Integrate Ostorlab with Vulnetix. Export mobile app security findings from the Ostorlab platform via the API and upload to Vulnetix.
How Vulnetix compares: better together
Vulnetix does not replace Ostorlab. Keep running it. Vulnetix sits on top of Ostorlab (and every other scanner you already own) turning disconnected tool outputs into one prioritised, fixable queue.
Ostorlab is strongest at its core category and also carries features in DAST, SAST, SCA, Network & Vulnerability Scanners, Secret Scanning, SBOM Generation, just as Vulnetix spans categories.
| Capability | Vulnetix | Ostorlab |
|---|---|---|
| Security coverage | ||
| SAST (static code analysis) | ✓ Built-in rules + Semgrep augmentation | ~ Static analysis of mobile app binaries/source as part of mobile scan |
| SCA / dependencies | ✓ 40+ ecosystems, transitive graph | ~ Dependency analysis via SBOM or lockfile scanning |
| DAST (dynamic testing) | ~ Ingests DAST results; no native dynamic engine | ~ Dynamic mobile testing plus web app and AI-pentest dynamic scanning |
| Container & image | ✓ Image CVEs, base image, Dockerfile | ✗ |
| IaC / misconfiguration | ✓ Terraform, k8s, CloudFormation | ✗ |
| Secret scanning | ✓ 1,000+ rules, source + binary + git history | ~ Detects credential/secret exposure in scanned artifacts |
| Cloud / CSPM | ✓ Cloud-posture findings, compliance tab | ✗ |
| Mobile (MAST) | ~ Ingests mobile scanner output; no native mobile engine | ✓ Core: automated mobile SAST + AI-driven DAST on real devices for Android/iOS |
| License compliance | ✓ SPDX, copyleft/AGPL/SSPL policy | ✗ |
| SBOM generation | ✓ CycloneDX 1.7 + SPDX 2.3, cosign-signable | ~ Consumes SBOM/lockfiles as scan input for composition analysis |
| Malware / supply-chain | ✓ De-duplicated corpus + install-time firewall (25+ registries) | ✗ |
| Network / infra vuln | ~ Ingests network scanner output; no native network scanner | ~ Dedicated network scan profile and attack-surface discovery |
| Fuzzing | ✗ Ingests fuzzing crashes; no native fuzzer | ✗ |
| Pentest / bug bounty | ✗ Ingests pentest/bug-bounty findings; not a testing service | ✗ |
| The Vulnetix orchestration layer | ||
| Cross-scanner dedup & one queue (ASPM) | ✓ Correlates every scanner into one prioritised queue with ownership routing | ✗ |
| Exploit-intel prioritisation | ✓ EPSS, CISA KEV, Coalition ESS, CWSS, Vulnetix LEV | ✗ |
| Reachability analysis | ✓ Tree-sitter + CVEAffected; direct/transitive/semantic | ✗ |
| Versioned VEX + audit trail | ✓ Immutable OpenVEX/CycloneDX, cosign-signable | ✗ |
| Safe Harbour autofix | ✓ Resolves + applies the nearest safe version | ✗ |
| End-of-life policy | ✓ Flags/blocks past-EOL runtimes & packages | ✗ |
| SSVC / risk-based policy | ✓ SSVC v2 + CISA/FedRAMP/Essential-8 presets | ✗ |
✓ full · ~ partial · ✗ not covered
What Ostorlab does well
- Real-device dynamic mobile testing plus store-based, file-based and iOS TestFlight scanning of APK/AAB/IPA
- AI Pentesting Engine that autonomously uncovers, validates and safely exploits vulnerabilities beyond signature rules
- Breadth beyond mobile: web app and web-API scanning, network scanning, and attack-surface discovery/monitoring in one platform
- SBOM-driven dependency analysis and secrets/credential-exposure detection, with a GraphQL API and CI/CD integrations
Where Vulnetix adds to it: Ostorlab runs the mobile/web/network dynamic tests and AI pentests that Vulnetix does not execute. Vulnetix ingests and orchestrates Ostorlab's output, deduping it with your other scanners into one prioritised queue and layering exploit-intel (EPSS/KEV/ESS/LEV), reachability, versioned VEX + audit, EOL and SSVC policy, and Safe Harbour autofix.
No migration, no rip-and-replace. Ostorlab keeps doing what it does best; Vulnetix adds the orchestration, exploit-intelligence prioritisation and remediation layer built for the way AppSec works today.
Centralise Ostorlab results in Vulnetix
Upload Ostorlab SARIF, JSON output to the Vulnetix platform to deduplicate findings, prioritise them with EPSS, CISA KEV and Coalition ESS exploit intelligence, and track remediation across every scanner in a single queue.