# Iris extraction handoff Operational handoff for pulling Iris out of ai-app into a standalone framework. Not a decisions log; delete it when the extraction is done. ## Where things stand Canonical `main` is **`ca2b4b2`** (#17, the headless rig). Sixteen slices are in; #16's size work and #17's rig both merged on 2026-09-14. **#18 `split/18-position-chain`** is open, worktree `/home/bob/repos/iris-pr18`, head `4178dfb`, eleven commits. LAYOUT.md §2's O(1) subtree movement, the `Remap` retirement, and then the three changes the owner chose on 2026-09-14: the slot carries a box, slots are opt-in, and a widget's region is held in the coordinates of the slot it draws in. - **A slot holds a box, not a translation** (`1f9dc48`), given in the coordinates of the slot it names, and `prelude.wgsl` composes the chain with `within` instead of adding a delta. A translation is the special case where the box has its parent's relative extent. Measured against the translate slot on the same binary: +0.5-0.8% at depth 1-4, +9.6% at 8, +32.2% at 64. Free where opt-in slots put the chain. The identity is `UiRegion::FULL`, not zero -- a zeroed entry collapses its subtree to a point. - **`Painter::place` is how a container asks for a slot** (`d989691`): it draws a child it decides the box of and may decide again. `Span`, `Aligned` and `Scroll` use it; everything else shares its nearest ancestor's slot, which `tests/layout.rs` pins at one deep with four widgets in between. Placing a child again is one entry to write, moved or resized alike. - **Nothing is inverted any more.** `UiRegion::stretch`, `stretchable` and `UiScalar::stretch` are gone, with the case they could not express: a 40-tall row now stretches on its other axis, which `stretchable` refused. - **`redraws_under` is the CPU walk that remains**, and it is a question rather than a marking: before keeping a drawing, ask whether anything under it would have to be drawn again for the new length, and give up the reuse if so. Marking instead does not terminate -- the mark escalates to the descendant's size reader, which re-places the child, which marks it again. A part of a box with no relative extent holds its contents as offsets, and composing into it leaves none either, so the walk stops where a length did not change: an 80-wide child of a widened row is never asked. - **`Span`, `Pad`, `Stack`, `Offset`, `Aligned`, `SetSize` and `LayerOffset` say `Scale`.** Each places in fractions and offsets of its own box and none reads its pixel length. `Scroll` and `MaxSize` do read pixels and stay `Redraw`. Measured as not the cause of the divergence below: taking every one of these claims back out leaves the failing set identical. - **`OnResize::Scale` keeps its name.** The owner rejected `Stretch` on 2026-09-14: stretch has an opposite and scale does not, and the answer is per axis so the axis is already established where it is read. **The divergence the random trees found, and what it was.** A warm tree did not always land where a cold build does -- 30 of 90 cases, against 7 on `db1751f`. Two causes, both fixed in `b0f9f04`, and both about deciding whether a drawing is still valid: - **A region is a fraction of a slot's box, so an unchanged region is not an unchanged box.** `try_reuse` compared regions, and a child drawn at `UiRegion::FULL` of a slot whose box had just halved compared equal to itself and was reused without being descended into, leaving a wrapping text shaped for a width it no longer had. `ActiveData::px` now holds the pixel size of the box the widget drew against and the comparison is against that -- the question that was being asked all along, and right through a slot change and an output resize alike. - **A size the parent learnt by drawing the child is an answer for that box only.** The walk skipped a child whose own box was a fixed width, correctly -- but that width was what the child reported when the span drew it in the span's box, and the span's box had changed. A child whose size the widget read is now redrawn unless it declares an exact `size_hint` for the changed axis, which is the one case the parent did not draw it to find out. 90 of 90 now agree, and the ignored sweep agrees over 300 checks on 100 seeds. The cost of the second one: a size-reading container gives up its reuse when its box changes length, which is every span, so `OnResize::Scale` earns its keep on moves and on subtrees whose sizes nobody read rather than on every stretch. `replace_cost` still measures the case the chain was built for. **Render verification, done last as the owner asked.** `view`, `minimal` and `text` are byte-identical to `upstream/main` at 1920x1200. **`tabs` is not**: 1,283 pixels of 2.3M (0.06%), two one-pixel-wide panel edges shifted by a pixel, at x=1056 and x=1337. Composing a position through the chain on the GPU associates the arithmetic differently from collapsing it on the CPU, so a value that used to land exactly on an integer now falls the other side of the shader's `floor`. The CPU and the GPU still agree with each other -- both walk the chain bottom-up -- so hit testing matches what is drawn; what changed is only the comparison against the old code. Matching it exactly would mean composing root-down in the shader, which needs the chain collected into an array first. **Worth the owner's call before merging**, since byte-identical against `upstream/main` has been the bar for every slice so far. A live resize does land where a cold start does, byte for byte, on `tabs` and `text` -- the check that caught both of #16's defects. `run-headless.sh --resize WxH@Hz` is that check now. Run one at a time: the rig reuses a single compositor and a single output, so two at once resize each other's window and screenshot the wrong thing. **Rigs added.** `iris::random` grows a seeded tree -- spans in every direction holding two to four children, stacks, padding with each of its four sides its own number, rects with varying opacity, text both wrapping and overflowing, a declared size over half of it, stopping at a depth. `examples/random.rs` draws one (`IRIS_SEED`, `IRIS_DEPTH`), and `tests/generated.rs` grows each seed twice -- once and then changed, once with the change built in -- and compares every widget's box. Eight scenarios: a size change, a resize, both, and five ways of changing what a span holds (every other child out, all but the first out, three on at once, the first out and three on, one out of the middle and one on the end). The ignored sweep is 100 seeds across all eight, 800 comparisons. Two things it needs that are easy to get wrong. Three spare leaves are grown beside every span whether they end up in it or not, and detached children are held until the comparison is over: a tree that makes fewer widgets, or frees one whose id is then handed to the next, stops lining up index for index and every comparison after the first difference is against the wrong widget. And each shuffle asserts the tree actually changed before comparing, so a case that quietly did nothing fails rather than passes. ### The plan after #18, agreed with the owner on 2026-09-14 Three changes, done together as one slice on top of #18, because each decides the shape of the others. - **Slots are opt-in, created by the container that re-places children.** A draw call asks for one; a widget that did not asks nothing and composes into its nearest ancestor's slot. #18 gives every widget a slot, which puts a primitive's walk at full tree depth for no benefit, since almost every slot is zero. `Span`, `Scroll` and `Aligned` re-place children after drawing them and are the ones that ask. That keeps the chain 2-4 deep, which `chain_cost` measured as free. - **A stretch is a rewalk from the widget whose box changed, not a flat pass.** #18's `stretch` takes the top widget's old and new window boxes and rewrites every descendant against that one pair, which works only while a composite fraction of the top box is recoverable from a window rel -- and a fixed-length box destroys that for everything beneath it, whatever is stored. Instead: keep the parent-relative region -- the argument `widget_within`, `primitive_within` and `set_mask` already receive -- on each widget, primitive and mask, and recompose it against the new box. For each child, compute its new window box from its local; the same length on both axes is one slot write where it has a slot and a recomposition where it does not, and a changed length asks that child's `on_resize` and recurses or redraws. Nothing is inverted, so `stretchable`, `UiScalar::stretch`'s division and its debug assertion all go. It also fixes two things #18 gets away with only because nothing but leaves says `Scale`: `try_reuse` asks `on_resize` of the top widget alone, and `stretch` never rewrites `Mask::region`. - **Containers say `Scale`.** `Span` on both axes: it hands every child `UiSpan::FULL` on the orthogonal axis, and its aligned-axis placement is written in fractions and offsets of its own box, so the children's local regions do not change when the box does. A child's *length* can, if one without a hint reports differently after a redraw, and that reaches the span through `size_deps` as it does today. The general rule: a widget is `Scale` on an axis unless its draw reads the pixel length of its box on that axis, which is text. The default stays `Redraw`. **Open, and the owner's to decide: a slot that carries a box instead of a translation.** Everything under a slot would store its region relative to that box, and the shader would compose the chain with `within` instead of adding deltas. A move and a stretch of a `Scale` subtree are then both one slot write: no rewalk over primitives, no stored locals, and `Translate` comes free, since a glyph at an abs offset from its row's start stays there when the row grows. The CPU work on a resize becomes asking `on_resize` down the widgets and redrawing the ones that say so -- one ask for a transcript row against a few hundred glyph rewrites. It replaces #18's chain rather than extending it, and it contradicts LAYOUT.md §2's line that slots carry translation only -- a line an agent wrote into the design on 2026-09-04, not something the owner asked for. Her own statement of the requirement was "if it needs to be moved then that can be done after the fact efficiently, or resized just done after as well". **Measured, 2026-09-14.** `MoveOffset` widened from a `Vec2` to a `UiRegion` (36 bytes) and `resolve_move` composing with `within` instead of adding deltas, against the same binary's translate slots: depth 1 78.5 us against 78.0, depth 2 78.7 against 78.3, depth 4 79.6 against 79.0, then depth 8 89.8 against 81.9, depth 16 128.6 against 111.3, depth 64 331.2 against 250.6. So a box slot is free at the 2-4 depth opt-in slots produce (+0.5-0.8%) and costs 10-30% past depth 8, where the chain is already expensive. All 42 tests pass against the composing shader and `tabs` at 1920x1200 is byte-identical, because composing through a translation box is the same map as adding its delta. The experiment is `stash@{0}` in `/home/bob/repos/iris-pr18`. The slot has to carry the whole box rather than a scale and an offset: a pixel-space affine map scales everything under it, including a child that must keep its pixel length, and the `rel`/`abs` pair is exactly what distinguishes the two. What a box slot does not buy is a shorter CPU walk. Asking each widget whether its drawing depends on the length that changed is the same walk either way; what the box removes is the region rewrite and the upload at the widgets that answer `Scale`, and the inversion at the ones that do not. What is settled either way: recalculating rather than repositioning is in, as the `Remap` retirement above. It costs the per-axis carry: a box that changed length on one axis and not the other is redrawn rather than remapped. Six of `tabs`'s fourteen relocations and five of `text`'s sixteen, all single- primitive leaves, and one extra redraw per frame on `replace_cost` -- 354,310,889 instructions against 354,272,387, noise. The rewalk restores that carry, and generalises it to a subtree. Measured, so the next attempt is compared rather than argued: | rig | what it says | | --- | --- | | `tests/chain_cost.rs` | GPU pass time by chain depth at 200k instances: free to depth 8 (+5%), then ~3 us per level -- +42.6% at 16, +221% at 64. Each step is a storage load addressed by the previous one, so it is the chaining that costs, not the arithmetic at a level; a slot carrying a whole region should measure the same, but has not been. | | `tests/replace_cost.rs` | Instructions per frame re-placing 200 rows: 1.98M writing each row's slot, 2.38M rewriting its regions, 7.13M redrawing it. A load for `perf`, not a check. Five primitives per row; the regime that decides whether the chain is worth it is a transcript row of a few hundred glyphs, so re-run it with 200 characters of text per row before concluding. | | `tests/draw_cost.rs` | Pre-existing: what recording a frame costs on the CPU by layer count. | Irrelevant at an example's couple of hundred primitives; a transcript's glyphs are tens of thousands, which is the regime `chain_cost` measures. Check for a review before starting anything, and read the newest `submitted_at` rather than the first result: ```sh TOKEN=$(cat ~/.config/gitea/token) N=18 curl -s -H "Authorization: token $TOKEN" \ https://git.arirex.me/api/v1/repos/iris/iris/pulls/$N/reviews curl -s -H "Authorization: token $TOKEN" \ https://git.arirex.me/api/v1/repos/iris/iris/pulls/$N/reviews//comments curl -s -H "Authorization: token $TOKEN" \ https://git.arirex.me/api/v1/repos/iris/iris/issues/$N/comments ``` My replies are ordinary issue comments on the same PR and say what each change was for. `/home/bob/repos/ai-app-2` is on `rustify`, worktree clean. ## How the work is sequenced **Most fundamental first**, from the owner on 2026-09-13: *"please do more fundamental changes first, such as library updates and core framework changes, so that code only has to be written once"*, and *"should probably start adding tests early on rather than later, so you don't have to make separate test scripts and stuff. This might involve making the harness eventually, depends on what needs tested."* So slices are ordered by how much depends on them, not by what is nearest ready, and a slice arrives with tests rather than with a script in `/tmp`. **Agree a design before sending another variation of it.** The owner stopped the fourth round of #11 with *"we should probably agree on the design here rather than you keep submitting variations that I review"*. When a review comes back about the shape of something rather than a defect in it, put the options and a recommendation in front of her and implement what she picks. **Nothing is submitted without a separate review pass** — the installed `pre-submit-review` skill: build clean, review the code, review the comments on their own once the code has settled, then verify the claim by running it. The fixes a review produces are themselves unreviewed code, so the passes repeat until a round finds nothing. It has earned its place repeatedly: four defects on #11 that format, clippy, tests and five headless renders had all passed, and on #12 a regression introduced by the review's own first draft. `audit.sh` in the skill directory prints every comment line a branch adds against a base ref; the owner's standing complaint is verbose agent comments, and the default verdict is delete. **Machine-specific notes do not belong in the repository** — they live in `~/.claude/MACHINE.md` or a `this-machine-*` skill. Other standing instructions from the owner: - Pull Iris out even if the Rust application switchover is not accepted. No app, session, transcript, setup or server concepts in Iris; the dependency runs one way from `app/` to Iris. - **Small, coherent PRs.** The original extraction PR was too large to review. A slice may be redone rather than transplanted, and need not remove every old feature. Non-conflicting pull requests may be open at once — disjoint path sets, each branched from current `upstream/main` rather than stacked. The owner reviews small ones as they arrive and only avoids having two *large* ones in flight, which is one more reason to keep a slice small. - **Order by dependency, largest reach first.** On 2026-09-13: *"do the large reaching framework changes first so less has to be redone."* Pick the next slice by how much sits on top of it, not by what is nearest ready, so each piece of code is written once against the framework that will exist. - Do not recreate an `ai` branch in canonical Iris; the fork is the boundary. - **Never rewrite a pushed branch.** Follow review with additive commits, and merge `upstream/main` in rather than rebasing when a branch falls behind. - Respond to each review finding with a fix or a concise explanation. Do not add a ceremonial comment when the changed code already answers it. - **A test has to guard something that could break again.** The owner deleted #14's test as pointless: the rename it guarded cannot regress. When a fix is structural, the structure is the test. ## The next slice **The plan above, as one slice on #18**: opt-in slots, the rewalk stretch over stored locals, and `Span` saying `Scale` -- after the owner has answered whether a slot carries a box, since that decides whether the locals are stored beside window regions or *are* the regions. Then `set_child_offset` and `LazySpan` to finish LAYOUT.md §2, then built-in alignment. The archive is not a patch here: it writes `Widget::draw` against `painter.set_size`, which #16 replaced with a returned `Size`, and it writes lengths against `LayoutLen` and `density`, which canonical does not have. Recreate on today's `Len` and let the dp slice follow. Still in the target, roughly in dependency order: - **The rest of the position chain** (LAYOUT.md §2), on top of the slice above: `set_child_offset` for a container that moves its children as a group, and `LazySpan`. - **Built-in alignment, and probably size**, after the chain rather than before it: the owner reordered the two on 2026-09-14. Reproduced in the harness -- `.width(rel(0.5))` inside a `Dir::DOWN` span reports 200 of 400 and is handed the whole 400, and a `Pad` in between does not change that. **Do not "fix" that by reading the child's ortho `size_hint`**: a `Pad` between the `SetSize` and the span has no hint of its own, so the declared width silently goes back to filling. It works only when nothing is in the way. Alignment has to belong to the widget rather than be discovered through whatever happens to sit on top of it. Two things beyond the bug argue for it. Built-in size removes `SetSize`, and with it the mismatch that made `OnResize`'s old default unsafe -- a wrapper reporting one size while handing its child the whole box. And built-in alignment is what would let `OnResize::Translate` apply to centred content, which otherwise has to say `Redraw` because only its own draw knows where the middle was. Size is the harder half: a declared size beside the one `draw` returns is two sources of truth for one thing, so settle what each means before building it. - **`OnResize::Translate`**, which still does nothing. `ActiveData::region` is both the box a widget was given and the box its primitives occupy, and `mov` remaps out of it; keeping a drawing at its old size while the box grows leaves the two disagreeing and the next move stretches it. Found by rendering `tabs` against `main`, not by a test. Whatever the chain does, the drawn box and the offered box have to stop being one field. - **`UiRenderState` behind `Rc>`**, queued by the owner on 2026-09-13 as fundamental, and especially so for text. - **`Len`, `LayoutLen` and dp.** The archive splits the type so that `rest` is unrepresentable where it is meaningless (a padding), and folds a density in at resolve time. 21 files mention `Len`, so it is wide but shallow. After the draw-size slice, not before: that one deletes the `desired_*` bodies this would otherwise have to be threaded through. - **The input restructure** — `src/default/sense.rs` becomes `src/rsc/sense.rs` (308 lines to 2313), plus `core/src/event/controller.rs`, `desktop/input.rs`, `android/input.rs` and `sense_tests.rs`: pointer capture, drag slop and axis, platform cancellation, mask-aware hit testing, event timestamps. The archive's own `consumes` is what #12 landed, so that part transplants; `tests/pointer_routing.rs` is the acceptance criterion. - Retained span, scrolling and layout placement. - Retained paints, selection, overlays and shared UI runtime state. - Generic desktop/Android framework hosts and reusable example/APK tooling. - Application-owned fonts and application-named font families. - Shared resource-handle bookkeeping and replaceable glyph-atlas buckets. - Positioned text overflow and cluster-safe ellipsis. Dependencies are current apart from `winit`, which stays on 0.30.12 until 0.31 leaves prerelease. `parley` 0.11.1 and `image` 0.25.10 are latest. ```sh cd /home/bob/repos/iris && git fetch upstream git diff --stat upstream/main..origin/archive/full-extraction ``` The archive is a reference, not a patch to apply. Recreate a change on top of canonical `main`, leave app-specific behaviour out, and verify it independently. Pick disjoint path sets when two PRs are open, and branch each from the latest `upstream/main` rather than stacking — unless the slice fixes code another open branch replaces, in which case say so and stack deliberately. ## How the renderer works now Current invariants, not history. Worth reading before touching `core/render`. - **A primitive registers itself by being drawn.** The type carries its own WGSL, and `PrimitiveRegistry` keys ids by `TypeId`, so the kind comes from the type and there are no `RECT`/`GLYPH`/`TEXTURE` constants. Nothing is seeded, so an id depends on what a ui drew first and a ui pays only for the pipelines it uses. - **Each primitive records its own draws.** `Primitive::render` makes a `PrimitiveRender` that states the layout its shader reads, uploads whatever it owns, and records its draws. `GlyphRender` owns the atlas and binds it once per list; `ImageRender` owns the images and binds one per instance; the default owns nothing and draws every instance in one call. The renderer sets the pipeline, the shared group, the list's data and its vertex buffer, and knows nothing else. Dispatch per list was measured at 6 instructions, 0.1% of a frame at 256 and at 1024 layers, against the ~5,400 wgpu spends recording one list; `tests/draw_cost.rs` is that measurement. - **The shared bind group is the window, the masks and the move chain**, given to every draw. A mask texture would go here too. What a primitive samples is its own group, and a primitive that samples nothing has no such group in its pipeline. - **Every binding size is stated.** A `None` minimum puts the binding on wgpu-core's late-sized list, which `is_ready` scans on every draw. - **`shader/prelude.wgsl` plus one file per primitive**, because one module cannot declare two types at the same binding. The prelude carries only what every primitive uses — window, masks, vertex shader, `masked()` — and its header is where binding numbers are written down; what a shader samples is declared by that shader. - **A texture handle is drawn like anything else.** `Painter::primitive` takes `impl PrimitiveLike`: a primitive, or something that yields one and does whatever else drawing it needs — a `&TextureHandle` retains its share on the way through, which a `Pod` primitive cannot. - **Order within a layer means nothing**, and the widgets do not rely on it: `Stack` gives each child its own layer and `TextEdit` draws its view in a child layer above the selection rectangles. - **Images are one texture and one bind group each**, so each drawn image is a draw call. The owner chose that on 2026-09-13 over packing images into arrays like atlas pages; a bindless `binding_array` was ruled out by Android support. Revisit only with her. - **Layers are never freed** (`TODO` in `primitive/layer.rs`), so every layer a session creates is walked every frame thereafter. Measured at ~2ns per empty layer per frame, which is why it is the TODO's problem and not a bug of its own. ## Repository topology ### ai-app checkout - `/home/bob/repos/ai-app-2`, `origin = git@git.arirex.me:iris/ai-app.git`, branch `rustify`. - `iris/` is a submodule pinned at `32f6ad8`, the complete extracted snapshot, and `.gitmodules` points at the **bot fork**, not canonical Iris. - Do not change either casually: ai-app needs the complete snapshot while canonical Iris is only partly caught up. Reconcile when canonical contains what ai-app needs, or when the owner accepts a temporarily non-building pin. ### standalone Iris checkout - `/home/bob/repos/iris`, `origin` = fork, `upstream` = canonical. - Fork `main` and `origin/archive/full-extraction` both name `32f6ad8`, the target snapshot. `history/full` names the source-history result `a615bcd`. - **Do not reset, overwrite or force-push fork `main`**: it is both the target reference and the commit ai-app pins. - Start each new branch from current `upstream/main` in its own worktree: ```sh cd /home/bob/repos/iris && git fetch upstream git worktree add -b split/19-name /home/bob/repos/iris-pr19 upstream/main ``` `/home/bob/repos/iris-pr18` is the live one. Every other `iris-pr*` worktree holds a merged branch; they are readable references, not places to build. Every other `/home/bob/repos/iris-pr*` worktree holds a merged branch. They are readable references; do not build new work on them. ## Verifying a slice `iris` runs its own rig now (#17), so a rendering claim no longer has to be driven from ai-app's submodule: ```sh cd ./scripts/run-headless.sh tabs --mode 1920x1200@60Hz --shot /tmp/out.png ./scripts/run-headless.sh tabs --replay /tmp/taps.touch --shot /tmp/out.png ``` The reference shots this session compared against are `tabs`, `view`, `minimal` and `text` at 1920x1200, plus `tabs` with a replay that switches to the image tab and adds two images. A `.touch` line is ` down|move|up ` in the output's own pixels; the tab strip is at y=24 and the five tabs at x = 192, 576, 960, 1344 and 1728, with the image tab's add button near (1836, 1116). **A resize is its own case and the harness cannot see it.** Start an example, change the output mode under it with `swaymsg output HEADLESS-1 mode WxH@60Hz`, screenshot, and compare against a cold start at that size -- they must match byte for byte. That is what caught both of #16's defects, and neither showed up in 40 tests. ```sh cd cargo fmt --all --check cargo clippy --workspace --all-targets -- -D warnings cargo test --workspace ``` 42 tests pass on #18's head. `--workspace` matters: `rig-input` is a crate of its own. Two drawing paths still have no shot of their own, and each needs a ui the examples do not have, so both are throwaway examples written into the worktree and deleted after: 1. An image alone in a layer, which is the case that failed GPU validation when every other test happened to have a rectangle in the same layer. 2. Six lines of 400px text, which forces the atlas to four pages and proves the array grew and its group was rebuilt. `tabs` with the image replay covers rects, glyphs and images together, so that one is an ordinary check now. ## Cautions - Read `/home/bob/repos/ai-app-2/AGENTS.md` and the machine-wide rules first. Anything about this machine — the GPU that comes and goes, measuring a small performance difference, the emulator — is in `~/.claude/MACHINE.md` and the `this-machine-*` skills, and belongs there rather than here. - Keep Iris generic: session drivers, transcripts, setup and server concepts, app icons and product fonts stay in ai-app. Android and desktop code is Iris work only when it is a generic host or platform integration. - Preserve the dirty-worktree rule. All worktrees were clean at handoff; anything found later may be the owner's or another agent's. - Do not delete the archived snapshot or the fork `main` ai-app pins. - A complete target branch is not permission to recreate the giant PR. - Another agent was freeing disk on this VM and removed `target/` from the `iris-pr*` worktrees once. Sources and git state were untouched. Tell peers before changing shared machine tooling, and expect a cold rebuild sometimes. ## Merged so far | PR | On canonical `main` | | --- | --- | | #2 | Build on the current nightly (`4275314`) | | #3 | Request a frame after resize (`936fbdd`) | | #4 | Decouple `iris-core` from winit (`465e430`) | | #5 | Use vsync by default (`ec2b5d4`) | | #6 | Notify winit before presenting (`db9b0f2`) | | #7 | Keep unsafe reference helpers internal (`0191f20`) | | #8 | Initialize the window uniform from the surface (`6e271e8`) | | #9 | Preserve primitive-count recursion (`b90c855`) | | #10 | Text layout and rendering on Parley (`0f6a28b`) | | #11 | Atlas as an array texture, and the primitive rendering overhaul (`b234497`) | | #13 | Build on wgpu 30 (`00d2230`) | | #14 | Rename the `Sized` widget to `SetSize` (`32b1038`) | | #15 | Run a ui without a window, and test one (`c8ac669`) | | #12 | Route pointer input per kind (`43ce8c7`) | | #16 | Size a widget while drawing it, not in a pass of its own (`f942385`) | | #17 | Bring the headless rig into the repository (`ca2b4b2`) | URLs are `https://git.arirex.me/iris/iris/pulls/{number}`.