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CVE-2025-34449

Опубликовано: 18 дек. 2025
Источник: debian

Описание

Genymobile/scrcpy versions up to and including 3.3.3, prior to commit 3e40b24, contain a buffer overflow vulnerability in the sc_device_msg_deserialize() function. A compromised device can send crafted messages that cause out-of-bounds reads, which may result in memory corruption or a denial-of-service condition. This vulnerability may allow further exploitation on the host system.

Пакеты

ПакетСтатусВерсия исправленияРелизТип
scrcpynot-affectedpackage

Примечания

  • https://github.com/Genymobile/scrcpy/issues/6415

  • Introduced with: https://github.com/Genymobile/scrcpy/commit/87da68ee0d74831a2b44230c573a3b315c8fd7d3 (v2.4)

  • Fixed by: https://github.com/Genymobile/scrcpy/commit/3e40b2473772cea3a23d4932088fd0bc4cc0f52c (v3.3.4)

Связанные уязвимости

CVSS3: 9.1
ubuntu
около 2 месяцев назад

Genymobile/scrcpy versions up to and including 3.3.3, prior to commit 3e40b24, contain a buffer overflow vulnerability in the sc_device_msg_deserialize() function. A compromised device can send crafted messages that cause out-of-bounds reads, which may result in memory corruption or a denial-of-service condition. This vulnerability may allow further exploitation on the host system.

CVSS3: 9.1
nvd
около 2 месяцев назад

Genymobile/scrcpy versions up to and including 3.3.3, prior to commit 3e40b24, contain a buffer overflow vulnerability in the sc_device_msg_deserialize() function. A compromised device can send crafted messages that cause out-of-bounds reads, which may result in memory corruption or a denial-of-service condition. This vulnerability may allow further exploitation on the host system.

CVSS3: 9.1
github
около 2 месяцев назад

Genymobile/scrcpy versions up to and including 3.3.3 and prior to commit 3e40b24 contain a global buffer overflow vulnerability in the function sc_read32be, invoked via sc_device_msg_deserialize() and process_msgs(). Processing crafted device messages can cause reads beyond the bounds of a global buffer, leading to memory corruption or crashes. This vulnerability can be exploited to cause a denial of service and, under certain conditions, may be leveraged for further exploitation depending on the execution environment and available mitigations.