Public report — LibChecker, published 6 Aug 2026. Concrete security findings (CVE IDs, secret matches, dependency versions) are hidden in this version; ask the repo owner for the full report.
Watchdog 06-08-2026 @ 22:45 UTC Public
Code Health Audit

LibChecker/LibChecker

No baseline yet — first run coverage not measuredno automated tests
37% Weak
CriticalWeakAdequateStrongExemplary
middle

Hobby · weakest lens: Readiness (23%)

Grounded in facts. Every number here is computed, not narrated — reproducible, tool-backed, and traceable to a line of code. How to trust this ▸

33/37dimensions tool-verifieddeterministic · confidence 1.0 · 4 LLM-assisted, advisory
69findings with an exact file:lineof 79 — the remainder are repo-wide signals (a dimension-level measurement, not a single line); open any file:line and verify
37/96dimensions across the health lenses — wide & deep

Executive summary

Read through the Production lens — the standard calibration. *Green* means good enough to run in production. The score is absolute and comparable across repos.

LibChecker/LibChecker carries serious gaps (37%). Several issues below can materially affect correctness, security, or the cost of changing it — and propagate to everything that depends on it.

It is strongest in Architecture (96%) — the structure is clean and changes stay contained. Code Health (93%) is solid too.

The area that most needs attention is Readiness (23%) — releases are harder to depend on — versioning, release notes and dependency hygiene are thin, so consumers can't easily tell what changed or trust an upgrade. Security (28%) is the next concern — exposure to security and compliance incidents is elevated.

Leadership focus, highest impact first: 1 No tests found finding(s) in Test Distribution (Test Distribution); ILogger (or Serilog) and log at meaningful points across… (Observability); SAST step (e.g. CodeQL) or a security analyzer package (Security & performance tooling).

For scale: Hobby (~0 production lines); rebuilding it from scratch would take roughly ~0.1 person-years (~1 engineer). Approximate, ±~30%.

It builds on a genuinely strong Architecture foundation (96%); the priorities above are the highest-leverage way to bring the rest up to that level.

How the score is built — each lens's share of the headline Width is the lens's weight in the worst-heaviest fold (the weakest area pulls hardest); colour is that lens's own band. A lens fixes the score in proportion to its width.
Readiness 23% · 46% weightSecurity 28% · 25% weightDomain Modelling 54% · 14% weightMaturity 70% · 8% weightCode Health 93% · 4% weightArchitecture 96% · 2% weight

Raise Readiness 23 → 70 (the Healthy floor) ⇒ headline 37 → ~48.

Code composition — where the lines go
Tests 100%

Top priorities

The highest-leverage moves; the full ranked list is in the Roadmap below.

1
Resolve the 1 No tests found finding(s) in Test Distribution.
+13.2 pts · Low effort · Test Distribution
2
Resolve the 1 Leaked secret finding(s) in Secret Scanning — start with google-services.json.
+11.4 pts · Low effort · Secret Scanning
3
Adopt ILogger (or Serilog) and log at meaningful points across the projects.
+13.2 pts · Medium effort · Observability

Diagnosis — what's actually going on

Root cause: an un-encapsulated domain · Medium · Root cause
6 findings across public setters, anemic types and primitive ids share one root cause — the domain layer doesn't protect its own invariants. Fixing the encapsulation pattern resolves them together, rather than chasing each finding.
Evidence: DM5 setters: 1 · DM4 anemic: 5 · DM2 primitive ids: 0
→ Address encapsulation as one pattern (private setters + behaviour + strongly-typed ids), not 100 separate findings.
Highest-leverage move · Medium · Leverage
Of everything flagged, the best return on effort is: Resolve the 1 No tests found finding(s) in Test Distribution. The rest can wait behind it.
Evidence: priority ranking: top of 5 ranked by impact/effort
→ Resolve the 1 No tests found finding(s) in Test Distribution.

At a glance — Code Health · 93% · Exemplary

At a glance — Architecture · 96% · Exemplary

At a glance — Maturity · 70% · Strong

At a glance — Readiness · 23% · Critical · gated by D9, P2, P3

At a glance — Security · 28% · Weak · gated by D29, D36

At a glance — Domain Modelling · 54% · Adequate · gated by DM4

Security & Compliance — OWASP Top-10 mapping

Findings mapped to OWASP categories; the specific CVEs/secrets are in the Security dimension cards below and findings.md (redacted only on the public version of this report).

OWASP categoryFindingsSeverity
A03:2021 — Injection28High / Critical
A02:2021 — Cryptographic Failures4High / Critical

Roadmap

Begin by addressing the single missing test coverage to ensure reliability. Next, implement structured logging and health checks to improve system observability. Introduce static application security testing to identify vulnerabilities early, and immediately remediate the exposed secret in the configuration file. Finally, enforce semantic versioning to ensure all releases are clearly traceable.

Ranked by impact ÷ effort. "Helps" is the estimated gain on the 0–100 health score.

Do thisHelpsEffortDimension
Resolve the 1 No tests found finding(s) in Test Distribution.+13.2 ptsLowTest Distribution
Resolve the 1 Leaked secret finding(s) in Secret Scanning — start with google-services.json.+11.4 ptsLowSecret Scanning
Adopt ILogger (or Serilog) and log at meaningful points across the projects.+13.2 ptsMediumObservability
Add a SAST step (e.g. CodeQL) or a security analyzer package.+13.2 ptsMediumSecurity & performance tooling
Stamp a version (csproj <Version>, a VERSION file, or GitVersion) or tag releases with semver so builds and releases are traceable.+11.4 ptsMediumRelease Hygiene
Resolve the 19 High finding(s) in Static Analysis (SAST) — start with android.yml (17), translation.yml (2).+5.6 ptsMediumStatic Analysis (SAST)
Move business rules onto the aggregates/entities they govern so invariants are enforced at the source, not in anemic services.+4.3 ptsMediumRich vs anemic model
Make entity setters private/init-only; change state only through methods that enforce the invariants (Marten/EF can bind via constructor or private setters).+4.3 ptsMediumEncapsulated state

File quality

Per-file score 0–10 — a quality signature. Of 42 files carrying findings, judged against the Production bar: 0% slop · 17% mixed · 83% near-clean.

FileScoreBandWorst signal
app/google-services.json4.4MixedSecret Scanning: Leaked secret: gcp-api-key
.github/workflows/android.yml4.4MixedSecrets (history): Secret: generic-api-key
.github/workflows/translation.yml5.8MixedStatic Analysis (SAST): High: github-actions-mutable-action-tag
app/src/main/AndroidManifest.xml5.9MixedStatic Analysis (SAST): Medium: exported_activity
app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt7.4MixedCode Duplication: Duplicated block (18 lines × 2)
app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt7.8MixedCode Duplication: Duplicated block (18 lines × 2)
app/src/benchmark/AndroidManifest.xml7.9MixedStatic Analysis (SAST): Medium: exported_activity
macrobenchmark/src/main/kotlin/com/absinthe/libchecker/macrobenchmark/AppListBenchmark.kt8.5Near-cleanCode Duplication: Duplicated block (21 lines × 2)
app/src/main/kotlin/com/absinthe/libchecker/database/backup/RoomBackup.kt8.5Near-cleanCode Duplication: Duplicated block (19 lines × 2)
app/src/main/kotlin/com/absinthe/libchecker/domain/about/ui/AboutPageBuilder.kt8.5Near-cleanCode Duplication: Duplicated block (12 lines × 2)
fastlane/metadata/android/en-US/changelogs/1341.txt8.5Near-cleanADR Quality: No consequences/trade-offs section describing what happens when Android 6 is dropped (e.g. new apps must support API 23 or higher)
fastlane/metadata/android/en-US/changelogs/1401.txt8.5Near-cleanADR Quality: Only three bullet items (Marking of not granted permissions; UI improvements; Bugs fixes) with no context/problem and no explicit decision
fastlane/metadata/android/en-US/changelogs/1403.txt8.5Near-cleanADR Quality: Only three bullet items (marking not-granted perms, UI improv, bugs) with no context/problem and no explicit decision; the body is clipped mid-bullet list
fastlane/metadata/android/en-US/changelogs/1448.txt8.5Near-cleanADR Quality: Only the heading 'Bugs fixes' appears; no context/problem and no consequences/trade-offs are present
fastlane/metadata/android/en-US/changelogs/1465.txt8.5Near-cleanADR Quality: Only the heading 'Bugs fixes' appears; no context/problem and no consequences/trade-offs are present
fastlane/metadata/android/en-US/changelogs/1497.txt8.5Near-cleanADR Quality: No context/problem statement; only a list of cosmetic/behavioral changes with no rationale or consequences
fastlane/metadata/android/en-US/changelogs/1585.txt8.5Near-cleanADR Quality: The body lists only feature/bug fixes with no context/problem and no consequences/trade-offs
fastlane/metadata/android/en-US/changelogs/1682.txt8.5Near-cleanADR Quality: No context/problem statement; each item is a feature/fix listed without explaining what it solves or why it matters
fastlane/metadata/android/en-US/changelogs/1749.txt8.5Near-cleanADR Quality: No context/problem statement or consequences; all listed items are features/fixes with no rationale and no trade-offs
fastlane/metadata/android/en-US/changelogs/1893.txt8.5Near-cleanADR Quality: All listed items are fixes/updates with no context/problem statement and no consequences/trade-offs

Methodology & how to trust this report

Watchdog is a deep, periodic assessment — run each sprint, monthly, or quarterly, taking the time to go wider and deeper than a quick check and surfacing in one coherent report what you'd otherwise piece together from a dozen separate tools. It scores deterministically: the same commit yields the same score, every run. 33 of 37 evaluated dimensions are computed purely by tools and static analysis (confidence 1.0); 4 documentation/naming judgement(s) are LLM-assisted and labelled advisory. Overall confidence is 0.6 — the weighted average across measured dimensions; it falls as more of the score leans on LLM-assisted judgement and rises when it's fully tool-backed.

Every figure here is one of three kinds, and we label which: ✓ Measured — a deterministic fact (LoC, complexity, coverage); ~ Modeled — an estimate from a stated model (cost, effort, value-at-risk), always a range with its assumptions, never a precise fact; ◐ Advisory — an LLM prose judgement. We never present a modelled estimate as if it were measured. Perfect or absent scores carry their provenance too (ADR-0011): ✓ Tool-verified means the property itself was measured across the surface; ○ Nothing flagged means the probes came back clean — a claim bounded by what a repository can show; ⊘ Not evidenced means a working control (a tested restore, an automated rollback) showed no positive evidence — absence of evidence is not evidence of a control, so it's excluded from the score rather than awarded a spurious 10; ◐ Sampled · advisory marks an LLM verdict over a bounded sample — advisory, never a deterministic measurement.

What we checked — 37 dimensions across the health lenses
D1D2D3D4D5D7D9D12D13D15D16D19D20D21D25D26D27D28D29D34D36AX5DM4DM5DM6DM8M1M2M3M4P1P2P3P6X1X3X4

Each chip is a dimension scored from real signals across architecture, testing, dependencies, security & compliance, documentation, git-history and code quality — in one coherent pass. A surface report typically covers a handful.

How to trust any code-health report — three questions
  1. Can you open the finding? Real findings cite a repo-relative file and line you can open at the cited line — never an absolute scratch path. Here, 69 of 79 do; the remainder are repo-wide signals — a dimension-level measurement, not a single line. (Every path in this report is repo-relative by construction: paths are normalized at the producer and the report is rejected if any rooted path leaks through.)
  2. Is there a tool behind the number? Every score below names the method that produced it — Roslyn, git, a scanner, or (for a handful of documentation/naming dimensions) an LLM labelled sampled · advisory — not a narrative.
  3. Does re-running give the same result? Run it again on the same commit and the score — and this report, byte for byte — is identical. A report whose numbers move between runs is describing the run, not the code.

This report answers yes to all three. That's the bar to hold any assessment to.

Tools & methods

The actual versions used this run (captured at analysis time) — re-run on the same commit for the identical score.

MethodBacksVersionEvaluator
Roslyn static analysisComplexity, cohesion, coupling, dead code, API surface, layering5.3.0✓ deterministic
Native secret scannerHardcoded secrets / credentials1.0.0✓ deterministic
jscpdCode duplication✓ deterministic
Coverage (coverlet / dotnet-coverage)Line & branch coverage10.0.301✓ deterministic
NuGet / dotnetOutdated, vulnerable & deprecated dependencies10.0.301✓ deterministic
git / LibGit2SharpChurn hotspots, knowledge concentration, history2.43.0 · 0.31.0✓ deterministic
gitleaks · semgrep · trivy · checkovSecrets in history, SAST, CVEs, IaC & container, PII / GDPR1.86.0 · 0.69.3✓ deterministic
LLM (sampled · advisory)Documentation quality, ADR conformance, naming — sampled over a bounded sample; advisory, never a deterministic measurementLocal LLM◐ LLM · sampled · advisory

Every finding is locatable in findings.md. Run 019fd940-781c-788b-9de4-61e55e0c9f40.

The exact command behind every deep-scan dimension — tool, version, invocation and retained raw output — is in Appendix B — Reproduction & audit trail.

Run transparency — what happened this run

What ran differently this time — a tool absent, degraded, or that fell back to an estimate. Named openly, not folded silently into the scores. A degraded run also records its exact cause in diagnostics.md.

  • D18 Solution Shape — evaluation did not complete — Dimension evaluation failed — excluded from the score.
  • D30 Dependency Vulnerabilities — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.
  • D31 IaC & Container Security — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.
  • D32 Data Compliance (PII/GDPR) — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.
  • D33 JS/npm Dependency Vulnerabilities — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.
  • D37 Vulnerability-disclosure Policy — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.
  • D38 OSV Dependency Vulnerabilities — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.

Repo exclusion declarations (.gitattributes linguist-generated/vendored, .editorconfig generated_code): none declared — every source file was scored.

Limitations & what we did not check

Watchdog assesses the repository exactly as committed, and only the repository. By design it does not reach outside the source tree: the live cloud account, the running CI/CD pipeline, the host's branch-protection and approval rules, the production configuration, or a restore actually exercised against a backup are all out of scope. That boundary is a feature, not a gap — a repo-relative, deterministic scan re-runs identically on any commit and every finding opens at a real file and line, where a live audit can neither be reproduced nor traced. The visible consequence is that controls which leave no in-repo evidence are reported as "not evidenced" and excluded from the score rather than awarded a number a static scan cannot justify.

Per-dimension blind spots

For each dimension that was measured, what a static, repo-only scan structurally cannot see — the honest edge of the measurement, not a failure of it.

  • D1 Cyclomatic Complexity: Cyclomatic complexity counts branches statically — it cannot tell an essential decision tree from accidental tangle, nor see complexity that lives in data or configuration (large switch-case token tables, DSL lexers/parsers, data-as-code rule tables) rather than control flow: a tokenizer's many single-character cases read as high complexity though each branch is trivial.
  • D2 Cognitive Complexity: Cognitive-complexity heuristics approximate how hard code is to follow; genuine domain difficulty and well-named intent that eases reading are not captured.
  • D3 God Classes: "God class" is sized by members and responsibilities visible in the type — a deliberately broad facade over a coherent subsystem can read the same as an accidental grab-bag. For front-end JS the file-length check is cohesion-aware (a single-responsibility module — one class/IIFE — earns a 3× threshold), but cohesion is approximated from top-level declarations, not true dependency structure.
  • D4 Code Duplication: Duplication is token-similarity (jscpd) — it finds copy-paste, not semantic duplication expressed differently. Committed machine-written code (EF migration scaffolds, *.Designer.cs, model snapshots) is EXCLUDED — its repetition is the tool's, not the team's — so the score reflects hand-written duplication only; the generated footprint is reported separately under Solution Shape.
  • D5 Coupling: Coupling is measured between projects/assemblies — runtime coupling through DI, reflection, messaging or shared databases is invisible to a static reference graph.
  • D7 Architectural Integrity: Layering is checked against detected/declared rules — an architecture whose boundaries live in convention or in code review, not in a rule a scanner can read, is not enforced here.
  • D9 Test Distribution: The test-pyramid shape is inferred from project/folder naming and references, with a single test host bucketed per-file by its path tier and content signals — a suite that names tiers unconventionally and gives no per-file signal can still be mis-bucketed.
  • D12 Dependency Hygiene: Dependency health reads manifests and lockfiles — a vulnerability in a vendored/copied dependency, or risk from how a dependency is actually used, is outside this view.
  • D13 Secret Scanning: Secret detection is signature- and entropy-based on the current tree — a secret that does not match a known pattern, or one already rotated, will not be flagged (a clean scan is "nothing matched", not "no secrets exist").
  • D15 Churn × Complexity Hotspots: Churn hotspots come from git history — a freshly imported or squashed repository has no churn signal, and recent rewrites can mask a historically risky file.
  • D16 Bus Factor: Bus-factor is a time-decayed model of commit attribution (who has recently, repeatedly worked a file), not comprehension — pairing, review and reading-without-committing spread knowledge it can't see; bot commits and shared accounts still distort it.
  • D19 Documentation Quality: Documentation quality is judged by an LLM over a bounded sample of docs — it reads what is written, not whether the docs match the running system, and it is advisory, not a measurement.
  • D20 ADR Quality: ADR quality is an LLM read of the decision records present — it cannot know about decisions made and never recorded, and its verdict is sampled and advisory.
  • D21 Naming Consistency: Naming quality is an LLM judgement over a bounded sample — it assesses clarity/consistency of the names it sees, not domain-correctness, and is advisory.
  • D25 ADR Conformance: ADR conformance is the LLM-scored fraction of sampled code that follows recorded decisions — it checks the decisions that were written down and the slices it sampled, not unrecorded rules or the whole tree.
  • D26 Project Cohesion: Project focus is sized from members/namespaces per project — a project that is broad by deliberate design reads the same as one that has sprawled.
  • D27 Navigability: Indirection/navigability is structural — it measures hops to follow a call, not whether that indirection buys real flexibility or just ceremony.
  • D28 Secrets (history): Secret-history scanning sweeps the git log for known patterns — a secret that predates the available history, or never matched a signature, is not found (clean means "nothing matched in the history we can see").
  • D29 Static Analysis (SAST): SAST findings are pattern-based (semgrep) — it finds classes of bug it has rules for; logic flaws, auth/authorization gaps and issues needing runtime context are out of reach (and clean means "no rule matched").
  • D34 Knowledge Freshness: Freshness is decayed commit RECENCY, not comprehension — code read often but rarely committed reads as orphaned, and stable code that genuinely needs no changes is penalised the same as forgotten code; bot/squash commits distort it like the bus factor.
  • DM4 Rich vs anemic model: Behaviour is detected as state mutation inside a method body — a method that enforces an invariant by validating-and-throwing without mutating reads as a query, and mutation delegated through an interface the scan can't resolve isn't credited; entities with zero public properties still drop out of the population. It detects that state changes, not whether the rule is correct.
  • DM6 Domain ↔ infrastructure boundary: Infrastructure reached through a hand-rolled wrapper, a domain-named facade, reflection, or a string-keyed service locator resolves to a non-infra type and isn't seen; the body scan is symbol resolution over syntax, not full dataflow. A clean result means "no resolved infra reference in a domain body", not a proof of purity.
  • M4 Documentation accuracy: Onboarding quality is an LLM read of the docs/setup present — it cannot run the onboarding or measure how long a real new joiner takes; the verdict is sampled and advisory.
  • P6 Release Hygiene: Rollback/observability controls are inferred from repo artefacts (pipelines, dashboards-as-code) — controls configured in external tooling, with no in-repo trace, cannot be credited.

The LLM boundary

LLM-set scores this run (5): D19, D20, D21, D25, M4 (model: Local LLM). For these, a model reads a bounded sample and sets the numeric score (documentation, ADR quality, naming, comment value, onboarding) — D25 sets the ADR-conformance fraction over sampled code, D22 judges API accuracy over a sample. These are sampled and advisory by design: they vary at the margins between runs and are never a deterministic measurement. Every other score in this report is tool-computed at confidence 1.0.

Dimensions

D1 · Cyclomatic Complexity7.8 / 10Strong✓ Tool-verified

What it measures: How tangled the control flow is — methods with many branches are hard to test and change.

Method: Cyclomatic complexity per method (1 + decision points), computed exhaustively across production source; test projects separated by convention. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 7.8 / 10 · rule-coverage 100% · ceiling Prevented

15 method(s) exceeded the cyclomatic complexity threshold of 15; the worst was ValidateStatisticCatalogUseCase.invoke at 39.

What to do

  1. Enforce Cyclomatic Complexity in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d1_recommendation.md.

D2 · Cognitive Complexity6.8 / 10Adequate✓ Tool-verified

What it measures: How hard the code is for a person to follow, beyond raw branching.

Method: Cognitive complexity per method (Sonar-style nesting-penalized score), computed exhaustively over production code, excluding test projects. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 6.8 / 10 · rule-coverage 100% · ceiling Prevented

23 method(s) exceeded the cognitive complexity threshold of 15; the worst was ApkPreview.parseCentralDirectory at 57.

What to do

  1. Enforce Cognitive Complexity in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d2_recommendation.md.

D3 · God Classes10.0 / 10Exemplary✓ Tool-verified

What it measures: Over-large classes that try to do too much ("god classes").

Method: God-class detection by line and method-count thresholds per logical type (partial classes unified), filtered for generated code and registration/contract false positives. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Prevented

0 god class(es) detected.

✓ On the Gold path — maintain.

Detailed fixes: d3_recommendation.md.

D4 · Code Duplication8.0 / 10Strong✓ Tool-verified

What it measures: Copy-pasted code that should be shared instead.

Method: Code duplication via token-stream sliding windows with type-aware normalization (locals masked, type names preserved), density-scored per KLoC of production code. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 8.0 / 10 · rule-coverage 100% · ceiling Verified

8 duplicated block group(s) detected.

Duplicated block (18 lines × 2) · ×2app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:185
Duplicated block (12 lines × 2) · ×2app/src/main/kotlin/com/absinthe/libchecker/domain/about/ui/AboutPageBuilder.kt:89
Duplicated block (21 lines × 2)macrobenchmark/src/main/kotlin/com/absinthe/libchecker/macrobenchmark/AppListBenchmark.kt:67
Duplicated block (19 lines × 2)app/src/main/kotlin/com/absinthe/libchecker/database/backup/RoomBackup.kt:244
Duplicated block (17 lines × 2)app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:553

+ 1 more group(s) — more in Appendix A; the complete list is findings.md.

What to do

  1. Resolve the 2 Duplicated block (18 lines × 2) finding(s) in Code Duplication — start with CompareSnapshotItemsUseCase.kt, SnapshotDetailSectionBuilder.kt. — One of this dimension's main actionable groups (2 warning-level).
  2. Resolve the 2 Duplicated block (12 lines × 2) finding(s) in Code Duplication — start with AboutPageBuilder.kt, CompareSnapshotItemsUseCase.kt. — One of this dimension's main actionable groups (2 warning-level).
  3. Resolve the 1 Duplicated block (21 lines × 2) finding(s) in Code Duplication — start with AppListBenchmark.kt. — One of this dimension's main actionable groups (1 warning-level).
  4. Enforce Code Duplication in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.

Detailed fixes: d4_recommendation.md · top locations in Appendix A, every location in findings.md.

D5 · Coupling6.9 / 10Adequate✓ Tool-verified

What it measures: Whether volatile projects sit underneath others that depend on them (so their churn ripples upward), and whether project dependencies form cycles. A widely-depended-on but stable shared/kernel project is healthy, not penalised.

Method: Dependency cycles via elementary-DFS over real .csproj references, plus Martin instability (afferent/efferent) per project. Exhaustive over the reference graph, deterministic.

Coverage: Exhaustive · type-level: afferent/efferent coupling + cycles computed over every production type — the population is all types, not a name convention.

Maturity: DocumentedVerifiedPrevented · effective 6.9 / 10 · rule-coverage 100% · ceiling Prevented

0 projects, 0 dependency cycle(s), 0 unstable depended-on project(s).

What to do

  1. Enforce Coupling in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d5_recommendation.md.

D7 · Architectural Integrity10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether the code respects its intended layering / architecture rules.

Method: Enforcement rung (Prevented/Verified/Documented) per checkable ADR via Roslyn, plus dependency cycles via the engine shared with D5/AX3. Deterministic, exact.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Prevented

Of 1 mechanizable ADRs, 1 are prevented by analyzers, 0 by tests, 0 exist only in prose. Coverage: 100 %. Cycles found: 0.

✓ On the Gold path — maintain.

Detailed fixes: d7_recommendation.md.

D9 · Test Distribution0.0 / 10Critical✓ Tool-verified

What it measures: Whether the test suite has a healthy mix of unit / integration / end-to-end tests.

Method: Test projects classified (Unit/Integration/BDD/E2E) from compiled metadata; test methods counted exhaustively across projects with placement-agnostic disk fallback. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 0.0 / 10 · rule-coverage 100% · ceiling Documented

No test projects found.

No tests found

What to do

  1. Resolve the 1 No tests found finding(s) in Test Distribution. — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d9_recommendation.md · top locations in Appendix A, every location in findings.md.

D12 · Dependency Hygiene10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether dependencies are current, secure, and not bloated.

Method: Manifest scan via dotnet list package across all projects; worst-signal-per-package deduction (saturating for vulnerabilities, capped-linear for deprecation/outdated) per KLoC. Exhaustive, deterministic.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Verified

0 outdated, 0 vulnerable, 0 deprecated packages.

✓ On the Gold path — maintain.

Detailed fixes: d12_recommendation.md.

D13 · Secret Scanning5.0 / 10Adequate✓ Tool-verified

What it measures: Whether any secrets (keys, tokens, passwords) have leaked into the code.

Method: In-process native secret scanner (entropy plus signature patterns) across all tracked files; no external tool. A clean result is a measured 10, not no-data zero. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 5.0 / 10 · rule-coverage 100% · ceiling Prevented

1 secret(s) detected.

Leaked secret: gcp-api-keyapp/google-services.json:18

What to do

  1. Resolve the 1 Leaked secret finding(s) in Secret Scanning — start with google-services.json. — One of this dimension's main actionable groups (1 issue-level).
  2. Enforce Secret Scanning in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d13_recommendation.md · top locations in Appendix A, every location in findings.md.

D15 · Churn × Complexity Hotspots10.0 / 10Exemplary✓ Tool-verified

What it measures: Files that change often and are also complex — the riskiest hotspots.

Method: Per production file churn times cyclomatic complexity over a rolling window, computed from git and Roslyn/JS/Razor analysis. Exhaustive, deterministic per commit date.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

No churn × complexity hotspots in the window.

✓ On the Gold path — maintain.

Detailed fixes: d15_recommendation.md.

D16 · Bus Factor10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether knowledge is concentrated in too few people (the "bus factor").

Method: Living knowledge per author via time-decayed commit attribution (6-month half-life, focus weighting) across largest source files. Deterministic, avoids blame's mechanical-refactor false positives.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

No source file's living knowledge is concentrated in a single author.

✓ On the Gold path — maintain.

Detailed fixes: d16_recommendation.md.

D19 · Documentation Quality / 10Adequate◐ Sampled · advisory

What it measures: Whether the project's documentation is clear, complete, and useful.

Method: Judged by language model at low temperature (0.0-0.1) on a deterministic doc sample (READMEs plus first 25 architecture docs), with two-pass stability filtering. Advisory, sampled.

Maturity: DocumentedVerifiedPrevented · effective Adequate / 10 · rule-coverage 100% · ceiling Documented

LibChecker's README is clear and well-illustrated for a single-file project, with an excellent badge section showing CI, license, Telegram discussion, Crowdin translation, and a header image. It introduces the tool and lists six core features before moving into broader topics such as WebUI export, snapshot comparison, and version support, then clips mid-sentence. The visible content is strong for a README but does not yet show an architecture or design document (the outline is clipped), so it cannot be fully assessed on completeness.

What to do

  1. Improve Documentation Quality — currently 6.0/10. — LibChecker's README is clear and well-illustrated for a single-file project, with an excellent badge section showing CI, license, Telegram discussion, Crowdin translation, and a header image. It introduces the tool and lists six core features before moving into broader topics such as WebUI export, snapshot comparison, and version support, then clips mid-sentence. The visible content is strong for a README but does not yet show an architecture or design document (the outline is clipped), so it cannot be fully assessed on completeness.

Detailed fixes: d19_recommendation.md.

D20 · ADR Quality / 10Weak◐ Sampled · advisory

What it measures: Whether architecture decisions are recorded well (context, decision, consequences).

Method: Per-ADR judgment by language model at low temperature with two-pass stability; confidence is share of ADRs evaluated; enforcement-field presence detected deterministically. Advisory.

Maturity: DocumentedVerifiedPrevented · effective Weak / 10 · rule-coverage 100% · ceiling Documented

Evaluated 30 ADR(s) individually; mean quality 2.6/10 (frequently incomplete). 30 flagged with a specific gap.

Only the heading 'Bugs fixes' appears; no context/problem and no consequences/trade-offs are present · ×2fastlane/metadata/android/en-US/changelogs/1448.txt
No consequences/trade-offs section describing what happens when Android 6 is dropped (e.g. new apps must support API 23 or higher)fastlane/metadata/android/en-US/changelogs/1341.txt
Only three bullet items (Marking of not granted permissions; UI improvements; Bugs fixes) with no context/problem and no explicit decisionfastlane/metadata/android/en-US/changelogs/1401.txt
Only three bullet items (marking not-granted perms, UI improv, bugs) with no context/problem and no explicit decision; the body is clipped mid-bullet listfastlane/metadata/android/en-US/changelogs/1403.txt
No context/problem statement; only a list of cosmetic/behavioral changes with no rationale or consequencesfastlane/metadata/android/en-US/changelogs/1497.txt

+ 24 more group(s) — more in Appendix A; the complete list is findings.md.

What to do

  1. Resolve the 2 Only the heading 'Bugs fixes' appears; no context/problem and no… finding(s) in ADR Quality — start with 1448.txt, 1465.txt. — One of this dimension's main actionable groups (2 warning-level).
  2. Resolve the 1 No consequences/trade-offs section describing what happens when Android… finding(s) in ADR Quality — start with 1341.txt. — One of this dimension's main actionable groups (1 warning-level).
  3. Resolve the 1 Only three bullet items (Marking of not granted permissions; UI… finding(s) in ADR Quality — start with 1401.txt. — One of this dimension's main actionable groups (1 warning-level).

Detailed fixes: d20_recommendation.md · top locations in Appendix A, every location in findings.md.

D21 · Naming Consistency / 10Exemplary◐ Sampled · advisory

What it measures: Whether names — types, methods, variables — are clear and consistent.

Method: Judged by language model at low temperature (0.0-0.1) on a deterministic random symbol sample (fixed size, not exhaustive), with disclosed confidence band. Advisory, sampled.

Maturity: DocumentedVerifiedPrevented · effective Exemplary / 10 · rule-coverage 100% · ceiling Verified

0 naming inconsistencies across 0 sampled symbols.

✓ On the Gold path — maintain.

Detailed fixes: d21_recommendation.md.

D25 · ADR Conformance / 10Exemplary◐ Sampled · advisory

What it measures: Whether the code actually follows the decisions recorded in the project's ADRs.

Method: Judged by language model at low temperature against ADRs plus a deterministic structural code summary; findings linked to repo-rooted ADR paths for traceability. Advisory.

Maturity: DocumentedVerifiedPrevented · effective Exemplary / 10 · rule-coverage 100% · ceiling Verified

1 conform / 0 violate across 30 ADRs.

✓ On the Gold path — maintain.

Detailed fixes: d25_recommendation.md.

D26 · Project Cohesion10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether each project is a focused, coherent unit rather than an oversized grab-bag.

Method: Project size overshoot penalties (LoC / public-type count / namespace count, 2-of-3 flag) weighted by log magnitude. Exhaustive across projects, deterministic, LLM-independent.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

No projects to assess.

✓ On the Gold path — maintain.

Detailed fixes: d26_recommendation.md.

D27 · Navigability10.0 / 10Exemplary✓ Tool-verified

What it measures: How far you must trace to follow a call — low indirection and co-located slices read easier.

Method: Call indirection (interface hops, cross-namespace calls, slice-locality scaled) over a sampled set of method invocations, size-aware baseline. Sampled; confidence discounted by symbol-resolution gaps.

Coverage: Slice locality from the first namespace segments, SAMPLED (≤400 methods) — not exhaustive.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

Too little code to assess navigability.

✓ On the Gold path — maintain.

Detailed fixes: d27_recommendation.md.

D28 · Secrets (history)8.0 / 10Strong✓ Tool-verified

What it measures: Whether any secrets were ever committed — scanned across the full git history, not just now.

Method: Git-history secret scan via gitleaks detect over full history in an isolated checkout; each match flagged High. Exhaustive; degrades cleanly when tool absent.

Maturity: DocumentedVerifiedPrevented · effective 8.0 / 10 · rule-coverage 100% · ceiling Documented

2 finding(s): 0 critical, 2 high, 0 medium, 0 low. Remediation for historically-committed secrets is credential rotation — they remain in history regardless of later deletion.

Secret: generic-api-key · ×2app/google-services.json:37detected by gitleaks finding
Rotate the exposed credentials — git history can't be un-committed

What to do

  1. Resolve the 2 Secret finding(s) in Secrets (history) — start with android.yml, google-services.json. — One of this dimension's main actionable groups (2 issue-level).
  2. Resolve the 1 Rotate the exposed credentials finding(s) in Secrets (history). — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d28_recommendation.md · top locations in Appendix A, every location in findings.md.

D29 · Static Analysis (SAST)0.2 / 10Critical✓ Tool-verified

What it measures: Real static-analysis (SAST) findings — likely security bugs in the code, any language.

Method: Polyglot static analysis via semgrep across the repo using the pinned, image-baked p/security-audit + p/owasp-top-ten rulesets (no scan-time registry fetch); severity rules (ERROR/WARNING/INFO) map to a full-band severity-weighted score. Exhaustive, deterministic; degrades on parse failure.

Coverage: semgrep pattern rules over all files — exhaustive for the rule set, blind to classes of bug without a rule (clean = no rule matched).

Maturity: DocumentedVerifiedPrevented · effective 0.2 / 10 · rule-coverage 100% · ceiling Documented

28 finding(s): 0 critical, 19 high, 7 medium, 2 low.

High: gha-workflow-env-secret · ×19.github/workflows/android.yml:33detected by semgrep finding
Medium: exported_activity · ×7app/src/benchmark/AndroidManifest.xml:8detected by semgrep finding
Low: dynamic-urllib-use-detected · ×2.github/scripts/generate_apk_size_chart.py:229detected by semgrep finding

What to do

  1. Resolve the 19 High finding(s) in Static Analysis (SAST) — start with android.yml (17), translation.yml (2). — One of this dimension's main actionable groups (19 issue-level).
  2. Resolve the 7 Medium finding(s) in Static Analysis (SAST) — start with AndroidManifest.xml (7). — One of this dimension's main actionable groups (7 warning-level).
  3. Resolve the 2 Low finding(s) in Static Analysis (SAST) — start with generate_apk_size_chart.py, sync_latest_stable_metadata.py. — One of this dimension's main actionable groups (2 recommendation-level).

Detailed fixes: d29_recommendation.md · top locations in Appendix A, every location in findings.md.

D34 · Knowledge Freshness10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether anyone still has living knowledge of each file, or it has been orphaned — last understood long ago by someone now gone quiet. The sibling of the bus factor: D16 asks who owns it, D34 asks whether anyone still knows it.

Method: File orphaning as total living-knowledge decay below one focused-commit's worth within a year, computed per-file from the D16 decay model. Exhaustive, deterministic over fixed history.

Maturity: DocumentedVerifiedPrevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

Every significant source file has living knowledge — recently and meaningfully worked.

✓ On the Gold path — maintain.

Detailed fixes: d34_recommendation.md.

D36 · Supply-chain Provenance & Signing0.0 / 10Critical✓ Tool-verified

What it measures: Whether the build pipeline provides supply-chain integrity — generated provenance/attestation, signed artifacts (cosign/sigstore), an SBOM, and pinned build actions. Presence of the configuration, not a runtime guarantee.

Method: Supply-chain provenance/signing read deterministically from CI/build config (.github/workflows, .gitlab-ci.yml, azure-pipelines, Jenkinsfile, .circleci) + the release surface: four signals — generated provenance/attestation (SLSA/in-toto/actions-attest), artifact signing (cosign/sigstore/gitsign), an SBOM (syft/sbom-action/*.spdx.json/*.cdx.json), and SHA-pinned build actions — scored 10·present/denom. NotApplicable without a build pipeline. Detects configuration presence, not runtime enforcement.

Maturity: DocumentedVerifiedPrevented · effective 0.0 / 10 · rule-coverage 100% · ceiling Documented

0/4 supply-chain integrity signals present (provenance, signing, SBOM, pinned actions).

Unpinned build actions
No build provenance
No artifact signing
No SBOM

What to do

  1. Resolve the 1 Unpinned build actions finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 warning-level).
  2. Resolve the 1 No build provenance finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 recommendation-level).
  3. Resolve the 1 No artifact signing finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d36_recommendation.md · top locations in Appendix A, every location in findings.md.

Frontend & cross-cutting dimensions

R = React/JS · M = Maturity · P = Readiness.

AX5 · Architecture & structure10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether the codebase has a recognisable, scale-appropriate structure (a named architectural style, or modular enough for its size) rather than being an ad-hoc ball of mud.

Method: Roslyn plus csproj analysis: architecture style detection (DDD, clean, vertical-slice, CQRS) and structure fitness for repo size. Deterministic.

DM4 · Rich vs anemic model3.0 / 10Weak✓ Tool-verified

Other · Domain Modelling — Whether aggregates/entities carry the behaviour that protects their invariants, rather than being data bags driven by external services.

Method: Roslyn (DDD-gated): entity method BODIES classified mutator-vs-query — only methods that mutate the entity's own declared state count as invariant-protecting behaviour, so a getter/passthrough doesn't rescue an anemic class. Deterministic, exhaustive over domain-layer entities.

Coverage: Population: entities by name/base convention; rich-vs-anemic judged by classifying each method body mutator-vs-query — logic-bearing domain types outside the convention are invisible.

  • `LCItem` is an aggregate/entity with 12 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — LCItem.kt:10
  • `SnapshotDiffStoringItem` is an aggregate/entity with 4 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — SnapshotDiffStoringItem.kt:8
  • `SnapshotItem` is an aggregate/entity with 28 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — SnapshotItem.kt:8
  • `TimeStampItem` is an aggregate/entity with 3 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — TimeStampItem.kt:10
  • `TrackItem` is an aggregate/entity with 1 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — TrackItem.kt:7

What to do

  • Move business rules onto the aggregates/entities they govern so invariants are enforced at the source, not in anemic services.
DM5 · Encapsulated state5.0 / 10Adequate✓ Tool-verified

Other · Domain Modelling — Whether entities protect their state (private/init-only setters) instead of exposing public setters that bypass invariants. Softened when a rehydration framework (Marten/EF) is present.

Method: Roslyn (DDD-gated): public setters on entities detected; score softened when Marten/EF rehydration frameworks present. Deterministic, framework-aware.

Coverage: Population: entities by convention; encapsulation (setter shape) checked exhaustively within the set.

  • `SnapshotItem` exposes public setter(s) (id, timeStamp). — SnapshotItem.kt:8

What to do

  • Make entity setters private/init-only; change state only through methods that enforce the invariants (Marten/EF can bind via constructor or private setters).
DM6 · Domain ↔ infrastructure boundary10.0 / 10Exemplary✓ Tool-verified

Other · Domain Modelling — Whether the domain layer stays free of infrastructure dependencies (EF/Marten/HTTP/ASP.NET) — the clean-architecture dependency rule.

Method: Roslyn (DDD-gated): domain-layer types scanned for infrastructure usage in member SIGNATURES and inside method/accessor BODIES — resolved calls and object-creations into EF/Marten/HTTP/Mongo/Redis/message-bus types (not just a namespace allowlist). Deterministic, symbol-resolved, exhaustive over domain-layer bodies, DDD-native.

Coverage: Domain layer identified by NAMESPACE heuristic; infrastructure then resolved by symbol in member SIGNATURES and method/accessor BODIES — rename the layer and the check evaporates.

DM8 · Value-object opportunities10.0 / 10Exemplary✓ Tool-verified

Other · Domain Modelling — Whether clusters of primitives that travel together (a missing value object) are extracted — a low-weight suggestion, LLM-confirmed when configured.

Method: Roslyn (DDD-gated): primitive parameter clusters recurring three or more times across signatures extracted, then confirmed by language model when configured. Advisory, low-weight.

M1 · Documentation (README)6.0 / 10Adequate✓ Tool-verified

Maturity · Maturity — Whether the repo and its projects have a README, and whether it's substantive and current.

Method: Filesystem scan: README presence, word count, and headings for depth; git history for staleness. Exhaustive across root and project dirs, deterministic.

What to do

  • Add a build/run (quick start) section to the root README — the first thing a newcomer needs.
  • Add a 'Testing' section to the root README — how to run the test suite.
  • Add an 'Architecture' / 'How it works' section to the root README — the high-level shape.
M2 · Architecture documentation5.0 / 10Adequate✓ Tool-verified

Maturity · Maturity — Whether key decisions (ADRs) and the high-level shape (C4/diagrams) are written down.

Method: Filesystem scan: ADR folder/naming conventions or content, plus Mermaid/PlantUML/C4/architecture.md discovery. Exhaustive, deterministic.

  • No C4/PlantUML/Mermaid diagram or architecture.md — the high-level shape isn't documented.

What to do

  • Grow the ADR log (currently 30) — reach 50 to raise the maturity tier; document significant decisions as they're made.
  • Add a C4 context/container diagram (Structurizr, PlantUML or Mermaid) or an architecture.md overview.
M3 · Folder & project structure8.0 / 10Strong✓ Tool-verified

Maturity · Maturity — Whether the repo is organised deliberately — src/test separation and consistent project naming.

Method: Filesystem scan: src/test folder separation and namespace-prefix consistency (majority RootNamespace agreement). Exhaustive across projects, deterministic.

  • Test projects aren't grouped under a tests/ folder — the test surface isn't separable from production code at a glance.

What to do

  • Group test projects under tests/ (or test/, spec/) so the test surface is discoverable and CI can scope it.
M4 · Documentation accuracy10.0 / 10Exemplary◐ Sampled · advisory

Maturity · Maturity — Whether the README actually describes the code that exists (LLM-judged, advisory).

Method: Judged by language model at low temperature: README accuracy versus actual projects, within a disclosed tolerance. Advisory, not a measured number.

P1 · CI/CD gates10.0 / 10Exemplary○ Nothing flagged

Readiness · Readiness — Whether an automated pipeline builds and tests every change.

Method: Filesystem scan: CI workflow files (.github/workflows, .gitlab-ci.yml, etc.) for build and test stages. Exhaustive, deterministic.

P2 · Observability0.0 / 10Critical✓ Tool-verified

Readiness · Readiness — Whether the code is diagnosable in production — structured logging, tracing/metrics, health checks.

Method: Filesystem/Roslyn scan: structured-logging frameworks (Serilog, NLog), OpenTelemetry, and health-check endpoint patterns. Exhaustive, deterministic.

  • No ILogger/Serilog usage found — production issues will be hard to diagnose.

What to do

  • Adopt ILogger (or Serilog) and log at meaningful points across the projects.
  • Consider OpenTelemetry tracing/metrics and a health-check endpoint for operability.
P3 · Security & performance tooling0.0 / 10Critical✓ Tool-verified

Readiness · Readiness — Whether SAST, secret/dependency scanning and performance benchmarking are wired in (presence, not runtime).

Method: Filesystem/Roslyn scan: CodeQL, Dependabot, secret-scanning, and BenchmarkDotNet presence in pipelines and projects. Exhaustive, deterministic.

  • No static application security testing (CodeQL / security analyzers / codehealth) detected.

What to do

  • Add a SAST step (e.g. CodeQL) or a security analyzer package.
  • Enable Dependabot/Renovate or a dependency-review gate.
  • Add gitleaks/trufflehog in CI to block PRs that introduce committed secrets.
P6 · Release Hygiene5.0 / 10Adequate✓ Tool-verified

Readiness · Readiness — Whether releases are traceable — a maintained changelog and explicit version stamping.

Method: Filesystem scan: changelog file presence and version tags in csproj or git tags. Exhaustive, deterministic.

What to do

  • Stamp a version (csproj <Version>, a VERSION file, or GitVersion) or tag releases with semver so builds and releases are traceable.
X1 · Async correctness10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether the code avoids sync-over-async (deadlock-prone blocking on tasks) and async void.

Method: Roslyn syntax scan: async methods scanned for .Wait()/.GetAwaiter().GetResult() and async-void outside event handlers. Deterministic, hard fact per invocation.

X3 · Exception handling10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether exceptions are handled rather than silently swallowed or rethrown with lost stack traces.

Method: Roslyn syntax scan: every catch clause counted; empty catches and bare rethrows flagged. Population is all catch clauses, not estimated. Deterministic, hard fact.

X4 · Structured logging10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether log calls use message templates (queryable) rather than interpolated strings.

Method: Roslyn syntax scan: every log call-site counted; interpolated-string first-argument violations flagged. Population is all log calls, not estimated. Deterministic.

Reference — by lens

The score is the rank-weighted fold of these lenses (worst-heaviest), each including its meta-dimensions; a lens with a Critical contributor is capped at Fair (its band reads "gated by …") and is never the strongest area however high its average.

LensScoreRatingImpact
Code Health93%ExemplarySolid.
Architecture96%ExemplaryStrongest area.
Maturity70%StrongSolid.
Readiness23%Critical — gated by D9, P2, P3Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Security28%Weak — gated by D29, D36Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Domain Modelling54%Adequate — gated by DM4Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Not included — 60 check(s) not relevant to this codebase

These checks had nothing to measure here (no tests, no git history, the codebase is small, or the architecture style doesn't apply), so they're omitted above rather than scored low.

  • AC1 Text alternatives — No web markup found — accessibility is not applicable to this repository.
  • AC2 Forms & labels — No web markup found — accessibility is not applicable to this repository.
  • AC3 Page structure — No web markup found — accessibility is not applicable to this repository.
  • AC4 Keyboard semantics — No web markup found — accessibility is not applicable to this repository.
  • AC5 ARIA correctness — No web markup found — accessibility is not applicable to this repository.
  • AC6 Visual & motion safety — No web markup found — accessibility is not applicable to this repository.
  • AC7 A11y enforcement — No web markup found — accessibility is not applicable to this repository.
  • AX1 Captive dependencies — no DI registrations detected
  • AX10 Code composition — no source files detected — code composition not applicable
  • AX2 Stateful singletons — no singleton implementations detected
  • AX3 Project dependency cycles — no csproj graph available
  • AX4 Dependency direction — no csproj graph available
  • AX6 Interface segregation — no public interfaces
  • AX7 Slice cohesion — not applicable — not a vertical-slice architecture
  • AX8 Test isolation — no test/production split to check
  • AX9 CQS / query purity — no CQRS query handlers detected — query purity is not applicable to this codebase
  • C1 Data Protection — No personal data detected in the analyzed source — no PII-typed entity/column names (Email, FirstName, DateOfBirth, …), no ASP.NET Identity / user-account model, and no stored user credentials. GDPR data-protection controls are therefore N/A here. If this is intentional, record the no-PII posture in an ADR; if the app does process personal data, name those fields conventionally so this dimension activates.
  • C2 Access Controls — No access-control surface detected in the analyzed source — no web/app surface to authorize (no HTTP API or web-UI project) and no authorization code at all (no [Authorize]/policies, no imperative guard methods). Access control is therefore N/A here — this is a library/CLI, which is authorized by its CALLER, not by itself. If this codebase grows request handlers, the dimension reactivates and a default-deny posture is expected then.
  • C3 Audit Trail — No personal data detected in the analyzed source — no PII-typed entity/column names (Email, FirstName, DateOfBirth, …), no ASP.NET Identity / user-account model, and no stored user credentials. GDPR data-protection controls are therefore N/A here. If this is intentional, record the no-PII posture in an ADR; if the app does process personal data, name those fields conventionally so this dimension activates.
  • C4 Data Retention — No personal data detected in the analyzed source — no PII-typed entity/column names (Email, FirstName, DateOfBirth, …), no ASP.NET Identity / user-account model, and no stored user credentials. GDPR data-protection controls are therefore N/A here. If this is intentional, record the no-PII posture in an ADR; if the app does process personal data, name those fields conventionally so this dimension activates.
  • C5 Data-Subject Rights — No personal data detected in the analyzed source — no PII-typed entity/column names (Email, FirstName, DateOfBirth, …), no ASP.NET Identity / user-account model, and no stored user credentials. GDPR data-protection controls are therefore N/A here. If this is intentional, record the no-PII posture in an ADR; if the app does process personal data, name those fields conventionally so this dimension activates.
  • D10 Test Quality — ~10662 lines of test code exist on disk but weren't loaded from the analyzed solution (excluded from the .sln, or co-located/using a test attribute not loaded here), so test quality couldn't be assessed. Include the tests in the analyzed solution to enable this check.
  • D11 Test Reliability — Test reliability not included
  • D14 License Compliance — license scan produced no result — the tool ran but its JSON output could not be parsed; the offline NuGet fallback resolved nothing
  • D17 Explicit Debt — the C# workspace loaded 0 projects, so explicit-debt density could not be measured
  • D18 Solution Shape — Dimension evaluation failed
  • D22 Internal API Consistency — No exposed public API
  • D23 Boundary Type-Coupling — Zero projects and zero LoC mean the codebase is trivial and has no structure to justify boundaries.
  • D24 Comment Value — No inline comments to assess — comment value is not applicable here.
  • D30 Dependency Vulnerabilities — No .NET solution found; no NuGet dependencies to scan for vulnerabilities.
  • D31 IaC & Container Security — No Infrastructure-as-Code or container manifests found (Dockerfile, Terraform, Kubernetes/Helm, CloudFormation); nothing to scan.
  • D32 Data Compliance (PII/GDPR) — No PII/GDPR ruleset is bundled (the public p/gdpr semgrep pack was retired) — data compliance is not assessed in this scan.
  • D33 JS/npm Dependency Vulnerabilities — No JS/npm manifest or lockfile found outside bin/obj (package.json, package-lock.json, yarn.lock, pnpm-lock.yaml, bun.lockb); no JS dependencies to scan.
  • D35 Change Coupling — no production change history to mine for change-coupling
  • D37 Vulnerability-disclosure Policy — No vulnerability-disclosure policy file found (SECURITY.md, .github/SECURITY.md, docs/SECURITY.md, .well-known/security.txt). A coordinated-disclosure policy may live off-repo, so this is not evidenced rather than failed.
  • D38 OSV Dependency Vulnerabilities — No JS/npm lockfile found outside bin/obj (package-lock.json, yarn.lock, pnpm-lock.yaml, bun.lockb); nothing for OSV to scan.
  • D39 IL Efficiency — The target did not build, so no IL was available to measure.
  • D6 Cohesion (LCOM4) — No production classes were analyzable, so cohesion (LCOM4) was not measured (the solution likely failed to load or has no production code).
  • D8 Code Coverage — Coverage not measured — test suite did not build
  • DM1 Aggregate boundaries — no aggregates detected — aggregate-boundary check not applicable
  • DM2 Strongly-typed ids — no id-bearing domain types detected — strongly-typed-id adoption not assessable
  • DM3 Integration-event coupling — no integration events detected — coupling check not applicable
  • DM7 Repository granularity — no repository abstraction detected (e.g. uses a document session)
  • ED1 Event-Driven — not run — 0/3 markers found
  • ED5 Idempotency — no mutating command handlers or message consumers detected — idempotency check not applicable
  • ES1 Event Sourcing — not run — 0/3 markers found
  • GD1 Unfinished & placeholder code — no source files
  • IC1 Incompleteness & stubs — no C# methods found
  • P12 CI test-gate honesty — no data
  • P4 Deployment & Rollback — not evidenced — no deploy/rollback/approval signal in the repo; absence of evidence is not evidence of a manual release
  • P5 DR & Backup — not evidenced — repo shows no backup/RTO/RPO controls; absence of evidence is not evidence of a working control
  • P7 Outbound HTTP resilience — not applicable — this isn't a service/API/worker
  • P8 Schema migrations — no EF Core usage detected
  • P9 Domain vs controller coverage — no coverage report found on disk — run tests with `--collect:"XPlat Code Coverage"` (or in CI) to enable this cross-layer check
  • PF1 Benchmark discipline — Performance is assessed only for perf-relevant repos — a packaged library, one that ships benchmarks, or one already using allocation-aware APIs. This repo isn't one, so the Performance lens is not applicable and is excluded from the score.
  • PF2 Allocation hygiene — Performance is assessed only for perf-relevant repos — a packaged library, one that ships benchmarks, or one already using allocation-aware APIs. This repo isn't one, so the Performance lens is not applicable and is excluded from the score.
  • PF3 Async & latency hygiene — Performance is assessed only for perf-relevant repos — a packaged library, one that ships benchmarks, or one already using allocation-aware APIs. This repo isn't one, so the Performance lens is not applicable and is excluded from the score.
  • S1 Web-Security Posture — No web surface detected in the analyzed source — no HTTP API or web-UI project (no controllers/minimal-API endpoints, no Razor/Blazor views) and no web middleware (HTTPS redirection, HSTS, security headers, cookies). Transport security, security headers, secure cookies, CSRF/input-validation and middleware-order controls are therefore N/A here — this is a library/CLI/worker, not a web app. Crypto hygiene was still checked and found nothing to flag. If this codebase becomes web-facing, the dimension reactivates automatically.
  • X2 Cancellation propagation — no async methods found
  • X5 Nullable reference types — no NRT-eligible projects

Appendix A — Findings (grouped)

The findings behind the scores, grouped by severity, then by dimension and kind. The high-severity issues are enumerated in full below; items per group are capped at 25 with any overflow stated explicitly per group, never silently truncated. The complete machine-readable list of every finding (all severities) is the companion findings.md in this report's bundle.

Issue — 23 finding(s)
D29 · Static Analysis (SAST) · High · ×19
  • High: gha-workflow-env-secret .github/workflows/android.yml:33 — A secret is exposed in the workflow-level `env:` block, making it available to every job and step in this workflow — including any untrusted code run in pull-request workflows. Scope secrets as narrowly as possible: prefer step-level `env:` so the secret is only available where it is actually needed.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:41 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:42 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:46 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:70 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:73 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:77 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:106 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:113 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:119 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:131 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:133 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:138 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:179 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:255 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:344 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/android.yml:370 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/translation.yml:22 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
  • High: github-actions-mutable-action-tag .github/workflows/translation.yml:25 — GitHub Actions step uses a mutable tag or branch reference. Tags and branch names can be silently repointed by the action owner, enabling supply-chain attacks — as seen in the trivy-action and kics-github-action compromises. Pin the reference to a full 40-character commit SHA instead, e.g. `uses: actions/checkout@8ade135a41bc03ea155e62e844d188df1ea18608`.
D28 · Secrets (history) · Secret · ×2
  • Secret: generic-api-key app/google-services.json:37 — matched rule 'generic-api-key'
  • Secret: generic-api-key .github/workflows/android.yml:65 — matched rule 'generic-api-key'
D13 · Secret Scanning · Leaked secret · ×1
  • Leaked secret: gcp-api-key app/google-services.json:18 — gcp-api-key detected.
D18 · Solution Shape · Dimension evaluation failed · ×1
  • Dimension evaluation failed — no .NET solution found at target path
Warning — 47 finding(s)
D29 · Static Analysis (SAST) · Medium · ×7
  • Medium: exported_activity app/src/benchmark/AndroidManifest.xml:8 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
  • Medium: exported_activity app/src/main/AndroidManifest.xml:40 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
  • Medium: exported_activity app/src/main/AndroidManifest.xml:58 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
  • Medium: exported_activity app/src/main/AndroidManifest.xml:79 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
  • Medium: exported_activity app/src/main/AndroidManifest.xml:101 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
  • Medium: exported_activity app/src/main/AndroidManifest.xml:114 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
  • Medium: exported_activity app/src/main/AndroidManifest.xml:135 — The application exports an activity. Any application on the device can launch the exported activity which may compromise the integrity of your application or its data. Ensure that any exported activities do not have privileged access to your application's control plane.
D20 · ADR Quality · Only the heading 'Bugs fixes' appears; no context/problem and no consequences/trade-offs are present · ×2
  • Only the heading 'Bugs fixes' appears; no context/problem and no consequences/trade-offs are present fastlane/metadata/android/en-US/changelogs/1448.txt — Add a Context section explaining which bugs were identified and why they matter, then an explicit Decision stating what was fixed and how it was implemented, followed by Consequences covering any new risks or trade-offs
  • Only the heading 'Bugs fixes' appears; no context/problem and no consequences/trade-offs are present fastlane/metadata/android/en-US/changelogs/1465.txt — Add a Context section explaining which bugs were identified and why they matter, then an explicit Decision stating what was fixed and how it was implemented, followed by Consequences covering any new risks or trade-offs
D4 · Code Duplication · Duplicated block (18 lines × 2) · ×2
  • Duplicated block (18 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:185 — app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:185-202 | app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:280-297
  • Duplicated block (18 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:316 — app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:316-332 | app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:460-477
D4 · Code Duplication · Duplicated block (12 lines × 2) · ×2
  • Duplicated block (12 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/domain/about/ui/AboutPageBuilder.kt:89 — app/src/main/kotlin/com/absinthe/libchecker/domain/about/ui/AboutPageBuilder.kt:89-100 | app/src/main/kotlin/com/absinthe/libchecker/domain/about/ui/AboutPageBuilder.kt:105-116
  • Duplicated block (12 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:159 — app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:159-169 | app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/comparison/usecase/CompareSnapshotItemsUseCase.kt:179-190
D20 · ADR Quality · No consequences/trade-offs section describing what happens when Android 6 is dropped (e.g. new apps must support API 23 or higher) · ×1
  • No consequences/trade-offs section describing what happens when Android 6 is dropped (e.g. new apps must support API 23 or higher) fastlane/metadata/android/en-US/changelogs/1341.txt — Add a Consequences section noting the minimum-sdk-api version change and how existing apps will be affected
D20 · ADR Quality · Only three bullet items (Marking of not granted permissions; UI improvements; Bugs fixes) with no context/problem and no explicit decision · ×1
  • Only three bullet items (Marking of not granted permissions; UI improvements; Bugs fixes) with no context/problem and no explicit decision fastlane/metadata/android/en-US/changelogs/1401.txt — Add a Context section explaining the permission-granting problem and an explicit Decision stating what marking is done/how it is enforced
D20 · ADR Quality · Only three bullet items (marking not-granted perms, UI improv, bugs) with no context/problem and no explicit decision; the body is clipped mid-bullet list · ×1
  • Only three bullet items (marking not-granted perms, UI improv, bugs) with no context/problem and no explicit decision; the body is clipped mid-bullet list fastlane/metadata/android/en-US/changelogs/1403.txt — Add a Context section explaining why these changes are needed (e.g. security gap, user experience pain) and an Explicit Decision stating what marking entails plus any tooling or policy it depends on
D20 · ADR Quality · No context/problem statement; only a list of cosmetic/behavioral changes with no rationale or consequences · ×1
  • No context/problem statement; only a list of cosmetic/behavioral changes with no rationale or consequences fastlane/metadata/android/en-US/changelogs/1497.txt — Add a Context section explaining why widescreen split-screen was needed (e.g. resolution scaling, usability) and a Consequences section on trade-offs like flicker during resizing
D20 · ADR Quality · The body lists only feature/bug fixes with no context/problem and no consequences/trade-offs · ×1
  • The body lists only feature/bug fixes with no context/problem and no consequences/trade-offs fastlane/metadata/android/en-US/changelogs/1585.txt — Add a Context section explaining what problem each fix addresses (e.g. uninstalled permissions display, app entering the details page) and a Consequences section noting any new trade-offs or risks
D20 · ADR Quality · No context/problem statement; each item is a feature/fix listed without explaining what it solves or why it matters · ×1
  • No context/problem statement; each item is a feature/fix listed without explaining what it solves or why it matters fastlane/metadata/android/en-US/changelogs/1682.txt — Add a Context section describing the problem (e.g. inability to view app properties in the label, parsing native libraries for compatibility) and an explicit Decision stating which features were added under what rationale
D20 · ADR Quality · No context/problem statement or consequences; all listed items are features/fixes with no rationale and no trade-offs · ×1
  • No context/problem statement or consequences; all listed items are features/fixes with no rationale and no trade-offs fastlane/metadata/android/en-US/changelogs/1749.txt — Add a Context section explaining why each change matters (e.g., Android 14 compatibility, click-on-permission UX, System Framework app filtering) and a Consequences section noting any new friction (e.g. snapshot parsing cost, split-screen optimization limits)
D20 · ADR Quality · All listed items are fixes/updates with no context/problem statement and no consequences/trade-offs · ×1
  • All listed items are fixes/updates with no context/problem statement and no consequences/trade-offs fastlane/metadata/android/en-US/changelogs/1893.txt — Add a Context section explaining which problems each fix addresses (predictive back gesture for navigation, duplicate menu options) and a Consequences section noting any new trade-offs
D20 · ADR Quality · The body is a long list of features and fixes with no context/problem statement and no consequences/trade-offs · ×1
  • The body is a long list of features and fixes with no context/problem statement and no consequences/trade-offs fastlane/metadata/android/en-US/changelogs/2159.txt — Add an Context section explaining what app analysis tool the ADR describes (its purpose) and the problem it solves. Add a Consequences section noting any trade-offs such as migration effort to Firebase telemetry
D20 · ADR Quality · The body is a list of feature/behavior changes with no context/problem statement and no consequences/trade-offs · ×1
  • The body is a list of feature/behavior changes with no context/problem statement and no consequences/trade-offs fastlane/metadata/android/en-US/changelogs/2343.txt — Add an Context section explaining the motivation (e.g. Android 16 requirements, 16 KB alignment policy) and a Consequences section noting any new trade-offs such as migration cost or loss of Dex page
D20 · ADR Quality · No context/problem statement; no consequences/trade-offs · ×1
  • No context/problem statement; no consequences/trade-offs fastlane/metadata/android/en-US/changelogs/2441.txt — Add a Context section explaining why library/action matching priority matters (e.g. distinguishing between libraries and actions) and a Consequences section on trade-offs such as increased overhead or false-positive risk
D20 · ADR Quality · No context/problem statement; the list is only features and a changelog link · ×1
  • No context/problem statement; the list is only features and a changelog link fastlane/metadata/android/en-US/changelogs/2515.txt — Add a Context section explaining why sharing APK download links, comparing APKS, permission provider visibility, themed/icon detection, and Live Update Notifications are needed (e.g. security, usability for large apps). Then state the explicit decision (which feature set was adopted) and its consequences.
D20 · ADR Quality · This is a changelog listing fixes and features for an Android build (17), not an architecture decision record · ×1
  • This is a changelog listing fixes and features for an Android build (17), not an architecture decision record: no context/problem statement, no explicit decision, and no consequences/trade-offs fastlane/metadata/android/en-US/changelogs/2671.txt — Replace with the ADR's Context/Problem section explaining what was broken/how it was fixed, then an explicit Decision stating the design choice and rationale, followed by Consequences such as trade-offs of the new detection or layout behavior
D20 · ADR Quality · Decision and consequences are absent; the body lists only feature/enhancement items with no context/problem or trade-offs · ×1
  • Decision and consequences are absent; the body lists only feature/enhancement items with no context/problem or trade-offs fastlane/metadata/android/zh-CN/changelogs/1341.txt — Add a Context section explaining why each change was made (e.g. Android 6 drop, re-use invariant features) and a Consequences section noting any operational/dependency risks
D20 · ADR Quality · Decision is a single bullet ('标示未授权的权限') with no context/problem and no consequences; the remaining entries are non-decision items (UI 改进 / 问题修复) that add nothing · ×1
  • Decision is a single bullet ('标示未授权的权限') with no context/problem and no consequences; the remaining entries are non-decision items (UI 改进 / 问题修复) that add nothing fastlane/metadata/android/zh-CN/changelogs/1401.txt — Replace all three bullets with an explicit Context/Problem section explaining why authorization detection matters, then a Decision statement of what is done/how it works, and a Consequences section on trade-offs like false-positive rate or runtime cost
D20 · ADR Quality · Decision is a single bullet ('标示未授权的权限') with no context/problem and no consequences; the remaining entries are task labels (UI 改进 / 问题修复) giving nothing · ×1
  • Decision is a single bullet ('标示未授权的权限') with no context/problem and no consequences; the remaining entries are task labels (UI 改进 / 问题修复) giving nothing fastlane/metadata/android/zh-CN/changelogs/1403.txt — Replace the single bullet with an explicit Context/Problem section explaining why authorization detection is needed, then state the decision (e.g. audit module to flag unauthorized roles), followed by Consequences such as false-positive tolerance and integration cost
D20 · ADR Quality · Title '1448' and body are both single words ('Problem Fix') with no context/problem and no decision; consequences/trade-offs entirely absent · ×1
  • Title '1448' and body are both single words ('Problem Fix') with no context/problem and no decision; consequences/trade-offs entirely absent fastlane/metadata/android/zh-CN/changelogs/1448.txt — Rename to a descriptive title (e.g. 'Migrate legacy billing API to GraphQL') and flesh out the problem, the migration decision, and its consequences
D20 · ADR Quality · Title '1465' and body are both single word ('Problem Fix') with no context/problem and no decision; consequences/trade-offs entirely absent · ×1
  • Title '1465' and body are both single word ('Problem Fix') with no context/problem and no decision; consequences/trade-offs entirely absent fastlane/metadata/android/zh-CN/changelogs/1465.txt — Rename to a descriptive title (e.g. 'Fix broken dependency versioning across modules') and flesh out the problem, the explicit decision being the fix itself, and its consequences
D20 · ADR Quality · Decision is a thin list of features without context/problem and consequences; no trade-offs · ×1
  • Decision is a thin list of features without context/problem and consequences; no trade-offs fastlane/metadata/android/zh-CN/changelogs/1497.txt — State the problem (e.g. inconsistent split behavior on wide screens, sluggish rendering under load) and document the consequences such as increased complexity or resource usage for adding new menu options
D20 · ADR Quality · The body is a list of feature/bug fixes with no context/problem statement and no consequences/trade-offs · ×1
  • The body is a list of feature/bug fixes with no context/problem statement and no consequences/trade-offs fastlane/metadata/android/zh-CN/changelogs/1585.txt — Add the problem each fix addresses (e.g. '中文翻译更新 needed for non-English users') and document any trade-offs such as increased build/runtime cost from new ABI icons or split-package handling
D20 · ADR Quality · Context/problem and consequences/trade-offs are absent; the body is a list of feature/bug fixes with no rationale or impact statement · ×1
  • Context/problem and consequences/trade-offs are absent; the body is a list of feature/bug fixes with no rationale or impact statement fastlane/metadata/android/zh-CN/changelogs/1682.txt — Add a Context section explaining why each change was needed (e.g. 'Application详情页 needs an inline view for Application tag properties') and a Consequences section noting trade-offs like requiring Shizuku/Sui for one capability, or the added complexity of new modules
D20 · ADR Quality · The body is a list of feature/bug-fix items with no context/problem and no consequences/trade-offs · ×1
  • The body is a list of feature/bug-fix items with no context/problem and no consequences/trade-offs fastlane/metadata/android/zh-CN/changelogs/1749.txt — State the problem each change addresses (e.g. Android 14 compatibility, clickable-permission UI, component-change filtering) and document any trade-offs or new requirements
D20 · ADR Quality · The body is a list of fixes and features with no context/problem statement and no consequences/trade-offs · ×1
  • The body is a list of fixes and features with no context/problem statement and no consequences/trade-offs fastlane/metadata/android/zh-CN/changelogs/1893.txt — Add an Context section explaining what the changes address (e.g. Android 14 return gesture, menu duplication, V34 rule library) and a Consequences section noting any new trade-offs or limitations
D20 · ADR Quality · The list is a feature dump with no context/problem and no consequences/trade-offs; the title '适配 Android 15' gives nothing away · ×1
  • The list is a feature dump with no context/problem and no consequences/trade-offs; the title '适配 Android 15' gives nothing away fastlane/metadata/android/zh-CN/changelogs/2159.txt — Add an Context section explaining which existing limitations this addresses (e.g. older Android versions) and a Consequences section noting migration cost of dropping Microsoft App Center support
D20 · ADR Quality · The body is a list of features and fixes for an unspecified version (e.g. Android 16/15) with no context/problem statement or consequences/trade-offs · ×1
  • The body is a list of features and fixes for an unspecified version (e.g. Android 16/15) with no context/problem statement or consequences/trade-offs fastlane/metadata/android/zh-CN/changelogs/2343.txt — Add the problem motivating each change (e.g. 16 KB alignment detection needed to support new app requirements, Dex page removed due to long maintenance gap), and a Consequences section covering removal of old pages, loss of Dex info, and migration cost
D20 · ADR Quality · The body is a list of feature/bug-fix items with no context/problem and no explicit decision; the title '2441' gives no signal · ×1
  • The body is a list of feature/bug-fix items with no context/problem and no explicit decision; the title '2441' gives no signal fastlane/metadata/android/zh-CN/changelogs/2441.txt — Add an Context section stating what problem was fixed (e.g. IntentFilter action priority ordering) and a Decision section naming the trade-offs or new behavior, then a Consequences section on any side effects
D20 · ADR Quality · The body is a list of features and fixes with no context/problem statement and no consequences/trade-offs · ×1
  • The body is a list of features and fixes with no context/problem statement and no consequences/trade-offs fastlane/metadata/android/zh-CN/changelogs/2515.txt — Add the problem motivating each feature (e.g. sharing APK links without exposing metadata) and document the trade-offs (privacy cost of sharing links, increased false positives from non-ELF detection)}
D20 · ADR Quality · The body is a list of feature/bug-fix items with no context/problem and no explicit decision; the title '适配 Android 17' gives only minimal information · ×1
  • The body is a list of feature/bug-fix items with no context/problem and no explicit decision; the title '适配 Android 17' gives only minimal information fastlane/metadata/android/zh-CN/changelogs/2671.txt — Add an Context section explaining why Android 17 was chosen (e.g. security patch or API change) and a Decision section stating what each listed item accomplishes, then Consequences noting any new trade-offs
D36 · Supply-chain Provenance & Signing · Unpinned build actions · ×1
  • Unpinned build actions — CI references GitHub Actions by a floating ref (@main / @tag) rather than a pinned commit SHA, weakening build integrity.
D4 · Code Duplication · Duplicated block (21 lines × 2) · ×1
  • Duplicated block (21 lines × 2) macrobenchmark/src/main/kotlin/com/absinthe/libchecker/macrobenchmark/AppListBenchmark.kt:67 — macrobenchmark/src/main/kotlin/com/absinthe/libchecker/macrobenchmark/AppListBenchmark.kt:67-87 | macrobenchmark/src/main/kotlin/com/absinthe/libchecker/macrobenchmark/AppListBenchmark.kt:110-130
D4 · Code Duplication · Duplicated block (19 lines × 2) · ×1
  • Duplicated block (19 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/database/backup/RoomBackup.kt:244 — app/src/main/kotlin/com/absinthe/libchecker/database/backup/RoomBackup.kt:244-262 | app/src/main/kotlin/com/absinthe/libchecker/database/backup/RoomBackup.kt:272-290
D4 · Code Duplication · Duplicated block (17 lines × 2) · ×1
  • Duplicated block (17 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:553 — app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:553-569 | app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:628-643
D4 · Code Duplication · Duplicated block (13 lines × 2) · ×1
  • Duplicated block (13 lines × 2) app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:347 — app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:347-359 | app/src/main/kotlin/com/absinthe/libchecker/domain/snapshot/detail/usecase/SnapshotDetailSectionBuilder.kt:488-500
D8 · Code Coverage · Coverage not measured · ×1
  • Coverage not measured — test suite did not build — Coverage NOT MEASURED: the repo's own test suite did not build (a C#/MSBuild compiler error in the test code), so no coverage could be collected. It is excluded from the score rather than counted as a near-zero defect. Fix the test build, or commit the Cobertura/OpenCover/lcov report your CI already produces, and real coverage will be measured.
Recommendation — 8 finding(s)
D29 · Static Analysis (SAST) · Low · ×2
  • Low: dynamic-urllib-use-detected .github/scripts/generate_apk_size_chart.py:229 — Detected a dynamic value being used with urllib. urllib supports 'file://' schemes, so a dynamic value controlled by a malicious actor may allow them to read arbitrary files. Audit uses of urllib calls to ensure user data cannot control the URLs, or consider using the 'requests' library instead.
  • Low: dynamic-urllib-use-detected .github/scripts/sync_latest_stable_metadata.py:24 — Detected a dynamic value being used with urllib. urllib supports 'file://' schemes, so a dynamic value controlled by a malicious actor may allow them to read arbitrary files. Audit uses of urllib calls to ensure user data cannot control the URLs, or consider using the 'requests' library instead.
D11 · Test Reliability · Test reliability not included · ×1
  • Test reliability not included — No test projects found, so reliability couldn't be assessed.
D28 · Secrets (history) · Rotate the exposed credentials · ×1
  • Rotate the exposed credentials — git history can't be un-committed — Some of these secrets are in git HISTORY: deleting the file does not remove them (the commit persists on every clone, fork and backup). The remediation is to ROTATE each historically-exposed credential and treat it as compromised — not to delete the file. Rewriting history is disruptive and unreliable across existing forks. (Working-tree-only secrets — no commit — can instead be removed from the file and moved to a secret store.)
D36 · Supply-chain Provenance & Signing · No build provenance · ×1
  • No build provenance — No SLSA provenance generation or build attestation found in CI (e.g. slsa-github-generator, actions/attest-build-provenance).
D36 · Supply-chain Provenance & Signing · No artifact signing · ×1
  • No artifact signing — No artifact signing found in CI (e.g. cosign / sigstore / gitsign).
D36 · Supply-chain Provenance & Signing · No SBOM · ×1
  • No SBOM — No SBOM generation or committed SBOM found (e.g. syft / anchore/sbom-action / *.spdx.json / *.cdx.json).
D9 · Test Distribution · No tests found · ×1
  • No tests found — No test projects found in the repository.
Info — 1 finding(s)
D22 · Internal API Consistency · No exposed public API · ×1
  • No exposed public API — No intentionally-exposed types (IsPackable or .Contracts) to evaluate.

Appendix B — Reproduction & audit trail

Every external tool invocation behind a deep-scan dimension — the tool, its captured version, the exact command, how many findings it yielded, and a link to the retained raw output. To reproduce any finding: check out the same commit and run the command shown (repo-relative — never an absolute scratch path). The complete raw scanner output is retained verbatim under artifacts/raw/ (indexed in artifacts/raw/index.json); per-invocation exit codes and wall-clock durations are in sidecar.json — kept out of this table so the rendered report stays byte-identical across runs of the same commit.

DimensionToolVersionCommandFindingsRaw output
D28 · Secrets (history)gitleaksgitleaks detect --no-banner --report-format json --report-path /dev/stdout --exit-code 0 --source .2artifacts/raw/gitleaks-history.json
D29 · Static Analysis (SAST)semgrepsemgrep --config /opt/semgrep-rules/security-audit.yml --config /opt/semgrep-rules/owasp-top-ten.yml --json --quiet --timeout 0 --metrics off .28artifacts/raw/semgrep.json
D30 · Dependency Vulnerabilitiesdotnet (no .NET solution)dotnet (no .NET solution): not present in this environment0
D31 · IaC & Container Securitytrivytrivy: not applicable — No Infrastructure-as-Code or container manifests found (Dockerfile, Terraform, Kubernetes/Helm, CloudFormation); nothing to scan.0
D32 · Data Compliance (PII/GDPR)semgrepsemgrep: not applicable — No PII/GDPR ruleset is bundled (the public p/gdpr semgrep pack was retired) — data compliance is not assessed in this scan.0
D33 · JS/npm Dependency Vulnerabilitiestrivytrivy: not applicable — No JS/npm manifest or lockfile found outside bin/obj (package.json, package-lock.json, yarn.lock, pnpm-lock.yaml, bun.lockb); no JS dependencies to scan.0
D37 · Vulnerability-disclosure Policydisclosuredisclosure: not applicable — No vulnerability-disclosure policy file found (SECURITY.md, .github/SECURITY.md, docs/SECURITY.md, .well-known/security.txt). A coordinated-disclosure policy may live off-repo, so this is not evidenced rather than failed.0
D38 · OSV Dependency Vulnerabilitiesosv-scannerosv-scanner: not applicable — No JS/npm lockfile found outside bin/obj (package-lock.json, yarn.lock, pnpm-lock.yaml, bun.lockb); nothing for OSV to scan.0

Run 019fd940-781c-788b-9de4-61e55e0c9f40 · every finding is also locatable in findings.md, and the complete scoring record (with exit codes + durations) in sidecar.json.

Downloadable artifacts

Machine-readable and reproducible from this commit + frozen rubric — drop them straight into a contract appendix, a CRA dossier, or a downstream SCA / VEX tool.

⬇ Findings, MITRE CWE-tagged .sarif⬇ Health changelog .md