mobile-security
Mobile application security testing (Android + iOS) mapped to OWASP MASVS/MASTG — static reversing (Flutter AOT, Unity IL2CPP, React Native/Hermes, native ARM64, Mach-O/Swift), SAST (manifest/IPC, storage, crypto, signing), dynamic analysis (Frida/objection, TLS-pinning + root/jailbreak bypass, traffic interception), and privacy testing.
How do I install this agent skill?
npx skills add https://github.com/transilienceai/communitytools --skill mobile-securityIs this agent skill safe to install?
- Gen Agent Trust Hubpass
The skill is a comprehensive mobile application security testing suite (Android/iOS) that utilizes industry-standard tools like Frida, MobSF, and Jadx. It includes advanced techniques such as dynamic instrumentation, native library extraction, and framework-specific reversing (Flutter/React Native). The skill uses shell execution, privilege escalation (root/su), and dynamic code execution (LD_PRELOAD), all of which are appropriate for its primary security auditing purpose. However, it has an inherent surface for indirect prompt injection as it processes untrusted mobile application bundles.
- Socketwarn
1 alert: gptSecurity
- Snykpass
Risk: LOW · No issues
What does this agent skill do?
Mobile Security
Scope
End-to-end mobile application VAPT for Android (APK/AAB) and iOS (IPA), aligned to the OWASP MASVS v2.x control groups and the MASTG testing process. Four complementary tiers:
- Static reverse engineering of compiled artifacts — Dart AOT snapshots, Unity IL2CPP, React Native/Hermes bytecode, native ARM64
.so/Mach-O, smali. Recover secrets, endpoints, and the crypto contract without a device. - SAST — manifest /
Info.plist, exported-component & IPC surface, WebView, local storage, cryptographic-primitive weakness, code-signing, and automated baseline (MobSF/apkid/apkleaks) → then manual deep-dive. - Dynamic analysis (DAST) — Frida/objection instrumentation, traffic interception, TLS-pinning bypass across stacks, Keychain/Keystore runtime dumps, IPC probing, and root/jailbreak/anti-tamper defeat for MAS-L2 / MASA scope.
- Privacy — data-collection inventory, tracker/SDK enumeration, PII leakage, declared-vs-actual (Play Data Safety / Apple Privacy Manifest).
Static dump first (faster, no device); dynamic is a first-class phase whenever a control can only be proven at runtime (enforced pinning, Keystore-backed keys, root reaction, IPC guards). Cross-asset stitching, scoring, and reporting are owned by sibling skills — this skill produces MASVS/MASTG-tagged findings and hands them off.
Coverage contract
In a coverage-mode engagement (pentest-engagement mobile mode) completion is code-enforced, not narrative. Two surfaces are gated, and both are mandatory:
| Surface | File | Classes |
|---|---|---|
| The app bundle | recon/inventory/mobile-surface.json | the 15 MAS-* MASVS classes |
| The backend recovered from the bundle | <apex>-api/recon/inventory/surface.json | the ordinary OWASP API/web classes |
The second row is where the material risk has historically been. A decompiled bundle hands you the full server contract, and that surface is not browser-reachable — so it is systematically under-tested by everyone, including the app's own developers. Recovering the endpoint inventory and driving it through the API classes is not an optional extra; a bundle that yields zero endpoints is treated as a failed acquisition.
Per-class detail: reference/masvs-class-map.md. Two rules worth internalising before you write a negative:
proof_mode: runtimecannot be closed statically. Pinning and root detection are the classic traps: static analysis can prove a control is inert (aCertificatePinnerbuilt and never attached, a RootBeer that no DEX references) — raise that as a positive. It can never prove the control is effective; that needs a bypass attempt that failed, and a failed bypass is a legitimate, reportable result.proof_mode: staticcan never be device-deferred. No device does not excuse the manifest, the signature, the bundled dependencies, or the secrets in the artifact.
When to use
- Target ships an Android APK/AAB or iOS IPA — extract and inspect before any runtime testing.
- Built with Flutter (
lib/arm64-v8a/libapp.so/ iOSApp.framework), Unity (libil2cpp.so+global-metadata.dat), or React Native + Hermes (libhermes.so+index.android.bundle) — needs a runtime-aware decompiler, not just jadx. - Stock Android/iOS app — you need the manifest/IPC/storage/crypto/signing attack surface (SAST) and, where a control is runtime-only, dynamic confirmation.
- App uses encrypted API envelopes (KEY/IV/SALT/SIGNATURE headers) and you need to reverse the crypto contract, then replay against the live API.
- TLS pinning / root / jailbreak detection blocks testing — bypass it dynamically (or defeat it statically) and demonstrate the protected flow.
- You suspect IDOR / mass assignment / business-logic flaws easier to find in the dumped client, then confirmed server-side.
- You need a MASVS-PRIVACY pass (trackers, over-collection, PII leakage, declared-vs-actual).
Methodology
Start at reference/methodology.md — the phase backbone (ACQUIRE → TRIAGE → STATIC → DYNAMIC → NETWORK → STORAGE → PLATFORM/IPC → BACKEND PIVOT → REPORT), app acquisition + evidence integrity, the MASVS→file coverage map, finding-tagging convention, and the client→API pivot. It routes to every reference below. Do preflight (../coordination/reference/preflight-checklist.md) first.
References
Cross-cutting
- reference/methodology.md — the hub: phases, acquisition (adb pull / bundletool / ipatool), MASVS/MASTG tagging, backend pivot.
- reference/privacy-testing.md — MASVS-PRIVACY for both platforms: trackers/SDKs, PII channels, declared-vs-actual.
Android
- reference/android-static-analysis.md — SAST: MobSF/apkid/apkleaks baseline, manifest & exported-component/IPC, ContentProvider SQLi/traversal, PendingIntent, deep links, native WebView RCE, storage & Keystore review, crypto-primitive weakness pass, NSC, apksigner/Janus, SBOM.
- reference/android-dynamic-analysis.md — DAST: device/Magisk/Zygisk setup, frida-server bring-up, objection recipes, interception + Android-7 user-CA workarounds, cross-stack pinning bypass (OkHttp/BoringSSL-Flutter/RN), drozer IPC, runtime storage, RESILIENCE active bypass + repack/resign.
iOS
- reference/ios-static-analysis.md — SAST: IPA acquisition + FairPlay decrypt (cryptid), Mach-O/ObjC/Swift RE, ATS, entitlements/provisioning, binary hardening, Keychain accessibility + Data Protection, URL schemes/Universal Links, WKWebView, pasteboard/snapshot, MobSF/SBOM.
- reference/ios-dynamic-analysis.md — DAST: jailbroken vs non-JB (objection patchipa / frida-gadget) bring-up, objection/Frida on iOS, SSL Kill Switch / SecTrust pinning bypass, Keychain dump, LAContext biometric bypass, jailbreak/anti-debug defeat, method tracing.
Framework-specific reverse engineering
- reference/flutter-aot-reversing.md — Flutter/Dart AOT with blutter; HTTP crypto-envelope patterns (fast_rsa OAEP-SHA256 + AES-256-CBC) and the weaknesses to report.
- reference/scenarios/android/react-native-hermes.md — RN+Hermes: HBC-version check, decompile
index.android.bundlewith hermes-dec, BuildConfig secret fast-path, RN-specific MASVS surface. - reference/scenarios/android/native-lib-host-extraction.md — host-side
dlopenof an Android.sowith a Bionic→glibc forwarder +strcmp/memcmpinterceptor (no Frida/emulator).
Cross-skill (reused capabilities — cross-linked, not duplicated)
- ../reverse-engineering/reference/scenarios/static-analysis/unity-il2cpp-recipe.md — Unity
libil2cpp.so+global-metadata.datdump (Il2CppDumper/Il2CppInspector). - ../reverse-engineering/reference/scenarios/dynamic-analysis/frida-hooking.md — Frida hooking primitives (spawn/attach, Interceptor, Stalker,
Java.perform, ObjC hooks) used by both dynamic files. - ../reverse-engineering/reference/scenarios/obfuscation/packed-binaries.md — packer / anti-analysis unpacking for obfuscated APKs/
.so. - ../reverse-engineering/reference/scenarios/obfuscation/hash-dispatcher-chain.md — Z3 over polynomial-hash dispatcher chains in a native
.so. - ../api-security/reference/scenarios/rest/owasp-bola-bopla.md · ../api-security/reference/scenarios/rest/mass-assignment.md — the client→API pivot for endpoints/IDOR recovered from the client.
Deterministic control-wiring detector
../../tools/apk_control_wiring.py— static cross-reference over a decompiled Android tree that distinguishes a REAL applied control from an ORPHANED one: RootBeer/SafetyNet/Play-Integrity shipped-but-unwired (referenced but the result gates nothing),CertificatePinnerbuilt-but-not-attached to an OkHttpClient, hardcoded AES/DES key literals + their invoke-sites, and bundled-but-never-loaded.so. Run it in the STATIC phase BEFORE authoring remediation verdicts — a naive re-test that only greps for the control's presence wrongly reports an inert control "fixed" (a recurring mobile re-test crux).
Anti-patterns
- Reaching for Frida/emulator before the static dump exists — static-first is faster and needs no device. But do not treat dynamic as out of scope: pinning enforcement, Keystore binding, root reaction, and IPC reachability are runtime-only.
- Reporting a control as present (root/pinning/tamper detection) without an active bypass attempt — MAS-L2 / MASA require you defeat it or prove you can't.
- Concluding "no pinning" from an empty
network_security_config.xml, or "no secrets" from acryptid 1iOS binary — check the JS/native pin layers, and decrypt the IPA first. - Stopping at a client-side IDOR — it is a server-side hypothesis; confirm via the api-security pivot.
- Reporting a CVE from a library's mere presence — confirm the exact version and a reachable code path.
How can the creator link this skill?
Add the canonical catalog link to the repository README so users can inspect current installs and available audits. The publishing guide covers the complete discovery path.
<a href="https://skillzs.dev/skills/transilienceai/communitytools/mobile-security">View mobile-security on skillZs</a>