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Author SHA1 Message Date
funman300 dbe2addc30 Merge pull request 'fix(engine): resize pile-marker outline and watermark children on relayout' (#131) from fix/pile-marker-child-resize into master
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2026-07-06 21:28:23 +00:00
funman300 c286593415 fix(engine): resize pile-marker outline and watermark children on relayout
Found during Fold 7 on-device verification of v0.41.0: on_window_resized
resized the marker fill sprite but never its children, so after any
resize (fold/unfold, rotation) the outline frame and the A/K watermark
kept their spawn-time size — rendering as oversized grey slabs over the
empty foundation slots.

The resize handler now re-derives both children from the new layout
(outline = card_size + 2*PILE_MARKER_OUTLINE_WIDTH, watermark font =
card_size.x * 0.28 — same formulas as spawn). Adds a regression test
and an Android-gated relayout log line (width/height/insets) as the
evidence channel for the remaining foldable layout bug (#130).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-06 14:28:09 -07:00
Gitea CI ddba5c0b26 chore(web): regenerate wasm artifacts
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2026-07-06 21:14:34 +00:00
funman300 5b37f35eb8 Merge pull request 'refactor(engine): split card_plugin runtime code into submodules' (#129) from refactor/card-plugin-submodules into master
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2026-07-06 21:01:24 +00:00
funman300 d1e87765af refactor(engine): split card_plugin runtime code into submodules
Final runtime split for #118: the 2,536-line mod.rs becomes seven
focused submodules along existing system boundaries —

  mod.rs      574  fan-step helpers, CardImageSet, markers, plugin build
  sync.rs     748  asset loading + card entity lifecycle (spawn/update/position)
  layout.rs   351  resize snapping, in-place resize, tableau fan spread
  stock.rs    291  empty-stock recycle hint + count badge
  highlights.rs 276 hint/right-click highlights, cursor hit-testing
  labels.rs   208  desktop text labels + Android corner labels
  anim.rs     200  flip animation, drag shadows

Moved items are pub(super); code moved verbatim apart from relocating
the two stock colour constants next to their consumers. No behaviour
change; all 70 card tests pass unchanged.

Refs #118

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-06 14:01:10 -07:00
funman300 b3b53c4adf Merge pull request 'refactor(engine): split hud_plugin runtime code into submodules' (#128) from refactor/hud-plugin-submodules into master
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2026-07-06 20:54:17 +00:00
funman300 ba76936aba refactor(engine): split hud_plugin runtime code into submodules
Continues #118 after settings_plugin (PR #127): the 2,725-line mod.rs
becomes five focused submodules along existing system boundaries —

  mod.rs        553  markers, resources, popover enums, plugin build
  spawn.rs      552  band / columns / avatar / action-bar construction
  interaction.rs 616 button handlers, Modes/Menu popovers, tap gesture
  fx.rs         430  action fades, score pulses/floaters, streak flourish
  updates.rs    612  HUD text / typography / visibility updaters

Moved items are pub(super) (fx re-exported pub for HudActionFade and
format_time_limit consumers). Code moved verbatim; no behaviour change;
all 44 hud tests pass unchanged.

Refs #118

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-06 13:54:04 -07:00
funman300 59ba7ba4c3 Merge pull request 'refactor(engine): split settings_plugin runtime code into submodules' (#127) from refactor/settings-plugin-submodules into master
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2026-07-06 20:46:10 +00:00
funman300 1ca1efb3b6 refactor(engine): split settings_plugin runtime code into submodules
Second phase of #118 for settings_plugin: the 2,857-line mod.rs becomes
four focused submodules along existing system boundaries —

  mod.rs     561  types, markers, SettingsButton, plugin build, persistence
  input.rs   632  button/hotkey handlers, focus attachment, scrolling
  updates.rs 495  per-frame value-text updater systems + label helpers
  ui.rs    1,231  spawn_settings_panel + row builders + thumbnails

Moved items are pub(super); mod.rs glob-imports the submodules so
system registration and tests keep their bare names. No behaviour
change; all 29 settings tests pass unchanged.

Refs #118

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-06 13:45:57 -07:00
Gitea CI c5ad487256 chore(web): regenerate wasm artifacts
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2026-07-06 20:41:54 +00:00
22 changed files with 6793 additions and 6496 deletions
+200
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//! Card flip animation and drag shadows.
use super::*;
use std::collections::HashSet;
use solitaire_core::Card;
use crate::animation_plugin::EffectiveSlideDuration;
use crate::events::{CardFaceRevealedEvent, CardFlippedEvent};
use crate::layout::LayoutResource;
use crate::resources::DragState;
use crate::ui_theme::{
CARD_SHADOW_ALPHA_DRAG, CARD_SHADOW_COLOR, CARD_SHADOW_LOCAL_Z,
};
/// Listens for `CardFlippedEvent` and inserts a `CardFlipAnim` on the entity.
///
/// Skipped when `EffectiveSlideDuration::slide_secs == 0.0` (Instant speed).
pub(super) fn start_flip_anim(
mut events: MessageReader<CardFlippedEvent>,
slide_dur: Option<Res<EffectiveSlideDuration>>,
mut commands: Commands,
card_entities: Query<(Entity, &CardEntity)>,
) {
if slide_dur.is_some_and(|d| d.slide_secs == 0.0) {
// Instant animation speed — skip the flip effect entirely.
events.clear();
return;
}
for CardFlippedEvent(flipped_card) in events.read() {
for (entity, marker) in &card_entities {
if marker.card == *flipped_card {
commands.entity(entity).insert(CardFlipAnim {
timer: 0.0,
phase: FlipPhase::ScalingDown,
});
break;
}
}
}
}
/// Advances `CardFlipAnim` each frame, modifying `Transform::scale.x`.
///
/// - Phase `ScalingDown`: lerps scale.x from 1.0 → 0.0 over `FLIP_HALF_SECS`.
/// - At the midpoint the phase switches to `ScalingUp`, scale.x resets to 0,
/// and a `CardFaceRevealedEvent` is fired so audio plays in sync with the reveal.
/// - Phase `ScalingUp`: lerps scale.x from 0.0 → 1.0 over `FLIP_HALF_SECS`.
/// - When complete the component is removed and scale.x is restored to 1.0.
pub(super) fn tick_flip_anim(
mut commands: Commands,
time: Res<Time>,
mut anims: Query<(Entity, &CardEntity, &mut Transform, &mut CardFlipAnim)>,
mut reveal_events: MessageWriter<CardFaceRevealedEvent>,
) {
let dt = time.delta_secs();
for (entity, card_entity, mut transform, mut anim) in &mut anims {
anim.timer += dt;
match anim.phase {
FlipPhase::ScalingDown => {
let t = (anim.timer / FLIP_HALF_SECS).min(1.0);
transform.scale.x = 1.0 - t;
if t >= 1.0 {
anim.phase = FlipPhase::ScalingUp;
anim.timer = 0.0;
transform.scale.x = 0.0;
// Fire the reveal event exactly once, at the phase transition,
// so the flip sound is synchronised with the visual face reveal.
reveal_events.write(CardFaceRevealedEvent(card_entity.card.clone()));
}
}
FlipPhase::ScalingUp => {
let t = (anim.timer / FLIP_HALF_SECS).min(1.0);
transform.scale.x = t;
if t >= 1.0 {
transform.scale.x = 1.0;
commands.entity(entity).remove::<CardFlipAnim>();
}
}
}
}
}
// ---------------------------------------------------------------------------
// Task #38 — Drag-elevation shadow
// ---------------------------------------------------------------------------
/// Maintains a single `ShadowEntity` while cards are being dragged.
///
/// - If a drag is active, spawns (or repositions) a semi-transparent dark
/// sprite behind the top dragged card.
/// - If no drag is active, despawns the shadow entity.
pub(super) fn update_drag_shadow(
mut commands: Commands,
drag: Res<DragState>,
layout: Option<Res<LayoutResource>>,
card_entities: Query<(&CardEntity, &Transform)>,
card_index: Res<CardEntityIndex>,
mut shadow: Local<Option<Entity>>,
) {
if drag.is_idle() {
// No drag in progress — remove shadow if it exists.
if let Some(e) = shadow.take() {
commands.entity(e).despawn();
}
return;
}
let Some(layout) = layout else { return };
let card_w = layout.0.card_size.x;
let card_h = layout.0.card_size.y;
// Find the world position of the first (top) dragged card.
let top_pos = drag.cards.first().and_then(|first_card| {
card_index
.get(first_card)
.and_then(|entity| card_entities.get(entity).ok())
.map(|(_, t)| t.translation)
});
let Some(top_pos) = top_pos else { return };
// Shadow is slightly larger, offset behind-and-below, at a z slightly
// below the dragged cards.
let shadow_pos = top_pos + Vec3::new(-4.0, 4.0, -1.0);
match *shadow {
Some(e) => {
// Reposition the existing shadow.
commands
.entity(e)
.insert(Transform::from_translation(shadow_pos));
}
None => {
// Spawn a new shadow sprite. Alpha tracks the per-card
// CARD_SHADOW_ALPHA_DRAG token so the Terminal palette's
// "no box-shadow" policy disables this stack shadow in
// lockstep with the per-card shadows. Re-enabling shadows
// is then a one-line change in `ui_theme`, not a hunt
// through plugin code.
let e = commands
.spawn((
ShadowEntity,
Sprite {
color: CARD_SHADOW_COLOR.with_alpha(CARD_SHADOW_ALPHA_DRAG),
custom_size: Some(Vec2::new(card_w + 8.0, card_h + 8.0)),
..default()
},
Transform::from_translation(shadow_pos),
Visibility::default(),
))
.id();
*shadow = Some(e);
}
}
}
/// Snaps every per-card [`CardShadow`] between its idle and lifted tunings
/// based on whether the parent [`CardEntity`] is currently in
/// [`DragState::cards`]. Runs every frame; the transition is an instant snap
/// (no lerp) — the existing shake / settle feedback already handles motion
/// at drag-end, so an additional shadow tween would compete with those cues.
///
/// The shadow size is rebuilt from the parent card's current `Sprite`
/// `custom_size` plus the appropriate padding, so the resize handler does
/// not need to pre-tune shadow sizes for the drag state — this system fixes
/// the geometry within one frame.
pub(super) fn update_card_shadows_on_drag(
drag: Res<DragState>,
cards: Query<(&CardEntity, &Sprite, &Children), Without<CardShadow>>,
mut shadows: Query<(&mut Sprite, &mut Transform), With<CardShadow>>,
) {
let dragged: HashSet<&Card> = drag.cards.iter().collect();
for (card_entity, card_sprite, children) in cards.iter() {
let is_dragged = dragged.contains(&card_entity.card);
let (offset, padding, alpha) = card_shadow_params(is_dragged);
let Some(card_size) = card_sprite.custom_size else {
continue;
};
for child in children.iter() {
let Ok((mut shadow_sprite, mut shadow_transform)) = shadows.get_mut(child) else {
continue;
};
shadow_sprite.color = CARD_SHADOW_COLOR.with_alpha(alpha);
shadow_sprite.custom_size = Some(card_size + padding);
shadow_transform.translation.x = offset.x;
shadow_transform.translation.y = offset.y;
shadow_transform.translation.z = CARD_SHADOW_LOCAL_Z;
}
}
}
// ---------------------------------------------------------------------------
// Task #28 — Hint highlight tick system
// ---------------------------------------------------------------------------
@@ -0,0 +1,276 @@
//! Hint and right-click highlights, plus cursor hit-testing helpers.
use super::*;
use bevy::color::Color;
use solitaire_core::Card;
use solitaire_core::game_state::GameState;
use crate::events::StateChangedEvent;
use crate::layout::{Layout, LayoutResource};
use crate::pause_plugin::PausedResource;
use crate::resources::{DragState, GameStateResource};
use crate::settings_plugin::SettingsResource;
use crate::table_plugin::{PILE_MARKER_DEFAULT_COLOUR, PileMarker};
/// Counts down `HintHighlight::remaining` each frame. When it reaches zero,
/// removes both `HintHighlight` and `HintHighlightTimer` (if present) and
/// resets the card sprite to its normal face-up colour.
pub(super) fn tick_hint_highlight(
time: Res<Time>,
mut commands: Commands,
mut query: Query<(Entity, &mut HintHighlight, &mut Sprite, &CardEntity)>,
game: Res<GameStateResource>,
settings: Option<Res<SettingsResource>>,
card_images: Option<Res<CardImageSet>>,
) {
let back_idx = settings.as_ref().map_or(0, |s| s.0.selected_card_back);
let use_images = card_images.is_some();
for (entity, mut hint, mut sprite, card_entity) in query.iter_mut() {
hint.remaining -= time.delta_secs();
if hint.remaining <= 0.0 {
// Restore the normal sprite colour.
// When image-based rendering is active, WHITE is the neutral tint;
// otherwise restore the solid colour appropriate to the card state.
sprite.color = if use_images {
Color::WHITE
} else {
let is_face_up = all_cards(&game.0)
.iter()
.find(|(c, _face_up)| *c == card_entity.card)
.is_some_and(|(_, face_up)| *face_up);
if is_face_up {
CARD_FACE_COLOUR
} else {
card_back_colour(back_idx)
}
};
commands
.entity(entity)
.remove::<HintHighlight>()
.remove::<HintHighlightTimer>();
}
}
}
// ---------------------------------------------------------------------------
// Task #46 — Right-click legal destination highlights
// ---------------------------------------------------------------------------
/// Lime tint applied to a `PileMarker` sprite when it is a legal
/// destination for the right-clicked card. Same RGB as the design-
/// system [`STATE_SUCCESS`] token at 60% alpha. Spelled as a literal
/// because `Alpha::with_alpha` is not yet a `const` trait method on
/// stable; the tracking test below pins the RGB to `STATE_SUCCESS`
/// so a palette swap can't drift the two apart silently.
pub(super) const RIGHT_CLICK_HIGHLIGHT_COLOUR: Color = Color::srgba(0.675, 0.761, 0.404, 0.6);
/// Counts down `RightClickHighlightTimer` each frame and clears the highlight
/// when the timer expires.
///
/// This is a fallback expiry: highlights also clear immediately on
/// `StateChangedEvent` (move made) or when the game is paused, whichever comes
/// first. The 1.5 s timer ensures highlights always disappear even if the
/// player takes no further action.
pub(super) fn tick_right_click_highlights(
mut commands: Commands,
time: Res<Time>,
paused: Option<Res<PausedResource>>,
mut highlights: Query<
(Entity, &mut RightClickHighlightTimer, &mut Sprite),
With<RightClickHighlight>,
>,
) {
if paused.is_some_and(|p| p.0) {
return;
}
let dt = time.delta_secs();
for (entity, mut timer, mut sprite) in &mut highlights {
timer.0 -= dt;
if timer.0 <= 0.0 {
// Restore the pile marker to its default colour before removing
// the highlight marker component.
sprite.color = PILE_MARKER_DEFAULT_COLOUR;
commands
.entity(entity)
.remove::<RightClickHighlight>()
.remove::<RightClickHighlightTimer>();
}
}
}
/// Removes the `RightClickHighlight` marker from every highlighted pile and
/// resets its sprite colour to `PILE_MARKER_DEFAULT_COLOUR`.
///
/// Shared by the on-state-change and on-pause clear systems to avoid
/// duplicating the removal logic.
pub(super) fn clear_right_click_highlights(
commands: &mut Commands,
highlighted: &Query<Entity, With<RightClickHighlight>>,
pile_markers: &mut Query<(Entity, &PileMarker, &mut Sprite)>,
) {
for entity in highlighted.iter() {
commands.entity(entity).remove::<RightClickHighlight>();
}
for (_entity, _, mut sprite) in pile_markers.iter_mut() {
if sprite.color == RIGHT_CLICK_HIGHLIGHT_COLOUR {
sprite.color = PILE_MARKER_DEFAULT_COLOUR;
}
}
}
/// Clears all right-click destination highlights whenever any game-state
/// mutation succeeds (`StateChangedEvent` fires).
///
/// This ensures stale highlights do not linger after a card is moved.
pub(super) fn clear_right_click_highlights_on_state_change(
mut events: MessageReader<StateChangedEvent>,
mut commands: Commands,
highlighted: Query<Entity, With<RightClickHighlight>>,
mut pile_markers: Query<(Entity, &PileMarker, &mut Sprite)>,
) {
if events.read().next().is_none() {
return;
}
clear_right_click_highlights(&mut commands, &highlighted, &mut pile_markers);
}
/// Clears all right-click destination highlights when the game is paused
/// (`PausedResource` changes to `true`).
///
/// Prevents highlighted pile markers from remaining visible behind the pause
/// overlay.
pub(super) fn clear_right_click_highlights_on_pause(
paused: Option<Res<PausedResource>>,
mut commands: Commands,
highlighted: Query<Entity, With<RightClickHighlight>>,
mut pile_markers: Query<(Entity, &PileMarker, &mut Sprite)>,
) {
let Some(paused) = paused else { return };
if paused.is_changed() && paused.0 {
clear_right_click_highlights(&mut commands, &highlighted, &mut pile_markers);
}
}
/// Handles right-click: highlights legal destination piles for the clicked card,
/// and clears highlights on any subsequent right- or left-click.
///
/// This system lives in `CardPlugin` to keep `InputPlugin` untouched.
#[allow(clippy::too_many_arguments)]
pub(super) fn handle_right_click(
buttons: Option<Res<ButtonInput<MouseButton>>>,
paused: Option<Res<PausedResource>>,
drag: Res<DragState>,
windows: Query<&Window, With<bevy::window::PrimaryWindow>>,
cameras: Query<(&Camera, &GlobalTransform)>,
layout: Option<Res<LayoutResource>>,
game: Res<GameStateResource>,
mut commands: Commands,
mut pile_markers: Query<(Entity, &PileMarker, &mut Sprite)>,
card_entities: Query<(Entity, &CardEntity, &Transform)>,
highlighted: Query<Entity, With<RightClickHighlight>>,
) {
if paused.is_some_and(|p| p.0) {
return;
}
let Some(buttons) = buttons else { return };
let left_pressed = buttons.just_pressed(MouseButton::Left);
let right_pressed = buttons.just_pressed(MouseButton::Right);
// Clear existing highlights on any click.
if left_pressed || right_pressed {
for entity in &highlighted {
commands.entity(entity).remove::<RightClickHighlight>();
}
for (_entity, _, mut sprite) in &mut pile_markers {
if sprite.color == RIGHT_CLICK_HIGHLIGHT_COLOUR {
sprite.color = PILE_MARKER_DEFAULT_COLOUR;
}
}
}
// Only proceed for right-clicks while not dragging.
if !right_pressed || !drag.is_idle() {
return;
}
let Some(layout) = layout else { return };
// Convert cursor to world-space position.
let Some(world) = cursor_world_pos(&windows, &cameras) else {
return;
};
// Find the topmost face-up card under the cursor.
let Some(card) = find_top_card_at(world, &game.0, &layout.0, &card_entities) else {
return;
};
let Some(source_pile) = game.0.pile_containing_card(card.clone()) else {
return;
};
// Tint piles that legally accept the card.
for (entity, pile_marker, mut sprite) in &mut pile_markers {
let legal = game.0.can_move_cards(&source_pile, &pile_marker.0, 1);
if legal {
sprite.color = RIGHT_CLICK_HIGHLIGHT_COLOUR;
commands
.entity(entity)
.insert(RightClickHighlight)
.insert(RightClickHighlightTimer(1.5));
}
}
}
/// Converts cursor position to 2-D world coordinates.
pub(super) fn cursor_world_pos(
windows: &Query<&Window, With<bevy::window::PrimaryWindow>>,
cameras: &Query<(&Camera, &GlobalTransform)>,
) -> Option<Vec2> {
let window = windows.single().ok()?;
let cursor = window.cursor_position()?;
let (camera, camera_transform) = cameras.single().ok()?;
camera.viewport_to_world_2d(camera_transform, cursor).ok()
}
/// Returns the topmost face-up `Card` under `cursor` by checking axis-aligned
/// bounding rectangles of all card sprites, picking the highest Z.
pub(super) fn find_top_card_at(
cursor: Vec2,
game: &GameState,
layout: &Layout,
card_entities: &Query<(Entity, &CardEntity, &Transform)>,
) -> Option<Card> {
let half = layout.card_size / 2.0;
let mut best: Option<(f32, Card)> = None;
for (_, card_entity, transform) in card_entities.iter() {
let pos = transform.translation.truncate();
if cursor.x < pos.x - half.x
|| cursor.x > pos.x + half.x
|| cursor.y < pos.y - half.y
|| cursor.y > pos.y + half.y
{
continue;
}
let found = all_cards(game)
.into_iter()
.find(|(c, face_up)| *c == card_entity.card && *face_up);
if let Some((card, _)) = found {
let z = transform.translation.z;
if best.as_ref().is_none_or(|(bz, _)| z > *bz) {
best = Some((z, card));
}
}
}
best.map(|(_, card)| card)
}
// ---------------------------------------------------------------------------
// Task #28 — Stock-empty visual indicator
// ---------------------------------------------------------------------------
+208
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@@ -0,0 +1,208 @@
//! Card face labels: desktop text labels and Android corner labels.
use super::*;
use bevy::color::Color;
use bevy::sprite::Anchor;
use solitaire_core::{Card, Rank, Suit};
use crate::ui_theme::TEXT_PRIMARY_HC;
pub(super) fn label_for(card: &Card) -> String {
let rank = match card.rank() {
Rank::Ace => "A",
Rank::Two => "2",
Rank::Three => "3",
Rank::Four => "4",
Rank::Five => "5",
Rank::Six => "6",
Rank::Seven => "7",
Rank::Eight => "8",
Rank::Nine => "9",
Rank::Ten => "10",
Rank::Jack => "J",
Rank::Queen => "Q",
Rank::King => "K",
};
let suit = match card.suit() {
Suit::Clubs => "C",
Suit::Diamonds => "D",
Suit::Hearts => "H",
Suit::Spades => "S",
};
format!("{rank}{suit}")
}
/// Suit colour for the rank/suit overlay rendered atop the constant
/// fallback sprite (only fires under `MinimalPlugins` — production
/// renders the suit glyph baked into the PNG). 2-colour traditional
/// pairing — hearts + diamonds share the saturated red, clubs +
/// spades share the near-white. Two accessibility flags compose:
///
/// - `color_blind`: red-suit cards swap to `RED_SUIT_COLOUR_CBM`
/// (lime) — the "Settings toggle swaps red→lime" half of the
/// design system's colour-blind support. CBM is a hue-replacement
/// for red, so HC has no further effect on red when CBM is on
/// (the lime is itself a high-luminance colour).
/// - `high_contrast`: when CBM is off, red suits boost to
/// `RED_SUIT_COLOUR_HC` (`#ff6868`); black suits boost from
/// `#e8e8e8` (near-white) to `#f5f5f5` (`TEXT_PRIMARY_HC`).
///
/// The other half of CBM support (always-on filled-vs-outlined
/// glyph differentiation for ♥♠ vs ♦♣) is baked into the PNG art
/// and has no constant-fallback equivalent.
pub(super) fn text_colour(card: &Card, color_blind: bool, high_contrast: bool) -> Color {
if card.suit().is_red() {
if color_blind {
// CBM lime wins — the colour-blind swap replaces the
// red hue entirely, and the lime is already high-
// luminance, so an HC boost on top has nothing to do.
RED_SUIT_COLOUR_CBM
} else if high_contrast {
RED_SUIT_COLOUR_HC
} else {
RED_SUIT_COLOUR
}
} else if high_contrast {
TEXT_PRIMARY_HC
} else {
BLACK_SUIT_COLOUR
}
}
pub(super) fn label_visibility(face_up: bool) -> Visibility {
if face_up {
Visibility::Inherited
} else {
Visibility::Hidden
}
}
/// Rank+suit string for the readability overlay on touch HUD layouts.
/// Uses Unicode suit glyphs (♠♥♦♣ — U+2660U+2666, covered by FiraMono).
pub(super) fn mobile_label_for(card: &Card) -> String {
let rank = match card.rank() {
Rank::Ace => "A",
Rank::Two => "2",
Rank::Three => "3",
Rank::Four => "4",
Rank::Five => "5",
Rank::Six => "6",
Rank::Seven => "7",
Rank::Eight => "8",
Rank::Nine => "9",
Rank::Ten => "10",
Rank::Jack => "J",
Rank::Queen => "Q",
Rank::King => "K",
};
let suit = match card.suit() {
Suit::Clubs => "",
Suit::Diamonds => "",
Suit::Hearts => "",
Suit::Spades => "",
};
format!("{rank}{suit}")
}
/// Spawns the [`AndroidCornerLabel`] + [`AndroidCornerBg`] children on
/// face-up cards. The background sprite covers the card art's own small
/// corner text so only the large overlay is visible.
/// Spawns the [`AndroidCornerLabel`] + [`AndroidCornerBg`] children on
/// face-up cards using FiraMono (passed via `font_handle`) so that the
/// suit Unicode glyphs U+2660U+2666 render correctly. Without an explicit
/// font handle Bevy falls back to its built-in face which does not include
/// those glyphs, causing a coloured missing-glyph rectangle to appear in
/// the text colour — the root cause of the "red square on face-down cards"
/// visual bug (the box bleeds through near the card edge at z=0.02).
pub(super) fn add_android_corner_label(
parent: &mut ChildSpawnerCommands,
card: &Card,
face_up: bool,
card_size: Vec2,
color_blind: bool,
high_contrast: bool,
font_handle: Option<&Handle<Font>>,
) {
if !face_up {
return;
}
let font_size = card_size.x * FONT_SIZE_FRAC_MOBILE;
let inset = 3.0_f32;
// Background covers ~3 monospace chars wide × 1 line tall.
// FiraMono char width ≈ 0.6 × font_size; 2.0× gives room for "10♠"
// (3 chars = 1.8× font_size) plus a small margin.
let bg_w = font_size * 2.0;
let bg_h = font_size * 1.25;
// Background covers the PNG's baked-in small corner text (top-left).
// Classic PNG cards have a white face, so the background must be white too.
// (CARD_FACE_COLOUR is the Terminal theme's dark face colour — wrong here.)
parent.spawn((
AndroidCornerBg,
Sprite {
color: Color::WHITE,
custom_size: Some(Vec2::new(bg_w, bg_h)),
..default()
},
Transform::from_xyz(
-card_size.x / 2.0 + inset + bg_w / 2.0,
card_size.y / 2.0 - inset - bg_h / 2.0,
0.015,
),
));
// Cover the matching rotated baked-in text at the bottom-right corner.
parent.spawn((
AndroidCornerBg,
Sprite {
color: Color::WHITE,
custom_size: Some(Vec2::new(bg_w, bg_h)),
..default()
},
Transform::from_xyz(
card_size.x / 2.0 - inset - bg_w / 2.0,
-card_size.y / 2.0 + inset + bg_h / 2.0,
0.015,
),
));
// Large rank+suit text drawn on top of the background. FiraMono must be
// wired here explicitly — the suit glyphs (U+2660U+2666) are not in
// Bevy's built-in font and render as a coloured rectangle without it.
//
// Classic PNG cards have a white face: red suits stay the same saturated
// red, but black suits must use a dark colour (CARD_FACE_COLOUR ≈ #1a1a1a)
// rather than the near-white BLACK_SUIT_COLOUR designed for the dark
// Terminal theme background.
let text_col = if card.suit().is_red() {
if color_blind {
RED_SUIT_COLOUR_CBM
} else if high_contrast {
RED_SUIT_COLOUR_HC
} else {
RED_SUIT_COLOUR
}
} else {
CARD_FACE_COLOUR
};
let label_text = mobile_label_for(card);
parent.spawn((
AndroidCornerLabel(label_text.clone()),
CardLabel,
Text2d::new(label_text),
TextFont {
font: font_handle.cloned().unwrap_or_default(),
font_size,
..default()
},
TextColor(text_col),
Anchor::TOP_LEFT,
Transform::from_xyz(-card_size.x / 2.0 + inset, card_size.y / 2.0 - inset, 0.02),
));
}
// ---------------------------------------------------------------------------
// Task #34 — Card-flip animation systems
// ---------------------------------------------------------------------------
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//! Resize handling: window-resize snapping, in-place card resizing,
//! and tableau fan spread.
use super::*;
use std::collections::HashMap;
use bevy::window::WindowResized;
use solitaire_core::Card;
use solitaire_core::game_state::GameState;
use crate::animation_plugin::CardAnim;
use crate::events::StateChangedEvent;
use crate::font_plugin::FontResource;
use crate::layout::{Layout, LayoutResource};
use crate::resources::GameStateResource;
use crate::table_plugin::PileMarker;
use crate::ui_theme::{
CARD_SHADOW_ALPHA_DRAG, CARD_SHADOW_PADDING_DRAG,
CARD_SHADOW_PADDING_IDLE,
};
/// Coalesces every `WindowResized` event arriving this frame into the latest
/// pending size on [`ResizeThrottle`].
///
/// `WindowResized` fires per pixel of resize drag, so a fast corner drag can
/// emit many events per frame. Reading `.last()` keeps only the final size —
/// every frame's snap target is the most recent window size, never a stale
/// one. Pending stays set across frames until the throttled applier consumes
/// it; that's how we still flush the final "release" position when the user
/// stops dragging.
pub(super) fn collect_resize_events(
mut events: MessageReader<WindowResized>,
mut throttle: ResMut<ResizeThrottle>,
) {
if let Some(ev) = events.read().last() {
throttle.pending = Some(Vec2::new(ev.width, ev.height));
}
}
/// Snaps every card sprite to its target position, size, and (in the
/// fallback Text2d label path) font size when the window is resized.
///
/// **In-place mutation only.** Resize is the hot path — events fire per
/// pixel of drag, so this system cannot afford the despawn/respawn churn
/// `update_card_entity` does. We mutate `Sprite.custom_size`, `Transform`,
/// and child `TextFont.font_size` directly, leaving the card image handle,
/// suit/rank, and `CardLabel` entity untouched. Cards keep their identity
/// across resizes; only their size and position change. The full repaint
/// path lives in [`update_card_entity`] and is still used by every non-resize
/// caller (deals, moves, flips, settings toggles).
///
/// **Throttled to ~20 Hz.** [`ResizeThrottle::pending`] is consumed at most
/// once per [`RESIZE_THROTTLE_SECS`]. When events stop arriving, the next
/// tick past the throttle window flushes the final size and clears
/// `pending`, so the steady-state always matches the user's release size.
///
/// **Cancels in-flight slides.** Any `CardAnim` is removed so a mid-slide
/// tween is not retargeted relative to the previous card-size's position.
///
/// The "↺" stock-empty label's `font_size` is derived from
/// `layout.card_size.x`, so this system also reapplies the stock indicator —
/// otherwise the label would not rescale on resize.
///
/// Scheduled after [`collect_resize_events`] (which itself runs after
/// `LayoutSystem::UpdateOnResize`) so `LayoutResource` reflects the latest
/// window size before we read it.
#[allow(clippy::too_many_arguments, clippy::type_complexity)]
pub(super) fn snap_cards_on_window_resize(
mut commands: Commands,
time: Res<Time>,
mut throttle: ResMut<ResizeThrottle>,
game: Option<Res<GameStateResource>>,
layout: Option<Res<LayoutResource>>,
card_images: Option<Res<CardImageSet>>,
font_res: Option<Res<FontResource>>,
entities: Query<
(Entity, &CardEntity, &mut Sprite, &mut Transform),
(
Without<CardLabel>,
Without<CardShadow>,
Without<CardBackFrame>,
),
>,
label_query: Query<&mut TextFont, (With<CardLabel>, Without<StockEmptyLabel>)>,
shadow_query: Query<
&mut Sprite,
(
With<CardShadow>,
Without<CardEntity>,
Without<PileMarker>,
Without<CardBackFrame>,
),
>,
frame_query: Query<
&mut Sprite,
(
With<CardBackFrame>,
Without<CardEntity>,
Without<CardShadow>,
Without<PileMarker>,
),
>,
mut pile_markers: Query<
(Entity, &PileMarker, &mut Sprite),
(
Without<CardEntity>,
Without<CardShadow>,
Without<CardBackFrame>,
),
>,
label_children: Query<(Entity, &ChildOf), With<StockEmptyLabel>>,
) {
if throttle.pending.is_none() {
return;
}
let now = time.elapsed_secs();
if !should_apply_resize(now, throttle.last_applied_secs) {
return;
}
let Some(game) = game else {
// Nothing to apply — clear pending so we don't busy-loop.
throttle.pending = None;
return;
};
let Some(layout) = layout else {
throttle.pending = None;
return;
};
resize_cards_in_place(
&mut commands,
&game.0,
&layout.0,
card_images.as_deref(),
entities,
label_query,
shadow_query,
frame_query,
);
let font = font_res.as_ref().map(|f| f.0.clone()).unwrap_or_default();
apply_stock_empty_indicator(
&mut commands,
&game.0,
&mut pile_markers,
&label_children,
&layout.0,
font,
);
throttle.last_applied_secs = now;
throttle.pending = None;
}
/// In-place "size-only" sibling of [`sync_cards`]: walks every existing card
/// entity, updates `Sprite.custom_size` and the snap-`Transform` to match the
/// fresh layout, and (in fallback solid-colour mode) also updates the child
/// `TextFont.font_size` of any `CardLabel`. No despawning, no `Sprite`
/// replacement, no children rebuild — that's the entire point of this path.
///
/// Called only from the resize handler. Game-state changes (deals, moves,
/// flips, settings toggles) still flow through [`sync_cards`] /
/// [`update_card_entity`], which handle add/remove/repaint correctly.
///
/// Any in-flight `CardAnim` slide is removed so a mid-tween card is not
/// retargeted relative to the previous card-size's position.
#[allow(clippy::type_complexity, clippy::too_many_arguments)]
pub(super) fn resize_cards_in_place(
commands: &mut Commands,
game: &GameState,
layout: &Layout,
card_images: Option<&CardImageSet>,
mut entities: Query<
(Entity, &CardEntity, &mut Sprite, &mut Transform),
(
Without<CardLabel>,
Without<CardShadow>,
Without<CardBackFrame>,
),
>,
mut label_query: Query<&mut TextFont, (With<CardLabel>, Without<StockEmptyLabel>)>,
mut shadow_query: Query<
&mut Sprite,
(
With<CardShadow>,
Without<CardEntity>,
Without<PileMarker>,
Without<CardBackFrame>,
),
>,
mut frame_query: Query<
&mut Sprite,
(
With<CardBackFrame>,
Without<CardEntity>,
Without<CardShadow>,
Without<PileMarker>,
),
>,
) {
let positions = card_positions(game, layout);
let pos_by_id: HashMap<Card, (Vec2, f32)> = positions
.into_iter()
.map(|((c, _face_up), p, z)| (c, (p, z)))
.collect();
for (entity, marker, mut sprite, mut transform) in entities.iter_mut() {
let Some(&(pos, z)) = pos_by_id.get(&marker.card) else {
continue;
};
sprite.custom_size = Some(layout.card_size);
transform.translation.x = pos.x;
transform.translation.y = pos.y;
transform.translation.z = z;
// Cancel any in-flight slide so it doesn't retarget from a stale
// mid-animation position computed against the previous card size.
commands.entity(entity).remove::<CardAnim>();
}
// Resize every per-card shadow halo to match the new card size. Both
// idle and drag states scale with the card body, so we preserve the
// *current* padding (idle vs drag) by keeping the alpha as-is and only
// recomputing the geometry. The drag-tracking system runs every frame
// and will retune offset / alpha / padding-mode within one frame if the
// drag state diverges from the resized geometry.
let idle_padding = CARD_SHADOW_PADDING_IDLE;
let drag_padding = CARD_SHADOW_PADDING_DRAG;
for mut shadow_sprite in shadow_query.iter_mut() {
// Choose padding based on the shadow's current alpha — preserves
// a lifted shadow's larger halo across resize without needing to
// plumb DragState through the resize handler.
let alpha = shadow_sprite.color.alpha();
let padding = if alpha >= CARD_SHADOW_ALPHA_DRAG - 0.001 {
drag_padding
} else {
idle_padding
};
shadow_sprite.custom_size = Some(layout.card_size + padding);
}
// Only the solid-colour fallback path uses CardLabel/Text2d overlays;
// when PNG faces are loaded the rank/suit are baked into the image and
// there is nothing to resize on the label side.
if card_images.is_none() {
let new_font_size = layout.card_size.x * FONT_SIZE_FRAC;
for mut font in label_query.iter_mut() {
font.font_size = new_font_size;
}
}
// Resize every face-down border frame to match the new card size.
let frame_size = layout.card_size + Vec2::splat(CARD_BACK_FRAME_PADDING);
for mut frame_sprite in frame_query.iter_mut() {
frame_sprite.custom_size = Some(frame_size);
}
}
/// Updates font size and top-left anchor transform of every
/// [`AndroidCornerLabel`] entity when `LayoutResource` changes (orientation
/// change or any window resize). The full despawn/respawn path in
/// `update_card_entity` already handles game-state changes; this system
/// covers the resize-only path where children are mutated in place.
pub(super) fn resize_android_corner_labels(
layout: Res<LayoutResource>,
card_images: Option<Res<CardImageSet>>,
mut text_query: Query<(
&AndroidCornerLabel,
&mut Text2d,
&mut TextFont,
&mut Transform,
)>,
mut bg_query: Query<(&mut Sprite, &mut Transform), AndroidCornerBgFilter>,
) {
if !layout.is_changed() || card_images.is_none() {
return;
}
let font_size = layout.0.card_size.x * FONT_SIZE_FRAC_MOBILE;
let inset = 3.0_f32;
let bg_w = font_size * 2.0;
let bg_h = font_size * 1.25;
let text_x = -layout.0.card_size.x / 2.0 + inset;
let text_y = layout.0.card_size.y / 2.0 - inset;
for (label, mut text2d, mut font, mut transform) in text_query.iter_mut() {
text2d.0 = label.0.clone();
font.font_size = font_size;
transform.translation.x = text_x;
transform.translation.y = text_y;
}
for (mut sprite, mut transform) in bg_query.iter_mut() {
sprite.custom_size = Some(Vec2::new(bg_w, bg_h));
transform.translation.x = text_x + bg_w / 2.0;
transform.translation.y = text_y - bg_h / 2.0;
}
}
/// Adjusts `LayoutResource.tableau_fan_frac` (and the face-down companion) so
/// the deepest tableau column fills the available vertical space at every stage
/// of play. Runs after every `StateChangedEvent`.
///
/// Depth is measured across *all* cards in a column, weighting each face-down
/// card by the fixed face-down/face-up step ratio. Counting the face-down
/// portion — not just the face-up tail — is what fills the lower screen on a
/// fresh deal (the deepest column is then six face-down cards under one face-up
/// one): the earlier face-up-only depth was 1, so the fan never spread and the
/// bottom half of a near-square viewport (e.g. an unfolded foldable) sat empty.
///
/// Deeper columns drive the fraction down so everything still fits the window;
/// [`crate::layout::TABLEAU_FAN_FRAC`] floors it to the desktop feel and
/// [`MAX_DYNAMIC_FAN_FRAC`] caps it so a near-empty column doesn't fling its few
/// cards far apart.
pub(super) fn update_tableau_fan_frac(
mut events: MessageReader<StateChangedEvent>,
game: Option<Res<GameStateResource>>,
mut layout: Option<ResMut<LayoutResource>>,
) {
if events.read().next().is_none() {
return;
}
let Some(game) = game else {
return;
};
let Some(layout) = layout.as_mut() else {
return;
};
crate::layout::apply_dynamic_tableau_fan(&game.0, &mut layout.0);
}
/// PostStartup sibling of [`update_tableau_fan_frac`]. The initial deal is
/// inserted directly as `GameStateResource` at startup without a
/// `StateChangedEvent`, so the event-driven system never fires for it. This
/// runs once, before [`sync_cards_startup`] renders, so the very first board
/// (cold start) already fills the viewport — otherwise a fresh deal on a tall /
/// near-square screen (e.g. an unfolded foldable) renders with the unspread fan
/// and a large empty band below the tableau until the first move.
pub(super) fn fill_tableau_fan_on_startup(
game: Option<Res<GameStateResource>>,
mut layout: Option<ResMut<LayoutResource>>,
) {
let Some(game) = game else {
return;
};
let Some(layout) = layout.as_mut() else {
return;
};
crate::layout::apply_dynamic_tableau_fan(&game.0, &mut layout.0);
}
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//! Stock-pile indicators: the empty-stock recycle hint and count badge.
use super::*;
use bevy::color::Color;
use solitaire_core::KlondikePile;
use solitaire_core::game_state::GameState;
use crate::events::StateChangedEvent;
use crate::font_plugin::FontResource;
use crate::layout::{Layout, LayoutResource};
use crate::resources::GameStateResource;
use crate::table_plugin::{PILE_MARKER_DEFAULT_COLOUR, PileMarker};
use crate::ui_theme::{
STOCK_BADGE_BG, STOCK_BADGE_FG, TEXT_PRIMARY,
TYPE_BODY, Z_STOCK_BADGE,
};
/// Sprite colour applied to the stock `PileMarker` when the stock pile is empty,
/// to signal to the player that there are no more cards to draw. Pure white
/// at 0.4 alpha — a deliberate brightness-boost over the default marker so
/// the "empty" state is more visible, not less. Not derived from a palette
/// token: this is a sprite tint, not chrome colour.
const STOCK_EMPTY_DIM_COLOUR: Color = Color::srgba(1.0, 1.0, 1.0, 0.4);
/// Sprite colour applied to the stock `PileMarker` when cards remain in
/// stock. Aliased to [`PILE_MARKER_DEFAULT_COLOUR`] so it tracks the rest
/// of the engine's idle pile-marker tint automatically.
const STOCK_NORMAL_COLOUR: Color = PILE_MARKER_DEFAULT_COLOUR;
/// Shared logic for updating the stock pile marker's dim state and "↺" label.
///
/// If the stock pile is empty the marker sprite is dimmed to
/// `STOCK_EMPTY_DIM_COLOUR` and a child `Text2d` with `StockEmptyLabel` is
/// spawned (if not already present). When the stock is non-empty the marker is
/// restored to `STOCK_NORMAL_COLOUR` and any `StockEmptyLabel` children are
/// despawned.
pub(super) fn apply_stock_empty_indicator<F: bevy::ecs::query::QueryFilter>(
commands: &mut Commands,
game: &GameState,
pile_markers: &mut Query<(Entity, &PileMarker, &mut Sprite), F>,
label_children: &Query<(Entity, &ChildOf), With<StockEmptyLabel>>,
layout: &Layout,
font: Handle<Font>,
) {
let stock_empty = game.stock_cards().is_empty();
for (entity, pile_marker, mut sprite) in pile_markers.iter_mut() {
if pile_marker.0 != KlondikePile::Stock {
continue;
}
if stock_empty {
// Dim the marker sprite.
sprite.color = STOCK_EMPTY_DIM_COLOUR;
// Spawn the "↺" label only if one does not already exist.
let already_has_label = label_children
.iter()
.any(|(_, parent)| parent.parent() == entity);
if !already_has_label {
let font_size = layout.card_size.x * 0.4;
commands.entity(entity).with_children(|b| {
b.spawn((
StockEmptyLabel,
Text2d::new(""),
TextFont {
font: font.clone(),
font_size,
..default()
},
TextColor(TEXT_PRIMARY.with_alpha(0.7)),
Transform::from_xyz(0.0, 0.0, 0.1),
));
});
}
} else {
// Restore normal brightness.
sprite.color = STOCK_NORMAL_COLOUR;
// Despawn any existing "↺" label children.
for (label_entity, parent) in label_children.iter() {
if parent.parent() == entity {
commands.entity(label_entity).despawn();
}
}
}
}
}
/// Runs at `PostStartup` to apply the stock-empty indicator for the initial
/// game state (before any `StateChangedEvent` fires).
pub(super) fn update_stock_empty_indicator_startup(
mut commands: Commands,
game: Res<GameStateResource>,
layout: Option<Res<LayoutResource>>,
font_res: Option<Res<FontResource>>,
mut pile_markers: Query<(Entity, &PileMarker, &mut Sprite)>,
label_children: Query<(Entity, &ChildOf), With<StockEmptyLabel>>,
) {
let Some(layout) = layout else { return };
let font = font_res.as_ref().map(|f| f.0.clone()).unwrap_or_default();
apply_stock_empty_indicator(
&mut commands,
&game.0,
&mut pile_markers,
&label_children,
&layout.0,
font,
);
}
/// Runs each `Update` tick when a `StateChangedEvent` arrives, keeping the
/// stock pile marker dim state and "↺" label in sync with the current stock.
pub(super) fn update_stock_empty_indicator(
mut events: MessageReader<StateChangedEvent>,
mut commands: Commands,
game: Res<GameStateResource>,
layout: Option<Res<LayoutResource>>,
font_res: Option<Res<FontResource>>,
mut pile_markers: Query<(Entity, &PileMarker, &mut Sprite)>,
label_children: Query<(Entity, &ChildOf), With<StockEmptyLabel>>,
) {
if events.read().next().is_none() {
return;
}
let Some(layout) = layout else { return };
let font = font_res.as_ref().map(|f| f.0.clone()).unwrap_or_default();
apply_stock_empty_indicator(
&mut commands,
&game.0,
&mut pile_markers,
&label_children,
&layout.0,
font,
);
}
// ---------------------------------------------------------------------------
// Stock-pile remaining-count badge
//
// Shows a small "N" chip pinned to the bottom-right corner of the stock pile so
// the player can see how many cards remain before the next recycle. The
// existing `StockEmptyLabel` (`↺` overlay) covers the empty-stock case, so
// the badge hides itself when the stock has zero cards — the two indicators
// never render at the same time.
// ---------------------------------------------------------------------------
/// Inset (in pixels) from the bottom-right corner of the stock pile sprite to
/// the centre of the count badge. Anchoring to the bottom-right keeps the chip
/// clear of the rank/suit pip in the card's top-left corner. Both components
/// move the centre *inward* from that corner: `x` is subtracted from the right
/// edge, `y` is added to the bottom edge. The `x` magnitude must satisfy
/// `x >= STOCK_BADGE_SIZE.x / 2` so the badge right edge stays inside the stock
/// pile and never overlaps the adjacent waste pile — critical on Android where
/// `H_GAP_DIVISOR = 32` gives an inter-pile gap of only ~4 px.
const STOCK_BADGE_INSET: Vec2 = Vec2::new(20.0, 8.0);
/// Width / height of the badge background sprite, in world pixels. Sized so
/// a 2-digit count (max "24") fits comfortably with `TYPE_BODY` (14 pt) text.
const STOCK_BADGE_SIZE: Vec2 = Vec2::new(34.0, 20.0);
/// Returns the count of cards currently in the stock pile.
///
/// Pure helper extracted so the count source is identical between the spawn
/// system, the update system, and the unit tests.
pub(super) fn stock_card_count(game: &GameState) -> usize {
game.stock_cards().len()
}
/// Returns the world-space `Vec3` for the centre of the stock-count badge,
/// given the current `Layout`. The badge sits at the bottom-right corner of
/// the stock pile sprite, inset by [`STOCK_BADGE_INSET`], so it stays clear of
/// the rank/suit pip in the card's top-left corner.
pub(super) fn stock_badge_translation(layout: &Layout) -> Vec3 {
// Empty layouts don't contain a Stock entry — fall back to origin so
// the badge stays in a deterministic spot until the layout is filled.
let pile_pos = layout
.pile_positions
.get(&KlondikePile::Stock)
.copied()
.unwrap_or(Vec2::ZERO);
let half = layout.card_size * 0.5;
// Anchor to the bottom-right corner, then move the centre inward.
let x = pile_pos.x + half.x - STOCK_BADGE_INSET.x;
let y = pile_pos.y - half.y + STOCK_BADGE_INSET.y;
Vec3::new(x, y, Z_STOCK_BADGE)
}
/// Spawns the stock-count badge entity (background sprite + child text)
/// into the world. Called once, when the badge does not yet exist.
pub(super) fn spawn_stock_count_badge(
commands: &mut Commands,
layout: &Layout,
font: Option<&Handle<Font>>,
count: usize,
) {
let translation = stock_badge_translation(layout);
let visibility = if count == 0 {
Visibility::Hidden
} else {
Visibility::Inherited
};
let text_font = TextFont {
font: font.cloned().unwrap_or_default(),
font_size: TYPE_BODY,
..default()
};
commands
.spawn((
StockCountBadge,
Sprite {
color: STOCK_BADGE_BG,
custom_size: Some(STOCK_BADGE_SIZE),
..default()
},
Transform::from_translation(translation),
visibility,
))
.with_children(|b| {
b.spawn((
StockCountBadgeText,
Text2d::new(format!("{count}")),
text_font,
TextColor(STOCK_BADGE_FG),
// Slightly above the chip background so the digits aren't
// occluded by the sprite they sit on.
Transform::from_xyz(0.0, 0.0, 0.1),
));
});
}
/// Spawns the stock-pile remaining-count badge if it does not yet exist,
/// and otherwise updates its text and visibility in place.
///
/// Visibility rule: hidden when the stock is empty (the existing `↺`
/// `StockEmptyLabel` overlay covers that state), shown when one or more
/// cards remain.
///
/// Position is recomputed from `LayoutResource` every tick so the badge
/// follows the stock pile across `WindowResized` layout updates without
/// needing a dedicated resize handler.
#[allow(clippy::too_many_arguments)]
pub(super) fn update_stock_count_badge(
mut commands: Commands,
game: Option<Res<GameStateResource>>,
layout: Option<Res<LayoutResource>>,
font: Option<Res<FontResource>>,
mut badges: Query<(Entity, &mut Transform, &mut Visibility), With<StockCountBadge>>,
children: Query<&Children, With<StockCountBadge>>,
mut texts: Query<&mut Text2d, With<StockCountBadgeText>>,
) {
let Some(game) = game else { return };
let Some(layout) = layout else { return };
let count = stock_card_count(&game.0);
let translation = stock_badge_translation(&layout.0);
let target_visibility = if count == 0 {
Visibility::Hidden
} else {
Visibility::Inherited
};
if badges.is_empty() {
spawn_stock_count_badge(&mut commands, &layout.0, font.as_ref().map(|f| &f.0), count);
return;
}
for (entity, mut transform, mut visibility) in badges.iter_mut() {
transform.translation = translation;
if *visibility != target_visibility {
*visibility = target_visibility;
}
// Update the child text to reflect the latest count. The text node
// is created at spawn time, so under normal operation we always
// have exactly one child here.
if let Ok(badge_children) = children.get(entity) {
for child in badge_children.iter() {
if let Ok(mut text) = texts.get_mut(child) {
let new = format!("{count}");
if text.0 != new {
text.0 = new;
}
}
}
}
}
}
+748
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@@ -0,0 +1,748 @@
//! Card asset loading and entity lifecycle: the sync systems that
//! spawn, update, and position card entities from `GameStateResource`.
use super::*;
use std::collections::{HashMap, HashSet};
use bevy::color::Color;
use solitaire_core::{Foundation, KlondikePile, Tableau};
use solitaire_core::{Card, Rank, Suit};
use solitaire_core::{DrawStockConfig, game_state::GameState};
use crate::animation_plugin::{CARD_ANIM_Z_LIFT, CardAnim, EffectiveSlideDuration};
use crate::card_animation::CardAnimation;
use crate::events::StateChangedEvent;
use crate::font_plugin::FontResource;
use crate::layout::{Layout, LayoutResource};
use crate::platform::USE_TOUCH_UI_LAYOUT;
use crate::resources::GameStateResource;
use crate::settings_plugin::{SettingsChangedEvent, SettingsResource};
/// Rebuild the [`CardEntityIndex`] from the live `CardEntity` set.
///
/// Runs in `PostUpdate` so that all spawn/despawn `Commands` issued by
/// [`sync_cards_on_change`] and [`snap_cards_on_window_resize`] in `Update`
/// have been flushed at the `Update -> PostUpdate` apply-deferred boundary.
/// Rebuilding from scratch (rather than incrementally patching at every
/// spawn/despawn site — waste cards churn on every draw) keeps a single writer
/// and makes a stale entry structurally impossible.
///
/// Gated to changed frames only: `Changed<CardEntity>` fires the frame a card
/// is spawned, `RemovedComponents<CardEntity>` the frame one is despawned. The
/// `card` field is write-once (never mutated in place), so card-reposition
/// frames don't trip `Changed` and correctly skip the O(52) rebuild.
pub(super) fn rebuild_card_entity_index(
mut index: ResMut<CardEntityIndex>,
cards: Query<(Entity, &CardEntity)>,
changed: Query<(), Changed<CardEntity>>,
removed: RemovedComponents<CardEntity>,
) {
if changed.is_empty() && removed.is_empty() {
return;
}
let map = &mut index.0;
map.clear();
for (entity, ce) in &cards {
map.insert(ce.card.clone(), entity);
}
}
/// Returns the relative asset path for a card face PNG.
///
/// The path format is `cards/faces/classic/{RANK}{SUIT}.png`, e.g. `QS.png`
/// for the Queen of Spades. Both `load_card_images` and the unit tests use
/// this function so the filename formula is tested in isolation from the
/// asset-loading machinery.
///
/// Note: this function verifies only the **code-side mapping**. If the PNG
/// file at the returned path contains wrong artwork (e.g. `QS.png` has a
/// diamond watermark baked in), that is an **asset content bug** and must be
/// fixed by replacing the file — no code change can correct it.
pub(super) fn card_face_asset_path(rank: Rank, suit: Suit) -> String {
const SUIT_CHARS: [&str; 4] = ["C", "D", "H", "S"];
const RANK_STRS: [&str; 13] = [
"A", "2", "3", "4", "5", "6", "7", "8", "9", "10", "J", "Q", "K",
];
let suit_idx = match suit {
Suit::Clubs => 0,
Suit::Diamonds => 1,
Suit::Hearts => 2,
Suit::Spades => 3,
};
let rank_idx = match rank {
Rank::Ace => 0,
Rank::Two => 1,
Rank::Three => 2,
Rank::Four => 3,
Rank::Five => 4,
Rank::Six => 5,
Rank::Seven => 6,
Rank::Eight => 7,
Rank::Nine => 8,
Rank::Ten => 9,
Rank::Jack => 10,
Rank::Queen => 11,
Rank::King => 12,
};
format!(
"cards/faces/classic/{}{}.png",
RANK_STRS[rank_idx], SUIT_CHARS[suit_idx]
)
}
/// Loads card face and back PNGs at startup via [`AssetServer`] and inserts
/// [`CardImageSet`].
///
/// Faces: `assets/cards/faces/{RANK}{SUIT}.png` (e.g. `AC.png`, `10H.png`)
/// Backs: `assets/cards/backs/back_{0..4}.png`
///
/// Under `MinimalPlugins` (tests) `AssetServer` is absent, so the system
/// returns without inserting `CardImageSet` and the plugin falls back to
/// solid-colour sprites.
pub(super) fn load_card_images(asset_server: Option<Res<AssetServer>>, mut commands: Commands) {
let Some(asset_server) = asset_server else {
return;
};
const SUITS: [Suit; 4] = [Suit::Clubs, Suit::Diamonds, Suit::Hearts, Suit::Spades];
const RANKS: [Rank; 13] = [
Rank::Ace,
Rank::Two,
Rank::Three,
Rank::Four,
Rank::Five,
Rank::Six,
Rank::Seven,
Rank::Eight,
Rank::Nine,
Rank::Ten,
Rank::Jack,
Rank::Queen,
Rank::King,
];
let faces: [[Handle<Image>; 13]; 4] = std::array::from_fn(|si| {
std::array::from_fn(|ri| asset_server.load(card_face_asset_path(RANKS[ri], SUITS[si])))
});
let backs =
std::array::from_fn(|i| asset_server.load(format!("cards/backs/classic/back_{i}.png")));
commands.insert_resource(CardImageSet {
faces,
backs,
// Populated by the theme plugin once a `CardTheme` finishes loading.
// Until then the legacy back fallback (`backs[selected_card_back]`)
// is used.
theme_back: None,
});
}
/// Builds the [`Sprite`] for a card, using PNG artwork when [`CardImageSet`] is
/// available and falling back to a solid-colour sprite in tests.
pub(super) fn card_sprite(
card: &Card,
face_up: bool,
card_size: Vec2,
back_colour: Color,
card_images: Option<&CardImageSet>,
selected_back: usize,
) -> Sprite {
if let Some(set) = card_images {
let image = if face_up {
let suit_idx = match card.suit() {
Suit::Clubs => 0,
Suit::Diamonds => 1,
Suit::Hearts => 2,
Suit::Spades => 3,
};
let rank_idx = match card.rank() {
Rank::Ace => 0,
Rank::Two => 1,
Rank::Three => 2,
Rank::Four => 3,
Rank::Five => 4,
Rank::Six => 5,
Rank::Seven => 6,
Rank::Eight => 7,
Rank::Nine => 8,
Rank::Ten => 9,
Rank::Jack => 10,
Rank::Queen => 11,
Rank::King => 12,
};
set.faces[suit_idx][rank_idx].clone()
} else if let Some(theme_back) = &set.theme_back {
// Active theme provides its own back — always wins over the
// legacy `selected_card_back` picker, so a theme switch swaps
// faces *and* the back. The picker is treated as informational
// only while a theme back is active (see settings_plugin).
theme_back.clone()
} else {
let idx = selected_back.min(set.backs.len() - 1);
set.backs[idx].clone()
};
Sprite {
image,
color: Color::WHITE,
custom_size: Some(card_size),
..default()
}
} else {
// Terminal aesthetic: face background is uniformly CARD_FACE_COLOUR
// regardless of colour-blind mode (CBM differentiation now lives in
// the suit glyph colour, applied by `text_colour`, not the face
// background). Pre-Terminal this branch dispatched through a
// separate `face_colour(card, color_blind)` helper.
let body_colour = if face_up {
CARD_FACE_COLOUR
} else {
back_colour
};
Sprite {
color: body_colour,
custom_size: Some(card_size),
..default()
}
}
}
/// When card-back selection changes in Settings, re-render all cards so the
/// new back colour is applied immediately (without waiting for a state change).
pub(super) fn resync_cards_on_settings_change(
mut setting_events: MessageReader<SettingsChangedEvent>,
mut state_events: MessageWriter<StateChangedEvent>,
) {
if setting_events.read().next().is_some() {
state_events.write(StateChangedEvent);
}
}
/// Render the initial deal. Runs in `PostStartup`, so all `Startup` systems
/// (including `TablePlugin::setup_table` which inserts `LayoutResource`)
/// have already completed.
#[allow(clippy::too_many_arguments)]
pub(super) fn sync_cards_startup(
commands: Commands,
game: Res<GameStateResource>,
layout: Option<Res<LayoutResource>>,
slide_dur: Option<Res<EffectiveSlideDuration>>,
settings: Option<Res<SettingsResource>>,
entities: Query<CardSyncData>,
card_images: Option<Res<CardImageSet>>,
font_res: Option<Res<FontResource>>,
) {
if let Some(layout) = layout {
let slide_secs = slide_dur.map_or(0.15, |d| d.slide_secs);
let selected_back = settings.as_ref().map_or(0, |s| s.0.selected_card_back);
let back_colour = card_back_colour(selected_back);
let color_blind = settings.as_ref().is_some_and(|s| s.0.color_blind_mode);
let high_contrast = settings.as_ref().is_some_and(|s| s.0.high_contrast_mode);
let font_handle = font_res.as_ref().map(|r| &r.0);
sync_cards(
commands,
&game.0,
&layout.0,
slide_secs,
back_colour,
color_blind,
high_contrast,
&entities,
card_images.as_deref(),
selected_back,
font_handle,
);
}
}
#[allow(clippy::too_many_arguments)]
pub(super) fn sync_cards_on_change(
mut events: MessageReader<StateChangedEvent>,
commands: Commands,
game: Res<GameStateResource>,
layout: Option<Res<LayoutResource>>,
slide_dur: Option<Res<EffectiveSlideDuration>>,
settings: Option<Res<SettingsResource>>,
entities: Query<CardSyncData>,
card_images: Option<Res<CardImageSet>>,
font_res: Option<Res<FontResource>>,
) {
if events.read().next().is_none() {
return;
}
if let Some(layout) = layout {
let slide_secs = slide_dur.map_or(0.15, |d| d.slide_secs);
let selected_back = settings.as_ref().map_or(0, |s| s.0.selected_card_back);
let back_colour = card_back_colour(selected_back);
let color_blind = settings.as_ref().is_some_and(|s| s.0.color_blind_mode);
let high_contrast = settings.as_ref().is_some_and(|s| s.0.high_contrast_mode);
let font_handle = font_res.as_ref().map(|r| &r.0);
sync_cards(
commands,
&game.0,
&layout.0,
slide_secs,
back_colour,
color_blind,
high_contrast,
&entities,
card_images.as_deref(),
selected_back,
font_handle,
);
}
}
#[allow(clippy::too_many_arguments)]
pub(super) fn sync_cards(
mut commands: Commands,
game: &GameState,
layout: &Layout,
slide_secs: f32,
back_colour: Color,
color_blind: bool,
high_contrast: bool,
entities: &Query<CardSyncData>,
card_images: Option<&CardImageSet>,
selected_back: usize,
font_handle: Option<&Handle<Font>>,
) {
let positions = card_positions(game, layout);
// The waste buffer card exists only to keep its entity alive while the new
// top card's slide animation plays — it must never be visible to the player.
// Without this, the buffer sits at waste_base uncovered during the animation
// and its rank/suit peek behind the incoming card.
let waste_buffer_id: Option<Card> = {
let visible = match game.draw_mode() {
DrawStockConfig::DrawOne => 1_usize,
DrawStockConfig::DrawThree => 3_usize,
};
let waste_cards = game.waste_cards();
(waste_cards.len() > visible)
.then_some(waste_cards)
.and_then(|w| w.get(w.len().saturating_sub(visible + 1)).cloned())
.map(|(c, _face_up)| c)
};
// Map Card -> (Entity, current_translation, anim_end) for in-place
// updates. `anim_end` is `Some(end_xy)` when a curve-based `CardAnimation`
// is currently driving the card (e.g. a drag-rejection return tween).
//
// In the position loop below we compare `anim_end` against the new game-
// state target position to decide whether to honour or cancel the tween:
// • end ≈ target → animation is still heading to the right place; let
// it finish (skip the snap/slide path).
// • end ≠ target → the game state has changed (e.g. a new game started
// while the win-cascade was mid-flight); cancel the
// stale `CardAnimation` and apply the new position.
let mut existing: HashMap<Card, (Entity, Vec3, Option<Vec2>, Option<CardChildrenKey>)> =
HashMap::new();
for (entity, marker, transform, anim, children_key) in entities.iter() {
existing.insert(
marker.card.clone(),
(
entity,
transform.translation,
anim.map(|a| a.end),
children_key.copied(),
),
);
}
let live_ids: HashSet<Card> = positions.iter().map(|(c, _, _)| c.0.clone()).collect();
// Despawn any entity whose card is no longer tracked.
for (card, (entity, _, _, _)) in &existing {
if !live_ids.contains(card) {
commands.entity(*entity).despawn();
}
}
// For each card in the current state: spawn or update its entity, then
// apply visibility. The waste buffer card is hidden so it cannot peek
// behind the incoming top card during the draw slide animation.
for ((card, face_up), position, z) in positions {
let entity = match existing.get(&card) {
Some(&(entity, cur, anim_end, children_key)) => {
// If a CardAnimation is in flight, check whether its destination
// still matches the game-state target. If the game moved the card
// elsewhere (e.g. new game started during a win-cascade scatter),
// cancel the stale tween so the card snaps/slides to its new home.
let has_anim = match anim_end {
Some(end_xy) if (end_xy - position).length() > 2.0 => {
commands.entity(entity).remove::<CardAnimation>();
false
}
Some(_) => true,
None => false,
};
update_card_entity(
&mut commands,
entity,
&card,
face_up,
position,
z,
layout,
slide_secs,
back_colour,
color_blind,
high_contrast,
cur,
has_anim,
children_key,
card_images,
selected_back,
font_handle,
);
entity
}
None => spawn_card_entity(
&mut commands,
&card,
face_up,
position,
z,
layout,
back_colour,
color_blind,
high_contrast,
card_images,
selected_back,
font_handle,
),
};
let visibility = if waste_buffer_id.as_ref() == Some(&card) {
Visibility::Hidden
} else {
Visibility::Inherited
};
commands.entity(entity).insert(visibility);
}
}
/// Returns an ordered vec of ((card, face_up), position, z) for every card in the game.
pub(super) fn card_positions(game: &GameState, layout: &Layout) -> Vec<((Card, bool), Vec2, f32)> {
let mut out: Vec<((Card, bool), Vec2, f32)> = Vec::with_capacity(52);
let piles = [
(KlondikePile::Stock, true),
(KlondikePile::Stock, false),
(KlondikePile::Foundation(Foundation::Foundation1), false),
(KlondikePile::Foundation(Foundation::Foundation2), false),
(KlondikePile::Foundation(Foundation::Foundation3), false),
(KlondikePile::Foundation(Foundation::Foundation4), false),
(KlondikePile::Tableau(Tableau::Tableau1), false),
(KlondikePile::Tableau(Tableau::Tableau2), false),
(KlondikePile::Tableau(Tableau::Tableau3), false),
(KlondikePile::Tableau(Tableau::Tableau4), false),
(KlondikePile::Tableau(Tableau::Tableau5), false),
(KlondikePile::Tableau(Tableau::Tableau6), false),
(KlondikePile::Tableau(Tableau::Tableau7), false),
];
// Draw-Three waste fan step, proportional to the column spacing so it scales
// with the platform's H_GAP_DIVISOR. Shared with input_plugin's hit-test via
// `waste_fan_step` so the two never drift (a drift puts the top fanned card's
// click target on the card beneath it).
let waste_fan_step = waste_fan_step(layout);
for (pile_type, is_stock_area) in piles {
let Some(mut base) = layout.pile_positions.get(&pile_type).copied() else {
continue;
};
if matches!(pile_type, KlondikePile::Stock) && is_stock_area {
base.x -= tableau_col_step(layout);
}
let is_tableau = matches!(pile_type, KlondikePile::Tableau(_));
let is_waste = matches!(pile_type, KlondikePile::Stock) && !is_stock_area;
let cards = if matches!(pile_type, KlondikePile::Stock) {
if is_stock_area {
game.stock_cards()
} else {
game.waste_cards()
}
} else {
game.pile(pile_type)
};
// Tableau uses a two-speed fan: face-down cards are packed tighter
// than face-up cards so the visible (playable) portion stands out.
// Non-tableau piles stack with a negligible offset.
//
// Waste pile: only the top N cards are rendered to prevent bleed-through
// while new cards animate in from the stock. Draw-One shows 1; Draw-Three
// shows up to 3 fanned in X (matching the standard Klondike presentation).
let render_start = if is_waste {
let visible = match game.draw_mode() {
DrawStockConfig::DrawOne => 1_usize,
DrawStockConfig::DrawThree => 3_usize,
};
// Render one extra card so that the card sliding off the waste
// during a draw animation is still present in the world at z=0
// (hidden under the stack) rather than vanishing mid-tween.
cards.len().saturating_sub(visible + 1)
} else {
0
};
let mut y_offset = 0.0_f32;
let rendered_len = cards[render_start..].len();
for (slot, (card, face_up)) in cards[render_start..].iter().enumerate() {
let x_offset = if is_waste && matches!(game.draw_mode(), DrawStockConfig::DrawThree) {
// When len > visible, slot 0 is a hidden buffer card kept at
// x=0 to prevent a flash during the draw tween. When len ≤
// visible (small pile), every card is visible and should fan
// normally — no card is hidden, so the shift is 0.
let visible = 3_usize;
let hidden = rendered_len.saturating_sub(visible);
slot.saturating_sub(hidden) as f32 * waste_fan_step
} else {
0.0
};
let pos = Vec2::new(base.x + x_offset, base.y + y_offset);
let z = 1.0 + (slot as f32) * STACK_FAN_FRAC;
out.push(((card.clone(), *face_up), pos, z));
if is_tableau {
let step = if *face_up {
layout.tableau_fan_frac
} else {
layout.tableau_facedown_fan_frac
};
y_offset -= layout.card_size.y * step;
}
}
}
out
}
pub(super) fn all_cards(game: &GameState) -> Vec<(Card, bool)> {
let mut cards: Vec<(Card, bool)> = Vec::with_capacity(52);
cards.extend(game.stock_cards());
cards.extend(game.waste_cards());
for foundation in [
Foundation::Foundation1,
Foundation::Foundation2,
Foundation::Foundation3,
Foundation::Foundation4,
] {
cards.extend(game.pile(KlondikePile::Foundation(foundation)));
}
for tableau in [
Tableau::Tableau1,
Tableau::Tableau2,
Tableau::Tableau3,
Tableau::Tableau4,
Tableau::Tableau5,
Tableau::Tableau6,
Tableau::Tableau7,
] {
cards.extend(game.pile(KlondikePile::Tableau(tableau)));
}
cards
}
#[allow(clippy::too_many_arguments)]
pub(super) fn spawn_card_entity(
commands: &mut Commands,
card: &Card,
face_up: bool,
pos: Vec2,
z: f32,
layout: &Layout,
back_colour: Color,
color_blind: bool,
high_contrast: bool,
card_images: Option<&CardImageSet>,
selected_back: usize,
font_handle: Option<&Handle<Font>>,
) -> Entity {
let sprite = card_sprite(
card,
face_up,
layout.card_size,
back_colour,
card_images,
selected_back,
);
let mut entity = commands.spawn((
CardEntity { card: card.clone() },
sprite,
Transform::from_xyz(pos.x, pos.y, z),
Visibility::default(),
));
let entity_id = entity.id();
// Every card gets a subtle drop-shadow child so the play surface reads
// as physical instead of flat. Spawned in idle state; the drag-tracking
// system retunes its offset / alpha when this card joins the dragged
// stack.
entity.with_children(|b| {
add_card_shadow_child(b, layout.card_size);
});
// Every card gets a thin border frame so it reads as a distinct
// rectangle against the dark felt, regardless of face state.
entity.with_children(|b| {
add_card_back_frame_child(b, layout.card_size);
});
// When PNG faces are loaded the rank/suit are baked into the image.
// Only spawn the Text2d overlay in the solid-colour fallback (tests).
// On Android we additionally spawn a large-print corner label even in
// image mode so the rank/suit are legible at phone scale.
if card_images.is_none() {
entity.with_children(|b| {
b.spawn((
CardLabel,
Text2d::new(label_for(card)),
TextFont {
font_size: layout.card_size.x * FONT_SIZE_FRAC,
..default()
},
TextColor(text_colour(card, color_blind, high_contrast)),
Transform::from_xyz(0.0, 0.0, 0.01),
label_visibility(face_up),
));
});
}
if USE_TOUCH_UI_LAYOUT && card_images.is_some() {
entity.with_children(|b| {
add_android_corner_label(
b,
card,
face_up,
layout.card_size,
color_blind,
high_contrast,
font_handle,
);
});
}
// Record the appearance signature so subsequent `update_card_entity` calls
// can skip rebuilding these children until one of the inputs changes.
entity.insert(CardChildrenKey {
face_up,
card_size: layout.card_size,
color_blind,
high_contrast,
});
entity_id
}
#[allow(clippy::too_many_arguments)]
pub(super) fn update_card_entity(
commands: &mut Commands,
entity: Entity,
card: &Card,
face_up: bool,
pos: Vec2,
z: f32,
layout: &Layout,
slide_secs: f32,
back_colour: Color,
color_blind: bool,
high_contrast: bool,
cur: Vec3,
has_card_animation: bool,
existing_children_key: Option<CardChildrenKey>,
card_images: Option<&CardImageSet>,
selected_back: usize,
font_handle: Option<&Handle<Font>>,
) {
let target = Vec3::new(pos.x, pos.y, z);
// Always refresh the visual appearance.
commands.entity(entity).insert(card_sprite(
card,
face_up,
layout.card_size,
back_colour,
card_images,
selected_back,
));
// Skip the snap/slide path entirely when a curve-based `CardAnimation`
// is driving this card (e.g. the drag-rejection return tween). Writing
// `Transform` here would race that animation each frame and cause a
// visible jump. The animation system snaps the final position itself
// when it completes.
if !has_card_animation {
// Slide to the new position when it differs meaningfully; snap otherwise.
if (cur.truncate() - target.truncate()).length() > 1.0 && slide_secs > 0.0 {
// Lift the card immediately on the first frame of the animation so
// it never appears behind a card that is already resting at the
// destination slot. `advance_card_anims` will maintain this lift
// throughout the tween and snap to `target` (without lift) on
// completion.
let start = Vec3::new(cur.x, cur.y, z + CARD_ANIM_Z_LIFT);
commands
.entity(entity)
.insert(Transform::from_translation(start))
.insert(CardAnim {
start,
target,
elapsed: 0.0,
duration: slide_secs,
delay: 0.0,
});
} else {
commands
.entity(entity)
.remove::<CardAnim>()
.insert(Transform::from_xyz(pos.x, pos.y, z));
}
}
// Rebuild the card's child visuals (drop-shadow, border frame, and the
// rank/suit label / large-print corner overlay) only when an input that
// affects them actually changed. The child set depends solely on
// `CardChildrenKey`; the face/back image is carried by the always-refreshed
// `Sprite` above, so theme/card-back swaps need no child rebuild. Skipping
// this on a position-only move avoids despawning and respawning the child
// entities (incl. a `Text2d` glyph re-layout) for all 52 cards on every
// `StateChangedEvent` — the spike that stuttered the slide animation on
// high-resolution devices.
let new_children_key = CardChildrenKey {
face_up,
card_size: layout.card_size,
color_blind,
high_contrast,
};
if existing_children_key != Some(new_children_key) {
commands.entity(entity).despawn_related::<Children>();
commands.entity(entity).with_children(|b| {
add_card_shadow_child(b, layout.card_size);
});
commands.entity(entity).with_children(|b| {
add_card_back_frame_child(b, layout.card_size);
});
if card_images.is_none() {
commands.entity(entity).with_children(|b| {
b.spawn((
CardLabel,
Text2d::new(label_for(card)),
TextFont {
font_size: layout.card_size.x * FONT_SIZE_FRAC,
..default()
},
TextColor(text_colour(card, color_blind, high_contrast)),
Transform::from_xyz(0.0, 0.0, 0.01),
label_visibility(face_up),
));
});
}
if USE_TOUCH_UI_LAYOUT && card_images.is_some() {
commands.entity(entity).with_children(|b| {
add_android_corner_label(
b,
card,
face_up,
layout.card_size,
color_blind,
high_contrast,
font_handle,
);
});
}
commands.entity(entity).insert(new_children_key);
}
}
@@ -3,6 +3,15 @@ use crate::game_plugin::GamePlugin;
use crate::layout::TABLEAU_FAN_FRAC;
use crate::table_plugin::TablePlugin;
use solitaire_core::Deck;
use bevy::window::WindowResized;
use solitaire_core::{Card, Rank, Suit};
use std::collections::HashSet;
use crate::events::StateChangedEvent;
use crate::layout::LayoutResource;
use crate::resources::DragState;
use crate::ui_theme::TEXT_PRIMARY_HC;
use solitaire_core::{DrawStockConfig, game_state::GameState};
/// Convenience constructor — all unit tests use Deck1.
fn make_card(suit: Suit, rank: Rank) -> Card {
+430
View File
@@ -0,0 +1,430 @@
//! HUD feedback effects: action-bar fades, score pulses and floaters,
//! and streak flourishes.
use super::*;
/// Auto-fade state for the action button bar. The bar fades out when
/// the cursor is in the play area (below the HUD band) and back in when
/// the cursor approaches the top of the window — same UX as a video
/// player's auto-hide controls. Buttons remain fully interactive when
/// visible; when faded out they're geometrically out of cursor reach
/// (hover requires the cursor to be on a button), so no extra
/// pointer-events guard is needed.
#[derive(Resource, Debug, Clone, Copy)]
pub struct HudActionFade {
/// Currently displayed alpha. Lerped toward `target` each frame.
pub alpha: f32,
/// Where `alpha` is heading — 0.0 (faded out) or 1.0 (visible).
pub target: f32,
}
impl Default for HudActionFade {
fn default() -> Self {
// Start visible so the player sees the controls on first launch
// before they've moved the cursor anywhere.
Self {
alpha: 1.0,
target: 1.0,
}
}
}
/// How many pixels from the bottom edge the cursor must be to reveal the bar.
/// Set slightly taller than `HUD_BAND_HEIGHT` so the bar fades in as the
/// cursor approaches, not only when it crosses into the band itself.
#[cfg(not(target_os = "android"))]
const ACTION_FADE_REVEAL_PX: f32 = HUD_BAND_HEIGHT + 32.0;
/// Lerp rate for fading (per second). 6.0 ≈ 167 ms for a full
/// transition — fast enough to feel responsive without flashing on
/// brief cursor wanders into the reveal zone.
#[cfg(not(target_os = "android"))]
const ACTION_FADE_RATE_PER_SEC: f32 = 6.0;
/// Updates the fade state from cursor position. Sets `target = 1.0` if
/// the cursor is in the reveal zone (bottom of window) or off-screen
/// (player is using keyboard); `0.0` otherwise. Lerps `alpha` toward
/// `target` at a fixed rate so the visual transition is smooth across
/// variable framerates.
#[cfg(not(target_os = "android"))]
pub(super) fn update_action_fade(windows: Query<&Window>, time: Res<Time>, mut fade: ResMut<HudActionFade>) {
let Ok(window) = windows.single() else {
return;
};
let height = window.resolution.height();
fade.target = match window.cursor_position() {
Some(pos) if pos.y >= height - ACTION_FADE_REVEAL_PX => 1.0,
Some(_) => 0.0,
// Off-window cursor: assume keyboard navigation and keep the
// bar visible so Tab cycling doesn't lead to invisible focus.
None => 1.0,
};
let dt = time.delta_secs();
let max_step = ACTION_FADE_RATE_PER_SEC * dt;
let diff = fade.target - fade.alpha;
fade.alpha = (fade.alpha + diff.clamp(-max_step, max_step)).clamp(0.0, 1.0);
}
/// Applies the current fade alpha to every action button's
/// `BackgroundColor` and to its child label / hotkey-chip text. Runs in
/// `Last` (after `paint_action_buttons`) so a hover-state change in the
/// same frame doesn't override the fade with an opaque idle / hover
/// colour.
#[cfg(not(target_os = "android"))]
#[allow(clippy::type_complexity)]
pub(super) fn apply_action_fade(
fade: Res<HudActionFade>,
// Excludes `PopoverRow` so the auto-fade only applies to the
// top-level action bar buttons. Popover rows live inside an
// explicitly-opened dropdown panel and need to stay visible
// regardless of the bar's fade state — without the exclusion
// the rows fade to invisible while the popover container stays
// visible, leaving a solid background block with no readable
// content.
mut buttons: Query<
(&Children, &mut BackgroundColor),
(With<ActionButton>, Without<PopoverRow>),
>,
mut text_q: Query<&mut TextColor>,
) {
for (children, mut bg) in &mut buttons {
let mut c = bg.0;
c.set_alpha(fade.alpha);
bg.0 = c;
for child in children.iter() {
if let Ok(mut tc) = text_q.get_mut(child) {
let mut cc = tc.0;
cc.set_alpha(fade.alpha);
tc.0 = cc;
}
}
}
}
/// Visual feedback for every action button — paints idle / hover / pressed
/// states by mutating `BackgroundColor` whenever the interaction state
/// changes. One query covers all action buttons via the shared
/// `ActionButton` marker.
#[allow(clippy::type_complexity)]
pub(super) fn paint_action_buttons(
mut buttons: Query<
(&Interaction, &mut BackgroundColor),
(With<ActionButton>, Changed<Interaction>),
>,
) {
for (interaction, mut bg) in &mut buttons {
bg.0 = match interaction {
Interaction::Pressed => ACTION_BTN_PRESSED,
Interaction::Hovered => ACTION_BTN_HOVER,
Interaction::None => ACTION_BTN_IDLE,
};
}
}
/// Triangular 1.0 → 1.1 → 1.0 curve used by the score pulse. Pure
/// function so the test suite can assert on the curve directly
/// without spinning up a Bevy app.
///
/// The brief proposed `if t < 0.5 { 1.0 + 0.2*t } else { 1.2 - 0.2*(t-0.5) }`,
/// but that yields a discontinuity at t=0.5 (jumps from 1.1 → 1.2) and
/// ends at 1.1 instead of 1.0. The corrected form below preserves the
/// intent ("1.0 → 1.1 → 1.0 over the duration") with a continuous
/// triangle peaking at 1.1.
pub(super) fn score_pulse_scale(t: f32) -> f32 {
let clamped = t.clamp(0.0, 1.0);
if clamped < 0.5 {
1.0 + 0.2 * clamped
} else {
1.1 - 0.2 * (clamped - 0.5)
}
}
/// Vertical pixels the floating "+N" drifts up over its lifetime.
const FLOATER_DRIFT_PX: f32 = 40.0;
/// Diffs the current `GameStateResource.score` against
/// [`PreviousScore`]. On a positive delta:
///
/// - Inserts (or refreshes) a [`ScorePulse`] on every [`HudScore`] entity
/// so the readout pulses 1.0 → 1.1 → 1.0.
/// - When the delta is ≥ [`SCORE_FLOATER_THRESHOLD`], spawns a floating
/// "+N" UI text in `ACCENT_PRIMARY` anchored just below the score
/// readout (see the doc comment on [`ScoreFloater`] for why this is a
/// UI Node rather than a `Text2d`).
pub(super) fn detect_score_change(
game: Res<GameStateResource>,
settings: Option<Res<SettingsResource>>,
mut prev: ResMut<PreviousScore>,
font_res: Option<Res<FontResource>>,
score_q: Query<Entity, With<HudScore>>,
mut commands: Commands,
) {
let current = game.0.score();
let delta = current - prev.0;
prev.0 = current;
if delta <= 0 {
return;
}
let reduce_motion = settings.as_deref().is_some_and(|s| s.0.reduce_motion_mode);
if reduce_motion {
return;
}
let speed = settings
.as_ref()
.map(|s| s.0.animation_speed)
.unwrap_or_default();
let pulse_secs = scaled_duration(MOTION_SCORE_PULSE_SECS, speed);
let floater_secs = scaled_duration(MOTION_SCORE_PULSE_SECS * 2.0, speed);
// Refresh ScorePulse on every score readout entity (in practice
// there's exactly one, but iterating is cheaper than asserting).
for entity in &score_q {
commands.entity(entity).insert(ScorePulse {
elapsed: 0.0,
duration: pulse_secs,
});
}
if delta < SCORE_FLOATER_THRESHOLD {
return;
}
let font = TextFont {
font: font_res.as_ref().map(|f| f.0.clone()).unwrap_or_default(),
font_size: TYPE_BODY_LG,
..default()
};
// Spawned as an absolutely-positioned UI Node so the floater rides
// the same screen-coordinate system as the score readout. Using a
// `Text2d` here would require translating UI layout coordinates to
// world space every frame; a UI node piggybacks on the same
// anchoring `update_hud` already uses for the score and stays
// testable under `MinimalPlugins`.
commands.spawn((
ScoreFloater {
elapsed: 0.0,
duration: floater_secs,
},
Node {
position_type: PositionType::Absolute,
// Anchored next to the HUD column; matches the
// `spawn_hud` left/top offsets so the floater appears
// overlaid on the score line and drifts up from there.
left: VAL_SPACE_3,
top: Val::Px(0.0),
..default()
},
ZIndex(Z_HUD_TOP),
Text::new(format!("+{delta}")),
font,
TextColor(ACCENT_PRIMARY),
));
}
/// Advances every [`ScorePulse`], scaling its entity's `Transform`
/// using [`score_pulse_scale`]. Removes the component once
/// `elapsed >= duration` (or immediately under
/// [`AnimSpeed::Instant`](solitaire_data::AnimSpeed) where duration is
/// 0) and pins the scale back to 1.0 so no float drift survives.
pub(super) fn advance_score_pulse(
time: Res<Time>,
mut commands: Commands,
mut q: Query<(Entity, &mut ScorePulse, &mut Transform)>,
) {
let dt = time.delta_secs();
for (entity, mut pulse, mut transform) in &mut q {
let t = if pulse.duration <= 0.0 {
1.0
} else {
pulse.elapsed += dt;
(pulse.elapsed / pulse.duration).clamp(0.0, 1.0)
};
let scale = score_pulse_scale(t);
transform.scale = Vec3::new(scale, scale, 1.0);
if t >= 1.0 {
transform.scale = Vec3::ONE;
commands.entity(entity).remove::<ScorePulse>();
}
}
}
/// Advances every [`ScoreFloater`]: drifts the node upward by up to
/// [`FLOATER_DRIFT_PX`] and fades the text colour to transparent over
/// its lifetime. Despawns the entity once `elapsed >= duration`.
pub(super) fn advance_score_floater(
time: Res<Time>,
mut commands: Commands,
mut nodes: Query<(Entity, &mut ScoreFloater, &mut Node, &mut TextColor)>,
) {
let dt = time.delta_secs();
for (entity, mut floater, mut node, mut color) in &mut nodes {
let t = if floater.duration <= 0.0 {
1.0
} else {
floater.elapsed += dt;
(floater.elapsed / floater.duration).clamp(0.0, 1.0)
};
// Drift upward: top decreases as t grows. Starting top=0 keeps
// the floater on the score line; ending at -FLOATER_DRIFT_PX
// pulls it up off the readout.
node.top = Val::Px(-FLOATER_DRIFT_PX * t);
// Linear fade: ACCENT_PRIMARY at t=0 → fully transparent at t=1.
let mut c = ACCENT_PRIMARY;
c.set_alpha(1.0 - t);
color.0 = c;
if t >= 1.0 {
commands.entity(entity).despawn();
}
}
}
// ---------------------------------------------------------------------------
// Streak-milestone flourish
//
// Per the 2026-04-30 UX overhaul plan, the foundation flourish is the per-suit
// completion celebration; the streak flourish is its lifetime equivalent —
// when the player's `win_streak_current` crosses 3, 5, or 10, the HUD score
// readout pulses larger than a normal score-change pulse and tints magenta
// (`ACCENT_SECONDARY`) before snapping back to its resting state.
//
// Why the score readout: there is no always-on streak number on the HUD
// today (the readout lives in the Stats overlay), and the score is the
// most prominent always-visible HUD figure. The accompanying `InfoToastEvent`
// fired by `stats_plugin` carries the explicit "Win streak: N!" text so a
// player who isn't watching the score still sees the celebration land.
// ---------------------------------------------------------------------------
/// Pure helper for unit tests — returns the per-frame scale factor for
/// the streak flourish at `elapsed_secs` over `duration_secs`.
///
/// Triangular curve, mirroring [`foundation_flourish_scale`](crate::feedback_anim_plugin::foundation_flourish_scale):
/// at `t = 0.0` returns `1.0`, at `t = 0.5` returns
/// [`STREAK_FLOURISH_PEAK_SCALE`], at `t = 1.0` returns `1.0`.
/// Out-of-range values are clamped so the score readout never freezes
/// at a non-1.0 scale on the frame after the flourish ends.
///
/// Returns `1.0` whenever `duration_secs <= 0.0` so callers running
/// under `AnimSpeed::Instant` (zeroed durations) skip the flourish
/// without dividing by zero.
pub fn streak_flourish_scale(elapsed_secs: f32, duration_secs: f32) -> f32 {
if duration_secs <= 0.0 {
return 1.0;
}
let t = (elapsed_secs / duration_secs).clamp(0.0, 1.0);
let peak = STREAK_FLOURISH_PEAK_SCALE;
if t < 0.5 {
// Climb from 1.0 at t=0 to peak at t=0.5.
1.0 + (peak - 1.0) * (t / 0.5)
} else {
// Descend from peak at t=0.5 back to 1.0 at t=1.0.
peak - (peak - 1.0) * ((t - 0.5) / 0.5)
}
}
/// Inserts a [`StreakFlourish`] on every [`HudScore`] entity when a
/// [`WinStreakMilestoneEvent`] fires. Captures the readout's current
/// `TextColor` so `advance_streak_flourish` can restore it when the
/// timer expires; reuses any existing flourish's `original_color` so
/// re-entering the system mid-flourish doesn't snapshot the magenta
/// tint as the new "original".
///
/// Removes any concurrent [`ScorePulse`] from the same entity so the
/// flourish takes over the scale slot cleanly — score pulses last
/// 250 ms, the flourish 600 ms, and the streak crossing always
/// coincides with a positive score delta, so the flourish is the
/// louder of the two celebrations.
pub(super) fn start_streak_flourish(
mut events: MessageReader<WinStreakMilestoneEvent>,
settings: Option<Res<SettingsResource>>,
score_q: Query<(Entity, &TextColor, Option<&StreakFlourish>), With<HudScore>>,
mut commands: Commands,
) {
let Some(latest) = events.read().last() else {
return;
};
if settings.as_deref().is_some_and(|s| s.0.reduce_motion_mode) {
return;
}
let speed = settings
.as_ref()
.map(|s| s.0.animation_speed)
.unwrap_or_default();
let duration = scaled_duration(MOTION_STREAK_FLOURISH_SECS, speed);
for (entity, color, existing) in &score_q {
let original_color = existing.map_or(color.0, |f| f.original_color);
commands
.entity(entity)
.remove::<ScorePulse>()
.insert(StreakFlourish {
streak: latest.streak,
elapsed: 0.0,
duration,
original_color,
});
}
}
/// Advances every [`StreakFlourish`], scaling its entity's `Transform`
/// using [`streak_flourish_scale`] and lerping the `TextColor` toward
/// [`ACCENT_SECONDARY`] for the first half then back to the captured
/// `original_color`. Removes the component once `elapsed >= duration`
/// (or immediately under [`AnimSpeed::Instant`](solitaire_data::AnimSpeed)
/// where duration is 0) and pins the scale back to 1.0 / restores the
/// original colour so no half-state is ever shown.
///
/// Filtered with `Without<ScorePulse>` so the streak flourish never
/// races a score pulse for the same `Transform.scale` slot —
/// `start_streak_flourish` strips any concurrent `ScorePulse` from the
/// score entity before this system runs, so the filter is purely a
/// belt-and-braces invariant.
pub(super) fn advance_streak_flourish(
time: Res<Time>,
mut commands: Commands,
mut q: Query<
(Entity, &mut StreakFlourish, &mut Transform, &mut TextColor),
Without<ScorePulse>,
>,
) {
let dt = time.delta_secs();
for (entity, mut anim, mut transform, mut color) in &mut q {
let t = if anim.duration <= 0.0 {
1.0
} else {
anim.elapsed += dt;
(anim.elapsed / anim.duration).clamp(0.0, 1.0)
};
let scale = streak_flourish_scale(anim.elapsed, anim.duration);
transform.scale = Vec3::new(scale, scale, 1.0);
// Tint mix: full magenta at t=0..=0.5, fades back to the
// original colour over t=0.5..=1.0.
let mix = if t < 0.5 { 1.0 } else { 1.0 - (t - 0.5) / 0.5 };
color.0 = lerp_text_color(anim.original_color, ACCENT_SECONDARY, mix);
if t >= 1.0 {
transform.scale = Vec3::ONE;
color.0 = anim.original_color;
commands.entity(entity).remove::<StreakFlourish>();
}
}
}
/// sRGB-space linear interpolation between two `Color`s — small local
/// helper so `advance_streak_flourish` stays readable. sRGB-space
/// lerping is fine for a brief decorative tint (a perceptually-uniform
/// space would be overkill).
pub(super) fn lerp_text_color(from: Color, to: Color, t: f32) -> Color {
let from = from.to_srgba();
let to = to.to_srgba();
let t = t.clamp(0.0, 1.0);
Color::srgba(
from.red + (to.red - from.red) * t,
from.green + (to.green - from.green) * t,
from.blue + (to.blue - from.blue) * t,
from.alpha + (to.alpha - from.alpha) * t,
)
}
@@ -0,0 +1,616 @@
//! HUD interaction: action-button handlers, Modes/Menu popovers, and
//! the chrome tap-to-toggle gesture.
use super::*;
/// `Changed<Interaction>` filter ensures we only react on the frame the
/// interaction state transitions, avoiding repeat events while the button
/// is held down. Each click handler fires the corresponding request event,
/// which `pause_plugin` / `help_plugin` / `game_plugin` consume alongside
/// their existing keyboard handlers.
pub(super) fn handle_new_game_button(
interaction_query: Query<&Interaction, (With<NewGameButton>, Changed<Interaction>)>,
mut new_game: MessageWriter<NewGameRequestEvent>,
) {
for interaction in &interaction_query {
if *interaction == Interaction::Pressed {
new_game.write(NewGameRequestEvent::default());
}
}
}
pub(super) fn handle_undo_button(
interaction_query: Query<&Interaction, (With<UndoButton>, Changed<Interaction>)>,
mut undo: MessageWriter<UndoRequestEvent>,
) {
for interaction in &interaction_query {
if *interaction == Interaction::Pressed {
undo.write(UndoRequestEvent);
}
}
}
pub(super) fn handle_pause_button(
interaction_query: Query<&Interaction, (With<PauseButton>, Changed<Interaction>)>,
mut pause: MessageWriter<PauseRequestEvent>,
) {
for interaction in &interaction_query {
if *interaction == Interaction::Pressed {
pause.write(PauseRequestEvent);
}
}
}
pub(super) fn handle_help_button(
interaction_query: Query<&Interaction, (With<HelpButton>, Changed<Interaction>)>,
mut help: MessageWriter<HelpRequestEvent>,
) {
for interaction in &interaction_query {
if *interaction == Interaction::Pressed {
help.write(HelpRequestEvent);
}
}
}
pub(super) fn handle_hint_button(
interaction_query: Query<&Interaction, (With<HintButton>, Changed<Interaction>)>,
paused: Option<Res<PausedResource>>,
game: Option<Res<GameStateResource>>,
solver_config: Option<Res<crate::input_plugin::HintSolverConfig>>,
mut pending_hint: Option<ResMut<crate::pending_hint::PendingHintTask>>,
mut info_toast: MessageWriter<InfoToastEvent>,
) {
for interaction in &interaction_query {
if *interaction != Interaction::Pressed {
continue;
}
if paused.as_ref().is_some_and(|p| p.0) {
return;
}
let Some(ref g) = game else { return };
if g.0.is_won() {
info_toast.write(InfoToastEvent(HINT_WON_MSG.to_string()));
return;
}
if let (Some(cfg), Some(hint)) = (solver_config.as_ref(), pending_hint.as_mut()) {
hint.spawn(g.0.clone(), cfg.moves_budget, cfg.states_budget);
}
}
}
/// Toggles the [`ModesPopover`]: spawns it on first click, despawns it on
/// second click. Mode rows are populated per the player's current level so
/// only unlocked options appear.
pub(super) fn handle_modes_button(
interaction_query: Query<&Interaction, (With<ModesButton>, Changed<Interaction>)>,
popovers: Query<Entity, With<ModesPopover>>,
backdrops: Query<Entity, With<ModesPopoverBackdrop>>,
progress: Option<Res<ProgressResource>>,
daily: Option<Res<DailyChallengeResource>>,
font_res: Option<Res<FontResource>>,
mut commands: Commands,
) {
let pressed = interaction_query.iter().any(|i| *i == Interaction::Pressed);
if !pressed {
return;
}
if let Ok(entity) = popovers.single() {
commands.entity(entity).despawn();
for e in &backdrops {
commands.entity(e).despawn();
}
} else {
spawn_modes_popover(
&mut commands,
progress.as_deref(),
daily.as_deref(),
font_res.as_deref(),
);
}
}
/// Spawns the modes popover anchored just below the action bar's right
/// edge. Always includes Classic; includes Daily Challenge when a daily
/// resource is loaded; includes Zen / Challenge / Time Attack once the
/// player reaches the challenge unlock level.
pub(super) fn spawn_modes_popover(
commands: &mut Commands,
progress: Option<&ProgressResource>,
daily: Option<&DailyChallengeResource>,
font_res: Option<&FontResource>,
) {
let level = progress.map_or(0, |p| p.0.level);
let font = TextFont {
font: font_res.map(|f| f.0.clone()).unwrap_or_default(),
font_size: 15.0,
..default()
};
// Each row carries a tooltip alongside its label so hover reveals
// a one-line description of what the mode does — mirroring the
// tooltips on the action-bar buttons that opened this popover.
let mut rows: Vec<(ModeOption, &'static str, &'static str)> = vec![(
ModeOption::Classic,
"Classic",
"Standard Klondike. Score, timer, and full progression.",
)];
if daily.is_some() {
rows.push((
ModeOption::DailyChallenge,
"Daily Challenge",
"Today's seeded deal. Same for every player worldwide.",
));
}
if level >= CHALLENGE_UNLOCK_LEVEL {
rows.push((
ModeOption::Zen,
"Zen",
"No timer, no score, no penalties. Just play.",
));
rows.push((
ModeOption::Challenge,
"Challenge",
"Hand-picked hard seeds. No undo allowed.",
));
rows.push((
ModeOption::TimeAttack,
"Time Attack",
"Win as many games as you can in ten minutes.",
));
}
// Popover opens upward from just above the bottom action bar.
// Use a platform-aware offset that clears the bar height + safe-area
// gesture zone on Android, and the flat bar height on desktop.
let popover_bottom = Val::Px(ACTION_POPOVER_BOTTOM_PX);
commands
.spawn((
ModesPopover,
HudPopoverOpen,
Node {
position_type: PositionType::Absolute,
right: VAL_SPACE_3,
bottom: popover_bottom,
flex_direction: FlexDirection::Column,
row_gap: VAL_SPACE_1,
padding: UiRect::all(VAL_SPACE_2),
border_radius: BorderRadius::all(Val::Px(RADIUS_MD)),
..default()
},
BackgroundColor(BG_ELEVATED),
ZIndex(Z_HUD_POPOVER),
))
.with_children(|panel| {
for (option, label, tooltip) in rows {
panel
.spawn((
option,
ActionButton,
PopoverRow,
Button,
Tooltip::new(tooltip),
Node {
padding: UiRect::axes(VAL_SPACE_3, Val::Px(6.0)),
justify_content: JustifyContent::FlexStart,
align_items: AlignItems::Center,
min_width: Val::Px(150.0),
border_radius: BorderRadius::all(Val::Px(RADIUS_SM)),
..default()
},
BackgroundColor(ACTION_BTN_IDLE),
))
.with_children(|b| {
b.spawn((Text::new(label), font.clone(), TextColor(TEXT_PRIMARY)));
});
}
});
// Fullscreen transparent backdrop at Z_HUD_POPOVER_BACKDROP (below the
// popover at Z_HUD_POPOVER) so tapping outside light-dismisses it.
commands.spawn((
ModesPopoverBackdrop,
Button,
Node {
position_type: PositionType::Absolute,
left: Val::Px(0.0),
top: Val::Px(0.0),
width: Val::Percent(100.0),
height: Val::Percent(100.0),
..default()
},
BackgroundColor(Color::NONE),
ZIndex(Z_HUD_POPOVER_BACKDROP),
));
}
/// Dispatches the click on a popover row to the matching request event,
/// then despawns the popover.
///
/// Classic uses [`NewGameRequestEvent`] directly; the other modes use
/// their `Start*RequestEvent` so the existing keyboard handler runs
/// (level gates, `TimeAttackResource` setup, daily seed lookup, etc.) —
/// the popover stays a thin entry point and never duplicates that logic.
#[allow(clippy::too_many_arguments)]
pub(super) fn handle_mode_option_click(
interaction_query: Query<(&Interaction, &ModeOption), Changed<Interaction>>,
popovers: Query<Entity, With<ModesPopover>>,
backdrops: Query<Entity, With<ModesPopoverBackdrop>>,
mut new_game: MessageWriter<NewGameRequestEvent>,
mut zen: MessageWriter<StartZenRequestEvent>,
mut challenge: MessageWriter<StartChallengeRequestEvent>,
mut time_attack: MessageWriter<StartTimeAttackRequestEvent>,
mut daily: MessageWriter<StartDailyChallengeRequestEvent>,
mut commands: Commands,
) {
let mut clicked_any = false;
for (interaction, option) in &interaction_query {
if *interaction != Interaction::Pressed {
continue;
}
clicked_any = true;
match option {
ModeOption::Classic => {
new_game.write(NewGameRequestEvent::default());
}
ModeOption::DailyChallenge => {
daily.write(StartDailyChallengeRequestEvent);
}
ModeOption::Zen => {
zen.write(StartZenRequestEvent);
}
ModeOption::Challenge => {
challenge.write(StartChallengeRequestEvent);
}
ModeOption::TimeAttack => {
time_attack.write(StartTimeAttackRequestEvent);
}
}
}
if clicked_any && let Ok(entity) = popovers.single() {
commands.entity(entity).despawn();
for e in &backdrops {
commands.entity(e).despawn();
}
}
}
/// Toggles the [`MenuPopover`]: spawns it on first click, despawns it on
/// second click. The popover lists the five overlays previously only
/// reachable via the S / A / P / O / L hotkeys.
pub(super) fn handle_menu_button(
interaction_query: Query<&Interaction, (With<MenuButton>, Changed<Interaction>)>,
popovers: Query<Entity, With<MenuPopover>>,
backdrops: Query<Entity, With<MenuPopoverBackdrop>>,
scrims: Query<(), With<ModalScrim>>,
font_res: Option<Res<FontResource>>,
mut commands: Commands,
) {
let pressed = interaction_query.iter().any(|i| *i == Interaction::Pressed);
if !pressed {
return;
}
if let Ok(entity) = popovers.single() {
commands.entity(entity).despawn();
for e in &backdrops {
commands.entity(e).despawn();
}
} else if scrims.is_empty() {
spawn_menu_popover(&mut commands, font_res.as_deref());
}
}
/// Spawns the menu popover anchored just below the action bar, with one
/// row per overlay. Each row dispatches its corresponding
/// `Toggle*RequestEvent` so the existing toggle handler runs (and the
/// HUD never duplicates spawn / despawn / fetch logic).
pub(super) fn spawn_menu_popover(commands: &mut Commands, font_res: Option<&FontResource>) {
let font = TextFont {
font: font_res.map(|f| f.0.clone()).unwrap_or_default(),
font_size: 15.0,
..default()
};
// Each row carries a tooltip alongside its label so hover reveals
// a one-line description of what each overlay shows — mirroring
// the tooltips on the action-bar buttons that opened this popover.
let rows: [(MenuOption, &'static str, &'static str); 7] = [
(
MenuOption::Help,
"Help",
"Show controls, rules, and keyboard shortcuts.",
),
(
MenuOption::Modes,
"Game Modes",
"Switch modes: Classic, Daily, Zen, Challenge, Time Attack.",
),
(
MenuOption::Stats,
"Stats",
"Lifetime totals: wins, streaks, fastest time, best score.",
),
(
MenuOption::Achievements,
"Achievements",
"Browse unlocked achievements and the rewards still ahead.",
),
(
MenuOption::Profile,
"Profile",
"Your level, XP progress, and sync status.",
),
(
MenuOption::Settings,
"Settings",
"Audio, animations, theme, draw mode, and sync.",
),
(
MenuOption::Leaderboard,
"Leaderboard",
"Top players from your sync server. Opt in from Profile.",
),
];
// Same upward-opening placement as ModesPopover.
let popover_bottom = Val::Px(ACTION_POPOVER_BOTTOM_PX);
commands
.spawn((
MenuPopover,
HudPopoverOpen,
Node {
position_type: PositionType::Absolute,
right: VAL_SPACE_3,
bottom: popover_bottom,
flex_direction: FlexDirection::Column,
row_gap: VAL_SPACE_1,
padding: UiRect::all(VAL_SPACE_2),
border_radius: BorderRadius::all(Val::Px(RADIUS_MD)),
..default()
},
BackgroundColor(BG_ELEVATED),
ZIndex(Z_HUD_POPOVER),
))
.with_children(|panel| {
for (option, label, tooltip) in rows {
panel
.spawn((
option,
ActionButton,
PopoverRow,
Button,
Tooltip::new(tooltip),
Node {
padding: UiRect::axes(VAL_SPACE_3, Val::Px(6.0)),
justify_content: JustifyContent::FlexStart,
align_items: AlignItems::Center,
min_width: Val::Px(150.0),
border_radius: BorderRadius::all(Val::Px(RADIUS_SM)),
..default()
},
BackgroundColor(ACTION_BTN_IDLE),
))
.with_children(|b| {
b.spawn((Text::new(label), font.clone(), TextColor(TEXT_PRIMARY)));
});
}
});
// Transparent fullscreen backdrop behind the popover — tapping anywhere
// outside the panel light-dismisses it via handle_menu_backdrop_click.
commands.spawn((
MenuPopoverBackdrop,
Button,
Node {
position_type: PositionType::Absolute,
left: Val::Px(0.0),
top: Val::Px(0.0),
width: Val::Percent(100.0),
height: Val::Percent(100.0),
..default()
},
BackgroundColor(Color::NONE),
ZIndex(Z_HUD_POPOVER_BACKDROP),
));
}
/// Dispatches the click on a menu row to the matching toggle event,
/// then despawns the popover.
#[allow(clippy::too_many_arguments)]
pub(super) fn handle_menu_option_click(
interaction_query: Query<(&Interaction, &MenuOption), Changed<Interaction>>,
popovers: Query<Entity, With<MenuPopover>>,
backdrops: Query<Entity, With<MenuPopoverBackdrop>>,
mut stats: MessageWriter<ToggleStatsRequestEvent>,
mut achievements: MessageWriter<ToggleAchievementsRequestEvent>,
mut profile: MessageWriter<ToggleProfileRequestEvent>,
mut settings: MessageWriter<ToggleSettingsRequestEvent>,
mut leaderboard: MessageWriter<ToggleLeaderboardRequestEvent>,
mut help: MessageWriter<HelpRequestEvent>,
progress: Option<Res<ProgressResource>>,
daily: Option<Res<DailyChallengeResource>>,
font_res: Option<Res<FontResource>>,
mut commands: Commands,
) {
let mut clicked_any = false;
let mut open_modes = false;
for (interaction, option) in &interaction_query {
if *interaction != Interaction::Pressed {
continue;
}
clicked_any = true;
match option {
MenuOption::Help => {
help.write(HelpRequestEvent);
}
MenuOption::Modes => {
open_modes = true;
}
MenuOption::Stats => {
stats.write(ToggleStatsRequestEvent);
}
MenuOption::Achievements => {
achievements.write(ToggleAchievementsRequestEvent);
}
MenuOption::Profile => {
profile.write(ToggleProfileRequestEvent);
}
MenuOption::Settings => {
settings.write(ToggleSettingsRequestEvent);
}
MenuOption::Leaderboard => {
leaderboard.write(ToggleLeaderboardRequestEvent);
}
}
}
if clicked_any && let Ok(entity) = popovers.single() {
commands.entity(entity).despawn();
for e in &backdrops {
commands.entity(e).despawn();
}
}
if open_modes {
spawn_modes_popover(
&mut commands,
progress.as_deref(),
daily.as_deref(),
font_res.as_deref(),
);
}
}
/// Despawns the [`ModesPopover`] and its backdrop when Escape / Android back
/// is pressed while the popover is open. Runs so `PausePlugin`'s guard (which
/// checks [`HudPopoverOpen`]) sees an empty world and stays idle.
pub(super) fn close_modes_popover_on_escape(
keys: Res<ButtonInput<KeyCode>>,
popovers: Query<Entity, With<ModesPopover>>,
backdrops: Query<Entity, With<ModesPopoverBackdrop>>,
mut commands: Commands,
) {
if !keys.just_pressed(KeyCode::Escape) || popovers.is_empty() {
return;
}
for e in popovers.iter().chain(backdrops.iter()) {
commands.entity(e).despawn();
}
}
/// Despawns the [`MenuPopover`] and its backdrop when Escape / Android back
/// is pressed while the popover is open.
pub(super) fn close_menu_popover_on_escape(
keys: Res<ButtonInput<KeyCode>>,
popovers: Query<Entity, With<MenuPopover>>,
backdrops: Query<Entity, With<MenuPopoverBackdrop>>,
mut commands: Commands,
) {
if !keys.just_pressed(KeyCode::Escape) || popovers.is_empty() {
return;
}
for e in popovers.iter().chain(backdrops.iter()) {
commands.entity(e).despawn();
}
}
/// Despawns the [`ModesPopover`] and its backdrop when the player taps
/// anywhere outside the panel.
pub(super) fn handle_modes_backdrop_click(
interaction_query: Query<&Interaction, (With<ModesPopoverBackdrop>, Changed<Interaction>)>,
popovers: Query<Entity, With<ModesPopover>>,
backdrops: Query<Entity, With<ModesPopoverBackdrop>>,
mut commands: Commands,
) {
let pressed = interaction_query.iter().any(|i| *i == Interaction::Pressed);
if !pressed {
return;
}
for e in popovers.iter().chain(backdrops.iter()) {
commands.entity(e).despawn();
}
}
/// Despawns the [`MenuPopover`] and its backdrop when the player taps
/// anywhere outside the panel (i.e. the transparent backdrop is pressed).
pub(super) fn handle_menu_backdrop_click(
interaction_query: Query<&Interaction, (With<MenuPopoverBackdrop>, Changed<Interaction>)>,
popovers: Query<Entity, With<MenuPopover>>,
backdrops: Query<Entity, With<MenuPopoverBackdrop>>,
mut commands: Commands,
) {
let pressed = interaction_query.iter().any(|i| *i == Interaction::Pressed);
if !pressed {
return;
}
for e in popovers.iter().chain(backdrops.iter()) {
commands.entity(e).despawn();
}
}
#[cfg(target_os = "android")]
#[allow(clippy::too_many_arguments)]
pub(super) fn toggle_hud_on_tap(
mut touch_events: MessageReader<TouchInput>,
drag: Res<DragState>,
scrims: Query<(), With<ModalScrim>>,
paused: Option<Res<PausedResource>>,
mut tracker: ResMut<HudTapTracker>,
mut hud_vis: ResMut<HudVisibility>,
buttons: Query<&Interaction, With<ActionButton>>,
mut game_consumed: ResMut<GameInputConsumedResource>,
) {
use bevy::input::touch::TouchPhase;
if !scrims.is_empty() || paused.is_some_and(|p| p.0) {
// Drain buffered events so they don't replay in the frame after
// the scrim despawns, which would trigger a spurious visibility
// toggle as the resume/close button tap's Started+Ended pair
// replays in the now-scrim-free frame.
for _ in touch_events.read() {}
tracker.start_pos = None;
tracker.started_on_button = false;
game_consumed.0 = false;
return;
}
for event in touch_events.read() {
match event.phase {
TouchPhase::Started => {
tracker.start_pos = Some(event.position);
// Record whether the finger-down landed on a button so
// the finger-up doesn't double-fire (toggle bar + press
// button at the same time).
tracker.started_on_button = buttons.iter().any(|i| *i != Interaction::None);
}
TouchPhase::Ended if drag.is_idle() => {
// Also treat taps where game logic consumed the touch (e.g.
// drawing from stock) as "on button" so they don't toggle
// the HUD. The flag is set on TouchPhase::Started by the
// input system that consumed the tap and must be cleared here
// regardless of whether we toggle.
let on_button = tracker.started_on_button || game_consumed.0;
game_consumed.0 = false;
if let Some(start) = tracker.start_pos.take()
&& !on_button
&& (event.position - start).length() < HUD_TAP_SLOP_PX
{
*hud_vis = match *hud_vis {
HudVisibility::Visible => HudVisibility::Hidden,
HudVisibility::Hidden => HudVisibility::Visible,
};
}
tracker.started_on_button = false;
}
// Moved: don't clear start_pos — Android fires Moved for normal
// tap jitter, and the distance check at Ended already rejects
// real drags. Clearing here would silently swallow tap toggles.
TouchPhase::Canceled => {
tracker.start_pos = None;
tracker.started_on_button = false;
game_consumed.0 = false;
}
_ => {}
}
}
}
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//! HUD construction: band, columns, avatar, and action-bar spawning.
use super::*;
#[cfg(not(target_arch = "wasm32"))]
use crate::avatar_plugin::AvatarResource;
/// Spawns the invisible HUD band that reserves vertical space at the top of
/// the screen so the card layout (computed by `layout::compute_layout` using
/// `HUD_BAND_HEIGHT`) aligns correctly below the score readouts.
///
/// The entity carries no `BackgroundColor` — the green felt shows through.
/// A slim grey background is handled by each content section individually
/// (the bottom action bar has its own `BG_HUD_BAND` background).
pub(super) fn spawn_hud_band(mut commands: Commands) {
const BASE_TOP: f32 = 0.0;
commands.spawn((
Node {
position_type: PositionType::Absolute,
top: Val::Px(BASE_TOP),
left: Val::Px(0.0),
width: Val::Percent(100.0),
height: Val::Px(HUD_BAND_HEIGHT),
..default()
},
ZIndex(Z_HUD - 1),
SafeAreaAnchoredTop { base_top: BASE_TOP },
HudBand,
));
}
/// Spawns the in-game HUD as a 4-tier vertical column anchored to the
/// top-left of the play area.
///
/// Tiers (top to bottom):
/// 1. **Primary** — Score (display weight) · Moves · Timer.
/// Always visible during gameplay.
/// 2. **Mode context** — Mode badge · Daily-challenge constraint ·
/// Draw-cycle indicator. Each cell is empty when not relevant; the
/// row collapses visually when all cells are empty.
/// 3. **Penalty / bonus** — Undos · Recycles · Auto-complete badge.
/// Both penalty counters share `STATE_WARNING` (the audit found
/// they were inconsistent: Undos amber, Recycles white).
/// 4. **Selection** — keyboard-driven pile selector chip.
///
/// The audit identified the original single-row layout (10 readouts in
/// one horizontal flex row, 5+ colour families competing) as the
/// player's #1 complaint. This restructure groups by purpose, lets
/// transient items disappear cleanly, and uses the typography scale to
/// make Score the visual protagonist.
pub(super) fn spawn_hud(font_res: Option<Res<FontResource>>, mut commands: Commands) {
let font_handle = font_res.as_ref().map(|f| f.0.clone()).unwrap_or_default();
let font_score = TextFont {
font: font_handle.clone(),
font_size: TYPE_HEADLINE,
..default()
};
let font_lg = TextFont {
font: font_handle.clone(),
font_size: TYPE_BODY_LG,
..default()
};
let font_body = TextFont {
font: font_handle,
font_size: TYPE_BODY,
..default()
};
let row_node = || Node {
flex_direction: FlexDirection::Row,
column_gap: VAL_SPACE_3,
// On a narrow viewport the four tier rows (Score/Moves/Timer,
// Mode/Challenge/Draw-cycle/Won-previously, Undos/Recycles/
// Auto-complete, selection chip) can collectively be wider than
// the available space and overflow into the action-button column
// on the right. `flex_wrap: Wrap` lets each tier soft-wrap onto
// a second line; on a desktop window the rows stay single-line
// because the parent column has no width cap and the row never
// exceeds the natural line width.
flex_wrap: FlexWrap::Wrap,
row_gap: VAL_SPACE_1,
align_items: AlignItems::Baseline,
..default()
};
commands
.spawn((
Node {
position_type: PositionType::Absolute,
left: VAL_SPACE_3,
top: Val::Px(SPACE_2),
flex_direction: FlexDirection::Column,
// Cap the column at 50% of viewport so on narrow
// (mobile) widths the inner tier rows have a bounded
// width to wrap against, and the column can't bleed
// into the right-anchored action button row (also
// capped at 50%). On desktop 50% of 1920 = 960 px,
// wider than any tier row's natural width, so the
// visible layout is unaffected.
max_width: Val::Percent(50.0),
row_gap: VAL_SPACE_1,
..default()
},
ZIndex(Z_HUD),
SafeAreaAnchoredTop { base_top: SPACE_2 },
HudColumn,
))
.with_children(|hud| {
// Tier 1 — primary readouts. Score is the protagonist (HEADLINE);
// Moves and Timer are supporting context (BODY_LG, secondary tone).
hud.spawn(row_node()).with_children(|t1| {
t1.spawn((
HudScore,
Tooltip::new("Points earned this game. Hidden in Zen mode."),
Text::new("Score: 0"),
font_score.clone(),
TextColor(TEXT_PRIMARY),
));
t1.spawn((
HudMoves,
Tooltip::new("Moves you've made this game. Counts placements and stock draws."),
Text::new("Moves: 0"),
font_lg.clone(),
TextColor(TEXT_SECONDARY),
));
t1.spawn((
HudTime,
Tooltip::new("Time on this game. Counts down in Time Attack."),
Text::new("0:00"),
font_lg.clone(),
TextColor(TEXT_SECONDARY),
));
});
// Tier 2 — mode context. Each cell is empty until update_hud
// populates it (and clears it when no longer relevant), so the
// row collapses when nothing in this tier applies.
hud.spawn(row_node()).with_children(|t2| {
t2.spawn((
HudMode,
Tooltip::new("Active game mode. Click Modes to switch."),
Text::new(""),
font_body.clone(),
TextColor(ACCENT_PRIMARY),
));
t2.spawn((
HudChallenge,
Tooltip::new("Today's daily challenge target. Beat it for bonus XP."),
Text::new(""),
font_body.clone(),
TextColor(STATE_INFO),
));
t2.spawn((
HudDrawCycle,
Tooltip::new("Cards drawn on the next stock click in Draw-Three."),
Text::new(""),
font_body.clone(),
TextColor(STATE_INFO),
));
t2.spawn((
HudWonPreviously,
Tooltip::new("You've won this deal before. Same seed in your replay history."),
Text::new(""),
font_body.clone(),
TextColor(STATE_SUCCESS),
));
});
// Tier 3 — penalty / bonus. Undos and Recycles share the
// warning hue so they read as the same category ("you took a
// penalty"); the auto-complete badge stays success-green.
hud.spawn(row_node()).with_children(|t3| {
t3.spawn((
HudUndos,
Tooltip::new("Undos used this game. Any undo blocks the No Undo achievement."),
Text::new(""),
font_body.clone(),
TextColor(STATE_WARNING),
));
t3.spawn((
HudRecycles,
Tooltip::new(
"Times you've recycled the stock. Three or more unlocks Comeback.",
),
Text::new(""),
font_body.clone(),
TextColor(STATE_WARNING),
));
t3.spawn((
HudAutoComplete,
Tooltip::new("Board is solvable from here. Press Enter to auto-finish."),
Text::new(""),
font_body.clone(),
TextColor(STATE_SUCCESS),
));
});
// Tier 4 — selection chip. Stays in HUD for now; a future
// pass can reposition it next to the selected pile.
hud.spawn(row_node()).with_children(|t4| {
t4.spawn((
HudSelection,
Tooltip::new("Pile selected with Tab. Use arrows or Enter to act."),
Text::new(""),
font_body,
TextColor(ACCENT_SECONDARY),
));
});
});
}
/// Spawns the circular avatar / initials button anchored to the top-right
/// of the HUD band. Initial content is seeded from whatever resources are
/// available at startup; `update_hud_avatar` replaces the children whenever
/// `AvatarResource` or `SettingsResource` later changes.
pub(super) fn spawn_hud_avatar(
font_res: Option<Res<FontResource>>,
avatar: Option<Res<AvatarResource>>,
settings: Option<Res<SettingsResource>>,
mut commands: Commands,
) {
const SIZE: f32 = 32.0;
let id = commands
.spawn((
HudAvatar,
Button,
Tooltip::new("Your profile — tap to open."),
Node {
position_type: PositionType::Absolute,
top: Val::Px(SPACE_2),
right: VAL_SPACE_3,
width: Val::Px(SIZE),
height: Val::Px(SIZE),
border_radius: BorderRadius::all(Val::Px(SIZE / 2.0)),
align_items: AlignItems::Center,
justify_content: JustifyContent::Center,
..default()
},
BackgroundColor(ACCENT_PRIMARY),
ZIndex(Z_HUD),
SafeAreaAnchoredTop { base_top: SPACE_2 },
))
.id();
spawn_avatar_child(
&mut commands,
id,
avatar.as_deref(),
settings.as_deref(),
font_res.as_deref(),
);
}
/// Re-spawns the avatar circle content (image or initials) whenever either
/// [`AvatarResource`] or [`SettingsResource`] changes — covers both the
/// image arriving after download and the username changing after login.
pub(super) fn update_hud_avatar(
avatar: Option<Res<AvatarResource>>,
settings: Option<Res<SettingsResource>>,
font_res: Option<Res<FontResource>>,
q: Query<Entity, With<HudAvatar>>,
mut commands: Commands,
) {
let avatar_changed = avatar.as_ref().is_some_and(|r| r.is_changed());
let settings_changed = settings.as_ref().is_some_and(|r| r.is_changed());
if !avatar_changed && !settings_changed {
return;
}
let Ok(entity) = q.single() else {
return;
};
commands.entity(entity).despawn_related::<Children>();
spawn_avatar_child(
&mut commands,
entity,
avatar.as_deref(),
settings.as_deref(),
font_res.as_deref(),
);
}
/// Populates the avatar container with either the downloaded image or an
/// initials fallback disc. Called from both the startup spawn and the
/// reactive update system so the rendering logic lives in one place.
pub(super) fn spawn_avatar_child(
commands: &mut Commands,
parent: Entity,
avatar: Option<&AvatarResource>,
settings: Option<&SettingsResource>,
font_res: Option<&FontResource>,
) {
const SIZE: f32 = 32.0;
if let Some(handle) = avatar.and_then(|a| a.0.clone()) {
// Logged-in with a downloaded avatar: keep the accent disc behind it.
commands.entity(parent).insert(BackgroundColor(ACCENT_PRIMARY));
// Image fills the circle container; border_radius clips it to a disc.
commands.entity(parent).with_children(|b| {
b.spawn((
ImageNode::new(handle),
Node {
width: Val::Px(SIZE),
height: Val::Px(SIZE),
border_radius: BorderRadius::all(Val::Px(SIZE / 2.0)),
..default()
},
));
});
} else {
let initial = settings
.and_then(|s| match &s.0.sync_backend {
SyncBackend::SolitaireServer { username, .. } => username.chars().next(),
SyncBackend::Local => None,
})
.and_then(|c| c.to_uppercase().next())
.unwrap_or('?');
// Real initial (logged in) keeps the red accent disc; the '?'
// unauthenticated fallback uses a neutral grey so it reads as a
// "tap to log in" affordance rather than an error.
let disc_bg = if initial == '?' {
BG_ELEVATED_HI
} else {
ACCENT_PRIMARY
};
commands.entity(parent).insert(BackgroundColor(disc_bg));
commands.entity(parent).with_children(|b| {
b.spawn((
Text::new(initial.to_string()),
TextFont {
font: font_res.map(|f| f.0.clone()).unwrap_or_default(),
font_size: 14.0,
..default()
},
TextColor(TEXT_PRIMARY),
));
});
}
}
/// Opens the Profile overlay when the avatar button is pressed.
pub(super) fn handle_avatar_button(
interaction_query: Query<&Interaction, (With<HudAvatar>, Changed<Interaction>)>,
mut toggle_profile: MessageWriter<ToggleProfileRequestEvent>,
) {
for interaction in &interaction_query {
if *interaction == Interaction::Pressed {
toggle_profile.write(ToggleProfileRequestEvent);
}
}
}
/// Spawns the action button bar anchored to the top-right of the window.
/// Each child is a clickable button mirroring a keyboard accelerator —
/// per the UI-first principle (CLAUDE.md / ARCHITECTURE.md §1) the buttons
/// are the primary entry point and the hotkeys are optional.
///
/// Order (left → right): Undo, Pause, Help, New Game. New Game is rightmost
/// because it's the most consequential action; the destructive button sits
/// on its own visual edge.
pub(super) fn spawn_action_buttons(
font_res: Option<Res<FontResource>>,
windows: Query<&Window>,
mut commands: Commands,
) {
let action_font_size =
action_bar_font_size(windows.iter().next().map_or(900.0, |win| win.width()));
let font = TextFont {
font: font_res.as_ref().map(|f| f.0.clone()).unwrap_or_default(),
font_size: action_font_size,
..default()
};
// Bottom bar: full-width, centered, sits above the gesture-navigation zone.
// `SafeAreaAnchoredBottom` applies the correct logical-pixel inset once
// Android reports it (frames 1-3); initial value is 0.0.
commands
.spawn((
Node {
position_type: PositionType::Absolute,
bottom: Val::Px(0.0),
left: Val::Px(0.0),
width: Val::Percent(100.0),
flex_direction: FlexDirection::Row,
flex_wrap: FlexWrap::Wrap,
justify_content: JustifyContent::Center,
column_gap: ACTION_BAR_COLUMN_GAP,
row_gap: VAL_SPACE_2,
align_items: AlignItems::Center,
padding: UiRect {
left: VAL_SPACE_3,
right: VAL_SPACE_3,
top: VAL_SPACE_2,
bottom: VAL_SPACE_2,
},
..default()
},
BackgroundColor(BG_HUD_BAND),
ZIndex(Z_HUD),
SafeAreaAnchoredBottom { base_bottom: 0.0 },
HudActionBar,
))
.with_children(|row| {
// The trailing `order` argument feeds `Focusable { group: Hud, order }`
// so Tab cycles the action bar in visual reading order.
// Undo and Pause are the primary gameplay actions — full brightness.
// Menu, Help, Hint, Modes, New are navigation/utility — dimmed.
spawn_action_button(
row,
MenuButton,
ACTION_BAR_LABELS[0],
None,
"Open Stats, Achievements, Profile, Settings, or Leaderboard.",
&font,
0,
TEXT_SECONDARY,
);
spawn_action_button(
row,
UndoButton,
ACTION_BAR_LABELS[1],
Some("U"),
"Take back your last move. Costs points and blocks No Undo.",
&font,
1,
TEXT_PRIMARY,
);
spawn_action_button(
row,
PauseButton,
ACTION_BAR_LABELS[2],
Some("Esc"),
"Pause the game and freeze the timer.",
&font,
2,
TEXT_PRIMARY,
);
spawn_action_button(
row,
HelpButton,
ACTION_BAR_LABELS[3],
Some("F1"),
"Show controls, rules, and keyboard shortcuts.",
&font,
3,
TEXT_SECONDARY,
);
spawn_action_button(
row,
HintButton,
ACTION_BAR_LABELS[4],
Some("H"),
"Highlight a suggested move. Cycles through alternatives on repeat taps.",
&font,
4,
TEXT_SECONDARY,
);
spawn_action_button(
row,
ModesButton,
ACTION_BAR_LABELS[5],
None,
"Switch modes: Classic, Daily, Zen, Challenge, Time Attack.",
&font,
5,
TEXT_SECONDARY,
);
spawn_action_button(
row,
NewGameButton,
ACTION_BAR_LABELS[6],
Some("N"),
"Start a fresh deal. Confirms first if a game is in progress.",
&font,
6,
TEXT_SECONDARY,
);
});
}
/// Spawns a single action button as a child of `row`. Each button shares
/// the same node geometry, idle colour, and `ActionButton` marker so
/// `paint_action_buttons` can recolour all of them with one query.
///
/// `order` is the button's index inside the action bar (0 for the
/// leftmost). It propagates into the [`Focusable`] this function inserts
/// so Phase 2's keyboard focus ring cycles the HUD in visual order.
///
/// `tooltip` is the hover-reveal caption attached via [`Tooltip`]. Every
/// action button ships with one — there is no opt-out — because each button
/// represents a player-triggered action and benefits from a one-line
/// reminder of what it does.
#[allow(clippy::too_many_arguments)]
pub(super) fn spawn_action_button<M: Component>(
row: &mut ChildSpawnerCommands,
marker: M,
label: &str,
hotkey: Option<&'static str>,
tooltip: &'static str,
font: &TextFont,
order: i32,
text_color: Color,
) {
// Hotkey hint chips ("U", "Esc", "F1", "N") are meaningless on a
// touch device — the button itself is the affordance — and they
// visibly clutter the narrow-viewport action row. The chevrons on
// Menu/Modes remain because they indicate dropdown behaviour.
let hotkey = if SHOW_KEYBOARD_ACCELERATORS {
hotkey
} else {
None
};
let hotkey_font = TextFont {
font: font.font.clone(),
font_size: TYPE_CAPTION,
..default()
};
let (pad, min_w, min_h) = action_button_metrics();
row.spawn((
marker,
ActionButton,
Button,
Tooltip::new(tooltip),
Focusable {
group: FocusGroup::Hud,
order,
},
Node {
padding: pad,
min_width: min_w,
min_height: min_h,
justify_content: JustifyContent::Center,
align_items: AlignItems::Center,
border_radius: BorderRadius::all(Val::Px(RADIUS_MD)),
column_gap: VAL_SPACE_2,
..default()
},
BackgroundColor(ACTION_BTN_IDLE),
BorderColor::all(BORDER_SUBTLE),
HighContrastBorder::with_default(BORDER_SUBTLE),
))
.with_children(|b| {
spawn_action_button_label(b, label, font, text_color);
if let Some(key) = hotkey {
// Hotkey hint rendered as a dim caption next to the label —
// keeps the keyboard accelerator discoverable without
// hijacking the button's primary affordance.
b.spawn((Text::new(key), hotkey_font, TextColor(TEXT_SECONDARY)));
}
});
}
+1
View File
@@ -1,4 +1,5 @@
use super::*;
use crate::auto_complete_plugin::AutoCompleteState;
use crate::game_plugin::GamePlugin;
use crate::table_plugin::TablePlugin;
use chrono::Local;
+612
View File
@@ -0,0 +1,612 @@
//! Per-frame HUD text/typography/visibility updater systems.
use super::*;
use bevy::window::WindowResized;
use solitaire_core::{Foundation, KlondikePile, Tableau};
use solitaire_core::Suit;
use solitaire_core::{DrawStockConfig, game_state::GameMode};
use crate::auto_complete_plugin::AutoCompleteState;
/// Formats a time-limit value in seconds as `"mm:ss"` for HUD display.
///
/// For example `format_time_limit(300)` returns `"5:00"`.
pub fn format_time_limit(secs: u64) -> String {
let m = secs / 60;
let s = secs % 60;
format!("{m}:{s:02}")
}
// ---------------------------------------------------------------------------
// Score-change feedback (G2)
//
// The flow for each Update tick:
// 1. `detect_score_change` diffs `GameStateResource.score` against
// `PreviousScore`. On any positive delta it inserts/refreshes
// `ScorePulse` on the score readout; on a delta ≥
// `SCORE_FLOATER_THRESHOLD` it also spawns a floating "+N" UI text
// anchored just below the score.
// 2. `advance_score_pulse` ticks the pulse component, applies the
// triangular 1.0 → 1.1 → 1.0 scale curve, and removes the
// component on completion.
// 3. `advance_score_floater` drifts each floater upward, fades it to
// transparent, and despawns it when its lifetime expires.
//
// The threshold of 50 (a foundation promotion's typical bonus) keeps
// floaters rare and meaningful — see `SCORE_FLOATER_THRESHOLD`.
// ---------------------------------------------------------------------------
/// Sets the [`HudWonPreviously`] text to "✓ Won before" whenever the
/// current deal's seed + draw_mode + mode triple matches an entry in
/// the rolling [`ReplayHistory`]. Cleared while the active game is won
/// (the on-screen "Game won!" cue already conveys victory) and on
/// fresh deals the player hasn't won before.
///
/// Lives in its own system rather than `update_hud` to keep this
/// orthogonal: `update_hud`'s query disambiguation is already busy
/// enough; threading another marker through every Without filter
/// would touch ~10 unrelated queries for no benefit.
pub(super) fn update_won_previously(
game: Res<GameStateResource>,
// Optional because the HUD plugin's headless tests run without
// `StatsPlugin` and therefore without this resource. With the
// resource absent there's no history to compare against; the
// indicator just stays empty.
history: Option<Res<crate::stats_plugin::ReplayHistoryResource>>,
mut q: Query<&mut Text, With<HudWonPreviously>>,
) {
let Ok(mut text) = q.single_mut() else {
return;
};
let won_before = !game.0.is_won()
&& history.as_ref().is_some_and(|h| {
h.0.replays.iter().any(|r| {
r.seed == game.0.seed && r.draw_mode == game.0.draw_mode() && r.mode == game.0.mode
})
});
let next = if won_before {
"\u{2713} Won before"
} else {
""
};
if text.0 != next {
text.0 = next.to_string();
}
}
#[allow(clippy::type_complexity, clippy::too_many_arguments)]
pub(super) fn update_hud(
game: Res<GameStateResource>,
time_attack: Option<Res<TimeAttackResource>>,
daily: Option<Res<DailyChallengeResource>>,
auto_complete: Option<Res<AutoCompleteState>>,
mut score_q: Query<
&mut Text,
(
With<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut moves_q: Query<
&mut Text,
(
With<HudMoves>,
Without<HudScore>,
Without<HudTime>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut time_q: Query<
&mut Text,
(
With<HudTime>,
Without<HudScore>,
Without<HudMoves>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut mode_q: Query<
&mut Text,
(
With<HudMode>,
Without<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut challenge_q: Query<
(&mut Text, &mut TextColor),
(
With<HudChallenge>,
Without<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudMode>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut undos_q: Query<
(&mut Text, &mut TextColor),
(
With<HudUndos>,
Without<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut auto_q: Query<
&mut Text,
(
With<HudAutoComplete>,
Without<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudRecycles>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut recycles_q: Query<
&mut Text,
(
With<HudRecycles>,
Without<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudDrawCycle>,
Without<HudSelection>,
),
>,
mut draw_cycle_q: Query<
&mut Text,
(
With<HudDrawCycle>,
Without<HudScore>,
Without<HudMoves>,
Without<HudTime>,
Without<HudMode>,
Without<HudChallenge>,
Without<HudUndos>,
Without<HudAutoComplete>,
Without<HudRecycles>,
Without<HudSelection>,
),
>,
) {
let ta_active = time_attack.as_ref().is_some_and(|ta| ta.active);
// Score, moves, mode, challenge, and undos only need updating when game state changes.
if game.is_changed() {
let g = &game.0;
let is_zen = g.mode == GameMode::Zen;
if let Ok(mut t) = score_q.single_mut() {
// Zen mode suppresses score display per spec ("No score display").
**t = if is_zen {
String::new()
} else {
format!("Score: {}", g.score())
};
}
if let Ok(mut t) = moves_q.single_mut() {
**t = format!("Moves: {}", g.move_count());
}
if let Ok(mut t) = mode_q.single_mut() {
**t = match g.mode {
GameMode::Classic => match g.draw_mode() {
DrawStockConfig::DrawOne => String::new(),
DrawStockConfig::DrawThree => "Draw 3".to_string(),
},
GameMode::Zen => "ZEN".to_string(),
GameMode::Challenge => "CHALLENGE".to_string(),
GameMode::TimeAttack => "TIME ATTACK".to_string(),
GameMode::Difficulty(level) => level.label().to_uppercase(),
};
}
// --- Daily challenge constraint (with time-low colour warning) ---
if let Ok((mut t, mut color)) = challenge_q.single_mut() {
if g.is_won() {
**t = String::new();
} else if let Some(dc) = daily.as_deref() {
**t = challenge_hud_text(dc);
if let Some(max_secs) = dc.max_time_secs {
let remaining = max_secs.saturating_sub(g.elapsed_seconds);
*color = TextColor(challenge_time_color(remaining));
}
} else {
**t = String::new();
}
}
// --- Undo count ---
if let Ok((mut t, mut color)) = undos_q.single_mut() {
let count = g.undo_count();
if count == 0 {
**t = String::new();
*color = TextColor(TEXT_PRIMARY);
} else {
**t = format!("Undos: {count}");
// STATE_WARNING signals "you took a penalty" — same hue
// as the Recycles counter so they read as one category.
*color = TextColor(STATE_WARNING);
}
}
// --- Recycle counter (both modes, hidden until first recycle) ---
if let Ok(mut t) = recycles_q.single_mut() {
**t = if g.recycle_count() > 0 {
format!("Recycles: {}", g.recycle_count())
} else {
String::new()
};
}
// --- Draw-cycle indicator (Draw-Three mode only) ---
if let Ok(mut t) = draw_cycle_q.single_mut() {
**t = if g.is_won() || g.draw_mode() != DrawStockConfig::DrawThree {
// Hide when not in Draw-Three or after the game is won.
String::new()
} else {
let stock_len = g.stock_cards().len();
let next_draw = stock_len.min(3);
format!("Cycle: {next_draw}/3")
};
}
}
// Time display: show Time Attack countdown every frame when active;
// Zen mode suppresses the timer per spec ("No timer") — cleared unconditionally
// every frame so it disappears immediately on the frame Z is pressed.
// Otherwise show game elapsed time (updates once per second via game.is_changed()).
let is_zen = game.0.mode == GameMode::Zen;
let update_time = (ta_active || game.is_changed()) && !is_zen;
if update_time {
if let Ok(mut t) = time_q.single_mut() {
if let Some(ta) = time_attack.as_ref().filter(|ta| ta.active) {
let remaining = ta.remaining_secs.max(0.0) as u64;
let m = remaining / 60;
let s = remaining % 60;
**t = format!("{m}:{s:02}");
} else {
let secs = game.0.elapsed_seconds;
let m = secs / 60;
let s = secs % 60;
**t = format!("{m}:{s:02}");
}
}
} else if is_zen {
// Clear the time display immediately whenever Zen mode is active —
// do not guard on game.is_changed() so it clears on the same frame
// the player presses Z, before any move is made.
if let Ok(mut t) = time_q.single_mut() {
**t = String::new();
}
}
// --- Auto-complete badge ---
// Reflects the AutoCompleteState resource; update whenever it changes or game changes.
let ac_active = auto_complete.as_ref().is_some_and(|ac| ac.active);
let ac_changed = auto_complete.as_ref().is_some_and(|ac| ac.is_changed());
if (ac_changed || game.is_changed())
&& let Ok(mut t) = auto_q.single_mut()
{
**t = if ac_active {
"AUTO".to_string()
} else {
String::new()
};
}
}
/// Updates the `HudSelection` text node to show which pile is Tab-selected.
///
/// Displays `"▶ {pile_name}"` while `SelectionState::selected_pile` is `Some`,
/// or an empty string when no pile is selected. Runs every frame so the
/// indicator stays in sync with the selection resource.
pub(super) fn update_selection_hud(
selection: Option<Res<SelectionState>>,
game: Option<Res<GameStateResource>>,
mut q: Query<&mut Text, With<HudSelection>>,
) {
let Ok(mut t) = q.single_mut() else { return };
let label = match selection.as_deref().and_then(|s| s.selected_pile.as_ref()) {
None => String::new(),
Some(KlondikePile::Stock) => "▶ Waste".to_string(),
Some(KlondikePile::Foundation(slot)) => match game.as_deref() {
Some(g) => foundation_selection_label(*slot, &g.0),
// No game resource means we can't probe claimed_suit; show the
// slot-based placeholder so the HUD still surfaces the selection.
None => format!("▶ Foundation {}", foundation_number(*slot)),
},
Some(KlondikePile::Tableau(idx)) => format!("▶ Column {}", tableau_number(*idx)),
};
**t = label;
}
/// Returns the HUD selection label for a foundation slot.
///
/// When the slot has a claimed suit (any card has landed) the announcement is
/// "▶ {Suit} Foundation"; while the slot is empty it falls back to a
/// "▶ Foundation N" placeholder labelled by the 1-based slot index.
pub(super) fn foundation_selection_label(
slot: Foundation,
game: &solitaire_core::game_state::GameState,
) -> String {
let claimed = game
.pile(KlondikePile::Foundation(slot))
.first()
.map(|c| c.0.suit());
match claimed {
Some(suit) => {
let s = match suit {
Suit::Clubs => "Clubs",
Suit::Diamonds => "Diamonds",
Suit::Hearts => "Hearts",
Suit::Spades => "Spades",
};
format!("{s} Foundation")
}
None => format!("▶ Foundation {}", foundation_number(slot)),
}
}
const fn foundation_number(foundation: Foundation) -> u8 {
match foundation {
Foundation::Foundation1 => 1,
Foundation::Foundation2 => 2,
Foundation::Foundation3 => 3,
Foundation::Foundation4 => 4,
}
}
const fn tableau_number(tableau: Tableau) -> u8 {
match tableau {
Tableau::Tableau1 => 1,
Tableau::Tableau2 => 2,
Tableau::Tableau3 => 3,
Tableau::Tableau4 => 4,
Tableau::Tableau5 => 5,
Tableau::Tableau6 => 6,
Tableau::Tableau7 => 7,
}
}
/// Fires `InfoToastEvent("Auto-completing...")` exactly once each time
/// `AutoCompleteState` transitions from inactive to active. Uses a `Local<bool>`
/// to debounce so the toast only appears on the leading edge.
pub(super) fn announce_auto_complete(
auto_complete: Option<Res<AutoCompleteState>>,
mut toast: MessageWriter<InfoToastEvent>,
mut was_active: Local<bool>,
) {
let now_active = auto_complete.as_ref().is_some_and(|ac| ac.active);
if now_active && !*was_active {
toast.write(InfoToastEvent("Auto-completing...".to_string()));
}
*was_active = now_active;
}
/// Builds the HUD text for the active daily challenge constraints.
///
/// Returns `"Limit: mm:ss"` when a time limit is set, `"Goal: N pts"` when a
/// score target is set, or an empty string when the challenge has no extra
/// constraints.
pub(super) fn challenge_hud_text(dc: &DailyChallengeResource) -> String {
if let Some(secs) = dc.max_time_secs {
format!("Limit: {}", format_time_limit(secs))
} else if let Some(score) = dc.target_score {
format!("Goal: {score} pts")
} else {
String::new()
}
}
/// Returns the colour for the challenge time-limit HUD label based on
/// seconds remaining. Uses theme tokens so the urgency ramp picks up
/// palette changes for free.
///
/// | Remaining | Token |
/// |-------------|------------------|
/// | ≥ 60 s | `STATE_INFO` |
/// | 30 59 s | `STATE_WARNING` |
/// | < 30 s | `STATE_DANGER` |
pub fn challenge_time_color(remaining: u64) -> Color {
if remaining < 30 {
STATE_DANGER
} else if remaining < 60 {
STATE_WARNING
} else {
STATE_INFO
}
}
/// Scales HUD Tier-1 font sizes to fit a narrow viewport.
///
/// Fires on every `WindowResized` event. Below 480 logical pixels wide the
/// score drops from `TYPE_HEADLINE` (26 px) to `TYPE_BODY_LG` (18 px) and the
/// Moves/Timer labels drop from `TYPE_BODY_LG` to `TYPE_CAPTION` (11 px), so
/// all three items remain on one row inside the 50 %-wide HUD column
/// (≈ 180 dp on a 360 dp phone). At ≥ 480 px the original sizes are
/// restored so desktop/tablet layouts are unaffected.
type HudScoreFont<'w, 's> =
Query<'w, 's, &'static mut TextFont, (With<HudScore>, Without<HudMoves>, Without<HudTime>)>;
type HudMovesFont<'w, 's> =
Query<'w, 's, &'static mut TextFont, (With<HudMoves>, Without<HudScore>, Without<HudTime>)>;
type HudTimeFont<'w, 's> =
Query<'w, 's, &'static mut TextFont, (With<HudTime>, Without<HudScore>, Without<HudMoves>)>;
pub(super) fn update_hud_typography(
mut events: MessageReader<WindowResized>,
mut score_q: HudScoreFont,
mut moves_q: HudMovesFont,
mut time_q: HudTimeFont,
) {
let Some(ev) = events.read().last() else {
return;
};
let (score_size, secondary_size) = if ev.width < 480.0 {
(TYPE_BODY_LG, TYPE_CAPTION)
} else {
(TYPE_HEADLINE, TYPE_BODY_LG)
};
for mut font in &mut score_q {
font.font_size = score_size;
}
for mut font in &mut moves_q {
font.font_size = secondary_size;
}
for mut font in &mut time_q {
font.font_size = secondary_size;
}
}
pub(super) fn apply_hud_visibility(
hud_vis: Res<HudVisibility>,
mut action_bar: Query<&mut Visibility, With<HudActionBar>>,
) {
if !hud_vis.is_changed() {
return;
}
let v = if *hud_vis == HudVisibility::Visible {
Visibility::Visible
} else {
Visibility::Hidden
};
for mut vis in &mut action_bar {
*vis = v;
}
// The bottom action bar is a pure overlay — it does not claim any
// space in the card layout, so no WindowResized event is needed.
}
pub(super) fn restore_hud_on_modal(
new_scrims: Query<(), (With<ModalScrim>, Added<ModalScrim>)>,
mut hud_vis: ResMut<HudVisibility>,
) {
if !new_scrims.is_empty() {
*hud_vis = HudVisibility::Visible;
}
}
/// Returns the action-bar label font size for a given logical window width.
pub(super) fn action_bar_font_size(window_width: f32) -> f32 {
if USE_TOUCH_UI_LAYOUT {
// Seven word-labels ("Menu","Undo","Pause","Help","Hint","Mode","New")
// must share one row. The widest characters are in FiraMono (a
// monospace whose advance is ~0.62 of the font size). On a 900
// logical-px phone the row budget after bar padding (2*12) and six
// 4 px column gaps is ~852 px for ~28 label chars + 7*2*3 px button
// padding. Solving 28*0.62*size + 42 <= 852 gives size <= ~46, so the
// labels are advance-bound only on very narrow viewports; the real
// constraint is legibility, not fit. ~1/60 of the width yields ~15 px
// at 900 px — comfortably one row with margin to spare — clamped so it
// never drops below the 12 px legibility floor or grows past 18 px on
// landscape tablets where it would crowd the row again.
(window_width / 60.0).clamp(12.0, 18.0)
} else {
TYPE_BODY
}
}
pub(super) fn action_button_metrics() -> (UiRect, Val, Val) {
if USE_TOUCH_UI_LAYOUT {
// Tight 3 px horizontal padding (down from 4) trims 14 px off the row
// total across 7 buttons, and a 44 px min_width (down from 52) lets the
// shortest labels ("New", "Help") shrink to their text rather than
// padding the row out past the 900 logical-px viewport. min_height
// stays at 44 px to preserve the comfortable touch target.
(
UiRect::axes(Val::Px(3.0), Val::Px(4.0)),
Val::Px(44.0),
Val::Px(44.0),
)
} else {
(
UiRect::axes(VAL_SPACE_2, VAL_SPACE_2),
Val::Px(48.0),
Val::Px(48.0),
)
}
}
pub(super) fn spawn_action_button_label(
parent: &mut ChildSpawnerCommands,
label: &str,
font: &TextFont,
text_color: Color,
) {
if USE_TOUCH_UI_LAYOUT {
parent.spawn((
ActionButtonLabel,
Text::new(label),
font.clone(),
TextColor(text_color),
));
} else {
parent.spawn((Text::new(label), font.clone(), TextColor(text_color)));
}
}
/// Resizes the glyph text inside every [`ActionButtonLabel`] to match the
/// current viewport width whenever [`LayoutResource`] changes (orientation
/// change or window resize).
#[cfg(target_os = "android")]
pub(super) fn resize_action_bar_labels(
layout: Res<crate::layout::LayoutResource>,
windows: Query<&Window>,
mut labels: Query<&mut TextFont, With<ActionButtonLabel>>,
) {
let w = windows
.iter()
.next()
.map_or(layout.0.card_size.x * 7.25, |win| win.width());
let new_size = action_bar_font_size(w);
for mut font in &mut labels {
font.font_size = new_size;
}
}
@@ -0,0 +1,627 @@
//! Input handling for the Settings panel: button presses, keyboard
//! accelerators, focus attachment, and scrolling.
use super::*;
use bevy::input::mouse::{MouseScrollUnit, MouseWheel};
use bevy::ui::{ComputedNode, UiGlobalTransform};
use solitaire_core::DrawStockConfig;
use solitaire_data::{
AnimSpeed, REPLAY_MOVE_INTERVAL_STEP_SECS, TIME_BONUS_MULTIPLIER_STEP, TOOLTIP_DELAY_STEP_SECS,
settings::Theme,
};
use crate::events::{
DeleteAccountRequestEvent, InfoToastEvent, ManualSyncRequestEvent, SyncConfigureRequestEvent,
SyncLogoutRequestEvent, ToggleSettingsRequestEvent,
};
use crate::ui_focus::{FocusGroup, Focusable, FocusedButton};
use crate::ui_modal::{ModalButton, ModalScrim};
use crate::ui_theme::SPACE_2;
pub(super) fn handle_volume_keys(
keys: Res<ButtonInput<KeyCode>>,
mut settings: ResMut<SettingsResource>,
path: Res<SettingsStoragePath>,
mut changed: MessageWriter<SettingsChangedEvent>,
mut toast: MessageWriter<InfoToastEvent>,
) {
let mut delta = 0.0_f32;
if keys.just_pressed(KeyCode::BracketLeft) {
delta -= SFX_STEP;
}
if keys.just_pressed(KeyCode::BracketRight) {
delta += SFX_STEP;
}
if delta == 0.0 {
return;
}
let before = settings.0.sfx_volume;
let after = settings.0.adjust_sfx_volume(delta);
if (before - after).abs() < f32::EPSILON {
return;
}
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
toast.write(InfoToastEvent(format!(
"SFX volume: {}%",
(after * 100.0).round() as i32
)));
}
/// Opens or closes the Settings panel — `O` keyboard accelerator or
/// `ToggleSettingsRequestEvent` from the HUD Menu popover.
pub(super) fn toggle_settings_screen(
keys: Res<ButtonInput<KeyCode>>,
mut requests: MessageReader<ToggleSettingsRequestEvent>,
mut screen: ResMut<SettingsScreen>,
) {
let button_clicked = requests.read().count() > 0;
if keys.just_pressed(KeyCode::KeyO) || button_clicked {
screen.0 = !screen.0;
}
}
/// Reacts to button presses inside the Settings panel.
#[allow(clippy::too_many_arguments, clippy::type_complexity)]
pub(super) fn handle_settings_buttons(
interaction_query: Query<(&Interaction, &SettingsButton), Changed<Interaction>>,
mut settings: ResMut<SettingsResource>,
mut screen: ResMut<SettingsScreen>,
path: Res<SettingsStoragePath>,
mut changed: MessageWriter<SettingsChangedEvent>,
mut sfx_text: Query<
&mut Text,
(
With<SfxVolumeText>,
Without<MusicVolumeText>,
Without<DrawModeText>,
Without<ThemeText>,
Without<AnimSpeedText>,
Without<ColorBlindText>,
Without<HighContrastText>,
Without<ReduceMotionText>,
),
>,
mut music_text: Query<
&mut Text,
(
With<MusicVolumeText>,
Without<SfxVolumeText>,
Without<DrawModeText>,
Without<ThemeText>,
Without<AnimSpeedText>,
Without<ColorBlindText>,
Without<HighContrastText>,
Without<ReduceMotionText>,
),
>,
mut draw_text: Query<
&mut Text,
(
With<DrawModeText>,
Without<SfxVolumeText>,
Without<MusicVolumeText>,
Without<ThemeText>,
Without<AnimSpeedText>,
Without<ColorBlindText>,
Without<HighContrastText>,
Without<ReduceMotionText>,
),
>,
mut theme_text: Query<
&mut Text,
(
With<ThemeText>,
Without<SfxVolumeText>,
Without<MusicVolumeText>,
Without<DrawModeText>,
Without<AnimSpeedText>,
Without<ColorBlindText>,
Without<HighContrastText>,
Without<ReduceMotionText>,
),
>,
mut anim_speed_text: Query<
&mut Text,
(
With<AnimSpeedText>,
Without<SfxVolumeText>,
Without<MusicVolumeText>,
Without<DrawModeText>,
Without<ThemeText>,
Without<ColorBlindText>,
Without<HighContrastText>,
Without<ReduceMotionText>,
),
>,
mut color_blind_text: Query<
&mut Text,
(
With<ColorBlindText>,
Without<SfxVolumeText>,
Without<MusicVolumeText>,
Without<DrawModeText>,
Without<ThemeText>,
Without<AnimSpeedText>,
Without<HighContrastText>,
Without<ReduceMotionText>,
),
>,
mut high_contrast_text: Query<
&mut Text,
(
With<HighContrastText>,
Without<SfxVolumeText>,
Without<MusicVolumeText>,
Without<DrawModeText>,
Without<ThemeText>,
Without<AnimSpeedText>,
Without<ColorBlindText>,
Without<ReduceMotionText>,
),
>,
mut reduce_motion_text: Query<
&mut Text,
(
With<ReduceMotionText>,
Without<SfxVolumeText>,
Without<MusicVolumeText>,
Without<DrawModeText>,
Without<ThemeText>,
Without<AnimSpeedText>,
Without<ColorBlindText>,
Without<HighContrastText>,
),
>,
) {
for (interaction, button) in &interaction_query {
if *interaction != Interaction::Pressed {
continue;
}
match button {
SettingsButton::SfxDown => {
let before = settings.0.sfx_volume;
let after = settings.0.adjust_sfx_volume(-SFX_STEP);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = sfx_text.single_mut() {
**t = format!("{after:.2}");
}
}
}
SettingsButton::SfxUp => {
let before = settings.0.sfx_volume;
let after = settings.0.adjust_sfx_volume(SFX_STEP);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = sfx_text.single_mut() {
**t = format!("{after:.2}");
}
}
}
SettingsButton::MusicDown => {
let before = settings.0.music_volume;
let after = settings.0.adjust_music_volume(-SFX_STEP);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = music_text.single_mut() {
**t = format!("{after:.2}");
}
}
}
SettingsButton::MusicUp => {
let before = settings.0.music_volume;
let after = settings.0.adjust_music_volume(SFX_STEP);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = music_text.single_mut() {
**t = format!("{after:.2}");
}
}
}
SettingsButton::ToggleDrawMode => {
settings.0.draw_mode = match settings.0.draw_mode {
DrawStockConfig::DrawOne => DrawStockConfig::DrawThree,
DrawStockConfig::DrawThree => DrawStockConfig::DrawOne,
};
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = draw_text.single_mut() {
**t = draw_mode_label(&settings.0.draw_mode);
}
}
SettingsButton::CycleAnimSpeed => {
settings.0.animation_speed = match settings.0.animation_speed {
AnimSpeed::Normal => AnimSpeed::Fast,
AnimSpeed::Fast => AnimSpeed::Instant,
AnimSpeed::Instant => AnimSpeed::Normal,
};
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = anim_speed_text.single_mut() {
**t = anim_speed_label(&settings.0.animation_speed);
}
}
SettingsButton::TooltipDelayDown => {
let before = settings.0.tooltip_delay_secs;
let after = settings.0.adjust_tooltip_delay(-TOOLTIP_DELAY_STEP_SECS);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// The Text node is refreshed by `update_tooltip_delay_text`
// on the next frame via `settings.is_changed()`.
}
}
SettingsButton::TooltipDelayUp => {
let before = settings.0.tooltip_delay_secs;
let after = settings.0.adjust_tooltip_delay(TOOLTIP_DELAY_STEP_SECS);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
}
}
SettingsButton::TimeBonusDown => {
let before = settings.0.time_bonus_multiplier;
let after = settings
.0
.adjust_time_bonus_multiplier(-TIME_BONUS_MULTIPLIER_STEP);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// The Text node is refreshed by
// `update_time_bonus_multiplier_text` on the next
// frame via `settings.is_changed()`.
}
}
SettingsButton::TimeBonusUp => {
let before = settings.0.time_bonus_multiplier;
let after = settings
.0
.adjust_time_bonus_multiplier(TIME_BONUS_MULTIPLIER_STEP);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
}
}
SettingsButton::ReplayMoveIntervalDown => {
let before = settings.0.replay_move_interval_secs;
let after = settings
.0
.adjust_replay_move_interval(-REPLAY_MOVE_INTERVAL_STEP_SECS);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// The Text node is refreshed by
// `update_replay_move_interval_text` on the next
// frame via `settings.is_changed()`.
}
}
SettingsButton::ReplayMoveIntervalUp => {
let before = settings.0.replay_move_interval_secs;
let after = settings
.0
.adjust_replay_move_interval(REPLAY_MOVE_INTERVAL_STEP_SECS);
if (before - after).abs() > f32::EPSILON {
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
}
}
SettingsButton::ToggleTheme => {
settings.0.theme = match settings.0.theme {
Theme::Green => Theme::Blue,
Theme::Blue => Theme::Dark,
Theme::Dark => Theme::Green,
};
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = theme_text.single_mut() {
**t = theme_label(&settings.0.theme);
}
}
SettingsButton::ToggleColorBlind => {
settings.0.color_blind_mode = !settings.0.color_blind_mode;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = color_blind_text.single_mut() {
**t = color_blind_label(settings.0.color_blind_mode);
}
}
SettingsButton::ToggleHighContrast => {
settings.0.high_contrast_mode = !settings.0.high_contrast_mode;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = high_contrast_text.single_mut() {
**t = on_off_label(settings.0.high_contrast_mode);
}
}
SettingsButton::ToggleReduceMotion => {
settings.0.reduce_motion_mode = !settings.0.reduce_motion_mode;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
if let Ok(mut t) = reduce_motion_text.single_mut() {
**t = on_off_label(settings.0.reduce_motion_mode);
}
}
SettingsButton::ToggleTouchInputMode => {
use solitaire_data::settings::TouchInputMode;
settings.0.touch_input_mode = match settings.0.touch_input_mode {
TouchInputMode::OneTap => TouchInputMode::TapToSelect,
TouchInputMode::TapToSelect => TouchInputMode::OneTap,
};
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// Text refreshed by `update_touch_input_mode_text` next frame.
}
SettingsButton::ToggleWinnableDealsOnly => {
settings.0.winnable_deals_only = !settings.0.winnable_deals_only;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// The Text node is refreshed by `update_winnable_deals_only_text`
// on the next frame via `settings.is_changed()`.
}
SettingsButton::ToggleAnalytics => {
settings.0.analytics_enabled = !settings.0.analytics_enabled;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// Text refreshed by `update_analytics_enabled_text` next frame.
}
SettingsButton::ToggleSmartDefaultSize => {
settings.0.disable_smart_default_size = !settings.0.disable_smart_default_size;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
// The Text node is refreshed by
// `update_smart_default_size_text` next frame. The
// sizer system is gated only at startup, so flipping
// this mid-session takes effect on the next launch —
// documented on the field in `solitaire_data::Settings`.
}
SettingsButton::SelectCardBack(idx) => {
settings.0.selected_card_back = *idx;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
}
SettingsButton::SelectBackground(idx) => {
settings.0.selected_background = *idx;
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
}
SettingsButton::SelectTheme(theme_id) => {
if settings.0.selected_theme_id != *theme_id {
settings.0.selected_theme_id = theme_id.clone();
persist(&path, &settings.0);
changed.write(SettingsChangedEvent(settings.0.clone()));
}
}
#[cfg(not(target_arch = "wasm32"))]
SettingsButton::ScanThemes => {
// Handled by `handle_scan_themes`.
}
SettingsButton::SyncNow
| SettingsButton::ConnectSync
| SettingsButton::DisconnectSync
| SettingsButton::DeleteAccount => {
// Handled by `handle_sync_buttons`.
}
SettingsButton::Done => {
screen.0 = false;
}
}
}
}
/// Handles sync-related settings buttons: Sync Now, Connect, Disconnect,
/// and Delete Account. Split from `handle_settings_buttons` to stay within
/// Bevy's 16-parameter system limit.
pub(super) fn handle_sync_buttons(
interaction_query: Query<(&Interaction, &SettingsButton), Changed<Interaction>>,
mut manual_sync: MessageWriter<ManualSyncRequestEvent>,
mut configure_sync: MessageWriter<SyncConfigureRequestEvent>,
mut logout_sync: MessageWriter<SyncLogoutRequestEvent>,
mut delete_account: MessageWriter<DeleteAccountRequestEvent>,
mut screen: ResMut<SettingsScreen>,
) {
for (interaction, button) in &interaction_query {
if *interaction != Interaction::Pressed {
continue;
}
match button {
SettingsButton::SyncNow => {
manual_sync.write(ManualSyncRequestEvent);
}
SettingsButton::ConnectSync => {
// Close settings before the sync-setup modal opens so the
// guard in open_sync_setup_modal doesn't block on our own scrim.
screen.0 = false;
configure_sync.write(SyncConfigureRequestEvent);
}
SettingsButton::DisconnectSync => {
logout_sync.write(SyncLogoutRequestEvent);
}
SettingsButton::DeleteAccount => {
delete_account.write(DeleteAccountRequestEvent);
}
_ => {}
}
}
}
/// Auto-attaches [`Focusable`] to every bespoke Settings button — icon
/// buttons (volume +/, toggle, cycle), swatch buttons (card-back,
/// background pickers), and the "Sync Now" button. The "Done" button is
/// already tagged by `attach_focusable_to_modal_buttons` (it carries
/// [`ModalButton`]) and is filtered out here.
///
/// Walks ancestors via [`ChildOf`] to find the [`ModalScrim`] that owns
/// the panel so the new [`Focusable`]'s group is bound to that scrim —
/// same defensive shape as the Phase 1 / 2 attach systems.
#[allow(clippy::type_complexity)]
pub(super) fn attach_focusable_to_settings_buttons(
mut commands: Commands,
new_buttons: Query<
(Entity, &SettingsButton),
(With<Button>, Without<Focusable>, Without<ModalButton>),
>,
parents: Query<&ChildOf>,
scrims: Query<(), With<ModalScrim>>,
) {
for (button, settings_button) in &new_buttons {
let mut current = button;
let mut scrim_entity: Option<Entity> = None;
for _ in 0..32 {
if scrims.get(current).is_ok() {
scrim_entity = Some(current);
break;
}
match parents.get(current) {
Ok(parent) => current = parent.parent(),
Err(_) => break,
}
}
if let Some(scrim) = scrim_entity {
commands.entity(button).insert(Focusable {
group: FocusGroup::Modal(scrim),
order: settings_button.focus_order(),
});
}
}
}
/// Vertical padding (logical px) added around the focused button when
/// scrolling it into view. Keeps the focus ring's halo visible above /
/// below the viewport edge.
const FOCUS_SCROLL_PADDING: f32 = SPACE_2;
/// When the focused entity sits outside the visible Settings scroll
/// viewport, adjust the viewport's [`ScrollPosition`] so the button is
/// fully visible. No-op when:
///
/// - `FocusedButton` is `None`
/// - the focused entity has no [`UiGlobalTransform`] / [`ComputedNode`]
/// (e.g. a freshly-spawned modal hasn't laid out yet)
/// - the focused entity is not a descendant of the
/// [`SettingsPanelScrollable`] container
///
/// The viewport's visible Y range is `[scroll_y, scroll_y +
/// viewport_height]` in physical pixels (matching `ComputedNode.size`).
/// The focused button's vertical extent is computed from its
/// `UiGlobalTransform.translation.y` (centre, physical) ± half its
/// `ComputedNode.size.y`. Because the scroll container's local
/// coordinates run [0, content_height] and the visible window is
/// [scroll_y, scroll_y + viewport], we convert the button's window-
/// space Y to container-local Y by subtracting the container's window-
/// space top and adding the current scroll offset.
#[allow(clippy::type_complexity)]
pub(super) fn scroll_focus_into_view(
focused: Res<FocusedButton>,
parents: Query<&ChildOf>,
nodes: Query<(&UiGlobalTransform, &ComputedNode)>,
mut containers: Query<
(&mut ScrollPosition, &UiGlobalTransform, &ComputedNode),
With<SettingsPanelScrollable>,
>,
) {
let Some(target) = focused.0 else { return };
// Gather button geometry.
let Ok((target_transform, target_node)) = nodes.get(target) else {
return;
};
// Walk ancestors looking for the scroll container. Bounded to keep
// a malformed hierarchy from hanging the system.
let mut current = target;
let mut container_entity: Option<Entity> = None;
for _ in 0..32 {
if containers.get(current).is_ok() {
container_entity = Some(current);
break;
}
match parents.get(current) {
Ok(parent) => current = parent.parent(),
Err(_) => break,
}
}
let Some(container) = container_entity else {
return;
};
let Ok((mut scroll, container_transform, container_node)) = containers.get_mut(container)
else {
return;
};
// Geometry is reported in physical pixels by `ComputedNode.size` and
// `UiGlobalTransform.translation`. `ScrollPosition` is in logical px,
// so convert via `inverse_scale_factor` before we write.
let inv = target_node.inverse_scale_factor;
let target_height = target_node.size().y;
let target_centre_y = target_transform.translation.y;
let target_top = target_centre_y - target_height * 0.5;
let target_bottom = target_centre_y + target_height * 0.5;
let container_height = container_node.size().y;
let container_top = container_transform.translation.y - container_height * 0.5;
// Convert button window-space Y to container-local Y. The container
// is currently scrolled by `scroll.0.y` *logical* pixels — multiply
// by physical-per-logical to compare with physical pixel extents.
let scroll_phys = scroll.0.y / inv.max(f32::EPSILON);
let viewport_top = container_top + scroll_phys;
let viewport_bottom = viewport_top + container_height;
// Layout may not have run yet (zero size on first frame) — no
// sensible scroll target until the container has dimensions.
if container_height <= 0.0 {
return;
}
let pad_phys = FOCUS_SCROLL_PADDING / inv.max(f32::EPSILON);
if target_top < viewport_top {
// Button extends above the viewport — scroll up.
let new_top = target_top - pad_phys;
let delta = new_top - viewport_top;
scroll.0.y = ((scroll_phys + delta) * inv).max(0.0);
} else if target_bottom > viewport_bottom {
// Button extends below the viewport — scroll down.
let new_bottom = target_bottom + pad_phys;
let delta = new_bottom - viewport_bottom;
scroll.0.y = ((scroll_phys + delta) * inv).max(0.0);
}
}
/// Scrolls the settings panel inner card in response to mouse-wheel events.
///
/// `offset_y` increases downward (0 = top of content). Scrolling down (ev.y < 0)
/// adds to the offset; scrolling up subtracts. Clamped to >= 0 so it never
/// scrolls past the top.
pub(super) fn scroll_settings_panel(
mut scroll_evr: MessageReader<MouseWheel>,
screen: Res<SettingsScreen>,
mut scrollables: Query<&mut ScrollPosition, With<SettingsPanelScrollable>>,
) {
if !screen.0 {
scroll_evr.clear();
return;
}
let delta_y: f32 = scroll_evr
.read()
.map(|ev| match ev.unit {
MouseScrollUnit::Line => ev.y * 50.0,
MouseScrollUnit::Pixel => ev.y,
})
.sum();
if delta_y == 0.0 {
return;
}
for mut sp in scrollables.iter_mut() {
sp.0.y = (sp.0.y - delta_y).max(0.0);
}
}
// ---------------------------------------------------------------------------
// Window geometry persistence
// ---------------------------------------------------------------------------
File diff suppressed because it is too large Load Diff
@@ -1,4 +1,7 @@
use super::*;
use crate::ui_focus::{FocusRow, Focusable};
use crate::ui_modal::ModalButton;
use crate::ui_tooltip::Tooltip;
fn headless_app() -> App {
let mut app = App::new();
@@ -326,9 +329,7 @@ fn settings_buttons_carry_tooltip() {
.world_mut()
.query::<(&SettingsButton, &Tooltip)>()
.iter(app.world())
.find_map(|(btn, tip)| {
matches!(btn, SettingsButton::ConnectSync).then(|| tip.0.clone())
})
.find_map(|(btn, tip)| matches!(btn, SettingsButton::ConnectSync).then(|| tip.0.clone()))
.expect("Connect button should spawn with a Tooltip when backend is Local");
assert_eq!(
connect_tip.as_ref(),
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,487 @@
//! Per-frame value-text updater systems and their label helpers.
use super::*;
use solitaire_core::DrawStockConfig;
use solitaire_data::{AnimSpeed, settings::Theme};
use crate::font_plugin::FontResource;
use crate::progress_plugin::ProgressResource;
use crate::resources::{SettingsScrollPos, SyncStatus, SyncStatusResource};
use crate::theme::ThemeThumbnailCache;
use crate::ui_modal::ModalScrim;
use crate::ui_theme::{BORDER_SUBTLE_HC, HighContrastBackground, HighContrastBorder};
/// Spawns the Settings panel when `SettingsScreen` becomes `true`;
/// despawns it when it becomes `false`.
#[allow(clippy::too_many_arguments)]
pub(super) fn sync_settings_panel_visibility(
screen: Res<SettingsScreen>,
panels: Query<Entity, With<SettingsPanel>>,
other_modal_scrims: Query<(), (With<ModalScrim>, Without<SettingsPanel>)>,
scroll_nodes: Query<&ScrollPosition, With<SettingsScrollNode>>,
mut scroll_pos: ResMut<SettingsScrollPos>,
mut commands: Commands,
settings: Res<SettingsResource>,
sync_status: Option<Res<SyncStatusResource>>,
progress: Option<Res<ProgressResource>>,
font_res: Option<Res<FontResource>>,
theme_registry: Option<Res<crate::theme::ThemeRegistry>>,
theme_thumbs: Option<Res<ThemeThumbnailCache>>,
card_images: Option<Res<crate::card_plugin::CardImageSet>>,
) {
if !screen.is_changed() {
return;
}
if screen.0 {
if panels.is_empty() && other_modal_scrims.is_empty() {
let status_label = sync_status.map_or_else(
|| "Status: local only".to_string(),
|s| sync_status_label(&s.0),
);
let unlocked_backs = progress
.as_ref()
.map_or(&[0][..], |p| p.0.unlocked_card_backs.as_slice());
let unlocked_bgs = progress
.as_ref()
.map_or(&[0][..], |p| p.0.unlocked_backgrounds.as_slice());
// Snapshot themes by id, display_name and (optional)
// thumbnail pair so spawn_settings_panel doesn't have to
// know about the registry / cache shapes. Empty when
// ThemeRegistryPlugin isn't installed (tests under
// MinimalPlugins) — the picker row simply won't render.
// Missing thumbnails (cache not ready, or partial user
// theme) leave `thumbnails: None` so the chip renders its
// plain-text fallback instead of a broken sprite.
let themes: Vec<ThemePickerEntry> = theme_registry
.as_deref()
.map(|r| {
r.iter()
.map(|e| ThemePickerEntry {
id: e.id.clone(),
display_name: e.display_name.clone(),
thumbnails: theme_thumbs
.as_deref()
.and_then(|c| c.get(&e.id))
.filter(|p| p.is_fully_populated())
.cloned(),
})
.collect()
})
.unwrap_or_default();
// The active card-art theme can supply its own back image —
// see `card_plugin::CardImageSet::theme_back`. When that is
// populated the legacy "Card Back" picker has no visible
// effect, so we render it muted with an explanatory caption
// rather than letting the player click swatches that do
// nothing. Absent under `MinimalPlugins`; treated as
// "no override" in that case.
let theme_overrides_back = card_images
.as_ref()
.is_some_and(|cs| cs.theme_back.is_some());
spawn_settings_panel(
&mut commands,
&settings.0,
&status_label,
unlocked_backs,
unlocked_bgs,
&themes,
scroll_pos.0,
font_res.as_deref(),
theme_overrides_back,
);
}
} else {
// Save the current scroll offset before despawning the panel.
if let Ok(sp) = scroll_nodes.single() {
scroll_pos.0 = sp.0.y;
}
for entity in &panels {
commands.entity(entity).despawn();
}
}
}
/// Keeps the sync-status text node current while the panel is open.
pub(super) fn update_sync_status_text(
sync_status: Option<Res<SyncStatusResource>>,
mut text_nodes: Query<&mut Text, With<SyncStatusText>>,
) {
let Some(status) = sync_status else {
return;
};
if !status.is_changed() {
return;
}
let label = sync_status_label(&status.0);
for mut text in &mut text_nodes {
**text = label.clone();
}
}
pub(super) fn update_card_back_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<CardBackText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = card_back_label(settings.0.selected_card_back);
}
}
pub(super) fn update_background_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<BackgroundText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = background_label(settings.0.selected_background);
}
}
pub(super) fn update_anim_speed_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<AnimSpeedText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = anim_speed_label(&settings.0.animation_speed);
}
}
pub(super) fn update_color_blind_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<ColorBlindText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = color_blind_label(settings.0.color_blind_mode);
}
}
pub(super) fn update_high_contrast_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<HighContrastText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = on_off_label(settings.0.high_contrast_mode);
}
}
/// Repaints `BorderColor` on every entity tagged with
/// [`HighContrastBorder`] based on `Settings::high_contrast_mode`.
/// Off → the marker's `default_color`; on → `BORDER_SUBTLE_HC`
/// (`#a0a0a0`). Compares against the current border colour and
/// only mutates when different so Bevy's change-detection
/// doesn't trigger repaints every frame.
///
/// Spec at `design-system.md` §Accessibility (#2): under HC,
/// outlines boost from `#505050` (BORDER_STRONG) to `#a0a0a0` so
/// modal panels, popover edges, and focus-ring carriers stay
/// legible on low-quality displays / for low-vision users.
///
/// Tagged sites in v0.21.x: the modal scaffold's card border
/// (`ui_modal::spawn_modal`). More sites can be tagged in
/// follow-ups by adding `HighContrastBorder::with_default(...)`
/// to their spawn tuple.
pub(super) fn update_high_contrast_borders(
settings: Res<SettingsResource>,
mut borders: Query<(&HighContrastBorder, &mut BorderColor)>,
) {
let high_contrast = settings.0.high_contrast_mode;
for (marker, mut border) in borders.iter_mut() {
let target = if high_contrast {
BORDER_SUBTLE_HC
} else {
marker.default_color
};
// Only mutate when actually different — avoids per-frame
// change-detection churn. `border.left` is representative
// because every tagged site uses `BorderColor::all(...)`.
if border.left != target {
*border = BorderColor::all(target);
}
}
}
/// Repaints `BackgroundColor` on every entity tagged with
/// [`HighContrastBackground`] based on `Settings::high_contrast_mode`.
/// Off → the marker's `default_color`; on → `BORDER_SUBTLE_HC`
/// (`#a0a0a0`). Compares against the current background and only
/// mutates when different so Bevy's change-detection doesn't trigger
/// repaints every frame.
///
/// Parallel to [`update_high_contrast_borders`]. Same on/off rule,
/// same change-suppression idiom, different colour channel —
/// `BackgroundColor` for tick marks, decorative strips, fine
/// separators that paint their shape directly rather than via a
/// `BorderColor` on a wider Node.
///
/// Tagged sites in v0.21.x: the replay overlay's 1 px scrub track
/// + 5 quarter-mark notch ticks (`replay_overlay::spawn_overlay`).
///
/// More sites can be tagged in follow-ups by adding
/// `HighContrastBackground::with_default(...)` to their spawn tuple.
pub(super) fn update_high_contrast_backgrounds(
settings: Res<SettingsResource>,
mut backgrounds: Query<(&HighContrastBackground, &mut BackgroundColor)>,
) {
let high_contrast = settings.0.high_contrast_mode;
for (marker, mut bg) in backgrounds.iter_mut() {
let target = if high_contrast {
marker.hc_color
} else {
marker.default_color
};
if bg.0 != target {
*bg = BackgroundColor(target);
}
}
}
pub(super) fn update_reduce_motion_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<ReduceMotionText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = on_off_label(settings.0.reduce_motion_mode);
}
}
pub(super) fn update_touch_input_mode_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<TouchInputModeText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = touch_input_mode_label(&settings.0.touch_input_mode);
}
}
/// Refreshes the live "Winnable deals only" toggle value in the
/// Gameplay section whenever `SettingsResource` changes (button click,
/// hand-edited `settings.json` reload, etc.).
pub(super) fn update_winnable_deals_only_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<WinnableDealsOnlyText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = winnable_deals_only_label(settings.0.winnable_deals_only);
}
}
/// Refreshes the live "Share usage data" toggle value in the Privacy section
/// whenever `SettingsResource` changes.
pub(super) fn update_analytics_enabled_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<AnalyticsEnabledText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = on_off_label(settings.0.analytics_enabled);
}
}
/// Refreshes the live "Smart window size" toggle value whenever
/// `SettingsResource` changes. The flag is stored negatively as
/// `disable_smart_default_size`, so the label inverts.
pub(super) fn update_smart_default_size_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<SmartDefaultSizeText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = smart_default_size_label(!settings.0.disable_smart_default_size);
}
}
/// Refreshes the live tooltip-delay value in the Gameplay section
/// whenever `SettingsResource` changes (slider buttons, hand-edited
/// settings.json reload, etc.).
pub(super) fn update_tooltip_delay_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<TooltipDelayText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = tooltip_delay_label(settings.0.tooltip_delay_secs);
}
}
/// Refreshes the live time-bonus-multiplier value in the Gameplay
/// section whenever `SettingsResource` changes.
pub(super) fn update_time_bonus_multiplier_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<TimeBonusMultiplierText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = time_bonus_label(settings.0.time_bonus_multiplier);
}
}
/// Refreshes the live replay-playback per-move-interval value in the
/// Gameplay section whenever `SettingsResource` changes (slider buttons,
/// hand-edited settings.json reload, etc.).
pub(super) fn update_replay_move_interval_text(
settings: Res<SettingsResource>,
mut text_nodes: Query<&mut Text, With<ReplayMoveIntervalText>>,
) {
if !settings.is_changed() {
return;
}
for mut text in &mut text_nodes {
**text = replay_move_interval_label(settings.0.replay_move_interval_secs);
}
}
pub(super) fn card_back_label(idx: usize) -> String {
if idx == 0 {
"Default".to_string()
} else {
format!("Style {idx}")
}
}
pub(super) fn background_label(idx: usize) -> String {
if idx == 0 {
"Default".to_string()
} else {
format!("Style {idx}")
}
}
pub(super) fn sync_status_label(status: &SyncStatus) -> String {
match status {
SyncStatus::Idle => "Status: idle".to_string(),
SyncStatus::Syncing => "Status: syncing…".to_string(),
SyncStatus::LastSynced(t) => {
let secs = chrono::Utc::now()
.signed_duration_since(*t)
.num_seconds()
.max(0);
if secs < 60 {
format!("Last synced: {secs}s ago")
} else {
format!("Last synced: {}m ago", secs / 60)
}
}
SyncStatus::Error(e) => format!("Sync error: {e}"),
}
}
pub(super) fn draw_mode_label(mode: &DrawStockConfig) -> String {
match mode {
DrawStockConfig::DrawOne => "Draw 1".into(),
DrawStockConfig::DrawThree => "Draw 3".into(),
}
}
pub(super) fn anim_speed_label(speed: &AnimSpeed) -> String {
match speed {
AnimSpeed::Normal => "Normal".into(),
AnimSpeed::Fast => "Fast".into(),
AnimSpeed::Instant => "Instant".into(),
}
}
pub(super) fn theme_label(theme: &Theme) -> String {
match theme {
Theme::Green => "Green".into(),
Theme::Blue => "Blue".into(),
Theme::Dark => "Dark".into(),
}
}
pub(super) fn color_blind_label(enabled: bool) -> String {
if enabled { "ON".into() } else { "OFF".into() }
}
/// Generic ON/OFF label shared by the high-contrast and reduce-
/// motion accessibility toggles. Same format as
/// [`color_blind_label`] / [`winnable_deals_only_label`] —
/// keeping all simple boolean toggle rows visually uniform.
pub(super) fn on_off_label(enabled: bool) -> String {
if enabled { "ON".into() } else { "OFF".into() }
}
/// Display string for the "Winnable deals only" toggle. Mirrors
/// [`color_blind_label`] — "ON" / "OFF" — so the layout is uniform
/// with the rest of the Gameplay-section toggles.
pub(super) fn winnable_deals_only_label(enabled: bool) -> String {
if enabled { "ON".into() } else { "OFF".into() }
}
pub(super) fn touch_input_mode_label(mode: &solitaire_data::settings::TouchInputMode) -> String {
use solitaire_data::settings::TouchInputMode;
match mode {
TouchInputMode::OneTap => "One-tap".into(),
TouchInputMode::TapToSelect => "Tap to select".into(),
}
}
/// Display string for the "Smart window size" toggle. The argument
/// is the *enabled* state (i.e. the inverse of the underlying
/// `disable_smart_default_size` field) so reading the label gives
/// the player intuitive ON/OFF semantics.
pub(super) fn smart_default_size_label(enabled: bool) -> String {
if enabled { "ON".into() } else { "OFF".into() }
}
/// Formats the tooltip-hover delay for display in the Settings panel.
/// `0.0` reads as `"Instant"` so the zero-delay case has a name; any
/// other value prints as `"{n:.1} s"` (e.g. `"0.5 s"`, `"1.2 s"`).
pub(super) fn tooltip_delay_label(secs: f32) -> String {
if secs <= 0.0 {
"Instant".into()
} else {
format!("{secs:.1} s")
}
}
/// Formats the cosmetic time-bonus multiplier for display in the
/// Settings panel. `0.0` reads as `"Off"` so the player understands the
/// time-bonus row will be hidden; any other value prints as
/// `"{n:.1}×"` (e.g. `"1.0×"`, `"1.5×"`).
pub(super) fn time_bonus_label(value: f32) -> String {
if value <= 0.0 {
"Off".into()
} else {
format!("{value:.1}×")
}
}
/// Formats the replay-playback per-move interval for display in the
/// Settings panel. Mirrors [`tooltip_delay_label`] for parity — the
/// readout is `"{n:.2} s/move"` (e.g. `"0.45 s/move"`, `"0.10 s/move"`),
/// using two decimal places because the step is 0.05 s.
pub(super) fn replay_move_interval_label(secs: f32) -> String {
format!("{secs:.2} s/move")
}
+86 -2
View File
@@ -362,7 +362,15 @@ fn on_window_resized(
(&mut Sprite, &mut Transform),
(With<TableBackground>, Without<PileMarker>),
>,
mut markers: Query<(&PileMarker, &mut Sprite, &mut Transform), Without<TableBackground>>,
mut markers: Query<
(&PileMarker, &mut Sprite, &mut Transform, Option<&Children>),
Without<TableBackground>,
>,
mut marker_outlines: Query<
&mut Sprite,
(Without<PileMarker>, Without<TableBackground>, Without<Text2d>),
>,
mut marker_labels: Query<&mut TextFont, With<Text2d>>,
) {
let Some(ev) = events.read().last() else {
return;
@@ -373,6 +381,14 @@ fn on_window_resized(
let safe_area_top = insets.top / scale;
let safe_area_bottom = insets.bottom / scale;
let hud_visible = hud_vis.as_deref().copied().unwrap_or_default() == HudVisibility::Visible;
// Android surface sizes after fold/unfold are unreliable (winit does not
// forward every content-rect change), so make each relayout observable
// in logcat — this is the primary evidence channel for foldable bugs.
#[cfg(target_os = "android")]
info!(
"layout: resize to {:.0}x{:.0} (insets top={:.0} bottom={:.0}, hud={hud_visible})",
window_size.x, window_size.y, insets.top, insets.bottom
);
let mut new_layout = compute_layout(window_size, safe_area_top, safe_area_bottom, hud_visible);
// compute_layout sizes the fan for a worst-case column; refine it to the
@@ -394,11 +410,27 @@ fn on_window_resized(
transform.translation.y = 0.0;
}
for (marker, mut sprite, mut transform) in &mut markers {
for (marker, mut sprite, mut transform, children) in &mut markers {
if let Some(pos) = new_layout.pile_positions.get(&marker.0) {
sprite.custom_size = Some(new_layout.card_size);
transform.translation.x = pos.x;
transform.translation.y = pos.y;
// Children carry the outline frame and the "A"/"K" watermark.
// They are sized at spawn from that layout's card size, so they
// must be re-derived here too or a resize (fold/unfold, rotation)
// leaves them at the stale size — visible as oversized grey
// frames on empty piles.
let outline_size =
new_layout.card_size + Vec2::splat(PILE_MARKER_OUTLINE_WIDTH * 2.0);
let font_size = new_layout.card_size.x * 0.28;
for child in children.into_iter().flatten() {
if let Ok(mut outline) = marker_outlines.get_mut(*child) {
outline.custom_size = Some(outline_size);
}
if let Ok(mut label) = marker_labels.get_mut(*child) {
label.font_size = font_size;
}
}
}
}
@@ -623,6 +655,58 @@ mod tests {
assert_eq!(types.len(), 12);
}
#[test]
fn resize_updates_marker_outline_and_watermark_children() {
// Regression (found on Galaxy Fold 7, v0.41.0): `on_window_resized`
// resized the marker fill sprite but never its children, so after a
// fold/unfold the outline frame and "A"/"K" watermark stayed at
// spawn-time size — rendering as oversized grey slabs on empty piles.
let mut app = headless_app();
// Shrink the window well below the 1280×800 spawn default.
app.world_mut().write_message(WindowResized {
window: Entity::PLACEHOLDER,
width: 640.0,
height: 480.0,
});
app.update();
let card_size = app.world().resource::<LayoutResource>().0.card_size;
let expected_outline = card_size + Vec2::splat(PILE_MARKER_OUTLINE_WIDTH * 2.0);
let expected_font = card_size.x * 0.28;
let marker_children: Vec<Entity> = {
let mut q = app.world_mut().query::<(&PileMarker, &Children)>();
q.iter(app.world())
.flat_map(|(_, c)| c.iter().collect::<Vec<_>>())
.collect()
};
assert!(
!marker_children.is_empty(),
"pile markers must have outline/watermark children"
);
let mut outlines = 0;
let mut labels = 0;
for child in marker_children {
if let Some(sprite) = app.world().entity(child).get::<Sprite>() {
assert_eq!(
sprite.custom_size,
Some(expected_outline),
"outline child must track the resized card size",
);
outlines += 1;
}
if let Some(font) = app.world().entity(child).get::<TextFont>() {
assert!(
(font.font_size - expected_font).abs() < 0.01,
"watermark font must track the resized card size",
);
labels += 1;
}
}
assert_eq!(outlines, 12, "all 12 markers carry an outline child");
assert!(labels >= 11, "tableau + foundation markers carry watermarks");
}
#[test]
fn pile_markers_hide_when_pile_is_occupied() {
// After a fresh deal: the 7 tableau piles + the stock pile are
+12 -12
View File
@@ -1649,62 +1649,62 @@ function __wbg_get_imports() {
return ret;
},
__wbindgen_cast_0000000000000001: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 114857, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 114842, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__hfb2e9a2f0bbd9ecc);
return ret;
},
__wbindgen_cast_0000000000000002: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a);
return ret;
},
__wbindgen_cast_0000000000000003: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Array<any>"), NamedExternref("ResizeObserver")], shim_idx: 9843, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Array<any>"), NamedExternref("ResizeObserver")], shim_idx: 9828, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h876550298b312ff8);
return ret;
},
__wbindgen_cast_0000000000000004: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Array<any>")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Array<any>")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_3);
return ret;
},
__wbindgen_cast_0000000000000005: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Event")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Event")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_4);
return ret;
},
__wbindgen_cast_0000000000000006: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("FocusEvent")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("FocusEvent")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_5);
return ret;
},
__wbindgen_cast_0000000000000007: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("KeyboardEvent")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("KeyboardEvent")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_6);
return ret;
},
__wbindgen_cast_0000000000000008: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PageTransitionEvent")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PageTransitionEvent")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_7);
return ret;
},
__wbindgen_cast_0000000000000009: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PointerEvent")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PointerEvent")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_8);
return ret;
},
__wbindgen_cast_000000000000000a: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("WheelEvent")], shim_idx: 9830, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("WheelEvent")], shim_idx: 9815, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h15aa57dbc666225a_9);
return ret;
},
__wbindgen_cast_000000000000000b: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Option(NamedExternref("Blob"))], shim_idx: 9840, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Option(NamedExternref("Blob"))], shim_idx: 9825, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h657f46feffff6fe4);
return ret;
},
__wbindgen_cast_000000000000000c: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [], shim_idx: 9834, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [], shim_idx: 9819, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h545edb23183e448a);
return ret;
},
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