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Mapped every skill to NIST CSF 2.0 subcategory IDs (GV/ID/PR/DE/RS/RC functions) based on subdomain and content analysis. Restores 11 skills corrupted during prior rebase, re-enriching with ATLAS, D3FEND, NIST AI RMF, and CSF 2.0 fields. All 754 skills now carry structured mappings for all 5 security frameworks: - MITRE ATT&CK (in tags) - MITRE ATLAS v5.5 (atlas_techniques) - MITRE D3FEND v1.3 (d3fend_techniques) - NIST AI RMF 1.0 (nist_ai_rmf) - NIST CSF 2.0 (nist_csf)
262 lines
8.6 KiB
Markdown
262 lines
8.6 KiB
Markdown
---
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name: performing-sca-dependency-scanning-with-snyk
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description: 'This skill covers implementing Software Composition Analysis (SCA) using Snyk to detect vulnerable open-source
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dependencies in CI/CD pipelines. It addresses scanning package manifests and lockfiles, automated fix pull request generation,
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license compliance checking, continuous monitoring of deployed applications, and integration with GitHub, GitLab, and Jenkins
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pipelines.
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'
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domain: cybersecurity
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subdomain: devsecops
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tags:
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- devsecops
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- cicd
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- sca
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- snyk
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- dependency-scanning
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- secure-sdlc
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version: 1.0.0
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author: mahipal
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license: Apache-2.0
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nist_csf:
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- PR.PS-01
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- GV.SC-07
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- ID.IM-04
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- PR.PS-04
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---
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# Performing SCA Dependency Scanning with Snyk
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## When to Use
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- When applications use open-source packages that may contain known vulnerabilities
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- When compliance requires tracking and remediating vulnerable dependencies (PCI DSS, SOC 2)
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- When needing automated fix PRs for vulnerable dependencies in CI/CD
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- When license compliance requires visibility into open-source license obligations
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- When continuous monitoring is needed for newly disclosed vulnerabilities in deployed dependencies
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**Do not use** for scanning proprietary application code for logic vulnerabilities (use SAST), for runtime vulnerability detection (use DAST), or for container OS package scanning alone (use Trivy for a free alternative).
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## Prerequisites
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- Snyk account (free tier covers up to 200 tests per month for open source)
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- Snyk CLI installed or Snyk GitHub/GitLab integration configured
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- SNYK_TOKEN environment variable set with API authentication token
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- Project with supported package manifests: package.json, requirements.txt, pom.xml, go.mod, Gemfile, etc.
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## Workflow
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### Step 1: Install and Authenticate Snyk CLI
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```bash
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# Install Snyk CLI
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npm install -g snyk
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# Authenticate with Snyk
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snyk auth $SNYK_TOKEN
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# Test the connection
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snyk test --json | jq '.summary'
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```
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### Step 2: Scan Dependencies in CI/CD Pipeline
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```yaml
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# .github/workflows/dependency-scan.yml
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name: Dependency Security Scan
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on:
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push:
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branches: [main]
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pull_request:
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branches: [main]
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schedule:
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- cron: '0 8 * * 1' # Weekly Monday 8am
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jobs:
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snyk-scan:
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runs-on: ubuntu-latest
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steps:
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- uses: actions/checkout@v4
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- name: Setup Node.js
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uses: actions/setup-node@v4
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with:
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node-version: '20'
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- name: Install dependencies
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run: npm ci
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- name: Run Snyk to check for vulnerabilities
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uses: snyk/actions/node@master
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env:
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SNYK_TOKEN: ${{ secrets.SNYK_TOKEN }}
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with:
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args: >
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--severity-threshold=high
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--fail-on=upgradable
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--json-file-output=snyk-results.json
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- name: Upload results to Snyk
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if: always()
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uses: snyk/actions/node@master
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env:
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SNYK_TOKEN: ${{ secrets.SNYK_TOKEN }}
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with:
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command: monitor
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args: --project-name=${{ github.repository }}
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- name: Upload SARIF
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if: always()
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run: |
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npx snyk-to-html -i snyk-results.json -o snyk-report.html
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```
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### Step 3: Configure Snyk for Multiple Languages
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```bash
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# Python project scanning
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snyk test --file=requirements.txt --severity-threshold=high --json > snyk-python.json
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# Java/Maven project
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snyk test --file=pom.xml --severity-threshold=medium --json > snyk-java.json
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# Go module scanning
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snyk test --file=go.mod --severity-threshold=high --json > snyk-go.json
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# Docker image dependency scanning
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snyk container test myapp:latest --severity-threshold=high --json > snyk-container.json
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# Monorepo: scan all projects
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snyk test --all-projects --severity-threshold=high --json > snyk-all.json
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# IaC scanning (bonus)
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snyk iac test terraform/ --severity-threshold=medium --json > snyk-iac.json
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```
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### Step 4: Configure Snyk Policies for Organization
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```yaml
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# .snyk policy file
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version: v1.25.0
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ignore:
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SNYK-JS-LODASH-1018905:
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- '*':
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reason: "Prototype pollution in lodash. Not exploitable in our usage - no user input reaches affected function."
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expires: 2026-06-01T00:00:00.000Z
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created: 2026-02-23T00:00:00.000Z
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SNYK-PYTHON-REQUESTS-6241864:
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- '*':
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reason: "SSRF in requests redirect handling. Mitigated by allowlist at proxy layer."
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expires: 2026-04-01T00:00:00.000Z
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patch: {}
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# Severity threshold for CI failures
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failOnSeverity: high
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```
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### Step 5: Enable Automated Fix Pull Requests
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```bash
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# Snyk fix: generate fix PRs for vulnerable dependencies
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snyk fix --dry-run # Preview changes
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# Apply fixes locally
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snyk fix
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# Enable auto-fix PRs via Snyk dashboard:
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# 1. Navigate to Organization Settings > Integrations > GitHub
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# 2. Enable "Automatic fix pull requests"
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# 3. Set "Fix only direct dependencies" or "Fix direct and transitive"
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# 4. Configure branch target (main or develop)
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```
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### Step 6: License Compliance Scanning
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```bash
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# Check license compliance
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snyk test --json | jq '.licensesPolicy'
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# Snyk license policy configuration via organization settings:
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# - Approved licenses: MIT, Apache-2.0, BSD-2-Clause, BSD-3-Clause, ISC
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# - Restricted licenses: GPL-3.0, AGPL-3.0 (copyleft risk)
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# - Unknown licenses: Flag for manual review
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```
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## Key Concepts
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| Term | Definition |
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|------|------------|
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| SCA | Software Composition Analysis — identifies vulnerabilities and license risks in open-source dependencies |
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| Transitive Dependency | A dependency of a direct dependency, often invisible to developers but still a vulnerability vector |
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| Fix PR | Automated pull request generated by Snyk that upgrades a vulnerable dependency to a patched version |
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| Snyk Monitor | Continuous monitoring mode that watches deployed projects for newly disclosed vulnerabilities |
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| Exploit Maturity | Snyk's assessment of whether a vulnerability has known exploits, proof-of-concept, or no known exploit |
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| Reachable Vulnerability | A vulnerability in a function that is actually called by the application code, not just present in the dependency |
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| License Policy | Organization-level rules defining which open-source licenses are approved, restricted, or require review |
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## Tools & Systems
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- **Snyk Open Source**: SCA tool for scanning dependencies across 10+ language ecosystems
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- **Snyk CLI**: Command-line interface for local and CI/CD scanning of dependencies
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- **Snyk Advisor**: Package health scoring tool evaluating maintenance, popularity, and security signals
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- **OWASP Dependency-Check**: Free alternative SCA tool using NVD data for vulnerability matching
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- **npm audit / pip-audit**: Language-specific built-in audit tools for basic vulnerability checking
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## Common Scenarios
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### Scenario: Triaging a Critical Transitive Dependency Vulnerability
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**Context**: Snyk reports a critical RCE vulnerability in a transitive dependency (log4j in a Java application). The direct dependency has not released a patch.
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**Approach**:
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1. Use `snyk test --json` and examine the dependency path to identify which direct dependency pulls in the vulnerable transitive
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2. Check exploit maturity: if "Mature" or "Proof of Concept", prioritize immediately
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3. If no direct fix exists, use Snyk's patch mechanism or override the transitive version in the build config
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4. For Maven: add `<dependencyManagement>` section to force the safe version of the transitive dependency
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5. For npm: add an `overrides` section in package.json to pin the safe version
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6. Add a Snyk ignore with expiration date if no patch is available yet
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7. Monitor the direct dependency for a release that updates the transitive
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**Pitfalls**: Ignoring transitive vulnerabilities because "we don't use that function directly" is risky. Attackers can chain vulnerabilities across dependency boundaries. Version overrides can break API compatibility between the direct and transitive dependency.
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## Output Format
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```
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Snyk Dependency Scan Report
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=============================
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Project: org/web-application
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Manifest: package.json
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Dependencies: 342 (47 direct, 295 transitive)
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Scan Date: 2026-02-23
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VULNERABILITY SUMMARY:
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Critical: 1 (1 fixable)
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High: 4 (3 fixable)
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Medium: 12 (8 fixable)
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Low: 23 (15 fixable)
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CRITICAL:
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SNYK-JS-EXPRESS-1234567
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Package: express@4.17.1 (direct)
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Severity: Critical (CVSS 9.8)
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Exploit: Mature
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Fix: Upgrade to express@4.21.0
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Path: express@4.17.1
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HIGH:
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SNYK-JS-JSONWEBTOKEN-5678901
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Package: jsonwebtoken@8.5.1 (transitive)
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Severity: High (CVSS 7.6)
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Exploit: Proof of Concept
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Fix: Upgrade passport@0.7.0 (which upgrades jsonwebtoken)
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Path: passport@0.6.0 > jsonwebtoken@8.5.1
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LICENSE ISSUES:
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[RESTRICTED] GPL-3.0: some-package@1.2.3 (transitive via other-pkg)
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QUALITY GATE: FAILED (1 Critical with fix available)
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```
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