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Author SHA1 Message Date
funman300 c66baceb10 Merge pull request 'docs(android): update NDK reference to 30.0.14904198' (#108) from docs/android-ndk-version into master
Android Release / build-apk (push) Successful in 5m39s
2026-06-25 17:37:03 +00:00
funman300 329f224ffd docs(android): update NDK reference to 30.0.14904198
The setup doc pinned NDK 26.3.11579264, but newer NDKs build fine
(verified locally on 30.0.14904198 / build-tools 37.0.0: cross-compile,
android-target clippy, and a full signed arm64-v8a APK). Note that the
exact versions are not load-bearing and build_android_apk.sh
auto-discovers the newest installed NDK/build-tools.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-25 10:36:48 -07:00
Gitea CI 2fc190ee42 chore(web): regenerate wasm artifacts
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2026-06-25 17:20:48 +00:00
funman300 060efaee7b Merge pull request 'docs(changelog): note Draw-Three waste fan hit-test fix' (#107) from docs/changelog-waste-fan into master 2026-06-25 17:13:51 +00:00
funman300 ef599ffa17 docs(changelog): note Draw-Three waste fan hit-test fix
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-25 10:13:39 -07:00
funman300 22334e0dd5 Merge pull request 'fix(engine): share Draw-Three waste fan step between renderer and hit-test' (#106) from fix/draw-three-waste-fan-hittest into master
Build and Deploy / build-and-push (push) Successful in 1m51s
Web WASM Rebuild / rebuild (push) Successful in 7m36s
2026-06-25 17:11:26 +00:00
funman300 942b9c2161 fix(engine): share Draw-Three waste fan step between renderer and hit-test
The waste fan x-offset was computed two ways: the renderer used
tableau_col_step * 0.224 while the hit-test hard-coded card_size.x * 0.28.
These coincide on desktop (col_step = 1.25*cw) but drift on Android, where
tighter column spacing (H_GAP_DIVISOR=32, col_step ~= 1.03*cw) makes the
renderer fan at ~0.231*cw. The top fanned waste card's sprite then sits
~14px left of its click target, so dragging the visible top card grabs
the card beneath it.

Extract waste_fan_step() and tableau_col_step() as the single source for
both the renderer (card_plugin::card_positions) and the hit-test
(input_plugin::card_position) so they can no longer diverge. Add a
regression test that simulates Android-tight spacing and asserts the hit
target tracks the renderer.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-25 10:10:57 -07:00
funman300 fde863a4e4 Merge pull request 'test(engine): regression tests for waste-card draggability' (#105) from test/waste-draggable-regression into master
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2026-06-25 16:58:15 +00:00
funman300 0cf5fc4293 test(engine): regression tests for waste-card draggability
Adds two find_draggable_at tests covering the reported stock/waste
drag bug: clicking the visible top of a multi-card waste must pick the
top index (not the buffer card beneath), and a lone waste card must
still be draggable. Both pass against current logic, pinning the
correct behaviour.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-25 09:56:56 -07:00
Gitea CI 79ddfbc034 chore(web): regenerate wasm artifacts
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2026-06-24 17:40:04 +00:00
funman300 7919365775 Merge pull request 'fix(engine): clicking the waste card no longer draws from stock' (#104) from fix/waste-click-draws into master
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2026-06-24 17:31:31 +00:00
funman300 f88b6f61d0 fix(engine): clicking the waste card no longer draws from stock
handle_stock_click (and handle_touch_stock_tap) hit-tested both the face-down
deck AND the waste slot, so a click/tap on the drawn waste card fired
DrawRequestEvent — drawing the next card instead of playing the waste card, and
swallowing the first click of a double-click so auto-move never triggered.

Only the deck draws now. The waste card is left free to play: double-click /
double-tap to auto-move, or drag it.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-24 10:31:21 -07:00
funman300 189e0afd24 Merge pull request 'fix(e2e): cycle gate resets games in place (no 240 page reloads)' (#103) from fix/cycle-gate-newgame into master
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2026-06-24 17:07:46 +00:00
funman300 a32d666751 fix(e2e): reset cycle-gate games in place instead of 240 page reloads
The cycle regression gate did a fresh page.goto() for each of 240 games in one
browser context. Around game ~100 the accumulated resources made
page.waitForFunction time out (30s), failing the gate on ~88% of runs — a
long-standing flaky-CI issue, not a product regression (the 18 e2e tests always
pass).

Load the page once and reset each game via a new __FERROUS_DEBUG__.newGame(seed,
drawThree) bridge method (added to game.js — it was already in play.html).
cycle_metrics.js now navigates once, then loops newGame() + runAutoplay with no
per-game reload, so the run stays fast and stable.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-24 10:07:31 -07:00
funman300 a5902ac0af Merge pull request 'fix(server): scope no-cache to HTML pages (fix web-e2e cycle gate)' (#102) from fix/cache-scope-html-only into master
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Web E2E / web-e2e (push) Failing after 5m28s
2026-06-24 16:46:36 +00:00
funman300 c3b83f30d1 fix(server): scope Cache-Control no-cache to HTML pages, not static assets
The blanket `no-cache` from the earlier fix (#99) regressed the web-e2e cycle
regression gate: it reloads /play-classic 240 times, and with no-cache the
browser re-validated and recompiled the wasm on every load, blowing past the
30s bridge-ready timeout (green at #98, red from #99 onward).

Scope no-cache to just the `include_str!` HTML routes (which change on every
deploy and have no validators — the actual staleness source). The `/web` +
`/assets` ServeDir keep their default Last-Modified caching, so repeated page
loads reuse the downloaded/compiled wasm and the cycle gate is fast again. HTML
freshness — the fix Rhys needed — is unchanged.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-24 09:46:23 -07:00
Gitea CI a46505fe45 chore(web): regenerate wasm artifacts
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2026-06-24 16:37:55 +00:00
funman300 1602f1952d Merge pull request 'fix(web): use adapter limits so /play renders at native res (no 2048 cap)' (#101) from test/web-adapter-limits into master
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2026-06-24 16:20:07 +00:00
funman300 81893788c1 fix(web): use adapter limits (Functionality) so /play renders at native res
The 2048 surface limit was never wgpu's or the GPU's — it's
downlevel_webgl2_defaults().max_texture_dimension_2d (2048), which
WgpuSettingsPriority::WebGL2 forces. Switch to Functionality: on the WebGL2
(Gl) backend Bevy then adopts the adapter's real limits, which are still
WebGL2-constrained for features/buffers (shaders stay GLES-compatible) but
report the GPU's true max texture dimension (e.g. 16384). The device is
requested with exactly what the adapter offers, so creation can't fail, the
surface is no longer capped, and large viewports (4K) render with no letterbox
and no hardcoded cap.

Removes the resize_constraints cap and the play.html max-width/height caps.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-24 09:18:07 -07:00
Gitea CI c232444ef0 chore(web): regenerate wasm artifacts
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2026-06-24 02:16:19 +00:00
funman300 56e05caaa9 Merge pull request 'fix(web): cap canvas via Window resize_constraints (real surface fix)' (#100) from fix/web-canvas-resize-constraints into master
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2026-06-24 01:59:36 +00:00
funman300 090b5e789e fix(web): cap canvas via Window resize_constraints (the actual fix)
The previous attempts (#97/#98) capped a wrapper element's max-width and
relied on the canvas's width:100% resolving against it — but winit observes
and sizes the *canvas element itself* (via ResizeObserver on its content box),
so the wrapper cap never reached the surface and /play still panicked at
2560x1440 on a 4K@150% viewport.

Use the canonical mechanism instead: set the primary Window's
`resize_constraints { max_width: 2048, max_height: 2048 }`. On web, Bevy maps
this to winit `set_max_inner_size` → the canvas's own `max-width`/`max-height`
style, so the wgpu surface can never exceed wgpu's downlevel_webgl2
max_texture_dimension_2d (2048). play.html mirrors the same `max-*` directly on
#bevy-canvas (belt-and-suspenders) and centres the letterbox with margin:auto;
the obsolete wrapper + clamp script are removed.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-23 18:59:26 -07:00
funman300 1e0619897a Merge pull request 'fix(server): Cache-Control no-cache for web assets (stop stale builds)' (#99) from fix/web-no-cache-headers into master
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2026-06-24 01:45:09 +00:00
funman300 1b5dfa3e27 fix(server): send Cache-Control: no-cache for web assets
Returning players kept getting stale builds: after the /play canvas fix
deployed, the origin served the new play.html (verified — 8/8 cache-busted
requests) but browsers still rendered the old one even after a hard reload.

Cause: the server sets no Cache-Control on the web router. The HTML pages are
include_str!'d into the binary and the wasm-bindgen output (canvas.js,
canvas_bg.wasm, solitaire_wasm.*) uses fixed filenames that change in place on
every deploy, so browsers heuristically cache them indefinitely.

Add `Cache-Control: no-cache` in the security_headers middleware (which wraps
the web router). Browsers now revalidate before using a cached copy; ServeDir
supplies Last-Modified/ETag so unchanged assets still return a cheap 304, while
changed ones (a new deploy) are re-fetched. Stops the stale-build problem for
everyone going forward.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-23 18:44:59 -07:00
funman300 4850e9417e Merge pull request 'fix(web): cap /play canvas at the real 2048 wgpu limit (corrects #97)' (#98) from fix/web-canvas-cap-2048-constant into master
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2026-06-24 01:14:49 +00:00
funman300 8a2a22ff1b fix(web): cap /play canvas at the real 2048 wgpu limit, not gl.MAX_TEXTURE_SIZE
Correction to the previous canvas clamp (#97), which would NOT have fixed the
crash. It capped the wrapper to the device's gl.MAX_TEXTURE_SIZE, but that's
the hardware limit — on a 4K/integrated GPU it reports 8192+, so the wrapper
was never actually capped and the 2560-wide surface still exceeded the limit.

The real ceiling is wgpu's, not the hardware's: on wasm Bevy creates the device
with Limits::downlevel_webgl2_defaults() (forced by WgpuSettingsPriority::WebGL2
in solitaire_web/src/lib.rs; see bevy_render-0.18.1 settings.rs), whose
max_texture_dimension_2d is a fixed 2048 regardless of GPU. So the cap must be
the constant 2048.

(For the record: the reporter's display is 3840x2160 at 150% scale → a 2560x1440
logical viewport, which is the 2560 in the panic — nothing hardcodes 1440p.)

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-23 18:14:20 -07:00
funman300 b3b282ec2d Merge pull request 'fix(web): clamp /play canvas to GPU MAX_TEXTURE_SIZE (wgpu 2048 panic)' (#97) from fix/web-canvas-max-texture-size into master
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2026-06-24 00:45:29 +00:00
funman300 7b5d69e164 fix(web): clamp /play canvas to GPU MAX_TEXTURE_SIZE to stop wgpu panic
Rhys hit a fatal wgpu validation panic loading /play on a 1440p display:

    Surface::configure ... Requested was (2560, 1440), maximum extent for
    either dimension is 2048

The earlier scale_factor_override(1.0) fix only neutralised HiDPI (CSS×DPR);
it didn't help when the *logical* viewport itself exceeds 2048. `fit_canvas_to_
parent` sizes the wgpu surface to the canvas's parent, so a 2560-wide viewport
configures a 2560-wide surface — past WebGL2's 2048 per-dimension limit on
laptop/integrated GPUs, and the panic kills the WASM thread on the first frame.

Wrap the canvas in #bevy-wrap and, before init, clamp that element's max-
width/height to the device's actual gl.MAX_TEXTURE_SIZE (falling back to the
2048 WebGL2 floor). fit_canvas_to_parent then never produces a surface larger
than the GPU allows. Only devices at the 2048 floor letterbox (centered); GPUs
that report 4096/8192 still fill the viewport.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-23 17:44:46 -07:00
funman300 923a67dc7b Merge pull request 'fix(web): classic timer ran at 2x (idempotent startTimer)' (#96) from fix/classic-timer-double-count into master
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2026-06-24 00:18:53 +00:00
funman300 d4ad184324 fix(web): make classic timer idempotent to stop 2x double-counting
The /play-classic timer ran at double speed. startTimer() always created a new
setInterval and overwrote timerInterval without clearing the old one, so any
extra call leaked a second interval that also incremented elapsedSecs. The
visibilitychange handler calls startTimer() on "visible", and a load-time
visibilitychange (while startGame's timer is already running) stacks a second
interval — after which stopTimer() only clears one, so the leak persists and
the clock counts ~2x forever.

Guard startTimer() to no-op when an interval is already running. This fixes the
two e2e timer tests that surfaced it once the suite actually ran (they were
asserting 0:03 / 0:04 but seeing 0:06 / 0:13), and the user-visible 2x timer.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-23 17:18:10 -07:00
11 changed files with 246 additions and 87 deletions
+5
View File
@@ -47,6 +47,11 @@ project follows [Semantic Versioning](https://semver.org/).
- **Input and rendering issues.** Fixed stock/waste hit testing, accepted waste
clicks, delayed first-run onboarding until splash teardown, and kept dragged
stacks above all piles.
- **Draw-Three waste fan hit testing on Android.** The renderer and the click
hit-test now share a single `waste_fan_step` / `tableau_col_step` source. They
previously diverged under Android's tighter column spacing, shifting the top
fanned waste card's hit target onto the card beneath it, so dragging the visible
card played the wrong one.
- **Web runtime stability.** Fixed wasm32 runtime panics, HiDPI canvas surface
sizing, WebGL2 shader compatibility, and Firefox boot/render behavior.
- **Server and data hardening.** Moved bcrypt work to `spawn_blocking`, switched
+7 -2
View File
@@ -35,7 +35,7 @@ rm /tmp/cmdline-tools.zip
echo ''
echo '# Android dev'
echo 'export ANDROID_HOME="$HOME/Android/Sdk"'
echo 'export ANDROID_NDK_HOME="$ANDROID_HOME/ndk/26.3.11579264"'
echo 'export ANDROID_NDK_HOME="$ANDROID_HOME/ndk/30.0.14904198"'
echo 'export JAVA_HOME="$(dirname $(dirname $(readlink -f $(which java))))"'
echo 'export PATH="$PATH:$ANDROID_HOME/cmdline-tools/latest/bin:$ANDROID_HOME/platform-tools:$ANDROID_HOME/emulator"'
} >> ~/.bashrc
@@ -49,10 +49,15 @@ sdkmanager \
"platform-tools" \
"platforms;android-34" \
"build-tools;34.0.0" \
"ndk;26.3.11579264" \
"ndk;30.0.14904198" \
"emulator" \
"system-images;android-34;google_apis;x86_64"
# The exact NDK/build-tools versions above are not load-bearing — newer ones
# work (verified on NDK 30.0.14904198 / build-tools 37.0.0). `scripts/build_android_apk.sh`
# auto-discovers the newest installed NDK and build-tools, so set ANDROID_NDK_HOME
# (step 3) to whatever version you actually install here.
# 6. AVD for testing (one-time).
echo no | avdmanager create avd \
-n bevy_test \
+36 -22
View File
@@ -63,6 +63,36 @@ pub const TABLEAU_FACEDOWN_FAN_FRAC: f32 = 0.14;
// foundation piles bleeding through when a 2 sits on an Ace.
pub const STACK_FAN_FRAC: f32 = 0.025;
/// Per-card horizontal fan step for the Draw-Three waste, in logical pixels.
///
/// Derived from the actual tableau column spacing (`Tableau2.x Tableau1.x`)
/// rather than a fixed fraction of card width, so the fan scales with the
/// platform's `H_GAP_DIVISOR` (desktop ≈ 1.25×cw spacing, Android ≈ 1.03×cw).
/// Public so `input_plugin` can hit-test the fanned waste cards at the exact
/// x-offsets the renderer uses; any drift makes a click on the top fanned card
/// land on the card beneath it.
pub fn waste_fan_step(layout: &Layout) -> f32 {
tableau_col_step(layout) * 0.224
}
/// Horizontal distance between adjacent tableau columns (`Tableau2.x
/// Tableau1.x`), in logical pixels. The face-down stock is rendered one column
/// step left of the waste, and the Draw-Three waste fan ([`waste_fan_step`]) is
/// a fraction of it. Public so hit-testing mirrors the renderer exactly.
pub fn tableau_col_step(layout: &Layout) -> f32 {
let t1 = layout
.pile_positions
.get(&KlondikePile::Tableau(Tableau::Tableau1))
.copied()
.unwrap_or_default();
let t2 = layout
.pile_positions
.get(&KlondikePile::Tableau(Tableau::Tableau2))
.copied()
.unwrap_or_default();
(t2.x - t1.x).abs()
}
/// Font size as a fraction of card width.
const FONT_SIZE_FRAC: f32 = 0.28;
@@ -908,34 +938,18 @@ fn card_positions(game: &GameState, layout: &Layout) -> Vec<((Card, bool), Vec2,
(KlondikePile::Tableau(Tableau::Tableau7), false),
];
// Compute the Draw-Three waste fan step proportional to the column spacing
// (waste_x stock_x = card_width + h_gap) rather than a fixed fraction of
// card_width. On desktop (H_GAP_DIVISOR=4) col_step = 1.25×cw and
// 0.224 × 1.25 = 0.28 — identical to the previous constant. On Android
// (H_GAP_DIVISOR=32) col_step ≈ 1.031×cw so fan_step ≈ 0.231×cw, keeping
// the top fanned card's centre within the waste column's own horizontal
// footprint instead of spilling into the adjacent gap.
let tableau_col_step = {
let t1 = layout
.pile_positions
.get(&KlondikePile::Tableau(Tableau::Tableau1))
.copied()
.unwrap_or_default();
let t2 = layout
.pile_positions
.get(&KlondikePile::Tableau(Tableau::Tableau2))
.copied()
.unwrap_or_default();
(t2.x - t1.x).abs()
};
let waste_fan_step = tableau_col_step * 0.224;
// 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;
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;
+101 -14
View File
@@ -10,7 +10,8 @@
//! - `Esc` → handled by `PausePlugin` (overlay toggle + paused flag)
//!
//! Mouse:
//! - Left-click on the stock pile (face-down deck) or waste slot → `DrawRequestEvent`
//! - Left-click on the stock pile (face-down deck) → `DrawRequestEvent`
//! (the waste card is left free to play: double-click to auto-move, or drag)
//! - Left-press-drag-release on a face-up card → `MoveRequestEvent` between
//! the origin pile and whatever pile the cursor is over at release.
//! On rejection, the drag cards snap back to their origin via a
@@ -34,7 +35,7 @@ use crate::auto_complete_plugin::AutoCompleteState;
use crate::card_animation::tuning::AnimationTuning;
use crate::card_animation::{CardAnimation, MotionCurve};
use crate::card_plugin::{
CardEntity, CardEntityIndex, HintHighlight, HintHighlightTimer, STACK_FAN_FRAC,
CardEntity, CardEntityIndex, HintHighlight, HintHighlightTimer, STACK_FAN_FRAC, waste_fan_step,
};
use crate::challenge_plugin::CHALLENGE_UNLOCK_LEVEL;
use crate::events::{
@@ -536,8 +537,9 @@ fn handle_stock_click(
// `pile_positions[Stock]` is the waste column (col_x(1)). card_plugin renders the
// face-down deck one column to the left via `base.x -= tableau_col_step`, placing it
// at Tableau1's x (col_x(0)). Hit-test both the deck AND the waste slot: in standard
// Klondike UX clicking either card draws from the deck.
// at Tableau1's x (col_x(0)). Only the deck draws — clicking the waste card must
// leave it free to be played (double-click to auto-move, or drag); hit-testing the
// waste slot here would intercept that click and draw the next card instead.
let Some(&waste_pos) = layout.0.pile_positions.get(&KlondikePile::Stock) else {
return;
};
@@ -549,9 +551,7 @@ fn handle_stock_click(
return;
};
let deck_pos = Vec2::new(t1_pos.x, waste_pos.y);
if point_in_rect(world, deck_pos, layout.0.card_size)
|| point_in_rect(world, waste_pos, layout.0.card_size)
{
if point_in_rect(world, deck_pos, layout.0.card_size) {
draw.write(DrawRequestEvent);
}
}
@@ -596,9 +596,9 @@ fn handle_touch_stock_tap(
continue;
};
let deck_pos = Vec2::new(t1_pos.x, waste_pos.y);
if point_in_rect(world, deck_pos, layout.0.card_size)
|| point_in_rect(world, waste_pos, layout.0.card_size)
{
// Only the face-down deck draws; tapping the waste card leaves it free to
// play (double-tap to auto-move, or drag).
if point_in_rect(world, deck_pos, layout.0.card_size) {
draw.write(DrawRequestEvent);
game_consumed.0 = true;
break; // one draw per tap frame
@@ -1175,12 +1175,15 @@ fn card_position(
Vec2::new(base.x, base.y + y_offset)
} else if matches!(pile, KlondikePile::Stock) && game.draw_mode() == DrawStockConfig::DrawThree {
// In Draw-Three mode the top 3 waste cards are fanned in X to match
// card_plugin::card_positions(). Hit-testing must use the same offsets
// so clicking the visually rightmost (top) card actually registers.
// card_plugin::card_positions(). Hit-testing uses the same `waste_fan_step`
// so clicking the visually rightmost (top) card actually registers — a
// fixed `card_size.x * 0.28` matched the renderer on desktop but drifted
// on Android (tighter column spacing), shifting the top card's hit target
// onto the card beneath it.
let pile_len = game.waste_cards().len();
let visible_start = pile_len.saturating_sub(3);
let slot = stack_index.saturating_sub(visible_start) as f32;
Vec2::new(base.x + slot * layout.card_size.x * 0.28, base.y)
Vec2::new(base.x + slot * waste_fan_step(layout), base.y)
} else {
base
}
@@ -1829,7 +1832,7 @@ const _VEC3_REFERENCED: Option<Vec3> = None;
mod tests {
use super::*;
use crate::layout::compute_layout;
use solitaire_core::{Foundation, Tableau};
use solitaire_core::{Deck, Foundation, Rank, Suit, Tableau};
use solitaire_core::{DrawStockConfig, game_state::GameState};
fn clear_test_piles(game: &mut GameState) {
@@ -1910,6 +1913,90 @@ mod tests {
assert_eq!(result.2.len(), 1);
}
#[test]
fn find_draggable_picks_waste_top_with_multiple_cards() {
// Reproduces the reported "drags the wrong waste card" bug: with several
// cards in the waste, clicking the visible top must pick the actual top
// (last index), not the buffer card underneath it.
let mut game = GameState::new(42, DrawStockConfig::DrawOne);
let layout = compute_layout(Vec2::new(1280.0, 800.0), 0.0, 0.0, true);
clear_test_piles(&mut game);
let waste = vec![Card::new(Deck::Deck1, Suit::Clubs, Rank::Two),
Card::new(Deck::Deck1, Suit::Hearts, Rank::Five),
Card::new(Deck::Deck1, Suit::Spades, Rank::Nine)];
game.set_test_waste_cards(waste.clone());
let top_index = waste.len() - 1; // 2 = the visible top
let top_pos = card_position(&game, &layout, &KlondikePile::Stock, top_index);
let result = find_draggable_at(top_pos, &game, &layout).expect("waste top is draggable");
assert_eq!(result.0, KlondikePile::Stock, "origin is the waste pile");
assert_eq!(result.1, top_index, "picks the top index, not the buffer");
assert_eq!(result.2, vec![waste[top_index].clone()], "drags the top card only");
}
#[test]
fn find_draggable_picks_lone_waste_card() {
// "can't play the first card in the stock" — a waste of one card must
// still be draggable.
let mut game = GameState::new(42, DrawStockConfig::DrawOne);
let layout = compute_layout(Vec2::new(1280.0, 800.0), 0.0, 0.0, true);
clear_test_piles(&mut game);
let card = Card::new(Deck::Deck1, Suit::Diamonds, Rank::Ace);
game.set_test_waste_cards(vec![card.clone()]);
let pos = card_position(&game, &layout, &KlondikePile::Stock, 0);
let result = find_draggable_at(pos, &game, &layout).expect("lone waste card is draggable");
assert_eq!(result.0, KlondikePile::Stock);
assert_eq!(result.1, 0);
assert_eq!(result.2, vec![card]);
}
#[test]
fn draw_three_waste_hit_test_matches_render_fan_step() {
// Regression: the Draw-Three waste hit-test must use the same fan step as
// the renderer (`card_plugin::waste_fan_step`). The previous hard-coded
// `card_size.x * 0.28` matched the renderer only on desktop (column step =
// 1.25*cw); under tighter Android-style spacing the two drift and the top
// fanned card's click target lands on the card beneath it — so dragging
// the visible top card plays the wrong one.
let mut game = GameState::new(7, DrawStockConfig::DrawThree);
let mut layout = compute_layout(Vec2::new(1280.0, 800.0), 0.0, 0.0, true);
// Force tight (Android-like) column spacing: ~1.03 * card_width.
let cw = layout.card_size.x;
let base = layout.pile_positions[&KlondikePile::Stock];
let t1 = layout.pile_positions[&KlondikePile::Tableau(Tableau::Tableau1)];
layout.pile_positions.insert(
KlondikePile::Tableau(Tableau::Tableau2),
Vec2::new(t1.x + cw * 1.03, t1.y),
);
clear_test_piles(&mut game);
let waste = vec![
Card::new(Deck::Deck1, Suit::Clubs, Rank::Two),
Card::new(Deck::Deck1, Suit::Hearts, Rank::Five),
Card::new(Deck::Deck1, Suit::Spades, Rank::Nine),
Card::new(Deck::Deck1, Suit::Diamonds, Rank::King),
];
game.set_test_waste_cards(waste.clone());
// visible_start = len-3 = 1, so the top card sits at fan slot 2.
let top_index = waste.len() - 1;
let pos = card_position(&game, &layout, &KlondikePile::Stock, top_index);
let expected = base.x + 2.0 * waste_fan_step(&layout);
assert!(
(pos.x - expected).abs() < 1e-3,
"hit-test must use the shared waste fan step"
);
// The old fixed constant would have drifted from the renderer here.
let old = base.x + 2.0 * cw * 0.28;
assert!(
(pos.x - old).abs() > 1.0,
"shared step must differ from the old fixed step under tight spacing"
);
}
#[test]
fn find_draggable_skips_face_down_cards() {
let game = GameState::new(42, DrawStockConfig::DrawOne);
+27 -22
View File
@@ -142,10 +142,32 @@ async function main() {
const page = await context.newPage();
const results = [];
// Load the page once, then reset each game in place via the bridge's
// newGame(). A fresh page.goto() per game (hundreds of navigations in a
// single browser context) accumulates resources and eventually makes
// waitForFunction time out around game ~100. One load stays fast.
await page.goto(`${baseUrl}/${route}`, { waitUntil: "domcontentloaded" });
if (route === "play-classic") {
const resumeVisible = await page
.locator("#resume-overlay:not(.hidden)")
.isVisible()
.catch(() => false);
if (resumeVisible) {
await page.evaluate(() => localStorage.removeItem("fs_game_save"));
await page.reload({ waitUntil: "domcontentloaded" });
}
}
await page.waitForFunction(
() =>
typeof window.__FERROUS_DEBUG__ === "object" &&
typeof window.__FERROUS_DEBUG__.newGame === "function",
null,
{ timeout: 30_000 }
);
for (let i = 0; i < games; i++) {
const seed = i;
const draw3 = i % 2 === 1;
const suffix = draw3 ? "&draw3=" : "";
const pageErrors = [];
const consoleErrors = [];
@@ -158,27 +180,10 @@ async function main() {
}
});
await page.goto(`${baseUrl}/${route}?seed=${seed}${suffix}`, {
waitUntil: "domcontentloaded",
});
if (route === "play-classic") {
const resumeVisible = await page
.locator("#resume-overlay:not(.hidden)")
.isVisible()
.catch(() => false);
if (resumeVisible) {
await page.evaluate(() => localStorage.removeItem("fs_game_save"));
await page.reload({ waitUntil: "domcontentloaded" });
}
}
await page.waitForFunction(
() =>
typeof window.__FERROUS_DEBUG__ === "object" &&
window.__FERROUS_DEBUG__.seed() !== null,
null,
{ timeout: 30_000 }
// Reset to a fresh seeded game without navigating.
await page.evaluate(
({ seed, draw3 }) => window.__FERROUS_DEBUG__.newGame(seed, draw3),
{ seed, draw3 }
);
const run = await page.evaluate(({ stepCap, policyName, maxVisits }) => {
+22 -1
View File
@@ -203,7 +203,12 @@ fn build_router_inner(state: AppState, rate_limit: bool) -> Router {
// and the wasm-bindgen-generated `web/pkg/`). The HTML page is the
// same regardless of `:id` — it reads the path from `location` in JS
// and fetches the replay JSON from `/api/replays/:id`.
let web = Router::new()
// HTML pages are `include_str!`'d into the binary and change on every
// deploy, so they get `Cache-Control: no-cache` (always revalidate). The
// `/web` + `/assets` static files keep ServeDir's default Last-Modified
// caching — applying no-cache to *those* too made the e2e cycle gate's 240
// page reloads recompile the wasm each time and time out.
let html_pages = Router::new()
.route(
"/",
get(|| async { Html(include_str!("../web/home.html")) }),
@@ -233,6 +238,10 @@ fn build_router_inner(state: AppState, rate_limit: bool) -> Router {
"/replays",
get(|| async { Html(include_str!("../web/replays.html")) }),
)
.layer(axum_middleware::from_fn(no_cache_headers));
let web = Router::new()
.merge(html_pages)
.nest_service("/web", ServeDir::new("solitaire_server/web"))
.nest_service("/assets", ServeDir::new("assets"))
.layer(axum_middleware::from_fn(security_headers));
@@ -270,6 +279,18 @@ async fn security_headers(req: Request<axum::body::Body>, next: axum_middleware:
res
}
/// Adds `Cache-Control: no-cache` so the browser always revalidates before
/// using a cached copy. Scoped to the `include_str!` HTML pages (which change
/// on every deploy and have no validators) — not the ServeDir static assets,
/// which keep normal Last-Modified caching so repeated page loads can reuse the
/// already-downloaded/compiled wasm.
async fn no_cache_headers(req: Request<axum::body::Body>, next: axum_middleware::Next) -> Response {
let mut res = next.run(req).await;
res.headers_mut()
.insert("Cache-Control", HeaderValue::from_static("no-cache"));
res
}
/// `GET /health` — simple liveness probe, no auth required.
async fn health() -> axum::Json<serde_json::Value> {
axum::Json(serde_json::json!({
+13
View File
@@ -270,6 +270,11 @@ function startGame(seed) {
// ── Timer ────────────────────────────────────────────────────────────────────
function startTimer() {
// Idempotent: never stack a second interval. The visibilitychange handler
// and startGame can both call this, and a stray call (e.g. a load-time
// visibilitychange while a timer is already running) would otherwise leak
// the old interval and make elapsedSecs increment twice per second.
if (timerInterval) return;
timerInterval = setInterval(() => {
elapsedSecs++;
updateTimerDisplay();
@@ -989,6 +994,14 @@ window.__FERROUS_DEBUG__ = {
serialize() {
return game ? game.serialize() : null;
},
// Reset to a fresh seeded game in place (no page reload). Lets the cycle
// regression harness reuse one page across hundreds of games instead of
// navigating per game.
newGame(seed, drawThreeMode) {
drawThree = !!drawThreeMode;
startGame(seed ?? randomSeed());
return game ? game.state() : null;
},
applyLegalMove(index) {
if (!game) return { ok: false, error: "game_not_ready" };
const result = game.debug_apply_legal_move(index);
+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: 114856, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 114855, ret: Result(Unit), inner_ret: Some(Result(Unit)) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__hea4b5125da4e5ded);
return ret;
},
__wbindgen_cast_0000000000000002: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Externref], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e);
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: 9848, 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: 9847, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h0fec466277fb30e8);
return ret;
},
__wbindgen_cast_0000000000000004: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Array<any>")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Array<any>")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_3);
return ret;
},
__wbindgen_cast_0000000000000005: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Event")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("Event")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_4);
return ret;
},
__wbindgen_cast_0000000000000006: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("FocusEvent")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("FocusEvent")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_5);
return ret;
},
__wbindgen_cast_0000000000000007: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("KeyboardEvent")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("KeyboardEvent")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_6);
return ret;
},
__wbindgen_cast_0000000000000008: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PageTransitionEvent")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PageTransitionEvent")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_7);
return ret;
},
__wbindgen_cast_0000000000000009: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PointerEvent")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("PointerEvent")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_8);
return ret;
},
__wbindgen_cast_000000000000000a: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("WheelEvent")], shim_idx: 9842, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [NamedExternref("WheelEvent")], shim_idx: 9841, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h2a0b90ad2a013a3e_9);
return ret;
},
__wbindgen_cast_000000000000000b: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Option(NamedExternref("Blob"))], shim_idx: 9844, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [Option(NamedExternref("Blob"))], shim_idx: 9843, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__hf05069bc44820cc5);
return ret;
},
__wbindgen_cast_000000000000000c: function(arg0, arg1) {
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [], shim_idx: 9840, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
// Cast intrinsic for `Closure(Closure { owned: true, function: Function { arguments: [], shim_idx: 9839, ret: Unit, inner_ret: Some(Unit) }, mutable: true }) -> Externref`.
const ret = makeMutClosure(arg0, arg1, wasm_bindgen__convert__closures_____invoke__h5e26b448f43bfba9);
return ret;
},
Binary file not shown.
+5 -2
View File
@@ -6,8 +6,11 @@
<title>Ferrous Solitaire</title>
<style>
* { box-sizing: border-box; margin: 0; padding: 0; }
body { background: #000; overflow: hidden; }
#bevy-canvas { display: block; width: 100vw; height: 100vh; }
html, body { height: 100%; background: #000; overflow: hidden; }
/* No size cap: the wgpu device now takes its max_texture_dimension from
the adapter (see solitaire_web/src/lib.rs), so the surface can match
the full viewport. fit_canvas_to_parent sizes the canvas to 100%. */
#bevy-canvas { display: block; width: 100%; height: 100%; }
</style>
</head>
<body>
+18 -12
View File
@@ -34,12 +34,13 @@ pub fn start() {
fit_canvas_to_parent: true,
// Prevent the browser stealing keyboard events and scroll.
prevent_default_event_handling: true,
// Force scale_factor = 1.0 so the wgpu surface is sized in
// CSS/logical pixels rather than physical pixels. Without this,
// HiDPI displays (devicePixelRatio ≥ 2) produce a framebuffer
// whose physical width can exceed WebGL2's 2048-pixel per-
// dimension limit, causing a wgpu validation panic on the first
// resize event and killing the WASM thread.
// Render at CSS/logical pixels (scale_factor 1.0) rather
// than physical (CSS × devicePixelRatio). This keeps the
// surface smaller on HiDPI displays — lighter GPU load and
// stable sizing — at the cost of some crispness. The wgpu
// texture-dimension limit is now taken from the adapter (see
// the RenderPlugin below), so this is purely a quality/perf
// choice, no longer a crash-avoidance hack.
resolution: WindowResolution::default()
.with_scale_factor_override(1.0),
..default()
@@ -53,14 +54,19 @@ pub fn start() {
meta_check: AssetMetaCheck::Never,
..default()
})
// WebGL2 priority constrains naga (the shader translator) to emit
// GLES 300es-compatible GLSL. Without this, Chromium's ANGLE driver
// rejects certain shader constructs (storage buffers, tight component
// limits) causing a fatal wgpu "Shader translation error". Firefox is
// more lenient; this setting makes both browsers work identically.
// `Functionality` makes wgpu adopt the *adapter's* real limits
// instead of the conservative `downlevel_webgl2_defaults()` that
// `WebGL2` priority forces. On the WebGL2 (Gl) backend the adapter
// already reports WebGL2-constrained features/limits — no storage
// buffers, etc., so shaders stay GLES-compatible on both Firefox and
// Chromium — but it reports the GPU's *true* `max_texture_dimension`
// (e.g. 16384) rather than 2048. The device is requested with exactly
// what the adapter offers, so creation can't fail, and the surface is
// no longer capped at 2048: large viewports (4K, etc.) render natively
// with no letterbox and no hardcoded cap.
.set(RenderPlugin {
render_creation: RenderCreation::Automatic(WgpuSettings {
priority: WgpuSettingsPriority::WebGL2,
priority: WgpuSettingsPriority::Functionality,
..default()
}),
..default()