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Attacker Value
Unknown

CVE-2018-6857

Disclosure Date: July 09, 2018 (last updated November 27, 2024)
Sophos SafeGuard Enterprise before 8.00.5, SafeGuard Easy before 7.00.3, and SafeGuard LAN Crypt before 3.95.2 are vulnerable to Local Privilege Escalation via IOCTL 0x802022E0. By crafting an input buffer we can control the execution path to the point where the constant 0x12 will be written to a user-controlled address. We can take advantage of this condition to modify the SEP_TOKEN_PRIVILEGES structure of the Token object belonging to the exploit process and grant SE_DEBUG_NAME privilege. This allows the exploit process to interact with higher privileged processes running as SYSTEM and execute code in their security context.
0
Attacker Value
Unknown

CVE-2018-6853

Disclosure Date: July 09, 2018 (last updated November 27, 2024)
Sophos SafeGuard Enterprise before 8.00.5, SafeGuard Easy before 7.00.3, and SafeGuard LAN Crypt before 3.95.2 are vulnerable to Local Privilege Escalation via IOCTL 0x80206024. By crafting an input buffer we can control the execution path to the point where a global variable will be written to a user controlled address. We can take advantage of this condition to zero-out the pointer to the security descriptor in the object header of a privileged process or modify the security descriptor itself and run code in the context of a process running as SYSTEM.
0
Attacker Value
Unknown

CVE-2018-6852

Disclosure Date: July 09, 2018 (last updated November 27, 2024)
Sophos SafeGuard Enterprise before 8.00.5, SafeGuard Easy before 7.00.3, and SafeGuard LAN Crypt before 3.95.2 are vulnerable to Local Privilege Escalation via IOCTL 0x80202298. By crafting an input buffer we can control the execution path to the point where the nt!memset function is called to zero out contents of a user-controlled address. We can take advantage of this condition to zero-out the pointer to the security descriptor in the object header of a privileged process or modify the security descriptor itself and run code in the context of a process running as SYSTEM.
0
Attacker Value
Unknown

CVE-2018-11040

Disclosure Date: June 25, 2018 (last updated November 26, 2024)
Spring Framework, versions 5.0.x prior to 5.0.7 and 4.3.x prior to 4.3.18 and older unsupported versions, allows web applications to enable cross-domain requests via JSONP (JSON with Padding) through AbstractJsonpResponseBodyAdvice for REST controllers and MappingJackson2JsonView for browser requests. Both are not enabled by default in Spring Framework nor Spring Boot, however, when MappingJackson2JsonView is configured in an application, JSONP support is automatically ready to use through the "jsonp" and "callback" JSONP parameters, enabling cross-domain requests.
Attacker Value
Unknown

CVE-2018-11039

Disclosure Date: June 25, 2018 (last updated November 26, 2024)
Spring Framework (versions 5.0.x prior to 5.0.7, versions 4.3.x prior to 4.3.18, and older unsupported versions) allow web applications to change the HTTP request method to any HTTP method (including TRACE) using the HiddenHttpMethodFilter in Spring MVC. If an application has a pre-existing XSS vulnerability, a malicious user (or attacker) can use this filter to escalate to an XST (Cross Site Tracing) attack.
Attacker Value
Unknown

CVE-2018-8897

Disclosure Date: May 08, 2018 (last updated November 26, 2024)
A statement in the System Programming Guide of the Intel 64 and IA-32 Architectures Software Developer's Manual (SDM) was mishandled in the development of some or all operating-system kernels, resulting in unexpected behavior for #DB exceptions that are deferred by MOV SS or POP SS, as demonstrated by (for example) privilege escalation in Windows, macOS, some Xen configurations, or FreeBSD, or a Linux kernel crash. The MOV to SS and POP SS instructions inhibit interrupts (including NMIs), data breakpoints, and single step trap exceptions until the instruction boundary following the next instruction (SDM Vol. 3A; section 6.8.3). (The inhibited data breakpoints are those on memory accessed by the MOV to SS or POP to SS instruction itself.) Note that debug exceptions are not inhibited by the interrupt enable (EFLAGS.IF) system flag (SDM Vol. 3A; section 2.3). If the instruction following the MOV to SS or POP to SS instruction is an instruction like SYSCALL, SYSENTER, INT 3, etc. that tra…
0
Attacker Value
Unknown

CVE-2017-14356

Disclosure Date: October 31, 2017 (last updated November 08, 2023)
An SQL Injection vulnerability in HP ArcSight ESM and HP ArcSight ESM Express, in any 6.x version prior to 6.9.1c Patch 4 or 6.11.0 Patch 1. This vulnerability could be exploited remotely to allow SQL injection.
0
Attacker Value
Unknown

CVE-2017-14357

Disclosure Date: October 31, 2017 (last updated November 08, 2023)
A Reflected and Stored Cross-Site Scripting (XSS) vulnerability in HP ArcSight ESM and HP ArcSight ESM Express, in any 6.x version prior to 6.9.1c Patch 4 or 6.11.0 Patch 1. This vulnerability could be exploited remotely to allow Reflected and Stored Cross-Site Scripting (XSS)
0
Attacker Value
Unknown

CVE-2017-14358

Disclosure Date: October 31, 2017 (last updated November 08, 2023)
A URL redirection to untrusted site vulnerability in HP ArcSight ESM and HP ArcSight ESM Express, in any 6.x version prior to 6.9.1c Patch 4 or 6.11.0 Patch 1. This vulnerability could be exploited remotely to allow URL redirection to untrusted site.
0
Attacker Value
Unknown

CVE-2017-1000253

Disclosure Date: October 05, 2017 (last updated September 07, 2024)
Linux distributions that have not patched their long-term kernels with https://git.kernel.org/linus/a87938b2e246b81b4fb713edb371a9fa3c5c3c86 (committed on April 14, 2015). This kernel vulnerability was fixed in April 2015 by commit a87938b2e246b81b4fb713edb371a9fa3c5c3c86 (backported to Linux 3.10.77 in May 2015), but it was not recognized as a security threat. With CONFIG_ARCH_BINFMT_ELF_RANDOMIZE_PIE enabled, and a normal top-down address allocation strategy, load_elf_binary() will attempt to map a PIE binary into an address range immediately below mm->mmap_base. Unfortunately, load_elf_ binary() does not take account of the need to allocate sufficient space for the entire binary which means that, while the first PT_LOAD segment is mapped below mm->mmap_base, the subsequent PT_LOAD segment(s) end up being mapped above mm->mmap_base into the are that is supposed to be the "gap" between the stack and the binary.