🚨 CVE-2019-20570
An issue was discovered on Samsung mobile devices with P(9.0), O(8.0), and N(7.1) software. Attackers can bypass Factory Reset Protection (FRP) via Smart Switch. The Samsung ID is SVE-2019-15138 (September 2019).
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An issue was discovered on Samsung mobile devices with P(9.0), O(8.0), and N(7.1) software. Attackers can bypass Factory Reset Protection (FRP) via Smart Switch. The Samsung ID is SVE-2019-15138 (September 2019).
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🚨 CVE-2019-20571
An issue was discovered on Samsung mobile devices with O(8.x) (with TEEGRIS) software. There is type confusion in the WVDRM Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14885 (September 2019).
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An issue was discovered on Samsung mobile devices with O(8.x) (with TEEGRIS) software. There is type confusion in the WVDRM Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14885 (September 2019).
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🚨 CVE-2019-20572
An issue was discovered on Samsung mobile devices with O(8.1) and P(9.0) (Exynos chipsets) software. load_kernel has a buffer overflow via untrusted data. The Samsung ID is SVE-2019-14939 (September 2019).
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An issue was discovered on Samsung mobile devices with O(8.1) and P(9.0) (Exynos chipsets) software. load_kernel has a buffer overflow via untrusted data. The Samsung ID is SVE-2019-14939 (September 2019).
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🚨 CVE-2019-20573
An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) software. There is local SQL injection in the RCS Content Provider. The Samsung IDs are SVE-2019-14059, SVE-2019-14685 (August 2019).
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An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) software. There is local SQL injection in the RCS Content Provider. The Samsung IDs are SVE-2019-14059, SVE-2019-14685 (August 2019).
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🚨 CVE-2019-20574
An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) software. There is local SQL injection in the Wi-Fi history Content Provider. The Samsung ID is SVE-2019-14061 (August 2019).
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An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) software. There is local SQL injection in the Wi-Fi history Content Provider. The Samsung ID is SVE-2019-14061 (August 2019).
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🚨 CVE-2019-20575
An issue was discovered on Samsung mobile devices with P(9.0) software. The WPA3 handshake feature allows a downgrade or dictionary attack. The Samsung ID is SVE-2019-14204 (August 2019).
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An issue was discovered on Samsung mobile devices with P(9.0) software. The WPA3 handshake feature allows a downgrade or dictionary attack. The Samsung ID is SVE-2019-14204 (August 2019).
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🚨 CVE-2019-20577
An issue was discovered on Samsung mobile devices with P(9.0) (Exynos chipsets) software. The MALI GPU Driver allows a kernel panic. The Samsung ID is SVE-2019-14372 (August 2019).
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An issue was discovered on Samsung mobile devices with P(9.0) (Exynos chipsets) software. The MALI GPU Driver allows a kernel panic. The Samsung ID is SVE-2019-14372 (August 2019).
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🚨 CVE-2019-20578
An issue was discovered on Samsung mobile devices with P(9.0) (Exynos 9820 chipsets) software. A Buffer overflow occurs when loading the UH Partition during Secure Boot. The Samsung ID is SVE-2019-14412 (August 2019).
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An issue was discovered on Samsung mobile devices with P(9.0) (Exynos 9820 chipsets) software. A Buffer overflow occurs when loading the UH Partition during Secure Boot. The Samsung ID is SVE-2019-14412 (August 2019).
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🚨 CVE-2019-20579
An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) software. Gallery allows attackers to enable Location information sharing from the lock screen. The Samsung ID is SVE-2019-14462 (August 2019).
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An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) software. Gallery allows attackers to enable Location information sharing from the lock screen. The Samsung ID is SVE-2019-14462 (August 2019).
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🚨 CVE-2019-20580
An issue was discovered on Samsung mobile devices with P(9.0) software. The Motion photo player allows attackers to bypass the Secure Folder feature to view images. The Samsung ID is SVE-2019-14653 (August 2019).
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An issue was discovered on Samsung mobile devices with P(9.0) software. The Motion photo player allows attackers to bypass the Secure Folder feature to view images. The Samsung ID is SVE-2019-14653 (August 2019).
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🚨 CVE-2019-20581
An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) (Exynos chipsets) software. A stack overflow in the HDCP Trustlet causes arbitrary code execution. The Samsung ID is SVE-2019-14665 (August 2019).
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An issue was discovered on Samsung mobile devices with N(7.x), O(8.x), and P(9.0) (Exynos chipsets) software. A stack overflow in the HDCP Trustlet causes arbitrary code execution. The Samsung ID is SVE-2019-14665 (August 2019).
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🚨 CVE-2019-20582
An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) devices (Exynos9810 chipsets) software. There is a use after free in the ion driver. The Samsung ID is SVE-2019-14837 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) devices (Exynos9810 chipsets) software. There is a use after free in the ion driver. The Samsung ID is SVE-2019-14837 (August 2019).
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🚨 CVE-2019-20583
An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the EXT_FR Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14847 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the EXT_FR Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14847 (August 2019).
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🚨 CVE-2019-20584
An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the HDCP Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14850 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the HDCP Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14850 (August 2019).
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🚨 CVE-2019-20585
An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the SEC_FR Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14851 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the SEC_FR Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14851 (August 2019).
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🚨 CVE-2019-20586
An issue was discovered on Samsung mobile devices with O(8.1) and P(9.0) (with TEEGRIS) software. There is type confusion in the FINGERPRINT Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14864 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.1) and P(9.0) (with TEEGRIS) software. There is type confusion in the FINGERPRINT Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14864 (August 2019).
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🚨 CVE-2019-20587
An issue was discovered on Samsung mobile devices with O(8.1) and P(9.0) (with TEEGRIS) software. There is type confusion in the MLDAP Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14867 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.1) and P(9.0) (with TEEGRIS) software. There is type confusion in the MLDAP Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14867 (August 2019).
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🚨 CVE-2019-20588
An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the SEM Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14891 (August 2019).
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An issue was discovered on Samsung mobile devices with O(8.x) and P(9.0) (with TEEGRIS) software. There is type confusion in the SEM Trustlet, leading to arbitrary code execution. The Samsung ID is SVE-2019-14891 (August 2019).
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🚨 CVE-2020-6077
An exploitable denial-of-service vulnerability exists in the message-parsing functionality of Videolabs libmicrodns 0.1.0. When parsing mDNS messages, the implementation does not properly keep track of the available data in the message, possibly leading to an out-of-bounds read that would result in a denial of service. An attacker can send an mDNS message to trigger this vulnerability.
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An exploitable denial-of-service vulnerability exists in the message-parsing functionality of Videolabs libmicrodns 0.1.0. When parsing mDNS messages, the implementation does not properly keep track of the available data in the message, possibly leading to an out-of-bounds read that would result in a denial of service. An attacker can send an mDNS message to trigger this vulnerability.
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🚨 CVE-2020-6078
An exploitable denial-of-service vulnerability exists in the message-parsing functionality of Videolabs libmicrodns 0.1.0. When parsing mDNS messages in mdns_recv, the return value of the mdns_read_header function is not checked, leading to an uninitialized variable usage that eventually results in a null pointer dereference, leading to service crash. An attacker can send a series of mDNS messages to trigger this vulnerability.
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An exploitable denial-of-service vulnerability exists in the message-parsing functionality of Videolabs libmicrodns 0.1.0. When parsing mDNS messages in mdns_recv, the return value of the mdns_read_header function is not checked, leading to an uninitialized variable usage that eventually results in a null pointer dereference, leading to service crash. An attacker can send a series of mDNS messages to trigger this vulnerability.
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🚨 CVE-2020-6079
An exploitable denial-of-service vulnerability exists in the resource allocation handling of Videolabs libmicrodns 0.1.0. When encountering errors while parsing mDNS messages, some allocated data is not freed, possibly leading to a denial-of-service condition via resource exhaustion. An attacker can send one mDNS message repeatedly to trigger this vulnerability through decoding of the domain name performed by rr_decode.
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An exploitable denial-of-service vulnerability exists in the resource allocation handling of Videolabs libmicrodns 0.1.0. When encountering errors while parsing mDNS messages, some allocated data is not freed, possibly leading to a denial-of-service condition via resource exhaustion. An attacker can send one mDNS message repeatedly to trigger this vulnerability through decoding of the domain name performed by rr_decode.
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