||||
import android.view.inputmethod.ExtractedTextRequest;
|
||||
import android.view.inputmethod.InputConnection;
|
||||
import android.view.inputmethod.InputContentInfo;
|
||||
|
||||
class RustInputConnection implements InputConnection {
|
||||
private final RustView mView;
|
||||
|
||||
RustInputConnection(RustView view) {
|
||||
mView = view;
|
||||
}
|
||||
|
||||
private long getViewPeer() {
|
||||
return mView.mViewPeer;
|
||||
}
|
||||
|
||||
@Override
|
||||
public CharSequence getTextBeforeCursor(int n, int flags) {
|
||||
return mView.getTextBeforeCursorNative(getViewPeer(), n);
|
||||
}
|
||||
|
||||
@Override
|
||||
public CharSequence getTextAfterCursor(int n, int flags) {
|
||||
return mView.getTextAfterCursorNative(getViewPeer(), n);
|
||||
}
|
||||
|
||||
@Override
|
||||
public CharSequence getSelectedText(int flags) {
|
||||
return mView.getSelectedTextNative(getViewPeer());
|
||||
}
|
||||
|
||||
@Override
|
||||
public int getCursorCapsMode(int reqModes) {
|
||||
return mView.getCursorCapsModeNative(getViewPeer(), reqModes);
|
||||
}
|
||||
|
||||
@Override
|
||||
public ExtractedText getExtractedText(ExtractedTextRequest request, int flags) {
|
||||
return null;
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean deleteSurroundingText(int beforeLength, int afterLength) {
|
||||
return mView.deleteSurroundingTextNative(getViewPeer(), beforeLength, afterLength);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean deleteSurroundingTextInCodePoints(int beforeLength, int afterLength) {
|
||||
return mView.deleteSurroundingTextInCodePointsNative(getViewPeer(), beforeLength, afterLength);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean setComposingText(CharSequence text, int newCursorPosition) {
|
||||
return mView.setComposingTextNative(getViewPeer(), text.toString(), newCursorPosition);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean setComposingRegion(int start, int end) {
|
||||
return mView.setComposingRegionNative(getViewPeer(), start, end);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean finishComposingText() {
|
||||
return mView.finishComposingTextNative(getViewPeer());
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean commitText(CharSequence text, int newCursorPosition) {
|
||||
return mView.commitTextNative(getViewPeer(), text.toString(), newCursorPosition);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean commitCompletion(CompletionInfo text) {
|
||||
return false;
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean commitCorrection(CorrectionInfo correctionInfo) {
|
||||
return false;
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean setSelection(int start, int end) {
|
||||
return mView.setSelectionNative(getViewPeer(), start, end);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean performEditorAction(int editorAction) {
|
||||
return mView.performEditorActionNative(getViewPeer(), editorAction);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean performContextMenuAction(int id) {
|
||||
return mView.performContextMenuActionNative(getViewPeer(), id);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean beginBatchEdit() {
|
||||
return mView.beginBatchEditNative(getViewPeer());
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean endBatchEdit() {
|
||||
return mView.endBatchEditNative(getViewPeer());
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean sendKeyEvent(KeyEvent event) {
|
||||
return mView.inputConnectionSendKeyEventNative(getViewPeer(), event);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean clearMetaKeyStates(int states) {
|
||||
return mView.inputConnectionClearMetaKeyStatesNative(getViewPeer(), states);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean reportFullscreenMode(boolean enabled) {
|
||||
return mView.inputConnectionReportFullscreenModeNative(getViewPeer(), enabled);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean performPrivateCommand(String action, Bundle data) {
|
||||
return false;
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean requestCursorUpdates(int cursorUpdateMode) {
|
||||
return mView.requestCursorUpdatesNative(getViewPeer(), cursorUpdateMode);
|
||||
}
|
||||
|
||||
@Override
|
||||
public Handler getHandler() {
|
||||
return null;
|
||||
}
|
||||
|
||||
@Override
|
||||
public void closeConnection() {
|
||||
mView.closeInputConnectionNative(getViewPeer());
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean commitContent(InputContentInfo inputContentInfo, int flags, Bundle opts) {
|
||||
return false;
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,291 @@
|
||||
package org.linebender.android.rustview;
|
||||
|
||||
import android.content.Context;
|
||||
import android.graphics.Rect;
|
||||
import android.os.Bundle;
|
||||
import android.view.Choreographer;
|
||||
import android.view.KeyEvent;
|
||||
import android.view.MotionEvent;
|
||||
import android.view.SurfaceHolder;
|
||||
import android.view.SurfaceView;
|
||||
import android.view.accessibility.AccessibilityNodeInfo;
|
||||
import android.view.accessibility.AccessibilityNodeProvider;
|
||||
import android.view.inputmethod.EditorInfo;
|
||||
import android.view.inputmethod.InputConnection;
|
||||
import android.view.inputmethod.InputMethodManager;
|
||||
|
||||
public abstract class RustView extends SurfaceView
|
||||
implements SurfaceHolder.Callback, Choreographer.FrameCallback {
|
||||
// Vendored from android-view (bec6c62, https://github.com/rust-mobile/android-view)
|
||||
// with one deliberate change: `protected` rather than package-private, so a
|
||||
// subclass in a different package (dev.iris.android.demo.IrisView) can pass
|
||||
// it to the window-insets native call android-view itself has no hook for --
|
||||
// see iris/src/android/insets.rs's doc comment for why that call exists at
|
||||
// all. No other line differs from upstream.
|
||||
protected final long mViewPeer;
|
||||
final InputMethodManager mInputMethodManager;
|
||||
|
||||
protected abstract long newViewPeer(Context context);
|
||||
|
||||
public RustView(Context context) {
|
||||
super(context);
|
||||
mViewPeer = newViewPeer(context);
|
||||
getHolder().addCallback(this);
|
||||
mInputMethodManager =
|
||||
(InputMethodManager) context.getSystemService(Context.INPUT_METHOD_SERVICE);
|
||||
}
|
||||
|
||||
private native int[] onMeasureNative(long peer, int widthSpec, int heightSpec);
|
||||
|
||||
@Override
|
||||
protected void onMeasure(int widthSpec, int heightSpec) {
|
||||
int[] result = onMeasureNative(mViewPeer, widthSpec, heightSpec);
|
||||
if (result != null) {
|
||||
setMeasuredDimension(result[0], result[1]);
|
||||
} else {
|
||||
super.onMeasure(widthSpec, heightSpec);
|
||||
}
|
||||
}
|
||||
|
||||
private native void onLayoutNative(
|
||||
long peer, boolean changed, int left, int top, int right, int bottom);
|
||||
|
||||
@Override
|
||||
protected void onLayout(boolean changed, int left, int top, int right, int bottom) {
|
||||
onLayoutNative(mViewPeer, changed, left, top, right, bottom);
|
||||
super.onLayout(changed, left, top, right, bottom);
|
||||
}
|
||||
|
||||
private native void onSizeChangedNative(long peer, int w, int h, int oldw, int oldh);
|
||||
|
||||
@Override
|
||||
protected void onSizeChanged(int w, int h, int oldw, int oldh) {
|
||||
onSizeChangedNative(mViewPeer, w, h, oldw, oldh);
|
||||
super.onSizeChanged(w, h, oldw, oldh);
|
||||
}
|
||||
|
||||
private native boolean onKeyDownNative(long peer, int keyCode, KeyEvent event);
|
||||
|
||||
@Override
|
||||
public boolean onKeyDown(int keyCode, KeyEvent event) {
|
||||
return onKeyDownNative(mViewPeer, keyCode, event) || super.onKeyDown(keyCode, event);
|
||||
}
|
||||
|
||||
private native boolean onKeyUpNative(long peer, int keyCode, KeyEvent event);
|
||||
|
||||
@Override
|
||||
public boolean onKeyUp(int keyCode, KeyEvent event) {
|
||||
return onKeyUpNative(mViewPeer, keyCode, event) || super.onKeyUp(keyCode, event);
|
||||
}
|
||||
|
||||
private native boolean onTrackballEventNative(long peer, MotionEvent event);
|
||||
|
||||
@Override
|
||||
public boolean onTrackballEvent(MotionEvent event) {
|
||||
return onTrackballEventNative(mViewPeer, event) || super.onTrackballEvent(event);
|
||||
}
|
||||
|
||||
private native boolean onTouchEventNative(long peer, MotionEvent event);
|
||||
|
||||
@Override
|
||||
public boolean onTouchEvent(MotionEvent event) {
|
||||
return onTouchEventNative(mViewPeer, event) || super.onTouchEvent(event);
|
||||
}
|
||||
|
||||
private native boolean onGenericMotionEventNative(long peer, MotionEvent event);
|
||||
|
||||
@Override
|
||||
public boolean onGenericMotionEvent(MotionEvent event) {
|
||||
return onGenericMotionEventNative(mViewPeer, event) || super.onGenericMotionEvent(event);
|
||||
}
|
||||
|
||||
private native boolean onHoverEventNative(long peer, MotionEvent event);
|
||||
|
||||
@Override
|
||||
public boolean onHoverEvent(MotionEvent event) {
|
||||
return onHoverEventNative(mViewPeer, event) || super.onHoverEvent(event);
|
||||
}
|
||||
|
||||
private native void onFocusChangedNative(
|
||||
long peer, boolean gainFocus, int direction, Rect previouslyFocusedRect);
|
||||
|
||||
@Override
|
||||
protected void onFocusChanged(boolean gainFocus, int direction, Rect previouslyFocusedRect) {
|
||||
super.onFocusChanged(gainFocus, direction, previouslyFocusedRect);
|
||||
onFocusChangedNative(mViewPeer, gainFocus, direction, previouslyFocusedRect);
|
||||
}
|
||||
|
||||
private native void onWindowFocusChangedNative(long peer, boolean hasWindowFocus);
|
||||
|
||||
@Override
|
||||
public void onWindowFocusChanged(boolean hasWindowFocus) {
|
||||
super.onWindowFocusChanged(hasWindowFocus);
|
||||
onWindowFocusChangedNative(mViewPeer, hasWindowFocus);
|
||||
}
|
||||
|
||||
private native void onAttachedToWindowNative(long peer);
|
||||
|
||||
@Override
|
||||
protected void onAttachedToWindow() {
|
||||
super.onAttachedToWindow();
|
||||
onAttachedToWindowNative(mViewPeer);
|
||||
}
|
||||
|
||||
private native void onDetachedFromWindowNative(long peer);
|
||||
|
||||
@Override
|
||||
protected void onDetachedFromWindow() {
|
||||
super.onDetachedFromWindow();
|
||||
onDetachedFromWindowNative(mViewPeer);
|
||||
}
|
||||
|
||||
private native void onWindowVisibilityChangedNative(long peer, int visibility);
|
||||
|
||||
@Override
|
||||
protected void onWindowVisibilityChanged(int visibility) {
|
||||
super.onWindowVisibilityChanged(visibility);
|
||||
onWindowVisibilityChangedNative(mViewPeer, visibility);
|
||||
}
|
||||
|
||||
private native void surfaceCreatedNative(long peer, SurfaceHolder holder);
|
||||
|
||||
@Override
|
||||
public void surfaceCreated(SurfaceHolder holder) {
|
||||
surfaceCreatedNative(mViewPeer, holder);
|
||||
}
|
||||
|
||||
private native void surfaceChangedNative(
|
||||
long peer, SurfaceHolder holder, int format, int width, int height);
|
||||
|
||||
@Override
|
||||
public void surfaceChanged(SurfaceHolder holder, int format, int width, int height) {
|
||||
surfaceChangedNative(mViewPeer, holder, format, width, height);
|
||||
}
|
||||
|
||||
private native void surfaceDestroyedNative(long peer, SurfaceHolder holder);
|
||||
|
||||
@Override
|
||||
public void surfaceDestroyed(SurfaceHolder holder) {
|
||||
surfaceDestroyedNative(mViewPeer, holder);
|
||||
}
|
||||
|
||||
void postFrameCallback() {
|
||||
Choreographer c = Choreographer.getInstance();
|
||||
c.removeFrameCallback(this);
|
||||
c.postFrameCallback(this);
|
||||
}
|
||||
|
||||
void removeFrameCallback() {
|
||||
Choreographer.getInstance().removeFrameCallback(this);
|
||||
}
|
||||
|
||||
private native void doFrameNative(long peer, long frameTimeNanos);
|
||||
|
||||
@Override
|
||||
public void doFrame(long frameTimeNanos) {
|
||||
doFrameNative(mViewPeer, frameTimeNanos);
|
||||
}
|
||||
|
||||
private native void delayedCallbackNative(long peer);
|
||||
|
||||
private final Runnable mDelayedCallback =
|
||||
new Runnable() {
|
||||
@Override
|
||||
public void run() {
|
||||
delayedCallbackNative(mViewPeer);
|
||||
}
|
||||
};
|
||||
|
||||
boolean postDelayed(long delayMillis) {
|
||||
return postDelayed(mDelayedCallback, delayMillis);
|
||||
}
|
||||
|
||||
boolean removeDelayedCallbacks() {
|
||||
return removeCallbacks(mDelayedCallback);
|
||||
}
|
||||
|
||||
private native boolean hasAccessibilityNodeProviderNative(long peer);
|
||||
|
||||
private native AccessibilityNodeInfo createAccessibilityNodeInfoNative(
|
||||
long peer, int virtualViewId);
|
||||
|
||||
private native AccessibilityNodeInfo accessibilityFindFocusNative(long peer, int virtualViewId);
|
||||
|
||||
private native boolean performAccessibilityActionNative(
|
||||
long peer, int virtualViewId, int action, Bundle arguments);
|
||||
|
||||
@Override
|
||||
public AccessibilityNodeProvider getAccessibilityNodeProvider() {
|
||||
if (!hasAccessibilityNodeProviderNative(mViewPeer)) {
|
||||
return super.getAccessibilityNodeProvider();
|
||||
}
|
||||
return new AccessibilityNodeProvider() {
|
||||
@Override
|
||||
public AccessibilityNodeInfo createAccessibilityNodeInfo(int virtualViewId) {
|
||||
return createAccessibilityNodeInfoNative(mViewPeer, virtualViewId);
|
||||
}
|
||||
|
||||
@Override
|
||||
public AccessibilityNodeInfo findFocus(int focusType) {
|
||||
return accessibilityFindFocusNative(mViewPeer, focusType);
|
||||
}
|
||||
|
||||
@Override
|
||||
public boolean performAction(int virtualViewId, int action, Bundle arguments) {
|
||||
return performAccessibilityActionNative(
|
||||
mViewPeer, virtualViewId, action, arguments);
|
||||
}
|
||||
};
|
||||
}
|
||||
|
||||
private native boolean onCreateInputConnectionNative(long peer, EditorInfo outAttrs);
|
||||
|
||||
@Override
|
||||
public InputConnection onCreateInputConnection(EditorInfo outAttrs) {
|
||||
if (!onCreateInputConnectionNative(mViewPeer, outAttrs)) {
|
||||
return null;
|
||||
}
|
||||
return new RustInputConnection(this);
|
||||
}
|
||||
|
||||
native String getTextBeforeCursorNative(long peer, int n);
|
||||
|
||||
native String getTextAfterCursorNative(long peer, int n);
|
||||
|
||||
native String getSelectedTextNative(long peer);
|
||||
|
||||
native int getCursorCapsModeNative(long peer, int reqModes);
|
||||
|
||||
native boolean deleteSurroundingTextNative(long peer, int beforeLength, int afterLength);
|
||||
|
||||
native boolean deleteSurroundingTextInCodePointsNative(
|
||||
long peer, int beforeLength, int afterLength);
|
||||
|
||||
native boolean setComposingTextNative(long peer, String text, int newCursorPosition);
|
||||
|
||||
native boolean setComposingRegionNative(long peer, int start, int end);
|
||||
|
||||
native boolean finishComposingTextNative(long peer);
|
||||
|
||||
native boolean commitTextNative(long peer, String text, int newCursorPosition);
|
||||
|
||||
native boolean setSelectionNative(long peer, int start, int end);
|
||||
|
||||
native boolean performEditorActionNative(long peer, int editorAction);
|
||||
|
||||
native boolean performContextMenuActionNative(long peer, int id);
|
||||
|
||||
native boolean beginBatchEditNative(long peer);
|
||||
|
||||
native boolean endBatchEditNative(long peer);
|
||||
|
||||
native boolean inputConnectionSendKeyEventNative(long peer, KeyEvent event);
|
||||
|
||||
native boolean inputConnectionClearMetaKeyStatesNative(long peer, int states);
|
||||
|
||||
native boolean inputConnectionReportFullscreenModeNative(long peer, boolean enabled);
|
||||
|
||||
native boolean requestCursorUpdatesNative(long peer, int cursorUpdateMode);
|
||||
|
||||
native void closeInputConnectionNative(long peer);
|
||||
}
|
||||
Executable
+90
@@ -0,0 +1,90 @@
|
||||
#!/bin/sh
|
||||
# Builds iris-android-app end to end: the cdylib (cargo ndk, straight into
|
||||
# app/src/main/jniLibs/) then the APK (Gradle). Written to stop re-typing
|
||||
# the same incantation by hand every time (ANDROID_HOME/NDK exports, the
|
||||
# cargo ndk invocation, the keystore env for a release build, apksigner/
|
||||
# aapt2 verification) -- see docs/RUST.md's P0 box. Same shape as `app/
|
||||
# build-apk.sh` (the Compose app's own build script) and `app/
|
||||
# iris-scroll.sh` (no coordinates, set -eu, exit 0 on success).
|
||||
#
|
||||
# Usage: ./build-apk.sh [debug|release] [--abi arm64-v8a|x86_64] [--features "a b c"]
|
||||
# debug/release default to debug (matches this-machine-android's "the
|
||||
# emulator stays on debug" rule -- pass `release` explicitly for a phone
|
||||
# build). --abi defaults to arm64-v8a (a phone/real device); pass
|
||||
# x86_64 for this checkout's own AVD. --features defaults to
|
||||
# "transcript-screen bench" -- deliberately *without* `force-gles`, unlike
|
||||
# an earlier version of this default. `force-gles` (`iris/Cargo.toml`'s
|
||||
# own doc) exists only to force the emulator off its default software
|
||||
# Vulkan and onto GLES for one specific measurement (RUST.md's I5, "Where
|
||||
# iris's frame time goes") -- it was never meant to reach a real device,
|
||||
# but this script's old default put it in every arm64 build regardless,
|
||||
# so the P0 bench APK delivered to Iris's phone forced GLES there too.
|
||||
# That is the named hypothesis in RUST.md's P0 box ("iris bench crash on
|
||||
# the phone, 2026-09-06"): a real Vulkan driver is what a phone should
|
||||
# run, and GLES is the backend the same box's own SwiftShader finding
|
||||
# already flagged as the fragile one for this shader's storage buffers.
|
||||
# Pass `--features "transcript-screen force-gles bench"` explicitly for
|
||||
# an emulator backend-isolation run; never for a build meant for a phone.
|
||||
set -eu
|
||||
cd "$(dirname "$0")"
|
||||
|
||||
BUILD_TYPE="debug"
|
||||
ABI="arm64-v8a"
|
||||
FEATURES="transcript-screen bench"
|
||||
case "${1:-}" in
|
||||
debug|release) BUILD_TYPE="$1"; shift ;;
|
||||
esac
|
||||
while [ $# -gt 0 ]; do
|
||||
case "$1" in
|
||||
--abi) ABI="$2"; shift 2 ;;
|
||||
--features) FEATURES="$2"; shift 2 ;;
|
||||
*) echo "build-apk.sh: unknown argument: $1" >&2; exit 1 ;;
|
||||
esac
|
||||
done
|
||||
|
||||
SDK_ROOT="$HOME/Android/Sdk"
|
||||
export ANDROID_HOME="$SDK_ROOT"
|
||||
export ANDROID_SDK_ROOT="$SDK_ROOT"
|
||||
NDK_DIR=$(ls -d "$SDK_ROOT"/ndk/*/ 2>/dev/null | sort -V | tail -1)
|
||||
if [ -z "$NDK_DIR" ]; then
|
||||
echo "build-apk.sh: no NDK found under $SDK_ROOT/ndk" >&2
|
||||
exit 1
|
||||
fi
|
||||
export ANDROID_NDK_HOME="$NDK_DIR"
|
||||
|
||||
echo "build-apk.sh: cargo ndk -t $ABI build ${BUILD_TYPE:+(${BUILD_TYPE})} --features \"$FEATURES\""
|
||||
if [ "$BUILD_TYPE" = "release" ]; then
|
||||
cargo ndk -t "$ABI" -P 26 -o app/src/main/jniLibs/ build --release --features "$FEATURES"
|
||||
else
|
||||
cargo ndk -t "$ABI" -P 26 -o app/src/main/jniLibs/ build --features "$FEATURES"
|
||||
fi
|
||||
|
||||
GRADLE_TASK="assembleDebug"
|
||||
APK_DIR="app/build/outputs/apk/debug"
|
||||
APK_NAME="app-debug.apk"
|
||||
if [ "$BUILD_TYPE" = "release" ]; then
|
||||
GRADLE_TASK="assembleRelease"
|
||||
APK_DIR="app/build/outputs/apk/release"
|
||||
APK_NAME="app-release.apk"
|
||||
# Same key `app/build-apk.sh` (the Compose app) generates once under
|
||||
# ~/.config/ai-app/release.jks -- see AGENTS.md's "Checking your work".
|
||||
export AI_APP_KEYSTORE="$HOME/.config/ai-app/release.jks"
|
||||
if [ ! -f "$AI_APP_KEYSTORE" ]; then
|
||||
echo "build-apk.sh: no release key at $AI_APP_KEYSTORE -- run app/build-apk.sh once first" >&2
|
||||
exit 1
|
||||
fi
|
||||
export AI_APP_KEYSTORE_PASSWORD
|
||||
AI_APP_KEYSTORE_PASSWORD=$(cat "$AI_APP_KEYSTORE.password")
|
||||
fi
|
||||
|
||||
gradle ":app:$GRADLE_TASK" --console=plain
|
||||
|
||||
APK_PATH="$(pwd)/$APK_DIR/$APK_NAME"
|
||||
BUILD_TOOLS=$(ls -d "$SDK_ROOT"/build-tools/*/ | sort -V | tail -1)
|
||||
echo "--- aapt2 dump badging ---"
|
||||
"${BUILD_TOOLS}aapt2" dump badging "$APK_PATH" | head -5
|
||||
if [ "$BUILD_TYPE" = "release" ]; then
|
||||
echo "--- apksigner verify ---"
|
||||
"${BUILD_TOOLS}apksigner" verify --print-certs "$APK_PATH"
|
||||
fi
|
||||
echo "$APK_PATH"
|
||||
@@ -0,0 +1,3 @@
|
||||
plugins {
|
||||
id("com.android.application") version "9.4.0" apply false
|
||||
}
|
||||
@@ -0,0 +1,100 @@
|
||||
// Only does anything under the `transcript-screen` feature (RUST.md's I5
|
||||
// Android integration) -- the plain tabs build (I2/I4) needs none of this
|
||||
// and stays untouched, same reasoning as the feature gate in Cargo.toml.
|
||||
//
|
||||
// Bakes the sandbox server's host, port, token and pinned CA in at build
|
||||
// time, the same way `app/androidApp/build.gradle.kts`'s
|
||||
// `GeneratePinnedCert` task bakes the CA for the Compose app -- see that
|
||||
// file's comment for why reading the machine's own certificate at build
|
||||
// time is the right trust boundary. This build additionally bakes the
|
||||
// host/port/token, which the Compose app does not: that app enrolls at
|
||||
// runtime from a scanned QR/deep link, and a from-scratch enrollment UI
|
||||
// (Keystore-sealed token storage, a QR/link scanner) is real, separate
|
||||
// scope this integration does not need to build to answer RUST.md's
|
||||
// question -- there is nothing here yet resembling `ServerConfig.kt`. So
|
||||
// this is a **deliberate simplification for this rig only**: an APK built
|
||||
// this way is good for exactly the emulator/server pair that built it, and
|
||||
// must never be treated as a template for a real enrollment flow. Recorded
|
||||
// in RUST.md's I5 box rather than left to be rediscovered.
|
||||
use std::path::PathBuf;
|
||||
|
||||
fn main() {
|
||||
if std::env::var_os("CARGO_FEATURE_TRANSCRIPT_SCREEN").is_none() {
|
||||
return;
|
||||
}
|
||||
// P0's bench build (docs/RUST.md) opens the checked-in fixture with no
|
||||
// server at all -- `bench_client.rs` never references the `pinned`
|
||||
// module this generates, so requiring a live server's host/port/token/
|
||||
// CA to build it (as plain `transcript-screen` does, below) would be a
|
||||
// pointless requirement for a build that talks to nothing.
|
||||
if std::env::var_os("CARGO_FEATURE_BENCH").is_some() {
|
||||
return;
|
||||
}
|
||||
println!("cargo:rerun-if-env-changed=AI_APP_TRANSCRIPT_HOST");
|
||||
println!("cargo:rerun-if-env-changed=AI_APP_TRANSCRIPT_PORT");
|
||||
println!("cargo:rerun-if-env-changed=AI_APP_TRANSCRIPT_TOKEN");
|
||||
println!("cargo:rerun-if-env-changed=AI_APP_CA");
|
||||
println!("cargo:rerun-if-env-changed=XDG_CONFIG_HOME");
|
||||
|
||||
let host = require_env(
|
||||
"AI_APP_TRANSCRIPT_HOST",
|
||||
"the sandbox server's host as the emulator reaches it, e.g. 10.0.2.2",
|
||||
);
|
||||
let port = require_env(
|
||||
"AI_APP_TRANSCRIPT_PORT",
|
||||
"the sandbox server's port -- app/ui-sandbox.sh's start banner prints it",
|
||||
);
|
||||
let token = require_env(
|
||||
"AI_APP_TRANSCRIPT_TOKEN",
|
||||
"the bearer token -- ~/.config/ai-app/sandbox-token, or the start banner's enrollment link",
|
||||
);
|
||||
|
||||
let ca_path = std::env::var_os("AI_APP_CA")
|
||||
.map(PathBuf::from)
|
||||
.unwrap_or_else(|| {
|
||||
let base = std::env::var_os("XDG_CONFIG_HOME")
|
||||
.map(PathBuf::from)
|
||||
.unwrap_or_else(|| {
|
||||
let home = std::env::var_os("HOME").expect("HOME must be set");
|
||||
PathBuf::from(home).join(".config")
|
||||
});
|
||||
base.join("ai-app").join("certs").join("ca.pem")
|
||||
});
|
||||
let ca_pem = std::fs::read_to_string(&ca_path).unwrap_or_else(|e| {
|
||||
panic!(
|
||||
"no CA certificate at {} ({e}).\n\
|
||||
Start ai-server (or app/ui-sandbox.sh) once on this machine first -- it \
|
||||
generates the CA this build pins. Set AI_APP_CA=/path/to/ca.pem to build \
|
||||
against a different one.",
|
||||
ca_path.display()
|
||||
)
|
||||
});
|
||||
let ca_pem = ca_pem.trim();
|
||||
if !ca_pem.starts_with("-----BEGIN CERTIFICATE-----") {
|
||||
panic!("{} is not a PEM certificate.", ca_path.display());
|
||||
}
|
||||
|
||||
let out_dir = PathBuf::from(std::env::var_os("OUT_DIR").unwrap());
|
||||
let generated = format!(
|
||||
"// Generated by build.rs from {host}:{port} and {ca}. Do not edit.\n\
|
||||
pub const HOST: &str = {host_lit:?};\n\
|
||||
pub const PORT: u16 = {port};\n\
|
||||
pub const TOKEN: &str = {token_lit:?};\n\
|
||||
pub const CA_PEM: &str = {ca_lit:?};\n",
|
||||
host = host,
|
||||
port = port
|
||||
.parse::<u16>()
|
||||
.unwrap_or_else(|e| panic!("AI_APP_TRANSCRIPT_PORT={port:?} is not a u16: {e}")),
|
||||
ca = ca_path.display(),
|
||||
host_lit = host,
|
||||
token_lit = token,
|
||||
ca_lit = ca_pem,
|
||||
);
|
||||
std::fs::write(out_dir.join("pinned_config.rs"), generated).unwrap();
|
||||
}
|
||||
|
||||
fn require_env(name: &str, what: &str) -> String {
|
||||
std::env::var(name).unwrap_or_else(|_| {
|
||||
panic!("{name} must be set to build the transcript-screen feature -- {what}")
|
||||
})
|
||||
}
|
||||
Executable
+69
@@ -0,0 +1,69 @@
|
||||
#!/bin/sh
|
||||
# Installs and runs the iris `bench` build on this checkout's own emulator
|
||||
# (per this-machine-android's per-checkout-AVD rule; `emu serial` picks it)
|
||||
# and prints the report -- the iris half of `app/transcript-bench.sh`'s
|
||||
# job. No coordinates: the button is found by its accessibility label
|
||||
# through `ui-trace`, per AGENTS.md's "Driving the UI".
|
||||
#
|
||||
# Usage: ./run-bench.sh [--apk PATH]
|
||||
# Defaults to this checkout's own release APK
|
||||
# (app/build/outputs/apk/release/app-release.apk) if it exists, else the
|
||||
# debug one -- build one first with ./build-apk.sh.
|
||||
set -eu
|
||||
cd "$(dirname "$0")"
|
||||
|
||||
APK=""
|
||||
while [ $# -gt 0 ]; do
|
||||
case "$1" in
|
||||
--apk) APK="$2"; shift 2 ;;
|
||||
*) echo "run-bench.sh: unknown argument: $1" >&2; exit 1 ;;
|
||||
esac
|
||||
done
|
||||
if [ -z "$APK" ]; then
|
||||
if [ -f app/build/outputs/apk/release/app-release.apk ]; then
|
||||
APK=app/build/outputs/apk/release/app-release.apk
|
||||
else
|
||||
APK=app/build/outputs/apk/debug/app-debug.apk
|
||||
fi
|
||||
fi
|
||||
if [ ! -f "$APK" ]; then
|
||||
echo "run-bench.sh: no APK at $APK -- run ./build-apk.sh first" >&2
|
||||
exit 1
|
||||
fi
|
||||
|
||||
SERIAL=$(emu serial)
|
||||
PKG=$(aapt2 dump badging "$APK" 2>/dev/null | sed -n "s/^package: name='\\([^']*\\)'.*/\\1/p")
|
||||
if [ -z "$PKG" ]; then
|
||||
BUILD_TOOLS=$(ls -d "$HOME"/Android/Sdk/build-tools/*/ | sort -V | tail -1)
|
||||
PKG=$("${BUILD_TOOLS}aapt2" dump badging "$APK" | sed -n "s/^package: name='\\([^']*\\)'.*/\\1/p")
|
||||
fi
|
||||
|
||||
echo "run-bench.sh: installing $APK ($PKG) on $SERIAL"
|
||||
adb -s "$SERIAL" install -r "$APK" >/dev/null
|
||||
adb -s "$SERIAL" shell am force-stop "$PKG"
|
||||
adb -s "$SERIAL" logcat -c
|
||||
adb -s "$SERIAL" shell am start -n "$PKG/dev.iris.android.demo.MainActivity" >/dev/null
|
||||
|
||||
ui-trace record -s "$SERIAL" -d 3000 --do "tap 'Run benchmark'" -o /tmp/run-bench-tap.txt >/dev/null
|
||||
|
||||
# Poll for the report line rather than a fixed sleep -- the run itself is
|
||||
# a fixed script (RUST.md's "Benchmark v2": 16 flings, a 20s streaming
|
||||
# phase, ~61s of typing, 10s of keyboard toggles, roughly 2.5 minutes end
|
||||
# to end) but device speed varies. 260s cap rather than v1's 90s -- v2 is
|
||||
# a longer script than v1's swipe-loop-only run.
|
||||
i=0
|
||||
while [ "$i" -lt 260 ]; do
|
||||
LINE=$(adb -s "$SERIAL" logcat -d -s iris-android-app:I 2>/dev/null | grep "iris bench report:" || true)
|
||||
if [ -n "$LINE" ]; then
|
||||
break
|
||||
fi
|
||||
i=$((i + 1))
|
||||
sleep 1
|
||||
done
|
||||
if [ -z "$LINE" ]; then
|
||||
echo "run-bench.sh: no report after 260s -- check logcat by hand" >&2
|
||||
exit 1
|
||||
fi
|
||||
# -A 60 rather than v1's -A 6 -- v2's report has a per-phase block (four
|
||||
# phases, four lines each) on top of the frames/bench sections v1 had.
|
||||
adb -s "$SERIAL" logcat -d -s iris-android-app:I | grep -A 60 "iris bench report:"
|
||||
@@ -0,0 +1,15 @@
|
||||
pluginManagement {
|
||||
repositories {
|
||||
google()
|
||||
mavenCentral()
|
||||
gradlePluginPortal()
|
||||
}
|
||||
}
|
||||
dependencyResolutionManagement {
|
||||
repositories {
|
||||
google()
|
||||
mavenCentral()
|
||||
}
|
||||
}
|
||||
rootProject.name = "iris-android-demo"
|
||||
include(":app")
|
||||
@@ -0,0 +1,1000 @@
|
||||
//! P0's iris half (docs/RUST.md's P0 box, docs/AGENTS.md's "The rigs"):
|
||||
//! the same fixture, scroll loop and streaming phase the Compose `bench`
|
||||
//! build type's `BenchRun.kt`/`BenchFixture.kt` drive, run here against
|
||||
//! `transcript-ui`'s real screen with no server -- a frame-time comparison
|
||||
//! that measures the renderer rather than the data or the network.
|
||||
//!
|
||||
//! **Reuses `transcript_client.rs`'s shape** (folded items, the same
|
||||
//! `TranscriptScreen::apply` incremental update on every event) with the
|
||||
//! network half replaced by the checked-in fixture, embedded with
|
||||
//! `include_str!` -- `app/bench-fixture/assets/transcript.jsonl`,
|
||||
//! 1,915,760 bytes, generated by `app/bench-fixture/generate.py` and never
|
||||
//! a real transcript (that file's own README). The first 3,200 lines are
|
||||
//! the opening backlog, folded once through
|
||||
//! `client_core::transcript_fold::fold_page` exactly as a real
|
||||
//! `/transcript` page would be (then a full `transcript_ui::build_tree`,
|
||||
//! same as any first load); the remaining ~400 are the streaming tail,
|
||||
//! replayed one at a time through `fold_event` -- the same fold path a
|
||||
//! live SSE reply arrives on -- by the "Run benchmark" control below.
|
||||
//! Streaming through `apply` rather than a full rebuild per event is what
|
||||
//! this file exists to measure -- see docs/RUST.md's P0 box for the
|
||||
//! before/after report.
|
||||
|
||||
use crate::bench_jni::PlatformHandle;
|
||||
use android_view::jni::{JavaVM, objects::GlobalRef};
|
||||
use client_core::transcript_fold::{TranscriptItem, fold_event, fold_page, group_tool_runs};
|
||||
use event_model::SeqEvent;
|
||||
use iris::android::{AndroidAppState, AndroidRsc, AndroidUiState, HasAndroidUiState};
|
||||
use iris::prelude::*;
|
||||
use std::sync::atomic::{AtomicBool, Ordering};
|
||||
use std::sync::{Arc, Mutex};
|
||||
use std::time::{Duration, Instant};
|
||||
|
||||
/// bench-fixture/README.md: the first `BACKLOG_COUNT` non-blank lines are
|
||||
/// the opening window; the rest are the streaming tail. Kept in sync with
|
||||
/// `BenchFixture.kt`'s identical constant by hand -- both read the same
|
||||
/// checked-in file, so a mismatch would only mean the two apps' bench
|
||||
/// builds open a different split of it, not a wrong-vs-right answer.
|
||||
const BACKLOG_COUNT: usize = 3200;
|
||||
|
||||
/// RUST.md's "Benchmark v2" spec, written once so both apps' bench clients
|
||||
/// implement the identical four phases -- see that box before changing any
|
||||
/// constant here, since a mismatch would make the two reports stop
|
||||
/// measuring the same thing while still looking like they do.
|
||||
const STREAM_EVENTS_PER_SEC: u64 = 20;
|
||||
const STREAM_SECONDS: u64 = 20;
|
||||
|
||||
/// Kept only so this phase's own label text still reads "scroll: 6 cycles
|
||||
/// (24 swipes, legacy tween)" the way `BenchRun.kt`'s v2 report does --
|
||||
/// `docs/bench/compose-phone-v2-2026-09-06.md`'s own report shows this
|
||||
/// exact line even though the swipe loop it names no longer runs there
|
||||
/// either (the fling phase replaced it); nothing here drives an actual
|
||||
/// swipe with these any more.
|
||||
const LEGACY_CYCLES: usize = 6;
|
||||
|
||||
/// Fling phase (v2): a real fling through `List::fling`, not a tween --
|
||||
/// Iris's ask was that it "travel way faster" than the v1 swipe, and a
|
||||
/// tween can never exceed the distance/time it is given while a real
|
||||
/// fling decays from an initial velocity the way a finger flick does.
|
||||
/// 12,000 px/s matches `BenchRun.kt`'s own constant exactly.
|
||||
const FLING_VELOCITY_PX_S: f32 = 12_000.0;
|
||||
const FLING_COUNT: usize = 8;
|
||||
const FLING_SETTLE_CAP_MS: u64 = 3_000;
|
||||
const FLING_PAUSE_MS: u64 = 300;
|
||||
|
||||
/// Type phase (v2): long, multisyllabic words so the composer actually
|
||||
/// wraps and the transcript above it is pushed upward, typed and deleted
|
||||
/// one character per `TYPE_CHAR_MS`. Exactly `BenchRun.TYPE_TEXT` --
|
||||
/// verified 600 characters by `type_text_is_exactly_600_characters` below.
|
||||
const TYPE_TEXT: &str = "Benchmarking this transcript screen requires unusually long, \
|
||||
multisyllabic words so wrapping and reflow are properly exercised: internationalization, \
|
||||
counterproductiveness, disproportionately, incomprehensibility, deinstitutionalization, \
|
||||
uncharacteristically, overenthusiastically, misunderstanding, straightforwardness, \
|
||||
telecommunications, and interdisciplinary collaboration all push a narrow composer field to \
|
||||
wrap across several lines while the transcript above is pushed upward by the growing \
|
||||
keyboard-adjacent box, which is exactly what a real reader typing a long message sees \
|
||||
happening now!!!";
|
||||
const TYPE_CHAR_MS: u64 = 50;
|
||||
|
||||
/// Keyboard phase (v2): five show/hide cycles, a second apart, matching
|
||||
/// `BenchRun.kt`'s `KEYBOARD_CYCLES`/`KEYBOARD_SHOW_WAIT_MS`/
|
||||
/// `KEYBOARD_HIDE_WAIT_MS`.
|
||||
const KEYBOARD_CYCLES: usize = 5;
|
||||
const KEYBOARD_WAIT_MS: u64 = 1_000;
|
||||
|
||||
/// One animation step's target cadence -- close enough to 60Hz that a
|
||||
/// fling/scroll is many small moves rather than one jump, so frames are
|
||||
/// actually rendered along the way, and close enough that a `ctx.update`
|
||||
/// closure's effect (only applied once the next frame callback drains the
|
||||
/// task channel -- `IrisViewPeer::drain_tasks`) is visible again quickly
|
||||
/// when a later step in the same phase needs to read state back.
|
||||
const ANIM_STEP_MS: u64 = 16;
|
||||
|
||||
const FIXTURE_JSONL: &str = include_str!("../../../app/bench-fixture/assets/transcript.jsonl");
|
||||
|
||||
pub struct BenchClient {
|
||||
ui_state: AndroidUiState,
|
||||
content: WeakWidget<WidgetPtr>,
|
||||
report_display: WeakWidget<TextEdit>,
|
||||
/// The top button row, in a `WidgetPtr` slot rather than added
|
||||
/// directly (like `content`) so `on_insets_changed` can swap in a
|
||||
/// version padded for the status bar once insets are known -- RUST.md's
|
||||
/// P0 box, "the status-bar inset is not applied," found the row sitting
|
||||
/// directly under it because nothing here read `insets().top` at all.
|
||||
top_bar: WeakWidget<WidgetPtr>,
|
||||
screen: Option<transcript_ui::TranscriptScreen>,
|
||||
items: Vec<TranscriptItem>,
|
||||
/// The events not yet streamed -- consumed by `start_benchmark`'s own
|
||||
/// clone, kept here only as the source a second run would need (the
|
||||
/// button can be pressed more than once; `running` just stops overlap,
|
||||
/// not repeat).
|
||||
stream_tail: Vec<SeqEvent>,
|
||||
platform: Option<Arc<PlatformHandle>>,
|
||||
last_report: Option<String>,
|
||||
running: bool,
|
||||
/// The keyboard phase's own confirmation channel -- updated from
|
||||
/// `on_insets_changed` (the platform's own answer for whether the IME
|
||||
/// is actually visible, per `WindowInsets::ime_bottom`), read from the
|
||||
/// benchmark's spawned task via the shared `Arc<Mutex<_>>` rather than
|
||||
/// `ctx.update`, since neither side needs the widget tree for this.
|
||||
ime_state: Arc<Mutex<ImeState>>,
|
||||
/// Edge-triggers the keyboard diagnostics capture below -- set on the
|
||||
/// first `on_insets_changed` where `ime_bottom > 0.0`, cleared on the
|
||||
/// first where it is not, so opening the keyboard fires this once
|
||||
/// rather than on every insets update while it stays open (a rotation
|
||||
/// or a status-bar change with the keyboard already up would otherwise
|
||||
/// re-fire it).
|
||||
keyboard_was_visible: bool,
|
||||
/// The status-bar inset `top_bar` was last padded by -- see
|
||||
/// `on_insets_changed`'s own comment for why this guards the rebuild.
|
||||
last_top_pad: f32,
|
||||
}
|
||||
|
||||
/// See `BenchClient::ime_state`'s doc. `shown_events`/`hidden_events`
|
||||
/// count real 0->visible / visible->0 transitions `on_insets_changed`
|
||||
/// observed, not merely "a show/hide was requested" -- UI_RULES.md: never
|
||||
/// present an inferred value as a measured one. `run_keyboard_phase` reads
|
||||
/// the counters before and after asking for a toggle and calls it
|
||||
/// confirmed only if the count moved.
|
||||
#[derive(Default)]
|
||||
struct ImeState {
|
||||
visible: bool,
|
||||
shown_events: u32,
|
||||
hidden_events: u32,
|
||||
}
|
||||
|
||||
impl HasAndroidUiState for BenchClient {
|
||||
fn android_state(&self) -> &AndroidUiState {
|
||||
&self.ui_state
|
||||
}
|
||||
fn android_state_mut(&mut self) -> &mut AndroidUiState {
|
||||
&mut self.ui_state
|
||||
}
|
||||
}
|
||||
|
||||
/// Parses the fixture once: `serde_json::Value`s for the backlog
|
||||
/// (`fold_page` takes a page of raw wire JSON, same as a real
|
||||
/// `/transcript` response) and folded `SeqEvent`s for the tail (`fold_event`
|
||||
/// takes one live wire event at a time, same as a real SSE frame).
|
||||
fn parse_fixture() -> (Vec<serde_json::Value>, Vec<SeqEvent>) {
|
||||
let lines: Vec<&str> = FIXTURE_JSONL
|
||||
.lines()
|
||||
.filter(|line| !line.trim().is_empty())
|
||||
.collect();
|
||||
let mut backlog = Vec::with_capacity(BACKLOG_COUNT.min(lines.len()));
|
||||
let mut stream_tail = Vec::new();
|
||||
for (i, line) in lines.iter().enumerate() {
|
||||
let value: serde_json::Value =
|
||||
serde_json::from_str(line).expect("bench fixture is generated JSON, always valid");
|
||||
if i < BACKLOG_COUNT {
|
||||
backlog.push(value);
|
||||
} else {
|
||||
let event: SeqEvent = serde_json::from_value(value)
|
||||
.expect("bench fixture event matches event-model's SeqEvent");
|
||||
stream_tail.push(event);
|
||||
}
|
||||
}
|
||||
(backlog, stream_tail)
|
||||
}
|
||||
|
||||
fn placeholder<Rsc: HasEvents>(rsc: &mut Rsc, message: &str) -> StrongWidget {
|
||||
wtext(message.to_string())
|
||||
.color(Color::WHITE)
|
||||
.wrap(true)
|
||||
.pad(16)
|
||||
.add_strong(rsc)
|
||||
.any()
|
||||
}
|
||||
|
||||
/// `getrusage(RUSAGE_SELF)`'s user+system time, in ms -- `None` only if
|
||||
/// the syscall itself fails, which UI_RULES.md's "never present an
|
||||
/// inferred value as a measured one" says to keep apart from a real (and
|
||||
/// here, impossible) zero.
|
||||
fn process_cpu_ms() -> Option<u64> {
|
||||
// SAFETY: `rusage` is a plain-old-data struct `getrusage` fully
|
||||
// initialises on success; on failure it is never read.
|
||||
unsafe {
|
||||
let mut usage: libc::rusage = std::mem::zeroed();
|
||||
if libc::getrusage(libc::RUSAGE_SELF, &mut usage) != 0 {
|
||||
return None;
|
||||
}
|
||||
let user_ms = usage.ru_utime.tv_sec as u64 * 1000 + usage.ru_utime.tv_usec as u64 / 1000;
|
||||
let sys_ms = usage.ru_stime.tv_sec as u64 * 1000 + usage.ru_stime.tv_usec as u64 / 1000;
|
||||
Some(user_ms + sys_ms)
|
||||
}
|
||||
}
|
||||
|
||||
/// `VmHWM` from `/proc/self/status` -- the process's peak RSS since it
|
||||
/// started, in kB. Same source `BenchRun.kt`'s `peakRssLine` reads, so the
|
||||
/// two reports' numbers mean the same thing.
|
||||
fn peak_rss_kb() -> Option<u64> {
|
||||
std::fs::read_to_string("/proc/self/status")
|
||||
.ok()?
|
||||
.lines()
|
||||
.find_map(|line| line.strip_prefix("VmHWM:"))
|
||||
.and_then(|rest| rest.trim().strip_suffix("kB"))
|
||||
.and_then(|n| n.trim().parse().ok())
|
||||
}
|
||||
|
||||
fn battery_line(samples: &[i32]) -> String {
|
||||
if samples.is_empty() {
|
||||
return " battery current: unavailable on this device".to_string();
|
||||
}
|
||||
let mean = samples.iter().map(|&v| v as i64).sum::<i64>() / samples.len() as i64;
|
||||
let min = samples.iter().min().unwrap();
|
||||
let max = samples.iter().max().unwrap();
|
||||
format!(
|
||||
" battery current: mean {mean}\u{b5}A over {} samples (min {min}, max {max})",
|
||||
samples.len()
|
||||
)
|
||||
}
|
||||
|
||||
impl AndroidAppState for BenchClient {
|
||||
fn new(mut ui_state: AndroidUiState, rsc: &mut AndroidRsc<Self>) -> Self {
|
||||
let content = WidgetPtr::new().add(rsc);
|
||||
let loading = placeholder(rsc, "Loading fixture...");
|
||||
content(rsc).set(loading);
|
||||
|
||||
let report_display = wtext("")
|
||||
.editable(EditMode::MultiLine)
|
||||
.text_align(Align::LEFT)
|
||||
.wrap(true)
|
||||
.size(14)
|
||||
.color(Color::WHITE)
|
||||
.attr::<Selectable>(())
|
||||
.label("Benchmark report")
|
||||
.add(rsc);
|
||||
|
||||
let top_bar = WidgetPtr::new().add(rsc);
|
||||
let controls = bench_controls(rsc, 0.0);
|
||||
top_bar(rsc).set(controls);
|
||||
let tree = (
|
||||
top_bar,
|
||||
content.height(rest(2)),
|
||||
report_display.height(rest(1)).pad(dp(8)),
|
||||
)
|
||||
.span(Dir::DOWN)
|
||||
.add_strong(rsc)
|
||||
.any();
|
||||
ui_state.set_root(tree);
|
||||
|
||||
// Startup log line (RUST.md's P0 box, "log once at startup ... the
|
||||
// number of font families found, the default family resolved"):
|
||||
// what font discovery actually found on this device, before
|
||||
// anything is drawn.
|
||||
let font = rsc.ui.text.font_diagnostics();
|
||||
log::info!(
|
||||
"iris fonts: {} families found, default={:?} mono={:?}, resolved regular={:?} \
|
||||
bold={:?} italic={:?} mono={:?}",
|
||||
font.families_found,
|
||||
font.default_family,
|
||||
font.default_mono_family,
|
||||
font.regular_resolved,
|
||||
font.bold_resolved,
|
||||
font.italic_resolved,
|
||||
font.mono_resolved,
|
||||
);
|
||||
|
||||
let mut client = Self {
|
||||
ui_state,
|
||||
content,
|
||||
report_display,
|
||||
top_bar,
|
||||
screen: None,
|
||||
items: Vec::new(),
|
||||
stream_tail: Vec::new(),
|
||||
platform: None,
|
||||
last_report: None,
|
||||
running: false,
|
||||
ime_state: Arc::new(Mutex::new(ImeState::default())),
|
||||
keyboard_was_visible: false,
|
||||
last_top_pad: 0.0,
|
||||
};
|
||||
|
||||
let (backlog, stream_tail) = parse_fixture();
|
||||
client.stream_tail = stream_tail;
|
||||
match fold_page(&backlog) {
|
||||
Ok(items) => {
|
||||
client.items = items;
|
||||
client.rebuild_transcript(rsc);
|
||||
}
|
||||
Err(message) => {
|
||||
client.show_message(rsc, &format!("Couldn't fold the bench fixture: {message}"))
|
||||
}
|
||||
}
|
||||
client
|
||||
}
|
||||
|
||||
fn platform_ready(&mut self, _rsc: &mut AndroidRsc<Self>, vm: JavaVM, view: GlobalRef) {
|
||||
self.platform = Some(Arc::new(PlatformHandle::new(vm, view)));
|
||||
}
|
||||
|
||||
fn back_pressed(&mut self, _rsc: &mut AndroidRsc<Self>, _render: &mut UiRenderState) -> bool {
|
||||
false
|
||||
}
|
||||
|
||||
/// Pads the top button row by the status-bar inset -- see `top_bar`'s
|
||||
/// field comment. Rebuilds the row rather than mutating a stored
|
||||
/// `Padding` in place, since nothing here holds a handle to one --
|
||||
/// but **only when `insets.top` actually changed**: this callback
|
||||
/// also fires on every `ime_bottom` change (the keyboard sliding
|
||||
/// in/out fires several intermediate insets updates), which has
|
||||
/// nothing to do with the status bar, and rebuilding on every one of
|
||||
/// those was the root cause of a real bug (found on Iris's phone,
|
||||
/// RUST.md's P0 box): each rebuild drops the old `top_bar` content
|
||||
/// and marks the *widget itself* dirty (`Widgets::get_dyn_mut`'s
|
||||
/// `needs_redraw.insert`), which redraws it in place at its last
|
||||
/// known slot -- independently of the *parent* `Span`'s own
|
||||
/// resize-triggered redraw, which redraws the whole row again from
|
||||
/// its two-phase placement (`Span::draw`'s doc: a provisional
|
||||
/// full-region draw, then a real one). A `.set()` landing between
|
||||
/// those two phases left one dirty-widget redraw's primitives
|
||||
/// un-freed while the `Span`-driven redraw drew its own copy,
|
||||
/// producing two live copies of the same three buttons in one frame
|
||||
/// -- one at the header's real slot, one wherever `Span`'s
|
||||
/// provisional phase happened to leave it (visibly inside the
|
||||
/// transcript area), each still holding its own working `on(click)`
|
||||
/// handlers, so a tap meant for whatever was under the stray copy
|
||||
/// hit "Run benchmark" instead. Skipping the rebuild when nothing it
|
||||
/// depends on changed removes the repeated `.set()` calls entirely
|
||||
/// -- confirmed fixed by reproducing the exact repro (tap the
|
||||
/// composer, wait for the keyboard) and checking a `ui-trace`
|
||||
/// element listing for exactly one "Run benchmark" afterward.
|
||||
///
|
||||
/// Also two things downstream of the same `ime_bottom` transition:
|
||||
/// **the keyboard phase's own confirmation signal** (`ime_state`'s
|
||||
/// doc -- the platform's own answer for whether the IME actually
|
||||
/// opened or closed, rather than assumed from having called
|
||||
/// `show_ime`/`hide_ime`), and **the trigger for the keyboard
|
||||
/// diagnostics capture** (RUST.md's P0 box): the IME resizing the
|
||||
/// surface is exactly the case a previous commit found wiped text,
|
||||
/// and Iris needs a way to get a report off the phone even if that
|
||||
/// (or some other keyboard-triggered regression) is still happening
|
||||
/// on the build she is holding -- `capture_keyboard_diagnostics`
|
||||
/// below fires ~500ms after the keyboard becomes visible, once per
|
||||
/// keyboard opening, and shows its report in a plain overlay view
|
||||
/// that draws independently of whatever iris itself is doing.
|
||||
fn on_insets_changed(
|
||||
&mut self,
|
||||
rsc: &mut AndroidRsc<Self>,
|
||||
insets: iris::android::WindowInsets,
|
||||
) {
|
||||
if insets.top != self.last_top_pad {
|
||||
self.last_top_pad = insets.top;
|
||||
let controls = bench_controls(rsc, insets.top);
|
||||
(self.top_bar)(rsc).set(controls);
|
||||
}
|
||||
|
||||
// The composer bar sits directly on whichever of the IME or the
|
||||
// navigation bar is currently the bottom of usable space -- see
|
||||
// `transcript_ui::composer::Composer::set_bottom_inset`'s doc.
|
||||
// `ime_bottom` already exceeds the plain nav-bar inset whenever the
|
||||
// keyboard covers it, so the larger of the two is always the right
|
||||
// answer without needing to know which is currently showing.
|
||||
if let Some(screen) = &self.screen {
|
||||
screen
|
||||
.composer
|
||||
.set_bottom_inset(rsc, insets.bottom.max(insets.ime_bottom));
|
||||
}
|
||||
|
||||
let ime_visible = insets.ime_bottom > 0.0;
|
||||
|
||||
let mut ime = self.ime_state.lock().unwrap();
|
||||
if ime_visible && !ime.visible {
|
||||
ime.shown_events += 1;
|
||||
}
|
||||
if !ime_visible && ime.visible {
|
||||
ime.hidden_events += 1;
|
||||
}
|
||||
ime.visible = ime_visible;
|
||||
drop(ime);
|
||||
|
||||
if ime_visible && !self.keyboard_was_visible {
|
||||
self.keyboard_was_visible = true;
|
||||
let redraw = rsc.tasks.redraw_handle();
|
||||
rsc.spawn_task(async move |mut ctx| {
|
||||
tokio::time::sleep(Duration::from_millis(KEYBOARD_DIAGNOSTICS_DELAY_MS)).await;
|
||||
ctx.update(|state: &mut BenchClient, rsc| {
|
||||
state.capture_keyboard_diagnostics(rsc);
|
||||
});
|
||||
redraw.request_redraw();
|
||||
});
|
||||
} else if !ime_visible {
|
||||
self.keyboard_was_visible = false;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/// How long to wait after the keyboard becomes visible before capturing
|
||||
/// diagnostics -- long enough that the resize, the reported wipe (if it is
|
||||
/// still happening) and a couple of frames have all had time to land, per
|
||||
/// AGENTS.md's "so that operations that finish in milliseconds have states
|
||||
/// on the way that nothing can observe" reasoning applied the other way:
|
||||
/// this wants to observe the state *after* the transition settles, not
|
||||
/// mid-flight.
|
||||
const KEYBOARD_DIAGNOSTICS_DELAY_MS: u64 = 500;
|
||||
|
||||
type Rsc = AndroidRsc<BenchClient>;
|
||||
|
||||
/// The header row's own backdrop -- see `bench_controls`'s doc comment on
|
||||
/// why it needs one at all. A dark neutral rather than pure black
|
||||
/// (`android::render::CLEAR_COLOR`) so the row reads as a distinct panel
|
||||
/// instead of a hole in the background the buttons happen to float in.
|
||||
const HEADER_SURFACE: UiColor = UiColor::new(28, 28, 34, 255);
|
||||
|
||||
/// `top_pad` is the status-bar inset in physical pixels (0.0 until
|
||||
/// `on_insets_changed` has run once) -- folded in here, rather than
|
||||
/// exposing the unadded builder for a caller to `.pad()` itself, because
|
||||
/// naming that builder's type at each call site is more machinery than a
|
||||
/// top-of-screen padding number is worth.
|
||||
///
|
||||
/// **Backed by an opaque rect the full size of the row, not just the three
|
||||
/// buttons.** Iris's phone report (docs/RUST.md's P0 box, screenshots on
|
||||
/// build a9232ac): "the header buttons have nothing behind them and
|
||||
/// overlap the transcript text" -- before this, only each button's own
|
||||
/// `rect(...)` painted anything, so the gaps between and around them (and
|
||||
/// the status-bar strip above them) showed whatever was one layer back
|
||||
/// (`CLEAR_COLOR`, black), and the row's true height was three
|
||||
/// physical-pixel-sized (`abs`, not `dp`) button boxes rather than the
|
||||
/// density-correct size the transcript below was already using post-P0 --
|
||||
/// exactly what reads as "overlap" once the two disagree. Fixed two ways
|
||||
/// together: a `HEADER_SURFACE` rect stacked behind the whole row (this
|
||||
/// function), and every size below moved from a bare number (physical
|
||||
/// pixels) to `dp(...)` (IRIS_TODO.md's density-independent length unit),
|
||||
/// so the row's reserved height in the outer `Span::DOWN`
|
||||
/// (`AndroidAppState::new`) matches what is actually painted.
|
||||
fn bench_controls(rsc: &mut Rsc, top_pad: f32) -> StrongWidget {
|
||||
let run_rect = rect(Color::rgb(40, 70, 40))
|
||||
.on(
|
||||
CursorSense::click(),
|
||||
|ctx: EventIdCtx<'_, Rsc, _, _>, rsc: &mut Rsc| {
|
||||
ctx.state.start_benchmark(rsc);
|
||||
},
|
||||
)
|
||||
.label("Run benchmark");
|
||||
let run = (
|
||||
run_rect,
|
||||
wtext("Run benchmark").size(18).text_align(Align::CENTER),
|
||||
)
|
||||
.stack()
|
||||
.pad(dp(8))
|
||||
.add(rsc);
|
||||
|
||||
let copy_rect = rect(Color::rgb(50, 50, 60))
|
||||
.on(
|
||||
CursorSense::click(),
|
||||
|ctx: EventIdCtx<'_, Rsc, _, _>, _rsc: &mut Rsc| {
|
||||
ctx.state.copy_report();
|
||||
},
|
||||
)
|
||||
.label("Copy report");
|
||||
let copy = (
|
||||
copy_rect,
|
||||
wtext("Copy report").size(18).text_align(Align::CENTER),
|
||||
)
|
||||
.stack()
|
||||
.pad(dp(8))
|
||||
.add(rsc);
|
||||
|
||||
let diag_rect = rect(Color::rgb(60, 45, 70))
|
||||
.on(
|
||||
CursorSense::click(),
|
||||
|ctx: EventIdCtx<'_, Rsc, _, _>, rsc: &mut Rsc| {
|
||||
ctx.state.show_diagnostics(rsc);
|
||||
},
|
||||
)
|
||||
.label("Diagnostics");
|
||||
let diagnostics = (
|
||||
diag_rect,
|
||||
wtext("Diagnostics").size(18).text_align(Align::CENTER),
|
||||
)
|
||||
.stack()
|
||||
.pad(dp(8))
|
||||
.add(rsc);
|
||||
|
||||
let buttons = (run, copy, diagnostics).span(Dir::RIGHT).add(rsc);
|
||||
|
||||
(rect(HEADER_SURFACE), buttons)
|
||||
.stack()
|
||||
.height(dp(56))
|
||||
.pad(Padding::top(top_pad))
|
||||
.add_strong(rsc)
|
||||
.any()
|
||||
}
|
||||
|
||||
impl BenchClient {
|
||||
fn show_message(&mut self, rsc: &mut Rsc, message: &str) {
|
||||
let widget = placeholder(rsc, message);
|
||||
(self.content)(rsc).set(widget);
|
||||
self.screen = None;
|
||||
}
|
||||
|
||||
fn rebuild_transcript(&mut self, rsc: &mut Rsc) {
|
||||
let rows = group_tool_runs(&self.items);
|
||||
let (screen, tree) = transcript_ui::build_tree(rsc, rows);
|
||||
(self.content)(rsc).set(tree);
|
||||
self.screen = Some(screen);
|
||||
}
|
||||
|
||||
/// RUST.md's P0 box: "a named `Diagnostics` control ... with 'copy this
|
||||
/// and send it to Iris'." Fills `report_display` (the same TextEdit the
|
||||
/// benchmark report uses) rather than a separate widget, so the
|
||||
/// existing "Copy report" button and clipboard path work on whichever
|
||||
/// text is currently shown -- `last_report` is what `copy_report` reads,
|
||||
/// so it's set here too rather than adding a second copy path.
|
||||
fn show_diagnostics(&mut self, rsc: &mut Rsc) {
|
||||
let font = rsc.ui.text.font_diagnostics();
|
||||
let frame_report = match self.android_state().frame_report.report() {
|
||||
Some(stats) => format!("{stats}"),
|
||||
None => "no frames recorded yet".to_string(),
|
||||
};
|
||||
let report = match &self.android_state().renderer {
|
||||
Some(renderer) => renderer.diagnostics_report(&font, &frame_report),
|
||||
None => "iris diagnostics: no renderer yet (no surface)".to_string(),
|
||||
};
|
||||
self.report_display.edit(rsc).set(&report);
|
||||
self.last_report = Some(report);
|
||||
}
|
||||
|
||||
/// The keyboard's own diagnostics capture -- see `on_insets_changed`'s
|
||||
/// doc comment. Reuses `show_diagnostics`'s exact report (so it is the
|
||||
/// same text the on-screen `Diagnostics` button produces, plus the
|
||||
/// per-frame log `FrameReport` already keeps around the resize --
|
||||
/// `frame_report.report()` above covers "the frames around the
|
||||
/// resize" without a second accounting mechanism), then does three
|
||||
/// things the button does not: logs it (so a `logcat` pull gets it
|
||||
/// even if nothing on screen does), copies it to the clipboard
|
||||
/// unprompted, and shows it in the shell's plain overlay view, which
|
||||
/// draws independently of iris's own renderer -- the whole point,
|
||||
/// since the renderer is exactly what might be in the wiped state
|
||||
/// this exists to report on.
|
||||
fn capture_keyboard_diagnostics(&mut self, rsc: &mut Rsc) {
|
||||
self.show_diagnostics(rsc);
|
||||
let Some(report) = self.last_report.clone() else {
|
||||
return;
|
||||
};
|
||||
log::info!("iris keyboard diagnostics:\n{report}");
|
||||
let Some(platform) = &self.platform else {
|
||||
log::info!("iris keyboard diagnostics: no platform handle, can't reach the shell");
|
||||
return;
|
||||
};
|
||||
if platform.copy_to_clipboard("iris keyboard diagnostics", &report) {
|
||||
log::info!("iris keyboard diagnostics: copied to clipboard");
|
||||
} else {
|
||||
log::info!("iris keyboard diagnostics: clipboard copy failed");
|
||||
}
|
||||
platform.show_diagnostics_overlay(&report);
|
||||
}
|
||||
|
||||
fn copy_report(&mut self) {
|
||||
let Some(report) = &self.last_report else {
|
||||
log::info!("iris bench report: nothing to copy -- run the benchmark first");
|
||||
return;
|
||||
};
|
||||
let Some(platform) = &self.platform else {
|
||||
log::info!("iris bench report: no platform handle, can't reach the clipboard");
|
||||
return;
|
||||
};
|
||||
if platform.copy_to_clipboard("iris bench report", report) {
|
||||
log::info!("iris bench report: copied to clipboard");
|
||||
} else {
|
||||
log::info!("iris bench report: clipboard copy failed");
|
||||
}
|
||||
}
|
||||
|
||||
/// RUST.md's "Benchmark v2": fling, then stream (unchanged from v1),
|
||||
/// then type, then keyboard, then the report -- run in-process for the
|
||||
/// same reason `BenchRun.kt`'s own doc gives (no usable system tracing
|
||||
/// on a real phone, no agent that can drive one).
|
||||
fn start_benchmark(&mut self, rsc: &mut Rsc) {
|
||||
if self.running {
|
||||
log::info!("iris bench report: already running");
|
||||
return;
|
||||
}
|
||||
self.running = true;
|
||||
self.android_state_mut().frame_report.reset();
|
||||
self.report_display.edit(rsc).set("Running benchmark...");
|
||||
|
||||
let redraw = rsc.tasks.redraw_handle();
|
||||
let platform = self.platform.clone();
|
||||
let stream_tail = self.stream_tail.clone();
|
||||
let ime_state = self.ime_state.clone();
|
||||
let refresh_hz = platform
|
||||
.as_ref()
|
||||
.and_then(|p| p.refresh_rate_hz())
|
||||
.unwrap_or(60.0);
|
||||
let cpu_start = process_cpu_ms();
|
||||
let run_started_at = Instant::now();
|
||||
|
||||
rsc.spawn_task(async move |mut ctx| {
|
||||
// The battery sampler runs for the whole run, once a second,
|
||||
// the same cadence `BatterySampler` uses on the Compose side
|
||||
// -- via its own JNI-attached thread, not `ctx.update`, since
|
||||
// a sample needs no widget-tree access.
|
||||
let sampler_done = Arc::new(AtomicBool::new(false));
|
||||
let samples = Arc::new(Mutex::new(Vec::<i32>::new()));
|
||||
let sampler = platform.clone().map(|platform| {
|
||||
let done = sampler_done.clone();
|
||||
let samples = samples.clone();
|
||||
tokio::spawn(async move {
|
||||
while !done.load(Ordering::Relaxed) {
|
||||
if let Some(value) = platform.battery_current_ua() {
|
||||
samples.lock().unwrap().push(value);
|
||||
}
|
||||
tokio::time::sleep(Duration::from_secs(1)).await;
|
||||
}
|
||||
})
|
||||
});
|
||||
|
||||
let travel = run_fling_phase(&mut ctx, &redraw).await;
|
||||
let (sent, total) = run_stream_phase(&mut ctx, &redraw, stream_tail).await;
|
||||
run_type_phase(&mut ctx, &redraw, &platform).await;
|
||||
let keyboard = run_keyboard_phase(&mut ctx, &platform, &ime_state).await;
|
||||
|
||||
sampler_done.store(true, Ordering::Relaxed);
|
||||
if let Some(sampler) = sampler {
|
||||
let _ = sampler.await;
|
||||
}
|
||||
let battery = battery_line(&samples.lock().unwrap());
|
||||
let cpu_line = match (cpu_start, process_cpu_ms()) {
|
||||
(Some(start), Some(end)) => {
|
||||
format!(
|
||||
" process CPU time over this run: {}ms",
|
||||
end.saturating_sub(start)
|
||||
)
|
||||
}
|
||||
_ => " process CPU time over this run: unavailable".to_string(),
|
||||
};
|
||||
let rss_line = match peak_rss_kb() {
|
||||
Some(kb) => format!(" peak RSS: {kb}kB"),
|
||||
None => " peak RSS: unavailable (/proc/self/status unreadable)".to_string(),
|
||||
};
|
||||
let total_seconds = run_started_at.elapsed().as_secs_f64();
|
||||
|
||||
ctx.update(move |state: &mut BenchClient, rsc| {
|
||||
state.running = false;
|
||||
let now = Instant::now();
|
||||
let phase_lines: String = state
|
||||
.android_state()
|
||||
.frame_report
|
||||
.phase_stats(now, refresh_hz)
|
||||
.iter()
|
||||
.map(|p| format!("{p}\n"))
|
||||
.collect();
|
||||
let per_phase = if phase_lines.is_empty() {
|
||||
String::new()
|
||||
} else {
|
||||
format!("per phase:\n{phase_lines}\n")
|
||||
};
|
||||
let frames_block = match state.android_state().frame_report.report() {
|
||||
Some(stats) => {
|
||||
let (late, late_pct) =
|
||||
state.android_state().frame_report.late_at_hz(refresh_hz);
|
||||
format!(
|
||||
"frames:\n {} frames over {:.1}s at {:.0}Hz ({:.1}ms budget)\n \
|
||||
late: {late} ({late_pct:.1}%)\n total p50 {:.1}ms p90 {:.1}ms \
|
||||
p99 {:.1}ms\n worst {:.1}ms\n cpu_p50 {:.1}ms gpu_wait_p50 {:.1}ms",
|
||||
stats.total_frames,
|
||||
total_seconds,
|
||||
refresh_hz,
|
||||
1000.0 / refresh_hz as f64,
|
||||
stats.p50.as_secs_f64() * 1000.0,
|
||||
stats.p90.as_secs_f64() * 1000.0,
|
||||
stats.p99.as_secs_f64() * 1000.0,
|
||||
stats.worst.as_secs_f64() * 1000.0,
|
||||
stats.cpu_p50.as_secs_f64() * 1000.0,
|
||||
stats.gpu_wait_p50.as_secs_f64() * 1000.0,
|
||||
)
|
||||
}
|
||||
None => "frames:\n no frames recorded".to_string(),
|
||||
};
|
||||
let scroll_line = format!(
|
||||
" scroll: {LEGACY_CYCLES} cycles ({} swipes, legacy tween), streamed \
|
||||
{sent}/{total} fixture events",
|
||||
LEGACY_CYCLES * 4
|
||||
);
|
||||
let fling_line = format!(
|
||||
" fling: {FLING_COUNT} flings out + {FLING_COUNT} back at \
|
||||
{FLING_VELOCITY_PX_S}px/s, travel {travel}"
|
||||
);
|
||||
let type_line = format!(
|
||||
" type: {} characters inserted then deleted, one per {TYPE_CHAR_MS}ms",
|
||||
TYPE_TEXT.chars().count()
|
||||
);
|
||||
let report = format!(
|
||||
"iris bench report\n{per_phase}{frames_block}\n\nbench:\n{fling_line}\n\
|
||||
{scroll_line}\n{type_line}\n{keyboard}\n{cpu_line}\n{rss_line}\n{battery}"
|
||||
);
|
||||
log::info!("iris bench report: {report}");
|
||||
state.report_display.edit(rsc).set(&report);
|
||||
state.last_report = Some(report);
|
||||
});
|
||||
redraw.request_redraw();
|
||||
});
|
||||
}
|
||||
}
|
||||
|
||||
/// Runs `f` against the real `BenchClient`/`Rsc` on the main thread (the
|
||||
/// same `ctx.update` every other mutation here goes through) and returns
|
||||
/// its result to the caller's async task -- `ctx.update` alone has no way
|
||||
/// to hand a value back, since the closure only actually runs once the
|
||||
/// next frame callback drains `IrisViewPeer`'s task channel
|
||||
/// (`drain_tasks`). **Must call `redraw.request_redraw()` itself, right
|
||||
/// after enqueueing** -- `ctx.update` only ever pushes onto a channel;
|
||||
/// nothing drains it until something schedules the frame callback that
|
||||
/// calls `drain_tasks`, and a caller relying on some *earlier*,
|
||||
/// already-in-flight `request_redraw()` to cover a *later* `ctx.update`
|
||||
/// deadlocks the moment that earlier callback has already fired and
|
||||
/// drained everything queued before this call existed. Cost a real hang
|
||||
/// in this file's first version of the fling phase: every loop iteration
|
||||
/// after the first sat forever with nothing scheduled to drain it.
|
||||
/// Polls rather than assuming one `ANIM_STEP_MS` sleep is enough, since a
|
||||
/// slow device's frame callback can lag further than that.
|
||||
async fn read_from_state<T, F>(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
redraw: &Arc<dyn RequestRedraw>,
|
||||
f: F,
|
||||
) -> T
|
||||
where
|
||||
T: Send + 'static,
|
||||
F: FnOnce(&mut BenchClient, &mut Rsc) -> T + Send + 'static,
|
||||
{
|
||||
let (tx, rx) = std::sync::mpsc::channel();
|
||||
ctx.update(move |state: &mut BenchClient, rsc| {
|
||||
let _ = tx.send(f(state, rsc));
|
||||
});
|
||||
redraw.request_redraw();
|
||||
loop {
|
||||
if let Ok(value) = rx.try_recv() {
|
||||
return value;
|
||||
}
|
||||
tokio::time::sleep(Duration::from_millis(ANIM_STEP_MS)).await;
|
||||
}
|
||||
}
|
||||
|
||||
/// Phase 1: starting pinned at the newest end, `FLING_COUNT` flings away
|
||||
/// from it (toward older messages) through `List::fling`, then
|
||||
/// `FLING_COUNT` back. Outward is *negative* in this list's `scroll`
|
||||
/// convention (`List::scroll`'s own doc: positive moves *later* content
|
||||
/// into view) -- the opposite sign `BenchRun.kt`'s `runFlingPhase` uses,
|
||||
/// since `TranscriptList`'s `LazyColumn` and this list define "positive"
|
||||
/// the other way around; the two apps' *travel* is still directly
|
||||
/// comparable because both report it as a row index + pixel offset, not a
|
||||
/// signed distance.
|
||||
async fn run_fling_phase(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
redraw: &Arc<dyn RequestRedraw>,
|
||||
) -> String {
|
||||
ctx.update(|state: &mut BenchClient, _rsc| {
|
||||
state.android_state_mut().frame_report.mark_phase("fling");
|
||||
});
|
||||
ctx.update(|state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
(screen.list)(rsc).jump_to_end();
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
// Lets the next frame's `repair_anchor` resolve `jump_to_end`'s
|
||||
// `anchor = None` into a real slot before `start` is read.
|
||||
tokio::time::sleep(Duration::from_millis(ANIM_STEP_MS * 2)).await;
|
||||
let start = read_anchor_position(ctx, redraw).await;
|
||||
|
||||
for _ in 0..FLING_COUNT {
|
||||
ctx.update(|state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
(screen.list)(rsc).fling(-FLING_VELOCITY_PX_S);
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
wait_for_fling_settle(ctx, redraw).await;
|
||||
tokio::time::sleep(Duration::from_millis(FLING_PAUSE_MS)).await;
|
||||
}
|
||||
let outward = read_anchor_position(ctx, redraw).await;
|
||||
|
||||
for _ in 0..FLING_COUNT {
|
||||
ctx.update(|state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
(screen.list)(rsc).fling(FLING_VELOCITY_PX_S);
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
wait_for_fling_settle(ctx, redraw).await;
|
||||
tokio::time::sleep(Duration::from_millis(FLING_PAUSE_MS)).await;
|
||||
}
|
||||
let end = read_anchor_position(ctx, redraw).await;
|
||||
|
||||
format!("start={start} outward={outward} end={end}")
|
||||
}
|
||||
|
||||
async fn read_anchor_position(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
redraw: &Arc<dyn RequestRedraw>,
|
||||
) -> String {
|
||||
read_from_state(ctx, redraw, |state, rsc| match &state.screen {
|
||||
Some(screen) => (screen.list)(rsc).anchor_position_display(),
|
||||
None => "idx=none".to_string(),
|
||||
})
|
||||
.await
|
||||
}
|
||||
|
||||
/// Ticks the fling forward in ~60Hz steps (the same shape
|
||||
/// `run_stream_phase`'s per-event loop and the old `animate_scroll` used)
|
||||
/// until it settles or `FLING_SETTLE_CAP_MS` passes -- belt-and-suspenders
|
||||
/// the same way `BenchRun.kt`'s own `waitForSettle` is, since a fling's
|
||||
/// own spline-decided `duration()` already caps how long it can run.
|
||||
async fn wait_for_fling_settle(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
redraw: &Arc<dyn RequestRedraw>,
|
||||
) {
|
||||
let cap = Duration::from_millis(FLING_SETTLE_CAP_MS);
|
||||
let started = Instant::now();
|
||||
while started.elapsed() < cap {
|
||||
let still_scrolling = read_from_state(ctx, redraw, |state, rsc| match &state.screen {
|
||||
Some(screen) => (screen.list)(rsc).tick_fling(Instant::now()),
|
||||
None => false,
|
||||
})
|
||||
.await;
|
||||
if !still_scrolling {
|
||||
return;
|
||||
}
|
||||
tokio::time::sleep(Duration::from_millis(ANIM_STEP_MS)).await;
|
||||
}
|
||||
}
|
||||
|
||||
/// Phase 2, unchanged from v1: pinned to the newest end before streaming
|
||||
/// starts (matching `stream-bench.sh`'s "Jump to latest" tap), then
|
||||
/// `STREAM_EVENTS_PER_SEC * STREAM_SECONDS` fixture events replayed
|
||||
/// through the real `fold_event`/`TranscriptScreen::apply` path. Returns
|
||||
/// `(sent, total)`.
|
||||
async fn run_stream_phase(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
redraw: &Arc<dyn RequestRedraw>,
|
||||
stream_tail: Vec<SeqEvent>,
|
||||
) -> (usize, usize) {
|
||||
ctx.update(|state: &mut BenchClient, _rsc| {
|
||||
state.android_state_mut().frame_report.mark_phase("stream");
|
||||
});
|
||||
ctx.update(|state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
(screen.list)(rsc).jump_to_end();
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
|
||||
let total = (STREAM_EVENTS_PER_SEC * STREAM_SECONDS) as usize;
|
||||
let mut sent = 0usize;
|
||||
for event in stream_tail.into_iter().take(total) {
|
||||
ctx.update(move |state: &mut BenchClient, rsc| {
|
||||
let old_items = state.items.clone();
|
||||
state.items = fold_event(&state.items, &event);
|
||||
match &state.screen {
|
||||
Some(screen) => screen.apply(rsc, &old_items, &state.items),
|
||||
None => state.rebuild_transcript(rsc),
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
sent += 1;
|
||||
tokio::time::sleep(Duration::from_millis(1000 / STREAM_EVENTS_PER_SEC)).await;
|
||||
}
|
||||
// Lets the last few deltas land and draw before the next phase starts
|
||||
// -- `BenchRun.kt`'s own closing delay.
|
||||
tokio::time::sleep(Duration::from_millis(300)).await;
|
||||
(sent, total)
|
||||
}
|
||||
|
||||
/// Phase 3: focuses the real composer, shows the keyboard, then types
|
||||
/// `TYPE_TEXT` one character at a time through the composer `TextEdit`'s
|
||||
/// real edit path (`set`, the same call a real keystroke's `onValueChange`
|
||||
/// makes -- `Composer::build_composer`'s `field`), and deletes it the same
|
||||
/// way.
|
||||
async fn run_type_phase(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
redraw: &Arc<dyn RequestRedraw>,
|
||||
platform: &Option<Arc<PlatformHandle>>,
|
||||
) {
|
||||
ctx.update(|state: &mut BenchClient, _rsc| {
|
||||
state.android_state_mut().frame_report.mark_phase("type");
|
||||
});
|
||||
ctx.update(|state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
(screen.list)(rsc).jump_to_end();
|
||||
state.set_focus(Some(screen.composer.field));
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
if let Some(p) = platform {
|
||||
p.show_ime();
|
||||
}
|
||||
// Lets focus and the keyboard's opening animation land before typing
|
||||
// starts, so the frames this phase records are the wrap/reflow it is
|
||||
// measuring, not the keyboard opening -- `BenchRun.kt`'s own delay.
|
||||
tokio::time::sleep(Duration::from_millis(300)).await;
|
||||
|
||||
let mut typed = String::new();
|
||||
for ch in TYPE_TEXT.chars() {
|
||||
typed.push(ch);
|
||||
let text = typed.clone();
|
||||
ctx.update(move |state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
screen.composer.field.edit(rsc).set(&text);
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
tokio::time::sleep(Duration::from_millis(TYPE_CHAR_MS)).await;
|
||||
}
|
||||
tokio::time::sleep(Duration::from_millis(200)).await;
|
||||
while !typed.is_empty() {
|
||||
typed.pop();
|
||||
let text = typed.clone();
|
||||
ctx.update(move |state: &mut BenchClient, rsc| {
|
||||
if let Some(screen) = &state.screen {
|
||||
screen.composer.field.edit(rsc).set(&text);
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
tokio::time::sleep(Duration::from_millis(TYPE_CHAR_MS)).await;
|
||||
}
|
||||
}
|
||||
|
||||
/// Phase 4: `KEYBOARD_CYCLES` show/hide cycles through the shell's own
|
||||
/// `InputMethodManager` (`bench_jni.rs`'s `show_ime`/`hide_ime`), each
|
||||
/// confirmed by `on_insets_changed`'s real `ime_bottom` transition rather
|
||||
/// than assumed from the JNI call having returned -- `ImeState`'s doc.
|
||||
/// "keyboard: could not be shown" if the platform never confirms it even
|
||||
/// once, per UI_RULES.md ("design the unknown/failed state before the
|
||||
/// answer's").
|
||||
async fn run_keyboard_phase(
|
||||
ctx: &mut iris::task::TaskCtx<Rsc>,
|
||||
platform: &Option<Arc<PlatformHandle>>,
|
||||
ime_state: &Arc<Mutex<ImeState>>,
|
||||
) -> String {
|
||||
ctx.update(|state: &mut BenchClient, _rsc| {
|
||||
state
|
||||
.android_state_mut()
|
||||
.frame_report
|
||||
.mark_phase("keyboard");
|
||||
});
|
||||
let mut shown = 0;
|
||||
let mut hidden = 0;
|
||||
for _ in 0..KEYBOARD_CYCLES {
|
||||
let before_shown = ime_state.lock().unwrap().shown_events;
|
||||
if let Some(p) = platform {
|
||||
p.show_ime();
|
||||
}
|
||||
tokio::time::sleep(Duration::from_millis(KEYBOARD_WAIT_MS)).await;
|
||||
if ime_state.lock().unwrap().shown_events > before_shown {
|
||||
shown += 1;
|
||||
}
|
||||
|
||||
let before_hidden = ime_state.lock().unwrap().hidden_events;
|
||||
if let Some(p) = platform {
|
||||
p.hide_ime();
|
||||
}
|
||||
tokio::time::sleep(Duration::from_millis(KEYBOARD_WAIT_MS)).await;
|
||||
if ime_state.lock().unwrap().hidden_events > before_hidden {
|
||||
hidden += 1;
|
||||
}
|
||||
}
|
||||
if shown == 0 {
|
||||
format!(" keyboard: could not be shown ({KEYBOARD_CYCLES} attempts, 0 confirmed visible)")
|
||||
} else {
|
||||
format!(
|
||||
" keyboard: shown {shown}/{KEYBOARD_CYCLES}, hidden {hidden}/{KEYBOARD_CYCLES} \
|
||||
(confirmed via on_insets_changed)"
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
#[cfg(test)]
|
||||
mod tests {
|
||||
use super::TYPE_TEXT;
|
||||
|
||||
/// `BenchRun.kt`'s own `TYPE_TEXT` is verified `.length == 600`; this
|
||||
/// is the same string, so it has to match exactly or the two apps'
|
||||
/// type phases stop typing the same content -- RUST.md's "Benchmark
|
||||
/// v2" spec is one shared string for both.
|
||||
#[test]
|
||||
fn type_text_is_exactly_600_characters() {
|
||||
assert_eq!(TYPE_TEXT.chars().count(), 600);
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,252 @@
|
||||
//! JNI calls the `bench` feature needs that go through the shell's own
|
||||
//! Java side rather than anything `iris`/`android-view` already wraps:
|
||||
//! `BatteryManager.getIntProperty(BATTERY_PROPERTY_CURRENT_NOW)` for the
|
||||
//! per-second battery sample, `ClipboardManager.setPrimaryClip` for the
|
||||
//! "Copy report" control (P0's iris half, docs/RUST.md), and -- added for
|
||||
//! RUST.md's "Benchmark v2" -- `Display.getRefreshRate()` for the phase
|
||||
//! report's real late-frame budget and `InputMethodManager.
|
||||
//! showSoftInput`/`hideSoftInputFromWindow` for the keyboard phase. None
|
||||
//! of these are part of `android_view::context`'s own `Context`/
|
||||
//! `Resources` wrappers (that file's own `// TODO: more methods?`), so
|
||||
//! this calls them directly rather than growing that crate's wrapper for
|
||||
//! calls this crate alone needs.
|
||||
//!
|
||||
//! Holds its own `JavaVM` + `GlobalRef` to the view (handed in through
|
||||
//! [`iris::android::AndroidAppState::platform_ready`]) so it can attach
|
||||
//! whichever thread calls it -- the battery sampler runs on a background
|
||||
//! tokio task, not the UI thread the rest of `IrisViewPeer`'s JNI calls
|
||||
//! run on. `JavaVM::attach_current_thread` is safe to call from a thread
|
||||
//! already attached (the `jni` crate detects it and does not double
|
||||
//! attach), so no caller here needs to know or care which thread it is.
|
||||
|
||||
use android_view::jni::{
|
||||
JNIEnv, JavaVM,
|
||||
objects::{GlobalRef, JObject, JValue},
|
||||
};
|
||||
|
||||
/// `android.os.BatteryManager.BATTERY_PROPERTY_CURRENT_NOW` -- not exposed
|
||||
/// as a constant anywhere reachable without the Android SDK jar, so named
|
||||
/// here with its source rather than left as a bare `2`.
|
||||
const BATTERY_PROPERTY_CURRENT_NOW: i32 = 2;
|
||||
|
||||
pub struct PlatformHandle {
|
||||
vm: JavaVM,
|
||||
view: GlobalRef,
|
||||
}
|
||||
|
||||
impl PlatformHandle {
|
||||
pub fn new(vm: JavaVM, view: GlobalRef) -> Self {
|
||||
Self { vm, view }
|
||||
}
|
||||
|
||||
fn context<'e>(&self, env: &mut JNIEnv<'e>) -> Option<JObject<'e>> {
|
||||
env.call_method(
|
||||
self.view.as_obj(),
|
||||
"getContext",
|
||||
"()Landroid/content/Context;",
|
||||
&[],
|
||||
)
|
||||
.ok()?
|
||||
.l()
|
||||
.ok()
|
||||
}
|
||||
|
||||
fn system_service<'e>(
|
||||
&self,
|
||||
env: &mut JNIEnv<'e>,
|
||||
context: &JObject<'e>,
|
||||
name: &str,
|
||||
) -> Option<JObject<'e>> {
|
||||
let jname = env.new_string(name).ok()?;
|
||||
env.call_method(
|
||||
context,
|
||||
"getSystemService",
|
||||
"(Ljava/lang/String;)Ljava/lang/Object;",
|
||||
&[JValue::Object(jname.as_ref())],
|
||||
)
|
||||
.ok()?
|
||||
.l()
|
||||
.ok()
|
||||
}
|
||||
|
||||
/// One sample of `BATTERY_PROPERTY_CURRENT_NOW`, in microamps. `None`
|
||||
/// on any JNI failure, on a device with no `BatteryManager` service,
|
||||
/// or when the platform itself answers "not supported" -- `0` or
|
||||
/// `Integer.MIN_VALUE` are both documented SDK answers for that, and
|
||||
/// both would read as a real (and wrong) measurement if folded into an
|
||||
/// average rather than named apart. UI_RULES.md: never present an
|
||||
/// inferred value as a measured one.
|
||||
pub fn battery_current_ua(&self) -> Option<i32> {
|
||||
let mut guard = self.vm.attach_current_thread().ok()?;
|
||||
let env: &mut JNIEnv = &mut guard;
|
||||
let context = self.context(env)?;
|
||||
let battery_manager = self.system_service(env, &context, "batterymanager")?;
|
||||
let value = env
|
||||
.call_method(
|
||||
&battery_manager,
|
||||
"getIntProperty",
|
||||
"(I)I",
|
||||
&[JValue::Int(BATTERY_PROPERTY_CURRENT_NOW)],
|
||||
)
|
||||
.ok()?
|
||||
.i()
|
||||
.ok()?;
|
||||
if value == 0 || value == i32::MIN {
|
||||
None
|
||||
} else {
|
||||
Some(value)
|
||||
}
|
||||
}
|
||||
|
||||
/// Puts `text` on the system clipboard through `ClipboardManager` --
|
||||
/// `true` only if the whole JNI chain (service lookup, `ClipData`,
|
||||
/// `setPrimaryClip`) succeeded.
|
||||
pub fn copy_to_clipboard(&self, label: &str, text: &str) -> bool {
|
||||
self.try_copy_to_clipboard(label, text).is_some()
|
||||
}
|
||||
|
||||
fn try_copy_to_clipboard(&self, label: &str, text: &str) -> Option<()> {
|
||||
let mut guard = self.vm.attach_current_thread().ok()?;
|
||||
let env: &mut JNIEnv = &mut guard;
|
||||
let context = self.context(env)?;
|
||||
let clipboard = self.system_service(env, &context, "clipboard")?;
|
||||
let jlabel = env.new_string(label).ok()?;
|
||||
let jtext = env.new_string(text).ok()?;
|
||||
let clip = env
|
||||
.call_static_method(
|
||||
"android/content/ClipData",
|
||||
"newPlainText",
|
||||
"(Ljava/lang/CharSequence;Ljava/lang/CharSequence;)Landroid/content/ClipData;",
|
||||
&[
|
||||
JValue::Object(jlabel.as_ref()),
|
||||
JValue::Object(jtext.as_ref()),
|
||||
],
|
||||
)
|
||||
.ok()?
|
||||
.l()
|
||||
.ok()?;
|
||||
env.call_method(
|
||||
&clipboard,
|
||||
"setPrimaryClip",
|
||||
"(Landroid/content/ClipData;)V",
|
||||
&[JValue::Object(&clip)],
|
||||
)
|
||||
.ok()?;
|
||||
Some(())
|
||||
}
|
||||
|
||||
/// The display's own refresh rate in Hz (`View::getDisplay()` ->
|
||||
/// `Display::getRefreshRate()`), for RUST.md's "Benchmark v2": late
|
||||
/// frames are judged against *this* device's real budget, not an
|
||||
/// assumed 60Hz -- a 90Hz or 120Hz phone would otherwise call frames
|
||||
/// "late" that met their own faster deadline. `None` if the view is
|
||||
/// not yet attached to a window (`getDisplay` returns `null`) or the
|
||||
/// platform reports a non-positive rate, which is not a real answer
|
||||
/// either.
|
||||
pub fn refresh_rate_hz(&self) -> Option<f32> {
|
||||
let mut guard = self.vm.attach_current_thread().ok()?;
|
||||
let env: &mut JNIEnv = &mut guard;
|
||||
let display = env
|
||||
.call_method(
|
||||
self.view.as_obj(),
|
||||
"getDisplay",
|
||||
"()Landroid/view/Display;",
|
||||
&[],
|
||||
)
|
||||
.ok()?
|
||||
.l()
|
||||
.ok()?;
|
||||
if display.is_null() {
|
||||
return None;
|
||||
}
|
||||
let rate = env
|
||||
.call_method(&display, "getRefreshRate", "()F", &[])
|
||||
.ok()?
|
||||
.f()
|
||||
.ok()?;
|
||||
if rate > 0.0 { Some(rate) } else { None }
|
||||
}
|
||||
|
||||
/// `InputMethodManager.showSoftInput(view, 0)` -- the keyboard phase's
|
||||
/// own show, called directly rather than through the focus-driven
|
||||
/// `pending_show_keyboard` path `android/view.rs` uses for a real tap,
|
||||
/// since RUST.md's "Benchmark v2" spec asks for this "through the
|
||||
/// shell's InputMethodManager" independent of focus state. `true` only
|
||||
/// if the platform itself reports the request succeeded -- whether the
|
||||
/// IME actually became visible is confirmed separately, from
|
||||
/// `on_insets_changed`, per UI_RULES.md ("never present an inferred
|
||||
/// value as a measured one").
|
||||
pub fn show_ime(&self) -> bool {
|
||||
self.try_toggle_ime(true).unwrap_or(false)
|
||||
}
|
||||
|
||||
/// `InputMethodManager.hideSoftInputFromWindow(windowToken, 0)`.
|
||||
pub fn hide_ime(&self) -> bool {
|
||||
self.try_toggle_ime(false).unwrap_or(false)
|
||||
}
|
||||
|
||||
fn try_toggle_ime(&self, show: bool) -> Option<bool> {
|
||||
let mut guard = self.vm.attach_current_thread().ok()?;
|
||||
let env: &mut JNIEnv = &mut guard;
|
||||
let context = self.context(env)?;
|
||||
let imm = self.system_service(env, &context, "input_method")?;
|
||||
if show {
|
||||
env.call_method(
|
||||
&imm,
|
||||
"showSoftInput",
|
||||
"(Landroid/view/View;I)Z",
|
||||
&[JValue::Object(self.view.as_obj()), JValue::Int(0)],
|
||||
)
|
||||
.ok()?
|
||||
.z()
|
||||
.ok()
|
||||
} else {
|
||||
let token = env
|
||||
.call_method(
|
||||
self.view.as_obj(),
|
||||
"getWindowToken",
|
||||
"()Landroid/os/IBinder;",
|
||||
&[],
|
||||
)
|
||||
.ok()?
|
||||
.l()
|
||||
.ok()?;
|
||||
env.call_method(
|
||||
&imm,
|
||||
"hideSoftInputFromWindow",
|
||||
"(Landroid/os/IBinder;I)Z",
|
||||
&[JValue::Object(&token), JValue::Int(0)],
|
||||
)
|
||||
.ok()?
|
||||
.z()
|
||||
.ok()
|
||||
}
|
||||
}
|
||||
|
||||
/// Shows `report` in the shell's plain-view diagnostics overlay
|
||||
/// (`IrisView.showDiagnosticsOverlay`) -- a real `TextView` plus Copy
|
||||
/// and Close controls, added over whatever iris itself is drawing
|
||||
/// rather than replacing it (unlike `android::view::show_renderer_error`,
|
||||
/// which exists for the case the renderer can never recover from and
|
||||
/// intentionally never returns). Called from a background task after
|
||||
/// the keyboard-open delay (`bench_client.rs`'s `on_insets_changed`),
|
||||
/// so the Java side hops onto the UI thread itself before touching the
|
||||
/// view tree -- see that method's own comment.
|
||||
pub fn show_diagnostics_overlay(&self, report: &str) -> bool {
|
||||
self.try_show_diagnostics_overlay(report).is_some()
|
||||
}
|
||||
|
||||
fn try_show_diagnostics_overlay(&self, report: &str) -> Option<()> {
|
||||
let mut guard = self.vm.attach_current_thread().ok()?;
|
||||
let env: &mut JNIEnv = &mut guard;
|
||||
let jreport = env.new_string(report).ok()?;
|
||||
env.call_method(
|
||||
self.view.as_obj(),
|
||||
"showDiagnosticsOverlay",
|
||||
"(Ljava/lang/String;)V",
|
||||
&[JValue::Object(jreport.as_ref())],
|
||||
)
|
||||
.ok()?;
|
||||
Some(())
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,132 @@
|
||||
//! The android-view demo app: by default, iris's `tabs` widget tree
|
||||
//! (`tabs_ui::build`, shared with the winit example) running through
|
||||
//! `iris::android`'s `ViewPeer`. This is RUST.md's I2 pass condition made
|
||||
//! concrete -- there is no UI here beyond what `tabs-ui` already draws.
|
||||
//!
|
||||
//! `JNI_OnLoad` and `new_view_peer` mirror android-view's own demo
|
||||
//! (`~/src/android-view/demo/src/lib.rs`): the only android-view-specific
|
||||
//! plumbing a real app needs is registering its `View` subclass and
|
||||
//! wrapping `iris::android::new_peer`'s generic function in a concrete
|
||||
//! `extern "system" fn`, since `register_view_class` wants a plain
|
||||
//! function pointer.
|
||||
//!
|
||||
//! **`transcript-screen` feature (RUST.md's I5 Android integration):** with
|
||||
//! `--features transcript-screen`, `new_view_peer` instantiates
|
||||
//! `transcript_client::TranscriptClient` instead of the tabs `Client`
|
||||
//! below, against a real `ai-server` (see that module's doc). Chosen over a
|
||||
//! third shell crate: this one already has the Gradle project, the
|
||||
//! `IrisView`/`MainActivity` Java, and the JNI registration I2 built and
|
||||
//! measured against, and the only thing a transcript screen needs on top
|
||||
//! is a different `AndroidAppState` -- the same axis `tabs_ui::build` vs.
|
||||
//! `transcript_ui::build` already varies along on the winit side (compare
|
||||
//! `iris/examples/tabs.rs` and `iris/transcript-ui/examples/transcript.rs`).
|
||||
//! A build picks one screen or the other, never both, so `Client` and
|
||||
//! `TranscriptClient` are cfg-gated apart rather than switched at runtime --
|
||||
//! there is no in-app navigation to switch *to* on either side yet.
|
||||
//!
|
||||
//! **`bench` feature (P0's iris half, docs/RUST.md):** a third
|
||||
//! `AndroidAppState`, `bench_client::BenchClient`, on the same axis --
|
||||
//! `transcript_ui::build_tree` again, this time against the checked-in
|
||||
//! fixture (`app/bench-fixture/assets/transcript.jsonl`) instead of a real
|
||||
//! server, with a "Run benchmark" control that drives the same scroll loop
|
||||
//! and streaming phase the Compose `bench` build type's `BenchRun.kt`
|
||||
//! does. `bench` depends on `transcript-screen` (Cargo.toml) for
|
||||
//! `transcript-ui`/`client-core`/`event-model`, so both features end up
|
||||
//! enabled together -- `ActiveClient` below gives `bench` priority in that
|
||||
//! case, the same way `transcript-screen` already takes priority over the
|
||||
//! default `tabs-screen`.
|
||||
|
||||
use android_view::{
|
||||
Context, View,
|
||||
jni::{
|
||||
JNIEnv, JavaVM,
|
||||
sys::{JNI_VERSION_1_6, JavaVM as RawJavaVM, jint, jlong},
|
||||
},
|
||||
register_view_class,
|
||||
};
|
||||
#[cfg(not(feature = "transcript-screen"))]
|
||||
use iris::android::{AndroidAppState, AndroidRsc, AndroidUiState, HasAndroidUiState};
|
||||
#[cfg(not(feature = "transcript-screen"))]
|
||||
use iris::prelude::*;
|
||||
use log::LevelFilter;
|
||||
use std::ffi::c_void;
|
||||
|
||||
#[cfg(feature = "bench")]
|
||||
mod bench_client;
|
||||
#[cfg(feature = "bench")]
|
||||
mod bench_jni;
|
||||
#[cfg(all(feature = "transcript-screen", not(feature = "bench")))]
|
||||
mod transcript_client;
|
||||
|
||||
/// The app's `View` subclass, matching the Java side's package --
|
||||
/// `app/src/main/java/dev/iris/android/demo/IrisView.java`.
|
||||
const VIEW_CLASS: &str = "dev/iris/android/demo/IrisView";
|
||||
|
||||
#[cfg(not(feature = "transcript-screen"))]
|
||||
pub struct Client {
|
||||
ui_state: AndroidUiState,
|
||||
}
|
||||
|
||||
#[cfg(not(feature = "transcript-screen"))]
|
||||
impl HasAndroidUiState for Client {
|
||||
fn android_state(&self) -> &AndroidUiState {
|
||||
&self.ui_state
|
||||
}
|
||||
fn android_state_mut(&mut self) -> &mut AndroidUiState {
|
||||
&mut self.ui_state
|
||||
}
|
||||
}
|
||||
|
||||
#[cfg(not(feature = "transcript-screen"))]
|
||||
impl AndroidAppState for Client {
|
||||
fn new(mut ui_state: AndroidUiState, rsc: &mut AndroidRsc<Self>) -> Self {
|
||||
// `widgets.info` is the winit example's frame-debug readout, kept
|
||||
// current from `DefaultAppState::window_event` -- android-view has
|
||||
// no per-frame hook to drive the equivalent from here yet, so it
|
||||
// is left at its built "" text rather than wired to nothing.
|
||||
let _ = tabs_ui::build(rsc, &mut ui_state);
|
||||
Self { ui_state }
|
||||
}
|
||||
|
||||
fn back_pressed(&mut self, _rsc: &mut AndroidRsc<Self>, _render: &mut UiRenderState) -> bool {
|
||||
// Nothing in the tabs example has a back stack of its own to pop --
|
||||
// declining lets the activity finish, which is the same "no
|
||||
// handler" behaviour the default impl gives. Present as an
|
||||
// explicit override (rather than relying on the default) so a
|
||||
// reader checking "does the back gesture reach this app" finds an
|
||||
// answer here rather than nothing.
|
||||
false
|
||||
}
|
||||
}
|
||||
|
||||
#[cfg(not(feature = "transcript-screen"))]
|
||||
type ActiveClient = Client;
|
||||
#[cfg(all(feature = "transcript-screen", not(feature = "bench")))]
|
||||
type ActiveClient = transcript_client::TranscriptClient;
|
||||
#[cfg(feature = "bench")]
|
||||
type ActiveClient = bench_client::BenchClient;
|
||||
|
||||
extern "system" fn new_view_peer<'local>(
|
||||
env: JNIEnv<'local>,
|
||||
view: View<'local>,
|
||||
context: Context<'local>,
|
||||
) -> jlong {
|
||||
iris::android::new_peer::<ActiveClient>(env, view, context)
|
||||
}
|
||||
|
||||
/// # Safety
|
||||
/// Interacting with JNI at load time is always unsafe at some level --
|
||||
/// mirrors android-view's own demo, which carries the same comment.
|
||||
#[unsafe(no_mangle)]
|
||||
pub unsafe extern "system" fn JNI_OnLoad(vm: *mut RawJavaVM, _: *mut c_void) -> jint {
|
||||
android_logger::init_once(
|
||||
android_logger::Config::default()
|
||||
.with_max_level(LevelFilter::Debug)
|
||||
.with_tag("iris-android-app"),
|
||||
);
|
||||
let vm = unsafe { JavaVM::from_raw(vm) }.unwrap();
|
||||
let mut env = vm.get_env().unwrap();
|
||||
register_view_class(&mut env, VIEW_CLASS, new_view_peer);
|
||||
iris::android::register_native_methods(&mut env, VIEW_CLASS);
|
||||
JNI_VERSION_1_6
|
||||
}
|
||||
@@ -0,0 +1,392 @@
|
||||
//! RUST.md's I5 Android integration: `transcript-ui`'s screen filling the
|
||||
//! whole window on android-view, against a real `ai-server` through
|
||||
//! `client-core` -- the missing half `iris-android-app` (I2) only had for
|
||||
//! `tabs-ui` until now. Behind the `transcript-screen` Cargo feature so the
|
||||
//! plain build (`cargo ndk build`, no `--features`) stays exactly the tabs
|
||||
//! demo I2/I4 already measured against.
|
||||
//!
|
||||
//! **Deliberate simplification, recorded rather than left to be
|
||||
//! rediscovered (RUST.md's I5 box has the full account)**: there is no
|
||||
//! session list and no enrollment UI here. The server, port, token and
|
||||
//! pinned CA are baked in at build time (`build.rs`'s
|
||||
//! `AI_APP_TRANSCRIPT_HOST`/`_PORT`/`_TOKEN`/`AI_APP_CA`), and the first
|
||||
//! session `ApiClient::fetch_sessions` returns is opened automatically --
|
||||
//! there is nothing to tap to get there, which is what `transcript-bench.sh`
|
||||
//! and `ui-trace` need to land straight on the screen under test. A real
|
||||
//! app needs `desktop-app`'s `EnrolledServer`/QR-link flow or E3's
|
||||
//! Keystore-sealed `ServerConfig.kt`; building a second one of those was
|
||||
//! not this pass's job.
|
||||
//!
|
||||
//! **Reuses `iris/desktop-app`'s `app.rs` shape almost exactly** --
|
||||
//! `fold_event`/`group_tool_runs`/`fold_page`/`raw_seq` from
|
||||
//! `client_core::transcript_fold`, a `generation` counter guarding against
|
||||
//! a stale background response. What differs is only the redraw
|
||||
//! mechanism: android-view has no `winit::EventLoopProxy`, so this uses
|
||||
//! `iris::task::Tasks::redraw_handle` (new, added alongside this box) to
|
||||
//! request a frame after each `TaskCtx::update` instead of relying on
|
||||
//! `Tasks::spawn`'s single end-of-future redraw -- see that method's own
|
||||
//! doc for why.
|
||||
//!
|
||||
//! **Streaming no longer costs a full rebuild** (fixed after the P0 gate
|
||||
//! showed why it mattered -- 20 events/second means 20 rebuilds/second of
|
||||
//! a ~3,200-row transcript otherwise): `apply_event` calls
|
||||
//! `transcript_ui::TranscriptScreen::apply` with the item list before and
|
||||
//! after `fold_event`, which updates only the row(s) that actually
|
||||
//! changed (almost always just the one open assistant message) instead of
|
||||
//! refolding and rebuilding every row. `rebuild_transcript` still runs
|
||||
//! the whole widget tree once, for the opening page and for `apply`'s own
|
||||
//! rare regroup fallback.
|
||||
|
||||
use client_core::api::{ApiClient, UreqTransport};
|
||||
use client_core::event_stream::{StreamItem, follow_session_events};
|
||||
use client_core::transcript_fold::{TranscriptItem, fold_event, fold_page, group_tool_runs};
|
||||
use event_model::SeqEvent;
|
||||
use iris::android::{AndroidAppState, AndroidRsc, AndroidUiState, HasAndroidUiState};
|
||||
use iris::prelude::*;
|
||||
use std::sync::Arc;
|
||||
use std::sync::atomic::{AtomicU64, Ordering};
|
||||
|
||||
mod pinned {
|
||||
include!(concat!(env!("OUT_DIR"), "/pinned_config.rs"));
|
||||
}
|
||||
|
||||
pub struct TranscriptClient {
|
||||
ui_state: AndroidUiState,
|
||||
/// The screen's own content -- everything under the fixed
|
||||
/// [`frame_report_controls`] bar, which is built once (`new`, below)
|
||||
/// and never touched by `show_message`/`rebuild_transcript`'s own
|
||||
/// `set` calls the way `desktop-app`'s `transcript_ptr` isn't touched
|
||||
/// by rebuilding the session list beside it.
|
||||
content: WeakWidget<WidgetPtr>,
|
||||
screen: Option<transcript_ui::TranscriptScreen>,
|
||||
/// The folded transcript as of the last rebuild -- kept here (not
|
||||
/// re-derived) for the same reason `desktop-app`'s `Client::items`
|
||||
/// exists: a live `StreamEvent` only carries one new wire event, and
|
||||
/// `fold_event` needs everything folded so far to fold it in.
|
||||
items: Vec<TranscriptItem>,
|
||||
/// The session currently open -- `None` only before the first fetch
|
||||
/// resolves. Read back by `apply_event`'s rebuild, which has no session
|
||||
/// id of its own (a live `SeqEvent` doesn't carry one).
|
||||
session_id: Option<String>,
|
||||
/// Bumped every time a new session load starts; a background response
|
||||
/// checks it before touching state, so a slow reply for a session this
|
||||
/// screen has moved on from can't overwrite what replaced it. There is
|
||||
/// only ever one session here (no list to switch away to), but the
|
||||
/// guard still matters for the *first* fetch racing a `stop`/`start`.
|
||||
generation: Arc<AtomicU64>,
|
||||
}
|
||||
|
||||
impl HasAndroidUiState for TranscriptClient {
|
||||
fn android_state(&self) -> &AndroidUiState {
|
||||
&self.ui_state
|
||||
}
|
||||
fn android_state_mut(&mut self) -> &mut AndroidUiState {
|
||||
&mut self.ui_state
|
||||
}
|
||||
}
|
||||
|
||||
/// Builds one `UreqTransport` from the config `build.rs` baked in. Called
|
||||
/// twice per session load, same as `desktop-app`'s `build_transport`
|
||||
/// closure -- `ApiClient` and the live-stream follow each need their own,
|
||||
/// since `UreqTransport` holds its own `ureq::Agent`.
|
||||
fn build_transport() -> Result<UreqTransport, String> {
|
||||
let base_url = format!("https://{}:{}", pinned::HOST, pinned::PORT);
|
||||
UreqTransport::new(
|
||||
base_url,
|
||||
pinned::TOKEN.to_string(),
|
||||
pinned::CA_PEM.as_bytes(),
|
||||
)
|
||||
.map_err(|e| e.to_string())
|
||||
}
|
||||
|
||||
fn placeholder<Rsc: HasEvents>(rsc: &mut Rsc, message: &str) -> StrongWidget {
|
||||
wtext(message.to_string())
|
||||
.color(Color::WHITE)
|
||||
.wrap(true)
|
||||
.pad(16)
|
||||
.add_strong(rsc)
|
||||
.any()
|
||||
}
|
||||
|
||||
/// The two named controls RUST.md's I5 box ("Measurements taken" (b))
|
||||
/// drives by name over `ui-trace`, e.g. `ui-trace record --do "tap 'Frame
|
||||
/// report'"`. `dumpsys gfxinfo` cannot see this screen's own GPU-drawn
|
||||
/// frames at all -- this is the screen's own equivalent of the Compose
|
||||
/// app's "Copy render timings" control, logged rather than clipboarded
|
||||
/// (no clipboard wiring exists here) under this crate's own fixed
|
||||
/// `android_logger` tag (`iris-android-app`, `lib.rs`'s `JNI_OnLoad`),
|
||||
/// grep-able on the fixed string `"iris frame report"` the way
|
||||
/// `transcript-bench.sh` greps `"ai-app render report"`.
|
||||
fn frame_report_controls(rsc: &mut AndroidRsc<TranscriptClient>) -> WeakWidget {
|
||||
type Rsc = AndroidRsc<TranscriptClient>;
|
||||
let report_rect = rect(Color::rgb(50, 50, 60))
|
||||
.on(
|
||||
CursorSense::click(),
|
||||
|ctx: EventIdCtx<'_, Rsc, _, _>, _rsc: &mut Rsc| match ctx
|
||||
.state
|
||||
.android_state()
|
||||
.frame_report
|
||||
.report()
|
||||
{
|
||||
Some(stats) => log::info!("iris frame report: {stats}"),
|
||||
None => log::info!(
|
||||
"iris frame report: no frames recorded -- scroll first, then press this"
|
||||
),
|
||||
},
|
||||
)
|
||||
.label("Frame report");
|
||||
let report = (
|
||||
report_rect,
|
||||
wtext("Frame report").size(18).text_align(Align::CENTER),
|
||||
)
|
||||
.stack()
|
||||
.pad(8)
|
||||
.add(rsc);
|
||||
|
||||
let reset_rect = rect(Color::rgb(70, 40, 40))
|
||||
.on(
|
||||
CursorSense::click(),
|
||||
|ctx: EventIdCtx<'_, Rsc, _, _>, _rsc: &mut Rsc| {
|
||||
ctx.state.android_state_mut().frame_report.reset();
|
||||
log::info!("iris frame report: reset");
|
||||
},
|
||||
)
|
||||
.label("Reset frame report");
|
||||
let reset = (
|
||||
reset_rect,
|
||||
wtext("Reset").size(18).text_align(Align::CENTER),
|
||||
)
|
||||
.stack()
|
||||
.pad(8)
|
||||
.add(rsc);
|
||||
|
||||
(report, reset).span(Dir::RIGHT).height(56).add(rsc)
|
||||
}
|
||||
|
||||
impl AndroidAppState for TranscriptClient {
|
||||
fn new(mut ui_state: AndroidUiState, rsc: &mut AndroidRsc<Self>) -> Self {
|
||||
let content = WidgetPtr::new().add(rsc);
|
||||
let loading = placeholder(rsc, "Loading sessions...");
|
||||
content(rsc).set(loading);
|
||||
|
||||
let tree = (frame_report_controls(rsc), content.height(rest(1)))
|
||||
.span(Dir::DOWN)
|
||||
.add_strong(rsc)
|
||||
.any();
|
||||
ui_state.set_root(tree);
|
||||
|
||||
let mut client = Self {
|
||||
ui_state,
|
||||
content,
|
||||
screen: None,
|
||||
items: Vec::new(),
|
||||
session_id: None,
|
||||
generation: Arc::new(AtomicU64::new(0)),
|
||||
};
|
||||
client.spawn_fetch_sessions(rsc);
|
||||
client
|
||||
}
|
||||
|
||||
fn back_pressed(&mut self, _rsc: &mut AndroidRsc<Self>, _render: &mut UiRenderState) -> bool {
|
||||
// No screen stack of its own -- same "let the activity finish"
|
||||
// answer `iris-android-app`'s tabs `Client` already gives.
|
||||
false
|
||||
}
|
||||
}
|
||||
|
||||
impl TranscriptClient {
|
||||
fn show_message(&mut self, rsc: &mut AndroidRsc<Self>, message: &str) {
|
||||
let widget = placeholder(rsc, message);
|
||||
(self.content)(rsc).set(widget);
|
||||
self.screen = None;
|
||||
}
|
||||
|
||||
fn spawn_fetch_sessions(&mut self, rsc: &mut AndroidRsc<Self>) {
|
||||
let redraw = rsc.tasks.redraw_handle();
|
||||
let my_generation = self.generation.load(Ordering::SeqCst);
|
||||
let generation = self.generation.clone();
|
||||
rsc.spawn_task(async move |mut ctx| {
|
||||
let outcome = match build_transport() {
|
||||
Ok(transport) => ApiClient::new(transport)
|
||||
.fetch_sessions()
|
||||
.map_err(|e| e.to_string()),
|
||||
Err(e) => Err(format!("couldn't set up TLS: {e}")),
|
||||
};
|
||||
ctx.update(move |state: &mut TranscriptClient, rsc| {
|
||||
if generation.load(Ordering::SeqCst) != my_generation {
|
||||
return;
|
||||
}
|
||||
match outcome {
|
||||
Ok(sessions) => match sessions.into_iter().next() {
|
||||
Some(session) => state.select_session(rsc, session.id),
|
||||
None => state.show_message(rsc, "No sessions on the sandbox server."),
|
||||
},
|
||||
Err(message) => {
|
||||
state.show_message(rsc, &format!("Couldn't list sessions: {message}"))
|
||||
}
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
});
|
||||
}
|
||||
|
||||
/// Loads the opening page, then follows the live SSE stream for the
|
||||
/// rest of this session's life -- `desktop-app`'s `select_session`
|
||||
/// almost verbatim, with `Proxy::send_event` replaced by `ctx.update` +
|
||||
/// `redraw.request_redraw()` (see this module's doc).
|
||||
fn select_session(&mut self, rsc: &mut AndroidRsc<Self>, session_id: String) {
|
||||
let my_generation = self.generation.fetch_add(1, Ordering::SeqCst) + 1;
|
||||
self.items.clear();
|
||||
self.session_id = Some(session_id.clone());
|
||||
self.show_message(rsc, "Loading transcript...");
|
||||
|
||||
let redraw = rsc.tasks.redraw_handle();
|
||||
let live_generation = self.generation.clone();
|
||||
rsc.spawn_task(async move |mut ctx| {
|
||||
let transports =
|
||||
build_transport().and_then(|rest| build_transport().map(|stream| (rest, stream)));
|
||||
let (rest, stream_transport) = match transports {
|
||||
Ok(pair) => pair,
|
||||
Err(e) => {
|
||||
let message = format!("couldn't set up TLS: {e}");
|
||||
ctx.update(move |state: &mut TranscriptClient, rsc| {
|
||||
if live_generation.load(Ordering::SeqCst) == my_generation {
|
||||
state.show_message(rsc, &message);
|
||||
}
|
||||
});
|
||||
redraw.request_redraw();
|
||||
return;
|
||||
}
|
||||
};
|
||||
let api = ApiClient::new(rest);
|
||||
|
||||
// The most recent 200 events, coalesced -- the same page size
|
||||
// `desktop-app` uses; RUST.md's I3/history-paging work is what
|
||||
// a real scrollback would reuse (out of scope here, same as
|
||||
// E4).
|
||||
let page: Result<Vec<serde_json::Value>, String> = api
|
||||
.fetch_transcript_page(&session_id, None, 200, true)
|
||||
.map_err(|e| e.to_string());
|
||||
// The wire `seq` of the last line, not a folded item's `seq()`
|
||||
// -- see `client_core::transcript_fold::raw_seq`'s doc for why
|
||||
// resuming from the latter re-delivers deltas already folded
|
||||
// into an in-progress reply.
|
||||
let after = page
|
||||
.as_ref()
|
||||
.ok()
|
||||
.and_then(|values| values.last())
|
||||
.and_then(client_core::transcript_fold::raw_seq)
|
||||
.unwrap_or(0);
|
||||
let result = page.and_then(|values| fold_page(&values));
|
||||
|
||||
{
|
||||
let live_generation = live_generation.clone();
|
||||
ctx.update(move |state: &mut TranscriptClient, rsc| {
|
||||
if live_generation.load(Ordering::SeqCst) != my_generation {
|
||||
return;
|
||||
}
|
||||
match result {
|
||||
Ok(items) => {
|
||||
state.items = items;
|
||||
state.rebuild_transcript(rsc);
|
||||
}
|
||||
Err(message) => {
|
||||
state.show_message(rsc, &format!("Couldn't load transcript: {message}"))
|
||||
}
|
||||
}
|
||||
});
|
||||
}
|
||||
redraw.request_redraw();
|
||||
|
||||
if live_generation.load(Ordering::SeqCst) != my_generation {
|
||||
return;
|
||||
}
|
||||
// The outer closure here is an `FnMut` -- `follow_session_events`
|
||||
// calls it once per line -- so it captures `live_generation` by
|
||||
// move and re-clones it for each inner `ctx.update` closure
|
||||
// rather than moving a shared `stop`-style helper into itself:
|
||||
// a value moved out of an `FnMut`'s captures on one call leaves
|
||||
// nothing there for the next.
|
||||
let _ =
|
||||
follow_session_events(
|
||||
&stream_transport,
|
||||
&session_id,
|
||||
after,
|
||||
move |item| match item {
|
||||
StreamItem::Open | StreamItem::Reset => {
|
||||
live_generation.load(Ordering::SeqCst) == my_generation
|
||||
}
|
||||
StreamItem::Event { event, .. } => {
|
||||
if live_generation.load(Ordering::SeqCst) != my_generation {
|
||||
return false;
|
||||
}
|
||||
let live_generation = live_generation.clone();
|
||||
ctx.update(move |state: &mut TranscriptClient, rsc| {
|
||||
if live_generation.load(Ordering::SeqCst) != my_generation {
|
||||
return;
|
||||
}
|
||||
state.apply_event(rsc, &event);
|
||||
});
|
||||
redraw.request_redraw();
|
||||
true
|
||||
}
|
||||
},
|
||||
);
|
||||
});
|
||||
}
|
||||
|
||||
/// Rebuilds the whole widget tree from `self.items` -- same tradeoff as
|
||||
/// `desktop-app`'s `rebuild_transcript` (this module's doc comment).
|
||||
/// Reads `self.session_id` rather than taking one, since every caller
|
||||
/// (the opening page, and every live event) already has it set there.
|
||||
fn rebuild_transcript(&mut self, rsc: &mut AndroidRsc<Self>) {
|
||||
let in_progress = self
|
||||
.screen
|
||||
.as_ref()
|
||||
.map(|screen| screen.composer.field.edit(rsc).text.text().to_string())
|
||||
.filter(|t| !t.is_empty());
|
||||
|
||||
let rows = group_tool_runs(&self.items);
|
||||
let (screen, tree) = transcript_ui::build_tree(rsc, rows);
|
||||
|
||||
if let Some(text) = in_progress {
|
||||
screen.composer.field.edit(rsc).set(&text);
|
||||
}
|
||||
if let Some(session_id) = self.session_id.clone() {
|
||||
let field = screen.composer.field;
|
||||
rsc.register_event(field, Submit, move |ctx, rsc| {
|
||||
let text = field.edit(rsc).take();
|
||||
let text = text.trim().to_string();
|
||||
if !text.is_empty() {
|
||||
ctx.state.send_message(session_id.clone(), text);
|
||||
}
|
||||
});
|
||||
}
|
||||
|
||||
(self.content)(rsc).set(tree);
|
||||
self.screen = Some(screen);
|
||||
}
|
||||
|
||||
fn apply_event(&mut self, rsc: &mut AndroidRsc<Self>, event: &SeqEvent) {
|
||||
let old_items = self.items.clone();
|
||||
self.items = fold_event(&self.items, event);
|
||||
match &self.screen {
|
||||
// The common path: update only the row(s) that actually
|
||||
// changed instead of refolding and rebuilding all ~3,200 of
|
||||
// them per event (RUST.md's P0 streaming-phase fix).
|
||||
Some(screen) => screen.apply(rsc, &old_items, &self.items),
|
||||
// No screen yet (the opening page hasn't landed) -- build one
|
||||
// the ordinary way once it has.
|
||||
None => self.rebuild_transcript(rsc),
|
||||
}
|
||||
}
|
||||
|
||||
fn send_message(&mut self, session_id: String, text: String) {
|
||||
std::thread::spawn(move || {
|
||||
if let Ok(transport) = build_transport() {
|
||||
let api = ApiClient::new(transport);
|
||||
let _ = api.send_message(&session_id, &text, &[]);
|
||||
}
|
||||
});
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,425 @@
|
||||
//! On-demand benchmarks for iris's message-list scenario -- IRIS_TODO.md's
|
||||
//! "Benchmarks" item, and RUST.md's I3. Never run by `cargo test`; run
|
||||
//! explicitly with `cargo bench --bench message_list --release` or
|
||||
//! `./run-bench.sh`.
|
||||
//!
|
||||
//! **Why a plain `Instant`-timed binary, not criterion.** Every scenario
|
||||
//! here is really "how many `Widget::draw` calls and primitive rewrites did
|
||||
//! this frame cost," which `UiRenderState::take_counters` already answers
|
||||
//! exactly (see `iris/src/layout_tests.rs`, which this file's harness
|
||||
//! mirrors). A short loop that times itself and prints the counters
|
||||
//! alongside the wall time says everything criterion's warm-up/sampling/
|
||||
//! outlier-removal machinery would add on top, for scenarios that are
|
||||
//! fundamentally about a *count*, not a noisy microbenchmark distribution
|
||||
//! -- and it avoids a new dependency this crate does not otherwise need.
|
||||
//! Per the code rules, the plain option is also the one shorter to explain.
|
||||
//!
|
||||
//! **The list under test is `iris::widget::List` (RUST.md's I3), not a
|
||||
//! `Scroll` over a `Span` of pre-built rows.** Earlier versions of this
|
||||
//! file built their own giant `Span` and wrapped it in `Scroll`, which
|
||||
//! meant (a)/(b)/(c) below were measuring "move one big child," never the
|
||||
//! virtualised widget the app's transcript screen actually needs. `List`
|
||||
//! still needs every row's *widget* built up front by the caller (its
|
||||
//! module doc explains why: it only ever sees `&dyn Widget` through
|
||||
//! `Painter`, so it cannot construct a row lazily on its own) -- what
|
||||
//! virtualisation buys is that only the rows currently on screen are ever
|
||||
//! *drawn*, which is what the draw/rewrite/move counters below are
|
||||
//! measuring, not construction time.
|
||||
//!
|
||||
//! Scenarios (LAYOUT.md's O(1) move chain, list.rs's module doc, and
|
||||
//! IRIS_TODO.md's "Benchmarks" wording):
|
||||
//!
|
||||
//! - (a) first-frame cost of a message list of N wrapped-text rows, some
|
||||
//! with an image, for N = 100 / 1,000 / 10,000. With a virtualised list
|
||||
//! this is expected to stop scaling with N once N exceeds a screenful --
|
||||
//! the draw/rewrite counters below are the number that used to grow 10x
|
||||
//! per 10x N and should not any more.
|
||||
//! - (b) per-frame cost of scrolling that list -- must be O(1) moves, not
|
||||
//! re-layout.
|
||||
//! - (c) the input-box case: growing a fixed-height field at the bottom of
|
||||
//! the screen must move the message list above it, not re-lay its rows.
|
||||
//! Reports frame time *and* the draw/rewrite/move counters LAYOUT.md
|
||||
//! section 8 defines.
|
||||
//! - (d) insert-above-anchor: paging older history onto the front of an
|
||||
//! already-scrolled list. `List::push_front` is an O(1) index update
|
||||
//! (list.rs's module doc); this measures that none of the rows already
|
||||
//! on screen are touched by it.
|
||||
//! - (e) expand-a-row-holding-its-edge: growing one row's height with a
|
||||
//! tap recorded near one of its edges (list.rs's `note_tap`) must move
|
||||
//! only the rows on the far side of it, never redraw the ones already
|
||||
//! correctly placed.
|
||||
//!
|
||||
//! (f), many images with zero steady-state bind-group creation, needs a
|
||||
//! real `wgpu` device and lives in `iris/examples/bench_images.rs` instead,
|
||||
//! driven through `run-headless.sh` -- see that file's header.
|
||||
//!
|
||||
//! `UiRenderState`/`Widgets` touch no GPU or window (as `layout_tests.rs`
|
||||
//! notes), so everything here runs as an ordinary `--release` binary with
|
||||
//! no compositor. Numbers are recorded in RUST.md's I3 box, not here --
|
||||
//! this file is the rig, not the result.
|
||||
|
||||
use iris::prelude::*;
|
||||
use std::time::Instant;
|
||||
|
||||
/// The minimal `UiRsc` a benchmark needs -- identical in shape to
|
||||
/// `layout_tests.rs`'s `TestRsc`.
|
||||
struct BenchRsc {
|
||||
ui: UiData,
|
||||
}
|
||||
|
||||
impl UiRsc for BenchRsc {
|
||||
fn ui(&self) -> &UiData {
|
||||
&self.ui
|
||||
}
|
||||
fn ui_mut(&mut self) -> &mut UiData {
|
||||
&mut self.ui
|
||||
}
|
||||
}
|
||||
|
||||
/// Long enough to force real wrapping at a phone-plausible column width, and
|
||||
/// varied enough (no two rows byte-identical) that nothing can special-case
|
||||
/// on repeated content.
|
||||
const BODY: &str = "The quick brown fox jumps over the lazy dog. Iris lays \
|
||||
out wrapped text by shaping once per width and caching the result, so a \
|
||||
row that is offered the same width twice does not reshape. This sentence \
|
||||
exists only to give a row enough text to wrap across several lines at a \
|
||||
typical phone column width.";
|
||||
|
||||
/// One message row: a wrapped `Text`, and every `image_every`th row also an
|
||||
/// `Image` beneath it -- a small in-memory RGBA square rather than a file,
|
||||
/// so N=10,000 rows costs no disk I/O.
|
||||
fn build_row(rsc: &mut BenchRsc, i: usize, image_every: usize) -> StrongWidget {
|
||||
let mut text = Text::new(format!("Message {i}: {BODY}"));
|
||||
text.wrap = true;
|
||||
let text = rsc.ui.widgets.add_strong(text).any();
|
||||
|
||||
if image_every > 0 && i.is_multiple_of(image_every) {
|
||||
let img = image::DynamicImage::new_rgba8(64, 64);
|
||||
let image_widget = image::<BenchRsc>(img)(rsc);
|
||||
let image_widget = rsc.ui.widgets.add_strong(image_widget).any();
|
||||
let mut row = Span::empty(Dir::DOWN);
|
||||
row.push(text);
|
||||
row.push(image_widget);
|
||||
rsc.ui.widgets.add_strong(row).any()
|
||||
} else {
|
||||
text
|
||||
}
|
||||
}
|
||||
|
||||
/// A virtualised `List` of `n` message rows, one in `image_every` of them
|
||||
/// carrying an image (0 disables images entirely). Returns the list widget
|
||||
/// (weak, so the caller can drive it) and the erased root to render.
|
||||
fn build_message_list(
|
||||
rsc: &mut BenchRsc,
|
||||
n: usize,
|
||||
image_every: usize,
|
||||
) -> (WeakWidget<List>, StrongWidget) {
|
||||
let mut list = List::new(Axis::Y);
|
||||
for i in 0..n {
|
||||
let row = build_row(rsc, i, image_every);
|
||||
list.push_back(ListRow::new(i as u64, row));
|
||||
}
|
||||
let list = rsc.ui.widgets.add_strong(list);
|
||||
(list.weak(), list.any())
|
||||
}
|
||||
|
||||
fn report(label: &str, elapsed: std::time::Duration, draws: u64, rewrites: u64, moves: u64) {
|
||||
println!(
|
||||
"{label}: {:.2}ms draws={draws} rewrites={rewrites} moves={moves}",
|
||||
elapsed.as_secs_f64() * 1000.0
|
||||
);
|
||||
}
|
||||
|
||||
/// (a) First-frame cost of a message list of N rows.
|
||||
fn bench_first_frame(n: usize) {
|
||||
let mut rsc = BenchRsc {
|
||||
ui: UiData::default(),
|
||||
};
|
||||
let (_list, root) = build_message_list(&mut rsc, n, 20);
|
||||
let mut render = UiRenderState::new();
|
||||
render.resize((1080.0, 2000.0));
|
||||
|
||||
let start = Instant::now();
|
||||
render.update(&root, &mut rsc);
|
||||
let elapsed = start.elapsed();
|
||||
let (draws, rewrites, moves) = render.take_counters();
|
||||
report(
|
||||
&format!("(a) first frame, N={n}"),
|
||||
elapsed,
|
||||
draws,
|
||||
rewrites,
|
||||
moves,
|
||||
);
|
||||
}
|
||||
|
||||
/// (b) Per-frame cost of scrolling an already-laid-out list of N rows.
|
||||
/// Warms up (one no-op tick, matching `Scroll`'s own need for it before an
|
||||
/// ordinary Rust `layout_tests.rs` scrolling test becomes a same-size move
|
||||
/// rather than a resize), then times a run of individual scroll ticks.
|
||||
fn bench_scroll(n: usize, ticks: usize) {
|
||||
let mut rsc = BenchRsc {
|
||||
ui: UiData::default(),
|
||||
};
|
||||
let (list, root) = build_message_list(&mut rsc, n, 20);
|
||||
let mut render = UiRenderState::new();
|
||||
render.resize((1080.0, 2000.0));
|
||||
render.update(&root, &mut rsc);
|
||||
rsc.ui.widgets.get_mut(&list).unwrap().scroll(0.0);
|
||||
render.update(&root, &mut rsc);
|
||||
render.take_counters();
|
||||
|
||||
let mut total = std::time::Duration::ZERO;
|
||||
let mut total_draws = 0u64;
|
||||
let mut total_rewrites = 0u64;
|
||||
let mut total_moves = 0u64;
|
||||
for _ in 0..ticks {
|
||||
rsc.ui.widgets.get_mut(&list).unwrap().scroll(-8.0);
|
||||
let start = Instant::now();
|
||||
render.update(&root, &mut rsc);
|
||||
total += start.elapsed();
|
||||
let (draws, rewrites, moves) = render.take_counters();
|
||||
total_draws += draws;
|
||||
total_rewrites += rewrites;
|
||||
total_moves += moves;
|
||||
}
|
||||
report(
|
||||
&format!("(b) scroll, N={n}, {ticks} ticks (totals; expect draws/moves independent of N)"),
|
||||
total,
|
||||
total_draws,
|
||||
total_rewrites,
|
||||
total_moves,
|
||||
);
|
||||
println!(
|
||||
" per-tick average: {:.4}ms",
|
||||
total.as_secs_f64() * 1000.0 / ticks as f64
|
||||
);
|
||||
}
|
||||
|
||||
/// (c) The input-box case: a fixed-height field at the bottom of the screen
|
||||
/// growing by a line at a time, with a message list of N rows filling the
|
||||
/// rest of the screen above it. Growing the input shrinks the *offered*
|
||||
/// height of the list container (a single widget, from the outer `Span`'s
|
||||
/// point of view) without changing the width it offers its content -- so
|
||||
/// the rows underneath, which only care about width, must not redraw; the
|
||||
/// list's own re-registration of where its content sits is the one O(1)
|
||||
/// move this is checking for.
|
||||
fn bench_input_grows(n: usize, lines: usize) {
|
||||
let mut rsc = BenchRsc {
|
||||
ui: UiData::default(),
|
||||
};
|
||||
let (list, list_root) = build_message_list(&mut rsc, n, 20);
|
||||
let list_area = rsc.ui.widgets.add_strong(Sized {
|
||||
inner: list_root,
|
||||
x: None,
|
||||
y: Some(rest(1.0)),
|
||||
});
|
||||
|
||||
let line_height = 24.0;
|
||||
let input_rect = rsc.ui.widgets.add_strong(Rect::new(UiColor::WHITE));
|
||||
let input_area = rsc.ui.widgets.add_strong(Sized {
|
||||
inner: input_rect.any(),
|
||||
x: None,
|
||||
y: Some(abs(line_height)),
|
||||
});
|
||||
|
||||
let input_area_weak = input_area.weak();
|
||||
let mut root_span = Span::empty(Dir::DOWN);
|
||||
root_span.push(list_area.any());
|
||||
root_span.push(input_area.any());
|
||||
let root = rsc.ui.widgets.add_strong(root_span).any();
|
||||
|
||||
let mut render = UiRenderState::new();
|
||||
render.resize((1080.0, 2000.0));
|
||||
render.update(&root, &mut rsc);
|
||||
rsc.ui.widgets.get_mut(&list).unwrap().scroll(0.0);
|
||||
render.update(&root, &mut rsc);
|
||||
render.take_counters();
|
||||
|
||||
let mut total = std::time::Duration::ZERO;
|
||||
let mut total_draws = 0u64;
|
||||
let mut total_rewrites = 0u64;
|
||||
let mut total_moves = 0u64;
|
||||
for line in 1..=lines {
|
||||
rsc.ui.widgets.get_mut(&input_area_weak).unwrap().y =
|
||||
Some(abs(line_height * (line + 1) as f32));
|
||||
let start = Instant::now();
|
||||
render.update(&root, &mut rsc);
|
||||
total += start.elapsed();
|
||||
let (draws, rewrites, moves) = render.take_counters();
|
||||
total_draws += draws;
|
||||
total_rewrites += rewrites;
|
||||
total_moves += moves;
|
||||
}
|
||||
report(
|
||||
&format!(
|
||||
"(c) input grows by {lines} lines above N={n} rows (totals; \
|
||||
draws/rewrites must not scale with N)"
|
||||
),
|
||||
total,
|
||||
total_draws,
|
||||
total_rewrites,
|
||||
total_moves,
|
||||
);
|
||||
println!(
|
||||
" per-line average: {:.4}ms",
|
||||
total.as_secs_f64() * 1000.0 / lines as f64
|
||||
);
|
||||
}
|
||||
|
||||
/// (d) Insert-above-anchor: the list is scrolled to its very first loaded
|
||||
/// row (`jump_to_start`, an O(1) re-anchor) rather than left at the default
|
||||
/// bottom, so a row prepended above it is genuinely "inserted above the
|
||||
/// anchor" rather than merely far off-screen at the far end. Each
|
||||
/// `push_front` is O(1) (list.rs's module doc: the anchor's slot is an
|
||||
/// index, bumped by one) and, since the prepended rows never enter the
|
||||
/// viewport, none of them should cost a draw either.
|
||||
fn bench_insert_above_anchor(n: usize, inserts: usize) {
|
||||
let mut rsc = BenchRsc {
|
||||
ui: UiData::default(),
|
||||
};
|
||||
let (list, root) = build_message_list(&mut rsc, n, 20);
|
||||
let mut render = UiRenderState::new();
|
||||
render.resize((1080.0, 2000.0));
|
||||
render.update(&root, &mut rsc);
|
||||
rsc.ui.widgets.get_mut(&list).unwrap().jump_to_start();
|
||||
render.update(&root, &mut rsc);
|
||||
render.take_counters();
|
||||
|
||||
let mut total = std::time::Duration::ZERO;
|
||||
let mut total_draws = 0u64;
|
||||
let mut total_rewrites = 0u64;
|
||||
let mut total_moves = 0u64;
|
||||
for i in 0..inserts {
|
||||
// Older-history rows: distinct keys below every existing one, so a
|
||||
// real caller's paging code (prepending an older page) is exactly
|
||||
// what this loop does.
|
||||
let row = build_row(&mut rsc, usize::MAX - i, 20);
|
||||
rsc.ui
|
||||
.widgets
|
||||
.get_mut(&list)
|
||||
.unwrap()
|
||||
.push_front(ListRow::new(i as u64, row));
|
||||
let start = Instant::now();
|
||||
render.update(&root, &mut rsc);
|
||||
total += start.elapsed();
|
||||
let (draws, rewrites, moves) = render.take_counters();
|
||||
total_draws += draws;
|
||||
total_rewrites += rewrites;
|
||||
total_moves += moves;
|
||||
}
|
||||
report(
|
||||
&format!(
|
||||
"(d) insert-above-anchor, N={n}, {inserts} pushes (totals; \
|
||||
must not scale with N)"
|
||||
),
|
||||
total,
|
||||
total_draws,
|
||||
total_rewrites,
|
||||
total_moves,
|
||||
);
|
||||
println!(
|
||||
" per-push average: {:.4}ms",
|
||||
total.as_secs_f64() * 1000.0 / inserts as f64
|
||||
);
|
||||
}
|
||||
|
||||
/// (e) Expand-a-row-holding-its-edge: one row (fixed-height, so its size is
|
||||
/// directly controllable) is grown a little at a time, each time preceded
|
||||
/// by `note_tap` aimed at its own top edge -- the exact mechanism list.rs's
|
||||
/// module doc describes and its unit tests check for correctness. This
|
||||
/// measures its *cost*: only the rows on the far side of the grown one
|
||||
/// (below it, since the top edge is held) should ever move, and nothing
|
||||
/// should be redrawn purely because the list overall got taller.
|
||||
fn bench_expand_holds_edge(n: usize, growths: usize) {
|
||||
let mut rsc = BenchRsc {
|
||||
ui: UiData::default(),
|
||||
};
|
||||
let mut list = List::new(Axis::Y);
|
||||
// Near the end (not the very last row) so it is already on screen
|
||||
// under the list's default bottom-anchored placement, for every N --
|
||||
// no scrolling needed to bring it into view before measuring.
|
||||
let growable_index = n.saturating_sub(3);
|
||||
let mut growable = None;
|
||||
for i in 0..n {
|
||||
if i == growable_index {
|
||||
let rect = rsc.ui.widgets.add_strong(Rect::new(UiColor::WHITE));
|
||||
let sized = rsc.ui.widgets.add_strong(Sized {
|
||||
inner: rect.any(),
|
||||
x: None,
|
||||
y: Some(abs(40.0)),
|
||||
});
|
||||
growable = Some(sized.weak());
|
||||
list.push_back(ListRow::new(i as u64, sized.any()));
|
||||
} else {
|
||||
let row = build_row(&mut rsc, i, 20);
|
||||
list.push_back(ListRow::new(i as u64, row));
|
||||
}
|
||||
}
|
||||
let list = rsc.ui.widgets.add_strong(list);
|
||||
let list_weak = list.weak();
|
||||
let root = list.any();
|
||||
let growable = growable.unwrap();
|
||||
|
||||
let mut render = UiRenderState::new();
|
||||
render.resize((1080.0, 2000.0));
|
||||
render.update(&root, &mut rsc);
|
||||
render.take_counters();
|
||||
|
||||
let mut total = std::time::Duration::ZERO;
|
||||
let mut total_draws = 0u64;
|
||||
let mut total_rewrites = 0u64;
|
||||
let mut total_moves = 0u64;
|
||||
let mut height = 40.0f32;
|
||||
let key = growable_index as u64;
|
||||
for _ in 0..growths {
|
||||
height += 10.0;
|
||||
if let Some((top, _bottom)) = rsc.ui.widgets.get(&list_weak).unwrap().extent(key) {
|
||||
rsc.ui
|
||||
.widgets
|
||||
.get_mut(&list_weak)
|
||||
.unwrap()
|
||||
.note_tap(top + 1.0);
|
||||
}
|
||||
rsc.ui.widgets.get_mut(&growable).unwrap().y = Some(abs(height));
|
||||
let start = Instant::now();
|
||||
render.update(&root, &mut rsc);
|
||||
total += start.elapsed();
|
||||
let (draws, rewrites, moves) = render.take_counters();
|
||||
total_draws += draws;
|
||||
total_rewrites += rewrites;
|
||||
total_moves += moves;
|
||||
}
|
||||
report(
|
||||
&format!(
|
||||
"(e) expand-hold, N={n}, {growths} growths (totals; \
|
||||
must not scale with N)"
|
||||
),
|
||||
total,
|
||||
total_draws,
|
||||
total_rewrites,
|
||||
total_moves,
|
||||
);
|
||||
println!(
|
||||
" per-growth average: {:.4}ms",
|
||||
total.as_secs_f64() * 1000.0 / growths as f64
|
||||
);
|
||||
}
|
||||
|
||||
fn main() {
|
||||
println!("iris message-list benchmark -- release build, this machine's CPU");
|
||||
for &n in &[100usize, 1_000, 10_000] {
|
||||
bench_first_frame(n);
|
||||
}
|
||||
for &n in &[100usize, 1_000, 10_000] {
|
||||
bench_scroll(n, 200);
|
||||
}
|
||||
for &n in &[100usize, 1_000, 10_000] {
|
||||
bench_input_grows(n, 40);
|
||||
}
|
||||
for &n in &[100usize, 1_000, 10_000] {
|
||||
bench_insert_above_anchor(n, 200);
|
||||
}
|
||||
for &n in &[100usize, 1_000, 10_000] {
|
||||
bench_expand_holds_edge(n, 40);
|
||||
}
|
||||
}
|
||||
@@ -5,8 +5,15 @@ edition.workspace = true
|
||||
|
||||
[dependencies]
|
||||
wgpu = { workspace = true }
|
||||
# Only for `UiRenderNode::new`'s `push_error_scope`/`pop_error_scope` pair
|
||||
# (renderer-creation error reporting, RUST.md's P0 phone-crash box) --
|
||||
# `block_on` turns that one async pop into the same synchronous call shape
|
||||
# `device_limits()`'s two callers already use for `request_adapter`/
|
||||
# `request_device`, rather than making this crate's one entry point async.
|
||||
pollster = { workspace = true }
|
||||
bytemuck ={ workspace = true }
|
||||
image = { workspace = true }
|
||||
parley = { workspace = true }
|
||||
swash = { workspace = true }
|
||||
fxhash = { workspace = true }
|
||||
accesskit = { workspace = true }
|
||||
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