Depscope vs Codeinspectus — MCP Server Comparison | AllMCPs
Side-by-Side Model Context Protocol Comparison
Depscope vs Codeinspectus
In-depth architectural comparison of the Depscope and Codeinspectus MCP servers. Compare execution transports, security boundaries, tool capabilities, quality scores, and ready-to-paste client installation snippets for Claude, Cursor, Windsurf, and VS Code.
At a Glance & Executive Verdict
Depscope
Security · Local stdio
Quality: 60/100 (Good) | Auth: No auth required
Codeinspectus
Security · Local stdio
Quality: 68/100 (Great) | Auth: No auth required
Verdict Summary: Choose Depscope if you need specialized Security tools running via a local process. Choose Codeinspectus if your workspace requires Security integration with local subprocess execution. Both servers can be configured concurrently in your client's mcpServers manifest.
Which MCP Server Should You Choose?
Choose Depscope when:
You need dedicated capabilities in the Security domain.
You prefer local stdio subprocess transport architecture.
Your security boundary fits: No auth required (Free / Open Source).
Package Intelligence for AI agents. 22 tools across 17 ecosystems (npm/pypi/cargo/go/maven/nuget/rubygems/composer/pub/hex/swift/cocoapods/cpan/hackage/cran/conda/homebrew) — check health, vulnerabilities (OSV + CISA KEV + EPSS), typosquats, malicious flags, alternatives, known bugs, breaking changes, stack compatibility and error-to-fix. 31k+ packages, 2.2k+ CVEs enriched. Zero auth, MIT. Remote URL https://mcp.depscope.dev/mcp or stdio npx depscope-mcp.
Local-first, zero-egress security scanner for AI-generated / "vibe-coded" JS/TS. Bundles Opengrep, Gitleaks & Trivy behind one CWE-keyed schema and adds AI-code-specific checks (client-side secret exposure, Supabase RLS, prompt-injection & LLM-output XSS sinks). No account, no telemetry.
Tools & Capabilities Breakdown
Depscope Tools (22)
check_malicious
Supply-chain malware check against OpenSSF/OSV. USE WHEN: about to suggest install of an unvetted/unfamiliar package; name came from a blog/tutorial. Call BEFORE check_package for untrusted pkgs. RETURNS: {is_malicious, threat_tier, source}.
check_typosquat
Typosquat detector. USE WHEN: name differs from a well-known package by 1-2 chars (`lodsh`, `reqeusts`); copy-paste from unreliable source; downloads near zero but name looks familiar. RETURNS: {is_typosquat, likely_target, confidence}.
check_bulk
Fast pre-flight filter for a batch of (ecosystem, package) pairs. DB-only, <100ms for 100 items. USE WHEN: about to emit `npm install a b c …` or `pip install a b c …` — catches hallucinated names, stdlib, typos, and known-bad in ONE call. NOT a dep-tree audit (use scan_project for that). RETURNS: per-item {status: exists|stdlib|malicious|typosquat_suspect|historical_incident|unknown}.
package_exists
Boolean registry existence check. USE WHEN: about to emit a package name in an install command but unsure it exists; verifying a name generated from training data. RETURNS: {exists}.
Ready-to-Paste Client Configurations
Paste either (or both) of these JSON server blocks into your client config file (e.g. claude_desktop_config.json or ~/.cursor/mcp.json).
Depscope is categorized under Security and uses a local stdio subprocess. In contrast, Codeinspectus belongs to Security using local stdio subprocess. Select Depscope when you need capabilities focused on security and Codeinspectus when you require tools for security.
Latest published version + deprecation flag — the cheapest call. USE WHEN: only a version string matters (pinning a dep, answering 'what version of X'). If you also need health/vulns use check_package. RETURNS: {latest, deprecated, published_at}.
get_health_score
Single 0-100 health score — cheapest go/no-go gate (>=70 safe). USE WHEN: CI gating or pkg already screened for malware/typos. NOT a first screen — run check_malicious + check_typosquat first. For a verbal verdict use get_package_prompt. RETURNS: {score, verdict}.
install_command
Canonical install command(s) across every package manager of the ecosystem (npm/pnpm/yarn/bun, pip/uv/poetry, cargo, go, composer, maven+gradle, nuget, …). USE WHEN: emitting an install line and you want correct flags. RETURNS: {primary, variants[]}.
get_package_prompt
LLM-optimised package brief — plain text ~300 tokens (~75% cheaper than JSON). Verdict (SAFE/AVOID/URGENT/MALICIOUS) + health + vulns + alternatives + maintainer alerts. USE WHEN: you want to reason over a package and drop the output directly in context; 'is X safe'. PREFER THIS over check_package in 95% of LLM cases. RETURNS: plain-text brief.
check_package
Full machine-readable JSON report (~2k tokens). USE WHEN: you need to programmatically parse specific fields (CI gating, UI, sub-field extraction). Otherwise prefer get_package_prompt. RETURNS: {package, health:{score}, vulnerabilities[], latest, deprecated, maintainers, recommendation}.
get_vulnerabilities
CVE/OSV advisories affecting the latest (or specified) version. USE WHEN: security-sensitive project; user asks 'any CVEs in X'; you already know the pkg exists. RETURNS: {vulnerability_count, vulnerabilities[]: {id, severity, cvss, fixed_in}}.
find_alternatives
Curated replacements for deprecated/unhealthy packages, including stdlib built-ins (e.g. `fs.rm` for rimraf). USE WHEN: pkg flagged AVOID/URGENT; 'what to use instead of X'; before guessing a replacement name. RETURNS: {alternatives[]: {name, reason, is_stdlib}}.
get_migration_path
Prescriptive migration plan between DIFFERENT packages — rationale + literal code diff + breaking changes + effort minutes. USE WHEN: replacing `request`→`axios`, `moment`→`dayjs`, `flask`→`fastapi`, etc.; both endpoints known. RETURNS: {rationale, diff, breaking_changes[], estimated_minutes}.
+10 more tools listed on main page
Codeinspectus Tools (6)
codeinspectus_scan
Run a full local security scan of a path: bundled engines (Opengrep SAST, Gitleaks secrets, Trivy SCA/IaC/license), CodeInspectus's offline native Pub SCA, plus AI-code-specific checks (client-side secret exposure, Supabase RLS/inverted-auth, prompt-injection sinks, API-boundary failures, and explicit runtime-control misconfiguration). Returns CWE-keyed findings with fix recommendations, detected repository technologies, explicit native-pack execution counts, compliance tags, and three-state repository evidence for supported runtime controls. Fully offline — zero network egress at scan time. Never writes to your code or repo.
codeinspectus_rescan
Re-run a scan after fixes were applied and diff against a prior scan_id (or the most recent scan of the same path). Reports which findings are resolved, which remain, and which were newly introduced, plus fresh technology and native-pack execution coverage. Use this to verify fixes. Never writes to your code or repo.
codeinspectus_compliance_report
Produce a per-framework code-level control-coverage view for a prior scan (NIST CSF 2.0, ISO 27001:2022, SOC 2, CIS v8.1, Essential Eight, OWASP Web/LLM). Reports 'X of N code-visible controls have findings' with the code-visible subset as the explicit denominator. This is NOT a compliance audit, certification, or attestation — code-level evidence only.
codeinspectus_explain_finding
Return a deep explanation and full remediation plan for a single finding id from a prior scan: what the weakness is, why it matters, concrete fix steps, and references.
codeinspectus_generate_sbom
Generate a CycloneDX or SPDX SBOM for the target project using Trivy plus the first-party offline Pub lockfile inventory, with native Pub fallback when Trivy is unavailable. Writes the SBOM file to the chosen output path and returns its location and component count. Offline.
codeinspectus_list_rules
List the active detectors and engine versions, the CodeInspectus detection-database version and date, Trivy vulnerability-DB freshness, bundled Pub advisory-database provenance/freshness, and the custom CodeInspectus AI-code rules and native detector packs currently shipped.