A spec was a promise; sixteen of them had become descriptions of code that already shipped, sitting beside four that describe work still outstanding, with nothing in the file telling the two apart. Half the statuses were also wrong — audio-equalizer read "Accepted" with the EQ live on both platforms, the native video spec said the flag stays off after the default was flipped on. The shipped designs move into docs/architecture, which is the maintained description of the build, and the spec files go. Git history keeps the originals; what a future change still needs is carried across: - 01-rust-backend: favourites rewritten (the old section named a file that no longer exists and called shipped buttons "planned"), domain vocabulary owned by Rust (SearchScope, exclusions, the bitrate ladder), background workers - 02-svelte-frontend: app shell and chrome, library mosaic, series/episode navigation, downloaded browse, safe-area insets, native-video store, logging - 03-data-flow: locally-indexed search - 05-platform-backends: audio settings on ExoPlayer, the equalizer's band vocabulary, native video compositing, the background-audio handoff - 06-downloads-and-offline: one storage model, offline catalog visibility - 09-security: path confinement and input binding docs/specs/README.md now says what the directory is for and where each shipped design went. Deferred work the specs recorded is kept beside the code it concerns rather than lost: season-bounded autoplay, the two dead search commands, why indexing is a full crawl. requirements.md had fourteen stale statuses — Android audio parity still read "Linux only", DR-150 still said the native-video default was off, DR-190 was Proposed after DR-196 implemented it, and five tooling requirements were Proposed after landing. Three unbuilt specs suggested requirement ids that have since been allocated to other work; each now carries a warning.
336 lines
10 KiB
Markdown
336 lines
10 KiB
Markdown
# Requirement Traceability CI/CD Pipeline
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This document explains the automated requirement traceability validation system for JellyTau.
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## Overview
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The CI/CD pipeline automatically validates that code changes are properly traced to requirements. This ensures:
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- ✅ Requirements are implemented with clear traceability
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- ✅ No requirement coverage regressions
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- ✅ Code changes are linked to specific requirements
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- ✅ Quality metrics are tracked over time
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## Gitea Actions Workflows
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Traceability validation lives in `.gitea/workflows/traceability-check.yml`:
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- ✅ Automatic trace extraction
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- ✅ Coverage validation against minimum threshold (88%, ratcheted)
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- ✅ Modified file checking
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- ✅ Artifact preservation
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- ✅ Summary reports
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**Runs on:** Every push and pull request to `master`/`main`/`develop`
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A second workflow, `traceability.yml`, previously duplicated this one as a
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"GitHub-compatible alternative". It was removed: CI here is Gitea Actions, and
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its only unique step (PR comments via `actions/github-script`) depended on the
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GitHub REST client, which Gitea does not provide. To add PR comments, post to
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Gitea's `/api/v1/repos/{owner}/{repo}/issues/{index}/comments` from
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`traceability-check.yml` rather than reviving the old file.
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## What Gets Validated
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### 1. Trace Extraction
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```bash
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bun run traces:json > traces-report.json
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```
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Extracts all TRACES comments from:
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- TypeScript files (`src/**/*.ts`)
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- Svelte components (`src/**/*.svelte`)
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- Rust code (`src-tauri/src/**/*.rs`)
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- Test files
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### 2. Coverage Thresholds
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The workflow checks:
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- **Minimum overall coverage:** 88% (`MIN_THRESHOLD`)
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Denominators are **derived from `docs/requirements.md` at run time** — they are
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never hardcoded here or in the workflow. Run `bun run traces:coverage` for the
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current per-type breakdown; any number written into this document is a snapshot
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that will drift.
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> **Why this matters.** The workflow used to divide by frozen literals
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> (UR/39, IR/24, DR/48, JA/3, total 114) while `requirements.md` had grown past
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> 200. It reported **158%** coverage, so the 50% threshold was unreachable and
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> the job could not fail regardless of how far coverage dropped. See
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> The fix derives the denominators from `requirements.md` at run time.
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Coverage is the *intersection* of traced and defined IDs: an ID that appears in
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a `TRACES:` comment but is not defined in `requirements.md` is reported as
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**orphaned** and does not count toward coverage. UT/IT test identifiers are a
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separate taxonomy and are excluded entirely.
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The workflow **fails** and blocks merge if coverage drops below the threshold —
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or if it computes above 100%, which can only mean the gate is miscounting.
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#### Ratchet policy
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`MIN_THRESHOLD` **only ever goes up.** It is deliberately set a few points below
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the coverage actually achieved (88 against a real ~90%), so a genuine regression
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trips it. It previously sat at 50 while true coverage was 86%: nearly half the
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matrix could have rotted before CI objected. It was ratcheted 50 → 82 when that
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was found, and 82 → 88 once coverage had held above 88% for several releases.
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When coverage rises durably, raise the threshold to just under the new figure.
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**Never lower it to make a red build pass** — add the missing TRACES comments
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instead. The same number lives in `MIN_COVERAGE_PERCENT` in
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`scripts/extract-traces.ts` (so `bun run traces:coverage` gates locally on the
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same bar); `scripts/extract-traces.test.ts` fails if the two drift apart.
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### 2b. Dangling requirement IDs
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```bash
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bun run traces:validate
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```
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Every ID named by a `TRACES:` comment must be defined as a table row in
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`docs/requirements.md`. The extractor used to accept any well-formed ID
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silently, so a typo or a rename that missed a call site passed unnoticed —
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`DR-189` and `UT-188` were referenced from three source files, defined nowhere,
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for months.
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This check spans **all six** ID types (UR/IR/DR/JA/UT/IT), unlike the coverage
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`orphaned` list above, which considers only the four requirement types so that
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UT/IT noise cannot bury a real typo in the ratio's reporting. The workflow step
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**fails the build** on any dangling ID and prints each offender with the files
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that reference it.
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### 3. Modified File Checking
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On pull requests, the workflow:
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1. Detects all changed TypeScript/Svelte/Rust files
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2. Warns if new/modified files lack TRACES comments
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3. Suggests the TRACES format for missing comments
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## How to Add Traces to New Code
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When you add new code or modify existing code, include TRACES comments:
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### TypeScript/Svelte Example
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```typescript
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// TRACES: UR-005, UR-026 | DR-029
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export function handlePlayback() {
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// Implementation...
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}
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```
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### Rust Example
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```rust
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/// TRACES: UR-005 | DR-001
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pub fn player_state_changed(state: PlayerState) {
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// Implementation...
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}
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```
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### Test Example
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```rust
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// TRACES: UR-005 | DR-001 | UT-026, UT-027
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#[cfg(test)]
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mod tests {
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// Tests...
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}
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```
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## TRACES Format
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```
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TRACES: [UR-###, ...] | [IR-###, ...] | [DR-###, ...] | [JA-###, ...]
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```
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- `UR-###` - User Requirements (features users see)
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- `IR-###` - Integration Requirements (API/platform integration)
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- `DR-###` - Development Requirements (internal architecture)
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- `JA-###` - Jellyfin API Requirements (Jellyfin API usage)
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**Examples:**
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- `// TRACES: UR-005` - Single requirement
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- `// TRACES: UR-005, UR-026` - Multiple of same type
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- `// TRACES: UR-005 | DR-029` - Multiple types
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- `// TRACES: UR-005, UR-026 | DR-001, DR-029 | UT-001` - Complex
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## Workflow Behavior
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### On Push to Main Branch
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1. ✅ Extracts all traces from code
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2. ✅ Validates coverage is >= 88%
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3. ✅ Generates full traceability report
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4. ✅ Saves report as artifact
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### On Pull Request
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1. ✅ Extracts all traces
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2. ✅ Validates coverage >= 88%
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3. ✅ Checks modified files for TRACES
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4. ✅ Warns if new code lacks TRACES
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5. ✅ Suggests proper format
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6. ✅ Generates report artifact
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### Failure Scenarios
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The workflow **fails** (blocks merge) if:
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- Coverage drops below 88%
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- A `TRACES:` comment names an ID `docs/requirements.md` does not define
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- JSON extraction fails
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- Invalid trace format
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The workflow **warns** (but doesn't block) if:
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- New files lack TRACES comments
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- Coverage drops (but still above threshold)
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## Viewing Reports
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### In Gitea Actions UI
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1. Go to **Actions** tab
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2. Click the **Traceability Validation** workflow run
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3. Download **traceability-reports** artifact
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4. View:
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- `traces-report.json` - Raw trace data
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- `docs/traceability.md` - Formatted report
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### Locally
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```bash
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# Extract current traces
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bun run traces:json | jq '.byType'
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# Generate full report
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bun run traces:markdown
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cat docs/traceability.md
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```
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## Coverage Goals
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### Current Status
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Run `bun run traces:coverage` — it prints the live figure and exits non-zero
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below threshold. Numbers are deliberately not pinned here; the previous snapshot
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in this section (51%, 56/114) was stale by roughly 100 requirements and was what
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made the broken CI arithmetic look plausible for so long.
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As of August 2026 overall coverage is ~90%.
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### Targets
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- **Short term** (Sprint): Maintain ≥88% overall (the current ratchet)
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- **Medium term** (Month): Hold above 90% and ratchet the gate to match
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- **Long term** (Release): Reach 95% coverage with focus on:
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- IR requirements (API clients)
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- JA requirements (Jellyfin API endpoints)
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- Remaining UR/DR requirements
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## Improving Coverage
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### For Missing User Requirements (UR)
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1. Review [README.md](../README.md) for unimplemented features
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2. Add TRACES to code that implements them
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3. Focus on high-priority features (High/Medium priority)
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### For Missing Integration Requirements (IR)
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1. Add TRACES to Jellyfin API client methods
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2. Add TRACES to platform-specific backends (Android/Linux)
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3. Link to corresponding Jellyfin API endpoints
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### For Missing Development Requirements (DR)
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1. Add TRACES to UI components in `src/lib/components/`
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2. Add TRACES to composables in `src/lib/composables/`
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3. Add TRACES to player backend in `src-tauri/src/player/`
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### For Jellyfin API Requirements (JA)
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1. Add TRACES to Jellyfin API wrapper methods
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2. Document which endpoints map to which requirements
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3. Link to Jellyfin API documentation
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## Example PR Checklist
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When submitting a pull request:
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- [ ] All new code has TRACES comments linking to requirements
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- [ ] TRACES format is correct: `// TRACES: UR-001 | DR-002`
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- [ ] Workflow passes (coverage ≥ 88%)
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- [ ] No coverage regressions
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- [ ] Artifact traceability report was generated
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## Troubleshooting
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### "Coverage below minimum threshold"
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**Problem:** Workflow fails with coverage < 88%
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**Solution:**
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1. Run `bun run traces:json` locally
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2. Check which requirements are traced
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3. Add TRACES to untraced code sections
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4. Re-run extraction to verify
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### "New files without TRACES"
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**Problem:** Workflow warns about new files lacking TRACES
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**Solution:**
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1. Add TRACES comments to all new code
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2. Format: `// TRACES: UR-001 | DR-002`
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3. Map code to specific requirements from README.md
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4. Re-push
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### "Invalid JSON format"
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**Problem:** Trace extraction produces invalid JSON
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**Solution:**
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1. Check for malformed TRACES comments
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2. Run locally: `bun run traces:json`
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3. Look for parsing errors
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4. Fix and retry
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## Integration with Development
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### Before Committing
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```bash
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# Check your traces
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bun run traces:json | jq '.byType'
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# Regenerate report
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bun run traces:markdown
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# Verify traces syntax
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grep "TRACES:" src/**/*.ts src/**/*.rs
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```
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### In Your IDE
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Add a file watcher to regenerate traces on save:
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```json
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{
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"fileWatcher.watchPatterns": [
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"src/**/*.ts",
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"src/**/*.svelte",
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"src-tauri/src/**/*.rs"
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],
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"fileWatcher.command": "bun run traces:markdown"
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}
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```
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### Git Hooks
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Add a pre-push hook to validate traces:
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```bash
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#!/bin/bash
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# .git/hooks/pre-push
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bun run traces:json > /dev/null
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if [ $? -ne 0 ]; then
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echo "❌ Invalid TRACES format"
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exit 1
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fi
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```
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## References
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- [Extract Traces Script](../scripts/README.md#extract-tracests)
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- [Requirements Specification](../README.md#requirements-specification)
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- [Traceability Matrix](./traceability.md)
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- [Gitea Actions Documentation](https://docs.gitea.io/en-us/actions/)
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## Support
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For issues or questions:
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1. Check this document
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2. Review example traces in `src/lib/stores/`
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3. Check existing TRACES comments for format
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4. Review workflow logs in Gitea Actions
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---
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**Last Updated:** 2026-02-13
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