Device-state disclosure via predictable telemetry lengths
Published Sep 30, 2024 · Updated Oct 30, 2024
Information disclosure in TP-Link Kasa KP125M 1.0.0 and Tapo P125M 1.0.0 allows attackers to infer device state from network traffic. The devices send status telemetry to a remote server with repeatable packet-length sequences that distinguish power-state changes. Exploitation requires captured traffic while a user issues an on/off command or presses the physical power button; only device state is exposed.
Summary
What happened
Information disclosure in TP-Link Kasa KP125M 1.0.0 and Tapo P125M 1.0.0 allows attackers to infer device state from network traffic. The devices send status telemetry to a remote server with repeatable packet-length sequences that distinguish power-state changes. Exploitation requires captured traffic while a user issues an on/off command or presses the physical power button; only device state is exposed.
The record
- CVE
- CVE-2024-35495
- Published
- Sep 30, 2024
- Updated
- Oct 30, 2024
- Vendor
- Unknown vendor
- Product
- Unknown product
- Classifications
- CWE-319, T1040
- Attack vector
- network
- Privileges
- unauthenticated
Timeline
How it unfolded
- Sep 30, 2024CVE publishedPublication date reported by the CVE source.
- Oct 30, 2024Record updatedLatest update available in the CVE record.
Exploitability
Present is not the same as exploitable
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What conditions does exploitation require?
What is affected?
Affected products and versions are unavailable in this record.
Published CVSS scores
CVSS describes severity. EPSS estimates exploitation probability.
Attacks
What attackers are doing with it
Daily unique IPs observed by Shadowserver honeypots for known exploited vulnerabilities (KEVs). Missing observations do not establish an absence of attacks.
Weakness, pattern, technique
Public exploit references
- Traffic-length state-inference replication stepsproof of concept · demonstrated
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Technologies
Your stack
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Your stack
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