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Attacker Value
Unknown
CVE-2023-0664
Disclosure Date: March 29, 2023 (last updated October 08, 2023)
A flaw was found in the QEMU Guest Agent service for Windows. A local unprivileged user may be able to manipulate the QEMU Guest Agent's Windows installer via repair custom actions to elevate their privileges on the system.
0
Attacker Value
Unknown
CVE-2023-1544
Disclosure Date: March 23, 2023 (last updated April 19, 2024)
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device. This flaw allows a crafted guest driver to allocate and initialize a huge number of page tables to be used as a ring of descriptors for CQ and async events, potentially leading to an out-of-bounds read and crash of QEMU.
0
Attacker Value
Unknown
CVE-2023-0330
Disclosure Date: March 06, 2023 (last updated April 19, 2024)
A vulnerability in the lsi53c895a device affects the latest version of qemu. A DMA-MMIO reentrancy problem may lead to memory corruption bugs like stack overflow or use-after-free.
0
Attacker Value
Unknown
CVE-2022-4172
Disclosure Date: November 29, 2022 (last updated October 08, 2023)
An integer overflow and buffer overflow issues were found in the ACPI Error Record Serialization Table (ERST) device of QEMU in the read_erst_record() and write_erst_record() functions. Both issues may allow the guest to overrun the host buffer allocated for the ERST memory device. A malicious guest could use these flaws to crash the QEMU process on the host.
0
Attacker Value
Unknown
CVE-2022-4144
Disclosure Date: November 29, 2022 (last updated October 08, 2023)
An out-of-bounds read flaw was found in the QXL display device emulation in QEMU. The qxl_phys2virt() function does not check the size of the structure pointed to by the guest physical address, potentially reading past the end of the bar space into adjacent pages. A malicious guest user could use this flaw to crash the QEMU process on the host causing a denial of service condition.
0
Attacker Value
Unknown
CVE-2022-3872
Disclosure Date: November 07, 2022 (last updated December 22, 2024)
An off-by-one read/write issue was found in the SDHCI device of QEMU. It occurs when reading/writing the Buffer Data Port Register in sdhci_read_dataport and sdhci_write_dataport, respectively, if data_count == block_size. A malicious guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service condition.
0
Attacker Value
Unknown
CVE-2022-3165
Disclosure Date: October 17, 2022 (last updated November 08, 2023)
An integer underflow issue was found in the QEMU VNC server while processing ClientCutText messages in the extended format. A malicious client could use this flaw to make QEMU unresponsive by sending a specially crafted payload message, resulting in a denial of service.
0
Attacker Value
Unknown
CVE-2014-0148
Disclosure Date: September 29, 2022 (last updated October 08, 2023)
Qemu before 2.0 block driver for Hyper-V VHDX Images is vulnerable to infinite loops and other potential issues when calculating BAT entries, due to missing bounds checks for block_size and logical_sector_size variables. These are used to derive other fields like 'sectors_per_block' etc. A user able to alter the Qemu disk image could ise this flaw to crash the Qemu instance resulting in DoS.
0
Attacker Value
Unknown
CVE-2014-0147
Disclosure Date: September 29, 2022 (last updated October 08, 2023)
Qemu before 1.6.2 block diver for the various disk image formats used by Bochs and for the QCOW version 2 format, are vulnerable to a possible crash caused by signed data types or a logic error while creating QCOW2 snapshots, which leads to incorrectly calling update_refcount() routine.
0
Attacker Value
Unknown
CVE-2014-0144
Disclosure Date: September 29, 2022 (last updated October 08, 2023)
QEMU before 2.0.0 block drivers for CLOOP, QCOW2 version 2 and various other image formats are vulnerable to potential memory corruptions, integer/buffer overflows or crash caused by missing input validations which could allow a remote user to execute arbitrary code on the host with the privileges of the QEMU process.
0