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sonarqube-rules

Configures and runs SonarQube / SonarCloud - multi-language SAST + Quality Gate platform with built-in Sonar Way rule profiles + custom rule plugins; integrates `sonar-scanner` with `sonar-project.properties` config; supports Quality Gate definitions including new-code-period blocking, branch + PR analysis, and per-issue suppression via `// NOSONAR` comment or `@SuppressWarnings("squid:RULE_ID")` annotation. Use when the user runs SonarQube Community / Developer / Enterprise edition or SonarCloud, or needs a multi-language SAST + code-quality platform with persistent issue tracking.

Install with skills.sh (any agent)

npx skills add testland/qa --skill sonarqube-rules
View source

sonarqube-rules

Overview

Per github.com/SonarSource/sonarqube (opens in new window):

"SonarQube provides the capability to not only show the health of an application but also to highlight issues newly introduced."

The platform's distinguishing features vs Semgrep / CodeQL:

  • Quality Gate - pass/fail decision based on configurable threshold conditions (coverage on new code, duplication, security hotspots reviewed, maintainability rating, etc.).
  • New-code-period - issues are categorized as "new code" vs "overall code"; gates focus on new-code metrics so legacy debt doesn't block deploys.
  • Persistent issue tracking - server-side storage of issues across scans; status workflow (open / confirmed / resolved / false positive / won't fix).
  • Cross-language coverage - 30+ languages with one tool + unified UI.

When to use

  • Existing SonarQube deployment (Community / Developer / Enterprise / SonarCloud).
  • The team needs persistent issue tracking + Quality Gate workflow.
  • Multi-language coverage in one platform is a requirement.
  • New-code-period gating fits the team's deploy cadence.

For new projects without a SonarQube investment, evaluate semgrep-rules (lower friction; no server) first.

Step 1 - Install (server side)

Per docs.sonarsource.com/sonarqube-server (opens in new window):

Docker (most common for evaluation):

docker run -d --name sonarqube \
  -p 9000:9000 \
  sonarqube:lts-community

For production, consult sq-docs (opens in new window) for Postgres + JVM sizing + reverse-proxy configuration. Default admin: admin / admin (change immediately).

Step 2 - sonar-scanner CLI

Download from docs.sonarsource.com/sonarqube-server (opens in new window) "Analysis scanners". Place on PATH.

sonar-scanner \
  -Dsonar.projectKey=my-project \
  -Dsonar.sources=. \
  -Dsonar.host.url=http://localhost:9000 \
  -Dsonar.token=$SONAR_TOKEN

For Maven / Gradle / .NET, use the language-native scanner plugin (mvn sonar:sonar / ./gradlew sonar / dotnet sonarscanner).

Step 3 - sonar-project.properties config

Project-root file replaces -D flags:

# sonar-project.properties
sonar.projectKey=my-project
sonar.projectName=My Project
sonar.sources=src
sonar.tests=tests
sonar.exclusions=**/*.spec.ts,**/generated/**
sonar.sourceEncoding=UTF-8

# Coverage from external tool (Jest, JaCoCo, etc.)
sonar.javascript.lcov.reportPaths=coverage/lcov.info

# New-code-period (analysis scope)
sonar.newCode.referenceBranch=main

# Quality Gate (referenced by ID; created via UI/API)
sonar.qualitygate.wait=true

sonar.qualitygate.wait=true makes the scanner block until the gate decision is computed - critical for CI gating.

Step 4 - Quality Gate concept

The default "Sonar Way" gate enforces (consult your SonarQube UI at Quality Gates → Sonar Way for current conditions):

  • Coverage on New Code ≥ X%
  • Duplicated Lines on New Code ≤ Y%
  • Maintainability Rating on New Code = A
  • Reliability Rating on New Code = A
  • Security Rating on New Code = A
  • Security Hotspots on New Code reviewed = 100%

Custom gates can be defined via UI or REST API (/api/qualitygates/create).

Step 5 - Branch + PR analysis

For PR analysis (Developer edition+):

sonar-scanner \
  -Dsonar.pullrequest.key=$PR_NUMBER \
  -Dsonar.pullrequest.branch=$PR_BRANCH \
  -Dsonar.pullrequest.base=main

PR results post as comments to GitHub / GitLab / Bitbucket per the integration setup in SonarQube admin.

Step 6 - False-positive triage (MANDATORY)

Three suppression layers in priority order:

MechanismExampleWhen to use
Per-line NOSONARint x = 0; // NOSONAR justification textSingle-line exception with inline reason
Annotation@SuppressWarnings("squid:S106")Java/Kotlin per-block exception
Server-side mark-as-FPUI: Issues → Resolve as False PositivePersistent across scans; auditable
Server-side mark-as-Won't FixUI: Issues → Resolve as Won't FixAcknowledged risk; not a defect

Justification template (mandatory in code):

// NOSONAR squid:S106 - Reason: required for CLI tool stdout output
// Reviewer: alice@example.com (2026-05-15)
// Expires: 2026-12-15
System.out.println(message);

Server-side resolution requires a comment per SonarQube workflow config - make it mandatory in admin settings (Administration → Configuration → Issues → Comment required to set status).

Cadence: Issues → False Positive filter periodically; review for expiration. Server-side resolutions are persistent and auditable - the audit trail is the value over Semgrep's per-comment approach.

Step 7 - CI integration

jobs:
  sonarqube:
    runs-on: ubuntu-latest
    steps:
      - uses: actions/checkout@v5
        with: { fetch-depth: 0 }   # full history needed for new-code-period
      - uses: SonarSource/sonarqube-scan-action@v5
        env:
          SONAR_TOKEN: ${{ secrets.SONAR_TOKEN }}
          SONAR_HOST_URL: ${{ secrets.SONAR_HOST_URL }}
      - uses: SonarSource/sonarqube-quality-gate-action@v1
        timeout-minutes: 5
        env:
          SONAR_TOKEN: ${{ secrets.SONAR_TOKEN }}

fetch-depth: 0 is critical - without full git history, new-code-period detection is broken.

Step 8 - REST API integration

For automation / dashboards:

EndpointUse
GET /api/issues/search?projectKeys=...Issue list with filters
GET /api/qualitygates/project_statusCurrent gate verdict
POST /api/issues/do_transitionMark FP / Won't Fix
GET /api/measures/component_treePer-file metrics

API token via User → My Account → Security → Generate Tokens.

Anti-patterns

Anti-patternWhy it failsFix
fetch-depth: 1 in CINew-code-period broken; gates produce wrong decisionsAlways fetch-depth: 0 (Step 7)
Skip sonar.qualitygate.waitCI exits before gate evaluates; missed regressionssonar.qualitygate.wait=true (Step 3)
NOSONAR without justificationServer-side audit trail emptyRequired template (Step 6)
Custom Quality Gate without team buy-inGate fails on PRs no one understandsDocument gate definition; reference in PR template
Mass-resolve as FP without reviewBackdoor for skipping security findingsRequire comment + reviewer attribution (Step 6)

Limitations

  • SonarQube server requires hosting + maintenance; SonarCloud is the SaaS alternative.
  • Branch + PR analysis are Developer-edition+ features - Community edition only supports main branch.
  • Some language-specific deep-rule features require Developer or Enterprise edition.
  • New-code-period requires accurate git history; shallow clones break it.
  • License changed from LGPL to SSPL in 2024 - verify license compatibility for commercial use.

References

  • sq-gh (opens in new window) - repository
  • sq-docs (opens in new window) - official SonarQube documentation root
  • docs.sonarsource.com/sonarqube-server/latest/user-guide/quality-gates - Quality Gates user guide
  • docs.sonarsource.com/sonarqube-server/latest/user-guide/issues - Issue workflow + transitions
  • semgrep-rules, codeql-queries, language-native-sast - sister scanners

Related skills

codeql-queries

Configures and runs GitHub CodeQL - semantic-database SAST with queries written in the CodeQL declarative query language; supports `codeql database create` (per-language) + `codeql database analyze` with --format=sarif; ships query packs (`codeql/javascript-queries`, `codeql/python-queries`, `codeql/java-queries`, `codeql/go-queries`, etc.); integrates with GitHub Code Scanning via SARIF upload; suppression via inline comment + sarif-filter + Security-tab dismissal. Use when the team uses GitHub-hosted repos and needs deep semantic SAST beyond pattern matching (cross-file taint flows, dataflow analysis).

cve-exploitability-triage

Ranks known CVE findings by real-world exploitability instead of severity alone: enriches each CVE with its EPSS probability (the chance exploitation activity is observed in the next 30 days) and CISA KEV membership (confirmed exploited in the wild), applies OpenVEX status assertions to set aside vulnerabilities the product is not affected by, applies a reachability heuristic for vulnerable code that is never called, and assigns every finding to one of four buckets (Fix-Now, Fix-This-Sprint, Fix-Backlog, Accept-Risk) using documented EPSS thresholds. Treats a CISA KEV listing as non-waivable under any justification. Use when a dependency, container image, or SBOM vulnerability scan has produced more CVEs than the team can fix in the available window and someone has to decide which ones get fixed first and which can wait.

dependabot-config

Reference for `.github/dependabot.yml` - GitHub-native dependency-update orchestrator. Required keys (`version: 2`, `updates[]` array) plus per-update fields (`package-ecosystem`, `directory` / `directories`, `schedule.interval`); common optional fields (`ignore`, `groups`, `allow`, `labels`, `milestone`, `open-pull-requests-limit`, `target-branch`, `vendor`, `versioning-strategy`, `assignees`, `commit-message`); auto-rebase + grouped-PR + security-only updates. Use when authoring or reviewing Dependabot configs in GitHub-hosted repos.

gitleaks-scanning

Configures and runs gitleaks - Go-based secret scanner with `gitleaks git` (scan local git via `git log -p`), `gitleaks dir` (filesystem), `gitleaks stdin` (pipe); 100+ built-in rules + custom rules in `.gitleaks.toml` ([[rules]] with regex / entropy / keywords / tags); allowlist via [[rules.allowlists]] (commits / paths / stopwords); pre-commit hook + GitHub Action integration; plus baseline management for legacy debt - onboarding a repo with historical findings via `--baseline-path` snapshots, `.gitleaksignore`, cross-tool suppression consistency with TruffleHog, and rot-prevention cadence. Use when the team needs OSS secret scanning at commit time + CI gate, or is adopting scanning on a repo with pre-existing findings.

language-native-sast

Language-native SAST linters - the first-party "linter as SAST" family that runs inside each ecosystem's standard toolchain with no separate scanner server: Bandit (Python, 60+ B-rules, severity x confidence filtering), gosec (Go, 40+ G-rules, AST + SSA taint tracking, golangci-lint integration), eslint-plugin-security + eslint-plugin-no-unsanitized (JS/TS, 14 detect-* rules + DOM-sink XSS), and PMD's Apex security ruleset (Salesforce, ApexSOQLInjection / ApexCRUDViolation / ApexSharingViolations). Covers the shared adoption pattern - install as a dev dependency, first scan, suppression-with-justification discipline, baseline-diff adoption for legacy code, SARIF output + CI gating - with per-tool depth in references. Use when a repo needs in-toolchain security linting for Python, Go, JavaScript/TypeScript, or Apex; for cross-language or cross-file taint analysis use semgrep-rules / codeql-queries instead.

multi-tool-finding-triage

Merges two or more security scanner reports into one gate. Use when you need a single BLOCK or PASS decision from multiple scanners instead of reading N separate reports. Normalizes each report into one common finding format (a canonical `Finding`), deduplicates on a per-domain key while recording which scanners agree (`caught_by` consensus), validates a waiver (finding-suppression) file, rejecting any missing `expires:` / `approved_by:` / `reason:` or expired, enriches CVE findings with EPSS (exploit-probability) and CISA KEV (known-exploited catalog), then applies a `fail_on` severity threshold to emit BLOCK or PASS plus a bucketed pull-request comment. Works across static (SAST), dynamic (DAST), secret, dependency (SCA), container, and IaC scanners. To run a single scanner instead use semgrep-rules, codeql-queries, or one of the language-native-sast linters; this runs after them to merge output - the cross-scanner gate, not a single-scanner wrapper.

npm-pip-maven-audit

Configures and runs native package-manager audit commands across ecosystems - `npm audit --audit-level=high` (npm), `yarn npm audit` (Yarn 2+), `pnpm audit` (pnpm), `pip-audit` (Python via PyPA), `mvn dependency:check` (Maven via OWASP Dependency-Check plugin), `cargo audit` (Rust, with `.cargo/audit.toml` suppression, `--deny` semantics, SARIF, binary auditing, and the rustsec/audit-check Action as a reference), and `bundle audit` (Ruby Bundler, with `.bundler-audit.yml` waivers, Rake integration, and CI gating as a reference); fastest no-install-required SCA option. Use when the team wants fast, no-extra-tooling SCA in CI as a first line of defense, when a Rust or Ruby repo needs its ecosystem-native scanner, or pairs with snyk/osv-scanner for layered coverage.

nuclei-dast

Installs and runs ProjectDiscovery Nuclei template-based HTTP scanning: selects templates via `-t {path}` and `-tags`/`-severity` filters, controls request rate with `-rl`, emits JSONL output via `-j` for cross-tool finding aggregation, authors custom YAML matchers for app-specific checks, and gates CI on severity thresholds. Use when the team runs Nuclei alongside ZAP for template-driven DAST coverage, needs fuzzing-style probes beyond ZAP passive scan, or wants to operationalize community CVE templates in a pipeline.

osv-scanner

Configures and runs Google OSV-Scanner - open-source SCA against the OSV.dev vulnerability database; supports `osv-scanner scan -r ./` recursive scan + per-lockfile scan via `-L package-lock.json`; SBOM input (CycloneDX / SPDX) for non-standard package managers; `--format json|sarif|markdown|vertical|html` output; suppressions via `osv-scanner.toml` config. Use when the team needs OSS-native SCA without commercial-license overhead, or wants a second-opinion DB pair with Snyk's commercial DB.

reachability-analyzer

Runs dead-dependency analysis across JS, Python, and Rust projects using ecosystem-native static tools (`depcheck`/`knip` for JS, `vulture` for Python, `cargo-machete` for Rust), then cross-references the unused-dependency list against SCA findings to downrank vulns in code that is never loaded. Use when SCA output (from `osv-scanner`, `snyk-test`, or `npm-pip-maven-audit`) is too noisy to triage and the team needs to separate unreachable CVEs from exploitable ones before sprint planning; sibling cve-exploitability-triage ranks by EPSS/KEV exploitation signal, not code reachability.

renovate-config

Reference for `renovate.json` - Mend Renovate dependency-update orchestrator (multi-platform: GitHub / GitLab / Bitbucket / Azure DevOps / Gitea); top-level keys (`extends` for preset references, `schedule`, `prConcurrentLimit`, `vulnerabilityAlerts`); `packageRules[]` array with `matchPackageNames` / `matchUpdateTypes` / `automerge` matching; `ignoreDeps`, `addLabels`, `automergeSchedule`. Use when authoring or reviewing Renovate configs in any repo platform Renovate supports.

sbom-formats

Reference for the two SBOM specification families and how to choose between them - CycloneDX v1.6 (OWASP-curated, security-focused: components, services, dependencies, first-class vulnerabilities[] with embedded VEX, formulation, ML/SaaS BOMs; XML / JSON / Protobuf) as the primary format, with SPDX 2.3 + 3.0 (Linux Foundation, license-focused: packages, relationships, license expressions, Tag-Value/JSON encodings, ISO/IEC 5962:2021) covered as a reference. Includes per-language generators, schema validation, sign + attest CI wiring, and the format-choice guidance (CycloneDX for security-focused consumers; SPDX for US Federal procurement, Linux Foundation, and license-compliance contexts). Use when the user asks to write or validate an SBOM in CycloneDX or SPDX form, or the team must pick its SBOM format.

secrets-rotation-runner

Build-an-X for the secret-rotation workflow after detection - detect via gitleaks/trufflehog/kingfisher → identify provider via verifier → rotate via provider API (AWS IAM / GitHub PAT / Stripe / GCP / Azure / Twilio / Slack / etc.) → invalidate old secret → audit log via observability stack → post-mortem cross-ref. Use when a secret is detected in code (or proactively for periodic rotation) - assume git-history scrub does NOT prevent compromise.

semgrep-rules

Configures and runs Semgrep - pattern-based SAST across 30+ languages with the Semgrep Registry rulesets (`p/owasp-top-ten`, `p/default`, `auto`) plus custom YAML rules; integrates `semgrep ci` for PR-blocking gates with `--baseline-commit` diff-aware scanning, per-finding inline `nosemgrep` suppressions, `--exclude` / `--include` path filters, output formats (`--json` / `--sarif` / `--gitlab-sast` / `--junit-xml`), and severity filter (INFO/WARNING/ERROR). Use when the user runs Semgrep, asks about pattern rules, or needs a low-friction SAST gate without semantic-DB setup.

snyk-test

Configures and runs Snyk, a commercial multi-mode scanner: snyk test for SCA (dependency scanning), snyk code test for SAST (code security scanning), snyk container test for container images, snyk iac test for IaC (infrastructure-as-code), snyk monitor for continuous new-vuln alerts; policy file .snyk for ignore + patch. Use when the team has a Snyk license and needs SCA (dependency scanning) or continuous vuln monitoring; for open-source scanning without a Snyk license, prefer osv-scanner.

syft-generation

Generates, scans, and diffs Software Bills of Materials (SBOMs) with the Anchore stack - Syft generation from container images / directories / archives across OCI / Docker / Singularity formats (output CycloneDX-JSON / SPDX-JSON / Syft-JSON / table / GitHub-JSON, cosign attestation); the paired generate + scan workflow with Grype (`grype sbom:./sbom.json`, `--fail-on high`, `--only-fixed`, `.grype.yaml` ignore rules with mandatory `expires:`, EPSS/KEV prioritization); and SBOM-to-SBOM diffing via `cyclonedx diff --component-versions` to gate CI on net-new components and detect supply-chain drift between builds. Use when the team needs SBOM artifacts for compliance (US EO 14028, EU CRA, FDA medical-device guidance), SBOM-driven vulnerability scanning, or dependency-drift detection between releases.

trivy-image

Configures and runs Trivy for container image scanning: Aqua Security's all-in-one scanner combining vuln + secret + misconfiguration + license detection in one pass; `trivy image {image}` with --severity HIGH,CRITICAL filter; --format sarif/json (incl. scan-embedded CycloneDX; for standalone SBOM generation see syft-generation + sbom-formats); .trivyignore CVE suppression file; --ignore-unfixed for actionable filter; --scanners vuln/misconfig/license/secret toggle. Use when the team wants a single tool covering container image security across multiple dimensions, not for producing a standalone CycloneDX SBOM.

trufflehog-scanning

Configures and runs TruffleHog v3 - secret scanner with **live verification** (validates discovered secrets against provider APIs to confirm actual exposure vs entropy false positive); supports per-source subcommands (`git`, `github`, `gitlab`, `filesystem`, `s3`, `docker`, `gcs`, `postman`); `--results=verified` filter for high-precision output; `--exclude-detectors=TYPE` for noise reduction; exits 183 on findings via `--fail`. Use when the team needs verified secret findings (low false-positive rate) or scans across cloud + repo + container surfaces.

vex-author

Authors and validates OpenVEX documents - produces `not_affected`, `affected`, `fixed`, and `under_investigation` statements with justification codes using `vexctl create`; attaches VEX assertions to container images; outputs `.openvex.json` files consumed on a downstream VEX-filter / vulnerability-prioritization path. Use when a scanner flags a CVE that analysis confirms is not exploitable in your deployment, and a machine-readable `not_affected` assertion is needed to suppress false positives without discarding the finding from the audit trail.

zap-baseline

Configures and runs OWASP ZAP baseline scanning: `zap-baseline.py` Docker-packaged spider + passive scan suitable for CI gating; supports `-t target_url` + `-r html_report` + `-c config_file` rule customization (INFO/IGNORE/FAIL warnings) and Ajax spider via `-j` for JS-heavy SPAs; `zap-full-scan.py` active companion for staging. Covers authenticated scans end to end as a reference - ZAP Context, auth methods (form/JSON/script/browser), session management, verification strategy, OAuth/bearer injection, context XML export for `-n` - plus DAST cadence planning (PR-blocking passive baseline, nightly ZAP full + nuclei active layer, baseline-finding ratchet for legacy apps). Use when the user runs OWASP ZAP for pre-prod web app DAST, needs coverage of routes behind a login wall, or is designing a team's DAST rollout cadence.