Zip Path Traversal (Zip-Slip)
zip_path_traversal HARD
| Category | Improper Platform Usage |
| OWASP Mobile (2024) | M4 |
| MASVS | MASVS-CODE-4MASVS-STORAGE-1 |
| MASWE | MASWE-0050 |
| CWE | CWE-22 |
| Platform | AndroidiOS |
Description
Update-package unpacker writes entries outside the target dir.
How it works
The update unpacker joins each zip entry name to the target directory without verifying the result stays inside it, then writes the entry to disk. A crafted entry name escapes into system paths and overwrites arbitrary files. A real archive is built and each entry is extracted to a real filesystem (recoverable from the device, adb-pullable, or via backup/jailbreak on iOS); the traversing entry lands outside the extract directory.
How to exercise it. DVMA is the harness - open this module from the home index and tap the demo action. The screen ships the malicious input and simulates the attacker (e.g. the companion app, crafted intent, or scanned payload) in-process, and the evidence panel prints the proof. The Tools (optional) and Attack inputs below are only needed to reproduce the exploit end-to-end on a real device.
Exploit steps
- Set up. Build DVMA with a flavor that enables the Improper Platform Usage category (e.g.
--dart-define-from-file=config/flavors/dev.json) and run on an emulator/simulator you control. The demo needs no external tooling; for the optional on-device reproduction the relevant tools are: the suggested tooling. - Locate the target. From the home index, open Zip Path Traversal (Zip-Slip) (
zip_path_traversal). The How it works section above describes this module’s specific weakness; the screen states the intended-secure behavior and exposes the vulnerable action. - Exploit. From a co-resident/attacker context (
adb shell am start/drozer, or a crafted deep link / QR), send the untrusted input to the exported component or WebView and confirm the app performs the unsafe action (navigation, JS execution, file/URI access) with no validation. - Observe the evidence. Trigger the vulnerable action and read the evidence panel - it prints the concrete proof (leaked value, accepted replay, executed payload, or unauthorized result).
- Contrast with the secure path. Run the module’s secure/hardened action (where provided) and confirm the same attack is rejected - this is what a correct implementation should do.
Attack inputs
Payloads/artifacts you author for the on-device attack. The demo already ships and simulates these in-process (e.g. the malicious companion app / crafted intent is emulated inside the screen), so you only need to craft them to reproduce the exploit on a real device:
crafted zip