Iris, on the two findings from the incremental-text investigation: "let's switch to new lines for the test, and also let's keep the single line around for stress + could be something to try to optimize later." The streamed tail now takes a blank line every 4-12 deltas, so it is 53 markdown blocks with a longest of 502 characters instead of one block of 14,888 -- against a measured p50 of 147 and a largest-ever 1,580 over 7,706 blocks of real assistant messages. Layer 1's streaming frame went from p50 3.86ms / p90 8.65ms / worst 10.95ms to p50 2.20 / p90 5.90 / worst 8.78. The run-on message is kept as the first two backlog events, 14,824 characters in one block, just under text_cap's 16 KiB so it draws in full. The *streaming* pathology stays in frame_profile.rs rather than the fixture: it needs a growing block, and iterating on it there costs a second instead of a two-minute phone run. Adding it is purely additive -- the random state is saved and restored around those two events, so every other backlog event is byte-identical. That is not tidiness: the first attempt shifted the backlog and broke `a_long_press_and_drag_selects_text`, which replays a real recording at (300, 1000) and needs the content it was recorded against to still be there. BACKLOG_COUNT is 3202 now, in generate.py, fixture.rs and BenchFixture.kt, which split the file by line index. And the answer to Iris's question, which the code already had: the newest message does *not* cap. `build_row`'s `cap` is false for the live tail because a row that grew while capped would appear to stop growing, and a reply growing past the cap is never caught either since it grows through apply_delta. So a streamed block's shaping cost has no ceiling -- ~29ms per delta at 50k characters, ~58ms at 100k. Recorded but not chased: the emulator's `stream: build p50` did not move (10.4 -> 10.5ms) while layer 1's frame nearly halved, so most of a streaming frame on a GPU path is the whole-arena primitive re-upload layer 1 never performs -- 11,568 primitives rewritten per delta, with the fling phase as the control at 0.4ms for the same primitives moved through move_offsets. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
3.5 KiB
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-- 3,603 events. The first 3,202 (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 periodicusageDelta/compactedevents. 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."The streamed reply has a blank line every few deltas (2026-09-09), so the markdown block a delta lands in stays the size a real reply's blocks are -- 53 blocks, longest 502 characters, against a measured p50 of 147 and a largest-ever 1,580 over 7,706 blocks of real assistant messages. It used to be one run-on 14,888-character block, and since a row re-shapes the block a delta lands in, every delta re-shaped all of it: quadratic in the reply's length, and 9.5ms of frame time on a phone spent on a shape that does not occur. docs/RUST.md's "Incremental text" has the measurements.
The run-on message is kept, as the first two events of the backlog: 14,824 characters in a single block, just under
text_cap's 16 KiBMESSAGE_BYTESso it draws in full rather than behind a "Show all". It is deliberately not streamed -- the repeated-reshape pathology needs a growing block, and that lives inapp-rust/tests/frame_profile.rswhere it can be iterated on in a second rather than in a two-minute phone run. It is emitted with the random state saved and restored around it, so adding it left every other backlog event byte-identical; that is what keepsphone_screen.rs's recorded gestures landing on the content they were recorded against. -
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.
BACKLOG_COUNT lives in three places and moves in all of them or none: here, app-rust/src/ui/ fixture.rs and BenchFixture.kt. The split is by line index, so a stale copy makes that app open
a different half of the file.
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.