Public report — Detox, published 2 Oct 2026. Concrete security findings (which rule fired, in which file, on which line; CVE IDs, secret matches, dependency versions) are REDACTED in this version; ask the repo owner for the full report.
Public
Codebase survey Measured under the Code Assurance Index · rubric rubric-2026.09.18 (frozen) · verify this survey Filed cd_894ab2498ad54b2f97853d145fba8b13 Filed 2 October 2026, 00:44 UTC Public

Wix/Detox

Measured 2 October 2026, 00:27 UTC

51% At Risk

Medium · 36,714 LoC · 7 projects · rebuild ~0.4 person-years · weakest lens: Readiness (35%)

Findings by grade

83 critical 460 serious 44 minor 34 could not be resolved — could be critical — see Limitations

This survey was produced by

Watchdog
Producer
Canine Development
Analyzer
Watchdog engine 1.0.0
Measured
2 October 2026, 00:27 UTC

A measurement, not a certificate. The Code Assurance Index does not certify, approve or guarantee this codebase; it records a reproducible number and the evidence it was computed from. The standard is authored by Canine Development, who also build Watchdog — its only implementation today. That is said here so the number is checked rather than believed.

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

55/59dimensions tool-verifieddeterministic · confidence 1.0 · 4 LLM-assisted, advisory
569findings with an exact file:lineof 587 — the remainder are repo-wide signals (a dimension-level measurement, not a single line); open any file:line and verify
59/132dimensions across the health lenses36714 LoC · 7 projects — wide & deep
Chapters

Executive summary

⚠ A critical security finding caps this grade — resolve it before relying on the score below; see the Security lens.

The system holds a 51% health score, placing it in the At Risk category. While the underlying code is clean and well-structured, the organization lacks the operational safeguards to deploy it safely. This gap creates a fragile foundation where good engineering efforts are undermined by weak release controls and security visibility, exposing the business to unnecessary delivery delays and potential compliance issues.

The asset is of medium size, representing a modest investment of roughly 0.4 person-years to rebuild. The codebase is dense with logic rather than boilerplate, meaning the value is concentrated in the actual business rules. Because the rebuild cost is low, the primary risk is not the cost of change, but the cost of failure during deployment. Without proper safeguards, even minor errors can reach production, eroding trust and requiring rapid, costly hotfixes that distract from new feature development.

The most critical theme is Operational Readiness. With a score of 35%, the system lacks the testing, observability, and release gates necessary for reliable operation. This means deployments are essentially uncontrolled experiments. The risk here is high: a bad build can reach users without a safety net, leading to outages, data integrity issues, and significant customer support burdens. This weakness directly impacts delivery speed, as teams must spend more time debugging production issues than building new value.

A secondary theme is Security Exposure. The security score of 65% indicates known vulnerabilities and a lack of automated checks. While not catastrophic, this leaves the system open to common attacks and compliance violations. The absence of automated security scanning in the build pipeline means security regressions are caught late, if at all, increasing the cost and complexity of remediation. This exposure threatens the organization’s reputation and could lead to regulatory penalties.

The code itself is strong, with high maintainability and clear architecture, which is a genuine strength. However, this technical quality is negated by poor operational practices. The first action must be to integrate automated security scanning into the CI pipeline. This single step provides the highest leverage, preventing security regressions from reaching production and establishing a baseline for safe deployment. Once this gate is in place, the team can systematically improve other areas with confidence.

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 35% · 46% weightPerformance 63% · 25% weightMaturity 65% · 14% weightSecurity 65% · 8% weightArchitecture 67% · 4% weightCode Health 89% · 2% weight

Raise Readiness 35 → 70 (the Healthy floor) ⇒ headline 51 → ~65.

Code composition — where the lines go
Tests 100%
New since the last scan (25+)

25 finding(s) are new versus the previous scan (2026-09-16) — surfaced by this scheduled scan itself, no pull request required.

  • D1 · generator.getGenerator (cyclomatic 28) generation/core/generator.js
  • D2 · generator.getGenerator (cognitive 28) generation/core/generator.js
  • D2 · build.handler (cognitive 25) detox/local-cli/build.js
  • D4 · Duplicated block (15 lines × 2) detox/android/detox/src/main/java/com/wix/detox/espresso/action/DetoxSwipeWithLongPress.kt
  • D4 · Duplicated block (16 lines × 2) detox/ios/Detox/Invocation/Action.swift
  • D4 · Duplicated block (11 lines × 2) detox/ios/Detox/Invocation/Expectation.swift
  • D6 · Low cohesion: DetoxCoreListener (LCOM4 5) detox/runners/jest/testEnvironment/listeners/DetoxCoreListener.js
  • D6 · Low cohesion: NativeMatcher (LCOM4 4) detox/src/android/core/NativeMatcher.js
  • D29 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • D30 · REDACTED
  • PF3 · Sync-over-async blocking detox/src/utils/environment.js
  • PF3 · Sync-over-async blocking detox/src/devices/allocation/drivers/android/emulator/patchAvdSkinConfig.js
  • PF3 · Sync-over-async blocking detox/src/configuration/loadExternalConfig.js
  • PF3 · Sync-over-async blocking detox/local-cli/build.js
  • PF3 · Sync-over-async blocking examples/demo-react-native/e2e/globalSetup.ts
  • PF3 · Sync-over-async blocking scripts/change_react_native_version.js

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 — €21,000–€110,000
Cost to rebuild€21,000–€110,000 (0.2–0.7 person-years (351–1,113 h), ~1 engineer)
Domain complexityStandard — harder problems cost more per line
Quality factor0.7× (at 51% quality) — the last 20% of quality is most of the work
Size & shapeMedium · effort split not classified (source measured from disk; the effort-tier breakdown is a C#-only syntax walk)

This codebase represents roughly ~0.4 person-years of build effort (about ~€63,000 to rebuild). Its weakest lens is Readiness at 35% — the part of that asset most exposed by the findings below.

How we model this: boilerplate at a scaffolding rate + logic × domain Standard (×1.1) — vertical slice × 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
Resolve the 1 Leaked secret finding(s) in Secret Scanning — start with REDACTED.
+11.6 pts · Low effort · Secret Scanning
2
Add a SAST step to CI running what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing.
+14.8 pts · Medium effort · Security & performance tooling
3
Remove unused dependencies, declare unlisted imports explicitly, and demote type-/test-only packages to devDependencies.
+14.8 pts · Medium effort · Dependency Hygiene

Diagnosis — what's actually going on

Value concentrated against a weak lens · High · Value at risk
This is a Medium asset (~0.4 person-years to rebuild), and its weakest lens is Readiness at 35%. The operational and business risk on an asset this size concentrates there — that's where remediation buys the most protection.
Evidence: valuation: Medium, ~0.4 person-years rebuild (36,714 LoC) · weakest lens: Readiness 35%
→ 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 SAST step to CI running what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing. The rest can wait behind it.
Evidence: priority ranking: top of 5 ranked by impact/effort
→ Add a SAST step to CI running what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing.

Architecture — module dependency graph

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

arch DetoxTest DetoxTest DetoxTest:app DetoxTest:app android android android:detox android:detox detox detox detox-cli detox-cli generation generation

Architecture — module dependency matrix

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.)

377 modules, 113 dependencies. 2 dependency cycles across 6 modules, marked above the diagonal.

Showing the 40 most-connected modules; 337 more are not drawn.

Module dependency matrix. The row depends on the column; the number is how many type pairs create the dependency. A cell above the diagonal is part of a dependency cycle.
depends on →1 com.wix.detox.common2 com.wix.detox.common.proxy3 com.wix.detox.config4 com.wix.detox.espresso.action.common5 com.wix.detox.espresso.common6 com.wix.detox.espresso.idlingresources7 com.wix.detox.espresso.utils8 com.wix.detox.inquiry9 com.wix.detox.reactnative.helpers10 detox.runners.jest.testEnvironment11 detox.src.artifacts.templates.artifact.Artifact12 detox.src.artifacts.templates.plugin.ArtifactPlugin13 detox.src.devices.allocation.drivers.android.AndroidAllocDriver14 detox.src.devices.allocation.factories.base15 detox.src.devices.runtime.drivers.DeviceDriverBase16 detox.src.devices.runtime.factories.base17 detox.src.devices.validation.EnvironmentValidatorBase18 detox.src.errors.DetoxError19 com.wix.detox.adapters.server20 com.wix.detox.espresso21 com.wix.detox.espresso.scroll22 com.wix.detox.inquiry.DetoxBusyResource23 com.wix.detox.reactnative.idlingresources.factory24 com.wix.detox.reactnative.idlingresources.network25 com.wix.detox.reactnative.idlingresources.storage26 detox.src.artifacts.instruments.InstrumentsArtifactRecording27 detox.src.artifacts.templates.plugin.TwoSnapshotsPerTestPlugin28 detox.src.artifacts.templates.plugin.WholeTestRecorderPlugin29 detox.src.devices.runtime.drivers.android.AndroidDriver30 detox.src.devices.runtime.drivers.ios.IosDriver31 com.wix.detox32 com.wix.detox.espresso.action33 com.wix.detox.espresso.registry34 com.wix.detox.reactnative.idlingresources35 detox.src.artifacts.instruments.InstrumentsArtifactPlugin36 detox.src.artifacts.screenshot.ScreenshotArtifactPlugin37 detox.src.artifacts.templates.plugin.StartupAndTestRecorderPlugin38 detox.src.artifacts.video.VideoArtifactPlugin39 com.wix.detox.reactnative40 detox.src.artifacts.log.LogArtifactPlugin
1 com.wix.detox.common
2 com.wix.detox.common.proxy
3 com.wix.detox.config
4 com.wix.detox.espresso.action.common
5 com.wix.detox.espresso.common
6 com.wix.detox.espresso.idlingresources
7 com.wix.detox.espresso.utils
8 com.wix.detox.inquiry
9 com.wix.detox.reactnative.helpers
10 detox.runners.jest.testEnvironment
11 detox.src.artifacts.templates.artifact.Artifact
12 detox.src.artifacts.templates.plugin.ArtifactPlugin
13 detox.src.devices.allocation.drivers.android.AndroidAllocDriver
14 detox.src.devices.allocation.factories.base
15 detox.src.devices.runtime.drivers.DeviceDriverBase
16 detox.src.devices.runtime.factories.base
17 detox.src.devices.validation.EnvironmentValidatorBase
18 detox.src.errors.DetoxError
19 com.wix.detox.adapters.server14
20 com.wix.detox.espresso2
21 com.wix.detox.espresso.scroll21
22 com.wix.detox.inquiry.DetoxBusyResource14
23 com.wix.detox.reactnative.idlingresources.factory4
24 com.wix.detox.reactnative.idlingresources.network1
25 com.wix.detox.reactnative.idlingresources.storage11
26 detox.src.artifacts.instruments.InstrumentsArtifactRecording1
27 detox.src.artifacts.templates.plugin.TwoSnapshotsPerTestPlugin1
28 detox.src.artifacts.templates.plugin.WholeTestRecorderPlugin1
29 detox.src.devices.runtime.drivers.android.AndroidDriver1
30 detox.src.devices.runtime.drivers.ios.IosDriver1
31 com.wix.detox15
32 com.wix.detox.espresso.action111141
33 com.wix.detox.espresso.registry212
34 com.wix.detox.reactnative.idlingresources11312
35 detox.src.artifacts.instruments.InstrumentsArtifactPlugin1
36 detox.src.artifacts.screenshot.ScreenshotArtifactPlugin1
37 detox.src.artifacts.templates.plugin.StartupAndTestRecorderPlugin1
38 detox.src.artifacts.video.VideoArtifactPlugin1
39 com.wix.detox.reactnative11
40 detox.src.artifacts.log.LogArtifactPlugin1
Dependency, pointing down the layeringAbove the diagonal — part of a cycleThe module itself
com.wix.detox.common…ix.detox.common.proxycom.wix.detox.config…spresso.action.common…detox.espresso.common…resso.idlingresources….detox.espresso.utilscom.wix.detox.inquiry…x.reactnative.helpers….jest.testEnvironment…tes.artifact.Artifact…plugin.ArtifactPlugin…id.AndroidAllocDriver…cation.factories.base…vers.DeviceDriverBase…untime.factories.base…ironmentValidatorBase…src.errors.DetoxError…detox.adapters.servercom.wix.detox.espresso…detox.espresso.scroll…iry.DetoxBusyResource…lingresources.factory…lingresources.network…lingresources.storage…entsArtifactRecording…napshotsPerTestPlugin…oleTestRecorderPlugin…android.AndroidDriver…drivers.ios.IosDrivercom.wix.detox…detox.espresso.action…tox.espresso.registry…ative.idlingresources…rumentsArtifactPlugin…eenshotArtifactPlugin…AndTestRecorderPlugin…o.VideoArtifactPlugin…wix.detox.reactnative…log.LogArtifactPlugincom.wix.detox.common1…ix.detox.common.proxy2com.wix.detox.config3…spresso.action.common4…detox.espresso.common5…resso.idlingresources6….detox.espresso.utils7com.wix.detox.inquiry8…x.reactnative.helpers9….jest.testEnvironment10…tes.artifact.Artifact11…plugin.ArtifactPlugin12…id.AndroidAllocDriver13…cation.factories.base14…vers.DeviceDriverBase15…untime.factories.base16…ironmentValidatorBase17…src.errors.DetoxError18…detox.adapters.server19com.wix.detox.espresso20…detox.espresso.scroll21…iry.DetoxBusyResource22…lingresources.factory23…lingresources.network24…lingresources.storage25…entsArtifactRecording26…napshotsPerTestPlugin27…oleTestRecorderPlugin28…android.AndroidDriver29…drivers.ios.IosDriver30com.wix.detox31…detox.espresso.action32…tox.espresso.registry33…ative.idlingresources34…rumentsArtifactPlugin35…eenshotArtifactPlugin36…AndTestRecorderPlugin37…o.VideoArtifactPlugin38…wix.detox.reactnative39…log.LogArtifactPlugin40142211441111111115111141212113121111111+337 more modules (most-connected shown)

At a glance — Code Health · 89% · Strong ·

At a glance — Architecture · 67% · Adequate · gated by R9 ·

At a glance — Maturity · 65% · Adequate · gated by M2 ·

At a glance — Readiness · 35% · Weak · gated by R8, P3 ·

At a glance — Security · 65% · Adequate · gated by D30 ·

At a glance — Performance · 63% · Adequate ·

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
A06:2021 — Vulnerable & Outdated Components99High / Critical
A03:2021 — Injection7High / Critical
A02:2021 — Cryptographic Failures2High / Critical

Roadmap

First, integrate automated security scanning into the CI pipeline to block regressions before they land, while simultaneously cleaning up dependencies by removing unused packages and explicitly declaring imports. Next, implement a draft release process to allow manual intervention before artifacts are publicly available, and maintain a changelog to track what ships in each version. Finally, extend structured logging across all runnable modules to ensure full observability and diagnosability in production.

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

Do thisHelpsEffortDimension
Resolve the 1 Leaked secret finding(s) in Secret Scanning — start with REDACTED.+11.6 ptsLowSecret Scanning
Add a SAST step to CI running what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing.+14.8 ptsMediumSecurity & performance tooling
Remove unused dependencies, declare unlisted imports explicitly, and demote type-/test-only packages to devDependencies.+14.8 ptsMediumDependency Hygiene
Nothing pauses a release for a human: publish as a draft release (or gate the release job on a protected tag/manual dispatch) so a bad build can be stopped before users can download it.+14.4 ptsMediumDeployment & Rollback
Keep a changelog (e.g. Keep-a-Changelog) recording what shipped in each release.+14.4 ptsMediumRelease Hygiene
Extend structured logging to the remaining runnable modules so everything you run is diagnosable in production.+13.8 ptsMediumObservability
Add `tsc --noEmit` as package.json scripts and run them in CI.+13.7 ptsMediumTooling
Resolve the 7 No assertions (empty test) finding(s) in Test Quality — start with focused.test.js (2), AndroidExpect.test.js, early-syntax-error.test.js.+4.6 ptsLowTest Quality

File quality

Per-file score 0–10 — a quality signature. Of 116 files carrying findings, judged against the Production bar: 1% slop · 52% mixed · 47% near-clean.

FileScoreBandWorst signal
REDACTED0.0SlopDependency Vulnerabilities: Critical CVE: REDACTED
REDACTED4.4MixedSecret Scanning: Leaked secret: REDACTED
detox/src/android/AndroidExpect.test.js5.0MixedTest Quality: No assertions (empty test): runScript
detox/test/e2e/21.artifacts.test.js5.0MixedTest Quality: No assertions (empty test): should create device log for non-running app
detox/src/devices/runtime/RuntimeDevice.js5.9MixedCyclomatic Complexity: RuntimeDevice.launchApp (cyclomatic 16)
detox/src/devices/runtime/RuntimeDevice.test.js7.0MixedTest Quality: No assertions: with no args should launch app with defaults
detox/test/e2e/29.webview.test.js7.0MixedTest Quality: No assertions: should select all text in input
detox/test/e2e/pilot/07.pilot.assertions.test.js7.0MixedTest Quality: No assertions: should assert an element is visible (by text)
detox/test/e2e/pilot/02.pilot.actions.test.js7.0MixedTest Quality: No assertions: should tap on an element
detox/test/integration/e2e/focused.test.js7.0MixedTest Quality: No assertions (empty test): Only test
detox/test/e2e/35.overlay.test.js7.0MixedTest Quality: No assertions: should not be able to tap on elements
detox/test/e2e/03.actions.test.js7.0MixedTest Quality: No assertions: :android: should tap on an element at point
detox/test/e2e/28.drag-and-drop.test.js7.0MixedTest Quality: No assertions: should drag pan from left to left of the title
detox/test/e2e/19.crash-handling.test.js7.0MixedTest Quality: No assertions: Should throw error upon internal app crash
detox/test/e2e/22.launch-args.test.js7.1MixedTest Quality: No assertions: should preserve a shared arg in spite of app reselection
detox/src/ios/expectTwoApiCoverage.test.js7.1MixedTest Quality: No assertions: interactions
detox/test/e2e/14.network.test.js7.1MixedTest Quality: No assertions: Sync with short network requests - 100ms
detox/src/configuration/composeDeviceConfig.js7.2MixedCyclomatic Complexity: composeDeviceConfig.validateSystemUIConfig (cyclomatic 40)
detox/src/devices/validation/android/GenycloudEnvValidator.test.js7.2MixedTest Quality: No assertions: should accept the gmsaas exec if version is sufficiently new
detox/src/ios/expectTwo.test.js7.2MixedTest Quality: No assertions: should throw when not passing matcher to web()

How the grades work

Every finding carries one of four grades. Three say how serious it is. The fourth says this survey could not settle it — and it is a grade, not a gap.

Critical — 83

A definite problem that already costs you something and drags the score down: a missing authorisation check, a dependency with a known exploit, a build that does not reproduce. Failure here tends to cause failures elsewhere.

Serious — 460

Likely wrong, but not failing yet. It degrades the codebase over a longer horizon and can cause failures elsewhere — not urgent this week, not something to carry for two years either.

Minor — 44

Recorded, with no effect on how the codebase functions. Present so the survey is complete, not because it needs doing.

Could not be resolved — 34

Something this survey could not settle from the outside, and which could be critical or serious. Either a control was required and no positive evidence of it exists in the repository — a backup job that nothing shows was ever restored from proves nothing about restores — or our own analysis could not run over that part of the tree. This is not a clean result. These are excluded from the score rather than awarded a pass, so the number on the cover neither rewards nor penalises them: if you act on this survey without resolving them, you carry that risk yourself. Each one is named under Limitations.

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. 55 of 59 evaluated dimensions are computed purely by tools and static analysis (confidence 1.0); 4 documentation/naming judgement(s) are LLM-assisted and labelled advisory. Overall confidence is 0.9 — 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 — 59 dimensions across the health lenses
D1D2D3D4D5D6D9D10D12D13D14D15D16D17D19D20D21D26D27D28D29D30D34D35D36D43D44AX10AX3AX5AX7AX9M1M2M3M4P1P10P2P3P4P6PF2PF3R1R10R11R2R3R4R6R7R8R9X24X25X26X27X29

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, 569 of 587 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
Watchdog duplication detector (in-process)Code duplication1.0.0✓ deterministic
Coverage (coverlet / dotnet-coverage)Line & branch coverage10.0.400✓ deterministic
NuGet / dotnetOutdated, vulnerable & deprecated dependencies10.0.400✓ deterministic
git / LibGit2SharpChurn hotspots, knowledge concentration, history2.43.0 · 0.31.0✓ deterministic
gitleaks · semgrep · trivySecrets in history, SAST, CVEs, IaC & container, PII / GDPR1.86.0 · 0.69.3✓ deterministic
LLM (sampled · advisory)Documentation quality, ADR conformance, naming — sampled over a bounded sample; advisory, never a deterministic measurementLocal LLM◐ LLM · sampled · advisory

Every finding is locatable in findings.md. Run 01a0fa02-79d5-77a6-bdba-7c2273dcc6db.

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.

  • D4 Code Duplication — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. The 3 duplicated block group(s) on this row were found in the languages this pass could tokenize, and they do NOT cover all of this repository's production source: .m (6,531 lines, 15% of production source) went unread, because no language model this pass could load exposed a clone-unit token stream for those file kinds. Duplication in that source is UNMEASURED — its absence from the count above is a gap in this analyzer's language coverage, not a finding that the code is free of duplication. Duplication in .js is measured by R10 Code Duplication and is not part of this gap.
  • D8 Code Coverage — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Coverage NOT MEASURED: the JavaScript/TypeScript half could not be measured — the dependency install for detox/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. Coverage is excluded from the score rather than counted as a near-zero. This is OUR limitation, not a defect in the repo. In the meantime, commit (or publish into the working tree) the lcov/Cobertura report your CI produces and the real number is read on the next scan. You can widen what we reach: optional: commit the lcov/Cobertura report your CI produces, and the real number is read on the next scan.
  • D10 Test Quality — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. The 2,345 test(s) behind this row are the ones the JavaScript/TypeScript census could read, and this repository also carries at least 58 test source file(s) (.kt, .java) that it cannot: it reads JavaScript/TypeScript test declarations off disk, so a JUnit/pytest-style suite is invisible to it. Skipped tests, zero-assertion tests and the other quality signals on this row are UNMEASURED in that suite — their absence from the counts above is a gap in this analyzer's language coverage, not a finding that those tests are sound.
  • D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test reliability NOT MEASURED: the JavaScript/TypeScript suite could not be re-run in the analyzer sandbox — the dependency install for detox/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. This is OUR limitation, not a defect in the repo — it is excluded from the score.
  • D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test reliability for the jest suite in detox/ was NOT MEASURED: the dependency install for detox/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. This is OUR limitation, not a defect in the repository, and the suite is excluded from the measurement rather than counted against it.
  • D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test reliability for the jest suite in detox/test/ was NOT MEASURED: the dependency install for detox/test/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. This is OUR limitation, not a defect in the repository, and the suite is excluded from the measurement rather than counted against it.
  • D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test reliability for the jest suite in examples/demo-plugin/ was NOT MEASURED: the dependency install for examples/demo-plugin/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. This is OUR limitation, not a defect in the repository, and the suite is excluded from the measurement rather than counted against it.
  • D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test reliability for the jest suite in examples/demo-react-native/ was NOT MEASURED: the dependency install for examples/demo-react-native/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. This is OUR limitation, not a defect in the repository, and the suite is excluded from the measurement rather than counted against it.
  • D11 Test Reliability — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. Test reliability for the jest suite in generation/ was NOT MEASURED: the dependency install for generation/ failed in the analyzer sandbox (Error: Couldn't find any versions for "detox" that matches "workspace:*"), so the suite never ran. This is OUR limitation, not a defect in the repository, and the suite is excluded from the measurement rather than counted against it.
  • D14 License Compliance — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. This repository declares package.json, but the licence verdict published here was taken over its gem dependencies. Nothing was read about its npm dependencies' licensing in either direction, and a clean score on this card must not be read as covering them.
  • D22 Internal API Consistency — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. D22 identifies the intentionally-exposed surface from `IsPackable` and `.Contracts` project names, MSBuild conventions read off the loaded project set. This target exposed no such projects, so the probe never ran; this says nothing about whether the repository has a public API. This repository commits no C#/VB source at all, so there was never an MSBuild project set to read these conventions off. That is OUR side and it is a COLLECTOR gap, not an environment fault: it declares a published package (detox-cli/package.json), but no published-package marker D22 reads admitted any project here, so this ecosystem's public API has no collector, and the remedy is to write one — no change to the scan image can close it.
  • D27 Navigability — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. Tracing effort is measured over resolved call sites, and all 572 sampled here came from .js files. This repository's .m source is a material share of its production lines and contributed none, so the score above is a verdict about the part that was read. Not a finding that the unread half navigates well — it is unmeasured.
  • AX6 Interface segregation — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is computed over the public interfaces this run's compilations declare, and none was loaded, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • C1 Data Protection — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These personal data controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks personal data controls.
  • C2 Access Controls — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These authorization controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks authorization controls.
  • C3 Audit Trail — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These audit controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks audit controls.
  • C4 Data Retention — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These retention controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks retention controls.
  • C5 Data-Subject Rights — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These data-subject rights controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks data-subject rights controls.
  • ED5 Idempotency — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check finds retry-prone mutations by walking the repository's declared types, and NONE was loaded on this run, so it had nothing to look at. That is a limit of the analyzer's reach — it reads .NET projects — not a finding that this repository has no command handlers or message consumers.
  • GD1 Unfinished & placeholder code — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • IC1 Incompleteness & stubs — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • P5 DR & Backup — not measured this run — This is a true statement about the repository that carries nothing for its owner to act on, so it is reported here rather than as a defect in their code. No backup/snapshot/replication config, RTO/RPO or restore-procedure documentation was found — and no production persistence was detected either (no data-access packages, no data-store services, no database resources), so there is nothing in this repository whose loss a DR control would recover. If this system's data lives in a platform or ops repo we can't see, that's where the DR evidence belongs.
  • PF3 Async & latency hygiene — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. Those languages colour their functions async, so blocking inside them is the same defect this card counts elsewhere, but their blocking vocabulary is not modelled yet. That is a gap in this analyzer's language reach — not a finding that the code is free of it.
  • R10 Code Duplication — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. 13 further occurrence(s) are not listed individually; the score already reflects all 53.
  • R4 Test Coverage — measured, with a gap in what it reached — Watchdog measured this, but not all of it. What it did not reach is a gap on our side — a collector, parser or image we have not built yet — so the numbers on that dimension cover less than the repository, and the part left out is not evidence that it would have passed. 21 further occurrence(s) are not listed individually; the score already reflects all 61.
  • S1 Web-Security Posture — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. These web-security controls are read from declarative annotations, request middleware, entity/column names and guard methods in a C# source model, and none was loaded on this run, so there was nothing to gather. That is a gap in this analyzer's language reach — not a finding that the repository lacks web-security controls.
  • X1 Async correctness — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X12 Unreachable branch — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X13 Undrained process stream — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X14 Bypassable address classification — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X15 Unvalidated length from an untrusted reader — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X16 Unfloored truncation loop — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X17 Uncapped recursion over a caller-supplied document — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X18 Disposal-pattern correctness — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X19 Unrestored process-global state — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X2 Cancellation propagation — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X20 Mistyped argument guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X21 Side-effecting pattern guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X22 Contradicted release guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X23 Unguarded diagnostic materialisation — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X28 Index access outside its own emptiness guard — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check reads C# syntax, and Scala source only, and no C# was loaded and no Scala was found in this repository, so it had nothing of this repository's product to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X3 Exception handling — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X30 Support guard that admits what it rejects — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check reads C# syntax, and Scala source only, and no C# was loaded and no Scala was found in this repository, so it had nothing of this repository's product to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X4 Structured logging — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X5 Nullable reference types — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. This check is implemented over the C# syntax tree, and no C# was loaded on this run, so it had nothing to read. That is a gap in this analyzer's language reach — not a finding that the repository is free of what this check looks for.
  • X7 Silent fallback defaults — not measured this run — Watchdog could not measure this here. That is a gap on our side — a collector, parser or image we have not built yet — and it is neither a defect in this repository nor evidence that the check would have passed. X7 measured the part of this repository it reads (C#, Python, TypeScript/JavaScript, Rust, Go, Java and Kotlin), and its Swift source is outside the check's reach, so the card covers only part of the product. That is a gap in this analyzer's language reach — not a finding that the unread source is free of silent defaults.

Repo exclusion declarations: 24 pattern(s) declared (.gitattributes linguist-generated/vendored, .editorconfig generated_code) excluded 0 source file(s) from code-quality scoring. Declarations are the repo's own visible statement that a tree is machine-written or vendored — auditable in any diff, honored by GitHub the same way.

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 — an in-process token-stream comparison over sliding windows, with type-aware normalization — so it finds copy-paste, not semantic duplication expressed differently. Committed machine-written code (scaffolded migrations, designer/codegen output, protobuf/OpenAPI stubs, model snapshots) is EXCLUDED — its repetition is the tool's, not the team's — so the score reflects hand-written duplication only.
  • D5 Coupling: Coupling is measured between projects/assemblies — runtime coupling through DI, reflection, messaging or shared databases is invisible to a static reference graph.
  • D6 Cohesion (LCOM4): LCOM4 cohesion is syntactic — it infers connectivity from which methods touch which fields/methods by name, not from real runtime behaviour or intent.
  • D9 Test Distribution: The test-pyramid shape is inferred from project/folder naming and references, with a single test host bucketed per-file by its path tier and content signals — a suite that names tiers unconventionally and gives no per-file signal can still be mis-bucketed.
  • D10 Test Quality: Assertion density is structural — it cannot tell a meaningful behavioural assertion from a trivial one, only that an assertion is present.
  • D12 Dependency Hygiene: Dependency health reads manifests and lockfiles — a vulnerability in a vendored/copied dependency, or risk from how a dependency is actually used, is outside this view.
  • D13 Secret Scanning: Secret detection is signature- and entropy-based on the current tree — a secret that does not match a known pattern, or one already rotated, will not be flagged (a clean scan is "nothing matched", not "no secrets exist").
  • D14 License Compliance: License compatibility is checked against declared package metadata and a policy — mislabelled or missing license metadata, and obligations that depend on how you distribute, are not resolved here.
  • D15 Churn × Complexity Hotspots: Churn hotspots come from git history — a freshly imported or squashed repository has no churn signal, and recent rewrites can mask a historically risky file.
  • D16 Bus Factor: Bus-factor is a time-decayed model of commit attribution (who has recently, repeatedly worked a file), not comprehension — pairing, review and reading-without-committing spread knowledge it can't see; bot commits and shared accounts still distort it.
  • D17 Explicit Debt: Acknowledged-debt signals (TODO/FIXME, suppressions, dead code) are textual — undocumented debt that nobody marked, and debt that lives in design rather than annotations, is invisible. Committed machine-written code (scaffolded migrations, designer/codegen output, generated stubs) is excluded — it is never the team's dead code to delete.
  • 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. Its critique rows are drawn from a closed category vocabulary and each row means the same thing in every run, so two scans can be compared row by row; the SET that fires is still a sample, and does not repeat exactly. Measured on one frozen input, six scans at one engine SHA: 2-5 critique rows per scan, 8 distinct rows across the six, 3 of those 8 seen in only one scan. So a D19 row is evidence about the documentation, but a COUNT of D19 rows is not a quantity — never read a change in it as an improvement or a regression.
  • D20 ADR Quality: ADR quality is an LLM read of the decision records present — it cannot know about decisions made and never recorded, and its verdict is sampled and advisory.
  • D21 Naming Consistency: Naming quality is an LLM judgement over a bounded sample — it assesses clarity/consistency of the names it sees, not domain-correctness, and is advisory.
  • D26 Project Cohesion: Project focus is sized from members/namespaces per project — a project that is broad by deliberate design reads the same as one that has sprawled.
  • D27 Navigability: Indirection/navigability is structural — it measures hops to follow a call, not whether that indirection buys real flexibility or just ceremony.
  • D28 Secrets (history): Secret-history scanning sweeps the git log for known patterns — a secret that predates the available history, or never matched a signature, is not found (clean means "nothing matched in the history we can see").
  • D29 Static Analysis (SAST): SAST findings are pattern-based (semgrep) — it finds classes of bug it has rules for; logic flaws, auth/authorization gaps and issues needing runtime context are out of reach (and clean means "no rule matched").
  • D30 Dependency Vulnerabilities: CVE matching depends on accurate package/version metadata and on the advisory databases — a vulnerability with no published advisory, or in code not declared as a dependency, is not seen. Coverage needs a RESOLVED graph: an unpinned requirements.txt, or a pom without a resolved build, yields partial coverage rather than a clean verdict. An ecosystem the analyzer cannot scan is reported as unmeasured, never as clean.
  • 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.
  • D43 Malicious Dependencies: Only packages some vulnerability database has already NAMED as malicious are seen — a compromise published in the last hours, or never reported at all, is invisible here, and this dimension reading 10 is not evidence that a dependency is trustworthy. There is no typosquat or dependency-confusion analysis: a package nobody has reported is simply absent from the feeds. Coverage is the dependency scan's: an ecosystem that could not be scanned is disclosed as unmeasured, never as clean.
  • D44 Platform End-of-Life: The support table is FROZEN, so it goes out of date by losing RECALL: a release that ended support after the table was written is missed until the table is refreshed, and this dimension reading 10 is not evidence that a platform is current. Only platforms the repository DECLARES in a place this pass reads are seen — a runtime named only in a Dockerfile (D31's subject), in a CI workflow (D29's), or in a file this pass does not parse (go.mod, a REDACTED ruby directive) is invisible here, which is why a repository declaring none of them abstains rather than scoring. Only frameworks with a PUBLISHED support policy are tracked: React, Flask and Express publish none, so their age cannot be judged and their absence from a report is not a statement that they are supported.
  • AX10 Code composition: Role is inferred from namespace/folder convention, not semantics — a domain concept living in a folder named "Services" reads as application, and the split is lines-of-code, not business value. The business-logic-share score is a SOFT, FLOORED signal: it contributes to the Architecture lens but is floored at the Critical gate, so an infrastructure-heavy design (a gateway, an ETL, a driver) is legitimately low without being nuked to zero.
  • AX9 CQS / query purity: Handlers are found by interface/name convention — a query handler using neither is not seen. Mutation is a resolved write/publish invocation (SaveChanges/repository/bus), so a write hidden behind a hand-rolled wrapper, reflection, or a string-keyed service locator resolves to a non-persistence type and isn't flagged; it detects that a query writes state, not whether the write is a legitimate read-side cache update. Clean means "no resolved write/publish in a query body", not a proof of CQS purity.
  • 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 (4): D19, D21, D26, M4 (model: Local LLM). For these, a model reads a bounded sample and sets the numeric score; each names its own sample and method on its card. They are sampled and advisory by design: they vary at the margins between runs and are never a deterministic measurement. Every other score in this report is tool-computed at confidence 1.0.

Dimensions

D1 · Cyclomatic Complexity7.4 / 10Strong✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 7.4 / 10 · rule-coverage 100% · ceiling Prevented

20 method(s) exceeded the cyclomatic complexity threshold of 15; the worst was composeDeviceConfig.validateSystemUIConfig at 40. A further 4 method(s) were over the threshold but excluded as flat dispatchers (a long switch/match over independent cases: many branches, almost no nesting), the largest being ElementType.asString at 84 — they are counted neither in the figure above nor in this dimension's score. 3 files carry no cyclomatic complexity row at all for this reason — every one of their over-threshold methods was excluded, so the exclusion is disclosed nowhere in the file itself: detox/ios/DetoxXCUITestRunner/DetoxXCUITestRunner/Extensions/ElementType+Extensions.swift (ElementType.asString at 84), generation/core/global-functions.js (sanitize_uiAccessibilityTraits at 19), generation/core/global-functions.js (global-functions.sanitize_uiAccessibilityTraits at 19). They are named here because the per-file figures other dimensions report are taken BEFORE this exclusion, so such a file can show a high maximum complexity elsewhere in this report and nothing here, with nothing to reconcile the two.

composeDeviceConfig.validateSystemUIConfig (cyclomatic 40)detox/src/configuration/composeDeviceConfig.js:69
DetoxManager.webSocket (cyclomatic 35)detox/ios/Detox/DetoxManager.swift:234
composeDeviceConfig.validateDeviceConfig (cyclomatic 31)detox/src/configuration/composeDeviceConfig.js:159
generator.getGenerator (cyclomatic 28)generation/core/generator.js:10
AppleSimUtils.setPermissions (cyclomatic 24)detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:33

+ 7 more group(s) — more in Appendix A; the complete list is findings.md.

What to do

  1. Resolve the 1 composeDeviceConfig.validateSystemUIConfig (cyclomatic 40) finding(s) in Cyclomatic Complexity — start with composeDeviceConfig.js. — One of this dimension's main actionable groups (1 warning-level).
  2. Resolve the 1 DetoxManager.webSocket (cyclomatic 35) finding(s) in Cyclomatic Complexity — start with DetoxManager.swift. — One of this dimension's main actionable groups (1 warning-level).
  3. Resolve the 1 composeDeviceConfig.validateDeviceConfig (cyclomatic 31) finding(s) in Cyclomatic Complexity — start with composeDeviceConfig.js. — One of this dimension's main actionable groups (1 warning-level).
  4. Enforce Cyclomatic Complexity in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

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

D2 · Cognitive Complexity6.5 / 10Adequate✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 6.5 / 10 · rule-coverage 100% · ceiling Prevented

25 method(s) exceeded the cognitive complexity threshold of 15; the worst was composeDeviceConfig.validateSystemUIConfig at 64.

composeDeviceConfig.validateSystemUIConfig (cognitive 64)detox/src/configuration/composeDeviceConfig.js:69
composeDeviceConfig.validateDeviceConfig (cognitive 48)detox/src/configuration/composeDeviceConfig.js:159
DetoxManager.webSocket (cognitive 47)detox/ios/Detox/DetoxManager.swift:234
composeAppsConfig.composeAppsConfigFromAliased (cognitive 30)detox/src/configuration/composeAppsConfig.js:36
generator.getGenerator (cognitive 28)generation/core/generator.js:10

+ 11 more group(s) — more in Appendix A; the complete list is findings.md.

What to do

  1. Resolve the 1 composeDeviceConfig.validateSystemUIConfig (cognitive 64) finding(s) in Cognitive Complexity — start with composeDeviceConfig.js. — One of this dimension's main actionable groups (1 warning-level).
  2. Resolve the 1 composeDeviceConfig.validateDeviceConfig (cognitive 48) finding(s) in Cognitive Complexity — start with composeDeviceConfig.js. — One of this dimension's main actionable groups (1 warning-level).
  3. Resolve the 1 DetoxManager.webSocket (cognitive 47) finding(s) in Cognitive Complexity — start with DetoxManager.swift. — One of this dimension's main actionable groups (1 warning-level).
  4. Enforce Cognitive Complexity in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

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

D3 · God Classes5.3 / 10Adequate✓ 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: Documented → Verified → Prevented · effective 5.3 / 10 · rule-coverage 100% · ceiling Prevented

15 god class(es) detected.

TooManyMethods: DetoxConfigErrorComposer · ×11detox/src/errors/DetoxConfigErrorComposer.js:9
MethodTooLong: ElementType.asString · ×2detox/ios/DetoxXCUITestRunner/DetoxXCUITestRunner/Extensions/ElementType+Extensions.swift:11
FileTooLong: ios/expectTwo.js · ×2detox/src/ios/expectTwo.js

What to do

  1. Resolve the 11 TooManyMethods finding(s) in God Classes — start with DetoxConfigErrorComposer.js, DeviceDriverBase.js, RuntimeDevice.js. — One of this dimension's main actionable groups (11 warning-level).
  2. Resolve the 2 MethodTooLong finding(s) in God Classes — start with ElementType+Extensions.swift, DetoxManager.swift. — One of this dimension's main actionable groups (2 warning-level).
  3. Resolve the 2 FileTooLong finding(s) in God Classes — start with expectTwo.js, DetoxConfigErrorComposer.js. — One of this dimension's main actionable groups (2 warning-level).
  4. Enforce God Classes in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

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

D4 · Code Duplication9.9 / 10Stronggated by 3 serious findings✓ 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: Documented → Verified → Prevented · effective 9.9 / 10 · rule-coverage 100% · ceiling Verified

3 duplicated block group(s) detected. Measured on part of this repository only: .m (15% of production source) was not exposed to the token comparison, so duplication there is unmeasured and is not in this count. Measured on part of this repository only: .js (54% of production source) was not exposed to THIS dimension's token comparison and is not in this count; duplication there is measured by R10 Code Duplication, the frontend lens's card running the same clone algorithm over the JS/TS token stream.

Duplicated block (15 lines × 2)detox/android/detox/src/main/java/com/wix/detox/espresso/action/DetoxSwipeWithLongPress.kt:23
Duplicated block (16 lines × 2)detox/ios/Detox/Invocation/Action.swift:553
Duplicated block (11 lines × 2)detox/ios/Detox/Invocation/Expectation.swift:141

What to do

  1. Resolve the 1 Duplicated block (15 lines × 2) finding(s) in Code Duplication — start with DetoxSwipeWithLongPress.kt. — One of this dimension's main actionable groups (1 warning-level).
  2. Resolve the 1 Duplicated block (16 lines × 2) finding(s) in Code Duplication — start with Action.swift. — One of this dimension's main actionable groups (1 warning-level).
  3. Resolve the 1 Duplicated block (11 lines × 2) finding(s) in Code Duplication — start with Expectation.swift. — One of this dimension's main actionable groups (1 warning-level).
  4. Enforce Code Duplication in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.

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

D5 · Coupling10.0 / 10Exemplary✓ Tool-verified

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

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

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

Maturity: Documented → Verified → Prevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Prevented

7 production modules (Gradle+npm), 0 dependency cycle(s), 0 unstable depended-on module(s). Read from the build's own module declarations; edges a convention plugin adds from buildSrc or build-logic are not visible there; 0 module(s) off the main sequence, with abstractness counted on 2 of the 7 (the rest declare no modelled class or interface, export only macros, or have no source directory of their own).

✓ On the Gold path — maintain.

Detailed fixes: d5_recommendation.md.

D6 · Cohesion (LCOM4)9.8 / 10Stronggated by 2 serious findings✓ Tool-verified

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

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

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

Maturity: Documented → Verified → Prevented · effective 9.8 / 10 · rule-coverage 100% · ceiling Verified

2 of 121 classes have LCOM4 above 3.

Low cohesion: DetoxCoreListener (LCOM4 5) · ×2detox/runners/jest/testEnvironment/listeners/DetoxCoreListener.js:12

What to do

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

Detailed fixes: d6_recommendation.md · top locations in Appendix A, every location in findings.md.

D9 · Test Distribution7.6 / 10Strong✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 7.6 / 10 · rule-coverage 100% · ceiling Documented

2347 test methods: 1905 unit, 11 integration, 0 BDD, 431 e2e. The JavaScript/TypeScript suite contributes 2345 `it`/`test` case(s) across 221 test file(s) declaring at least one beside 2 .NET test method(s); its tier split is read from package names and paths only.

What to do

  1. Improve Test Distribution — currently 7.6/10. — 2347 test methods: 1905 unit, 11 integration, 0 BDD, 431 e2e. The JavaScript/TypeScript suite contributes 2345 `it`/`test` case(s) across 221 test file(s) declaring at least one beside 2 .NET test method(s); its tier split is read from package names and paths only.

Detailed fixes: d9_recommendation.md.

D10 · Test Quality8.4 / 10Adequategated by 7 critical findings✓ Tool-verified

What it measures: Whether the tests truly assert behaviour rather than just running the code.

Method: Per-test assertions, skips, and mock references analyzed via Roslyn; structured skip-reason tags (BUG:/ENV:) separate documented deferrals from debt. Deterministic.

Maturity: Documented → Verified → Prevented · effective 8.4 / 10 · rule-coverage 100% · ceiling Prevented

18 skipped (18 with a documented reason), 245 zero-assertion, no mocking-framework packages referenced (hand-written doubles or no mocking) across 2345 tests. Measured on the JavaScript/TypeScript suite only — at least 58 test source file(s) (.kt, .java) went unread, so its test quality is unmeasured and is not in these counts.

No assertions (empty test): runScript · ×7detox/src/android/AndroidExpect.test.js:556
No assertions: should confirm known type ${type} · ×238detox/src/environmentFactory.test.js:32
Skipped (documented): (unnamed test) · ×18detox/src/utils/callsites.test.js:11

What to do

  1. Resolve the 7 No assertions (empty test) finding(s) in Test Quality — start with focused.test.js (2), AndroidExpect.test.js, early-syntax-error.test.js. — One of this dimension's main actionable groups (7 issue-level).
  2. Resolve the 238 No assertions finding(s) in Test Quality — start with AndroidExpect.test.js (28), RuntimeDevice.test.js (19), 02.pilot.actions.test.js (17). — One of this dimension's main actionable groups (238 warning-level).
  3. Enforce Test Quality in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

Detailed fixes: d10_recommendation.md · top locations in Appendix A, every location in findings.md.

D12 · Dependency Hygiene9.8 / 10Stronggated by 1 serious finding✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 9.8 / 10 · rule-coverage 100% · ceiling Verified

0 outdated direct gem(s), 1 pinning defect(s). 2 declaration(s) graded against rubygems.org, none of them against a committed REDACTED.lock — this repository commits none, which a published gem correctly does not, so currency is read off the declared requirements: a declaration that does not cap below the current release resolves to it on `bundle install`. 2 declaration(s) carry a requirement that EXCLUDES the current release; that is a deliberate constraint (a supported-version ceiling or a held-back CI pin) and is counted, not charged. Whether any of these gems is DEPRECATED or YANKED is not graded — rubygems.org publishes no deprecation marker, and a yank removes a version rather than flagging it. Whether any is UNMAINTAINED is not graded either: no registry publishes a maintenance status, and release age does not stand in for one. Whether any is UNUSED is a source question, not a registry one. Known CVEs in this dependency graph are D30's question, read from the manifest there.

No REDACTED.lock committed by an application

What to do

  1. Resolve the 1 No REDACTED.lock committed by an application finding(s) in Dependency Hygiene. — One of this dimension's main actionable groups (1 warning-level).
  2. Enforce Dependency Hygiene in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Verified — provenance only; does not change the score.

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

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

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

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

Maturity: Documented → Verified → Prevented · effective 5.0 / 10 · rule-coverage 100% · ceiling Prevented

1 secret(s) detected.

REDACTED

What to do

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

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

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

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

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

Maturity: Documented → Verified → Prevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Verified

0 of 2 shipped gem(s) use a banned license. Licences were resolved from rubygems.org over the 2 runtime gem(s) this repository declares. It commits no REDACTED.lock to close that set over, so the verdict covers the declarations rather than the whole resolved graph. Development-group and `add_development_dependency` gems are excluded: they are not distributed with this repository. ★ COVERAGE OF THIS VERDICT: it grades this repository's gem dependencies and nothing else. The repository also declares package.json, and the licences of those dependencies were NOT read by this pass — a gap in this engine's coverage, not a statement about them. So this result says the graded closure carries no banned licence; it does NOT say this repository's licensing is clear.

✓ On the Gold path — maintain.

Detailed fixes: d14_recommendation.md.

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

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

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

Maturity: Documented → Verified → Prevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

No churn × complexity hotspots in the window.

✓ On the Gold path — maintain.

Detailed fixes: d15_recommendation.md.

D16 · Bus Factor9.8 / 10Exemplary✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 9.8 / 10 · rule-coverage 100% · ceiling Documented

3 source file(s) have their living knowledge concentrated in one author (≥90% of recent, decayed contribution). The largest is detox/ios/Detox/Utilities/ViewHierarchyGenerator.swift. Counted over 143 of the 557 production source files in this repository: 404 are under the ~2,400-byte size floor this dimension measures over, and the remaining 10 have no attributable history left to measure.

Off-boarding risk: anonymized user #1
Further sole-owners (lower concentration)

✓ On the Gold path — maintain.

Detailed fixes: d16_recommendation.md · top locations in Appendix A, every location in findings.md.

D17 · Explicit Debt9.8 / 10Stronggated by 12 serious findings✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 9.8 / 10 · rule-coverage 100% · ceiling Prevented

12 deducted task-comment markers across 12917 LoC (0.1/KLoC) → score 9.8. Task comments only: this repository's language is read without a compiler, so D17's suppression, dead-code and commented-out-code arms did not run and this score counts fewer marker kinds than a .NET repository's would.

TodoComment · ×10detox/android/detox/src/full/java/com/wix/detox/TestEngineFacade.kt:16
FixmeComment · ×2detox/android/detox/src/testFull/java/com/wix/detox/espresso/action/GetAttributesActionTest.kt:203

What to do

  1. Resolve the 10 TodoComment finding(s) in Explicit Debt — start with TestEngineFacade.kt (2), ReactSliderHelper.kt, BusyResourcesInquirer.kt. — One of this dimension's main actionable groups (10 warning-level).
  2. Resolve the 2 FixmeComment finding(s) in Explicit Debt — start with GetAttributesActionTest.kt, ReactSliderHelperTest.kt. — One of this dimension's main actionable groups (2 warning-level).
  3. Enforce Explicit Debt in CI to reach Verified (currently Documented). — Hardens enforcement from Documented toward Prevented — provenance only; does not change the score.

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

D19 · Documentation QualityExemplary◐ 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: Documented → Verified → Prevented · effective Exemplary / 10 · rule-coverage 100% · ceiling Documented

The repository's root README and the docs/contributing.md guide a reader through Detox as an end-to-end mobile testing framework with installation, usage examples, architecture, and contribution guidance. The README is clipped mid-document but its visible content (the 'Gray box end-to-end testing and automation framework for mobile apps' banner plus NPM badges) gives it the project overview; the docs/contributing.md covers installation, usage, architecture, and contributing with a clear structure. All documents are clipped by the scanner and do not carry missing sections among their outlines. The project's documentation is comprehensive and well-structured: the READMEs for each test/endpoint API (device, expect, matchers, pilots, system, webviews) are complete with usage examples, and architecture docs cover the artifacts subsystem, client-server communication, and a full component breakdown. The documents are all present and the outline sections exist; no document is clipped mid-body. This repository is well documented with 12 README files (device management, design principles, how detox works, third-party drivers) plus architecture/Docs markdown files totaling 72 documents. The overview is present in the device-management README and each document has a clear heading; installation, usage, contribution guidance, and license are all visible for the root repository.

Documentation: no project overview · ×5README.md

✓ On the Gold path — maintain.

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

D20 · ADR Quality0.0 / 10Critical✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 0.0 / 10 · rule-coverage 100% · ceiling Documented

No architecture decision records were found.

No ADRs found

What to do

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

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

D21 · Naming ConsistencyExemplary◐ 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: Documented → Verified → Prevented · 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.

D26 · Project Cohesion6.7 / 10Adequate✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 6.7 / 10 · rule-coverage 100% · ceiling Documented

1 of 6 build units (npm) flagged as possibly oversized/incoherent.

Split detox

What to do

  1. Resolve the 1 Split detox finding(s) in Project Cohesion. — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d26_recommendation.md · top locations in Appendix A, every location in findings.md.

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

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

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

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

Maturity: Documented → Verified → Prevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

27 % of calls cross a namespace and 0 % go through an interface, but 100 % of collaborators are co-located — so a call's collaborators sit together and tracing stays easy. Baseline: small — navigation cost is tolerated. Measured over the .js source only — this repository's .m was not sampled for call sites, so this score covers part of the tree, not all of it.

✓ On the Gold path — maintain.

Detailed fixes: d27_recommendation.md.

D28 · Secrets (history)9.0 / 10Adequategated by 1 critical finding✓ Tool-verified

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

Method: Secret scan via TWO gitleaks detect passes in an isolated checkout — the full git history, then a second --no-git pass over the working tree as it stands — merged and de-duplicated by (rule, file, line); each match flagged High. Both invocations are recorded in the audit trail. Exhaustive; when the tool is absent, or when its output cannot be parsed into the expected shape, the dimension is WITHHELD as an explicit measurement gap on our side — unscored and excluded from the lens, never a hedged middling score.

Maturity: Documented → Verified → Prevented · effective 9.0 / 10 · rule-coverage 100% · ceiling Documented

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

REDACTED

What to do

  1. Resolve the 1 High secret finding(s) in Secrets (history) — start with REDACTED. — One of this dimension's main actionable groups (1 issue-level).

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

D29 · Static Analysis (SAST)4.8 / 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: Documented → Verified → Prevented · effective 4.8 / 10 · rule-coverage 100% · ceiling Documented

7 finding(s): 0 critical, 3 high, 4 medium, 0 low. semgrep hit a parse error in 11 file(s) — `.github/ISSUE_TEMPLATE/HELP_WITH_USING_DETOX.yml`, `.github/ISSUE_TEMPLATE/config.yml`, `detox/android/gradlew` (line 72, line 178), `detox/ios/Detox/AppleInternals/DTXAppleInternals.h` (line 23, line 25, line 29, …), `detox/ios/Detox/DetoxAppDelegateProxy.h` (line 9, line 10, lines 14–16, …), … (+6 more) — so no absence of findings in the named regions is evidence of anything; rows reported elsewhere in those files are real. Fix the syntax error (or exclude the file deliberately) and re-scan to cover them. Separately, one or more rules could not re-parse an embedded snippet in 1 file(s) (e.g. a workflow `run:` block read as shell). Those files WERE scanned and their other rows are unaffected; only those rules' view of those snippets is missing.

REDACTED
REDACTED
REDACTED
REDACTED
REDACTED

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

What to do

  1. Resolve the 1 REDACTED finding(s) in Static Analysis (SAST) — start with REDACTED. — One of this dimension's main actionable groups (1 issue-level).
  2. Resolve the 1 REDACTED finding(s) in Static Analysis (SAST) — start with REDACTED. — One of this dimension's main actionable groups (1 issue-level).
  3. Resolve the 1 REDACTED finding(s) in Static Analysis (SAST) — start with REDACTED. — 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.

D30 · Dependency Vulnerabilities0.0 / 10Critical✓ Tool-verified

What it measures: Whether any dependency has a known published vulnerability (CVE), direct or transitive, in ANY ecosystem the repository declares — Dart pub, Elixir and Erlang via Hex, Go modules, Java and Kotlin via Maven/Gradle, JavaScript/npm, .NET/NuGet, PHP/Composer, Python/PyPI, RubyGems, Rust/Cargo and Swift.

Method: Dependency-CVE scan across every ecosystem the repository declares, scored ONCE. Three sources are unioned and deduplicated by advisory identity (rule id + alias closure, CVE<->GHSA) scoped to package+version, keeping the worst severity: `osv-scanner --recursive` over osv.dev for Dart pub, Elixir/Hex (and Erlang, whose `rebar.lock` syft first converts to a CycloneDX SBOM the scanner reads, with rows attributed back to the lock), Go, Java and Kotlin via Maven/Gradle (and Scala, whose sbt build's pinned direct declarations are written into a CycloneDX SBOM the scanner reads, with rows attributed back to the build file), npm, PHP/Composer, Python/PyPI, RubyGems, Rust/Cargo and Swift; `trivy fs --scanners vuln` for npm lockfiles; and `dotnet list package --vulnerable --include-transitive` for NuGet (with per-advisory collapse of the project x target-framework fan-out), plus a DECLARED-dependency arm that resolves a published gem's gemspec against rubygems.org where no REDACTED.lock is committed. `SeverityScore(c,h,m,l, normalizer 8.0)`. NotApplicable only when NO ecosystem is readable; if any applicable ecosystem could not be scanned the findings are REPORTED and the score is withheld. Supersedes the npm and OSV arms, retired 2026-09-05.

Maturity: Documented → Verified → Prevented · effective 0.0 / 10 · rule-coverage 100% · ceiling Documented

99 finding(s): 10 critical, 55 high, 27 medium, 7 low.

REDACTED
REDACTED
REDACTED
REDACTED
REDACTED

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

What to do

  1. Resolve the 54 High CVE finding(s) in Dependency Vulnerabilities — start with REDACTED (54). — One of this dimension's main actionable groups (54 issue-level).
  2. Resolve the 10 Critical CVE finding(s) in Dependency Vulnerabilities — start with REDACTED (10). — One of this dimension's main actionable groups (10 issue-level).
  3. Resolve the 1 High vulnerability finding(s) in Dependency Vulnerabilities — start with REDACTED. — One of this dimension's main actionable groups (1 issue-level).

Detailed fixes: d30_recommendation.md · top locations in Appendix A, every location in findings.md.

D34 · Knowledge Freshness5.6 / 10Adequate✓ 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: Documented → Verified → Prevented · effective 5.6 / 10 · rule-coverage 100% · ceiling Documented

67 of 153 significant source file(s) are orphaned — their living knowledge has decayed to nothing, so no one currently understands them. The largest is detox/android/detox/src/main/java/org/joor/Reflect.java. Counted over 153 of the 557 production source files in this repository: the rest are under the ~2,400-byte size floor this dimension measures over.

Orphaned knowledgedetox/android/detox/src/main/java/org/joor/Reflect.java
Further orphaned files (smaller)

What to do

  1. Resolve the 1 Orphaned knowledge finding(s) in Knowledge Freshness — start with Reflect.java. — One of this dimension's main actionable groups (1 issue-level).
  2. Resolve the 1 Further orphaned files (smaller) finding(s) in Knowledge Freshness. — One of this dimension's main actionable groups (1 recommendation-level).

Detailed fixes: d34_recommendation.md · top locations in Appendix A, every location in findings.md.

D35 · Change Coupling9.9 / 10Stronggated by 4 serious findings✓ 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. A non-source file is never a coupling PARTICIPANT either: documentation, schemas, config and data files are dropped with the rest, so a code↔docs pair — a command and the reference page that restates it — is not reported however strongly the two co-change; nor is coupling that runs THROUGH a build step or config file.

Maturity: Documented → Verified → Prevented · effective 9.9 / 10 · rule-coverage 100% · ceiling Documented

Strongest change-coupling: RuntimeDevice.js↔DeviceDriverBase.js 81%; DetoxAction.java↔NativeElement.js 62%; NativeElement.js↔DetoxAction.js 62%

Change coupling: RuntimeDevice.js ↔ DeviceDriverBase.js · ×4detox/src/devices/runtime/RuntimeDevice.js

What to do

  1. Resolve the 4 Change coupling finding(s) in Change Coupling — start with RuntimeDevice.js, DetoxAction.java, NativeElement.js. — One of this dimension's main actionable groups (4 warning-level).

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

D36 · Supply-chain Provenance & Signing5.0 / 10Adequate✓ Tool-verified

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

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

Maturity: Documented → Verified → Prevented · effective 5.0 / 10 · rule-coverage 100% · ceiling Documented

2/4 supply-chain integrity signals present (provenance, signing, SBOM, pinned actions).

REDACTED
REDACTED
REDACTED
REDACTED
REDACTED

What to do

  1. Resolve the 1 REDACTED finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 warning-level).
  2. Resolve the 1 REDACTED finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 warning-level).
  3. Resolve the 1 REDACTED finding(s) in Supply-chain Provenance & Signing. — One of this dimension's main actionable groups (1 recommendation-level).

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

D43 · Malicious Dependencies10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether any dependency the repository declares is published as MALICIOUS rather than merely vulnerable — a package that is an attacker's work, in any ecosystem osv-scanner reads. Scored apart from D30 because the answer is binary: there is no safe version to upgrade to, and the fix is to remove the package and rotate every credential it could have read.

Method: The same dependency scan D30 reads, partitioned on the scanner's own classification rather than rescanned: a row is MALICIOUS when its id is in the `MAL-` space (the ossf/malicious-packages feed) OR its `database_specific.cwe_ids` carries `CWE-506` ("Embedded Malicious Code"). Both channels are structural; the summary text is deliberately NOT read, because a malicious-package record whose summary says only "Critical severity vulnerability" is a real shape ([GHSA redacted]) and a text matcher misses it. Scored BINARY: any surviving row is 0, whatever its severity and however many CVEs sit beside it — a hostile dependency is not a quantity. Applicability and degradation are D30's: NotApplicable only when no ecosystem is readable, and an unscannable ecosystem degrades rather than reading clean. SCORED, not informational.

Maturity: Documented → Verified → Prevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

No dependency in any ecosystem this repository declares is published as malicious.

✓ On the Gold path — maintain.

Detailed fixes: d43_recommendation.md.

D44 · Platform End-of-Life10.0 / 10Exemplary✓ Tool-verified

What it measures: Whether anyone still ships security patches for the platform this repository RUNS ON — the runtime it pins and the framework majors its own constraints hold it to. Separate from D12 because the question differs: a current Django on an end-of-life Python is perfectly up to date and completely unsupported, and the fix is a migration rather than a version bump. What the repository says it merely SUPPORTS is never charged.

Method: End-of-life PLATFORM read from the repository's own declarations and graded against a FROZEN, dated table of vendor support dates — no network, no feed, no API, so this dimension answers identically inside a closed scan fence. Two subjects: a RUNTIME the project pins (a single or all-end-of-life TargetFramework, a .nvmrc or .python-version, a requires-python CAP) and a FRAMEWORK major a dependency constraint cannot move off (a caret, tilde or exact version; `vue@^2.7.16` pins Vue 2). A FLOOR is deliberately never charged — `requires-python = ">=3.8"` states what a package SUPPORTS, not what it runs on — and a multi-target project is charged only when EVERY target is out of support. Runtime 4.0/product capped 8.0, framework 1.5 capped 4.5. The table is safe to freeze because a statement about support that ended in the past cannot become false: it loses recall as it ages, never precision, and a test asserts every entry predates the freeze date. Disjoint from D31 (a container image's OS layer) and D29 (the toolchain a CI workflow installs). Abstains when the repository declares no platform this pass reads — never scores it clean.

Maturity: Documented → Verified → Prevented · effective 10.0 / 10 · rule-coverage 100% · ceiling Documented

0 end-of-life runtime(s) and 0 end-of-life framework(s), read from 5 platform declaration(s) and 30 dependency declaration(s). This dimension reads what the repository says about ITSELF — a pinned target framework, a version file, a capped requires-python, a Rust toolchain pin, a framework major a constraint cannot move off. A FLOOR is deliberately never charged: `requires-python = ">=3.8"` states what the package SUPPORTS, not what it runs on, and a well-maintained library declares exactly that while running its own CI on a current release. The end-of-life facts are FROZEN and dated, so this dimension needs no network and answers identically inside a closed scan fence; as the table ages it loses recall and never precision, because a statement about support that ended in the past cannot become false. The OS layer of a container image is D31's question and the toolchain a CI workflow installs is D29's; this row is neither.

✓ On the Gold path — maintain.

Detailed fixes: d44_recommendation.md.

Frontend & cross-cutting dimensions

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

AX10 · Code composition9.2 / 10Exemplary✓ Tool-verified

Other · Architecture — How the codebase splits by code ROLE — domain, application, infrastructure, test, generated. The significance map behind the knowledge/coupling weighting, and a DDD signal in its own right: a thin domain core under fat infrastructure is the anemic-domain smell, quantified. How each file's role is decided, because the split is only as good as that: a generated name or a build-output tree makes it Generated, a test project makes it Test, and otherwise the file's NAMESPACE and PATH words are matched against fixed vocabularies in a fixed ORDER — domain, then infrastructure, then application — so a file whose words hit two layers is counted under the earlier one. A production file matching none of them counts as application, so that share reads 'application or unclassified' rather than a measured application layer. Roles come from naming convention, never from what the code does. On this repository the split was taken from the source tree on disk rather than from a loaded .NET workspace, so a file's role is decided by its PATH segments alone — no declared namespace was available to add to the evidence — and generated output is excluded from the census entirely rather than counted as a generated share.

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

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

What to do

  • The domain core is a small share of production code, but most of the rest matched no layer vocabulary at all — so this is not yet an anemic-domain finding. The namespace/path convention could not place that code, which makes the composition above a statement about the naming, not about the design. Name the layers (or check that the repository's conventions differ from the ones this check knows) before reading a thin domain into it.
AX3 · Project dependency cycles10.0 / 10Exemplary✓ Tool-verified

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

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

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.

AX7 · Slice cohesion10.0 / 10Exemplary✓ Tool-verified

Other · Architecture — Whether feature slices stay independent (no direct cross-slice references) — the discipline that makes vertical-slice architecture pay off.

Method: Roslyn scan (vertical-slice gated): feature slices resolved from namespaces (.Features.*, .Slices.*) or project names; cross-slice type references detected. Deterministic, traceable.

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

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

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

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

M1 · Documentation (README)7.4 / 10Strong✓ Tool-verified

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

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

What to do

  • Add a build/run (quick start) section to the root README — the first thing a newcomer needs.
  • Add an 'Architecture' / 'How it works' section to the root README — the high-level shape.
  • Add a README to the 12 of 19 project(s) that lack one — worth up to 1.3 pts.
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 numbered `NNNN-title` documents in any markup this check reads, 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 each file named `NNNN-title` in whatever markup those docs already use, 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 accuracy10.0 / 10Exemplary◐ Sampled · advisory

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

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

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

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

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

P10 · Library API & versioning10.0 / 10Exemplary○ Nothing flagged

Readiness · Readiness — For a library: a deliberate (small) public API surface and explicit semantic versioning so consumers can depend on it safely.

Method: Roslyn scan: public API surface area and semantic-versioning markers (SemVer attributes, changelog entries) for libraries; off .NET, a library is the ecosystem's publication act (an npm package that is not private and names an entry point, a PyPI distribution with a build system, a Rust library crate, a Maven/Gradle module that publishes, a Go module with no package main, a gemspec, a Composer library, a SwiftPM library product, a pub.dev or Hex package), its surface is the share of types the language model records as public (Rust, Swift, Java, Kotlin, Go, Dart; not measured where the model records no type visibility or, as in TypeScript, only module-level export), and its version is read from the manifest, a semver CHANGELOG, release tooling or semver git tags. Exhaustive, deterministic.

P2 · Observability6.4 / 10Adequate✓ Tool-verified

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

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

  • Only 4/5 runnable modules use logging (modules with no entry point or server are excluded — they are libraries a runnable module hosts). Silent: `detox-cli`.

What to do

  • Extend structured logging to the remaining runnable modules so everything you run is diagnosable in production.
  • Consider OpenTelemetry tracing/metrics (@opentelemetry/sdk-node) and a health-check endpoint (@godaddy/terminus or a /health route) for operability.
P3 · Security & performance tooling0.0 / 10Critical✓ Tool-verified

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

Method: Filesystem 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) as a CI step. What was searched, so you can tell an absence from a miss: the 16534 CI workflow file(s) in this repository, and the scanner and linter configuration checked in beside them. A scan that runs outside CI, one configured in your forge's web UI rather than in a committed file, or a tool whose name is none of those this check carries, is not seen — if that is your case the row is wrong, and saying so is more useful than adding a second scanner.

What to do

  • Add a SAST step to CI running what this repository's stack ships: spotbugs with find-sec-bugs — or `semgrep --config=auto`, which runs on any language — so a security regression fails the build instead of landing.
  • Enable Dependabot/Renovate or a dependency-review gate.
  • Add gitleaks/trufflehog in CI to block PRs that introduce committed secrets.
P4 · Deployment & Rollback5.0 / 10Adequate✓ Tool-verified

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

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

What to do

  • Nothing pauses a release for a human: publish as a draft release (or gate the release job on a protected tag/manual dispatch) so a bad build can be stopped before users can download it.
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.
PF2 · Allocation hygiene6.8 / 10Adequate✓ Tool-verified

Readiness · Performance — Whether the code is written to minimise allocations so it doesn't pressure its host's memory manager — buffer/slice views over copies, object pooling, stack or value-type allocation, and buffer writers. Reward-only: credited where present, never penalised where a simpler style is fine.

Method: Production-source scan: density (per 1k LoC) of allocation-aware APIs — in .NET Span/Memory, ArrayPool/ObjectPool, stackalloc, ValueTask, value-type structs, IBufferWriter, string.Create, SkipLocalsInit; off .NET, with comments and strings blanked, Go's sync.Pool, preallocated slices/maps, Grow, strconv.Append* and buf[:0] reuse; the JVM's NIO buffer views, MemorySegment, primitive collections, pools and literal presizes (plus Kotlin primitive arrays and value classes, Scala AnyVal and @specialized); Swift's reserveCapacity, ContiguousArray, withUnsafe* access and ~Copyable. Activated off .NET on the same floor (400 lines, and benchmarks or 8 uses); Rust and garbage-collected scripting languages are not applicable. Reward-only. Deterministic, syntax/text detection.

What to do

  • Raise allocation-aware density on the hot paths — currently 24 use(s) across 14,938 production line(s) (~1.6/1k). More of the idioms below on the allocation-heavy paths climbs this toward 10.
  • Java: on hot paths, work through buffer views (ByteBuffer/LongBuffer slices, MemorySegment) instead of copies, avoid boxing with primitive collections (fastutil, Eclipse Collections, HPPC, Trove), presize collections and StringBuilders, and pool expensive buffers (Netty's pooled allocator, commons-pool).
  • Kotlin: on hot paths, use primitive arrays (IntArray, LongArray …) and @JvmInline value classes instead of boxed values, primitive collections (androidx.collection, fastutil) instead of boxed ones, and presize collections and StringBuilders.
  • Swift: on hot paths, reserveCapacity before appending, use ContiguousArray for class-element arrays, work in place with withUnsafeBufferPointer/withUnsafeTemporaryAllocation, and make large values ~Copyable with borrowing/consuming parameters.
PF3 · Async & latency hygiene6.0 / 10Adequate✓ Tool-verified

Readiness · Performance — Whether asynchronous code stays responsive — it avoids sync-over-async blocking (a .NET .Wait()/.GetAwaiter().GetResult(), a time.sleep or blocking HTTP call inside a Python coroutine, a *Sync call inside an async JavaScript function, block_on inside a Rust async fn, runBlocking inside a Kotlin suspend function, block() inside a Reactor publisher) that stalls a thread or event loop and risks deadlock, and, where the code is a reusable library on .NET, awaits with ConfigureAwait(false) so it never captures and stalls its caller's context.

Method: Production-source scan: sync-over-async blocking counted everywhere — .Wait()/.GetAwaiter().GetResult() in .NET; off .NET, read from the language model, a blocking call inside an async function (Python, TS/JS, Rust, Kotlin) or inside a Java method returning a Reactor Mono/Flux — and, for a .NET library with ≥5 awaits, the share of awaits using ConfigureAwait(false). Deterministic, syntax/text detection.

  • `getLatestBuildToolsPath` is async and calls existsSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs. — detox/src/utils/environment.js:104
  • `patchAvdSkinConfig` is async and calls readFileSync, writeFileSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs. — detox/src/devices/allocation/drivers/android/emulator/patchAvdSkinConfig.js:12
  • `resolveConfigPath` is async and calls existsSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs. — detox/src/configuration/loadExternalConfig.js:43
  • `handler` is async and calls execSync, existsSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs. — detox/local-cli/build.js:57
  • `downloadTestButlerAPK` is async and calls execSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs. — examples/demo-react-native/e2e/globalSetup.ts:17
  • `run` is async and calls writeFileSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs. — scripts/change_react_native_version.js:5

What to do

  • TypeScript/JavaScript: use the promise APIs (fs/promises, a promisified child_process.execFile, the async zlib/crypto functions) and await them instead of the *Sync variants.
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 Duplication9.1 / 10Exemplary✓ Tool-verified

React / JS · Code Health — Near-exact copy-pasted blocks of substantial extent across the frontend (the D4 clone algorithm over JS/TS tokens, D-386): a block is reported only where its copies still agree on most of their own identifiers and literals, or were renamed as they were pasted but kept most of their constants, and where the copies carry enough code to stand on their own or the copied extent reaches 30 lines — so a re-implementation sharing neither names nor values, and a small pasted declaration, are both found and deliberately not reported, and a clean R10 is not a claim that nothing was copied.

Method: Near-exact copy-pasted blocks of substantial extent across the frontend (the D4 clone algorithm run over JS/TS tokens). Masking finds the candidates; a block is reported when its copies still agree on most of their own identifiers and literals, or when a renamed copy still agrees on most of its constants, AND the copies carry enough code to stand on their own — or when the copied extent reaches 30 lines. So a re-implementation sharing neither names nor values, and a small pasted declaration, are deliberately not counted. Deterministic.

  • 6 duplicated blocks under detox/src/ have copies in at least two of the sibling directories android, artifacts, client, devices, ios, realms (+1 more sibling(s) not listed) — 0 of them are reported below, and 6 are counted here but not reported individually: those copies match on shape but no longer clear R10's bar for an individually reported row — either they kept neither their own names nor their values, or what was copied is too small to stand on its own (it reports near-exact duplication only, and only of substantial extent). What this row states is the concentration, which the detector measured over all 6 and which does not depend on how exactly each block's copies still match. That concentration is one structural fact, not 6 local ones: the siblings replicate behaviour none of them owns, which is the shape of a missing shared module — a common library every sibling imports — rather than 6 separate extractions. Check first whether the siblings are deliberately standalone deliverables (scaffold templates, demo apps that must stay copy-pasteable); where they are, the duplication is the design and the per-block rows are the ones to act on. — detox/src/android/core/NativeWaitFor.js:22
  • 5 duplicated blocks under detox/src/artifacts/ have copies in at least two of the sibling directories log, screenshot, uiHierarchy, video — 2 of them are reported below, and 3 are counted here but not reported individually: those copies match on shape but no longer clear R10's bar for an individually reported row — either they kept neither their own names nor their values, or what was copied is too small to stand on its own (it reports near-exact duplication only, and only of substantial extent). What this row states is the concentration, which the detector measured over all 5 and which does not depend on how exactly each block's copies still match. That concentration is one structural fact, not 5 local ones: the siblings replicate behaviour none of them owns, which is the shape of a missing shared module — a common library every sibling imports — rather than 5 separate extractions. Check first whether the siblings are deliberately standalone deliverables (scaffold templates, demo apps that must stay copy-pasteable); where they are, the duplication is the design and the per-block rows are the ones to act on. — detox/src/artifacts/log/LogArtifactPlugin.js:53
  • detox/src/android/espressoapi/DetoxAction.js:8 · generation/core/global-functions.js:5 · generation/core/global-functions.js:35 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. — detox/src/android/espressoapi/DetoxAction.js:8
  • detox/src/android/espressoapi/UIDevice.js:247 · detox/src/android/espressoapi/UIDevice.js:275 — 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. — detox/src/android/espressoapi/UIDevice.js:247
  • detox/src/devices/allocation/drivers/android/emulator/EmulatorAllocDriver.js:100 · detox/src/devices/allocation/drivers/ios/SimulatorAllocDriver.js:73 — the two spans are one implementation copied and then locally edited — 165 tokens are still identical, in the same order in both files, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one. — detox/src/devices/allocation/drivers/android/emulator/EmulatorAllocDriver.js:100
  • detox/src/realms/DetoxPrimaryContext.js:216 · detox/src/realms/DetoxPrimaryContext.js:259 — the two spans are one implementation copied and then locally edited — 168 tokens are still identical, in the same order in both spans, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one. — detox/src/realms/DetoxPrimaryContext.js:216
  • detox/src/android/espressoapi/DetoxAction.js:113 · detox/src/android/espressoapi/DetoxAction.js:140 — 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. — detox/src/android/espressoapi/DetoxAction.js:113
  • detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:310 · detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:336 — all 2 copies are in the same file, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are. — detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:310
  • detox/src/artifacts/log/LogArtifactPlugin.js:53 · detox/src/artifacts/video/VideoArtifactPlugin.js:13 — the 2 copies are spread across 2 files, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are. — detox/src/artifacts/log/LogArtifactPlugin.js:53
  • detox/src/android/espressoapi/DetoxMatcher.js:108 · detox/src/android/espressoapi/DetoxMatcher.js:156 — all 2 copies are in the same file, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are. — detox/src/android/espressoapi/DetoxMatcher.js:108
  • detox/src/android/espressoapi/DetoxAssertion.js:8 · detox/src/android/espressoapi/EspressoDetox.js:8 — the 2 copies sit in sibling files in one directory, so check first whether one of them (or an existing module there) already owns this behaviour and the others should call it; otherwise extract it into one module in that directory and have each site call it. — detox/src/android/espressoapi/DetoxAssertion.js:8
  • detox/src/devices/allocation/drivers/android/genycloud/GenyRegistry.js:76 · detox/src/devices/allocation/drivers/android/genycloud/GenyRegistry.js:95 — 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. — detox/src/devices/allocation/drivers/android/genycloud/GenyRegistry.js:76
  • detox/src/android/espressoapi/Detox.js:29 · detox/src/android/espressoapi/Detox.js:64 · detox/src/android/espressoapi/DetoxAction.js:201 · detox/src/android/espressoapi/DetoxAction.js:382 · +3 more site(s) not listed — the 7 copies are spread across 4 files, 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. — detox/src/android/espressoapi/Detox.js:29
  • detox/src/android/espressoapi/UIDevice.js:172 · detox/src/android/espressoapi/web/WebViewElement.js:27 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. — detox/src/android/espressoapi/UIDevice.js:172
  • detox/src/android/espressoapi/UIDevice.js:328 · detox/src/android/espressoapi/UIDevice.js:353 · detox/src/android/espressoapi/UIDevice.js:370 · detox/src/android/espressoapi/web/WebElement.js:28 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. — detox/src/android/espressoapi/UIDevice.js:328
  • detox/src/devices/runtime/drivers/android/AndroidDriver.js:223 · detox/src/devices/runtime/drivers/ios/SimulatorDriver.js:217 — the two spans are one implementation copied and then locally edited — 61 tokens are still identical, in the same order in both files, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one. — detox/src/devices/runtime/drivers/android/AndroidDriver.js:223
  • scripts/change_react_native_version.js:45 · scripts/change_react_native_version.js:60 — 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. — scripts/change_react_native_version.js:45
  • detox/src/android/espressoapi/DetoxAction.js:93 · detox/src/android/espressoapi/DetoxAction.js:117 · detox/src/android/espressoapi/DetoxAction.js:144 · detox/src/android/espressoapi/DetoxAction.js:172 — all 4 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. — detox/src/android/espressoapi/DetoxAction.js:93
  • detox/src/android/espressoapi/UIDevice.js:237 · detox/src/android/espressoapi/UIDevice.js:265 — 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. — detox/src/android/espressoapi/UIDevice.js:237
  • detox/src/android/matchers/native.js:14 · detox/src/android/matchers/native.js:27 · detox/src/android/matchers/native.js:75 — all 3 copies are in the same file, and each CITED SPAN is a SPECIALISATION DECLARATION — a type whose `extends` clause names a base and whose body hands that base its own values through `super(…)`. The shared module this dimension usually asks you to extract already exists: it is that base, every one of these sites already reaches it, and the `super(…)` call this row matched on is where each site passes its differences in. So do not read this as an extract-a-helper row — there is no missing helper, and what is left at each site is the declaration of one distinct specialisation, which cannot be deleted without deleting the thing it declares. Read what actually differs between the spans, because two different answers follow. Where the sites differ only in the values they hand the base — a type argument, a service, an alias, a cache — the repetition is a TEMPLATE, and the only moves that collapse it are to generate these declarations from the set they enumerate or to replace the repeated construction with one factory each site calls with its own values; where that set is the point, each site pinning one distinct thing, the repetition IS the enumeration and there is nothing to remove. Where instead a span carries logic OUTSIDE the delegation that is the same at every site, that logic is the part to move, and its home is the base type rather than a new module. Reported because the copies still drift apart the first time only one of them is edited. — detox/src/android/matchers/native.js:14
  • detox/src/ios/system.js:48 · detox/src/ios/web.js:82 — the 2 copies are spread across 2 files, 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. — detox/src/ios/system.js:48
  • detox/src/utils/pipeCommands.js:7 · detox/src/utils/pipeCommands.js:23 — 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. — detox/src/utils/pipeCommands.js:7
  • detox/src/android/espressoapi/DetoxAction.js:402 · detox/src/android/espressoapi/DetoxViewActions.js:21 · detox/src/android/espressoapi/web/DetoxWebAtomMatcher.js:94 — the 3 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. There is one copy in each of 3 separate files rather than several in one place, so check first whether these are sibling modules that each declare their own version of one shape — one per entity, per provider, per language. Where they are, no single extracted module collapses them: each module still has to be written, and what recurs is the TEMPLATE. The moves that do collapse a template are to generate these modules from the set they enumerate, or to replace the repeated construction with one factory each site calls with its own values — and where the set is the point, each module pinning one distinct thing, the repetition IS the enumeration and there is nothing to delete. — detox/src/android/espressoapi/DetoxAction.js:402
  • detox/src/android/espressoapi/DetoxAssertion.js:58 · detox/src/android/espressoapi/ViewActions.js:308 — the 2 copies are spread across 2 files, 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. — detox/src/android/espressoapi/DetoxAssertion.js:58
  • detox/src/android/espressoapi/DetoxMatcher.js:58 · detox/src/android/espressoapi/DetoxMatcher.js:86 · detox/src/android/espressoapi/EspressoDetox.js:39 — the 3 copies are spread across 2 files, 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. — detox/src/android/espressoapi/DetoxMatcher.js:58
  • detox/src/client/actions/formatters/sync-resources/JavaScriptTimersFormatter.js:14 · detox/src/client/actions/formatters/sync-resources/NetworkFormatter.js:4 — the 2 copies are spread across 2 files, 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. — detox/src/client/actions/formatters/sync-resources/JavaScriptTimersFormatter.js:14
  • detox/src/devices/allocation/factories/external.js:8 · detox/src/devices/runtime/factories/external.js:7 — the 2 copies are spread across 2 files, 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. — detox/src/devices/allocation/factories/external.js:8
  • detox/src/errors/DetoxConfigErrorComposer.js:653 · detox/src/errors/DetoxConfigErrorComposer.js:669 · detox/src/errors/DetoxConfigErrorComposer.js:681 · detox/src/errors/DetoxConfigErrorComposer.js:693 · +1 more site(s) not listed — all 5 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. — detox/src/errors/DetoxConfigErrorComposer.js:653
  • detox/src/errors/DetoxConfigErrorComposer.js:697 · detox/src/errors/DetoxConfigErrorComposer.js:730 — 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. — detox/src/errors/DetoxConfigErrorComposer.js:697
  • detox/src/ios/expectTwo.js:132 · detox/src/ios/web.js:43 — the 2 copies are spread across 2 files, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are. — detox/src/ios/expectTwo.js:132
  • detox/src/android/core/NativeElement.js:32 · detox/src/android/core/NativeElement.js:94 · detox/src/android/core/NativeElement.js:185 — all 3 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. — detox/src/android/core/NativeElement.js:32
  • detox/src/android/core/NativeMatcher.js:15 · detox/src/android/core/NativeMatcher.js:29 — 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. — detox/src/android/core/NativeMatcher.js:15
  • detox/src/artifacts/log/android/ADBLogcatRecording.js:63 · detox/src/artifacts/video/ADBScreenrecorderArtifact.js:62 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. — detox/src/artifacts/log/android/ADBLogcatRecording.js:63
  • detox/src/configuration/composeDeviceConfig.js:82 · detox/src/configuration/composeDeviceConfig.js:94 — 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. — detox/src/configuration/composeDeviceConfig.js:82
  • detox/src/utils/assertArgument.js:38 · detox/src/utils/assertArgument.js:54 — 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. — detox/src/utils/assertArgument.js:38
  • detox/src/android/espressoapi/DetoxAction.js:53 · detox/src/android/espressoapi/DetoxAction.js:72 · detox/src/android/espressoapi/DetoxAction.js:92 · detox/src/android/espressoapi/DetoxAction.js:116 · +16 more site(s) not listed — the 20 copies are spread across 5 files, 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. — detox/src/android/espressoapi/DetoxAction.js:53
  • detox/src/android/espressoapi/DetoxAssertion.js:8 · detox/src/android/espressoapi/DetoxMatcher.js:8 · detox/src/android/espressoapi/EspressoDetox.js:8 · detox/src/android/espressoapi/ViewActions.js:8 · +1 more site(s) not listed — the 5 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. There is one copy in each of 5 separate files rather than several in one place, so check first whether these are sibling modules that each declare their own version of one shape — one per entity, per provider, per language. Where they are, no single extracted module collapses them: each module still has to be written, and what recurs is the TEMPLATE. The moves that do collapse a template are to generate these modules from the set they enumerate, or to replace the repeated construction with one factory each site calls with its own values — and where the set is the point, each module pinning one distinct thing, the repetition IS the enumeration and there is nothing to delete. — detox/src/android/espressoapi/DetoxAssertion.js:8
  • detox/src/android/espressoapi/DetoxMatcher.js:244 · detox/src/android/espressoapi/UIDevice.js:321 · detox/src/android/espressoapi/UIDevice.js:346 · detox/src/android/espressoapi/UIDevice.js:363 · +4 more site(s) not listed — the 8 copies are spread across 4 files, 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. — detox/src/android/espressoapi/DetoxMatcher.js:244
  • detox/src/artifacts/templates/plugin/TwoSnapshotsPerTestPlugin.js:127 · detox/src/artifacts/templates/plugin/TwoSnapshotsPerTestPlugin.js:141 — the two spans are one implementation copied and then locally edited — 62 tokens are still identical, in the same order in both spans, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one. — detox/src/artifacts/templates/plugin/TwoSnapshotsPerTestPlugin.js:127
  • detox/src/configuration/composeDeviceConfig.js:173 · detox/src/configuration/composeDeviceConfig.js:221 — 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. — detox/src/configuration/composeDeviceConfig.js:173

What to do

  • Act on each finding's own remediation rather than one rule: the move depends on what recurs. Where the copies are executable blocks, give the shared part one home and call it from each site; where they are declarations, a listing, a specialisation already delegating to its base, or one shape repeated per entity, there is no call site and the move is a shared type, a generated set or a factory — sometimes there is nothing to extract.
R11 · Import Boundaries8.9 / 10Strong✓ Tool-verified

React / JS · Architecture — Conformance to the detected frontend architecture layout (feature-sliced / layered src) plus cross-package deep-import rules (D-386).

Method: Conformance to the detected frontend layout (feature-sliced / layered src) plus cross-package deep-import rules, over the module graph. Deterministic.

  • detox/test/e2e/02.matchers.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead. — detox/test/e2e/02.matchers.test.js:2
  • detox/test/e2e/03.actions.test.js:1 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead. — detox/test/e2e/03.actions.test.js:1
  • detox/test/e2e/04.assertions.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead. — detox/test/e2e/04.assertions.test.js:2
  • detox/test/e2e/32.visibility-debug-artifacts.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead. — detox/test/e2e/32.visibility-debug-artifacts.test.js:2
  • detox/test/e2e/33.attributes.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead. — detox/test/e2e/33.attributes.test.js:2
  • detox/test/integration/timeline-artifact.test.js:4 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/tempfile) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead. — detox/test/integration/timeline-artifact.test.js:4

What to do

  • Fix the listed violations: import through public entries (package exports / slice index), never reach into another layer or package's internals.
R2 · Cyclomatic Complexity9.7 / 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.

  • validateSystemUIConfig has cyclomatic complexity 40 and cognitive complexity 64; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/configuration/composeDeviceConfig.js:69
  • validateDeviceConfig has cyclomatic complexity 31 and cognitive complexity 48; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/configuration/composeDeviceConfig.js:159
  • setPermissions has cyclomatic complexity 24 and cognitive complexity 14; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:33
  • sanitize_uiAccessibilityTraits has cyclomatic complexity 19 and cognitive complexity 3; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — generation/core/global-functions.js:79
  • composeAppsConfigFromAliased has cyclomatic complexity 18 and cognitive complexity 30; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/configuration/composeAppsConfig.js:36
  • composeSessionConfig has cyclomatic complexity 16 and cognitive complexity 19; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/configuration/composeSessionConfig.js:11
  • launchApp has cyclomatic complexity 16 and cognitive complexity 17; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/devices/runtime/RuntimeDevice.js:118
  • configurationShouldNotUseLegacyFormat has cyclomatic complexity 16 and cognitive complexity 15; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/errors/DetoxConfigErrorComposer.js:229
  • build has cyclomatic complexity 15 and cognitive complexity 25; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/local-cli/build.js:57
  • setupStatusBar has cyclomatic complexity 14 and cognitive complexity 21; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/devices/allocation/drivers/android/utils/SystemUICfgHelper.js:120
  • execute has cyclomatic complexity 13 and cognitive complexity 22; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/local-cli/testCommand/TestRunnerCommand.js:51
  • validateAppConfig has cyclomatic complexity 13 and cognitive complexity 14; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/configuration/composeAppsConfig.js:128
  • statusBarOverride has cyclomatic complexity 12 and cognitive complexity 20; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:585
  • _onMessage has cyclomatic complexity 12 and cognitive complexity 17; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/client/AsyncWebSocket.js:226
  • defaultOptions has cyclomatic complexity 12 and cognitive complexity 11; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/logger/DetoxLogger.js:311
  • adaptLegacyRunnerConfig has cyclomatic complexity 11 and cognitive complexity 10; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes. — detox/src/configuration/composeRunnerConfig.js:75

What to do

  • Break down the listed branch-heavy functions; aim P95 cyclomatic ≤ 5.
R3 · Large Files9.6 / 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.

What to do

  • Split each oversized file along the responsibilities already in it, into smaller focused modules in the same package.
R4 · Test Coverage9.1 / 10Exemplary✓ 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.

  • detox/test/e2e/02.matchers.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/02.matchers.test.js
  • detox/test/e2e/03.actions.test.js:2 imports './drivers/actions-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/03.actions.test.js
  • detox/test/e2e/03.actions.visibility-workaround.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/03.actions.visibility-workaround.test.js
  • detox/test/e2e/03.integ-actions.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/03.integ-actions.test.js
  • detox/test/e2e/05.waitfor.misc.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/05.waitfor.misc.test.js
  • detox/test/e2e/05.waitfor.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/05.waitfor.test.js
  • detox/test/e2e/06.device.view-hierarchy.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/06.device.view-hierarchy.test.js
  • detox/test/e2e/11.user-notifications.test.js:6 imports './utils/notifications', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/11.user-notifications.test.js
  • detox/test/e2e/13.permissions.test.js:2 imports './utils/deviceInfo', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/13.permissions.test.js
  • detox/test/e2e/14.network.test.js:1 imports '../mock-server/mock-server', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/14.network.test.js
  • detox/test/e2e/15.urls-and-launchArgs.test.js:1 imports './drivers/url-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/15.urls-and-launchArgs.test.js
  • detox/test/e2e/15.urls.test.js:1 imports './drivers/url-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/15.urls.test.js
  • detox/test/e2e/18.user-activities.test.js:1 imports './drivers/url-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/18.user-activities.test.js
  • detox/test/e2e/19.app-responsiveness.test.js:1 imports './utils/log-interceptor', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/19.app-responsiveness.test.js
  • detox/test/e2e/19.crash-handling.test.js:3 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/19.crash-handling.test.js
  • detox/test/e2e/21.artifacts.test.js:11 imports './utils/artifactUtils', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/21.artifacts.test.js
  • detox/test/e2e/22.launch-args.test.js:1 imports './drivers/launch-args-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/22.launch-args.test.js
  • detox/test/e2e/26.element-screenshots.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/26.element-screenshots.test.js
  • detox/test/e2e/27.retries.test.js:9 imports './utils/artifactUtils', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/27.retries.test.js
  • detox/test/e2e/29.webview.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (3 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/29.webview.test.js
  • detox/test/e2e/32.visibility-debug-artifacts.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/32.visibility-debug-artifacts.test.js
  • detox/test/e2e/34.visibility.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/34.visibility.test.js
  • detox/test/e2e/35.overlay.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/35.overlay.test.js
  • detox/test/e2e/36.system.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/36.system.test.js
  • detox/test/e2e/38.config-systemui.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/38.config-systemui.test.js
  • detox/test/e2e/pilot/05.system.test.js:1 imports '../utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/pilot/05.system.test.js
  • detox/test/e2e/pilot/06.waitfor.test.js:1 imports '../utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/e2e/pilot/06.waitfor.test.js
  • detox/test/integration/timeline-artifact.test.js:7 imports './utils/exec', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/integration/timeline-artifact.test.js
  • detox/test/scripts/verify_artifacts_are_not_missing.android.test.js:1 imports './verify_artifacts_are_not_missing', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/scripts/verify_artifacts_are_not_missing.android.test.js
  • detox/test/scripts/verify_artifacts_are_not_missing.ios.test.js:1 imports './verify_artifacts_are_not_missing', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — detox/test/scripts/verify_artifacts_are_not_missing.ios.test.js
  • generation/__tests__/android.js:21 imports './generated-android/example.js', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing. — generation/__tests__/android.js
  • No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one. (×9) — generation/core/generator.js, REDACTED, detox/local-cli/init.js, …

What to do

  • Add tests that import the unreached modules (directly or through their public entry).
R6 · Tooling6.7 / 10Adequate✓ 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.

  • This repository declares test tooling, and the ✓ above records that declaration — but detox/test/e2e/02.matchers.test.js and 30 other test file(s) in this workspace cannot be loaded at all: it imports a module that names no file in this repository, so the runner throws while collecting it and none of its cases execute. The wiring is present and the suite it points at does not run as written, which is why the tooling tick must not be read as a statement that the tests pass. Fix the unloadable file(s) — each one is reported with its failing import under Test Coverage — then the declared script exercises what it claims to. — detox/test/e2e/02.matchers.test.js

What to do

  • Add `tsc --noEmit` as package.json scripts and run them in CI.
R7 · Dead Code9.9 / 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.

  • 2 file(s) (~12 LoC) were excluded from dead-code analysis — declare main/module/exports or a conventional entry (src/index.*, an index.html script) so reachability can see this package. — detox/src/configuration/__mocks__/configuration/priority
  • Unreachable from the 182 application, 31 tooling and 280 test entry point(s) detected in this repo. Gate removals on `yarn run build` — an undetected custom entry would make these reachable.
  • no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make (×7) — scripts/create_redirect_html.js, detox/wallaby.js, scripts/utils/tagVersion.js, …

What to do

  • Delete the dead files and unused exports — every line is maintenance cost and rebuild-estimate inflation with zero runtime value.
R8 · Dependency Hygiene0.0 / 10Critical✓ 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 only as a TYPE and declared in no reachable package.json. The import is erased at compile time, so nothing is installed and no runtime resolution depends on it — but type-checking a clean clone will fail. Declare the typings it resolves through (or the package itself) in the owning package.json. (×5) — detox/runners/jest/testEnvironment/index.js:6, detox/runners/jest/reporter.js:1, detox/runners/jest/reporters/DetoxIPCReporter.js:23, …
  • Imported but not declared in any reachable package.json — installs work only by hoisting accident. (×4) — detox/src/errors/DetoxConfigErrorComposer.test.js:329, detox/src/ios/expectTwo.test.js:2, detox/src/configuration/__mocks__/configuration/badconfig/detox.config.js:3, …
  • Declared in the root package.json but never imported anywhere in that package or its workspace members — no static import reaches it. Usually that is dead weight and attack surface, but two shapes are indistinguishable from source and are NOT dead: an optional or native peer that another dependency loads dynamically at runtime, and a package a build, docs or test step installs and invokes separately. Confirm which of the three this is before removing it. (×3)
  • Only test files import it — move it to devDependencies. — generation/__tests__/android.js:2

What to do

  • Remove unused dependencies, declare unlisted imports explicitly, and demote type-/test-only packages to devDependencies.
R9 · Circular Imports0.0 / 10Critical✓ 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.

  • detox/index.js → detox/src/realms/primary.js → detox/src/realms/DetoxPrimaryContext.js → detox/src/configuration/index.js → detox/src/configuration/composeArtifactsConfig.js → detox/src/artifacts/instruments/InstrumentsArtifactPlugin.js → detox/src/artifacts/templates/plugin/WholeTestRecorderPlugin.js → detox/src/artifacts/templates/plugin/ArtifactPlugin.js → detox/src/utils/logger.js → detox/internals.js → detox/index.js (one verified cycle inside a mutually-dependent group of 120 files) — detox/index.js

What to do

  • Break each cycle by extracting the shared piece into a module both sides can import.
X24 · Document value interpolated into markup unescaped10.0 / 10Exemplary○ Nothing flagged

Other · Security — Whether text read out of the document being converted is escaped before it is written into generated markup — a value the document's author chose, interpolated into an attribute the surrounding literal delimits, can close that attribute and open another.

Method: Roslyn semantic model over the whole compilation: a string-typed `Value`/`InnerText`/`InnerXml`/`Text` member declared inside `DocumentFormat.OpenXml` or `System.Xml` is a taint SOURCE, propagated through assignments, returns, arguments, tuple elements and string composition to its transitive closure, then read at interpolated-string holes that sit in a markup position the surrounding literal itself delimits. Escaper/encoder calls and enclosing validator conditions cut the flow. Flow- and container-insensitive by construction. A second arm needs no provenance at all and reports a type that CONTRADICTS ITSELF — the same expression escaped at one delimited markup hole and interpolated raw at another hole in the same markup position of the same type, which the type's own escaping proves is a defect without knowing where the value came from. On a repository with no .NET source it reads JavaScript/TypeScript off the token stream with the same rule: a DOM read of raw document text (`getAttribute`, `textContent`, `innerText`, `nodeValue`) is the source, propagated through local bindings and string composition, and judged at template-literal and concatenation holes in the same two delimited markup positions; escapers and validating conditions cut it, and documentation-site, test, vendored and minified scripts are not read. Deterministic, provable per finding. Advisory.

X25 · Inert configuration knob10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether a value the caller is invited to supply is the value the type actually uses — a constructor parameter stored in a private field that nothing ever reads while the default it was given is spelled out a second time at the site that should have read it, a keyed lookup that falls back to a different setting than the one its key names while the same type falls back to the matching one for that same key, or a culture-sensitive parse given no format provider by a type that feeds its own settable culture to the same kind of parse elsewhere. Either way, every caller who supplies a value silently gets something else.

Method: Roslyn syntax: private instance fields of a non-partial type assigned in a constructor from one of its own parameters with a `??` fallback, checked for whether anything in the type body reads the field and whether that same fallback expression is spelled out again outside the constructor; and `??` fallbacks onto a member access from a lookup call carrying exactly one string literal, grouped by that key across the type and checked for a fallback member whose folded name disagrees with the key while a sibling site for the same key agrees with it. On a repository with no .NET source the first two arms read JavaScript/TypeScript off the engine’s own token stream (tests included, bundles and vendored paths not): a `#x`, `private` or `private` parameter-property instance field filled in the constructor from a parameter (or one member of one) through `??`/`||` or a parameter default, never read anywhere in the file by name, whose constructed default is spelled again in the class body; and `lookup("key") ?? s.member` grouped by key per class, or per module outside every class. The culture arm has no JavaScript counterpart: its parses take no locale. Deterministic, provable per finding. Advisory.

X26 · Unsynchronised callback handoff10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether a value handed from a callback to the body that waits on it crosses on something built to be crossed — a `Queue<T>`/`List<T>`/`Dictionary<K,V>` written inside an event handler and read back outside it is mutated by two flows at once, and the semaphore or completion source beside it orders how MANY items exist while leaving the collection's own head, tail and backing array unprotected.

Method: Roslyn syntax: method, accessor, local-function and lambda bodies that declare BOTH a non-thread-safe generic collection (`Queue`/`Stack`/`List`/`Dictionary`/`HashSet`/`Sorted*`/`LinkedList`) and a synchronisation primitive (`SemaphoreSlim`/`TaskCompletionSource`/`ManualResetEvent(Slim)`/`AutoResetEvent`/`CountdownEvent`) as locals, then read for a `+=`-registered lambda that raises that primitive while the body outside every lambda waits on it — and, in that scope, a mutating call on the collection inside the lambda paired with a mention of it outside. Any `lock` in the scope abstains it. On a repository with no .NET source the same handoff is read in Java off the engine’s own token stream (test source sets, vendored and demonstration paths not): an `ArrayList`/`LinkedList`/`ArrayDeque`/`PriorityQueue`/`Hash*`/`LinkedHash*`/`Tree*` local and a `CountDownLatch`/`Semaphore`/`CompletableFuture` local, a lambda or anonymous class that raises the primitive and mutates the collection, and a wait outside it; any `synchronized` or `lock()` abstains the body. Because each of those primitives orders what the callback wrote before raising it, only a touch that provably overlaps the callback is convicted: one after the registration and before the next wait, or one in a loop registered-before, waiting on every pass and not declaring the collection. Deterministic, provable per finding. Advisory.

X27 · Collection changed while being enumerated10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether an enhanced `for` leaves the collection it is walking alone — a body that adds to or removes from the very collection the loop is iterating invalidates the fail-fast iterator it is holding, so the next `next()` throws `ConcurrentModificationException` and the remaining elements are never seen.

Method: Roslyn syntax + semantics: `foreach` statements whose body calls a structural mutator (`Add`/`Remove`/`Clear`/`Insert`/…) on the very expression the loop is enumerating. Two arms. ARM A — the source is a concrete fragile BCL collection, or a live `Keys`/`Values` view over one, and the mutator resolves to that same collection's own member; concurrent and immutable collections and arrays are outside the population by construction, since their enumerators survive a structural change. ARM B — the source is an argument-less accessor CALL on a receiver whose body is in source: the accessor must return a stored field VERBATIM and a sibling member must structurally change that same field, both read off the implementations rather than from the members' names. A mutation the loop provably exits immediately after (`break`/`return`/`throw`/`goto`), or one written inside a nested loop or a lambda, is counted and never reported. Deterministic, provable per finding. Advisory.

X29 · Per-element action decided by a fixed element10.0 / 10Exemplary○ Nothing flagged

Other · Code Health — Whether a decision taken once per element is taken ABOUT that element — a test inside a counted loop that reads a fixed subscript of the very collection its guarded statement indexes by the loop variable applies element zero's answer to all of them, so the elements that differ from it are all handled wrongly, and in the same direction.

Method: Roslyn syntax only, no semantic model: every `for` statement declaring exactly ONE loop variable, and every `if` inside its body that is not under a nested loop or a lambda. A site enters the population when the `if`’s condition never mentions the loop variable while the statement it guards indexes some collection by that variable ALONE (`c[i]`; `c[i + 1]` and `c[i, j]` are outside it). A finding additionally needs the AGREEING TWIN at the same-collection grain: the condition must read THAT SAME collection at a subscript that does not move — written into the condition, or reached through a local declared BEFORE the loop, so an alias bound inside the body is not followed. Both collection expressions must be simple identifiers. On a repository with no .NET source the same rule reads JavaScript/TypeScript off the engine’s own token stream (tests included, bundles and vendored paths not): a `for (let|var|const x = …; …; …)` with one declarator and a braced body, an alias followed only when it is declared before the loop in a block that encloses it and never assigned inside the loop. Deterministic, provable per finding. Advisory.

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 Health89%StrongStrongest area.
Architecture67%Adequate — gated by R9Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Maturity65%Adequate — gated by M2Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Readiness35%Weak — gated by R8, P3Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Security65%Adequate — gated by D30Capped at Fair by a Critical contributor — resolve it before relying on this lens.
Performance63%AdequateAcceptable, with room to improve.
Unscored — 1 check(s) recorded observations but carry no score

These checks ran and found something, but they do not carry a score — either by design (an advisory check reports evidence rather than grading it) or because they could not be scored here. They are excluded from the score for that reason, not because there was nothing to see.

  • X10 Duplicated predicate — 1 observation(s) recorded · Advisory — this card reports evidence and never carries a score.
Not evidenced — 4 control(s) we could not find positive evidence for

These checks grade a working control, and the repository shows no evidence of one. That is deliberately not scored as a zero: a repository cannot show an ops runbook, a database TTL or an infrastructure-side audit log, so absence of evidence here is not evidence the control is missing. It is also not a statement that the check is irrelevant to this codebase — the thing it grades applies; we just could not see it. Excluded from the score either way.

  • 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.
  • P5 DR & Backup — not evidenced — repo shows no backup/RTO/RPO controls; absence of evidence is not evidence of a working control
Not included — 68 check(s) not relevant to this codebase

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

  • AC1 Text alternatives — No web markup found — accessibility is not applicable to this repository.
  • AC2 Forms & labels — No web markup found — accessibility is not applicable to this repository.
  • AC3 Page structure — No web markup found — accessibility is not applicable to this repository.
  • AC4 Keyboard semantics — No web markup found — accessibility is not applicable to this repository.
  • AC5 ARIA correctness — No web markup found — accessibility is not applicable to this repository.
  • AC6 Visual & motion safety — No web markup found — accessibility is not applicable to this repository.
  • AC7 A11y enforcement — No web markup found — accessibility is not applicable to this repository.
  • AX1 Captive dependencies — Not applicable: this repository's JavaScript imports no dependency-injection container and defines no container of its own — nothing that both registers and resolves bindings, and nothing that names two lifetimes — so nothing holds one lifetime's instance while handing out another's; this repository's Java imports no dependency-injection container and defines no container of its own — nothing that both registers and resolves bindings, and nothing that names two lifetimes — so nothing holds one lifetime's instance while handing out another's; this repository's Kotlin imports no dependency-injection container and defines no container of its own — nothing that both registers and resolves bindings, and nothing that names two lifetimes — so nothing holds one lifetime's instance while handing out another's; this repository's Swift imports no dependency-injection container and defines no container of its own — nothing that both registers and resolves bindings, and nothing that names two lifetimes — so nothing holds one lifetime's instance while handing out another's.
  • AX2 Stateful singletons — No container singleton was found, so there is no shared instance for concurrent requests to race on. No class in this Java code is a Spring, JSR-330 or CDI singleton bean. No class in this Kotlin code is a Spring, JSR-330 or CDI singleton bean. No Swift request handler (a Vapor, Hummingbird, Kitura, Swifter or Perfect route handler, as a method or a registered closure) is declared, so no state is shared between request threads. TypeScript/JavaScript runs each process's requests on one event loop, so no two requests write a shared object at the same instant (interleaving across an await is a different defect).
  • AX4 Dependency direction — not applicable to a vertical-slice 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
  • AX8 Test isolation — no test/production split to check
  • AXB2 Runtime readiness — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
  • AXR1 Runtime accessibility — the dev server did not expose a crawlable HTTP endpoint in time — no runtime evidence This is a statement about this run, not a statement about your application: nothing here says the surface is inaccessible, only that it was never rendered.
  • 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.
  • D11 Test Reliability — Test reliability not measured — JavaScript/TypeScript suite did not run
  • 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.
  • D22 Internal API Consistency — The exposed public-API surface could not be collected — no C#/VB projects loaded.
  • D23 Boundary Type-Coupling — No bounded-context organisation was detected either — neither a context-shaped layout nor 2+ sibling source directories each declaring an aggregate root. Declaring this codebase's bounded contexts (≥2) would let cross-boundary type coupling be assessed. 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
  • D31 IaC & Container Security — No Infrastructure-as-Code or container manifests found (Dockerfile, Docker Compose, Terraform, Kubernetes/Helm, CloudFormation, ARM, Bicep, Ansible); nothing to scan.
  • D32 Data Compliance (PII/GDPR) — No personal data was found crossing a boundary the PII/GDPR ruleset checks — nothing written to a log or console sink, placed in a URL or query string, or persisted to browser storage. That is a clean result for the LEAK surface only: this ruleset detects personal data escaping, it does not inventory the personal data a repository holds, so it is not evidence that this repository has no personal-data surface. The personal-data map (Appendix C) and the C1-C5 compliance cards are what speak to that.
  • 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.
  • 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.
  • 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 measured — JavaScript/TypeScript suite
  • DM1 Domain Modelling — not scored — this repository shows only 1 of the 3 signals this lens looks for (16 value object(s))
  • ED2 Event/command shape — not scored — deciding whether a command has more than one competing handler requires resolving the call graph, and this analysis resolves a call's owner only where the receiver's type is written down in the source. Reported as guidance rather than measured
  • ED5 Idempotency — This check finds retry-prone mutations (command handlers and message/event consumers) by walking the repository's declared types, and none was loaded here, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • ES1 Event Sourcing — not scored — this repository shows none of the 3 signals this lens looks for
  • GD1 Unfinished & placeholder code — no source files were read — this check reads C# syntax, and none was loaded for this repository. That is a limit of the analyzer, not a finding about your code.
  • 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 — Reported, not scored — this card publishes what the CI gate does with the test inventory rather than grading it. The findings above are its output.
  • P7 Outbound HTTP resilience — not applicable — no HTTP server, API framework or worker entry point was found in the JVM, JavaScript/TypeScript, Swift source, so there is no service whose uptime a failing dependency could take down
  • P8 Schema migrations — no ORM, schema-migration tool or schema auto-create was found in this repository's dependency manifests or source, so there is no database schema for this check to judge
  • P9 Domain vs controller coverage — no coverage report found on disk — produce a coverage report in a standard format (JaCoCo XML — `mvn jacoco:report` or the Gradle `jacocoTestReport` task) and commit it — a hosted scan measures a clone of the repository, so a report that exists only in a working tree, a CI runner's or your own, never reaches it; the artefact is commonly gitignored, so `git add -f` that one file (or un-ignore its path) and commit it alongside the code it measures, or wire coverage collection into CI, to enable this cross-layer check
  • PF1 Benchmark discipline — Not applicable: no benchmark suite was found. This check searched for tinybench, mitata, benchmark.js, benny or vitest `bench(...)` calls in files that import them (or `*.bench.*` files), or one of those in a package.json, and for a `*benchmark*` script that this repository's CI runs. Benchmarks are credited as a bonus, so their absence is neither scored nor deducted.
  • R5 Dependency Freshness — uses a yarn lockfile — dependency freshness not measured here; JS/npm CVEs are scored in D30 (Dependency Vulnerabilities), which answers every ecosystem
  • 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
  • X12 Unreachable branch — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X13 Undrained process stream — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X14 Bypassable address classification — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X15 Unvalidated length from an untrusted reader — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X16 Unfloored truncation loop — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X17 Uncapped recursion over a caller-supplied document — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X18 Disposal-pattern correctness — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X19 Unrestored process-global state — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • 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
  • X20 Mistyped argument guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X21 Side-effecting pattern guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X22 Contradicted release guard — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X23 Unguarded diagnostic materialisation — This check reads C# syntax; no C# was loaded for this repository, so it has nothing to report. That is a limit of the analyzer, not a finding about your code.
  • X28 Index access outside its own emptiness guard — 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
  • X30 Support guard that admits what it rejects — 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
  • X32 Type resolved by simple name across every loaded assembly — This check is about how a .NET program searches the assemblies loaded into its process for a type, and this repository contains no .NET source, so there is nothing here for it to assess. Not a gap in the analyzer and not a finding about your code.
  • 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
  • X6 Hand-rolled structured-format parsing — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
  • X7 Silent fallback defaults — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.
  • X9 Subsumed condition operand — Advisory — this card reports evidence and never carries a score, so there is nothing missing here.

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.

Critical — 83 finding(s)
D30 · Dependency Vulnerabilities · High CVE · ×54
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • + 29 more in this group — see findings.md.
D30 · Dependency Vulnerabilities · Critical CVE · ×10
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
D10 · Test Quality · No assertions (empty test) · ×7
  • No assertions (empty test): runScript detox/src/android/AndroidExpect.test.js:556 — Test method has an empty body — it asserts nothing and exercises no code.
  • No assertions (empty test): should not result into Detox hanging up detox/test/e2e-unhappy/early-syntax-error.test.js:2 — Test method has an empty body — it asserts nothing and exercises no code.
  • No assertions (empty test): should create device log for non-running app detox/test/e2e/21.artifacts.test.js:128 — Test method has an empty body — it asserts nothing and exercises no code.
  • No assertions (empty test): Regular test detox/test/integration/e2e/passing-skipped.test.js:7 — Test method has an empty body — it asserts nothing and exercises no code.
  • No assertions (empty test): Only test detox/test/integration/e2e/focused.test.js:7 — Test method has an empty body — it asserts nothing and exercises no code.
  • No assertions (empty test): Skipped test detox/test/integration/e2e/focused.test.js:11 — Test method has an empty body — it asserts nothing and exercises no code.
  • No assertions (empty test): Trace detox/test/types/detox-module-tests.ts:86 — Test method has an empty body — it asserts nothing and exercises no code.
R8 · Dependency Hygiene · Unlisted import 'expect' · ×2
  • Unlisted import 'expect' detox/src/ios/expectTwo.test.js:2 — Imported but not declared in any reachable package.json — installs work only by hoisting accident.
  • Unlisted import 'expect' detox/test/e2e/06.device.view-hierarchy.test.js:3 — Imported but not declared in any reachable package.json — installs work only by hoisting accident.
D13 · Secret Scanning · Leaked secret · ×1
  • REDACTED
D28 · Secrets (history) · High secret · ×1
  • REDACTED
D29 · Static Analysis (SAST) · REDACTED · ×1
  • REDACTED
D29 · Static Analysis (SAST) · REDACTED · ×1
  • REDACTED
D29 · Static Analysis (SAST) · REDACTED · ×1
  • REDACTED
D30 · Dependency Vulnerabilities · High vulnerability · ×1
  • REDACTED
D34 · Knowledge Freshness · Orphaned knowledge · ×1
  • Orphaned knowledge detox/android/detox/src/main/java/org/joor/Reflect.java — No living knowledge remains for this large file — its last meaningful change has decayed away; if it breaks, no one currently understands it. Schedule a read-through / add characterisation tests before it bites.
R8 · Dependency Hygiene · Unlisted import 'android.apk' · ×1
  • Unlisted import 'android.apk' detox/src/errors/DetoxConfigErrorComposer.test.js:329 — Imported but not declared in any reachable package.json — installs work only by hoisting accident.
R8 · Dependency Hygiene · Unlisted import 'something-that-does-not-exist' · ×1
  • Unlisted import 'something-that-does-not-exist' detox/src/configuration/__mocks__/configuration/badconfig/detox.config.js:3 — Imported but not declared in any reachable package.json — installs work only by hoisting accident.
R9 · Circular Imports · Import cycle (10 files) · ×1
  • Import cycle (10 files) detox/index.js — detox/index.js → detox/src/realms/primary.js → detox/src/realms/DetoxPrimaryContext.js → detox/src/configuration/index.js → detox/src/configuration/composeArtifactsConfig.js → detox/src/artifacts/instruments/InstrumentsArtifactPlugin.js → detox/src/artifacts/templates/plugin/WholeTestRecorderPlugin.js → detox/src/artifacts/templates/plugin/ArtifactPlugin.js → detox/src/utils/logger.js → detox/internals.js → detox/index.js (one verified cycle inside a mutually-dependent group of 120 files)
Serious — 460 finding(s)
D10 · Test Quality · No assertions · ×238
  • No assertions: should confirm known type ${type} detox/src/environmentFactory.test.js:32 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: waitFor (element) detox/src/android/AndroidExpect.test.js:153 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should tap and long-press detox/src/android/AndroidExpect.test.js:209 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should press special keys detox/src/android/AndroidExpect.test.js:231 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should edit text detox/src/android/AndroidExpect.test.js:236 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should scroll detox/src/android/AndroidExpect.test.js:247 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should setDatePickerDate detox/src/android/AndroidExpect.test.js:268 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should swipe detox/src/android/AndroidExpect.test.js:279 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should long press and drag detox/src/android/AndroidExpect.test.js:293 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should allow for index-based element discrepancy resolution detox/src/android/AndroidExpect.test.js:306 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should adjust slider to position detox/src/android/AndroidExpect.test.js:324 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should perform accessibility actions detox/src/android/AndroidExpect.test.js:328 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: should return undefined detox/src/android/AndroidExpect.test.js:385 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: default detox/src/android/AndroidExpect.test.js:392 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: default explicit detox/src/android/AndroidExpect.test.js:396 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: with webview matcher detox/src/android/AndroidExpect.test.js:400 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: tap detox/src/android/AndroidExpect.test.js:442 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: typeText detox/src/android/AndroidExpect.test.js:453 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: replaceText detox/src/android/AndroidExpect.test.js:479 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: clearText detox/src/android/AndroidExpect.test.js:490 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: scrollToView detox/src/android/AndroidExpect.test.js:501 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: getText detox/src/android/AndroidExpect.test.js:512 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: focus detox/src/android/AndroidExpect.test.js:523 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: selectAllText detox/src/android/AndroidExpect.test.js:534 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • No assertions: moveCursorToEnd detox/src/android/AndroidExpect.test.js:545 — This method's body runs code, and no assertion call was recognised in it. Recognised by name: Assert*, *Should*/ShouldBe*, Verify, Expect, Throws, Record, Received/DidNotReceive, MustHaveHappened/MustNotHaveHappened, EnsureSuccessStatusCode and *AndEnsure* — so verification routed through a helper of your own naming, through a base-class or callback object whose members hold the assertions, or through a harness that fails by throwing under some other name, is not visible to this check and is not counted here. Read it as 'no assertion this check knows how to see', and if that is right, add one.
  • + 213 more in this group — see findings.md.
R4 · Test Coverage · This test file cannot be loaded · ×31
  • This test file cannot be loaded detox/test/e2e/02.matchers.test.js — detox/test/e2e/02.matchers.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/03.actions.test.js — detox/test/e2e/03.actions.test.js:2 imports './drivers/actions-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/03.actions.visibility-workaround.test.js — detox/test/e2e/03.actions.visibility-workaround.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/03.integ-actions.test.js — detox/test/e2e/03.integ-actions.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/05.waitfor.misc.test.js — detox/test/e2e/05.waitfor.misc.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/05.waitfor.test.js — detox/test/e2e/05.waitfor.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/06.device.view-hierarchy.test.js — detox/test/e2e/06.device.view-hierarchy.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/11.user-notifications.test.js — detox/test/e2e/11.user-notifications.test.js:6 imports './utils/notifications', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/13.permissions.test.js — detox/test/e2e/13.permissions.test.js:2 imports './utils/deviceInfo', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/14.network.test.js — detox/test/e2e/14.network.test.js:1 imports '../mock-server/mock-server', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/15.urls-and-launchArgs.test.js — detox/test/e2e/15.urls-and-launchArgs.test.js:1 imports './drivers/url-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/15.urls.test.js — detox/test/e2e/15.urls.test.js:1 imports './drivers/url-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/18.user-activities.test.js — detox/test/e2e/18.user-activities.test.js:1 imports './drivers/url-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/19.app-responsiveness.test.js — detox/test/e2e/19.app-responsiveness.test.js:1 imports './utils/log-interceptor', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/19.crash-handling.test.js — detox/test/e2e/19.crash-handling.test.js:3 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/21.artifacts.test.js — detox/test/e2e/21.artifacts.test.js:11 imports './utils/artifactUtils', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/22.launch-args.test.js — detox/test/e2e/22.launch-args.test.js:1 imports './drivers/launch-args-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/26.element-screenshots.test.js — detox/test/e2e/26.element-screenshots.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/27.retries.test.js — detox/test/e2e/27.retries.test.js:9 imports './utils/artifactUtils', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/29.webview.test.js — detox/test/e2e/29.webview.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (3 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/32.visibility-debug-artifacts.test.js — detox/test/e2e/32.visibility-debug-artifacts.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either (1 further unresolvable import(s) in the same file). The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/34.visibility.test.js — detox/test/e2e/34.visibility.test.js:1 imports './drivers/fs-scroll-driver', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/35.overlay.test.js — detox/test/e2e/35.overlay.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/36.system.test.js — detox/test/e2e/36.system.test.js:1 imports './utils/custom-expects', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • This test file cannot be loaded detox/test/e2e/38.config-systemui.test.js — detox/test/e2e/38.config-systemui.test.js:1 imports './utils/snapshot', which names no file in this repository — and no rule in its .gitignore chain could cover one, so no build writes it either. The import throws as the runner collects this file, so none of its test cases run and nothing it was written to verify is verified. Restore the missing module or delete the test. It is excluded from the reachability measured above, because a file that cannot load reaches nothing.
  • + 6 more in this group — see findings.md.
D30 · Dependency Vulnerabilities · Medium CVE · ×26
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • + 1 more in this group — see findings.md.
D3 · God Classes · TooManyMethods · ×11
  • TooManyMethods: DetoxConfigErrorComposer detox/src/errors/DetoxConfigErrorComposer.js:9 — TooManyMethods — 54 methods. The bar is 30 methods; this is 24 over it, 1.80× the bar. 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.
  • TooManyMethods: DeviceDriverBase detox/src/devices/runtime/drivers/DeviceDriverBase.js:15 — TooManyMethods — 51 methods. The bar is 30 methods; this is 21 over it, 1.70× the bar. 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.
  • TooManyMethods: RuntimeDevice detox/src/devices/runtime/RuntimeDevice.js:11 — TooManyMethods — 48 methods. The bar is 30 methods; this is 18 over it, 1.60× the bar. 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.
  • TooManyMethods: UiDevice detox/src/android/espressoapi/UIDevice.js:9 — TooManyMethods — 46 methods. The bar is 30 methods; this is 16 over it, 1.53× the bar. 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.
  • TooManyMethods: AppleSimUtils detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:28 — TooManyMethods — 46 methods. The bar is 30 methods; this is 16 over it, 1.53× the bar. 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.
  • TooManyMethods: AndroidDriver detox/src/devices/runtime/drivers/android/AndroidDriver.js:42 — TooManyMethods — 46 methods. The bar is 30 methods; this is 16 over it, 1.53× the bar. 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.
  • TooManyMethods: ADB detox/src/devices/common/drivers/android/exec/ADB.js:22 — TooManyMethods — 45 methods. The bar is 30 methods; this is 15 over it, 1.50× the bar. 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.
  • TooManyMethods: Client detox/src/client/Client.js:17 — TooManyMethods — 38 methods. The bar is 30 methods; this is 8 over it, 1.27× the bar. 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.
  • TooManyMethods: WaitFor detox/src/ios/expectTwo.js:518 — TooManyMethods — 38 methods. The bar is 30 methods; this is 8 over it, 1.27× the bar. 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.
  • TooManyMethods: Reflect detox/android/detox/src/main/java/org/joor/Reflect.java:51 — TooManyMethods — 35 methods. The bar is 30 methods; this is 5 over it, 1.17× the bar. 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.
  • TooManyMethods: SimulatorDriver detox/src/devices/runtime/drivers/ios/SimulatorDriver.js:32 — TooManyMethods — 31 methods. The bar is 30 methods; this is 1 over it, 1.03× the bar. 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.
D17 · Explicit Debt · TodoComment · ×10
  • TodoComment detox/android/detox/src/full/java/com/wix/detox/TestEngineFacade.kt:16 — // TODO Check whether this can be replaced with #awaitIdle() — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/android/detox/src/full/java/com/wix/detox/TestEngineFacade.kt:19 — // TODO Refactor RN related stuff away — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/android/detox/src/full/java/com/wix/detox/espresso/common/ReactSliderHelper.kt:23 — // TODO Make this more testable (e.g. by delegating the set action away) — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/android/detox/src/full/java/com/wix/detox/espresso/registry/BusyResourcesInquirer.kt:13 — // TODO Better to split inquiry to two separate classes running under the single `UIThread.postFirstSync()` we have here. — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/android/detox/src/full/java/com/wix/detox/reactnative/idlingresources/storage/AsyncStorageIdlingResource.kt:70 — // TODO Don't do? — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/android/detox/src/main/java/com/wix/detox/espresso/action/DetoxCustomTapper.kt:110 — // TODO conditionally turn into an error, based on a global strict-mode detox config — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/android/detox/src/main/java/com/wix/detox/espresso/scroll/ScrollProbes.kt:10 — // TODO ViewPager? — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/ios/Detox/Invocation/Element.swift:46 — //TODO: Consider searching here in all windows from all scenes. — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/ios/DetoxXCUITestRunner/DetoxXCUITestRunner/Utils/LogUtils.swift:18 — // TODO: reduce logs amount. — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • TodoComment detox/test/android/app/src/main/java/com/example/NativeModule.java:77 — // TODO? — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
R4 · Test Coverage · No test reaches this file · ×9
  • No test reaches this file generation/core/generator.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file REDACTED — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file detox/local-cli/init.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file detox/scripts/updateGradle.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file generation/core/type-checks.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file scripts/change_react_native_version.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file generation/adapters/android.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file scripts/utils/releaseArgs.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
  • No test reaches this file detox-cli/cli.js — No test imports this module directly or transitively. Import reachability cannot see a test that executes a file by path instead of importing it, nor one that drives it through a running browser by navigating to a URL — if neither does, no test reaches this one.
PF3 · Async & latency hygiene · Sync-over-async blocking · ×6
  • Sync-over-async blocking detox/src/utils/environment.js:104 — `getLatestBuildToolsPath` is async and calls existsSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs.
  • Sync-over-async blocking detox/src/devices/allocation/drivers/android/emulator/patchAvdSkinConfig.js:12 — `patchAvdSkinConfig` is async and calls readFileSync, writeFileSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs.
  • Sync-over-async blocking detox/src/configuration/loadExternalConfig.js:43 — `resolveConfigPath` is async and calls existsSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs.
  • Sync-over-async blocking detox/local-cli/build.js:57 — `handler` is async and calls execSync, existsSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs.
  • Sync-over-async blocking examples/demo-react-native/e2e/globalSetup.ts:17 — `downloadTestButlerAPK` is async and calls execSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs.
  • Sync-over-async blocking scripts/change_react_native_version.js:5 — `run` is async and calls writeFileSync — a blocking call inside async code stalls the event loop — every other request waits for as long as it runs.
R11 · Import Boundaries · Boundary violation [package · ×6
  • Boundary violation [package:test-cross-package-internals] detox/test/e2e/02.matchers.test.js:2 — detox/test/e2e/02.matchers.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead.
  • Boundary violation [package:test-cross-package-internals] detox/test/e2e/03.actions.test.js:1 — detox/test/e2e/03.actions.test.js:1 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead.
  • Boundary violation [package:test-cross-package-internals] detox/test/e2e/04.assertions.test.js:2 — detox/test/e2e/04.assertions.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead.
  • Boundary violation [package:test-cross-package-internals] detox/test/e2e/32.visibility-debug-artifacts.test.js:2 — detox/test/e2e/32.visibility-debug-artifacts.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead.
  • Boundary violation [package:test-cross-package-internals] detox/test/e2e/33.attributes.test.js:2 — detox/test/e2e/33.attributes.test.js:2 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/rn-consts/rn-consts) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead.
  • Boundary violation [package:test-cross-package-internals] detox/test/integration/timeline-artifact.test.js:4 — detox/test/integration/timeline-artifact.test.js:4 reaches past another workspace package's public entry into its internals with a relative path (../../src/utils/tempfile) — the test is coupled to a file layout that package makes no promise about, so a refactor behind its entry point breaks the suite. Import the package by name instead.
R10 · Code Duplication · Duplicated block (11 lines × 2 locations) · ×5
  • Duplicated block (11 lines × 2 locations) detox/src/android/espressoapi/DetoxAssertion.js:58 — detox/src/android/espressoapi/DetoxAssertion.js:58 · detox/src/android/espressoapi/ViewActions.js:308 — the 2 copies are spread across 2 files, 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.
  • Duplicated block (11 lines × 2 locations) detox/src/client/actions/formatters/sync-resources/JavaScriptTimersFormatter.js:14 — detox/src/client/actions/formatters/sync-resources/JavaScriptTimersFormatter.js:14 · detox/src/client/actions/formatters/sync-resources/NetworkFormatter.js:4 — the 2 copies are spread across 2 files, 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.
  • Duplicated block (11 lines × 2 locations) detox/src/devices/allocation/factories/external.js:8 — detox/src/devices/allocation/factories/external.js:8 · detox/src/devices/runtime/factories/external.js:7 — the 2 copies are spread across 2 files, 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.
  • Duplicated block (11 lines × 2 locations) detox/src/errors/DetoxConfigErrorComposer.js:697 — detox/src/errors/DetoxConfigErrorComposer.js:697 · detox/src/errors/DetoxConfigErrorComposer.js:730 — 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 (11 lines × 2 locations) detox/src/ios/expectTwo.js:132 — detox/src/ios/expectTwo.js:132 · detox/src/ios/web.js:43 — the 2 copies are spread across 2 files, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are.
D35 · Change Coupling · Change coupling · ×4
  • Change coupling: RuntimeDevice.js ↔ DeviceDriverBase.js detox/src/devices/runtime/RuntimeDevice.js — `detox/src/devices/runtime/RuntimeDevice.js` and `detox/src/devices/runtime/drivers/DeviceDriverBase.js` change together 81% of the time (38 of the 47 commits that touched whichever of the two files changed less often, counting a file under its earlier names as well — a repo-wide or module-wide sweep is evidence about the sweep rather than about any pair inside it and is left out of BOTH sides of this ratio, while a dependency bump, a formatter/rename sweep, or a commit whose edit to one of the two files was a tool directive such as //go:generate or whitespace only is left out of the shared count ONLY, so the two sides are not taken over identical commit sets) 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 — the registration is the link, and it is meant not to be an import — and the thing to add is a comment on each side naming the other, not a merge; if they simply belong together, co-locate them; if neither holds, the coupling is hidden and worth breaking. You can check this without leaving the row: of the 38 shared commits counted here, the most recent 3 are `b51d2b85` feat(ios): support simulator launch architecture (iOS 26+) (#4916); `431c41fc` feat: device.resetAppState([...bundleIds]) (#4819); `c1081e96` feat: add `device.tap` and `device.longPress` actions. — run `git show` on any of them.
  • Change coupling: DetoxAction.java ↔ NativeElement.js detox/android/detox/src/full/java/com/wix/detox/espresso/DetoxAction.java — `detox/android/detox/src/full/java/com/wix/detox/espresso/DetoxAction.java` and `detox/src/android/core/NativeElement.js` change together 62% of the time (10 of the 16 commits that touched whichever of the two files changed less often, counting a file under its earlier names as well — a repo-wide or module-wide sweep is evidence about the sweep rather than about any pair inside it and is left out of BOTH sides of this ratio, while a dependency bump, a formatter/rename sweep, or a commit whose edit to one of the two files was a tool directive such as //go:generate or whitespace only is left out of the shared count ONLY, so the two sides are not taken over identical commit sets) and are written in DIFFERENT LANGUAGES, so no import can join them and they cannot be co-located into one unit — they compile and ship as separate artifacts. What binds them is a CONTRACT across that boundary — an event or message name, a route, a serialised shape — that each side currently spells out on its own, which is exactly why a change to one drags the other. Declare that contract once where both sides read it (a shared schema, a generated constants file, an interface-definition file) so a change on one side fails the other's build instead of drifting silently; where the surface is too small to be worth that, name the counterpart in a comment on both sides so the next reader finds it. There is nothing here to merge. You can check this without leaving the row: of the 10 shared commits counted here, the most recent 3 are `7b9889e3` fix: replace `duration` and `point` params order.; `c36a8bdd` fix(android): fix longPress action.; `f935518c` fix(android): fix LongPressAction. — run `git show` on any of them.
  • Change coupling: NativeElement.js ↔ DetoxAction.js detox/src/android/core/NativeElement.js — `detox/src/android/core/NativeElement.js` and `detox/src/android/espressoapi/DetoxAction.js` change together 62% of the time (10 of the 16 commits that touched whichever of the two files changed less often, counting a file under its earlier names as well — a repo-wide or module-wide sweep is evidence about the sweep rather than about any pair inside it and is left out of BOTH sides of this ratio, while a dependency bump, a formatter/rename sweep, or a commit whose edit to one of the two files was a tool directive such as //go:generate or whitespace only is left out of the shared count ONLY, so the two sides are not taken over identical commit sets) 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 — the registration is the link, and it is meant not to be an import — and the thing to add is a comment on each side naming the other, not a merge; if they simply belong together, co-locate them; if neither holds, the coupling is hidden and worth breaking. You can check this without leaving the row: of the 10 shared commits counted here, the most recent 3 are `7b9889e3` fix: replace `duration` and `point` params order.; `c36a8bdd` fix(android): fix longPress action.; `f935518c` fix(android): fix LongPressAction. — run `git show` on any of them.
  • Change coupling: DetoxMatcher.java ↔ ViewMatchers.kt detox/android/detox/src/full/java/com/wix/detox/espresso/DetoxMatcher.java — `detox/android/detox/src/full/java/com/wix/detox/espresso/DetoxMatcher.java` and `detox/android/detox/src/full/java/com/wix/detox/espresso/matcher/ViewMatchers.kt` change together 58% of the time (7 of the 12 commits that touched whichever of the two files changed less often, counting a file under its earlier names as well — a repo-wide or module-wide sweep is evidence about the sweep rather than about any pair inside it and is left out of BOTH sides of this ratio, while a dependency bump, a formatter/rename sweep, or a commit whose edit to one of the two files was a tool directive such as //go:generate or whitespace only is left out of the shared count ONLY, so the two sides are not taken over identical commit sets) 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 — the registration is the link, and it is meant not to be an import — and the thing to add is a comment on each side naming the other, not a merge; if they simply belong together, co-locate them; if neither holds, the coupling is hidden and worth breaking. You can check this without leaving the row: of the 7 shared commits counted here, the most recent 3 are `8fc7c6e9` Fixes after mr; `17cdf674` Fixed issues with toBeVisible(); `4e72d632` feat: add regex support in element matchers (#4100) — run `git show` on any of them.
R10 · Code Duplication · Duplicated block (10 lines × 2 locations) · ×4
  • Duplicated block (10 lines × 2 locations) detox/src/android/core/NativeMatcher.js:15 — detox/src/android/core/NativeMatcher.js:15 · detox/src/android/core/NativeMatcher.js:29 — 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.
  • Duplicated block (10 lines × 2 locations) detox/src/artifacts/log/android/ADBLogcatRecording.js:63 — detox/src/artifacts/log/android/ADBLogcatRecording.js:63 · detox/src/artifacts/video/ADBScreenrecorderArtifact.js:62 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another.
  • Duplicated block (10 lines × 2 locations) detox/src/configuration/composeDeviceConfig.js:82 — detox/src/configuration/composeDeviceConfig.js:82 · detox/src/configuration/composeDeviceConfig.js:94 — 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.
  • Duplicated block (10 lines × 2 locations) detox/src/utils/assertArgument.js:38 — detox/src/utils/assertArgument.js:38 · detox/src/utils/assertArgument.js:54 — 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.
R10 · Code Duplication · Duplicated block (12 lines × 2 locations) · ×3
  • Duplicated block (12 lines × 2 locations) detox/src/android/espressoapi/UIDevice.js:237 — detox/src/android/espressoapi/UIDevice.js:237 · detox/src/android/espressoapi/UIDevice.js:265 — 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.
  • Duplicated block (12 lines × 2 locations) detox/src/ios/system.js:48 — detox/src/ios/system.js:48 · detox/src/ios/web.js:82 — the 2 copies are spread across 2 files, 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.
  • Duplicated block (12 lines × 2 locations) detox/src/utils/pipeCommands.js:7 — detox/src/utils/pipeCommands.js:7 · detox/src/utils/pipeCommands.js:23 — 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.
D17 · Explicit Debt · FixmeComment · ×2
  • FixmeComment detox/android/detox/src/testFull/java/com/wix/detox/espresso/action/GetAttributesActionTest.kt:203 — //FIXME: Complete the integration over RN72 or delete this test — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
  • FixmeComment detox/android/detox/src/testFull/java/com/wix/detox/espresso/common/ReactSliderHelperTest.kt:18 — // FIXME: RN72 upgrade - this test is broken — source code is not a task system: move the work to your tracker and leave a reference instead (e.g. `// REF: #123`), so the task is planned where tasks live and the ticket links back to the code.
D29 · Static Analysis (SAST) · REDACTED
  • REDACTED
  • REDACTED
D3 · God Classes · MethodTooLong · ×2
  • MethodTooLong: ElementType.asString detox/ios/DetoxXCUITestRunner/DetoxXCUITestRunner/Extensions/ElementType+Extensions.swift:11 — MethodTooLong — asString runs 170 significant lines (blank, comment-only and punctuation-only lines excluded) in one body. The bar is 100 significant lines; this is 70 over it, 1.70× the bar. This is length, not branching: a long straight-line body scores low on complexity and is still read whole to change any part of it, so the complexity numbers beside this row neither confirm nor excuse it. To reduce it, extract each cohesive step of the body — the runs of statements that work on the same values and would earn the same name — into its own named unit, and have this one call them in order.
  • MethodTooLong: DetoxManager.webSocket detox/ios/Detox/DetoxManager.swift:234 — MethodTooLong — webSocket runs 138 significant lines (blank, comment-only and punctuation-only lines excluded) in one body. The bar is 100 significant lines; this is 38 over it, 1.38× the bar. This is length, not branching: a long straight-line body scores low on complexity and is still read whole to change any part of it, so the complexity numbers beside this row neither confirm nor excuse it. To reduce it, extract each cohesive step of the body — the runs of statements that work on the same values and would earn the same name — into its own named unit, and have this one call them in order.
D3 · God Classes · FileTooLong · ×2
  • FileTooLong: ios/expectTwo.js detox/src/ios/expectTwo.js — FileTooLong — 536 significant lines (blank, comment-only and punctuation-only lines excluded; the length bar is tripled for a single-responsibility module of 4 or fewer top-level units). The bar is 500 significant lines; this is 36 over it, 1.07× the bar. To reduce it, split the file along the responsibilities already in it: move each cohesive group of declarations into its own sibling file in the same module or package, so no one file has to be read whole to change one of them.
  • FileTooLong: errors/DetoxConfigErrorComposer.js detox/src/errors/DetoxConfigErrorComposer.js — FileTooLong — 515 significant lines (blank, comment-only and punctuation-only lines excluded), about 98% of them inside a single declaration: DetoxConfigErrorComposer (9-754). The bar is 500 significant lines; this is 15 over it, 1.03× the bar. 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.
D6 · Cohesion (LCOM4) · Low cohesion · ×2
  • Low cohesion: DetoxCoreListener (LCOM4 5) detox/runners/jest/testEnvironment/listeners/DetoxCoreListener.js:12 — DetoxCoreListener's methods fall into 5 groups that share no field and call none of each other, against a bar of more than 3 for this run (LCOM4, configurable — your repository's bar is the one quoted here). Each group is a set of methods reachable from one another through shared fields or direct calls, so 5 groups means the type has that many internally-connected clusters with nothing tying them together. Types whose shape makes a high count expected — and which would otherwise dominate this list — are excluded before this row is raised, so this is a genuine split candidate rather than a metric reading. It is still a shape, not a defect: confirm the groups match responsibilities you can name before splitting.
  • Low cohesion: NativeMatcher (LCOM4 4) detox/src/android/core/NativeMatcher.js:7 — NativeMatcher's methods fall into 4 groups that share no field and call none of each other, against a bar of more than 3 for this run (LCOM4, configurable — your repository's bar is the one quoted here). Each group is a set of methods reachable from one another through shared fields or direct calls, so 4 groups means the type has that many internally-connected clusters with nothing tying them together. Types whose shape makes a high count expected — and which would otherwise dominate this list — are excluded before this row is raised, so this is a genuine split candidate rather than a metric reading. It is still a shape, not a defect: confirm the groups match responsibilities you can name before splitting.
R10 · Code Duplication · Duplicated block with local edits (27 matched lines × 2 locations) · ×2
  • Duplicated block with local edits (27 matched lines × 2 locations) detox/src/devices/allocation/drivers/android/emulator/EmulatorAllocDriver.js:100 — detox/src/devices/allocation/drivers/android/emulator/EmulatorAllocDriver.js:100 · detox/src/devices/allocation/drivers/ios/SimulatorAllocDriver.js:73 — the two spans are one implementation copied and then locally edited — 165 tokens are still identical, in the same order in both files, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one.
  • Duplicated block with local edits (27 matched lines × 2 locations) detox/src/realms/DetoxPrimaryContext.js:216 — detox/src/realms/DetoxPrimaryContext.js:216 · detox/src/realms/DetoxPrimaryContext.js:259 — the two spans are one implementation copied and then locally edited — 168 tokens are still identical, in the same order in both spans, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one.
R10 · Code Duplication · Duplicated block (14 lines × 2 locations) · ×2
  • Duplicated block (14 lines × 2 locations) detox/src/android/espressoapi/DetoxAssertion.js:8 — detox/src/android/espressoapi/DetoxAssertion.js:8 · detox/src/android/espressoapi/EspressoDetox.js:8 — the 2 copies sit in sibling files in one directory, so check first whether one of them (or an existing module there) already owns this behaviour and the others should call it; otherwise extract it into one module in that directory and have each site call it.
  • Duplicated block (14 lines × 2 locations) detox/src/devices/allocation/drivers/android/genycloud/GenyRegistry.js:76 — detox/src/devices/allocation/drivers/android/genycloud/GenyRegistry.js:76 · detox/src/devices/allocation/drivers/android/genycloud/GenyRegistry.js:95 — 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.
R10 · Code Duplication · Duplicated block (13 lines × 2 locations) · ×2
  • Duplicated block (13 lines × 2 locations) detox/src/android/espressoapi/UIDevice.js:172 — detox/src/android/espressoapi/UIDevice.js:172 · detox/src/android/espressoapi/web/WebViewElement.js:27 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another.
  • Duplicated block (13 lines × 2 locations) scripts/change_react_native_version.js:45 — scripts/change_react_native_version.js:45 · scripts/change_react_native_version.js:60 — 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.
R10 · Code Duplication · Duplicated block (11 lines × 3 locations) · ×2
  • Duplicated block (11 lines × 3 locations) detox/src/android/espressoapi/DetoxAction.js:402 — detox/src/android/espressoapi/DetoxAction.js:402 · detox/src/android/espressoapi/DetoxViewActions.js:21 · detox/src/android/espressoapi/web/DetoxWebAtomMatcher.js:94 — the 3 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. There is one copy in each of 3 separate files rather than several in one place, so check first whether these are sibling modules that each declare their own version of one shape — one per entity, per provider, per language. Where they are, no single extracted module collapses them: each module still has to be written, and what recurs is the TEMPLATE. The moves that do collapse a template are to generate these modules from the set they enumerate, or to replace the repeated construction with one factory each site calls with its own values — and where the set is the point, each module pinning one distinct thing, the repetition IS the enumeration and there is nothing to delete.
  • Duplicated block (11 lines × 3 locations) detox/src/android/espressoapi/DetoxMatcher.js:58 — detox/src/android/espressoapi/DetoxMatcher.js:58 · detox/src/android/espressoapi/DetoxMatcher.js:86 · detox/src/android/espressoapi/EspressoDetox.js:39 — the 3 copies are spread across 2 files, 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.
R7 · Dead Code · Dead file (~3 LoC) · ×2
  • Dead file (~3 LoC) detox/runners/mocha/DetoxMochaAdapter.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
  • Dead file (~3 LoC) detox/runners/mocha/adapter.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
D1 · Cyclomatic Complexity · composeDeviceConfig.validateSystemUIConfig (cyclomatic 40) · ×1
  • composeDeviceConfig.validateSystemUIConfig (cyclomatic 40) detox/src/configuration/composeDeviceConfig.js:69 — composeDeviceConfig.validateSystemUIConfig has cyclomatic complexity 40 (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. This file is where this pass's cyclomatic complexity CONCENTRATES: detox/src/configuration/composeDeviceConfig.js holds 2 of the 12 methods over the threshold — including the worst — and 41 of the 99 points over it (41%), 2.1× the next-largest file (detox/ios/Detox/DetoxManager.swift at 20). No single row can show this, because each is measured only against the threshold: reducing this one file moves this dimension further than any other file in the repository.
D1 · Cyclomatic Complexity · DetoxManager.webSocket (cyclomatic 35) · ×1
  • DetoxManager.webSocket (cyclomatic 35) detox/ios/Detox/DetoxManager.swift:234 — DetoxManager.webSocket has cyclomatic complexity 35 (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.
D1 · Cyclomatic Complexity · composeDeviceConfig.validateDeviceConfig (cyclomatic 31) · ×1
  • composeDeviceConfig.validateDeviceConfig (cyclomatic 31) detox/src/configuration/composeDeviceConfig.js:159 — composeDeviceConfig.validateDeviceConfig has cyclomatic complexity 31 (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. This file is where this pass's cyclomatic complexity CONCENTRATES: detox/src/configuration/composeDeviceConfig.js holds 2 of the 12 methods over the threshold — including the worst — and 41 of the 99 points over it (41%), 2.1× the next-largest file (detox/ios/Detox/DetoxManager.swift at 20). No single row can show this, because each is measured only against the threshold: reducing this one file moves this dimension further than any other file in the repository.
D1 · Cyclomatic Complexity · generator.getGenerator (cyclomatic 28) · ×1
  • generator.getGenerator (cyclomatic 28) generation/core/generator.js:10 — generator.getGenerator has cyclomatic complexity 28 (threshold 15). Of this number, 18 points are the body's own statements and 10 belong to 7 function literals inside it that branch. To reduce it, split the body: these branches sit side by side rather than nested inside one another, so extracting each one on its own would leave a function per branch. Group the statements between the checks into named steps and move each step into its own function, so the body reads as a short sequence of named stages.
D1 · Cyclomatic Complexity · AppleSimUtils.setPermissions (cyclomatic 24) · ×1
  • AppleSimUtils.setPermissions (cyclomatic 24) detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:33 — AppleSimUtils.setPermissions has cyclomatic complexity 24 (threshold 15). To reduce it, keep the dispatch but shrink the arms: move each non-trivial case body into its own named function (or onto the value being matched) so the dispatch reads one line per case, and group related cases into a sub-dispatch. Where every arm is uniform — the same kind of value, with no behaviour of its own — a table keyed by the case is the shorter form; wherever the arms carry different data or different behaviour, keep them as cases, because collapsing those trades an explicit, reviewable set of cases for nothing.
D1 · Cyclomatic Complexity · Predicate.with (cyclomatic 19) · ×1
  • Predicate.with (cyclomatic 19) detox/ios/Detox/Invocation/Predicate.swift:46 — Predicate.with has cyclomatic complexity 19 (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.
D1 · Cyclomatic Complexity · InvocationParams.encode (cyclomatic 19) · ×1
  • InvocationParams.encode (cyclomatic 19) detox/ios/DetoxXCUITestRunner/DetoxXCUITestRunner/Params Reader/InvocationParams.swift:79 — InvocationParams.encode has cyclomatic complexity 19 (threshold 15). To reduce it, split the body: these branches sit side by side rather than nested inside one another, so extracting each one on its own would leave a function per branch. Group the statements between the checks into named steps and move each step into its own function, so the body reads as a short sequence of named stages.
D1 · Cyclomatic Complexity · composeAppsConfig.composeAppsConfigFromAliased (cyclomatic 18) · ×1
  • composeAppsConfig.composeAppsConfigFromAliased (cyclomatic 18) detox/src/configuration/composeAppsConfig.js:36 — composeAppsConfig.composeAppsConfigFromAliased has cyclomatic complexity 18 (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.
D1 · Cyclomatic Complexity · ScrollHelper.getScrollStartOffsetInView (cyclomatic 17) · ×1
  • ScrollHelper.getScrollStartOffsetInView (cyclomatic 17) detox/android/detox/src/main/java/com/wix/detox/espresso/scroll/ScrollHelper.java:146 — ScrollHelper.getScrollStartOffsetInView has cyclomatic complexity 17 (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.
D1 · Cyclomatic Complexity · DetoxConfigErrorComposer.configurationShouldNotUseLegacyFormat (cyclomatic 16) · ×1
  • DetoxConfigErrorComposer.configurationShouldNotUseLegacyFormat (cyclomatic 16) detox/src/errors/DetoxConfigErrorComposer.js:229 — DetoxConfigErrorComposer.configurationShouldNotUseLegacyFormat has cyclomatic complexity 16 (threshold 15). To reduce it, split the body: these branches sit side by side rather than nested inside one another, so extracting each one on its own would leave a function per branch. Group the statements between the checks into named steps and move each step into its own function, so the body reads as a short sequence of named stages.
D1 · Cyclomatic Complexity · RuntimeDevice.launchApp (cyclomatic 16) · ×1
  • RuntimeDevice.launchApp (cyclomatic 16) detox/src/devices/runtime/RuntimeDevice.js:118 — RuntimeDevice.launchApp has cyclomatic complexity 16 (threshold 15). To reduce it, split the body: these branches sit side by side rather than nested inside one another, so extracting each one on its own would leave a function per branch. Group the statements between the checks into named steps and move each step into its own function, so the body reads as a short sequence of named stages.
D1 · Cyclomatic Complexity · composeSessionConfig.composeSessionConfig (cyclomatic 16) · ×1
  • composeSessionConfig.composeSessionConfig (cyclomatic 16) detox/src/configuration/composeSessionConfig.js:11 — composeSessionConfig.composeSessionConfig 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.
D12 · Dependency Hygiene · No REDACTED.lock committed by an application · ×1
  • No REDACTED.lock committed by an application — This repository declares 2 gem(s) across 1 Bundler manifest(s) and ships no application `.gemspec`, so it is an APPLICATION — but no `REDACTED.lock` is committed. Nothing records the versions a working build resolved to, so `bundle install` re-resolves against whatever rubygems.org serves today and two deploys of this commit are not guaranteed to be the same deploy. Run `bundle install` and commit the resulting `REDACTED.lock`. (A published GEM correctly omits its lock, which is why this is asked only of a repository that ships no .gemspec.)
D2 · Cognitive Complexity · composeDeviceConfig.validateSystemUIConfig (cognitive 64) · ×1
  • composeDeviceConfig.validateSystemUIConfig (cognitive 64) detox/src/configuration/composeDeviceConfig.js:69 — composeDeviceConfig.validateSystemUIConfig has cognitive complexity 64 (threshold 15). Drivers by points: if/else 27 (52 pts), boolean chains 12 (nesting depth added 25). 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. This file is where this pass's cognitive complexity CONCENTRATES: detox/src/configuration/composeDeviceConfig.js holds 2 of the 16 methods over the threshold — including the worst — and 82 of the 209 points over it (39%), 2.6× the next-largest file (detox/ios/Detox/DetoxManager.swift at 32). No single row can show this, because each is measured only against the threshold: reducing this one file moves this dimension further than any other file in the repository.
D2 · Cognitive Complexity · composeDeviceConfig.validateDeviceConfig (cognitive 48) · ×1
  • composeDeviceConfig.validateDeviceConfig (cognitive 48) detox/src/configuration/composeDeviceConfig.js:159 — composeDeviceConfig.validateDeviceConfig has cognitive complexity 48 (threshold 15). Drivers by points: if/else 28 (46 pts), boolean chains 2 (nesting depth added 18). 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. This file is where this pass's cognitive complexity CONCENTRATES: detox/src/configuration/composeDeviceConfig.js holds 2 of the 16 methods over the threshold — including the worst — and 82 of the 209 points over it (39%), 2.6× the next-largest file (detox/ios/Detox/DetoxManager.swift at 32). No single row can show this, because each is measured only against the threshold: reducing this one file moves this dimension further than any other file in the repository.
D2 · Cognitive Complexity · DetoxManager.webSocket (cognitive 47) · ×1
  • DetoxManager.webSocket (cognitive 47) detox/ios/Detox/DetoxManager.swift:234 — DetoxManager.webSocket has cognitive complexity 47 (threshold 15). Drivers by points: if/else 18 (33 pts), error handling 2 (7 pts), ternaries 2 (6 pts), match/switch 1 (nesting depth added 24). The drivers above price the dispatch low by construction — a dispatch is charged once however many cases it lists, while each branch inside an arm is charged in full — so most of this count is what the case bodies hold, and the arms are where it can be reduced. To reduce it, keep the dispatch but shrink the arms: move each non-trivial case body into its own named function (or onto the value being matched) so the dispatch reads one line per case, and group related cases into a sub-dispatch. Keep every case explicit, and make the behaviour for cases you do not list a deliberate choice rather than an accident.
D2 · Cognitive Complexity · composeAppsConfig.composeAppsConfigFromAliased (cognitive 30) · ×1
  • composeAppsConfig.composeAppsConfigFromAliased (cognitive 30) detox/src/configuration/composeAppsConfig.js:36 — composeAppsConfig.composeAppsConfigFromAliased has cognitive complexity 30 (threshold 15). Drivers by points: if/else 13 (21 pts), boolean chains 5, ternaries 2 (3 pts), loops 1 (nesting depth added 9). 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 · generator.getGenerator (cognitive 28) · ×1
  • generator.getGenerator (cognitive 28) generation/core/generator.js:10 — generator.getGenerator has cognitive complexity 28 (threshold 15). Drivers by points: if/else 12, boolean chains 8, ternaries 7 (8 pts) (nesting depth added 1). Of this number, 18 points are the body's own statements and 10 belong to 7 function literals inside it that branch. To reduce it, split the body: this score is breadth rather than depth — many checks laid out side by side rather than nested inside one another, so inverting conditions into early returns has nothing left to flatten. Group the statements between the checks into named steps and move each step into its own function, so the body reads as a short sequence of named stages.
D2 · Cognitive Complexity · build.handler (cognitive 25) · ×1
  • build.handler (cognitive 25) detox/local-cli/build.js:57 — build.handler has cognitive complexity 25 (threshold 15). Drivers by points: if/else 5 (11 pts), boolean chains 6, ternaries 1 (4 pts), error handling 1 (3 pts), loops 1 (nesting depth added 11). 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 · ScrollHelper.getScrollStartOffsetInView (cognitive 25) · ×1
  • ScrollHelper.getScrollStartOffsetInView (cognitive 25) detox/android/detox/src/main/java/com/wix/detox/espresso/scroll/ScrollHelper.java:146 — ScrollHelper.getScrollStartOffsetInView has cognitive complexity 25 (threshold 15). Drivers by points: ternaries 12 (24 pts), match/switch 1 (nesting depth added 12). The drivers above price the dispatch low by construction — a dispatch is charged once however many cases it lists, while each branch inside an arm is charged in full — so most of this count is what the case bodies hold, and the arms are where it can be reduced. To reduce it, keep the dispatch but shrink the arms: move each non-trivial case body into its own named function (or onto the value being matched) so the dispatch reads one line per case, and group related cases into a sub-dispatch. Keep every case explicit, and make the behaviour for cases you do not list a deliberate choice rather than an accident.
D2 · Cognitive Complexity · build (cognitive 25) · ×1
  • build (cognitive 25) detox/local-cli/build.js:57 — build has cognitive complexity 25 (threshold 15). Drivers by points: if/else 5 (11 pts), boolean chains 6, ternaries 1 (4 pts), error handling 1 (3 pts), loops 1 (nesting depth added 11). 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 · Predicate.with (cognitive 22) · ×1
  • Predicate.with (cognitive 22) detox/ios/Detox/Invocation/Predicate.swift:46 — Predicate.with has cognitive complexity 22 (threshold 15). Drivers by points: if/else 11 (19 pts), ternaries 1 (2 pts), match/switch 1 (nesting depth added 9). 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 · InvocationParams.encode (cognitive 22) · ×1
  • InvocationParams.encode (cognitive 22) detox/ios/DetoxXCUITestRunner/DetoxXCUITestRunner/Params Reader/InvocationParams.swift:79 — InvocationParams.encode has cognitive complexity 22 (threshold 15). Drivers by points: if/else 14 (18 pts), boolean chains 4 (nesting depth added 4). To reduce it, split the body: most of this score is breadth rather than depth — checks laid out side by side rather than stacked — so group the statements between the checks into named steps and move each step into its own function. Some of it IS depth: where a check sits inside another whose only job is to reach it, merge the two into one condition.
D2 · Cognitive Complexity · setupStatusBar (cognitive 21) · ×1
  • setupStatusBar (cognitive 21) detox/src/devices/allocation/drivers/android/utils/SystemUICfgHelper.js:120 — setupStatusBar has cognitive complexity 21 (threshold 15). Drivers by points: if/else 8 (10 pts), ternaries 4 (10 pts), boolean chains 1 (nesting depth added 8). 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 · AppleSimUtils.statusBarOverride (cognitive 20) · ×1
  • AppleSimUtils.statusBarOverride (cognitive 20) detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:585 — AppleSimUtils.statusBarOverride has cognitive complexity 20 (threshold 15). Drivers by points: if/else 10 (19 pts), boolean chains 1 (nesting depth added 9). 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 · composeSessionConfig.composeSessionConfig (cognitive 19) · ×1
  • composeSessionConfig.composeSessionConfig (cognitive 19) detox/src/configuration/composeSessionConfig.js:11 — composeSessionConfig.composeSessionConfig has cognitive complexity 19 (threshold 15). Drivers by points: if/else 11 (15 pts), boolean chains 4 (nesting depth added 4). 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 · Expectation.with (cognitive 19) · ×1
  • Expectation.with (cognitive 19) detox/ios/Detox/Invocation/Expectation.swift:97 — Expectation.with has cognitive complexity 19 (threshold 15). Drivers by points: ternaries 5 (10 pts), if/else 7, boolean chains 2 (nesting depth added 5). 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 · AsyncWebSocket._onMessage (cognitive 17) · ×1
  • AsyncWebSocket._onMessage (cognitive 17) detox/src/client/AsyncWebSocket.js:226 — AsyncWebSocket._onMessage has cognitive complexity 17 (threshold 15). Drivers by points: if/else 8 (11 pts), boolean chains 3, loops 1 (2 pts), error handling 1 (nesting depth added 4). 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 · RuntimeDevice.launchApp (cognitive 17) · ×1
  • RuntimeDevice.launchApp (cognitive 17) detox/src/devices/runtime/RuntimeDevice.js:118 — RuntimeDevice.launchApp has cognitive complexity 17 (threshold 15). Drivers by points: if/else 14 (15 pts), boolean chains 1, ternaries 1 (nesting depth added 1). To reduce it, split the body: this score is breadth rather than depth — many checks laid out side by side rather than nested inside one another, so inverting conditions into early returns has nothing left to flatten. Group the statements between the checks into named steps and move each step into its own function, so the body reads as a short sequence of named stages.
D29 · Static Analysis (SAST) · REDACTED · ×1
  • REDACTED
D29 · Static Analysis (SAST) · REDACTED · ×1
  • REDACTED
D30 · Dependency Vulnerabilities · Medium vulnerability · ×1
  • REDACTED
D36 · Supply-chain Provenance & Signing · REDACTED · ×1
  • REDACTED
D36 · Supply-chain Provenance & Signing · REDACTED · ×1
  • REDACTED
D4 · Code Duplication · Duplicated block (15 lines × 2) · ×1
  • Duplicated block (15 lines × 2) detox/android/detox/src/main/java/com/wix/detox/espresso/action/DetoxSwipeWithLongPress.kt:23 — detox/android/detox/src/main/java/com/wix/detox/espresso/action/DetoxSwipeWithLongPress.kt:23-37 | detox/android/detox/src/main/java/com/wix/detox/espresso/scroll/DetoxSwipe.kt:27-41 — 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 `detox/android/detox/src/main/java/com/wix/detox/espresso/action/DetoxSwipeWithLongPress.kt:23` 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.
D4 · Code Duplication · Duplicated block (16 lines × 2) · ×1
  • Duplicated block (16 lines × 2) detox/ios/Detox/Invocation/Action.swift:553 — detox/ios/Detox/Invocation/Action.swift:553-568 | detox/ios/Detox/Invocation/Action.swift:580-595 — 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 (11 lines × 2) · ×1
  • Duplicated block (11 lines × 2) detox/ios/Detox/Invocation/Expectation.swift:141 — detox/ios/Detox/Invocation/Expectation.swift:141-151 | detox/ios/Detox/Invocation/Expectation.swift:223-233 — 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 `detox/ios/Detox/Invocation/Expectation.swift:223` it runs out through the closing brace of the declaration holding it — the window is that declaration's tail, not a fragment that begins part-way through something, 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. ★ These copies have DRIFTED, and that is worth reading before extracting anything: just before the matched lines, `detox/ios/Detox/Invocation/Expectation.swift:218` calls `contains` and `detox/ios/Detox/Invocation/Expectation.swift:140` does not — after which the two agree again for 2 more lines. One of those two behaviours is the intended one and the other is what a copy-paste left behind, so decide which BEFORE unifying them: extracting the shared part will silently settle it, and if the copy that skips the call is the wrong one, that bug is already live.
R10 · Code Duplication · Duplication concentrated across 7 sibling directories (6 clone groups) · ×1
  • Duplication concentrated across 7 sibling directories (6 clone groups) detox/src/android/core/NativeWaitFor.js:22 — 6 duplicated blocks under detox/src/ have copies in at least two of the sibling directories android, artifacts, client, devices, ios, realms (+1 more sibling(s) not listed) — 0 of them are reported below, and 6 are counted here but not reported individually: those copies match on shape but no longer clear R10's bar for an individually reported row — either they kept neither their own names nor their values, or what was copied is too small to stand on its own (it reports near-exact duplication only, and only of substantial extent). What this row states is the concentration, which the detector measured over all 6 and which does not depend on how exactly each block's copies still match. That concentration is one structural fact, not 6 local ones: the siblings replicate behaviour none of them owns, which is the shape of a missing shared module — a common library every sibling imports — rather than 6 separate extractions. Check first whether the siblings are deliberately standalone deliverables (scaffold templates, demo apps that must stay copy-pasteable); where they are, the duplication is the design and the per-block rows are the ones to act on.
R10 · Code Duplication · Duplication concentrated across 4 sibling directories (5 clone groups) · ×1
  • Duplication concentrated across 4 sibling directories (5 clone groups) detox/src/artifacts/log/LogArtifactPlugin.js:53 — 5 duplicated blocks under detox/src/artifacts/ have copies in at least two of the sibling directories log, screenshot, uiHierarchy, video — 2 of them are reported below, and 3 are counted here but not reported individually: those copies match on shape but no longer clear R10's bar for an individually reported row — either they kept neither their own names nor their values, or what was copied is too small to stand on its own (it reports near-exact duplication only, and only of substantial extent). What this row states is the concentration, which the detector measured over all 5 and which does not depend on how exactly each block's copies still match. That concentration is one structural fact, not 5 local ones: the siblings replicate behaviour none of them owns, which is the shape of a missing shared module — a common library every sibling imports — rather than 5 separate extractions. Check first whether the siblings are deliberately standalone deliverables (scaffold templates, demo apps that must stay copy-pasteable); where they are, the duplication is the design and the per-block rows are the ones to act on.
R10 · Code Duplication · Duplicated block (28 lines × 3 locations) · ×1
  • Duplicated block (28 lines × 3 locations) detox/src/android/espressoapi/DetoxAction.js:8 — detox/src/android/espressoapi/DetoxAction.js:8 · generation/core/global-functions.js:5 · generation/core/global-functions.js:35 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another.
R10 · Code Duplication · Duplicated block (27 lines × 2 locations) · ×1
  • Duplicated block (27 lines × 2 locations) detox/src/android/espressoapi/UIDevice.js:247 — detox/src/android/espressoapi/UIDevice.js:247 · detox/src/android/espressoapi/UIDevice.js:275 — 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.
R10 · Code Duplication · Duplicated block (26 lines × 2 locations) · ×1
  • Duplicated block (26 lines × 2 locations) detox/src/android/espressoapi/DetoxAction.js:113 — detox/src/android/espressoapi/DetoxAction.js:113 · detox/src/android/espressoapi/DetoxAction.js:140 — 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.
R10 · Code Duplication · Duplicated block (25 lines × 2 locations) · ×1
  • Duplicated block (25 lines × 2 locations) detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:310 — detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:310 · detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:336 — all 2 copies are in the same file, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are.
R10 · Code Duplication · Duplicated block (20 lines × 2 locations) · ×1
  • Duplicated block (20 lines × 2 locations) detox/src/artifacts/log/LogArtifactPlugin.js:53 — detox/src/artifacts/log/LogArtifactPlugin.js:53 · detox/src/artifacts/video/VideoArtifactPlugin.js:13 — the 2 copies are spread across 2 files, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are.
R10 · Code Duplication · Duplicated block (16 lines × 2 locations) · ×1
  • Duplicated block (16 lines × 2 locations) detox/src/android/espressoapi/DetoxMatcher.js:108 — detox/src/android/espressoapi/DetoxMatcher.js:108 · detox/src/android/espressoapi/DetoxMatcher.js:156 — all 2 copies are in the same file, and the SHAPE of this repetition could not be determined. It is not a run of declarations, a listing, a declaration header, a type body or a slice through a construct — and it was not measured as a run of executable statements either, so this row cannot tell you whether a function can stand where these lines are. Read the two spans before acting, because the move is opposite in the two cases. Where they are statements, the ordinary answer holds: give the shared part one home and call it from each site. Where they turn out to be declarations, a literal's entries, or the cases of an enumeration, there is no call site to call anything from, and collapsing them would delete what each copy pins — a shared base type, a generated set, or one exported constant each site refers to is the move instead, and sometimes the honest answer is that there is nothing to extract at all. Reported because the copies drift apart the first time only one of them is edited, which is true whichever of those they are.
R10 · Code Duplication · Duplicated block (13 lines × 7 locations) · ×1
  • Duplicated block (13 lines × 7 locations) detox/src/android/espressoapi/Detox.js:29 — detox/src/android/espressoapi/Detox.js:29 · detox/src/android/espressoapi/Detox.js:64 · detox/src/android/espressoapi/DetoxAction.js:201 · detox/src/android/espressoapi/DetoxAction.js:382 · +3 more site(s) not listed — the 7 copies are spread across 4 files, 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.
R10 · Code Duplication · Duplicated block (13 lines × 4 locations) · ×1
  • Duplicated block (13 lines × 4 locations) detox/src/android/espressoapi/UIDevice.js:328 — detox/src/android/espressoapi/UIDevice.js:328 · detox/src/android/espressoapi/UIDevice.js:353 · detox/src/android/espressoapi/UIDevice.js:370 · detox/src/android/espressoapi/web/WebElement.js:28 — the 2 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another.
R10 · Code Duplication · Duplicated block with local edits (13 matched lines × 2 locations) · ×1
  • Duplicated block with local edits (13 matched lines × 2 locations) detox/src/devices/runtime/drivers/android/AndroidDriver.js:223 — detox/src/devices/runtime/drivers/android/AndroidDriver.js:223 · detox/src/devices/runtime/drivers/ios/SimulatorDriver.js:217 — the two spans are one implementation copied and then locally edited — 61 tokens are still identical, in the same order in both files, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one.
R10 · Code Duplication · Duplicated block (12 lines × 4 locations) · ×1
  • Duplicated block (12 lines × 4 locations) detox/src/android/espressoapi/DetoxAction.js:93 — detox/src/android/espressoapi/DetoxAction.js:93 · detox/src/android/espressoapi/DetoxAction.js:117 · detox/src/android/espressoapi/DetoxAction.js:144 · detox/src/android/espressoapi/DetoxAction.js:172 — all 4 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.
R10 · Code Duplication · Duplicated block (12 lines × 3 locations) · ×1
  • Duplicated block (12 lines × 3 locations) detox/src/android/matchers/native.js:14 — detox/src/android/matchers/native.js:14 · detox/src/android/matchers/native.js:27 · detox/src/android/matchers/native.js:75 — all 3 copies are in the same file, and each CITED SPAN is a SPECIALISATION DECLARATION — a type whose `extends` clause names a base and whose body hands that base its own values through `super(…)`. The shared module this dimension usually asks you to extract already exists: it is that base, every one of these sites already reaches it, and the `super(…)` call this row matched on is where each site passes its differences in. So do not read this as an extract-a-helper row — there is no missing helper, and what is left at each site is the declaration of one distinct specialisation, which cannot be deleted without deleting the thing it declares. Read what actually differs between the spans, because two different answers follow. Where the sites differ only in the values they hand the base — a type argument, a service, an alias, a cache — the repetition is a TEMPLATE, and the only moves that collapse it are to generate these declarations from the set they enumerate or to replace the repeated construction with one factory each site calls with its own values; where that set is the point, each site pinning one distinct thing, the repetition IS the enumeration and there is nothing to remove. Where instead a span carries logic OUTSIDE the delegation that is the same at every site, that logic is the part to move, and its home is the base type rather than a new module. Reported because the copies still drift apart the first time only one of them is edited.
R10 · Code Duplication · Duplicated block (11 lines × 5 locations) · ×1
  • Duplicated block (11 lines × 5 locations) detox/src/errors/DetoxConfigErrorComposer.js:653 — detox/src/errors/DetoxConfigErrorComposer.js:653 · detox/src/errors/DetoxConfigErrorComposer.js:669 · detox/src/errors/DetoxConfigErrorComposer.js:681 · detox/src/errors/DetoxConfigErrorComposer.js:693 · +1 more site(s) not listed — all 5 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.
R10 · Code Duplication · Duplicated block (10 lines × 3 locations) · ×1
  • Duplicated block (10 lines × 3 locations) detox/src/android/core/NativeElement.js:32 — detox/src/android/core/NativeElement.js:32 · detox/src/android/core/NativeElement.js:94 · detox/src/android/core/NativeElement.js:185 — all 3 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.
R10 · Code Duplication · Duplicated block (9 lines × 20 locations) · ×1
  • Duplicated block (9 lines × 20 locations) detox/src/android/espressoapi/DetoxAction.js:53 — detox/src/android/espressoapi/DetoxAction.js:53 · detox/src/android/espressoapi/DetoxAction.js:72 · detox/src/android/espressoapi/DetoxAction.js:92 · detox/src/android/espressoapi/DetoxAction.js:116 · +16 more site(s) not listed — the 20 copies are spread across 5 files, 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.
R10 · Code Duplication · Duplicated block (9 lines × 5 locations) · ×1
  • Duplicated block (9 lines × 5 locations) detox/src/android/espressoapi/DetoxAssertion.js:8 — detox/src/android/espressoapi/DetoxAssertion.js:8 · detox/src/android/espressoapi/DetoxMatcher.js:8 · detox/src/android/espressoapi/EspressoDetox.js:8 · detox/src/android/espressoapi/ViewActions.js:8 · +1 more site(s) not listed — the 5 copies are spread across 2 directories, so the shared home is a decision rather than an obvious spot: check first whether one of them already owns this behaviour, and otherwise put the extracted module somewhere all of the sites already reach rather than making one of them depend on another. There is one copy in each of 5 separate files rather than several in one place, so check first whether these are sibling modules that each declare their own version of one shape — one per entity, per provider, per language. Where they are, no single extracted module collapses them: each module still has to be written, and what recurs is the TEMPLATE. The moves that do collapse a template are to generate these modules from the set they enumerate, or to replace the repeated construction with one factory each site calls with its own values — and where the set is the point, each module pinning one distinct thing, the repetition IS the enumeration and there is nothing to delete.
R10 · Code Duplication · Duplicated block (9 lines × 8 locations) · ×1
  • Duplicated block (9 lines × 8 locations) detox/src/android/espressoapi/DetoxMatcher.js:244 — detox/src/android/espressoapi/DetoxMatcher.js:244 · detox/src/android/espressoapi/UIDevice.js:321 · detox/src/android/espressoapi/UIDevice.js:346 · detox/src/android/espressoapi/UIDevice.js:363 · +4 more site(s) not listed — the 8 copies are spread across 4 files, 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.
R10 · Code Duplication · Duplicated block with local edits (9 matched lines × 2 locations) · ×1
  • Duplicated block with local edits (9 matched lines × 2 locations) detox/src/artifacts/templates/plugin/TwoSnapshotsPerTestPlugin.js:127 — detox/src/artifacts/templates/plugin/TwoSnapshotsPerTestPlugin.js:127 · detox/src/artifacts/templates/plugin/TwoSnapshotsPerTestPlugin.js:141 — the two spans are one implementation copied and then locally edited — 62 tokens are still identical, in the same order in both spans, with only local edits between them. The copies have already begun to drift, which is this row's finding: an edit made to one and not the other changes behaviour silently. Diff the two spans first to learn what genuinely differs, then extract the shared core into one module both sites use, passing the differences in as parameters — or, if one copy exists only because the other could not be imported from its context, make one of them the single source the other is generated or re-exported from. If one copy is no longer reachable, delete it rather than letting it shadow the live one.
R10 · Code Duplication · Duplicated block (9 lines × 2 locations) · ×1
  • Duplicated block (9 lines × 2 locations) detox/src/configuration/composeDeviceConfig.js:173 — detox/src/configuration/composeDeviceConfig.js:173 · detox/src/configuration/composeDeviceConfig.js:221 — 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.
R2 · Cyclomatic Complexity · Complex function validateSystemUIConfig (cyclomatic 40, cognitive 64) · ×1
  • Complex function validateSystemUIConfig (cyclomatic 40, cognitive 64) detox/src/configuration/composeDeviceConfig.js:69 — validateSystemUIConfig has cyclomatic complexity 40 and cognitive complexity 64; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function validateDeviceConfig (cyclomatic 31, cognitive 48) · ×1
  • Complex function validateDeviceConfig (cyclomatic 31, cognitive 48) detox/src/configuration/composeDeviceConfig.js:159 — validateDeviceConfig has cyclomatic complexity 31 and cognitive complexity 48; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function setPermissions (cyclomatic 24, cognitive 14) · ×1
  • Complex function setPermissions (cyclomatic 24, cognitive 14) detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:33 — setPermissions has cyclomatic complexity 24 and cognitive complexity 14; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function sanitize_uiAccessibilityTraits (cyclomatic 19, cognitive 3) · ×1
  • Complex function sanitize_uiAccessibilityTraits (cyclomatic 19, cognitive 3) generation/core/global-functions.js:79 — sanitize_uiAccessibilityTraits has cyclomatic complexity 19 and cognitive complexity 3; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function composeAppsConfigFromAliased (cyclomatic 18, cognitive 30) · ×1
  • Complex function composeAppsConfigFromAliased (cyclomatic 18, cognitive 30) detox/src/configuration/composeAppsConfig.js:36 — composeAppsConfigFromAliased has cyclomatic complexity 18 and cognitive complexity 30; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function composeSessionConfig (cyclomatic 16, cognitive 19) · ×1
  • Complex function composeSessionConfig (cyclomatic 16, cognitive 19) detox/src/configuration/composeSessionConfig.js:11 — composeSessionConfig has cyclomatic complexity 16 and cognitive complexity 19; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function launchApp (cyclomatic 16, cognitive 17) · ×1
  • Complex function launchApp (cyclomatic 16, cognitive 17) detox/src/devices/runtime/RuntimeDevice.js:118 — launchApp has cyclomatic complexity 16 and cognitive complexity 17; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function configurationShouldNotUseLegacyFormat (cyclomatic 16, cognitive 15) · ×1
  • Complex function configurationShouldNotUseLegacyFormat (cyclomatic 16, cognitive 15) detox/src/errors/DetoxConfigErrorComposer.js:229 — configurationShouldNotUseLegacyFormat has cyclomatic complexity 16 and cognitive complexity 15; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function build (cyclomatic 15, cognitive 25) · ×1
  • Complex function build (cyclomatic 15, cognitive 25) detox/local-cli/build.js:57 — build has cyclomatic complexity 15 and cognitive complexity 25; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function setupStatusBar (cyclomatic 14, cognitive 21) · ×1
  • Complex function setupStatusBar (cyclomatic 14, cognitive 21) detox/src/devices/allocation/drivers/android/utils/SystemUICfgHelper.js:120 — setupStatusBar has cyclomatic complexity 14 and cognitive complexity 21; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function execute (cyclomatic 13, cognitive 22) · ×1
  • Complex function execute (cyclomatic 13, cognitive 22) detox/local-cli/testCommand/TestRunnerCommand.js:51 — execute has cyclomatic complexity 13 and cognitive complexity 22; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function validateAppConfig (cyclomatic 13, cognitive 14) · ×1
  • Complex function validateAppConfig (cyclomatic 13, cognitive 14) detox/src/configuration/composeAppsConfig.js:128 — validateAppConfig has cyclomatic complexity 13 and cognitive complexity 14; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function statusBarOverride (cyclomatic 12, cognitive 20) · ×1
  • Complex function statusBarOverride (cyclomatic 12, cognitive 20) detox/src/devices/common/drivers/ios/tools/AppleSimUtils.js:585 — statusBarOverride has cyclomatic complexity 12 and cognitive complexity 20; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function _onMessage (cyclomatic 12, cognitive 17) · ×1
  • Complex function _onMessage (cyclomatic 12, cognitive 17) detox/src/client/AsyncWebSocket.js:226 — _onMessage has cyclomatic complexity 12 and cognitive complexity 17; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive is at or above cyclomatic here, so the branching is nested or entangled rather than laid out side by side — extracting each decision into its own named function is the change that pays. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function defaultOptions (cyclomatic 12, cognitive 11) · ×1
  • Complex function defaultOptions (cyclomatic 12, cognitive 11) detox/src/logger/DetoxLogger.js:311 — defaultOptions has cyclomatic complexity 12 and cognitive complexity 11; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R2 · Cyclomatic Complexity · Complex function adaptLegacyRunnerConfig (cyclomatic 11, cognitive 10) · ×1
  • Complex function adaptLegacyRunnerConfig (cyclomatic 11, cognitive 10) detox/src/configuration/composeRunnerConfig.js:75 — adaptLegacyRunnerConfig has cyclomatic complexity 11 and cognitive complexity 10; this row is raised above a cyclomatic bar of 10. The two numbers answer different questions and the gap between them is what decides whether to act: cyclomatic counts the independent arms through the body, cognitive counts what it costs to hold them in your head, so nesting and mixed boolean chains raise it while a flat run of independent arms does not. Cognitive sits below cyclomatic here, so much of the count is breadth — arms side by side rather than stacked — and splitting per arm would leave a function per arm; group the work between the checks into named steps instead. Measured by this repository's own parse of the file, so a body assembled at runtime, or generated, is counted as written rather than as it executes.
R6 · Tooling · The declared test suite includes a file that cannot be loaded · ×1
  • The declared test suite includes a file that cannot be loaded detox/test/e2e/02.matchers.test.js — This repository declares test tooling, and the ✓ above records that declaration — but detox/test/e2e/02.matchers.test.js and 30 other test file(s) in this workspace cannot be loaded at all: it imports a module that names no file in this repository, so the runner throws while collecting it and none of its cases execute. The wiring is present and the suite it points at does not run as written, which is why the tooling tick must not be read as a statement that the tests pass. Fix the unloadable file(s) — each one is reported with its failing import under Test Coverage — then the declared script exercises what it claims to.
R7 · Dead Code · Dead file (~48 LoC) · ×1
  • Dead file (~48 LoC) scripts/create_redirect_html.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
R7 · Dead Code · Dead file (~26 LoC) · ×1
  • Dead file (~26 LoC) detox/wallaby.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
R7 · Dead Code · Dead file (~21 LoC) · ×1
  • Dead file (~21 LoC) scripts/utils/tagVersion.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
R7 · Dead Code · Dead file (~7 LoC) · ×1
  • Dead file (~7 LoC) detox/src/artifacts/timeline/TimelineContextTypes.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
R7 · Dead Code · Dead file (~0 LoC) · ×1
  • Dead file (~0 LoC) detox/src/devices/cookies/index.js — no import path from any entry point (182 application, 31 tooling, 280 test roots considered), and no other file in the scanned tree imports it — nothing in-repo names this module at all, which is the strongest form of this claim the import graph can make
R8 · Dependency Hygiene · Unlisted import '@jest/environment' · ×1
  • Unlisted import '@jest/environment' detox/runners/jest/testEnvironment/index.js:6 — Imported only as a TYPE and declared in no reachable package.json. The import is erased at compile time, so nothing is installed and no runtime resolution depends on it — but type-checking a clean clone will fail. Declare the typings it resolves through (or the package itself) in the owning package.json.
R8 · Dependency Hygiene · Unlisted import '@jest/reporters' · ×1
  • Unlisted import '@jest/reporters' detox/runners/jest/reporter.js:1 — Imported only as a TYPE and declared in no reachable package.json. The import is erased at compile time, so nothing is installed and no runtime resolution depends on it — but type-checking a clean clone will fail. Declare the typings it resolves through (or the package itself) in the owning package.json.
R8 · Dependency Hygiene · Unlisted import '@jest/test-result' · ×1
  • Unlisted import '@jest/test-result' detox/runners/jest/reporters/DetoxIPCReporter.js:23 — Imported only as a TYPE and declared in no reachable package.json. The import is erased at compile time, so nothing is installed and no runtime resolution depends on it — but type-checking a clean clone will fail. Declare the typings it resolves through (or the package itself) in the owning package.json.
R8 · Dependency Hygiene · Unlisted import '@jest/types' · ×1
  • Unlisted import '@jest/types' detox/runners/jest/reporters/DetoxReporterDispatcher.js:9 — Imported only as a TYPE and declared in no reachable package.json. The import is erased at compile time, so nothing is installed and no runtime resolution depends on it — but type-checking a clean clone will fail. Declare the typings it resolves through (or the package itself) in the owning package.json.
R8 · Dependency Hygiene · Unlisted import 'jest-environment-node' · ×1
  • Unlisted import 'jest-environment-node' detox/runners/jest/index.d.ts:2 — Imported only as a TYPE and declared in no reachable package.json. The import is erased at compile time, so nothing is installed and no runtime resolution depends on it — but type-checking a clean clone will fail. Declare the typings it resolves through (or the package itself) in the owning package.json.
R8 · Dependency Hygiene · Unused dependency 'retext-equality' · ×1
  • Unused dependency 'retext-equality' — Declared in the root package.json but never imported anywhere in that package or its workspace members — no static import reaches it. Usually that is dead weight and attack surface, but two shapes are indistinguishable from source and are NOT dead: an optional or native peer that another dependency loads dynamically at runtime, and a package a build, docs or test step installs and invokes separately. Confirm which of the three this is before removing it.
R8 · Dependency Hygiene · Unused dependency 'retext-intensify' · ×1
  • Unused dependency 'retext-intensify' — Declared in the root package.json but never imported anywhere in that package or its workspace members — no static import reaches it. Usually that is dead weight and attack surface, but two shapes are indistinguishable from source and are NOT dead: an optional or native peer that another dependency loads dynamically at runtime, and a package a build, docs or test step installs and invokes separately. Confirm which of the three this is before removing it.
R8 · Dependency Hygiene · Unused dependency 'retext-passive' · ×1
  • Unused dependency 'retext-passive' — Declared in the root package.json but never imported anywhere in that package or its workspace members — no static import reaches it. Usually that is dead weight and attack surface, but two shapes are indistinguishable from source and are NOT dead: an optional or native peer that another dependency loads dynamically at runtime, and a package a build, docs or test step installs and invokes separately. Confirm which of the three this is before removing it.
Minor — 26 finding(s)
D30 · Dependency Vulnerabilities · Low CVE · ×7
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
  • REDACTED
D19 · Documentation Quality · Documentation · ×5
  • Documentation: no project overview README.md — The visible text is an advertising banner ('Gray box end-to-...') plus NPM badges, with no sentence stating what Detox does or what it contains. Add a one-line project description (what the framework does) and a short 'What Does a Detox Test Look Like?' section above the shell block.
  • Documentation: no installation or build instructions README.md — The visible text shows no install, build, or setup instructions. Add installation steps (npm install) and a short 'Getting Started' section covering how to run tests locally and on CI.
  • Documentation: written for insiders docs/api/device.md — The device object's Public Properties section lists properties like `device.id`, `device.name`, and `device.appLaunchArgs` but does not explain what the device object represents or how it is used in code. Add an overview paragraph describing what the device object is for (global test-device access, preparation hooks) so readers can judge whether this document covers the project's scope.
  • Documentation: written for insiders docs/api/expect.md — The Methods section lists `.toBeVisible()`, `.toExist()`, and `.toHaveText()` but does not explain what each matcher actually verifies. Add a one-line description for each method stating the expectation it asserts, so readers can determine which matchers are relevant to their tests.
  • Documentation: no installation or build instructions docs/articles/how-detox-works.md — The 'How Detox Works' section describes the two-running-parts model but does not quote any installation or configuration commands. Add a short install/usage note for readers who want to run detox immediately after reading this document.
D16 · Bus Factor · Off-boarding risk · ×1
  • Off-boarding risk: anonymized user #1 — If anonymized user #1 becomes unavailable, 1 significant file(s) lose their only recent owner: detox/ios/Detox/Utilities/ViewHierarchyGenerator.swift. Pair on, review, or document these before any departure.
D16 · Bus Factor · Further sole-owners (lower concentration) · ×1
  • Further sole-owners (lower concentration) — 2 other contributor(s) are each the sole owner of a small amount of code below the off-boarding threshold — folded into the bus-factor score and metrics (3 single-owned of 143 analysed files in total, counted over production source files of roughly 2,400 bytes or more, excluding vendored, generated and example/demo trees and test files identified by path convention, largest first; 143 of the 557 production source files in this repository met that bar). They are anonymized user #2 (1 file(s)), anonymized user #3 (1 file(s)) — spread or document their files in the same way, at lower priority than the named off-boarding risks above.
D20 · ADR Quality · No ADRs found · ×1
  • No ADRs found — No ADRs found. No recognised ADR directory (`docs/adr/`, `docs/decisions/`, `adr/`, `docs/rfcs/`, an `ADR0001/` folder, or their siblings) exists anywhere in this tree. What was searched, so you can tell an empty log from a search that missed one: every directory under the tree (build output, dependencies and VCS metadata excepted), for a document that is either any non-index page inside a recognised ADR directory, whatever its name and however deeply nested (`docs/adr/use-postgres.md`, `docs/adr/2024/0001-x.md`); or a file anywhere whose name is ADR-shaped (`0001-use-postgres.md`, `adr-012-caching.md`); or, when neither turned anything up, a document carrying the decision-record signature (an "Architecture Decision Record" heading, or Status / Context / Decision / Consequences as section headings). A decision log that clears none of these — unnumbered files outside any recognised directory, without those headings — is not seen by this check and this row is then wrong. If that is your case, say so rather than renaming anything; otherwise, consider recording architectural decisions in `docs/adr/`.
D26 · Project Cohesion · Split detox · ×1
  • Split detox — A huge catch-all project whose namespaces are all unrelated utilities and drivers (utils, android/actions, ios, devices/common/drivers/android/tools, etc.) with no single cohesive domain. Suggested:
D34 · Knowledge Freshness · Further orphaned files (smaller) · ×1
  • Further orphaned files (smaller) — 66 smaller file(s) also have no living knowledge — folded into the freshness score and metrics rather than raised one row each — most significant first: detox/ios/Detox/Invocation/Action.swift, detox/android/detox/src/main/java/com/wix/detox/espresso/scroll/ScrollHelper.java, detox/src/android/espressoapi/DetoxAction.js, generation/core/generator.js, detox/android/detox/publishing.gradle, detox/ios/Detox/Utilities/DetoxUserNotificationDispatcher.swift, detox/src/android/espressoapi/UIDevice.js, detox/src/android/espressoapi/DetoxMatcher.js (and 58 more) (67 orphaned of 153 analysed files in total, counted over production source files of roughly 2,400 bytes or more, excluding vendored, generated and example/demo trees and test files identified by path convention, largest first; 153 of the 557 production source files in this repository met that bar). Attach the read to the next change that touches one of them: have a second person review that change, and leave behind a short comment or test recording what the file is for, so the knowledge comes back at the cost of a change you were making anyway.
D36 · Supply-chain Provenance & Signing · REDACTED · ×1
  • REDACTED
D36 · Supply-chain Provenance & Signing · REDACTED · ×1
  • REDACTED
D36 · Supply-chain Provenance & Signing · REDACTED · ×1
  • REDACTED
M2 · Architecture documentation · No ADRs · ×1
  • No ADRs — No Architecture Decision Records found — no conventional ADR directory, no numbered `NNNN-title` documents in any markup this check reads, 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.
P2 · Observability · Logging is not universal · ×1
  • Logging is not universal — Only 4/5 runnable modules use logging (modules with no entry point or server are excluded — they are libraries a runnable module hosts). Silent: `detox-cli`.
P3 · Security & performance tooling · No SAST · ×1
  • No SAST — 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) as a CI step. What was searched, so you can tell an absence from a miss: the 16534 CI workflow file(s) in this repository, and the scanner and linter configuration checked in beside them. A scan that runs outside CI, one configured in your forge's web UI rather than in a committed file, or a tool whose name is none of those this check carries, is not seen — if that is your case the row is wrong, and saying so is more useful than adding a second scanner.
P6 · Release Hygiene · No changelog · ×1
  • No changelog — 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.)
R8 · Dependency Hygiene · Test-only dependency 'remove' in production deps · ×1
  • Test-only dependency 'remove' in production deps generation/__tests__/android.js:2 — Only test files import it — move it to devDependencies.
X10 · Duplicated predicate · Duplicated predicate · ×1
  • Duplicated predicate detox/src/devices/runtime/drivers/android/AndroidDriver.js:238 — `screenshotName || path.basename(tempPath, '.png')` appears character-identically in 2 files — detox/src/devices/runtime/drivers/android/AndroidDriver.js, detox/src/devices/runtime/drivers/ios/SimulatorDriver.js. It is one line, so the duplication detector's token window never sees it; the copies drift when only one is corrected. Give the condition a name and one home.
Minor — 18 finding(s)
D10 · Test Quality · Skipped (documented) · ×18
  • Skipped (documented): (unnamed test) detox/src/utils/callsites.test.js:11 — Skipped with a documented reason — a deferral, not lazy debt: declared with no body — a pending test the runner lists but never runs
  • Skipped (documented): :android: should have a boolean .value detox/test/e2e/33.attributes.test.js:152 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): should keep cursor position on end while typing detox/test/e2e/29.webview.test.js:112 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): should keep cursor position on end while typing detox/test/e2e/29.webview.test.js:203 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): trigger false test_start glitch detox/test/e2e/23.flows.test.js:14 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): should grant permission detox/test/e2e/13.permissions.test.js:172 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): should not wait for infinite animations detox/test/e2e/12.animations.test.js:44 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): Init from calendar notification detox/test/e2e/11.user-notifications.test.js:14 — Skipped with a documented reason — a deferral, not lazy debt: switched off by xit
  • Skipped (documented): Background calendar notification detox/test/e2e/11.user-notifications.test.js:26 — Skipped with a documented reason — a deferral, not lazy debt: switched off by xit
  • Skipped (documented): Foreground calendar notifications detox/test/e2e/11.user-notifications.test.js:39 — Skipped with a documented reason — a deferral, not lazy debt: switched off by xit
  • Skipped (documented): :ios: should assert an element has (accessibility) value detox/test/e2e/04.assertions.test.js:64 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): :android: should throw if tap handling is too slow detox/test/e2e/03.actions.test.js:99 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): shouldn`t assert an element that does not exist (by type) detox/test/e2e/pilot/07.pilot.assertions.test.js:57 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): assert element`s color with text contains another color detox/test/e2e/pilot/07.pilot.assertions.test.js:99 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): assert elements are in specific order - not directly detox/test/e2e/pilot/07.pilot.assertions.test.js:126 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): raise error when elements are not in specific order - not directly detox/test/e2e/pilot/07.pilot.assertions.test.js:133 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): Skipped test detox/test/integration/e2e/passing-skipped.test.js:3 — Skipped with a documented reason — a deferral, not lazy debt: switched off by it.skip
  • Skipped (documented): Check that todo tests are also traced detox/test/integration/e2e/passing-skipped.test.js:11 — Skipped with a documented reason — a deferral, not lazy debt: declared with it.todo — a placeholder that registers a name and runs nothing

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)gitleaks—gitleaks detect --no-banner --config /opt/gitleaks-rules/watchdog-gitleaks.toml --report-format json --report-path /tmp/watchdog-gitleaks-c3ac15bf6ebd44a09adb8c7a261660ee/history.json --exit-code 0 --source .4artifacts/raw/gitleaks-history.json
D28 · Secrets (history)gitleaks—gitleaks detect --no-git --no-banner --config /opt/gitleaks-rules/watchdog-gitleaks.toml --report-format json --report-path /tmp/watchdog-gitleaks-c3ac15bf6ebd44a09adb8c7a261660ee/tree.json --exit-code 0 --source .3artifacts/raw/gitleaks-tree.json
D29 · Static Analysis (SAST)semgrep—semgrep --config /opt/semgrep-rules/security-audit.yml --config /opt/semgrep-rules/owasp-top-ten.yml --config /opt/semgrep-rules/watchdog-sast.yml --json --quiet --timeout 10 --timeout-threshold 3 --metrics off .7artifacts/raw/semgrep.json
D30 · Dependency Vulnerabilitiestrivy—trivy fs --scanners vuln --format json --quiet --severity CRITICAL,HIGH,MEDIUM,LOW --skip-dirs **/bin/** --skip-dirs **/obj/** . --skip-db-update99artifacts/raw/trivy-fs.json
D31 · IaC & Container Securitytrivy—trivy: not applicable — No Infrastructure-as-Code or container manifests found (Dockerfile, Docker Compose, Terraform, Kubernetes/Helm, CloudFormation, ARM, Bicep, Ansible); nothing to scan.0—
D32 · Data Compliance (PII/GDPR)semgrep—semgrep: not applicable — No personal data was found crossing a boundary the PII/GDPR ruleset checks — nothing written to a log or console sink, placed in a URL or query string, or persisted to browser storage. That is a clean result for the LEAK surface only: this ruleset detects personal data escaping, it does not inventory the personal data a repository holds, so it is not evidence that this repository has no personal-data surface. The personal-data map (Appendix C) and the C1-C5 compliance cards are what speak to that.0—
D37 · Vulnerability-disclosure Policydisclosure—disclosure: 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—
D40 · Network Egress Confinementruntime-hardening—runtime-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-hardening—runtime-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-hardening—runtime-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—
D43 · Malicious Dependenciestrivy—trivy fs --scanners vuln --format json --quiet --severity CRITICAL,HIGH,MEDIUM,LOW --skip-dirs **/bin/** --skip-dirs **/obj/** . --skip-db-update0artifacts/raw/trivy-fs.json

Run 01a0fa02-79d5-77a6-bdba-7c2273dcc6db · 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