Play/pause did nothing on the Android native video path — from the on-screen tap, from the control bar, and from a direct player_toggle invocation — while seek and skip kept working. That asymmetry was the whole clue: seek decides in player_seek_video, transport decides in toggle_playback. DR-195 is the cause. `html5_playing` is Rust's record of "a webview <video> is active and in this state", and toggle_playback/play/pause all route transport to that element whenever it is set. The player route mirrored element state into it UNCONDITIONALLY — from handleReportStart and, fatally, from handleReportProgress, which VideoPlayer calls on a 10-second interval. So on the native path the frontend re-declared every ten seconds that an element was playing when none existed, and every transport intent was emitted into the void. It also explains the flashing: the control bar and the JRay overlay both key off isPlaying, which was being contradicted on every tick. The mirror now lives in mirrorElementStateToRust() in VideoPlayer, gated on useHtml5Element — the only place that knows whether an element renders at all. The route cannot tell the paths apart, which is exactly how it came to lie. DR-193 hands transport authority back to the native backend when an item loads into it. Necessary but insufficient alone: the progress interval put the flag straight back, which is why the first device test after it still failed. DR-192 presents native video through a TextureView instead of a SurfaceView. A SurfaceView renders on its own layer outside the app window and punches a transparent region through it, and everything drawn above that hole — here, the entire Svelte UI — depends on that composition path. The overlay dropped its incremental damage: the DOM advanced (slider 476 -> 479 across three seconds) behind a screen showing neither, so the progress bar froze, controls would not fade and rotation lost the transport UI, while structural DOM changes got through, which is why the play overlay always appeared to work. It supersedes DR-191, which forced redraws in a loop and treated the symptom. DR-194 hides the video view across a resize and reveals it two frames later. A TextureView retains its last frame, so between a rotation and the re-fit landing that frame is stretched across the old rect and the previous frame flashes in what should be the letterbox bars. Verified on device (Honor ROD2-W09, Android 16) by driving ADB and reading the live DOM over the devtools socket: surface tap pauses (position frozen across 12 seconds, overlay raised, transport flipped) and resumes; the control bar does both. UT-189 drives the real 10-second interval under fake timers — an earlier version asserted on a freshly mounted player, passed with the guard deleted, and guarded nothing. Still open, and deliberately not claimed: DR-192's effect on the overlay repaint is unverified on device, DR-194's letterbox reset is untested, and the native default (DR-188) stays off pending DR-190, the background-audio return.
183 lines
6.6 KiB
TypeScript
183 lines
6.6 KiB
TypeScript
/**
|
|
* Tests for the traceability coverage computation.
|
|
*
|
|
* These run over fixture strings rather than the live docs/requirements.md, so
|
|
* their meaning does not drift as requirements are added.
|
|
*
|
|
* Background: the CI gate divided traced-requirement counts by hardcoded
|
|
* denominators (UR/39, IR/24, DR/48, JA/3, total 114) that had fallen out of
|
|
* date, reporting 158% coverage and making the 50% threshold unreachable. These
|
|
* tests pin the parsing and arithmetic that replace those literals.
|
|
*
|
|
* @req-test: UT-089 - Requirement definitions parsed from requirements.md
|
|
* @req-test: UT-090 - Coverage is the intersection of traced and defined IDs
|
|
*/
|
|
|
|
import { describe, it, expect } from "vitest";
|
|
import { countDefinedRequirements, computeCoverage } from "./extract-traces";
|
|
|
|
describe("countDefinedRequirements", () => {
|
|
it("counts a well-formed table row as a defined requirement", () => {
|
|
const md = `
|
|
| ID | Requirement | Priority | Status |
|
|
|----|-------------|----------|--------|
|
|
| UR-001 | Run the app on multiple platforms | High | In Progress |
|
|
| UR-002 | Access media when online or offline | High | Done |
|
|
`;
|
|
const defined = countDefinedRequirements(md);
|
|
expect(defined.UR).toBe(2);
|
|
expect(defined.DR).toBe(0);
|
|
});
|
|
|
|
it("does not count IDs that appear only in the Traces To column", () => {
|
|
// The bug this rule avoids: a naive grep for /DR-\d{3}/ over the whole file
|
|
// counts DR-001 here as "defined", inflating the denominator with IDs that
|
|
// are merely referenced.
|
|
const md = `
|
|
| DR-001 | Player state machine | Player | UR-005 | Done |
|
|
| DR-002 | MediaItem struct | Player | UR-003, UR-004 | Done |
|
|
`;
|
|
const defined = countDefinedRequirements(md);
|
|
expect(defined.DR).toBe(2);
|
|
// UR-005/UR-003/UR-004 are referenced, never defined here.
|
|
expect(defined.UR).toBe(0);
|
|
});
|
|
|
|
it("does not count IDs mentioned in prose", () => {
|
|
const md = `
|
|
Some prose explaining that UR-005 relates to DR-001 and JA-002.
|
|
|
|
| UR-005 | Control media playback | High | Done |
|
|
`;
|
|
const defined = countDefinedRequirements(md);
|
|
expect(defined.UR).toBe(1);
|
|
expect(defined.DR).toBe(0);
|
|
expect(defined.JA).toBe(0);
|
|
});
|
|
|
|
it("deduplicates an ID listed in both the spec table and the traceability matrix", () => {
|
|
// requirements.md lists every UR twice: once in §1 (definition) and again in
|
|
// §3 (traceability matrix), both as a leading table cell. Counting rows
|
|
// instead of unique IDs double-counts the UR denominator (121 vs 61).
|
|
const md = `
|
|
| UR-005 | Control media playback | High | Done |
|
|
| UR-006 | Browse the library | High | Done |
|
|
|
|
### Traceability Matrix
|
|
|
|
| UR-005 | - | DR-001, DR-005, DR-009 |
|
|
| UR-006 | - | DR-012 |
|
|
`;
|
|
const defined = countDefinedRequirements(md);
|
|
expect(defined.UR).toBe(2);
|
|
});
|
|
|
|
it("collects the defined ID set, not just counts", () => {
|
|
const md = `
|
|
| UR-001 | A | High | Done |
|
|
| DR-050 | B | Player | UR-001 | Done |
|
|
`;
|
|
const defined = countDefinedRequirements(md);
|
|
expect(defined.ids.has("UR-001")).toBe(true);
|
|
expect(defined.ids.has("DR-050")).toBe(true);
|
|
expect(defined.ids.has("UR-999")).toBe(false);
|
|
});
|
|
});
|
|
|
|
describe("computeCoverage", () => {
|
|
const defined = {
|
|
UR: 2,
|
|
IR: 0,
|
|
DR: 2,
|
|
JA: 0,
|
|
total: 4,
|
|
ids: new Set(["UR-001", "UR-002", "DR-001", "DR-002"]),
|
|
};
|
|
|
|
it("computes coverage as traced ∩ defined over defined", () => {
|
|
const traced = ["UR-001", "DR-001"];
|
|
const cov = computeCoverage(traced, defined);
|
|
expect(cov.covered).toBe(2);
|
|
expect(cov.total).toBe(4);
|
|
expect(cov.percent).toBe(50);
|
|
});
|
|
|
|
it("does not let a traced-but-undefined ID inflate the numerator", () => {
|
|
// This is how a ratio exceeds 100%: a TRACES comment naming a typo'd or
|
|
// deleted requirement counted as covered.
|
|
const traced = ["UR-001", "DR-001", "DR-097"];
|
|
const cov = computeCoverage(traced, defined);
|
|
expect(cov.covered).toBe(2);
|
|
expect(cov.percent).toBe(50);
|
|
});
|
|
|
|
it("reports traced-but-undefined IDs as orphaned so they get fixed", () => {
|
|
const traced = ["UR-001", "DR-097", "JA-404"];
|
|
const cov = computeCoverage(traced, defined);
|
|
expect(cov.orphaned).toEqual(["DR-097", "JA-404"]);
|
|
});
|
|
|
|
it("has no orphans when every traced ID is defined", () => {
|
|
const cov = computeCoverage(["UR-001", "UR-002"], defined);
|
|
expect(cov.orphaned).toEqual([]);
|
|
});
|
|
|
|
it("ignores UT/IT test IDs entirely — they are a separate taxonomy", () => {
|
|
// UT/IT are defined in §4 of requirements.md, not among the four
|
|
// requirement types. Treating them as orphans buries real typos in ~60
|
|
// lines of noise, and counting them would corrupt the ratio.
|
|
const cov = computeCoverage(["UR-001", "UT-088", "IT-017"], defined);
|
|
expect(cov.orphaned).toEqual([]);
|
|
expect(cov.covered).toBe(1);
|
|
});
|
|
|
|
it("reports 0% rather than dividing by zero for an empty trace set", () => {
|
|
const cov = computeCoverage([], defined);
|
|
expect(cov.covered).toBe(0);
|
|
expect(cov.percent).toBe(0);
|
|
});
|
|
|
|
it("reports 0% rather than NaN when nothing is defined", () => {
|
|
const empty = { UR: 0, IR: 0, DR: 0, JA: 0, total: 0, ids: new Set<string>() };
|
|
const cov = computeCoverage([], empty);
|
|
expect(cov.percent).toBe(0);
|
|
expect(Number.isNaN(cov.percent)).toBe(false);
|
|
});
|
|
|
|
it("reports exactly 100% when all defined requirements are traced, never above", () => {
|
|
const traced = ["UR-001", "UR-002", "DR-001", "DR-002"];
|
|
const cov = computeCoverage(traced, defined);
|
|
expect(cov.percent).toBe(100);
|
|
});
|
|
|
|
it("ignores duplicate traced IDs", () => {
|
|
const traced = ["UR-001", "UR-001", "UR-001"];
|
|
const cov = computeCoverage(traced, defined);
|
|
expect(cov.covered).toBe(1);
|
|
});
|
|
});
|
|
|
|
describe("live requirements.md", () => {
|
|
it("parses the real file to the counts the CI gate must use", () => {
|
|
// Guards the specific regression: CI hardcoded UR/39, IR/24, DR/48, JA/3
|
|
// (total 114) while the real file had grown to 211. Update these numbers
|
|
// deliberately when requirements are added — that edit is the signal the
|
|
// denominator is live rather than frozen.
|
|
const fs = require("fs");
|
|
const path = require("path");
|
|
// import.meta.dir is Bun-only; derive from import.meta.url under vitest.
|
|
const here = path.dirname(new URL(import.meta.url).pathname);
|
|
const md = fs.readFileSync(
|
|
path.resolve(here, "../docs/requirements.md"),
|
|
"utf-8"
|
|
);
|
|
const defined = countDefinedRequirements(md);
|
|
|
|
expect(defined.UR).toBe(75);
|
|
expect(defined.IR).toBe(32);
|
|
expect(defined.DR).toBe(185);
|
|
expect(defined.JA).toBe(35);
|
|
expect(defined.total).toBe(327);
|
|
});
|
|
});
|