Siemens SIMATIC IPC477E PRO

CPE Details

Siemens SIMATIC IPC477E PRO
-
2019-03-19
12h16 +00:00
2021-05-14
15h17 +00:00
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CPE Name: cpe:2.3:h:siemens:simatic_ipc477e_pro:-:*:*:*:*:*:*:*

Informations

Vendor

siemens

Product

simatic_ipc477e_pro

Version

-

Related CVE

Open and find in CVE List

CVE ID Published Description Score Severity
CVE-2021-33625 2022-02-03 00h55 +00:00 An issue was discovered in Kernel 5.x in Insyde InsydeH2O, affecting HddPassword. Software SMI services that use the Communicate() function of the EFI_SMM_COMMUNICATION_PROTOCOL do not check whether the address of the buffer is valid, which allows use of SMRAM, MMIO, or OS kernel addresses.
7.5
High
CVE-2020-5953 2022-02-03 00h00 +00:00 A vulnerability exists in System Management Interrupt (SWSMI) handler of InsydeH2O UEFI Firmware code located in SWSMI handler that dereferences gRT (EFI_RUNTIME_SERVICES) pointer to call a GetVariable service, which is located outside of SMRAM. This can result in code execution in SMM (escalating privilege from ring 0 to ring -2).
7.5
High
CVE-2021-33626 2021-10-01 00h21 +00:00 A vulnerability exists in SMM (System Management Mode) branch that registers a SWSMI handler that does not sufficiently check or validate the allocated buffer pointer(QWORD values for CommBuffer). This can be used by an attacker to corrupt data in SMRAM memory and even lead to arbitrary code execution.
7.8
High
CVE-2020-27339 2021-06-16 13h49 +00:00 In the kernel in Insyde InsydeH2O 5.x, certain SMM drivers did not correctly validate the CommBuffer and CommBufferSize parameters, allowing callers to corrupt either the firmware or the OS memory. The fixed versions for this issue in the AhciBusDxe, IdeBusDxe, NvmExpressDxe, SdHostDriverDxe, and SdMmcDeviceDxe drivers are 05.16.25, 05.26.25, 05.35.25, 05.43.25, and 05.51.25 (for Kernel 5.1 through 5.5).
6.7
Medium
CVE-2020-8670 2021-06-09 16h50 +00:00 Race condition in the firmware for some Intel(R) Processors may allow a privileged user to potentially enable escalation of privilege via local access.
6.4
Medium
CVE-2020-12357 2021-06-09 16h49 +00:00 Improper initialization in the firmware for some Intel(R) Processors may allow a privileged user to potentially enable escalation of privilege via local access.
6.7
Medium
CVE-2020-8703 2021-06-09 16h48 +00:00 Improper buffer restrictions in a subsystem in the Intel(R) CSME versions before 11.8.86, 11.12.86, 11.22.86, 12.0.81, 13.0.47, 13.30.17, 14.1.53, 14.5.32 and 15.0.22 may allow a privileged user to potentially enable escalation of privilege via local access.
6.7
Medium
CVE-2020-24507 2021-06-09 16h47 +00:00 Improper initialization in a subsystem in the Intel(R) CSME versions before 11.8.86, 11.12.86, 11.22.86, 12.0.81, 13.0.47, 13.30.17, 14.1.53, 14.5.32, 13.50.11 and 15.0.22 may allow a privileged user to potentially enable information disclosure via local access.
4.4
Medium
CVE-2020-8704 2021-06-09 16h47 +00:00 Race condition in a subsystem in the Intel(R) LMS versions before 2039.1.0.0 may allow a privileged user to potentially enable escalation of privilege via local access.
6.4
Medium
CVE-2020-8745 2020-11-12 17h06 +00:00 Insufficient control flow management in subsystem for Intel(R) CSME versions before 11.8.80, 11.12.80, 11.22.80, 12.0.70, 13.0.40, 13.30.10, 14.0.45 and 14.5.25 , Intel(R) TXE versions before 3.1.80 and 4.0.30 may allow an unauthenticated user to potentially enable escalation of privilege via physical access.
6.8
Medium
CVE-2020-8698 2020-11-12 17h01 +00:00 Improper isolation of shared resources in some Intel(R) Processors may allow an authenticated user to potentially enable information disclosure via local access.
5.5
Medium
CVE-2020-0543 2020-06-15 11h55 +00:00 Incomplete cleanup from specific special register read operations in some Intel(R) Processors may allow an authenticated user to potentially enable information disclosure via local access.
5.5
Medium
CVE-2018-3639 2018-05-22 12h00 +00:00 Systems with microprocessors utilizing speculative execution and speculative execution of memory reads before the addresses of all prior memory writes are known may allow unauthorized disclosure of information to an attacker with local user access via a side-channel analysis, aka Speculative Store Bypass (SSB), Variant 4.
5.5
Medium