adbbc0248bfb0acb960f93abd29e310fe1702da4
7 Commits
| Author | SHA1 | Message | Date | |
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| ce893ac776 |
responsive fluid/physical scaling, widget-API stabilization, and perf guardrails
Responsive scaling. ltk now offers two first-class ways to size a UI so it adapts across screens, chosen per process via `WidgetScaling { Fluid, Physical }` (`set_widget_scaling` / `widget_scaling`, default `Fluid`). Fluid sizing (`Length::fluid( px )`) makes a design pixel a proportion of the surface's smaller side, calibrated against a reference width (`set_fluid_reference` / `fluid_reference`, 412 px default) and bounded by `FLUID_MIN` / `FLUID_MAX`; physical sizing (`Length::dp( px )`) is a constant-physical-size pixel scaled by display density (`set_density` / `density`). `Length` gains `orient( portrait, landscape )` — resolve one value in portrait, another in landscape — plus `widget( px )`, which picks fluid or dp per the active mode. Canvas exposes `geom_px` (geometry, resolved in physical layout space) and `font_px` (font size, bridging logical / physical per mode) so widgets and apps share one resolution path. Note the rename: `set_design_reference` / `design_reference` became `set_fluid_reference` / `fluid_reference`, and `Length::dp` changed meaning — the old surface-proportional behaviour now lives on `Length::fluid`.
Widgets. Every stock widget resolves its default geometry and font through the widget-scaling mode instead of frozen pixels, so a whole UI scales coherently without per-call units. New size builders where they were missing: `button` gains `font_size` / `height`, `text_edit` gains `height` / `font_size_fluid`, `separator` gains `pad_v`, and assorted widgets accept a `Length` where they previously took only `f32`.
Overlays. `OverlaySpec::size` is now `( Length, Length )` instead of `( u32, u32 )`, resolved against the main surface when the overlay is materialized, so overlays can scale with the display; `Length::px( … )` reproduces the old fixed sizing.
API stabilization (toward 1.0). Widget struct fields are now `pub( crate )` — they are configured through builders, not field access — except the value / state types apps genuinely read or construct (`Time`, `Date`, `ComboState`), which stay public. The internal `test_support` helpers move behind a `test-support` Cargo feature (off by default, so third-party builds never see them; ltk's own `make test` enables it). `Separator` drops its `0.0`-means-mode sentinel for `Option<Length>`, so an explicit `pad_v( 0.0 )` is a real flush divider distinct from the mode-following default.
Performance guardrails. Opt-in diagnostics via `LTK_PERF_WARN=1` warn about stuck animations, sustained software-render animation, and low `poll_interval`; software-rendered animation is capped near 30 Hz to spare CPU on machines that fall back off EGL. Apps can override the cap with `App::cap_software_animation`.
Docs and build. The two scaling modes are documented in README, onboarding and architecture, with the earlier gradient / backdrop doc drift cleaned up. The Makefile now ships the `locales/` directory into the packaged crate (fixing i18n keys rendering raw for downstreams), builds the new `responsive` example, and runs tests with `--features test-support`.
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| fb3552e9f7 |
Embedder primitives: placed-child clipping, offscreen RGBA readback, standalone text measurement
Three additions an embedder needs to drive ltk as the render backend for a retained, externally-owned widget tree, each kept general rather than tied to one consumer. Stack placed-child clipping. `Stack::push_placed_clipped(e, rect, clip)` places a child at an exact rect like `push_placed` but clips its subtree's drawing to `clip` (in the Stack's coordinate space) — Android's clipChildren: content that overflows, such as a scrolled list row reaching above the list or an inner card past a rounded bubble, is not painted. The Stack child tuple grows an 8th `Option<Rect>` for the clip, and `layout_and_draw` brackets a clipped child with `set_clip_rects`/restore around the recursion. The clip is shifted by the Stack's own origin to match the placed rect (which `Stack::layout` already offsets), so a Stack laid out at a non-zero origin clips in the right place rather than off by that origin. Offscreen RGBA readback. `Canvas::read_rgba_pixels(out)` reads any canvas into tightly packed straight-alpha RGBA8, top-left row first. Unlike `read_gles_rgba_pixels` it also serves the software backend, un-premultiplying its pixmap, so an offscreen software canvas (an embedder's scratch bitmap) can be read back into a straight-alpha buffer. `Canvas::is_software()` lets a caller branch on the backend — e.g. to honour a real path clip on software but only a bounding rect on GLES. Standalone text measurement. `measure_text(text, size)`, re-exported at the crate root, measures one line with the default UI font and the system fallback chain, returning `(width, line_height)` in pixels without a live `Canvas` — for an embedder's measure pass that must produce the same metrics the renderer will later use. It is backed by `system_fonts::primary_handle()`, a process-wide cached handle for the primary UI font (the same default a canvas loads, with the bundled-font fallback), which widens `render::helpers::load_default_font_bytes` to `pub(crate)`. |
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| b00cf460bb |
Mature ltk to host an externally-laid-out Android view tree
Add the primitives rustdroid needs to project an Android view hierarchy onto an ltk surface, all kept general rather than Android-specific. Canvas gains arbitrary vector path fill and stroke: `Canvas::fill_path` / `stroke_path` over a new `PathCmd` command list (MoveTo/LineTo/QuadTo/CubicTo/Close in surface coordinates). The software backend rasterises directly with tiny-skia; the GLES backend rasterises into a tiny-skia pixmap and blits it (CPU fallback, no GPU path shader). This is what renders an Android `Path`, a `VectorDrawable`, or a Lottie frame. `ExternalSource::Cpu` (and the `External::cpu` constructor) adds an immediate-mode CPU drawing closure, invoked once per frame with the canvas and the widget's laid-out rect, working on both the GLES and software backends. It hosts a custom `View.onDraw` straight onto the ltk canvas without a GL texture round-trip, unlike the existing `Texture` source which only renders on GLES. `Stack::push_placed` appends a child at an exact rect, bypassing alignment and intrinsic sizing. This lets a view tree whose geometry is computed elsewhere — Android's measure/layout pass, which yields an absolute rect per view — be projected onto a Stack in paint order. New `RichText` widget: wrapped paragraph text carrying a message per clickable link range, with the layout pass emitting one hit rect per link line so taps land on the link rather than the whole paragraph. It is the ltk side of an Android `Spanned` carrying `URLSpan` / `ClickableSpan`. gesture: only drive the horizontal pager once the axis locks horizontal `on_move` emitted horizontal swipe progress whenever `swipe_axis != Vertical`, which includes the pre-lock window where `swipe_axis` is still `None` (the first ~8 px of travel). But `horizontal_drag_started` only flips once `dx.abs() > 8`. A vertical gesture that opened with a few pixels of lateral drift — a swipe-up to the launcher, a scroll — therefore emitted a tiny horizontal progress sample, which armed the consumer's pager, then locked vertical without `dx` ever passing 8, so `horizontal_drag_started` stayed false. On release the horizontal branch was skipped, no `on_swipe_horizontal_progress(0.0)` fired, and the pager stayed stuck active — on the crustace homescreen that froze the surface (the main stays motion-only behind stale page subsurfaces) until an unrelated gesture reset it. Emit horizontal progress only once `swipe_axis == Some(Horizontal)`. Locking onto the horizontal axis already implies `dx.abs() > 8`, so `horizontal_drag_started` is set in the same step, restoring the invariant that a frame which drives the pager always has a matching release event to settle it. The cost is that the first ~8 px of a horizontal drag no longer move the page, which is the same deadband the axis lock already imposes on the vertical panels. Adds `pre_lock_lateral_drift_does_not_drive_horizontal_pager`. |
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| 24f4d2703a |
ltk: introduce viewport-relative Length so any size, padding, spacing or font height can scale with the surface instead of being frozen at a px constant, fix text::preferred_size to honour the font-declared line gap, and add a responsive typographic scale
The motivating bug was a lockscreen in a downstream app (eydos-loginmanager) where the clock at 87 px overlapped the date at 24 px on a Pinephone but not on a winit dev screen. The root cause split in two: the layout was wired with a single `f32` spacing constant that worked at the dev resolution and broke at the smaller one, and `text::Text::preferred_size` was returning `ascent - descent` for the line height — fontdue's terminology for "the minimum bounding box of an unaccented line", which deliberately drops the `line_gap` that every typographic renderer (Pango, CoreText, DirectWrite) reserves between adjacent rows. At Sora's 200/em line gap, an 87 px row was visually 17 px taller than the rect the column allocated for it; stacked tight against the row above, the descenders bled into the row below. This commit fixes both halves at the toolkit level so every consumer benefits without bolting on a per-screen `Sizing` helper in their own view code. `types::Length` (with the `LengthBase` enum behind it) is the new currency for any "how big" or "how far apart" parameter. Six variants — `Px`, `Vw`, `Vh`, `Vmin`, `Vmax`, `Em` — cover the cases a real UI hits: absolute pixels for fixed-chrome decisions, viewport-relative percentages for sizes that have to survive a portrait/landscape rotation, and root-font-size multiples for typographic hierarchy. Optional `min_px` / `max_px` bounds attach to the same `Length` value via `.clamp( lo, hi )` (both ends), `.at_least( lo )` and `.at_most( hi )` (one-sided); the names are intentionally divergent from `f32::min`/`f32::max` to avoid being read with the opposite semantics (`x.min(24)` in std means "the smaller of x and 24", which is the inverse of what a min bound expresses). The bounds are stored as raw `f32` rather than nested `Length` values, which keeps `Length` `Copy` and avoids a `Box` allocation per widget per frame — the bounded-by-relative case (`Vmin(20).clamp(Vmin(10), Vmin(40))`) is rare enough that the trade is the right one. `From<f32>`, `From<i32>` and `From<u32>` are implemented so every legacy `.size( 24.0 )` / `.padding( 8.0 )` / `.spacing( 4.0 )` call keeps compiling unchanged; the migration is opt-in per call site. The `EM_BASE_DEFAULT = 16.0` constant matches `theme::typography::BODY` so `Length::em( 2.0 )` resolves consistently with the body-text default; a future change can thread a theme-supplied em base through without breaking the resolver shape. The resolver — `Length::resolve( viewport: ( f32, f32 ), em_base: f32 ) -> f32` — runs at layout time against a viewport supplied by the renderer. `Canvas::viewport_logical()` is the new helper that exposes that viewport: it divides the canvas's physical size by `dpi_scale` and falls back to physical size when `dpi_scale <= 0.0`, guarding the misconfigured-canvas path so a Vmin call doesn't poison every downstream measurement with `NaN` or `inf`. The viewport is in **logical** pixels — matching what every wayland `xdg_toplevel.configure` event already hands the client — so `Length::vmin( 18.0 )` on a 360×720-logical Librem 5 portrait surface resolves to 64.8 px and the same expression on a 1600×900 dev screen resolves to 162 px, automatically. Every widget setter that took an `f32` size, padding, spacing, max-width, or fixed dimension now takes `impl Into<Length>` and stores the value as `Length`: - `widget::text::Text::size( impl Into<Length> )`; the `size` field is now `Length`. `Text::resolved_size( &Canvas )` is the internal accessor that every measurement / drawing path routes through, so the field can stay `Length` without churning the call sites. `preferred_size` and `draw` now read `new_line_size = ascent - descent + line_gap` from fontdue's `LineMetrics` (the fix for the original bug) — the baseline placement is unchanged, only the row height grows by the font's declared leading, which is what every stacked layout was implicitly relying on. - `layout::Spacer::height( impl Into<Length> )` / `.width( impl Into<Length> )`; `fixed_height` / `fixed_width` are now `Option<Length>`. New `resolved_height( &Canvas )` / `resolved_width( &Canvas )` helpers replace the direct `s.fixed_height.unwrap_or( 0.0 )` reads in `layout::column`, `layout::row` and `layout::stack`. `Spacer::preferred_size` grows a `&Canvas` parameter for the same reason; `Element::preferred_size` passes the canvas through. - `layout::Column::spacing` / `.padding` / `.max_width`, `layout::Row::spacing` / `.padding` — all take `impl Into<Length>` and store `Length`. Internal `resolved_spacing( &Canvas )`, `resolved_padding( &Canvas )`, `resolved_max_width( &Canvas )` helpers funnel every read, so the layout code paths stay readable. The column's `inner_w` private helper picks up a `&Canvas` argument; the test that used it directly is updated. `theme::typography` keeps its historic `f32` constants (`H0`…`BODY_XS`, plus `LINE_HEIGHT`) so the migration is gradual, and adds a parallel responsive scale exposed as functions returning `Length`: `h0()`, `h1()`, `h2()`, `h3()`, `body()`, `body_s()`, `body_xs()`. Each is a `Length::vmin( pct ).clamp( min_px, max_px )` whose percentage is calibrated against a 1000-px smaller side reproducing the legacy px constant exactly, and whose px clamps protect both ends of the spectrum — a 360-px Pinephone hits the lower clamp on the larger headings, a 4K desktop hits the upper one. The tests in `theme::typography` exercise all three regimes (narrow phone, calibration point, large display) so future drift in the percentages or clamps is caught immediately. `Canvas::viewport_logical` is the only render-surface API touched. None of the existing per-frame paths (`draw_text`, `measure_text`, `font_line_metrics`) change shape, so backends and external embedders aren't disturbed. The `dpi_scale` accessor already existed; this commit only adds the convenience that ratios it against the surface size to return the unit layout actually wants. Test coverage rounds out the addition rather than just smoke-testing the happy path: 22 new tests, broken down as `types::length_tests` (7 — every variant, clamp with relative value, clamp with swapped bounds, `From<f32>`), `render::viewport_tests` (3 — scale 1, scale 2, scale 0 fallback), `theme::typography::tests` (3 — phone-clamped, calibrated, 4K-clamped), `layout::spacer::tests` (4 — px height, vmin height, vw width, flex spacer reports `None`), `layout::column::tests` (3 new — vmin spacing accumulates, vmin padding, vmin max-width caps inner-w), `layout::row::tests` (2 new — vmin padding, vmin spacing produces correct visible gap between non-flex children regardless of the row's centering anchor), and `widget::text::tests` (3 updated/new — defaults compare against `Length::px(16.0)`, `.size( f32 )` and `.size( Length )` both verified). The existing integration test in `tests/layout_stack_spacer.rs` is updated to call `Spacer::preferred_size( &canvas )` and compare `fixed_height` / `fixed_width` against `Some( Length::px( n ) )`. Documentation is updated end-to-end so the new API is discoverable from `cargo doc` without grepping the source: `lib.rs` gets a new entry for `Length` under the **Types** section and a new **Designing for multiple resolutions** section that lists the three patterns (relative `Length` for sizing, responsive typography for hierarchy, `view()`-level branching on surface dimensions only when the structure itself must change). `Canvas::viewport_logical` ships with a runnable `assert_eq!` example covering the scale-2 case. The module-level docstrings for `Spacer`, `Column` and `Row` now show both an `f32` example (legacy, still valid) and a `Length::vmin( ... ).clamp( ... )` example for the responsive variant — `cargo doc` renders both side by side so the upgrade path is obvious. Out of scope for this commit, deliberate: `WrapGrid::spacing_x` / `spacing_y` / `padding`, `widget::text_edit::TextEdit::font_size`, and `widget::image::Image::size` still take `f32`. None of them are on a critical responsive path right now, the `From<f32>` shim means migrating later is a one-line setter signature change per widget, and keeping this commit focused on the widgets the lockscreen actually uses keeps the diff reviewable. The line-gap fix in `text::preferred_size` already benefits `TextEdit` indirectly because its caret/row math reads from the same metrics helpers. |
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| 78a7ae151c |
layout/stack: opt-in Stack::fit_content() so a wrapping container can adopt the stack's intrinsic size
`Stack::preferred_size` unconditionally reported `(max_width, max_h)` — every stack claimed the full width its parent offered, regardless of what its children actually needed. That is the right default for a FrameLayout-style overlay (the existing callers all rely on it) but it makes the natural "pin a stack to a fixed-size child (e.g. a spacer of `card_w × card_h`) and centre other children on top of it" pattern impossible: a container wrapping such a stack always inherited the full parent width and ignored the spacer's footprint. The new `Stack::fit_content()` builder mirrors the `Column::fit_content` flag — when set, `preferred_size` returns the max of children's intrinsic widths and heights instead of claiming the parent's `max_width`, with the same "skip filler widgets that themselves claim `max_width`" exclusion list (`Spacer` with no `fixed_width`, `Separator`, `Scroll`, `ProgressBar`, `Slider`, `TextEdit` without `fixed_width`) so the flag is not defeated by a flexible child slipping into the stack. Default behaviour is unchanged. |
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| 757063694e |
layout/stack: opt-in Stack::fit_content() so a wrapping container can adopt the stack's intrinsic size
`Stack::preferred_size` unconditionally reported `(max_width, max_h)` — every stack claimed the full width its parent offered, regardless of what its children actually needed. That is the right default for a FrameLayout-style overlay (the existing callers all rely on it) but it makes the natural "pin a stack to a fixed-size child (e.g. a spacer of `card_w × card_h`) and centre other children on top of it" pattern impossible: a container wrapping such a stack always inherited the full parent width and ignored the spacer's footprint. The new `Stack::fit_content()` builder mirrors the `Column::fit_content` flag — when set, `preferred_size` returns the max of children's intrinsic widths and heights instead of claiming the parent's `max_width`, with the same "skip filler widgets that themselves claim `max_width`" exclusion list (`Spacer` with no `fixed_width`, `Separator`, `Scroll`, `ProgressBar`, `Slider`, `TextEdit` without `fixed_width`) so the flag is not defeated by a flexible child slipping into the stack. Default behaviour is unchanged. |
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| bbab5e238d | First commit. Version 0.1.0 |