Public report — easy-event, published 3 Aug 2026. Concrete security findings (CVE IDs, secret matches, dependency versions) are hidden in this version; ask the repo owner for the full report.
Watchdog 03-08-2026 @ 21:29 UTC Public
Code Health Audit

Openquartz/easy-Event

41% Weak
CriticalWeakAdequateStrongExemplary
middle

Small · 17,262 LoC · rebuild ~0.1 person-years · weakest lens: Readiness (15%)

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

33/35dimensions tool-verifieddeterministic · confidence 1.0 · 2 LLM-assisted, advisory
47findings with an exact file:lineof 53 — the remainder are repo-wide signals (a dimension-level measurement, not a single line); open any file:line and verify
35/106dimensions across the health lenses17262 LoC — 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.

openquartz/easy-event carries serious gaps (41%). Several issues below can materially affect correctness, security, or the cost of changing it — and propagate to everything that depends on it.

It is strongest in Architecture (100%) — the structure is clean and changes stay contained. Code Health (97%) is solid too.

The area that most needs attention is Readiness (15%) — releases are harder to depend on — versioning, release notes and dependency hygiene are thin, so consumers can't easily tell what changed or trust an upgrade. Accessibility (48%) is the next concern — it raises ongoing delivery and operational cost.

Leadership focus, highest impact first: CI workflow that builds and runs the test suite on every push/PR (CI/CD gates); Run what this repository's stack ships (Security & performance tooling); tests that import the unreached modules (directly or through… (Test Coverage).

For scale: Small (~17,262 production lines); rebuilding it from scratch would take roughly ~0.1 person-years (~1 engineer). Approximate, ±~30%.

It builds on a genuinely strong Architecture foundation (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 15% · 46% weightAccessibility 48% · 25% weightMaturity 62% · 14% weightSecurity 85% · 8% weightCode Health 97% · 4% weightArchitecture 100% · 2% weight

Raise Readiness 15 → 70 (the Healthy floor) ⇒ headline 41 → ~61.

Code composition — where the lines go
Tests 100%
New since the last scan (57+)

57 finding(s) are new versus the previous scan (2026-07-29) — surfaced by this scheduled scan itself, no pull request required.

  • D1 · VersionUtils.getVersion (cyclomatic 16) easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java
  • D2 · VersionUtils.getVersion (cognitive 33) easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java
  • D2 · BusEventEntityMapperImpl.getBySelectiveCondition (cognitive 23) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java
  • D2 · RocketMqProducer.sendMessageList (cognitive 17) easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java
  • D2 · ExceptionUtils.indexOf (cognitive 16) easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/ExceptionUtils.java
  • D3 · TooManyMethods: TypeToken easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java
  • D3 · FileTooLong: reflect/TypeToken.java easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java
  • D4 · Duplicated block (17 lines × 2) easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/common/RabbitMqTransferProducer.java
  • D4 · Duplicated block (16 lines × 2) easyevent-core/src/main/java/com/openquartz/easyevent/core/dispatcher/Dispatcher.java
  • D4 · Duplicated block (14 lines × 2) easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java
  • D4 · Duplicated block (12 lines × 4) easyevent-core/src/main/java/com/openquartz/easyevent/core/compensate/EventCompensateServiceImpl.java
  • D4 · Duplicated block (10 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java
  • D4 · Duplicated block (10 lines × 2) easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java
  • D4 · Duplicated block (9 lines × 2) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/identify/SnowflakeIdGenerator.java
  • D4 · Duplicated block (8 lines × 3) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java
  • D4 · Duplicated block (8 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java
  • D4 · Duplicated block (8 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/KafkaEventTrigger.java
  • D4 · Duplicated block (7 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java
  • D4 · Duplicated block (7 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java
  • D4 · Duplicated block (7 lines × 2) easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/config/RocketSoaEventAutoConfiguration.java
  • D4 · Duplicated block (7 lines × 2) easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/spring/boot/autoconfig/EasyEventCreatorAutoConfiguration.java
  • D4 · Duplicated block (7 lines × 2) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java
  • D4 · Duplicated block (7 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java
  • D4 · Duplicated block (7 lines × 2) easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java
  • D4 · Duplicated block (6 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java
  • D4 · Duplicated block (6 lines × 2) easyevent-core/src/main/java/com/openquartz/easyevent/core/SubscriberRegistry.java
  • D4 · Duplicated block (5 lines × 2) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java
  • D4 · Duplicated block (5 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java
  • D4 · Duplicated block (5 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java
  • D16 · single-maintainer — knowledge-concentration (bus factor) risk
  • D29 · High: spel-injection easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/expression/SpringExpressionParser.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: unrestricted-request-mapping easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java
  • D29 · Medium: weak-random easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/schedule/CompensateProcessGlobalScheduleService.java
  • D29 · Medium: weak-random easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/schedule/CompensateProcessSelfScheduleService.java
  • D29 · Medium: spring-sqli easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/utils/CustomerJdbcTemplate.java
  • D31 · High IaC: DS-0002 easyevent-admin/easyevent-admin-server/Dockerfile
  • D31 · Medium IaC: CKV_DOCKER_3 easyevent-admin/easyevent-admin-server/Dockerfile
  • D35 · Change coupling: KafkaTransferAutoConfiguration.java ↔ RocketMqTransferAutoConfiguration.java easyevent-spring-boot-starter/easyevent-spring-boot-starter-kafka/src/main/java/com/openquartz/easyevent/starter/kafka/spring/boot/autoconfig/KafkaTransferAutoConfiguration.java
  • R10 · Duplicated block (7 lines × 2 locations) easyevent-admin/easyevent-admin-ui/src/views/Dashboard.vue
  • R4 · Test Coverage
  • R6 · Tooling
  • R8 · Unlisted import '@element-plus/icons-vue' easyevent-admin/easyevent-admin-ui/src/main.ts
  • R8 · Unused dependency 'vue-tsc'
  • M1 · README may be stale
  • AC3 · Page without a main landmark easyevent-admin/easyevent-admin-server/src/main/resources/static/index.html
  • AC3 · Page without a main landmark easyevent-admin/easyevent-admin-ui/index.html
  • AC6 · Low contrast colour pair in CSS (2.1:1) easyevent-admin/easyevent-admin-server/src/main/resources/static/assets/index-BsJK1RBe.css
  • AC7 · Accessibility enforcement below the top rung
  • SC1 · JavaScript dependencies are not locked

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 — €6,000–€30,000
Cost to rebuild€6,000–€30,000 (0.1–0.2 person-years (99–315 h), ~1 engineer)
Domain complexityStandard — harder problems cost more per line
Quality factor0.7× (at 41% quality) — the last 20% of quality is most of the work
Size & shapeSmall · effort split not classified (source measured from disk; the effort-tier breakdown is a C#-only syntax walk)

This codebase represents roughly ~0.1 person-years of build effort (about ~€18,000 to rebuild). Its weakest lens is Readiness at 15% — the part of that asset most exposed by the findings below.

How we model this: boilerplate at a scaffolding rate + logic × domain Standard (×1.2) — CQRS × a 0.7× quality factor, at €60–95/h; indicative, ±~30% · size measured directly from source · effort from total production LoC as straight-line logic (the tier split is a C#-only syntax walk), a conservative lower bound. 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
Add a CI workflow that builds and runs the test suite on every push/PR.
+23.0 pts · Medium effort · CI/CD gates
2
Run what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — — locally for now, since there is no CI pipeline here yet, and as a step of the first workflow you add so a security regression fails the build instead of landing.
+23.0 pts · Medium effort · Security & performance tooling
3
Add tests that import the unreached modules (directly or through their public entry).
+23.0 pts · Medium effort · Test Coverage

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 15%. 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 (17,262 LoC) · weakest lens: Readiness 15%
→ Direct remediation budget at Readiness first — highest risk-reduction per euro on an asset this size.
Highest-leverage move · Medium · Leverage
Of everything flagged, the best return on effort is: Add a CI workflow that builds and runs the test suite on every push/PR. The rest can wait behind it.
Evidence: priority ranking: top of 5 ranked by impact/effort
→ Add a CI workflow that builds and runs the test suite on every push/PR.

Architecture — module dependency matrix

116 modules, 306 dependencies — 1 dependency cycle, shown as the red cell(s) above the diagonal. Rows and columns are the same modules, ordered so that a module only depends on ones above it. A cell means the row depends on the column, and its number is how many type pairs create that dependency. Read one thing: is anything above the diagonal? A mark there is a dependency cycle. (A cycle is all this shows — an unusual but cycle-free dependency sits below the diagonal like any other.)

(global)…vent.admin.controller…vent.common.exception…event.common.property…event.core.expression…asyevent.common.model…asyevent.common.serde…nt.common.transaction…quartz.easyevent.core…vent.storage.identify…ommon.concurrent.lock…syevent.storage.model….transfer.api.message…nt.transfer.api.route…t.autoconfig.property…easyevent.storage.api…asyevent.transfer.api…transfer.api.limiting…easyevent.core.notify…yevent.core.publisher…asyevent.core.trigger…asyevent.storage.jdbc….transfer.api.adapter…nt.transfer.disruptor…event.core.compensate…pring.boot.autoconfig….starter.soa.rocketmq…event.starter.trigger…transfer.kafka.common…nsfer.rabbitmq.common…ransfer.rocket.common…pring.boot.autoconfig…pring.boot.autoconfig…pring.boot.autoconfig…vent.starter.schedule…r.soa.rocketmq.config…yevent.transfer.kafka…ent.transfer.rabbitmq…event.transfer.rocket…pring.boot.autoconfig(global)1…vent.admin.controller2…vent.common.exception3…event.common.property4…event.core.expression5…asyevent.common.model6…asyevent.common.serde7…nt.common.transaction8…quartz.easyevent.core9…vent.storage.identify10…ommon.concurrent.lock11…syevent.storage.model12….transfer.api.message13…nt.transfer.api.route14…t.autoconfig.property15…easyevent.storage.api16…asyevent.transfer.api17…transfer.api.limiting18…easyevent.core.notify19…yevent.core.publisher20…asyevent.core.trigger21…asyevent.storage.jdbc22….transfer.api.adapter23…nt.transfer.disruptor24…event.core.compensate25…pring.boot.autoconfig26….starter.soa.rocketmq27…event.starter.trigger28…transfer.kafka.common29…nsfer.rabbitmq.common30…ransfer.rocket.common31…pring.boot.autoconfig32…pring.boot.autoconfig33…pring.boot.autoconfig34…vent.starter.schedule35…r.soa.rocketmq.config36…yevent.transfer.kafka37…ent.transfer.rabbitmq38…event.transfer.rocket39…pring.boot.autoconfig40422313111122111141211121112121111112111124121421111111212121121111111111211111111111111121111212111112121111211111221211111221111111122111151221111113111112241111122211111122111322131622221112+76 more modules (most-connected shown)

At a glance — Code Health · 97% · Exemplary

At a glance — Architecture · 100% · Exemplary

At a glance — Maturity · 62% · Adequate · gated by M2

At a glance — Readiness · 15% · Critical · gated by R4, R6, P1, P3

At a glance — Security · 85% · Strong

At a glance — Accessibility · 48% · Weak

Security & Compliance — OWASP Top-10 mapping

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

OWASP categoryFindingsSeverity
A03:2021 — Injection13High / Critical
A05:2021 — Security Misconfiguration3High / Critical

Roadmap

First, establish a continuous integration pipeline that builds the code and runs the test suite on every push or pull request. Integrate security scanning tools, such as spotbugs or semgrep, into this workflow to ensure security regressions fail the build. Next, expand test coverage by adding tests for all unreached production modules. Finally, configure the deployment process to include health checks and ensure rollback capabilities by maintaining immutable, recorded image tags.

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

Do thisHelpsEffortDimension
Add a CI workflow that builds and runs the test suite on every push/PR.+23.0 ptsMediumCI/CD gates
Run what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — — locally for now, since there is no CI pipeline here yet, and as a step of the first workflow you add so a security regression fails the build instead of landing.+23.0 ptsMediumSecurity & performance tooling
Add tests that import the unreached modules (directly or through their public entry).+23.0 ptsMediumTest Coverage
Add a test runner (vitest / jest / playwright) and eslint and `tsc --noEmit` as package.json scripts and run them in CI.+23.0 ptsMediumTooling
Add a `healthcheck:` to the served compose service — probing the endpoint it already answers on where it has one — with `depends_on: condition: service_healthy` on whatever waits for it, and keep the deployed image tag immutable and recorded so rolling back is re-pointing at the previous tag rather than rebuilding.+19.2 ptsMediumDeployment & Rollback
Keep a changelog (e.g. Keep-a-Changelog) recording what shipped in each release.+19.2 ptsMediumRelease Hygiene
Remove unused dependencies, declare unlisted imports explicitly, and demote type-/test-only packages to devDependencies.+11.6 ptsMediumDependency Hygiene
Enforce accessibility in the toolchain: add eslint-plugin-vuejs-accessibility, then assert with your test runner's axe binding (jest-axe, vitest-axe, cypress-axe or @axe-core/playwright) in tests, then gate axe/pa11y/Lighthouse in CI.+7.9 ptsMediumA11y enforcement

File quality

Per-file score 0–10 — a quality signature. Of 27 files carrying findings, judged against the Production bar: 0% slop · 59% mixed · 41% near-clean.

FileScoreBandWorst signal
easyevent-admin/easyevent-admin-server/Dockerfile4.4MixedIaC & Container Security: High IaC: DS-0002
easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java6.3MixedStatic Analysis (SAST): Medium: unrestricted-request-mapping
easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java6.3MixedStatic Analysis (SAST): Medium: unrestricted-request-mapping
easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java6.3MixedStatic Analysis (SAST): Medium: unrestricted-request-mapping
easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java7.2MixedCode Duplication: Duplicated block (8 lines × 2)
easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/expression/SpringExpressionParser.java7.2MixedStatic Analysis (SAST): High: spel-injection
easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java7.4MixedCognitive Complexity: BusEventEntityMapperImpl.getBySelectiveCondition (cognitive 23)
easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java7.4MixedCode Duplication: Duplicated block (7 lines × 2)
easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java7.8MixedCyclomatic Complexity: VersionUtils.getVersion (cyclomatic 16)
easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java7.8MixedCognitive Complexity: RocketMqProducer.sendMessageList (cognitive 17)
easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java7.8MixedGod Classes: TooManyMethods: TypeToken
easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java7.8MixedCode Duplication: Duplicated block (14 lines × 2)
easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java7.8MixedCode Duplication: Duplicated block (10 lines × 2)
easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/schedule/CompensateProcessGlobalScheduleService.java7.9MixedStatic Analysis (SAST): Medium: weak-random
easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/schedule/CompensateProcessSelfScheduleService.java7.9MixedStatic Analysis (SAST): Medium: weak-random
easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/utils/CustomerJdbcTemplate.java7.9MixedStatic Analysis (SAST): Medium: spring-sqli
easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/ExceptionUtils.java8.5Near-cleanCognitive Complexity: ExceptionUtils.indexOf (cognitive 16)
easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/common/RabbitMqTransferProducer.java8.5Near-cleanCode Duplication: Duplicated block (17 lines × 2)
easyevent-core/src/main/java/com/openquartz/easyevent/core/dispatcher/Dispatcher.java8.5Near-cleanCode Duplication: Duplicated block (16 lines × 2)
easyevent-core/src/main/java/com/openquartz/easyevent/core/compensate/EventCompensateServiceImpl.java8.5Near-cleanCode Duplication: Duplicated block (12 lines × 4)

Methodology & how to trust this report

Watchdog is a deep, periodic assessment — run each sprint, monthly, or quarterly, taking the time to go wider and deeper than a quick check and surfacing in one coherent report what you'd otherwise piece together from a dozen separate tools. It scores deterministically: the same commit yields the same score, every run. 33 of 35 evaluated dimensions are computed purely by tools and static analysis (confidence 1.0); 2 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 — 35 dimensions across the health lenses
D1D2D3D4D13D15D19D21D28D29D31D33D34D35AC3AC6AC7AX5M1M2M3M4P1P3P4P6R1R10R2R3R4R6R7R8R9

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, 47 of 53 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 · 3.2.533✓ 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 019fc987-cdcd-74ce-8a80-be5ab6429e9c.

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.

  • D30 Dependency Vulnerabilities — scanner not present in this environment — The backing tool was not installed where this scan ran, so this dimension was not scored. Install the tool (or run in the hosted environment, where it is always present) for a graded result.

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.
  • D13 Secret Scanning: Secret detection is signature- and entropy-based on the current tree — a secret that does not match a known pattern, or one already rotated, will not be flagged (a clean scan is "nothing matched", not "no secrets exist").
  • D15 Churn × Complexity Hotspots: Churn hotspots come from git history — a freshly imported or squashed repository has no churn signal, and recent rewrites can mask a historically risky file.
  • 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.
  • D21 Naming Consistency: Naming quality is an LLM judgement over a bounded sample — it assesses clarity/consistency of the names it sees, not domain-correctness, and is advisory.
  • 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.
  • D33 JS/npm Dependency Vulnerabilities: JS/npm CVE matching reads package manifests and lockfiles — risk from how a dependency is used, and advisories not yet published, fall outside this scan.
  • D34 Knowledge Freshness: Freshness is decayed commit RECENCY, not comprehension — code read often but rarely committed reads as orphaned, and stable code that genuinely needs no changes is penalised the same as forgotten code; bot/squash commits distort it like the bus factor.
  • 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.
  • AC3 Page structure: Page structure is read from the static markup tree — landmarks, headings and lang injected at runtime aren't seen, heading ORDER is checked structurally (not against the rendered visual hierarchy), and lang/title/main fire only on full documents, never partials, and the data-table check sees header-cell presence (a <th> exists), not whether each header correctly associates with its cells. Static readiness, not conformance.
  • AC6 Visual & motion safety: Contrast and motion safety are PARTIAL by construction — literal colours (hex/rgb/hsl/named) in inline styles, in-repo <style> blocks, in-repo .css files, var() tokens, Tailwind neutral utilities and CSS-in-JS top-level declarations are read (same-rule/same-element colour+background pairs only); computed/runtime/theme colour, external-CDN stylesheets, CSS-in-JS dynamic (${…}) and nested-selector colours, cross-element pairs and image contrast stay out of reach, so a clean result is bounded by what the static CSS itself shows.
  • AC7 A11y enforcement: Enforcement is scored from in-repo config/CI evidence only — an a11y gate enforced in external tooling with no in-repo trace can't be credited, and a configured linter is presence, not proof the rules actually run or block a merge.
  • 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".
  • P6 Release Hygiene: Rollback/observability controls are inferred from repo artefacts (pipelines, dashboards-as-code) — controls configured in external tooling, with no in-repo trace, cannot be credited.

The LLM boundary

LLM-set scores this run (3): D19, D21, 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 Complexity9.8 / 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 9.8 / 10 · rule-coverage 100% · ceiling Prevented

1 method(s) exceeded the cyclomatic complexity threshold of 15; the worst was VersionUtils.getVersion at 16.

VersionUtils.getVersion (cyclomatic 16)easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java:37

✓ On the Gold path — maintain.

Detailed fixes: d1_recommendation.md · top locations in Appendix A, every location in findings.md.

D2 · Cognitive Complexity8.8 / 10Strong✓ 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 8.8 / 10 · rule-coverage 100% · ceiling Prevented

4 method(s) exceeded the cognitive complexity threshold of 15; the worst was VersionUtils.getVersion at 33.

VersionUtils.getVersion (cognitive 33)easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java:37
BusEventEntityMapperImpl.getBySelectiveCondition (cognitive 23)easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:355
RocketMqProducer.sendMessageList (cognitive 17)easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:164
ExceptionUtils.indexOf (cognitive 16)easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/ExceptionUtils.java:256

What to do

  1. Resolve the 1 VersionUtils.getVersion (cognitive 33) finding(s) in Cognitive Complexity — start with VersionUtils.java. — One of this dimension's main actionable groups (1 warning-level).
  2. Resolve the 1 BusEventEntityMapperImpl.getBySelectiveCondition (cognitive 23) finding(s) in Cognitive Complexity — start with BusEventEntityMapperImpl.java. — One of this dimension's main actionable groups (1 warning-level).
  3. Resolve the 1 RocketMqProducer.sendMessageList (cognitive 17) finding(s) in Cognitive Complexity — start with RocketMqProducer.java. — One of this dimension's main actionable groups (1 warning-level).
  4. Stand up a CI pipeline, then gate Cognitive Complexity in it to reach Verified (currently Documented). — This repository has no CI pipeline, so there is nothing to add a gate to yet — the pipeline comes first. Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d2_recommendation.md · top locations in Appendix A, every location in findings.md.

D3 · God Classes9.7 / 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 9.7 / 10 · rule-coverage 100% · ceiling Prevented

2 god class(es) detected.

TooManyMethods: TypeTokeneasyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java:27
FileTooLong: reflect/TypeToken.javaeasyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java:0

✓ On the Gold path — maintain.

Detailed fixes: d3_recommendation.md · top locations in Appendix A, every location in findings.md.

D4 · Code Duplication9.4 / 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 9.4 / 10 · rule-coverage 100% · ceiling Verified

22 duplicated block group(s) detected.

Duplicated block (7 lines × 2) · ×7easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:69
Duplicated block (5 lines × 2) · ×3easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:116
Duplicated block (10 lines × 2) · ×2easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:84
Duplicated block (8 lines × 2) · ×2easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:82
Duplicated block (6 lines × 2) · ×2easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:34

+ 6 more group(s) — more in Appendix A; the complete list is findings.md.

✓ On the Gold path — maintain.

Detailed fixes: d4_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.

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

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

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

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

No churn × complexity hotspots in the window.

✓ On the Gold path — maintain.

Detailed fixes: d15_recommendation.md.

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

EasyEvent 的文档质量很高,包含 README、一个 admin 模块和一个完整的 Quick Start 指南。README 开头有项目徽标、许可证、Maven Central 和 GitHub CI badge,并且英文/中文双语对照;架构概览部分配图清晰;Quick Start 分为本地安装、引入依赖、应用配置、定义事件、发布事件、订阅事件六个步骤,内容详实。文档结构完整,所有列出的章节都存在(简介、核心特性、架构概览、快速开始、同类对比、贡献、许可证),没有缺失或剪裁痕迹。

文档中未提及如何在本地运行 admin 模块,仅描述了远程访问的 http://localhost:8088,而 Quick Start 中也缺少 admin 的安装和启动步骤。README.md

✓ On the Gold path — maintain.

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

D21 · Naming Consistency / 10Exemplary◐ Sampled · advisory

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

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

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

0 naming inconsistencies across 0 sampled symbols.

✓ On the Gold path — maintain.

Detailed fixes: d21_recommendation.md.

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)4.5 / 10Weak✓ 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 4.5 / 10 · rule-coverage 100% · ceiling Documented

13 finding(s): 0 critical, 1 high, 12 medium, 0 low.

High: spel-injectioneasyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/expression/SpringExpressionParser.java:42detected by semgrep finding
Medium: unrestricted-request-mapping · ×12easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:20detected by semgrep finding

What to do

  1. Resolve the 12 Medium finding(s) in Static Analysis (SAST) — start with EventController.java (9), CompensateProcessGlobalScheduleService.java, CompensateProcessSelfScheduleService.java. — One of this dimension's main actionable groups (12 warning-level).
  2. Resolve the 1 High finding(s) in Static Analysis (SAST) — start with SpringExpressionParser.java. — One of this dimension's main actionable groups (1 issue-level).

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

D31 · IaC & Container Security9.5 / 10Exemplary✓ 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 9.5 / 10 · rule-coverage 100% · ceiling Documented

3 finding(s): 0 critical, 1 high, 1 medium, 1 low.

High IaC: DS-0002easyevent-admin/easyevent-admin-server/Dockerfiledetected by trivy finding
Medium IaC: CKV_DOCKER_3easyevent-admin/easyevent-admin-server/Dockerfile:1detected by trivy finding
Low IaC: DS-0026easyevent-admin/easyevent-admin-server/Dockerfiledetected by trivy finding

✓ On the Gold path — maintain.

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

D33 · JS/npm Dependency Vulnerabilities10.0 / 10Exemplary○ Nothing flagged

What it measures: Whether JavaScript/npm dependencies have known published vulnerabilities (CVEs) — the npm ecosystem's biggest risk.

Method: JS/npm CVE scan via trivy fs --scanners vuln over JS manifests (package.json/yarn.lock/pnpm-lock/bun.lockb); 0-10 tight normalizer. NotApplicable without JS manifests. Exhaustive, deterministic.

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

No known-vulnerable JS/npm dependencies.

✓ On the Gold path — maintain.

Detailed fixes: d33_recommendation.md.

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

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

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

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

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

✓ On the Gold path — maintain.

Detailed fixes: d34_recommendation.md.

D35 · Change Coupling9.9 / 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 9.9 / 10 · rule-coverage 100% · ceiling Documented

Strongest change-coupling: KafkaTransferAutoConfiguration.java↔RocketMqTransferAutoConfiguration.java 70%

Change coupling: KafkaTransferAutoConfiguration.java ↔ RocketMqTransferAutoConfiguration.javaeasyevent-spring-boot-starter/easyevent-spring-boot-starter-kafka/src/main/java/com/openquartz/easyevent/starter/kafka/spring/boot/autoconfig/KafkaTransferAutoConfiguration.java

✓ On the Gold path — maintain.

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

Frontend & cross-cutting dimensions

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

AC3 · Page structure5.1 / 10Adequate✓ Tool-verified

Other · Accessibility — Whether pages declare a language (well-formed BCP-47) and a non-empty title, expose exactly one main landmark and a sane heading order with non-empty headings, keep zoom enabled, title their iframes, give data tables header cells, and avoid meta-refresh. Static markup readiness, not a WCAG conformance claim.

Method: Static markup-model scan: html lang, document <title>, a main landmark and heading order on full documents only, plus zoom-disabling viewports, untitled iframes and meta-refresh anywhere. Deterministic, per structural checkpoint.

  • No <main> (or role="main") means no "skip to content" target and a weaker landmark map. Wrap the primary content in <main>. (×2) — index.html:2, index.html:2

What to do

  • Declare <html lang>, a document <title> and a <main> landmark, keep headings in order, leave zoom enabled, title iframes and drop meta-refresh.
AC6 · Visual & motion safety5.7 / 10Adequate✓ Tool-verified

Other · Accessibility — Whether focus outlines aren't removed without a replacement, motion respects prefers-reduced-motion, and literal CSS colour pairs meet contrast — PARTIAL: inline styles, in-repo <style> blocks, in-repo .css files, var() tokens, Tailwind neutral utilities and CSS-in-JS literals are read (hex/rgb/hsl/named), never computed/runtime/external-CDN colour. Static markup readiness, not a WCAG conformance claim.

Method: Static markup/CSS scan: inline outline:none/0, literal inline colour/background contrast against the 4.5:1 AA floor, and <style>-block animation without a prefers-reduced-motion guard. Deterministic but PARTIAL — only inline styles and in-repo CSS literals are visible.

  • `.el-date-table td.disabled .el-date-table-cell` sets color: #a8abb2 on background-color: #f5f7fa — 2.1:1, below the 4.5:1 WCAG AA minimum for normal text. This is a MINIFIED, build-generated sheet — editing the literal here is undone by the next vendor drop or rebuild, so override the rule in your own stylesheet (or fix it upstream / in the source the bundle is built from). — index-BsJK1RBe.css:1

What to do

  • Keep a visible focus style (don't remove the outline without a replacement), guard animation with prefers-reduced-motion, and raise low-contrast colour pairs to at least 4.5:1.
AC7 · A11y enforcement4.0 / 10Weak✓ Tool-verified

Other · Accessibility — Whether accessibility is ENFORCED in the toolchain — an accessibility checker configured over the markup (an a11y lint rule set, e.g. eslint-plugin-jsx-a11y or vuejs-accessibility where the project lints JavaScript) and an automated accessibility assertion wired into tests or CI (axe/pa11y/Lighthouse or an equivalent) — on the Documented→Verified→Prevented ladder.

Method: Repo config/CI scan: an accessibility checker configured over the markup (an a11y lint rule set such as eslint-plugin-jsx-a11y / vuejs-accessibility where JavaScript is linted) and an automated accessibility assertion in tests or CI (axe/pa11y/Lighthouse or equivalent), graded on the Documented→Verified→Prevented rungs. Deterministic, presence/rung detection.

  • No accessibility enforcement found — no a11y linter (eslint-plugin-vuejs-accessibility) and no axe/pa11y/Lighthouse in tests or CI. Start with the linter to catch issues at author time.

What to do

  • Enforce accessibility in the toolchain: add eslint-plugin-vuejs-accessibility, then assert with your test runner's axe binding (jest-axe, vitest-axe, cypress-axe or @axe-core/playwright) in tests, then gate axe/pa11y/Lighthouse in CI.
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.

M1 · Documentation (README)5.9 / 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.

  • 61 code files changed in the last 6 months but the README was not touched — it may no longer reflect the system.

What to do

  • Add a 'Testing' section to the root README — how to run the test suite.
  • Add a README to the 32 of 33 project(s) that lack one — worth up to 1.9 pts.
  • Review the README against recent changes; refresh the parts that drifted.
M2 · Architecture documentation2.0 / 10Critical✓ 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 — no conventional ADR directory, no `NNNN-title.md` documents and nothing ADR-shaped by content. Design rationale recorded elsewhere (a design-notes tree, a mailing list, pull-request discussion) is not visible to this check and is not re-findable per decision, so a future maintainer cannot ask why one choice was made and get an answer.

What to do

  • Record significant decisions one document per decision — dated, stating the context, the decision and its consequences — and keep them together wherever your design docs already live (a conventional `docs/adr/` tree with `NNNN-title.md` names is the most discoverable form).
M3 · Folder & project structure10.0 / 10Exemplary✓ 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.

M4 · Documentation accuracy9.0 / 10Exemplary◐ Sampled · advisory

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

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

P1 · CI/CD gates0.0 / 10Critical✓ 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.

  • No CI workflow found (.github/workflows, azure-pipelines.yml, .gitlab-ci.yml, …) — changes aren't gated by an automated build/test.

What to do

  • Add a CI workflow that builds and runs the test suite on every push/PR.
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 spotbugs with find-sec-bugs (or `semgrep --config=auto`, which runs on any language) — this repository has no CI pipeline yet, so run it locally to clear the existing findings, then make it a step of the first workflow you add so a regression fails the build.

What to do

  • Run what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — — locally for now, since there is no CI pipeline here yet, and as a step of the first workflow you add 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 is orchestrated by compose, but no service declares a `healthcheck:` and nothing pins a previous image to fall back to — the runtime can tell that the container is up, not that it is serving, so a bad release is harder to detect and reverse.

What to do

  • Add a `healthcheck:` to the served compose service — probing the endpoint it already answers on where it has one — with `depends_on: condition: service_healthy` on whatever waits for it, and keep the deployed image tag immutable and recorded so rolling back is re-pointing at the previous tag rather than rebuilding.
  • Add an approval/environment gate (required reviewers / protection rules) before production promotion.
P6 · Release Hygiene5.0 / 10Adequate✓ Tool-verified

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

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

  • No CHANGELOG/HISTORY/RELEASES file — what shipped when isn't easy to reconstruct for support or audit. (Versioning/tagging makes releases traceable, but a changelog records the what.)

What to do

  • Keep a changelog (e.g. Keep-a-Changelog) recording what shipped in each release.
R1 · Type Safety10.0 / 10Exemplary✓ Tool-verified

React / JS · Code Health — How much of the frontend is typed TypeScript vs untyped JavaScript.

Method: Frontend file inventory: the share of typed TypeScript vs untyped JavaScript across the source tree. Deterministic, exhaustive over frontend files.

R10 · Code Duplication9.5 / 10Exemplary✓ Tool-verified

React / JS · Code Health — Copy-pasted token-identical blocks across the frontend (the D4 clone algorithm over JS/TS tokens, D-386).

Method: Copy-pasted token-identical blocks across the frontend (the D4 clone algorithm run over JS/TS tokens). Deterministic.

  • easyevent-admin/easyevent-admin-ui/src/views/Dashboard.vue:68 · easyevent-admin/easyevent-admin-ui/src/views/Dashboard.vue:88 — all 2 copies are in the same file, and the CITED SPAN is not a self-contained block — it runs from inside one construct into the next (the tail of a branch plus the head of the following one, a run of switch arms, the end of a declaration plus the list that follows it) rather than covering a whole unit. So do not lift these lines literally: no call can be substituted for a half-open construct. Extract the enclosing repeated UNIT instead — the whole function, component or branch these lines sit in — and where the repetition IS the construct (a run of switch arms, a stack of near-identical declarations) replace it with one table or registry looked up by key rather than a helper each arm calls. The copies still drift apart the first time only one of them is edited, which is why this is reported. — Dashboard.vue:68

What to do

  • Extract the duplicated blocks into shared functions/components.
R2 · Cyclomatic Complexity10.0 / 10Exemplary✓ Tool-verified

React / JS · Code Health — Per-function cyclomatic/cognitive complexity from the token-level function scanner (D-386) — real branching, not a regex heuristic.

Method: Per-function cyclomatic/cognitive complexity from a token-level function scanner (real branching, not a regex heuristic), computed over every frontend function. Deterministic.

R3 · Large Files10.0 / 10Exemplary✓ Tool-verified

React / JS · Code Health — How many source files exceed the large-file threshold.

Method: Components/modules exceeding the large-file threshold, counted exhaustively across the frontend source tree. Deterministic.

R4 · Test Coverage0.0 / 10Critical✓ Tool-verified

React / JS · Readiness — Static test reachability (D-386): the share of production files reachable from any test via the import graph — measured without running anything.

Method: Static test reachability: the share of production files reachable from any test via the import graph — measured without running anything. Deterministic.

  • 0% of 12 production file(s) reachable from 0 test file(s) via the import graph

What to do

  • Add tests that import the unreached modules (directly or through their public entry).
R6 · Tooling0.0 / 10Critical✓ Tool-verified

React / JS · Readiness — Whether the project wires up test, lint and typecheck — detected from each package.json script's COMMAND (eslint / tsc / vitest / jest / playwright), not just its name, and corroborated against CI-workflow invocations so a tool run only in CI still counts.

Method: package.json scanned for test/lint/typecheck script wiring. Deterministic presence check.

  • test ✗ · lint ✗ · typecheck ✗

What to do

  • Add a test runner (vitest / jest / playwright) and eslint and `tsc --noEmit` as package.json scripts and run them in CI.
R7 · Dead Code10.0 / 10Exemplary✓ Tool-verified

React / JS · Code Health — Files unreachable from every application/tooling/test entry point, and exports nothing imports (module-graph reachability, D-386).

Method: Dead code: files unreachable from every application/tooling/test entry point plus exports nothing imports, via module-graph reachability. Deterministic, exhaustive over the import graph.

R8 · Dependency Hygiene7.5 / 10Strong✓ Tool-verified

React / JS · Readiness — npm dependency truthfulness (D-386): unused dependencies, imports not declared anywhere, and type-/test-only packages shipped as production deps.

Method: npm dependency truthfulness: unused dependencies, imports declared nowhere, and type-/test-only packages shipped as production deps — from the manifest + import graph. Deterministic.

  • Imported but not declared in any reachable package.json — installs work only by hoisting accident. — main.ts:5
  • Declared in easyevent-admin/easyevent-admin-ui/package.json but never imported anywhere in that package or its workspace members — dead weight and attack surface. Verify against build tooling before removing.

What to do

  • Remove unused dependencies, declare unlisted imports explicitly, and demote type-/test-only packages to devDependencies.
R9 · Circular Imports10.0 / 10Exemplary✓ Tool-verified

React / JS · Architecture — Import cycles in the module graph (D-386) — files that can only be understood and changed together.

Method: Import cycles in the module graph, detected exhaustively over JS/TS imports (the same cycle detection as the .NET coupling dimension). Deterministic.

WCAG coverage — what static analysis assessed

Statically assessed 8 of 55 WCAG 2.2 Level A/AA success criteria (15%; ≈16% of the 50 WCAG 2.1 AA criteria for EN 301 549). The other 47 require runtime or manual evaluation. Partial signal only (a clean result is necessary, not sufficient; static analysis fully verifies none). This is accessibility readiness, not a conformance claim — a WCAG conformance claim requires manual evaluation (WCAG-EM 1.0).

DimensionWCAG 2.2 A/AA criteriaCoverage
AC3 · Page structure1.4.4, 2.2.1, 2.4.1, 2.4.2, 3.1.1, 4.1.2Partial signal
AC6 · Visual & motion safety1.4.3, 2.4.7Partial — literal CSS only
AC7 · A11y enforcementenforcement — no page criterionEnforcement posture (process)

Not statically assessed — these 47 Level A/AA criteria need runtime or manual evaluation (WCAG-EM): 1.1.1, 1.2.1, 1.2.2, 1.2.3, 1.2.4, 1.2.5, 1.3.1, 1.3.2, 1.3.3, 1.3.4, 1.3.5, 1.4.1, 1.4.2, 1.4.5, 1.4.10, 1.4.11, 1.4.12, 1.4.13, 2.1.1, 2.1.2, 2.1.4, 2.2.2, 2.3.1, 2.4.3, 2.4.4, 2.4.5, 2.4.6, 2.4.11, 2.5.1, 2.5.2, 2.5.3, 2.5.4, 2.5.7, 2.5.8, 3.1.2, 3.2.1, 3.2.2, 3.2.3, 3.2.4, 3.2.6, 3.3.1, 3.3.2, 3.3.3, 3.3.4, 3.3.7, 3.3.8, 4.1.3.

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 Health97%ExemplarySolid.
Architecture100%ExemplaryStrongest area.
Maturity62%Adequate — gated by M2Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Readiness15%Critical — gated by R4, R6, P1, P3Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Security85%StrongSolid.
Accessibility48%WeakBelow par — needs attention.
Not included — 71 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 image/media element found in the parsed markup — AC1 not applicable here.
  • AC2 Forms & labels — No form control/button found in the parsed markup — AC2 not applicable here.
  • AC4 Keyboard semantics — No interactive element found in the parsed markup — AC4 not applicable here.
  • AC5 ARIA correctness — No ARIA usage found in the parsed markup — AC5 not applicable here.
  • AX1 Captive dependencies — no DI registrations detected
  • AX10 Code composition — not assessed — code composition is computed by ROLE over a document set that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • AX2 Stateful singletons — no singleton implementations detected
  • AX3 Project dependency cycles — not assessed — project cycles and dependency direction are computed over a project-reference graph that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • AX4 Dependency direction — not applicable to a CQRS architecture (the inward-dependency rule is for layered/clean styles)
  • AX6 Interface segregation — not assessed — interface segregation is computed over a type surface that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • AX7 Slice cohesion — not applicable — not a vertical-slice architecture
  • AX8 Test isolation — not assessed — test isolation is computed from a project graph (which projects are test projects, and what they reference) that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • AX9 CQS / query purity — no CQRS query handlers detected — query purity is not applicable to this codebase
  • AXB2 Runtime readiness — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
  • C1 Data Protection — Not assessed: these personal data controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks personal data controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
  • C2 Access Controls — Not assessed: these authorization controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks authorization controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
  • C3 Audit Trail — Not assessed: these audit controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks audit controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
  • C4 Data Retention — Not assessed: these retention controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks retention controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
  • C5 Data-Subject Rights — Not assessed: these data-subject rights controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks data-subject rights controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
  • D10 Test Quality — ~279 lines of test source are present (.java) but the test-quality collector reads C# only, so skipped/assertion-free tests couldn't be counted. Not scored — this is a gap in the analyzer, not a finding about this repository.
  • D11 Test Reliability — Test reliability not included
  • D12 Dependency Hygiene — Dependency hygiene not measured — dependency manifest found but not parsed for hygiene
  • D14 License Compliance — Not scored — this repository's package manifest is not parsed for licence data yet. A gap in the analyzer's language coverage, NOT a finding that the repository's licenses are compliant (a Maven POM), which this pass does not parse yet — so this dimension asserts nothing about this repository's licensing in either direction.
  • D16 Bus Factor — single-maintainer — knowledge-concentration (bus factor) risk
  • D17 Explicit Debt — explicit-debt markers are read through a C# workspace today, so they were not read for this repository's language — this asserts nothing about how many markers the code carries. Not scored — this is a gap in the analyzer, not a finding about this repository
  • D18 Solution Shape — D18 scores the shape of a .NET solution; this repository has no .NET solution or project files, so the dimension does not apply.
  • D20 ADR Quality — N/A — ADRs are expected on deployable products with a user-facing host, not consumed libraries; no ADR log is required here.
  • D22 Internal API Consistency — No exposed public API
  • D23 Boundary Type-Coupling — Production source is present (.java, .ts) but bounded contexts are resolved over the C#/VB project set, which exposed none, so context scope could not be assessed. Not scored — this is a gap in the analyzer, not a verdict about this repository. Declaring the codebase's bounded contexts (≥2) would let cross-boundary type coupling be assessed — see the recommendation on this dimension for where. Declare them in `.codehealth/config.yaml` at the repository root (create it if absent), mapping each context name to the module-path or namespace prefixes that belong to it — e.g. `architecture:` → `contexts:` → `Billing: ["src/billing", "Acme.Billing"]`, `Catalog: ["src/catalog", "Acme.Catalog"]`.
  • D24 Comment Value — No inline comments to assess — comment value is not applicable here.
  • D25 ADR Conformance — no ADRs to check
  • D26 Project Cohesion — Project cohesion is assessed over the .NET project set; this target exposed no projects, so project size and spread could not be assessed. Not scored — this is a gap in the analyzer's reach, not a verdict about this repository.
  • D27 Navigability — No calls could be sampled, so navigability was not assessed — tracing effort is measured over resolved call sites and this target exposed none. Not scored — this is a gap in the analyzer's reach, not a verdict about this repository.
  • D30 Dependency Vulnerabilities — Not scored — no dependency manifest in a supported ecosystem was read for this repository. A gap in the analyzer's language coverage, NOT a finding that the repository is free of vulnerable dependencies (a Maven POM — not scanned yet) — where an OSV-supported manifest exists, dependency vulnerabilities for this repository are reported under D38 instead.
  • D32 Data Compliance (PII/GDPR) — No PII/GDPR-handling patterns detected (p/gdpr ruleset) — no data-compliance surface to assess.
  • D36 Supply-chain Provenance & Signing — No CI/build pipeline found (.github/.forgejo/.gitea workflows, .gitlab-ci.yml, azure-pipelines*.yml, .pipelines/, .vsts-ci/, Jenkinsfile, .circleci); there is no build to attest provenance for.
  • 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 — Scanner failed to run — not a clean result
  • D39 IL Efficiency — D39 measures the IL emitted by a .NET build; this repository has no .NET solution or project files, so the dimension does not apply.
  • 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.
  • D5 Coupling — Inter-project coupling could not be assessed — no analyzable project graph was found for this repository. Not scored: a gap in the analyzer's reach, not a verdict about this repository. (Coupling here is Martin afferent/efferent/instability plus reference cycles across a project-reference graph, read today from .NET project files; other ecosystems' module graphs are not read yet.)
  • D6 Cohesion (LCOM4) — Cohesion (LCOM4) is measured over a C#/VB class graph, and this repository's production source is .java, .ts, which this pass does not read — so no class could be assessed. Not scored — this is a gap in the analyzer, not a finding about this repository.
  • D7 Architectural Integrity — no checkable ADRs, and no project-reference graph for the cycle pass to read — so this dimension makes no claim about dependency cycles in either direction (where this repository's language has an import-cycle lens, cycles are reported there). Architectural integrity not assessed
  • D8 Code Coverage — Coverage not included — suite not readable by the collector
  • D9 Test Distribution — Test source is present (.java) but the test-pyramid classifier reads C# only, so its unit/integration/BDD/E2E split couldn't be counted. Not scored — this is a gap in the analyzer, not a finding about this repository.
  • DM1 Domain Modelling — applicable but not scored (2 of 3 signals for this style — below the bar we score at): 42 value object(s); 1 domain event(s)
  • ED1 Event-Driven — not scored — this repository shows only 1 of the 3 signals this check looks for (1 CQRS handler(s))
  • ED5 Idempotency — no mutating command handlers or message consumers detected — idempotency check not applicable
  • ES1 Event Sourcing — not scored — this repository shows none of the 3 signals this check looks for
  • GD1 Unfinished & placeholder code — no source files
  • IC1 Incompleteness & stubs — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • P12 CI test-gate honesty — no CI workflow found
  • P2 Observability — Observability was not assessed: this check reads a source model that does not carry this repository's product — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of a logging idiom this check recognises is NOT evidence that this repo lacks structured logging (it may log through its own ecosystem's logger). This is a gap in the analyzer, not a finding about this repository.
  • P5 DR & Backup — not evidenced — repo shows no backup/RTO/RPO controls; absence of evidence is not evidence of a working control
  • P7 Outbound HTTP resilience — not measured — the application kind could not be determined for this repo
  • P8 Schema migrations — not assessed — schema-migration practice is read from a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • P9 Domain vs controller coverage — no coverage report found on disk — produce a coverage report in a standard format (JaCoCo XML — `mvn jacoco:report`) 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 was not assessed: this lens reads a source model that was not loaded for this repository, because the repository is written in a language this lens does not yet model or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository — in particular it is NOT a statement that this repo is unpackaged or performance-careless.
  • PF2 Allocation hygiene — Performance was not assessed: this lens reads a source model that was not loaded for this repository, because the repository is written in a language this lens does not yet model or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository — in particular it is NOT a statement that this repo is unpackaged or performance-careless.
  • PF3 Async & latency hygiene — Performance was not assessed: this lens reads a source model that was not loaded for this repository, because the repository is written in a language this lens does not yet model or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository — in particular it is NOT a statement that this repo is unpackaged or performance-careless.
  • R11 Import Boundaries — No recognizable feature-sliced/layered src layout — boundary rules not applicable.
  • R5 Dependency Freshness — no package-lock.json — dependency freshness not measured (would require an npm lockfile); JS/npm CVEs are scored in D33 (JS/npm Dependency Vulnerabilities)
  • S1 Web-Security Posture — Not assessed: these web-security controls are read from a source model (declarative annotations, request middleware, entity/column names, guard methods) that was not loaded for this repository — because the repository is written in a language this check does not yet model, or because its projects failed to load. Absence of an idiom this check recognises is NOT evidence that this repository lacks web-security controls: it may implement them entirely in its own ecosystem. This is a gap in the analyzer's language coverage, not a finding about this repository.
  • SC1 Supply-chain hygiene — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
  • X1 Async correctness — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • X2 Cancellation propagation — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • X3 Exception handling — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • X4 Structured logging — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository
  • X5 Nullable reference types — not analysed — these correctness checks read a source model that was not loaded for this repository, because the repository is written in a language this check does not yet model, or because its projects failed to load. This is a gap in the analyzer, not a finding about this repository

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 — 2 finding(s)
D29 · Static Analysis (SAST) · High · ×1
  • High: spel-injection easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/expression/SpringExpressionParser.java:42 — A Spring expression is built with a dynamic value. The source of the value(s) should be verified to avoid that unfiltered values fall into this risky code evaluation. This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
D31 · IaC & Container Security · High IaC · ×1
  • High IaC: DS-0002 easyevent-admin/easyevent-admin-server/Dockerfile — Image user should not be 'root' A container that starts as root runs your process with root's capabilities inside the namespace, so a compromise of the process starts from there. The step: create an unprivileged account in the image (`RUN useradd -r -M app` — or whatever this base image's account tooling is, `adduser` and `useradd` are not both present everywhere`), give it ownership of the paths the process writes at runtime (`COPY --chown=` on those layers, or a `RUN chown -R`), and end the final stage with `USER app` so it is the default at start. Build stages that only compile can stay root; it is the stage that RUNS that needs the account. If the process genuinely requires root — it manages the container runtime, ptraces another process or opens raw devices — say so here rather than making a change that breaks it.
Warning — 44 finding(s)
D29 · Static Analysis (SAST) · Medium · ×12
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:20 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:27 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-disruptor/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:34 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:22 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:30 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-kafka/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:37 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:22 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:30 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: unrestricted-request-mapping easyevent-example/easyevent-example-rocketmq/src/main/java/com/openquartz/easyevent/example/controller/EventController.java:37 — Detected a method annotated with 'RequestMapping' that does not specify the HTTP method. CSRF protections are not enabled for GET, HEAD, TRACE, or OPTIONS, and by default all HTTP methods are allowed when the HTTP method is not explicitly specified. This means that a method that performs state changes could be vulnerable to CSRF attacks. To mitigate, add the 'method' field and specify the HTTP method (such as 'RequestMethod.POST'). This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
  • Medium: weak-random easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/schedule/CompensateProcessGlobalScheduleService.java:63 — Detected use of the functions `Math.random()` or `java.util.Random()`. These are both not cryptographically strong random number generators (RNGs). If you are using these RNGs to create passwords or secret tokens, use `java.security.SecureRandom` instead. This is a semgrep security-AUDIT rule: it reports that a sensitive pattern is present, not that it is exploitable here. Confirm whether the flagged value reaches a security decision — a credential, token, nonce, key, salt or session id, or an externally reachable surface — and apply the change where it does; where it provably does not (cosmetic, simulation, or deliberately reproducible use), record the review and leave the code as it is.
  • Medium: weak-random easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/schedule/CompensateProcessSelfScheduleService.java:65 — Detected use of the functions `Math.random()` or `java.util.Random()`. These are both not cryptographically strong random number generators (RNGs). If you are using these RNGs to create passwords or secret tokens, use `java.security.SecureRandom` instead. This is a semgrep security-AUDIT rule: it reports that a sensitive pattern is present, not that it is exploitable here. Confirm whether the flagged value reaches a security decision — a credential, token, nonce, key, salt or session id, or an externally reachable surface — and apply the change where it does; where it provably does not (cosmetic, simulation, or deliberately reproducible use), record the review and leave the code as it is.
  • Medium: spring-sqli easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/utils/CustomerJdbcTemplate.java:36 — Detected a string argument from a public method contract in a raw SQL statement. This could lead to SQL injection if variables in the SQL statement are not properly sanitized. Use a prepared statements (java.sql.PreparedStatement) instead. You can obtain a PreparedStatement using 'connection.prepareStatement'. This is a semgrep security-AUDIT rule: it reports that a sensitive construct is present, not that it is exploitable here. Confirm whether this site handles untrusted input or is reachable across a trust boundary — and apply the change where it is; where the construct is required by the platform or protocol it calls into, and carries no untrusted data (a syscall/FFI shim, a build- or debug-gated tool, a fixed local surface), record the review and leave the code as it is.
D4 · Code Duplication · Duplicated block (7 lines × 2) · ×7
  • Duplicated block (7 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:69 — easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:69-75 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoMySQL.java:69-75 — the copies sit in sibling files of one directory: extract the block into a single shared function in that directory and call it from each site, so a change lands once.
  • Duplicated block (7 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:105 — easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:105-111 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoMySQL.java:105-111 — the copies sit in sibling files of one directory: extract the block into a single shared function in that directory and call it from each site, so a change lands once. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:105` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (7 lines × 2) easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/config/RocketSoaEventAutoConfiguration.java:77 — easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/config/RocketSoaEventAutoConfiguration.java:77-83 | easyevent-spring-boot-starter/easyevent-spring-boot-starter-rocketmq/src/main/java/com/openquartz/easyevent/starter/rocketmq/spring/boot/autoconfig/RocketMqTransferAutoConfiguration.java:94-100 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/config/RocketSoaEventAutoConfiguration.java:77` it does not close everything it opens, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (7 lines × 2) easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/spring/boot/autoconfig/EasyEventCreatorAutoConfiguration.java:83 — easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/spring/boot/autoconfig/EasyEventCreatorAutoConfiguration.java:83-89 | easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/spring/boot/autoconfig/EasyEventTransferAutoConfiguration.java:46-52 — the copies sit in sibling files of one directory: extract the block into a single shared function in that directory and call it from each site, so a change lands once. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-spring-boot-starter/easyevent-spring-boot-starter-parent/src/main/java/com/openquartz/easyevent/starter/spring/boot/autoconfig/EasyEventCreatorAutoConfiguration.java:83` it does not close everything it opens, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that. The matched lines also transfer control out of the body holding them, which cannot survive a move into a called unit unchanged: have the extracted unit return that decision and let each site act on it.
  • Duplicated block (7 lines × 2) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:127 — easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:127-133 | easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:184-190 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:127` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (7 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:184 — easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:184-190 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:182-188 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:184` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (7 lines × 2) easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:87 — easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:87-93 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:135-141 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:87` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
D4 · Code Duplication · Duplicated block (5 lines × 2) · ×3
  • Duplicated block (5 lines × 2) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:116 — easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:116-120 | easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:173-177 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited.
  • Duplicated block (5 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:168 — easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:168-172 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:165-169 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:168` it does not close everything it opens, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (5 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:178 — easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:178-182 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:175-180 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/common/KafkaTransferProducer.java:178` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
D4 · Code Duplication · Duplicated block (10 lines × 2) · ×2
  • Duplicated block (10 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:84 — easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:84-93 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:95-104 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:84` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (10 lines × 2) easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java:94 — easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java:94-103 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/RocketMqEventTrigger.java:113-122 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java:94` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
D4 · Code Duplication · Duplicated block (8 lines × 2) · ×2
  • Duplicated block (8 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:82 — easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:82-89 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoMySQL.java:82-89 — the copies sit in sibling files of one directory: extract the block into a single shared function in that directory and call it from each site, so a change lands once. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:82` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
  • Duplicated block (8 lines × 2) easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/KafkaEventTrigger.java:187 — easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/KafkaEventTrigger.java:187-194 | easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/RabbitMqEventTrigger.java:181-188 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/KafkaEventTrigger.java:187` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that. The matched lines also transfer control out of the body holding them, which cannot survive a move into a called unit unchanged: have the extracted unit return that decision and let each site act on it.
D4 · Code Duplication · Duplicated block (6 lines × 2) · ×2
  • Duplicated block (6 lines × 2) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:34 — easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoH2.java:34-39 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/dao/BusEventDaoMySQL.java:34-39 — the copies sit in sibling files of one directory: extract the block into a single shared function in that directory and call it from each site, so a change lands once.
  • Duplicated block (6 lines × 2) easyevent-core/src/main/java/com/openquartz/easyevent/core/SubscriberRegistry.java:66 — easyevent-core/src/main/java/com/openquartz/easyevent/core/SubscriberRegistry.java:66-71 | easyevent-core/src/main/java/com/openquartz/easyevent/core/SubscriberRegistry.java:98-103 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-core/src/main/java/com/openquartz/easyevent/core/SubscriberRegistry.java:66` it does not close everything it opens, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
D1 · Cyclomatic Complexity · VersionUtils.getVersion (cyclomatic 16) · ×1
  • VersionUtils.getVersion (cyclomatic 16) easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java:37 — VersionUtils.getVersion has cyclomatic complexity 16 (threshold 15). To reduce it, separate the cases: extract each independent branch into its own named function, and where the body has guards that only reject input, fold those into early returns at the top.
D16 · Bus Factor · single-maintainer · ×1
  • single-maintainer — knowledge-concentration (bus factor) risk — single-maintainer — knowledge-concentration (bus factor) risk (1 author(s) across 190 commit(s) sampled).
D2 · Cognitive Complexity · VersionUtils.getVersion (cognitive 33) · ×1
  • VersionUtils.getVersion (cognitive 33) easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/VersionUtils.java:37 — VersionUtils.getVersion has cognitive complexity 33 (threshold 15). Drivers by points: if/else 22, boolean chains 5, loops 4, error handling 1, ternaries 1 (nesting depth added 16). To reduce it, split the body into named stages: move each independent step or branch into its own named function so the body reads as a short sequence of named calls rather than one long body.
D2 · Cognitive Complexity · BusEventEntityMapperImpl.getBySelectiveCondition (cognitive 23) · ×1
  • BusEventEntityMapperImpl.getBySelectiveCondition (cognitive 23) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/mapper/impl/BusEventEntityMapperImpl.java:355 — BusEventEntityMapperImpl.getBySelectiveCondition has cognitive complexity 23 (threshold 15). Drivers by points: if/else 22, loops 1 (nesting depth added 12). To reduce it, split the body into named stages: move each independent step or branch into its own named function so the body reads as a short sequence of named calls rather than one long body.
D2 · Cognitive Complexity · RocketMqProducer.sendMessageList (cognitive 17) · ×1
  • RocketMqProducer.sendMessageList (cognitive 17) easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/common/RocketMqProducer.java:164 — RocketMqProducer.sendMessageList has cognitive complexity 17 (threshold 15). Drivers by points: error handling 6, if/else 5, loops 4, boolean chains 1, ternaries 1 (nesting depth added 7). To reduce it, split the body into named stages: move each independent step or branch into its own named function so the body reads as a short sequence of named calls rather than one long body.
D2 · Cognitive Complexity · ExceptionUtils.indexOf (cognitive 16) · ×1
  • ExceptionUtils.indexOf (cognitive 16) easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/ExceptionUtils.java:256 — ExceptionUtils.indexOf has cognitive complexity 16 (threshold 15). Drivers by points: if/else 11, loops 4, boolean chains 1 (nesting depth added 6). To reduce it, split the body into named stages: move each independent step or branch into its own named function so the body reads as a short sequence of named calls rather than one long body.
D3 · God Classes · TooManyMethods · ×1
  • TooManyMethods: TypeToken easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java:27 — TooManyMethods — 45 methods. To reduce it, group the members that share the same data into a smaller type of their own and delegate to it, so no single type carries every responsibility.
D3 · God Classes · FileTooLong · ×1
  • FileTooLong: reflect/TypeToken.java easyevent-common/src/main/java/com/openquartz/easyevent/common/utils/reflect/TypeToken.java:0 — FileTooLong — 566 significant lines (blank, comment-only and punctuation-only lines excluded), about 96% of them inside a single declaration: TypeToken (27-929). Moving the declarations that sit BESIDE it into sibling files will not shorten this file. Extract from INSIDE that declaration instead: lift each cohesive group of its body — the parts that share the same inputs and are named together — into its own unit in a sibling file, and have the original call them.
D31 · IaC & Container Security · Medium IaC · ×1
  • Medium IaC: CKV_DOCKER_3 easyevent-admin/easyevent-admin-server/Dockerfile:1 — Ensure that a user for the container has been created
D35 · Change Coupling · Change coupling · ×1
  • Change coupling: KafkaTransferAutoConfiguration.java ↔ RocketMqTransferAutoConfiguration.java easyevent-spring-boot-starter/easyevent-spring-boot-starter-kafka/src/main/java/com/openquartz/easyevent/starter/kafka/spring/boot/autoconfig/KafkaTransferAutoConfiguration.java — `easyevent-spring-boot-starter/easyevent-spring-boot-starter-kafka/src/main/java/com/openquartz/easyevent/starter/kafka/spring/boot/autoconfig/KafkaTransferAutoConfiguration.java` and `easyevent-spring-boot-starter/easyevent-spring-boot-starter-rocketmq/src/main/java/com/openquartz/easyevent/starter/rocketmq/spring/boot/autoconfig/RocketMqTransferAutoConfiguration.java` change together 70% of the time (7 of the 10 commits that touched the less-changed of the two, renames followed) with no explicit dependency — the edge is real but nothing declares it. Read the pair before acting: if one registers itself into the other through a hook or an initialiser, the missing dependency is DELIBERATE (that is what the inversion buys) and the thing to add is a comment saying so, not a merge; if they simply belong together, co-locate them; if neither holds, the coupling is hidden and worth breaking.
D4 · Code Duplication · Duplicated block (17 lines × 2) · ×1
  • Duplicated block (17 lines × 2) easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/common/RabbitMqTransferProducer.java:102 — easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/common/RabbitMqTransferProducer.java:102-118 | easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/common/RabbitMqTransferProducer.java:145-161 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited.
D4 · Code Duplication · Duplicated block (16 lines × 2) · ×1
  • Duplicated block (16 lines × 2) easyevent-core/src/main/java/com/openquartz/easyevent/core/dispatcher/Dispatcher.java:242 — easyevent-core/src/main/java/com/openquartz/easyevent/core/dispatcher/Dispatcher.java:242-257 | easyevent-core/src/main/java/com/openquartz/easyevent/core/dispatcher/Dispatcher.java:279-294 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited.
D4 · Code Duplication · Duplicated block (14 lines × 2) · ×1
  • Duplicated block (14 lines × 2) easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java:119 — easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java:119-132 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/RocketMqEventTrigger.java:159-172 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere both call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made twice. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-spring-boot-starter-soa/easyevent-spring-boot-starter-soa-rocketmq/src/main/java/com/openquartz/easyevent/starter/soa/rocketmq/SoaRocketMqEventTrigger.java:119` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
D4 · Code Duplication · Duplicated block (12 lines × 4) · ×1
  • Duplicated block (12 lines × 4) easyevent-core/src/main/java/com/openquartz/easyevent/core/compensate/EventCompensateServiceImpl.java:49 — easyevent-core/src/main/java/com/openquartz/easyevent/core/compensate/EventCompensateServiceImpl.java:49-60 | easyevent-transfer/easyevent-transfer-kafka/src/main/java/com/openquartz/easyevent/transfer/kafka/KafkaEventSender.java:40-51 | easyevent-transfer/easyevent-transfer-rabbitmq/src/main/java/com/openquartz/easyevent/transfer/rabbitmq/RabbitMqEventSender.java:39-50 | easyevent-transfer/easyevent-transfer-rocketmq/src/main/java/com/openquartz/easyevent/transfer/rocket/RocketMqEventSender.java:40-51 — the copies span different directories, so extracting a shared function means choosing where it lives: put it somewhere all 4 call sites can already reach — a location they all depend on today, or a new shared one if there is none — and call it from each site; until then, every change has to be made 4 times.
D4 · Code Duplication · Duplicated block (9 lines × 2) · ×1
  • Duplicated block (9 lines × 2) easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/identify/SnowflakeIdGenerator.java:85 — easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/identify/SnowflakeIdGenerator.java:85-94 | easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/identify/SnowflakeIdGenerator.java:100-108 — both copies are in the same file, so extract the block into one function there and call it from each site — the copies drift apart the first time only one of them is edited. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-storage/easyevent-storage-jdbc/src/main/java/com/openquartz/easyevent/storage/jdbc/identify/SnowflakeIdGenerator.java:85` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that.
D4 · Code Duplication · Duplicated block (8 lines × 3) · ×1
  • Duplicated block (8 lines × 3) easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:32 — easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:32-39 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:49-56 | easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:66-73 — all 3 copies are in the same file, so extract the block into one function there and call it from every one of those sites — resolving only two of them leaves the rest to drift apart the first time one is edited. Read the line range as the matched WINDOW rather than a finished unit: at `easyevent-admin/easyevent-admin-server/src/main/java/com/openquartz/easyevent/admin/controller/StatsController.java:32` it begins part-way through the construct above it, so those exact lines cannot be lifted as they stand — widen the region to the smallest complete statement or declaration that contains it, and extract that. The matched lines also transfer control out of the body holding them, which cannot survive a move into a called unit unchanged: have the extracted unit return that decision and let each site act on it.
Recommendation — 5 finding(s)
D11 · Test Reliability · Test reliability not included · ×1
  • Test reliability not included — Test source is present (.java) but the built-in reliability runner does not support this repository's ecosystem, so flakiness couldn't be assessed. Not scored — this is a gap in the analyzer's language coverage, not a finding about this repository.
D19 · Documentation Quality · 文档中未提及如何在本地运行 admin 模块,仅描述了远程访问的 http · ×1
  • 文档中未提及如何在本地运行 admin 模块,仅描述了远程访问的 http://localhost:8088,而 Quick Start 中也缺少 admin 的安装和启动步骤。 README.md — 补充一个『快速开始』章节,说明如何部署 EasyEvent Admin 管理台(包括 Docker Compose 部署、前端静态资源路径)
D31 · IaC & Container Security · Low IaC · ×1
  • Low IaC: DS-0026 easyevent-admin/easyevent-admin-server/Dockerfile — No HEALTHCHECK defined Without one the runtime only knows whether the process is alive, not whether it is serving, so a wedged container is restarted by nobody. The step: add a `HEALTHCHECK` to the image that probes the service the way a client would — this image already declares `EXPOSE 8088`, so a request to `localhost:8088` on the service's own health or root route, exiting non-zero when it does not answer, is the probe — and give it an `--interval`, a `--timeout` and a `--start-period` long enough to cover startup. If the image ships no HTTP client, probe with whatever the runtime already has, or declare the check in the orchestrator instead and say so here.
D38 · OSV Dependency Vulnerabilities · Scanner failed to run · ×1
  • Scanner failed to run — not a clean result — osv-scanner exited 128 with no findings — the advisory database was likely unreachable. The scanner exited non-zero and produced no findings (typically the advisory DB was unreachable), so this is reported as a measurement gap rather than a clean pass.
D8 · Code Coverage · Coverage not included · ×1
  • Coverage not included — suite not readable by the collector — Coverage NOT MEASURED: test source is present (.java) but the built-in coverage collector has no runner for this repository's ecosystem — so this suite was never executed by it. Not scored — this is a gap in the analyzer's language coverage, not a defect in the repo. To have real coverage read, produce a coverage report in a standard format (JaCoCo XML — `mvn jacoco:report`) into the repo working tree before the scan — a CI step is the usual place, since the artefact is commonly gitignored.
Info — 2 finding(s)
D12 · Dependency Hygiene · Dependency hygiene not measured · ×1
  • Dependency hygiene not measured — dependency manifest found but not parsed for hygiene — This repository's dependency manifest (a Maven POM) was found, but this pass cannot parse it for hygiene, so no package was assessed. Zero packages read is NOT a clean dependency tree, so this is NOT SCORED — a gap in the analyzer, not a verdict about this repository. This row is about dependency HYGIENE — outdated, deprecated or unmaintained direct dependencies; known CVEs in the same dependency graph are a separate question, reported under D38 wherever the manifest is OSV-readable.
D22 · Internal API Consistency · No exposed public API · ×1
  • No exposed public API — No intentionally-exposed types (IsPackable or .Contracts) to evaluate.

Appendix B — Reproduction & audit trail

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

DimensionToolVersionCommandFindingsRaw output
D28 · Secrets (history)gitleaksgitleaks detect --no-banner --report-format json --report-path /dev/stdout --exit-code 0 --source .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 .13artifacts/raw/semgrep.json
D30 · Dependency Vulnerabilitiesnone (no readable dependency manifest)none (no readable dependency manifest): not present in this environment0
D31 · IaC & Container Securitytrivytrivy config --format json --quiet .3artifacts/raw/trivy-config.json
D32 · Data Compliance (PII/GDPR)semgrepsemgrep: not applicable — No PII/GDPR-handling patterns detected (p/gdpr ruleset) — no data-compliance surface to assess.0
D33 · JS/npm Dependency Vulnerabilitiestrivytrivy fs --scanners vuln --format json --quiet --severity CRITICAL,HIGH,MEDIUM,LOW --skip-dirs **/bin/** --skip-dirs **/obj/** . --skip-db-update0
D36 · Supply-chain Provenance & Signingprovenanceprovenance: not applicable — No CI/build pipeline found (.github/.forgejo/.gitea workflows, .gitlab-ci.yml, azure-pipelines*.yml, .pipelines/, .vsts-ci/, Jenkinsfile, .circleci); there is no build to attest provenance for.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 --format json --recursive .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 019fc987-cdcd-74ce-8a80-be5ab6429e9c · 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