Public report — coffeeshop-on-dapr, published 29 Jul 2026. Concrete security findings (CVE IDs, secret matches, dependency versions) are hidden in this version; ask the repo owner for the full report.
Watchdog 29-07-2026 @ 20:22 UTC Public
Code Health Audit

Thangchung/coffeeshop-On-Dapr

46% Weak
CriticalWeakAdequateStrongExemplary
upper third — near Adequate

Small · 4,785 LoC · 9 projects · rebuild ~0.1 person-years · weakest lens: Readiness (30%)

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

59/62dimensions tool-verifieddeterministic · confidence 1.0 · 3 LLM-assisted, advisory
50findings with an exact file:lineof 141 — the remainder are repo-wide signals (a dimension-level measurement, not a single line); open any file:line and verify
62/107dimensions across the health lenses4785 LoC · 9 projects — 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.

thangchung/coffeeshop-on-dapr carries serious risk (46%). Several issues below can materially affect reliability, security, or the cost of change and warrant near-term attention.

It is strongest in Event-Driven (100%) — its messaging keeps components properly decoupled. Architecture (83%) is solid too.

The area that most needs attention is Readiness (30%) — operating, monitoring and recovering the system safely is harder. Security (50%) 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); SAST step to CI running what this repository's stack ships (Security & performance tooling); 14 Prerelease dependency finding(s) in Dependency Hygiene (Dependency Hygiene).

For scale: Small (~4,785 production lines); rebuilding it from scratch would take roughly ~0.1 person-years (~1 engineer). Approximate, ±~30%.

It builds on a genuinely strong Event-Driven foundation (100%); 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 30% · 46% weightSecurity 50% · 25% weightMaturity 62% · 14% weightDomain Modelling 69% · 8% weightCode Health 75% · 4% weightArchitecture 83% · 2% weightEvent-Driven 100% · 1% weight

Raise Readiness 30 → 70 (the Healthy floor) ⇒ headline 46 → ~60.

Code composition — where the lines go
Business logic 16%Plumbing 72%Tests 0%Generated 12%
New since the last scan (26+)

26 finding(s) are new versus the previous scan (2026-07-20) — surfaced by this scheduled scan itself, no pull request required.

  • D12 · Prerelease dependency: Newtonsoft.Json
  • D12 · Prerelease dependency: OpenTelemetry
  • D12 · Prerelease dependency: OpenTelemetry.Exporter.Console
  • D12 · Prerelease dependency: OpenTelemetry.Exporter.OpenTelemetryProtocol
  • D12 · Prerelease dependency: OpenTelemetry.Exporter.OpenTelemetryProtocol.Logs
  • D12 · Prerelease dependency: OpenTelemetry.Exporter.Prometheus.AspNetCore
  • D12 · Prerelease dependency: OpenTelemetry.Extensions.Hosting
  • D12 · Prerelease dependency: OpenTelemetry.Instrumentation.AspNetCore
  • D12 · Prerelease dependency: OpenTelemetry.Instrumentation.EntityFrameworkCore
  • D12 · Prerelease dependency: OpenTelemetry.Instrumentation.EventCounters
  • D12 · Prerelease dependency: OpenTelemetry.Instrumentation.Http
  • D12 · Prerelease dependency: OpenTelemetry.Instrumentation.Process
  • D12 · Prerelease dependency: Microsoft.EntityFrameworkCore.Design
  • D12 · Prerelease dependency: Microsoft.EntityFrameworkCore.Tools
  • D21 · LLM evaluation failed
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml
  • D29 · High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml

A full-fidelity diff against the previous run's complete recorded findings — line-move tolerant: a finding that only shifted line counts as unchanged, only genuinely new titles/files surface here.

Rebuild cost & value ~ Modeled — €2,600–€13,000
Cost to rebuild€2,600–€13,000 (0.1 person-years (43–137 h), ~1 engineer)
Domain complexityVery high — harder problems cost more per line
Quality factor0.7× (at 46% quality) — the last 20% of quality is most of the work
Size & shapeSmall · 52% boilerplate · 30% straight-line · 18% branching logic

This codebase represents roughly ~0.1 person-years of build effort (about ~€7,800 to rebuild). Its weakest lens is Readiness at 30% — the part of that asset most exposed by the findings below.

How we model this: boilerplate at a scaffolding rate + logic × domain Very high (×2.1) — microservices, DDD/clean architecture, CQRS, domain model, event-driven integration × a 0.7× quality factor, at €60–95/h; indicative, ±~30%. Indicative only — most sensitive to the hourly rate and the domain tier (both tunable in config).

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.
+14.3 pts · Low effort · Test Distribution
2
Resolve the 6 Deprecated finding(s) in Dependency Hygiene.
+10.7 pts · Low effort · Dependency Hygiene
3
Resolve the 3 Vulnerable finding(s) in Dependency Hygiene.
+9.1 pts · Low effort · Dependency Hygiene

Diagnosis — what's actually going on

Value concentrated against a weak lens · High · Value at risk
This is a Small asset (~0.1 person-years to rebuild), and its weakest lens is Readiness at 30%. The operational and business risk on an asset this size concentrates there — that's where remediation buys the most protection.
Evidence: valuation: Small, ~0.1 person-years rebuild (4,785 LoC) · weakest lens: Readiness 30%
→ Direct remediation budget at Readiness first — highest risk-reduction per euro on an asset this size.
Root cause: an un-encapsulated domain · Medium · Root cause
18 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: 2 · DM4 anemic: 2 · DM2 primitive ids: 14
→ 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.

Architecture — module dependency graph

Project dependencies, layered top-to-bottom; arrows show direction. Any dashed red edge points upward or sideways — a layering smell or cycle. A clean layered graph has none.

arch BaristaService BaristaService CoffeeShop.Contracts Contracts BaristaService->CoffeeShop.Contracts N8T.Core Core BaristaService->N8T.Core N8T.Infrastructure Infrastructure BaristaService->N8T.Infrastructure N8T.Infrastructure.EfCore EfCore BaristaService->N8T.Infrastructure.EfCore CounterService CounterService CounterService->CoffeeShop.Contracts CounterService->N8T.Core CounterService->N8T.Infrastructure CounterService->N8T.Infrastructure.EfCore DataGen DataGen KitchenService KitchenService KitchenService->CoffeeShop.Contracts KitchenService->N8T.Core KitchenService->N8T.Infrastructure KitchenService->N8T.Infrastructure.EfCore N8T.Infrastructure->N8T.Core N8T.Infrastructure.EfCore->N8T.Core N8T.Infrastructure.EfCore->N8T.Infrastructure ProductService ProductService ProductService->CoffeeShop.Contracts ProductService->N8T.Core ProductService->N8T.Infrastructure ProductService->N8T.Infrastructure.EfCore ReverseProxy ReverseProxy ReverseProxy->N8T.Infrastructure

At a glance — Code Health · 75% · Strong

At a glance — Architecture · 83% · Strong

At a glance — Maturity · 62% · Adequate

At a glance — Readiness · 30% · Weak · gated by D9, D12, P3

At a glance — Security · 50% · Adequate · gated by D29, D36

At a glance — Domain Modelling · 69% · Adequate · gated by DM2

At a glance — Event-Driven · 100% · Exemplary

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
A05:2021 — Security Misconfiguration12High / Critical
A03:2021 — Injection11High / Critical

Roadmap

First, address the single missing test case in the test distribution to ensure adequate coverage. Next, implement a static application security testing step in the CI pipeline to fail the build on security regressions. Then, resolve the fourteen prerelease dependencies to improve stability. After that, add readiness and liveness probes with an automatic rollback strategy to catch and revert bad releases. Finally, update the six deprecated dependencies to maintain hygiene and compatibility.

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.+14.3 ptsLowTest Distribution
Resolve the 6 Deprecated finding(s) in Dependency Hygiene.+10.7 ptsLowDependency Hygiene
Resolve the 3 Vulnerable finding(s) in Dependency Hygiene.+9.1 ptsLowDependency Hygiene
Add a SAST step to CI running what this repository's stack ships: CodeQL's csharp pack (it analyses VB.NET too), or a security analyzer package — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing.+14.3 ptsMediumSecurity & performance tooling
Resolve the 14 Prerelease dependency finding(s) in Dependency Hygiene.+14.1 ptsMediumDependency Hygiene
Add readiness/liveness probes and a rolling-update (or blue/green) strategy so a bad release is caught and rolled back automatically.+13.8 ptsMediumDeployment & Rollback
Make retry-prone mutations idempotent — guard each write with an exists/dedup check, an upsert, an idempotency-key/inbox, or a versioned write, so a re-run doesn't double-apply.+8.0 ptsMediumIdempotency
Run the test suite in CI via an explicit runner step (`dotnet test` for the toolchain this pipeline already uses) and gate merges on it.+6.9 ptsMediumCI/CD gates

File quality

Per-file score 0–10 — a quality signature. Of 17 files carrying findings, judged against the Production bar: 0% slop · 65% mixed · 35% near-clean.

FileScoreBandWorst signal
.github/workflows/publish-docker.yml4.4MixedStatic Analysis (SAST): High: github-actions-mutable-action-tag
src/BaristaService/Dockerfile6.5MixedIaC & Container Security: High IaC: DS-0002
src/CounterService/Dockerfile6.5MixedIaC & Container Security: High IaC: DS-0002
src/KitchenService/Dockerfile6.5MixedIaC & Container Security: High IaC: DS-0002
src/ProductService/Dockerfile6.5MixedIaC & Container Security: High IaC: DS-0002
src/ReverseProxy/Dockerfile6.5MixedIaC & Container Security: High IaC: DS-0002
src/Libs/N8T.Infrastructure/Bus/Kafka/BackGroundKafkaConsumer.cs6.5MixedExplicit Debt: CommentedOutCode
src/Libs/N8T.Infrastructure/SchemaRegistry/Extensions.cs6.6MixedExplicit Debt: CommentedOutCode
src/Libs/N8T.Infrastructure.EfCore/MutateHandlerBase.cs6.9MixedExplicit Debt: CommentedOutCode
.devcontainer/Dockerfile7.2MixedIaC & Container Security: High IaC: DS-0002
src/DataGen/Dockerfile7.2MixedIaC & Container Security: High IaC: DS-0002
src/CounterService/EventHandlers/HandleOrderUpdatedEvent.cs8.2Near-cleanExplicit Debt: CommentedOutCode
src/Libs/N8T.Infrastructure/Bus/Kafka/KafkaConsumerConfig.cs8.2Near-cleanExplicit Debt: CommentedOutCode
src/Libs/N8T.Core/Specification/GridSpecificationBase.cs8.5Near-cleanCohesion (LCOM4): Low cohesion: GridSpecificationBase (LCOM4 5)
src/Libs/N8T.Core/Specification/SpecificationBase.cs8.5Near-cleanCohesion (LCOM4): Low cohesion: SpecificationBase (LCOM4 4)
README.md9.5Near-cleanDocumentation Quality: The featured-technologies list is sparse and only links to Bicep and Azure Service Bus; Dapr, KEDA, and the architecture are not covered.
src/BaristaService/Program.cs9.5Near-cleanComment Value: redundant comment

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. 59 of 62 evaluated dimensions are computed purely by tools and static analysis (confidence 1.0); 3 documentation/naming judgement(s) are LLM-assisted and labelled advisory. Overall confidence is 0.5 — 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 — 62 dimensions across the health lenses
D1D2D3D4D5D6D9D12D13D14D15D17D18D19D20D22D24D26D27D28D29D31D35D36AX1AX10AX2AX3AX4AX5AX6AX9C2DM1DM2DM4DM5DM6DM8ED1ED2ED3ED4ED5GD1IC1M1M2M3M4P1P2P3P4P7P8S1X1X2X3X4X5

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, 50 of 141 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 coverage10.0.302✓ deterministic
NuGet / dotnetOutdated, vulnerable & deprecated dependencies10.0.302✓ 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 019faf8b-6e6f-75c5-b2c7-215b1602d80f.

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.

  • D21 Naming Consistency — LLM provider failed — The model provider returned an unusable result, so this LLM-assisted dimension fell back to a measurement gap (confidence 0) rather than a penalty. Re-run with a reachable provider to score it.

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 (scaffolded migrations, designer/codegen output, protobuf/OpenAPI stubs, model snapshots) is EXCLUDED — its repetition is the tool's, not the team's — so the score reflects hand-written duplication only.
  • D5 Coupling: Coupling is measured between projects/assemblies — runtime coupling through DI, reflection, messaging or shared databases is invisible to a static reference graph.
  • D6 Cohesion (LCOM4): LCOM4 cohesion is syntactic — it infers connectivity from which methods touch which fields/methods by name, not from real runtime behaviour or intent.
  • 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").
  • D14 License Compliance: License compatibility is checked against declared package metadata and a policy — mislabelled or missing license metadata, and obligations that depend on how you distribute, are not resolved here.
  • 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.
  • D17 Explicit Debt: Acknowledged-debt signals (TODO/FIXME, suppressions, dead code) are textual — undocumented debt that nobody marked, and debt that lives in design rather than annotations, is invisible. Committed machine-written code (scaffolded migrations, designer/codegen output, generated stubs) is excluded — it is never the team's dead code to delete.
  • D18 Solution Shape: Build integrity reflects whether the solution compiled in this environment — a build that needs a private feed, a specific SDK, or a generated file absent from the repo can read as broken when it is merely unreproducible here.
  • 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.
  • D22 Internal API Consistency: API-surface coherence is an LLM judgement over a sample of the public surface — consistency of intent across the whole API is approximated, not exhaustively verified.
  • D24 Comment Value: Comment value (WHY vs WHAT) is an LLM judgement over a bounded sample — it is advisory and cannot weigh a comment against the precise code change it was written to explain.
  • 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").
  • D31 IaC & Container Security: IaC scanning checks Dockerfiles/Terraform/Kubernetes against best-practice rules — it cannot see the live cloud account, runtime configuration, or drift between the committed config and what is actually deployed.
  • D35 Change Coupling: Change coupling is co-change in COMMITS — files split across separate commits, or coupled only through a shared config/build step, read as uncoupled, and a sweeping commit (rename/format) is excluded so it doesn't couple everything. It shows that files change together, not WHY: a high coupling can be a healthy cohesive pair as readily as a hidden leak.
  • AX10 Code composition: Role is inferred from namespace/folder convention, not semantics — a domain concept living in a folder named "Services" reads as application, and the split is lines-of-code, not business value. The business-logic-share score is a SOFT, FLOORED signal: it contributes to the Architecture lens but is floored at the Critical gate, so an infrastructure-heavy design (a gateway, an ETL, a driver) is legitimately low without being nuked to zero.
  • AX9 CQS / query purity: Handlers are found by interface/name convention — a query handler using neither is not seen. Mutation is a resolved write/publish invocation (SaveChanges/repository/bus), so a write hidden behind a hand-rolled wrapper, reflection, or a string-keyed service locator resolves to a non-persistence type and isn't flagged; it detects that a query writes state, not whether the write is a legitimate read-side cache update. Clean means "no resolved write/publish in a query body", not a proof of CQS purity.
  • 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.
  • ED5 Idempotency: Idempotency is judged from the handler body's visible writes and guards — a guard enforced by a database unique constraint, a broker's exactly-once delivery, or a domain method whose no-op-when-applied logic the scan can't follow may read as at-risk; the at-risk candidates are confirmed by a SAMPLED LLM verdict (advisory, not exhaustive) and degrade to heuristic-only when no model is configured. It flags the at-least-once double-apply SHAPE, not a runtime proof of a duplicate effect.
  • 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.
  • P4 Deployment & Rollback: Approval/branch-protection rules live in repository settings the scan cannot see — only their in-repo evidence (config files, workflows) is checked, so a control enforced purely in the host's settings reads as "not evidenced".

The LLM boundary

LLM-set scores this run (6): D19, D20, D22, D24, ED5, 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 Complexity10.0 / 10Exemplary✓ 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 10.0 / 10 · rule-coverage 100% · ceiling Prevented

0 method(s) exceeded the cyclomatic complexity threshold of 15.

✓ On the Gold path — maintain.

Detailed fixes: d1_recommendation.md.

D2 · Cognitive Complexity10.0 / 10Exemplary✓ 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 10.0 / 10 · rule-coverage 100% · ceiling Prevented

0 method(s) exceeded the cognitive complexity threshold of 15.

✓ On the Gold path — maintain.

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 Duplication10.0 / 10Exemplary✓ 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 10.0 / 10 · rule-coverage 100% · ceiling Verified

0 duplicated block group(s) detected.

✓ On the Gold path — maintain.

Detailed fixes: d4_recommendation.md.

D5 · Coupling10.0 / 10Exemplary✓ 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 10.0 / 10 · rule-coverage 100% · ceiling Prevented

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

Off the main sequence: CoffeeShop.Contracts

✓ On the Gold path — maintain.

Detailed fixes: d5_recommendation.md · top locations in Appendix A, every location in findings.md.

D6 · Cohesion (LCOM4)8.0 / 10Strong✓ Tool-verified

What it measures: Whether a class's methods are focused on a single responsibility.

Method: LCOM4 cohesion per production class with at least two methods: connected components of methods sharing state or calls, computed syntactically. Deterministic, not a proxy.

Coverage: Exhaustive · type-level: LCOM4 cohesion computed over every production class — the population is all types, not a name convention.

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

2 of 12 classes have LCOM4 above 3.

Low cohesion: GridSpecificationBase (LCOM4 5) · ×2src/Libs/N8T.Core/Specification/GridSpecificationBase.cs:10

What to do

  1. Resolve the 2 Low cohesion finding(s) in Cohesion (LCOM4) — start with GridSpecificationBase.cs, SpecificationBase.cs. — One of this dimension's main actionable groups (2 warning-level).
  2. Enforce Cohesion (LCOM4) in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.

Detailed fixes: d6_recommendation.md · top locations in Appendix A, every location in findings.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 suite 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 Hygiene0.0 / 10Critical✓ 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 0.0 / 10 · rule-coverage 100% · ceiling Verified

52 outdated, 3 vulnerable, 6 deprecated, 14 prerelease packages.

Vulnerable: OpenTelemetry.Instrumentation.AspNetCore · ×3
Prerelease dependency: Newtonsoft.Json · ×14
Deprecated: Microsoft.AspNetCore.Http · ×6
Outdated: FluentValidation.DependencyInjectionExtensions · ×52

What to do

  1. Resolve the 14 Prerelease dependency finding(s) in Dependency Hygiene. — One of this dimension's main actionable groups (14 warning-level).
  2. Resolve the 6 Deprecated finding(s) in Dependency Hygiene. — One of this dimension's main actionable groups (6 warning-level).
  3. Resolve the 3 Vulnerable finding(s) in Dependency Hygiene. — One of this dimension's main actionable groups (3 issue-level).
  4. Enforce Dependency Hygiene in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.

Detailed fixes: d12_recommendation.md · top locations in Appendix A, every location in findings.md.

D13 · Secret Scanning10.0 / 10Exemplary○ Nothing flagged

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 10.0 / 10 · rule-coverage 100% · ceiling Prevented

Secret scan ran and found no leaked secrets.

✓ On the Gold path — maintain.

Detailed fixes: d13_recommendation.md.

D14 · License Compliance10.0 / 10Exemplary○ Nothing flagged

What it measures: Whether the licenses of third-party packages are compatible with your policy.

Method: Third-party package licenses resolved from declared package metadata and checked against the configured policy (allow/deny/copyleft). Deterministic; clean = no incompatible license found at metadata depth.

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

0 of 55 packages use a banned license.

✓ On the Gold path — maintain.

Detailed fixes: d14_recommendation.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.

git history depth insufficient

✓ On the Gold path — maintain.

Detailed fixes: d15_recommendation.md · top locations in Appendix A, every location in findings.md.

D17 · Explicit Debt8.9 / 10Strong✓ Tool-verified

What it measures: Acknowledged debt left in the code — TODOs, dead code, suppressed warnings.

Method: Roslyn syntactic debt markers (suppressions/TODO/FIXME/HACK/empty-catch/commented-code/Obsolete) plus SymbolFinder dead-code analysis; weighted-debt-per-KLoC density deducted 2.0x per unit. Deterministic, exhaustive.

Maturity: DocumentedVerifiedPrevented · effective 8.9 / 10 · rule-coverage 100% · ceiling Prevented

14 deducted debt markers + 0 dead symbols across 4353 LoC (0.6/KLoC) → score 8.9.

CommentedOutCode · ×14src/CounterService/EventHandlers/HandleOrderUpdatedEvent.cs:9

What to do

  1. Resolve the 14 CommentedOutCode finding(s) in Explicit Debt — start with BackGroundKafkaConsumer.cs (5), Extensions.cs (4), MutateHandlerBase.cs (3). — One of this dimension's main actionable groups (14 warning-level).
  2. Enforce Explicit Debt in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d17_recommendation.md · top locations in Appendix A, every location in findings.md.

D18 · Solution Shape9.2 / 10Exemplary✓ Tool-verified

What it measures: Whether the solution is laid out in a sensible, conventional structure.

Method: Solution structure: project count, decomposition, shell-project detection, build success (confirmed failures cap the score); traced to actual .sln files and binaries. Deterministic.

Maturity: DocumentedVerifiedPrevented · effective 9.2 / 10 · rule-coverage 100% · ceiling Documented

9 projects, 124 source files, 4373 hand-written lines of code (4353 production / 20 test), plus 651 generated (machine-written code — designer, scaffolded and tool-emitted files — excluded from quality), 21 inter-project edges.

Thin analysable surface across projects

✓ On the Gold path — maintain.

Detailed fixes: d18_recommendation.md · top locations in Appendix A, every location in findings.md.

D19 · Documentation Quality / 10Weak◐ 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 Weak / 10 · rule-coverage 100% · ceiling Documented

The single README for the .NET coffeeshop application is a thin, static document that lists services with hardcoded URIs and a featured-technologies section plus an architecture image. It mentions prerequisites (Azure subscription, Azure CLI, Dapr CLI, Helm, Docker) but does not explain how to get started locally or on Azure, nor does it cover the outlined topics such as enabling KEDA extensions, admin login via Azure Portal, or clean-up steps. The featured-technologies section is useful but sparse and only hints at the prerequisites.

The featured-technologies list is sparse and only links to Bicep and Azure Service Bus; Dapr, KEDA, and the architecture are not covered.README.md
XML-doc coverage: N8T.Core · ×9src/Libs/N8T.Core/N8T.Core.csproj

What to do

  1. Resolve the 1 The featured-technologies list is sparse and only links to Bicep and… finding(s) in Documentation Quality — start with README.md. — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d19_recommendation.md · top locations in Appendix A, every location in findings.md.

D20 · ADR Quality / 10Critical◐ 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 Critical / 10 · rule-coverage 100% · ceiling Documented

No architecture decision records were found.

No ADRs found

What to do

  1. Resolve the 1 No ADRs found finding(s) in ADR Quality. — One of this dimension's main actionable groups (1 recommendation-level).

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

D22 · Internal API Consistency / 10Exemplary◐ Sampled · advisory

What it measures: Whether the internal API surface is consistent and coherent.

Method: Judged by language model at low temperature over a sample of the public API surface (IsPackable or .Contracts types). Sampled, advisory; confidence discounted by model uncertainty.

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

0 API inconsistencies across 7 exposed types.

✓ On the Gold path — maintain.

Detailed fixes: d22_recommendation.md.

D24 · Comment Value / 10Strong◐ Sampled · advisory

What it measures: Whether comments are worth it — explaining WHY (valuable) rather than WHAT (redundant).

Method: Judged by language model at low temperature (0.0-0.1) on deterministically sampled inline comments with surrounding code; findings verified back to sampled comments by substring match. Advisory, sampled.

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

26 valuable / 1 redundant across 200 sampled comments; 1 shown with locations.

redundant commentsrc/BaristaService/Program.cs:39

What to do

  1. Resolve the 1 redundant comment finding(s) in Comment Value — start with Program.cs. — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d24_recommendation.md · top locations in Appendix A, every location in findings.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

0 of 9 projects flagged as possibly oversized/incoherent.

✓ On the Gold path — maintain.

Detailed fixes: d26_recommendation.md.

D27 · Navigability9.6 / 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 9.6 / 10 · rule-coverage 100% · ceiling Documented

94 % of calls cross a namespace and 6 % go through an interface, but 99 % of collaborators are co-located — so a call's collaborators sit together and tracing stays easy. Baseline: small — navigation cost is tolerated.

✓ On the Gold path — maintain.

Detailed fixes: d27_recommendation.md.

D28 · Secrets (history)10.0 / 10Exemplary○ Nothing flagged

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 10.0 / 10 · rule-coverage 100% · ceiling Documented

gitleaks scanned the full history AND the current working tree and found no secrets.

✓ On the Gold path — maintain.

Detailed fixes: d28_recommendation.md.

D29 · Static Analysis (SAST)1.5 / 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 1.5 / 10 · rule-coverage 100% · ceiling Documented

11 finding(s): 0 critical, 11 high, 0 medium, 0 low.

High: github-actions-mutable-action-tag · ×11.github/workflows/publish-docker.yml:18detected by semgrep finding

What to do

  1. Resolve the 11 High finding(s) in Static Analysis (SAST) — start with publish-docker.yml (11). — One of this dimension's main actionable groups (11 issue-level).

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

D31 · IaC & Container Security7.5 / 10Strong✓ Tool-verified

What it measures: Whether Dockerfiles / Terraform / Kubernetes config follow security best practices.

Method: IaC/container misconfiguration scan via trivy config (Dockerfile/Terraform/K8s/Helm/CloudFormation); severity rules to 0-10 moderate normalizer. NotApplicable without manifests. Exhaustive, deterministic.

Maturity: DocumentedVerifiedPrevented · effective 7.5 / 10 · rule-coverage 100% · ceiling Documented

12 finding(s): 0 critical, 7 high, 0 medium, 5 low.

High IaC: DS-0002 · ×7.devcontainer/Dockerfiledetected by trivy finding
Low IaC: DS-0026 · ×5src/BaristaService/Dockerfiledetected by trivy finding

What to do

  1. Resolve the 7 High IaC finding(s) in IaC & Container Security — start with Dockerfile (7). — One of this dimension's main actionable groups (7 issue-level).
  2. Resolve the 5 Low IaC finding(s) in IaC & Container Security — start with Dockerfile (5). — One of this dimension's main actionable groups (5 recommendation-level).

Detailed fixes: d31_recommendation.md · top locations in Appendix A, every location in findings.md.

D35 · Change Coupling10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether files that change together actually belong together — pairs that repeatedly co-change in git history despite having no explicit code dependency, surfacing the hidden/logical coupling (and boundaries in the wrong place) a static scan can't see.

Method: Pairwise co-occurrence over the per-commit file sets in git history (production source only — tests and generated dropped): Degree-of-Coupling = shared ÷ min individual revisions, reported above noise floors (each file ≥10 revisions, ≥5 shared commits, ≥50% strength); sweeping commits excluded. Deterministic over fixed history.

Coverage: Population: PRODUCTION source files only — test and generated files are dropped before pairing, so a class co-changing with its own test (trivially ~100%) can't drown the real production↔production coupling. Pairs ranked by Degree-of-Coupling; coupling through a build step, config, or non-source file isn't seen.

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

No strong hidden change-coupling between production files.

git history depth insufficient

✓ On the Gold path — maintain.

Detailed fixes: d35_recommendation.md · top locations in Appendix A, every location in findings.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.

AX1 · Captive dependencies10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether any singleton service captures a scoped/transient dependency — a silent lifetime/threading bug.

Method: Roslyn scan: DI registrations parsed from AddSingleton/Scoped/Transient; each singleton checked for captured shorter-lifetime dependencies. Exhaustive, deterministic.

AX10 · Code composition4.1 / 10Weak✓ Tool-verified

Other · Architecture — How the codebase splits by code ROLE — domain, application, infrastructure, test, generated. The significance map behind the knowledge/coupling weighting, and a DDD signal in its own right: a thin domain core under fat infrastructure is the anemic-domain smell, quantified.

Method: Roslyn line-count by code ROLE: every source file classified Domain/Application/Infrastructure/Test/Generated by namespace + path convention (the shared CodeRoleClassifier), then significant lines summed per role. Deterministic; the advisory score is the business-logic (domain+application) share of production code.

Coverage: Population: ALL source files, each bucketed into ONE of five roles (Domain/Application/Infrastructure/Test/Generated) by namespace + path convention — a file whose layer isn't named in the convention falls to Application (the neutral default), and the split is line-count, not semantic depth or business value.

AX2 · Stateful singletons10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether singleton services avoid mutable shared instance state that concurrent callers would race on.

Method: Roslyn scan: singleton field mutations unguarded by lock or Interlocked, per type; syntax-based guard detection. Deterministic, traceable per field.

AX3 · Project dependency cycles10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether the project-reference graph is acyclic (cycles block independent build/deploy and signal eroding boundaries).

Method: Project reference cycles via elementary-DFS over real .csproj references, using the engine shared with D5/D7; cyclic versus acyclic. Exhaustive, deterministic.

AX4 · Dependency direction10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether dependencies point inward (Domain ← Application ← Infrastructure/Web) — the clean-architecture dependency rule, checked across the project graph.

Method: Layer violations by name-segment inference (Domain/Core to Application to Infrastructure/Web) over the project-reference graph. Exhaustive over all projects, deterministic.

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.

AX6 · Interface segregation10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether interfaces stay focused rather than fat — the Interface-Segregation principle (SOLID 'I').

Method: Roslyn scan: public interface member counts; fat-interface threshold (over 15 members) flagged per type. Deterministic, type-level.

AX9 · CQS / query purity10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether read (query) handlers stay side-effect-free — a query that writes persistent state or raises events breaks CQS and makes reads unsafe to retry, cache, or route to a read replica.

Method: Roslyn scan: CQRS handlers classified query-vs-command by interface (IQueryHandler/ICommandHandler/IRequestHandler<TQuery,TResult>) and name convention (*Query/Get*/Find* vs *Command); each query handler's body checked for persistent-state writes (SaveChanges/repository Add-Update) or event publishes by resolved invocation. Deterministic, type-level, exhaustive over the detected handlers.

Coverage: Population: CQRS handlers identified by IQueryHandler/ICommandHandler/IRequestHandler interface + *Query/Get*/Find*/*Command NAME convention; query purity then checked exhaustively within that set — a query handler using neither convention is invisible, and mutation is a resolved persistence/publish CALL, not full dataflow.

C2 · Access Controls4.7 / 10Weak✓ Tool-verified

Other · Security — Whether access is authorized by default — a framework authorization attribute/decorator or policy, or imperative guard methods (throw-on-violation) called from handlers.

Method: Roslyn scan: [Authorize] usage and authorization policies, plus imperative throw-on-violation guard methods detected via syntax. Deterministic.

  • Only 1 imperative guard call site(s) — too few to demonstrate default-deny across handlers.

What to do

  • Enforce authorization at every handler — call the guard method (throw-on-violation) from each one, or adopt [Authorize] so protected-by-default is demonstrable.
DM1 · Aggregate boundaries10.0 / 10Exemplary✓ Tool-verified

Other · Domain Modelling — Whether aggregates reference each other by identity (id) rather than by direct object reference — the core DDD consistency-boundary rule.

Method: Roslyn (DDD-gated): aggregate roots identified by convention; each aggregate field checked for direct references to other aggregates versus id-only. Deterministic, DDD-native.

Coverage: Population: aggregate roots identified by AggregateRoot/IAggregateRoot base/interface NAME convention; reference-by-identity then checked exhaustively within that set — a root not using those names is invisible.

DM2 · Strongly-typed ids3.0 / 10Weak✓ Tool-verified

Other · Domain Modelling — How much of the domain uses strongly-typed ids vs raw Guid/string/int — adoption curve, not all-or-nothing.

Method: Roslyn (DDD-gated): strongly-typed id adoption on domain entities/events; raw Guid/int/string ids counted versus wrapped types. Deterministic, adoption percentage.

Coverage: Population: id-like members by *Id/*Key NAME suffix; strongly-typed-ID shape then checked semantically — non-suffixed identifiers are not seen.

  • `EventBase.CorrelationId` is a raw `String` — give it a strongly-typed id: a dedicated single-field type wrapping the `String`, in whatever form your language spells that. — Events.cs:22
  • `Outbox.AggregateId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — Outbox.cs:11
  • `Order.LoyaltyMemberId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — Order.cs:10
  • `OrderIn.OrderId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — OrderIn.cs:8
  • `OrderIn.ItemLineId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — OrderIn.cs:9
  • `OrderUp.OrderId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — OrderUp.cs:9
  • `OrderUp.ItemLineId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — OrderUp.cs:10
  • `OrderUpdate.OrderId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — OrderUpdate.cs:8
  • `OrderUpdate.ItemLineId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — OrderUpdate.cs:9
  • `KitchenOrder.OrderId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — KitchenOrder.cs:9
  • `KitchenOrderUp.OrderId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — KitchenOrderUp.cs:9
  • `KitchenOrderUp.ItemLineId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — KitchenOrderUp.cs:10
  • `BaristaOrderUp.OrderId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — BaristaOrderUp.cs:9
  • `BaristaOrderUp.ItemLineId` is a raw `Guid` — give it a strongly-typed id: a dedicated single-field type wrapping the `Guid`, in whatever form your language spells that. — BaristaOrderUp.cs:10

What to do

  • Adopt strongly-typed ids across the domain — finish the migration or document the boundary; primitive ids invite transposed-argument bugs.
DM4 · Rich vs anemic model7.7 / 10Strong✓ 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.

  • `Outbox` is an aggregate/entity with 5 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — Outbox.cs:6
  • `LineItem` is an aggregate/entity with 5 data propert(ies) but no state-changing behaviour (only data and queries) — the business logic lives in a service. — LineItem.cs:6

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 state8.7 / 10Strong✓ 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.

  • `Outbox` exposes publicly writable state (Id, Type, AggregateType, AggregateId, Payload). — Outbox.cs:6
  • `LineItem` exposes publicly writable state (ItemType, Name, Price, ItemStatus, IsBaristaOrder). — LineItem.cs:6

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.

ED1 · Handler temporal coupling10.0 / 10Exemplary✓ Tool-verified

Other · Event-Driven — Whether event handlers stay asynchronous (no blocking remote HTTP/gRPC calls awaited inside a handler).

Method: Roslyn semantic scan (event-driven gated): event-handler bodies scanned for HTTP/gRPC invocations by resolved symbol type, not substring. Deterministic, semantic-resolved.

ED2 · Event/command shape10.0 / 10Exemplary✓ Tool-verified

Other · Event-Driven — Whether commands have a single handler (one owner of the decision) and fan-out is modelled with events.

Method: Roslyn scan (event-driven gated): command-shaped messages identified by convention; handler count per command checked for the exactly-one rule. Deterministic, hard fact.

ED3 · Event naming7.8 / 10Strong✓ Tool-verified

Other · Event-Driven — Whether events are named in the past tense (a clarity nudge — low weight).

Method: Roslyn scan (event-driven gated): domain and integration events checked for past-tense naming (-ed/-en suffix or irregular set). Naming nudge, low-weight advisory.

  • `IDomainEvent` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — Events.cs:7
  • `EventBase` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — Events.cs:18
  • `EventWrapper` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — Events.cs:27
  • `OrderIn` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — OrderIn.cs:6
  • `BaristaOrderIn` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — OrderIn.cs:22
  • `OrderUp` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — OrderUp.cs:6
  • `BaristaOrderUp` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. (×2) — OrderUp.cs:30, BaristaOrderUp.cs:6
  • `OrderUpdate` reads as an instruction, not a fact that happened. Events describe something that already occurred — name them in the past tense (e.g. `OrderPlaced`, `PaymentCaptured`) so the ubiquitous language stays clear. — OrderUpdate.cs:6

What to do

  • Name events in the past tense — they record facts that already happened.
ED4 · Outbox / dual-write10.0 / 10Exemplary○ Nothing flagged

Other · Event-Driven — Whether state changes and message publishes are atomic (a transactional outbox) rather than a crash-unsafe dual write.

Method: Roslyn semantic scan (event-driven gated): event-handler methods scanned for DB-save plus bus-publish without a transactional outbox reference. Deterministic, semantic-resolved.

ED5 · Idempotency8.2 / 10Strong◐ Sampled · advisory

Other · Readiness — Whether retry-prone mutations (command handlers + message/event consumers) are idempotent so an at-least-once redelivery or client retry doesn't double-apply the effect — heuristic at-risk detection confirmed by language model, advisory.

Method: Roslyn heuristic (any mutation, ungated): command handlers and message/event consumers that mutate persistent state without a visible idempotency guard (exists/dedup check, upsert, idempotency-key/inbox, conditional/versioned write, fixed-value set) flagged as at-risk; each at-risk candidate then confirmed or cleared by a language model as genuinely non-idempotent versus naturally-idempotent. Advisory without a model (heuristic-only, degraded), per-candidate judged with one.

Coverage: Population: retry-prone mutations — command handlers (CQRS write side) + message/event consumers (IConsumer/I*EventHandler) — that mutate persistent state; runs on any repo with mutations, not only event-driven ones. The at-risk subset (no obvious guard) is a HEURISTIC candidate set, each then LLM-JUDGED non-idempotent vs safe; a handler outside those conventions, or a guard the LLM can't confirm, is bounded by the sample. Degrades to heuristic-only when no model is configured.

  • `UseCases.PlaceOrderHandler.Handle` mutates persistent state (a repository write) with no idempotency guard, and the model confirms a re-run would double-apply it. A retry or at-least-once redelivery means it can run twice — add an exists/dedup check, an upsert, an idempotency-key/inbox, or a versioned write. — PlaceOrderCommand.cs:36

What to do

  • Make retry-prone mutations idempotent — guard each write with an exists/dedup check, an upsert, an idempotency-key/inbox, or a versioned write, so a re-run doesn't double-apply.
GD1 · Unfinished & placeholder code9.9 / 10Exemplary✓ Tool-verified

Other · Code Health — Unreviewed-generation residue: shipped members still throwing NotImplementedException, and placeholder string literals left in non-test, non-generated code. Scored as a quality signature, never as a claim about authorship.

Method: Roslyn syntax scan: NotImplementedException throws and placeholder string literals in non-test, non-generated shipped code. Deterministic, code-shape signature.

  • A shipped member still throws NotImplementedException — generated scaffolding that was never completed. Implement it or remove the dead surface. — DaprEventBus.cs:49

What to do

  • Finish or delete NotImplementedException stubs and replace placeholder literals before shipping.
IC1 · Incompleteness & stubs8.1 / 10Strong✓ Tool-verified

Other · Code Health — Unfinished work detected by code SHAPE, not keywords: members that only throw a "not implemented" exception, methods that take inputs and return a constant, async methods that never await, dead `if (false)` / `#if false` branches, and skeleton types most of whose members are holes. A real, objective slice of technical debt.

Method: Roslyn syntax scan: incompleteness by code shape (constant-returning methods, async-never-await, #if false branches, skeleton types), not keyword-gated. Deterministic, code-shape heuristic.

  • `HandleEvent` is declared `async` but never awaits anything, so it runs synchronously while pretending to be asynchronous. Drop `async` or do the real async work. — HandleOrderUpdatedEvent.cs:14
  • `SubscribeAsync` is a shipped member whose whole body throws NotImplementedException — scaffolding that was never completed. Implement it or remove the dead surface. — DaprEventBus.cs:47
  • A line of code has been commented out rather than removed — dead weight that rots and confuses. Delete it (version control remembers). (×28) — Program.cs:66, HandleOrderUpdatedEvent.cs:20, Program.cs:40, …

What to do

  • Finish or delete the unfinished stubs (NotImplementedException / empty / constant-returning bodies) — they are dead surface that looks live.
  • Clear the softer debt: remove commented-out code and dead branches, re-enable or delete skipped tests, and replace blanket warning suppressions with targeted ones.
M1 · Documentation (README)6.7 / 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 a README to the 9 of 9 project(s) that lack one — worth up to 2 pts.
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 Architecture Decision Records found — decisions aren't captured for future maintainers.

What to do

  • Start an ADR log (docs/adr/) recording significant decisions and their rationale.
M3 · Folder & project structure6.0 / 10Adequate✓ 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.

  • Tests aren't grouped in a dedicated test folder — the test surface isn't separable from production code at a glance.
  • Only 3/9 projects share a common root namespace — the code's module identity is inconsistent.

What to do

  • Group tests in the folder your build system expects (tests/, test/, spec/, or your module's test source set) so the test surface is discoverable and CI can scope it.
  • Adopt a consistent root-namespace convention (a shared prefix, e.g. Acme.*); short project-file/directory names are fine as long as the RootNamespace is uniform.
M4 · Documentation accuracy6.0 / 10Adequate◐ 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.

  • README advertises Kubernetes, but no Kubernetes manifest or chart exists
  • README advertises a microservices architecture, but the repo is a single project with no service manifests

What to do

  • Reconcile the README with reality: README advertises Kubernetes, but no Kubernetes manifest or chart exists; README advertises a microservices architecture, but the repo is a single project with no service manifests.
P1 · CI/CD gates8.5 / 10Strong✓ Tool-verified

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.

  • A CI pipeline exists and the word "test" appears, but no explicit test-runner invocation (your stack's test command, or a test job) was matched — the gate may be running tests, or "test" may be incidental (a path, "latest", a reporter). Make the test step explicit so the gate is unambiguous.

What to do

  • Run the test suite in CI via an explicit runner step (`dotnet test` for the toolchain this pipeline already uses) and gate merges on it.
P2 · Observability8.6 / 10Strong✓ 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.

  • Only 6/7 service-like projects use logging (pure contract/DTO projects are excluded — they have nothing to log).

What to do

  • Extend structured logging to the remaining service-like projects so the whole executable surface is diagnosable in production.
  • Add a health-check endpoint (AddHealthChecks/MapHealthChecks) so orchestrators and load balancers can probe liveness/readiness.
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 scan: SAST configuration, dependency-update automation, secret scanning, and a benchmark harness or benchmark step — in this repository's own ecosystem. Exhaustive, deterministic.

  • No static application security testing detected. For this repository's stack, add CodeQL's csharp pack (it analyses VB.NET too), or a security analyzer package (or `semgrep --config=auto`, which runs on any language) as a CI step.

What to do

  • Add a SAST step to CI running what this repository's stack ships: CodeQL's csharp pack (it analyses VB.NET too), or a security analyzer package — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing.
  • Enable Dependabot/Renovate or a dependency-review gate.
  • Add gitleaks/trufflehog in CI to block PRs that introduce committed secrets.
P4 · Deployment & Rollback5.0 / 10Adequate✓ Tool-verified

Readiness · Readiness — Whether releases are automated and safely reversible (probes, rolling updates, approval gates) — from manifests/pipeline files, not the live environment.

Method: Filesystem scan: deployment manifests/IaC (K8s YAML, Helm, Terraform) for rolling updates, probes, approval gates, migration hooks. Exhaustive, deterministic.

  • Deployment automation exists but no readiness/liveness probes, rolling-update strategy, lifecycle hooks or migration job were evidenced — a bad release is harder to detect and reverse.

What to do

  • Add readiness/liveness probes and a rolling-update (or blue/green) strategy so a bad release is caught and rolled back automatically.
  • Add an approval/environment gate (required reviewers / protection rules) before production promotion.
P7 · Outbound HTTP resilience10.0 / 10Exemplary○ Nothing flagged

Readiness · Readiness — Whether outbound HTTP calls are wrapped in resilience (retry/timeout/circuit-breaker) so a failing dependency doesn't cascade.

Method: Roslyn scan: Polly resilience markers (Retry, CircuitBreaker, Timeout) on outbound HTTP invocations. Computed per type, deterministic.

P8 · Schema migrations10.0 / 10Exemplary○ Nothing flagged

Readiness · Readiness — Whether EF Core schema changes go through versioned migrations rather than the un-evolvable EnsureCreated().

Method: Roslyn scan: EF Core DbContext for a versioned migrations directory versus bare EnsureCreated usage. Exhaustive per project, deterministic.

S1 · Web-Security Posture6.0 / 10Adequate✓ Tool-verified

Other · Security — Transport security, security headers, secure cookies, input validation, middleware order and crypto hygiene (presence, not runtime).

Method: Roslyn plus filesystem scan: HSTS/security headers, secure cookies, input validation, middleware order, weak crypto (MD5/SHA1/DES); HTTPS-metadata context-aware. Deterministic.

  • No Content-Security-Policy / X-Frame-Options / X-Content-Type-Options configuration found — defense in depth, even when a reverse proxy could set them. (−2.0 on this card.)
  • No UseHttpsRedirection/UseHsts and no reverse-proxy signal — transport security is unverified at the app layer. (−2.0 on this card.)

What to do

  • Add security response headers (Content-Security-Policy, X-Frame-Options, X-Content-Type-Options) — defense in depth, even when a reverse proxy could set them.
  • Enforce HTTPS at the app layer (UseHttpsRedirection / UseHsts) — only skip this if a reverse proxy demonstrably terminates TLS.
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.

X2 · Cancellation propagation8.9 / 10Strong✓ Tool-verified

Other · Code Health — Whether async methods accept a CancellationToken so work can be cancelled (adoption curve).

Method: Roslyn scan: every async method (excluding framework-fixed overrides/Blazor handlers) checked for CancellationToken parameter presence. Deterministic, adoption percentage.

  • Only 27/33 async methods accept a CancellationToken, so in-flight work can't be stopped early when the caller gives up — whatever ends it in your host (shutdown signal, timeout, abandoned request, user cancel). Thread a token through the call chain and honour it at each await and loop; where a method genuinely cannot be interrupted, omitting it is a deliberate choice — judge against your hosting model.
  • No CancellationToken parameter — this work can't be stopped early once started. (×6) — ExceptionMiddleware.cs:23, ExceptionMiddleware.cs:36, Extensions.cs:17, …

What to do

  • Thread a CancellationToken through async methods so work stops promptly on cancellation.
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 logging5.5 / 10Adequate✓ Tool-verified

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.

  • Logging an interpolated string (`$"..."`) collapses the event to plain text — you lose the named, queryable properties structured logging exists for. Use a message template with placeholders: `LogInformation("User {UserId} did {Action}", id, action)`. If these calls go through a logging wrapper that only accepts a pre-formatted string, give the wrapper a template+args overload that forwards to the underlying logger, then migrate call sites to it. (×3) — ExceptionMiddleware.cs:31, RequestValidationBehavior.cs:37, RequestValidationBehavior.cs:47

What to do

  • Interpolated log message defeats structured logging
X5 · Nullable reference types6.6 / 10Adequate✓ Tool-verified

Other · Code Health — Whether nullable reference types are enabled and not undermined by heavy `!` suppression.

Method: Roslyn compiler-options scan: NullableContextOptions per project; null-forgiving (!) suppression density per 1k syntax nodes. Deterministic, adoption plus suppression penalty.

  • 6/9 projects enable <Nullable>enable</Nullable>. NRTs catch a whole class of null-deref bugs at compile time.
  • ~1.2 `!` suppressions per 1k syntax nodes — each one tells the compiler to trust you about null, suppressing the very safety NRTs provide.

What to do

  • Enable <Nullable>enable</Nullable> across all projects and resolve warnings rather than suppressing with `!`.

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 Health75%StrongSolid.
Architecture83%StrongSolid.
Maturity62%AdequateAcceptable, with room to improve.
Readiness30%Weak — gated by D9, D12, P3Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Security50%Adequate — gated by D29, D36Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Domain Modelling69%Adequate — gated by DM2Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Event-Driven100%ExemplaryStrongest area.
Not included — 45 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.
  • AX7 Slice cohesion — not applicable — not a vertical-slice architecture
  • AX8 Test isolation — no test/production split to check
  • AXB2 Runtime readiness — no data
  • 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.
  • 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 — ~20 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
  • D16 Bus Factor — early-stage repository — too few commits for a meaningful bus factor
  • D21 Naming Consistency — LLM evaluation failed
  • D23 Boundary Type-Coupling — Bounded contexts not declared
  • D25 ADR Conformance — no ADRs to check
  • D30 Dependency Vulnerabilities — the solution did not restore on the analyzer's .NET SDK (an SDK/target-framework/restore mismatch, common for an older codebase), so there was no restored dependency graph to scan for NuGet CVEs — excluded rather than scored; re-run on an SDK that can restore this solution
  • 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 build output (package.json, package-lock.json, yarn.lock, pnpm-lock.yaml, bun.lockb); no JS dependencies to scan.
  • D34 Knowledge Freshness — early-stage repository — too little history to judge knowledge freshness
  • D37 Vulnerability-disclosure Policy — No vulnerability-disclosure policy file found (SECURITY.md/.markdown/.rst/.txt at root or under .github/.forgejo/.gitea/docs, .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 supported non-.NET dependency lockfile found outside build output (npm package-lock/yarn/pnpm/bun, Go go.mod, Rust Cargo.lock, Maven pom.xml, Gradle lockfiles, Python requirements.txt/poetry.lock/Pipfile.lock/pdm.lock, PHP composer.lock, Ruby Gemfile.lock, Elixir mix.lock, Dart pubspec.lock, Swift Package.resolved); nothing for OSV to scan. A NuGet-only repo stays NotApplicable — .NET CVEs are D30's domain.
  • D39 IL Efficiency — The target did not build, so no IL was available to measure.
  • D40 Network Egress Confinement — No Kubernetes/orchestration workloads found in the repository manifests; network egress policy is a cluster-native control that may live at the platform/firewall layer, so there is nothing to assess here.
  • D41 Kernel & Syscall Confinement — No Kubernetes/orchestration workloads found in the repository manifests; seccomp/AppArmor/SELinux confinement is a workload-level control, so there is nothing to assess here.
  • D42 Runtime Threat Enforcement — No Kubernetes/orchestration workloads found in the repository manifests; runtime threat-detection and admission-control policy are cluster-level controls, so there is nothing to assess here.
  • D7 Architectural Integrity — no checkable ADRs and no dependency cycles — architectural integrity not assessed
  • D8 Code Coverage — Coverage not measured
  • 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)
  • ES1 Event Sourcing — not run — only 1/3 markers (1 aggregate(s) with Apply/When folds)
  • P12 CI test-gate honesty — no data
  • P5 DR & Backup — not evidenced — repo shows no backup/RTO/RPO controls; absence of evidence is not evidence of a working control
  • P6 Release Hygiene — not evidenced — no changelog, version stamp or semver release tag in the repo
  • P9 Domain vs controller coverage — no coverage report found on disk — produce a coverage report in a standard format (Cobertura — `dotnet test --collect:"XPlat Code Coverage"` with a `coverlet.collector` PackageReference) into the repo working tree before the scan — a CI step is the usual place, since the artefact is commonly gitignored, or wire coverage collection into 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.
  • SC1 Supply-chain hygiene — no data
  • X6 Hand-rolled structured-format parsing — no data
  • X7 Silent fallback defaults — no data

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 — 21 finding(s)
D29 · Static Analysis (SAST) · High · ×11
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:18 — 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@<40-character SHA>`. This step references `actions/checkout@v2`; resolve the SHA it points at today with `gh api repos/actions/checkout/commits/v2 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:23 — 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/setup-dotnet@<40-character SHA>`. This step references `actions/setup-dotnet@v1`; resolve the SHA it points at today with `gh api repos/actions/setup-dotnet/commits/v1 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:28 — 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: docker/login-action@<40-character SHA>`. This step references `docker/login-action@v2`; resolve the SHA it points at today with `gh api repos/docker/login-action/commits/v2 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.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: docker/metadata-action@<40-character SHA>`. This step references `docker/metadata-action@v4`; resolve the SHA it points at today with `gh api repos/docker/metadata-action/commits/v4 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:55 — 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: docker/build-push-action@<40-character SHA>`. This step references `docker/build-push-action@v2`; resolve the SHA it points at today with `gh api repos/docker/build-push-action/commits/v2 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:66 — 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: docker/metadata-action@<40-character SHA>`. This step references `docker/metadata-action@v4`; resolve the SHA it points at today with `gh api repos/docker/metadata-action/commits/v4 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:75 — 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: docker/build-push-action@<40-character SHA>`. This step references `docker/build-push-action@v2`; resolve the SHA it points at today with `gh api repos/docker/build-push-action/commits/v2 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:86 — 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: docker/metadata-action@<40-character SHA>`. This step references `docker/metadata-action@v4`; resolve the SHA it points at today with `gh api repos/docker/metadata-action/commits/v4 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:95 — 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: docker/build-push-action@<40-character SHA>`. This step references `docker/build-push-action@v2`; resolve the SHA it points at today with `gh api repos/docker/build-push-action/commits/v2 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.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: docker/metadata-action@<40-character SHA>`. This step references `docker/metadata-action@v4`; resolve the SHA it points at today with `gh api repos/docker/metadata-action/commits/v4 --jq .sha`.
  • High: github-actions-mutable-action-tag .github/workflows/publish-docker.yml:115 — 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: docker/build-push-action@<40-character SHA>`. This step references `docker/build-push-action@v2`; resolve the SHA it points at today with `gh api repos/docker/build-push-action/commits/v2 --jq .sha`.
D31 · IaC & Container Security · High IaC · ×7
  • High IaC: DS-0002 .devcontainer/Dockerfile — Image user should not be 'root'
  • High IaC: DS-0002 src/BaristaService/Dockerfile — Image user should not be 'root'
  • High IaC: DS-0002 src/CounterService/Dockerfile — Image user should not be 'root'
  • High IaC: DS-0002 src/DataGen/Dockerfile — Image user should not be 'root'
  • High IaC: DS-0002 src/KitchenService/Dockerfile — Image user should not be 'root'
  • High IaC: DS-0002 src/ProductService/Dockerfile — Image user should not be 'root'
  • High IaC: DS-0002 src/ReverseProxy/Dockerfile — Image user should not be 'root'
D12 · Dependency Hygiene · Vulnerable · ×3
  • Vulnerable: OpenTelemetry.Instrumentation.AspNetCore — OpenTelemetry.Instrumentation.AspNetCore 1.0.0-rc9.9 — Moderate severity. https://github.com/advisories/[GHSA redacted]
  • Vulnerable: OpenTelemetry.Instrumentation.Http — OpenTelemetry.Instrumentation.Http 1.0.0-rc9.9 — Moderate severity. https://github.com/advisories/[GHSA redacted]
  • Vulnerable: Yarp.ReverseProxy — Yarp.ReverseProxy 1.1.1 — High severity. https://github.com/advisories/[GHSA redacted]
Warning — 40 finding(s)
D12 · Dependency Hygiene · Prerelease dependency · ×14
  • Prerelease dependency: Newtonsoft.Json — Newtonsoft.Json resolves to 13.0.2-beta2, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry — OpenTelemetry resolves to 1.4.0-beta.3, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Exporter.Console — OpenTelemetry.Exporter.Console resolves to 1.4.0-beta.3, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Exporter.OpenTelemetryProtocol — OpenTelemetry.Exporter.OpenTelemetryProtocol resolves to 1.4.0-beta.3, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Exporter.OpenTelemetryProtocol.Logs — OpenTelemetry.Exporter.OpenTelemetryProtocol.Logs resolves to 1.4.0-beta.3, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Exporter.Prometheus.AspNetCore — OpenTelemetry.Exporter.Prometheus.AspNetCore resolves to 1.4.0-beta.2, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Extensions.Hosting — OpenTelemetry.Extensions.Hosting resolves to 1.0.0-rc9.9, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Instrumentation.AspNetCore — OpenTelemetry.Instrumentation.AspNetCore resolves to 1.0.0-rc9.9, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Instrumentation.EntityFrameworkCore — OpenTelemetry.Instrumentation.EntityFrameworkCore resolves to 1.0.0-beta.3, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Instrumentation.EventCounters — OpenTelemetry.Instrumentation.EventCounters resolves to 1.0.0-alpha.1, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Instrumentation.Http — OpenTelemetry.Instrumentation.Http resolves to 1.0.0-rc9.9, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: OpenTelemetry.Instrumentation.Process — OpenTelemetry.Instrumentation.Process resolves to 0.1.0-alpha.1, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: Microsoft.EntityFrameworkCore.Design — Microsoft.EntityFrameworkCore.Design resolves to 7.0.0-preview.7.22376.2, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
  • Prerelease dependency: Microsoft.EntityFrameworkCore.Tools — Microsoft.EntityFrameworkCore.Tools resolves to 7.0.0-preview.7.22376.2, a prerelease build. Prerelease packages carry no support policy, may change breaking between previews and can be unlisted — pin a stable release before shipping, or record the reason this preview is required.
D17 · Explicit Debt · CommentedOutCode · ×14
  • CommentedOutCode src/CounterService/EventHandlers/HandleOrderUpdatedEvent.cs:9 — 4 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/Bus/Kafka/BackGroundKafkaConsumer.cs:74 — 4 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure.EfCore/MutateHandlerBase.cs:1 — 8 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/SchemaRegistry/Extensions.cs:1 — 8 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure.EfCore/MutateHandlerBase.cs:18 — 5 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/Bus/Kafka/BackGroundKafkaConsumer.cs:26 — 5 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/Bus/Kafka/KafkaConsumerConfig.cs:1 — 5 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure.EfCore/MutateHandlerBase.cs:35 — 6 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/Bus/Kafka/BackGroundKafkaConsumer.cs:54 — 6 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/Bus/Kafka/BackGroundKafkaConsumer.cs:79 — 6 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/SchemaRegistry/Extensions.cs:53 — 6 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/SchemaRegistry/Extensions.cs:63 — 6 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/SchemaRegistry/Extensions.cs:72 — 6 consecutive commented-code lines
  • CommentedOutCode src/Libs/N8T.Infrastructure/Bus/Kafka/BackGroundKafkaConsumer.cs:1 — 14 consecutive commented-code lines
D12 · Dependency Hygiene · Deprecated · ×6
  • Deprecated: Microsoft.AspNetCore.Http — Microsoft.AspNetCore.Http 2.2.2 — Other,Legacy
  • Deprecated: Microsoft.Extensions.PlatformAbstractions — Microsoft.Extensions.PlatformAbstractions 1.1.0 — Other,Legacy
  • Deprecated: OpenTelemetry.Exporter.OpenTelemetryProtocol.Logs — OpenTelemetry.Exporter.OpenTelemetryProtocol.Logs 1.4.0-beta.3 — Legacy OpenTelemetry.Exporter.OpenTelemetryProtocol >= 0.0.0
  • Deprecated: OpenTelemetry.Instrumentation.AspNetCore — OpenTelemetry.Instrumentation.AspNetCore 1.0.0-rc9.9 — Other OpenTelemetry.Instrumentation.AspNetCore >= 1.8.1
  • Deprecated: OpenTelemetry.Instrumentation.Http — OpenTelemetry.Instrumentation.Http 1.0.0-rc9.9 — Other OpenTelemetry.Instrumentation.Http >= 1.8.1
  • Deprecated: OpenTelemetry.Instrumentation.Process — OpenTelemetry.Instrumentation.Process 0.1.0-alpha.1 — Other OpenTelemetry.Instrumentation.Process >= 0.5.0-beta.1
D6 · Cohesion (LCOM4) · Low cohesion · ×2
  • Low cohesion: GridSpecificationBase (LCOM4 5) src/Libs/N8T.Core/Specification/GridSpecificationBase.cs:10 — GridSpecificationBase's methods form 5 groups that share no state and don't call each other — a sign it may have several responsibilities. Review whether it splits into focused classes.
  • Low cohesion: SpecificationBase (LCOM4 4) src/Libs/N8T.Core/Specification/SpecificationBase.cs:7 — SpecificationBase's methods form 4 groups that share no state and don't call each other — a sign it may have several responsibilities. Review whether it splits into focused classes.
D21 · Naming Consistency · LLM evaluation failed · ×1
  • LLM evaluation failed — JSON parse error: Expected end of string, but instead reached end of data. Path: $.inconsistencies[0].description | LineNumber: 9 | BytePositionInLine: 7134.
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. 11 floating ref(s) across 1 workflow file(s): `actions/checkout@v2` (.github/workflows/publish-docker.yml:18), `actions/setup-dotnet@v1` (.github/workflows/publish-docker.yml:23), `docker/login-action@v2` (.github/workflows/publish-docker.yml:28), `docker/metadata-action@v4` (.github/workflows/publish-docker.yml:46), `docker/build-push-action@v2` (.github/workflows/publish-docker.yml:55), `docker/metadata-action@v4` (.github/workflows/publish-docker.yml:66), `docker/build-push-action@v2` (.github/workflows/publish-docker.yml:75), `docker/metadata-action@v4` (.github/workflows/publish-docker.yml:86), … (+3 more)
D5 · Coupling · Off the main sequence · ×1
  • Off the main sequence: CoffeeShop.Contracts — CoffeeShop.Contracts: abstractness 0.00, instability 0.00, distance 1.00 — zone of pain — concrete and heavily depended-on, so it's rigid to change.
D8 · Code Coverage · Coverage not measured · ×1
  • Coverage not measured — The test suite couldn't be built/run in-image and no coverage report is committed, so line coverage was not measured — and it is EXCLUDED from the score rather than scored on a LoC-ratio proxy. Commit the Cobertura/OpenCover/lcov report your CI already produces (anywhere in the repo), or make the suite runnable in-image, and real coverage will be measured.
Recommendation — 17 finding(s)
D31 · IaC & Container Security · Low IaC · ×5
  • Low IaC: DS-0026 src/BaristaService/Dockerfile — No HEALTHCHECK defined
  • Low IaC: DS-0026 src/CounterService/Dockerfile — No HEALTHCHECK defined
  • Low IaC: DS-0026 src/KitchenService/Dockerfile — No HEALTHCHECK defined
  • Low IaC: DS-0026 src/ProductService/Dockerfile — No HEALTHCHECK defined
  • Low IaC: DS-0026 src/ReverseProxy/Dockerfile — No HEALTHCHECK defined
D11 · Test Reliability · Test reliability not included · ×1
  • Test reliability not included — No test suite was found, so reliability couldn't be assessed.
D16 · Bus Factor · early-stage repository · ×1
  • early-stage repository — too few commits for a meaningful bus factor — early-stage repository — too few commits for a meaningful bus factor (2 author(s) across 9 commit(s) sampled).
D18 · Solution Shape · Thin analysable surface across projects · ×1
  • Thin analysable surface across projects — 1 project(s) carry only a thin slice of real code (e.g. `ReverseProxy` with 15 significant line(s)). The mean analysable-surface weight is 90 %, lowering Solution Shape by about 0.8 point(s). Consolidate thin projects or grow them into substantial, well-scoped assemblies.
D19 · Documentation Quality · The featured-technologies list is sparse and only links to Bicep and Azure Service Bus; Dapr, KEDA, and the architecture are not covered. · ×1
  • The featured-technologies list is sparse and only links to Bicep and Azure Service Bus; Dapr, KEDA, and the architecture are not covered. README.md — Expand the Featured technologies section to include each service's technology stack (e.g. .NET 7, Bicep, AKS) and link to relevant docs.
D20 · ADR Quality · No ADRs found · ×1
  • No ADRs found — No ADRs found at common paths; consider documenting architectural decisions in Docs/ADL/ or similar.
D23 · Boundary Type-Coupling · Bounded contexts not declared · ×1
  • Bounded contexts not declared — At 4353 LoC across 9 projects the codebase is large and multi-module, so explicit bounded contexts are needed. Name this codebase's bounded contexts (≥2 module groups, e.g. per subsystem) so cross-boundary type coupling can be assessed. Declare them in `.codehealth/config.yaml` at the repository root (create it if absent), mapping each context name to the namespace prefixes that belong to it — e.g. `architecture:` → `contexts:` → `Billing: ["Acme.Billing"]`, `Catalog: ["Acme.Catalog"]`.
D24 · Comment Value · redundant comment · ×1
  • redundant comment src/BaristaService/Program.cs:39 — "builder.Services" — delete - .AddOTelTracing already names the service
D34 · Knowledge Freshness · early-stage repository · ×1
  • early-stage repository — too little history to judge knowledge freshness — early-stage repository — too little history to judge knowledge freshness (9 commit(s) sampled).
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 — sign your released artifacts with whatever your ecosystem ships (a GPG/minisign detached signature — or `cosign sign-blob` — over the release archives, or over a checksum file published alongside them, cosign/sigstore for container images, Authenticode via signtool, or `dotnet nuget sign` for packages) so consumers can verify what you built.
D36 · Supply-chain Provenance & Signing · No SBOM · ×1
  • No SBOM — No SBOM generation or committed SBOM found — produce one with what your ecosystem ships (`dotnet sbom-tool generate` (or the CycloneDX .NET tool) over the solution, `syft` (or `anchore/sbom-action` in CI) over the source tree or released image). Publish it as a release asset (`*.spdx.json` / `*.cdx.json`) so consumers can see what they are installing.
D9 · Test Distribution · No tests found · ×1
  • No tests found — No test suite was found in this repository.
Info — 63 finding(s)
D12 · Dependency Hygiene · Outdated · ×52
  • Outdated: FluentValidation.DependencyInjectionExtensions — FluentValidation.DependencyInjectionExtensions 11.2.2 → 12.1.1 available (referenced by N8T.Core).
  • Outdated: MediatR.Extensions.Microsoft.DependencyInjection — MediatR.Extensions.Microsoft.DependencyInjection 11.0.0 → 11.1.0 available (referenced by N8T.Core).
  • Outdated: MinVer — MinVer 4.2.0 → 7.0.0 available (referenced by N8T.Core).
  • Outdated: Dapr.AspNetCore — Dapr.AspNetCore 1.10.0 → 1.18.5 available (referenced by N8T.Infrastructure).
  • Outdated: MassTransit — MassTransit 8.0.8 → 9.2.0 available (referenced by N8T.Infrastructure).
  • Outdated: MassTransit.RabbitMQ — MassTransit.RabbitMQ 8.0.8 → 9.2.0 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.AspNetCore.Authentication.JwtBearer — Microsoft.AspNetCore.Authentication.JwtBearer 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.AspNetCore.Http — Microsoft.AspNetCore.Http 2.2.2 → 2.3.11 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Caching.Memory — Microsoft.Extensions.Caching.Memory 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Caching.StackExchangeRedis — Microsoft.Extensions.Caching.StackExchangeRedis 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Configuration — Microsoft.Extensions.Configuration 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Configuration.Abstractions — Microsoft.Extensions.Configuration.Abstractions 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Configuration.EnvironmentVariables — Microsoft.Extensions.Configuration.EnvironmentVariables 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Configuration.FileExtensions — Microsoft.Extensions.Configuration.FileExtensions 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Configuration.Json — Microsoft.Extensions.Configuration.Json 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.DependencyInjection — Microsoft.Extensions.DependencyInjection 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.DependencyInjection.Abstractions — Microsoft.Extensions.DependencyInjection.Abstractions 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.DependencyModel — Microsoft.Extensions.DependencyModel 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Hosting — Microsoft.Extensions.Hosting 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Hosting.Abstractions — Microsoft.Extensions.Hosting.Abstractions 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Logging — Microsoft.Extensions.Logging 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Logging.Debug — Microsoft.Extensions.Logging.Debug 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Microsoft.Extensions.Options.ConfigurationExtensions — Microsoft.Extensions.Options.ConfigurationExtensions 7.0.0 → 10.0.10 available (referenced by N8T.Infrastructure).
  • Outdated: Newtonsoft.Json — Newtonsoft.Json 13.0.2-beta2 → 13.0.4 available (referenced by N8T.Infrastructure).
  • Outdated: OpenTelemetry — OpenTelemetry 1.4.0-beta.3 → 1.17.0 available (referenced by N8T.Infrastructure).
  • + 27 more in this group — see findings.md.
D19 · Documentation Quality · XML-doc coverage · ×9
  • XML-doc coverage: N8T.Core src/Libs/N8T.Core/N8T.Core.csproj — N8T.Core: 2 % XML-doc coverage (2/98).
  • XML-doc coverage: N8T.Infrastructure src/Libs/N8T.Infrastructure/N8T.Infrastructure.csproj — N8T.Infrastructure: 1 % XML-doc coverage (2/201).
  • XML-doc coverage: N8T.Infrastructure.EfCore src/Libs/N8T.Infrastructure.EfCore/N8T.Infrastructure.EfCore.csproj — N8T.Infrastructure.EfCore: 0 % XML-doc coverage (0/27).
  • XML-doc coverage: ProductService src/ProductService/ProductService.csproj — ProductService: 0 % XML-doc coverage (0/25).
  • XML-doc coverage: CounterService src/CounterService/CounterService.csproj — CounterService: 1 % XML-doc coverage (1/100).
  • XML-doc coverage: KitchenService src/KitchenService/KitchenService.csproj — KitchenService: 3 % XML-doc coverage (1/31).
  • XML-doc coverage: BaristaService src/BaristaService/BaristaService.csproj — BaristaService: 3 % XML-doc coverage (1/29).
  • XML-doc coverage: ReverseProxy src/ReverseProxy/ReverseProxy.csproj — ReverseProxy: 100 % XML-doc coverage (0/0).
  • XML-doc coverage: CoffeeShop.Contracts src/Libs/CoffeeShop.Contracts/CoffeeShop.Contracts.csproj — CoffeeShop.Contracts: 0 % XML-doc coverage (0/31).
D15 · Churn × Complexity Hotspots · git history depth insufficient · ×1
  • git history depth insufficient — git history depth insufficient — install a full clone for reliable trend signal.
D35 · Change Coupling · git history depth insufficient · ×1
  • git history depth insufficient — git history depth insufficient — a full clone gives reliable change-coupling.

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 .0artifacts/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 .11artifacts/raw/semgrep.json
D30 · Dependency Vulnerabilitiesdotnetdotnet: not applicable — the solution did not restore on the analyzer's .NET SDK (an SDK/target-framework/restore mismatch, common for an older codebase), so there was no restored dependency graph to scan for NuGet CVEs — excluded rather than scored; re-run on an SDK that can restore this solution0
D31 · IaC & Container Securitytrivytrivy config --format json --quiet .12artifacts/raw/trivy-config.json
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 build output (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/.markdown/.rst/.txt at root or under .github/.forgejo/.gitea/docs, .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 supported non-.NET dependency lockfile found outside build output (npm package-lock/yarn/pnpm/bun, Go go.mod, Rust Cargo.lock, Maven pom.xml, Gradle lockfiles, Python requirements.txt/poetry.lock/Pipfile.lock/pdm.lock, PHP composer.lock, Ruby Gemfile.lock, Elixir mix.lock, Dart pubspec.lock, Swift Package.resolved); nothing for OSV to scan. A NuGet-only repo stays NotApplicable — .NET CVEs are D30's domain.0
D40 · Network Egress Confinementruntime-hardeningruntime-hardening: not applicable — No Kubernetes/orchestration workloads found in the repository manifests; network egress policy is a cluster-native control that may live at the platform/firewall layer, so there is nothing to assess here.0
D41 · Kernel & Syscall Confinementruntime-hardeningruntime-hardening: not applicable — No Kubernetes/orchestration workloads found in the repository manifests; seccomp/AppArmor/SELinux confinement is a workload-level control, so there is nothing to assess here.0
D42 · Runtime Threat Enforcementruntime-hardeningruntime-hardening: not applicable — No Kubernetes/orchestration workloads found in the repository manifests; runtime threat-detection and admission-control policy are cluster-level controls, so there is nothing to assess here.0

Run 019faf8b-6e6f-75c5-b2c7-215b1602d80f · 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