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419 CVEs • 1 product

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CVEs (419)

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CVSS
2Debian
Qemu
2Debian Linux
Qemu
Jun 17, 2026
Aug 26, 2022
N/A· v4
4.4 MEDIUM· v3
N/A· v2
A deadlock issue was found in the AHCI controller device of QEMU. It occurs on a software reset (ahci_reset_port) while handling a host-to-device Register FIS (Frame Information Structure) packet from the guest. A privil...Show more
A deadlock issue was found in the AHCI controller device of QEMU. It occurs on a software reset (ahci_reset_port) while handling a host-to-device Register FIS (Frame Information Structure) packet from the guest. A privileged user inside the guest could use this flaw to hang the QEMU process on the host, resulting in a denial of service condition. The highest threat from this vulnerability is to system availability.Show less
2Fedoraproject
Qemu
2Fedora
Qemu
Jun 17, 2026
Aug 25, 2022
N/A· v4
8.2 HIGH· v3
N/A· v2
A DMA reentrancy issue was found in the NVM Express Controller (NVME) emulation in QEMU. This CVE is similar to CVE-2021-3750 and, just like it, when the reentrancy write triggers the reset function nvme_ctrl_reset(), da...Show more
A DMA reentrancy issue was found in the NVM Express Controller (NVME) emulation in QEMU. This CVE is similar to CVE-2021-3750 and, just like it, when the reentrancy write triggers the reset function nvme_ctrl_reset(), data structs will be freed leading to a use-after-free issue. A malicious guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service condition or, potentially, executing arbitrary code within the context of the QEMU process on the host.Show less
2Qemu
Redhat
2Enterprise Linux
Qemu
Jun 17, 2026
Aug 24, 2022
N/A· v4
6.0 MEDIUM· v3
N/A· v2
A NULL pointer dereference issue was found in the ACPI code of QEMU. A malicious, privileged user within the guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service condition.
3Fedoraproject
QemuRedhat
5Enterprise Linux
Extra Packages For Enterprise LinuxFedora+2 more
Jun 17, 2026
Aug 17, 2022
N/A· v4
3.2 LOW· v3
N/A· v2
An infinite loop flaw was found in the USB xHCI controller emulation of QEMU while computing the length of the Transfer Request Block (TRB) Ring. This flaw allows a privileged guest user to hang the QEMU process on the h...Show more
An infinite loop flaw was found in the USB xHCI controller emulation of QEMU while computing the length of the Transfer Request Block (TRB) Ring. This flaw allows a privileged guest user to hang the QEMU process on the host, resulting in a denial of service.Show less
2Debian
Qemu
2Debian Linux
Qemu
Jun 17, 2026
Jul 11, 2022
N/A· v4
8.8 HIGH· v3
6.1 MEDIUM· v2
softmmu/physmem.c in QEMU through 7.0.0 can perform an uninitialized read on the translate_fail path, leading to an io_readx or io_writex crash. NOTE: a third party states that the Non-virtualization Use Case in the qemu...Show more
softmmu/physmem.c in QEMU through 7.0.0 can perform an uninitialized read on the translate_fail path, leading to an io_readx or io_writex crash. NOTE: a third party states that the Non-virtualization Use Case in the qemu.org reference applies here, i.e., "Bugs affecting the non-virtualization use case are not considered security bugs at this time.Show less
2Qemu
Redhat
2Enterprise Linux
Qemu
Jun 17, 2026
May 11, 2022
N/A· v4
6.5 MEDIUM· v3
2.1 LOW· v2
A stack overflow vulnerability was found in the Intel HD Audio device (intel-hda) of QEMU. A malicious guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service condition. The high...Show more
A stack overflow vulnerability was found in the Intel HD Audio device (intel-hda) of QEMU. A malicious guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service condition. The highest threat from this vulnerability is to system availability. This flaw affects QEMU versions prior to 7.0.0.Show less
2Qemu
Redhat
2Enterprise Linux
Qemu
Jun 17, 2026
May 2, 2022
N/A· v4
8.2 HIGH· v3
4.6 MEDIUM· v2
A DMA reentrancy issue was found in the USB EHCI controller emulation of QEMU. EHCI does not verify if the Buffer Pointer overlaps with its MMIO region when it transfers the USB packets. Crafted content may be written to...Show more
A DMA reentrancy issue was found in the USB EHCI controller emulation of QEMU. EHCI does not verify if the Buffer Pointer overlaps with its MMIO region when it transfers the USB packets. Crafted content may be written to the controller's registers and trigger undesirable actions (such as reset) while the device is still transferring packets. This can ultimately lead to a use-after-free issue. A malicious guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service condition, or potentially execute arbitrary code within the context of the QEMU process on the host. This flaw affects QEMU versions before 7.0.0.Show less
3Debian
QemuRedhat
3Debian Linux
Enterprise LinuxQemu
Jun 17, 2026
Apr 29, 2022
N/A· v4
8.2 HIGH· v3
4.6 MEDIUM· v2
A flaw was found in the QXL display device emulation in QEMU. A double fetch of guest controlled values `cursor->header.width` and `cursor->header.height` can lead to the allocation of a small cursor object followed by a...Show more
A flaw was found in the QXL display device emulation in QEMU. A double fetch of guest controlled values `cursor->header.width` and `cursor->header.height` can lead to the allocation of a small cursor object followed by a subsequent heap-based buffer overflow. A malicious privileged guest user could use this flaw to crash the QEMU process on the host or potentially execute arbitrary code within the context of the QEMU process.Show less
3Debian
QemuRedhat
3Debian Linux
Enterprise LinuxQemu
Jun 17, 2026
Apr 29, 2022
N/A· v4
8.2 HIGH· v3
4.6 MEDIUM· v2
A flaw was found in the QXL display device emulation in QEMU. An integer overflow in the cursor_alloc() function can lead to the allocation of a small cursor object followed by a subsequent heap-based buffer overflow. Th...Show more
A flaw was found in the QXL display device emulation in QEMU. An integer overflow in the cursor_alloc() function can lead to the allocation of a small cursor object followed by a subsequent heap-based buffer overflow. This flaw allows a malicious privileged guest user to crash the QEMU process on the host or potentially execute arbitrary code within the context of the QEMU process.Show less
1Qemu
1Qemu
Jun 17, 2026
Apr 1, 2022
N/A· v4
6.5 MEDIUM· v3
2.1 LOW· v2
It was discovered that the update for the virt:rhel module in the RHSA-2020:4676 (https://access.redhat.com/errata/RHSA-2020:4676) erratum released as part of Red Hat Enterprise Linux 8.3 failed to include the fix for th...Show more
It was discovered that the update for the virt:rhel module in the RHSA-2020:4676 (https://access.redhat.com/errata/RHSA-2020:4676) erratum released as part of Red Hat Enterprise Linux 8.3 failed to include the fix for the qemu-kvm component issue CVE-2020-10756, which was previously corrected in virt:rhel/qemu-kvm via erratum RHSA-2020:4059 (https://access.redhat.com/errata/RHSA-2020:4059). CVE-2021-20295 was assigned to that Red Hat specific security regression. For more details about the original security issue CVE-2020-10756, refer to bug 1835986 or the CVE page: https://access.redhat.com/security/cve/CVE-2020-10756.Show less
1Qemu
1Qemu
Jun 17, 2026
Mar 29, 2022
N/A· v4
8.8 HIGH· v3
4.6 MEDIUM· v2
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device. This flaw allows a crafted guest driver to execute HW commands when shared buffers are not yet allocated, potentially leading to a use-afte...Show more
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device. This flaw allows a crafted guest driver to execute HW commands when shared buffers are not yet allocated, potentially leading to a use-after-free condition.Show less
2Debian
Qemu
2Debian Linux
Qemu
Jun 17, 2026
Mar 25, 2022
N/A· v4
6.5 MEDIUM· v3
2.1 LOW· v2
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device. The issue occurs while handling a "PVRDMA_CMD_CREATE_MR" command due to improper memory remapping (mremap). This flaw allows a malicious gu...Show more
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device. The issue occurs while handling a "PVRDMA_CMD_CREATE_MR" command due to improper memory remapping (mremap). This flaw allows a malicious guest to crash the QEMU process on the host. The highest threat from this vulnerability is to system availability.Show less
5Canonical
DebianFedoraproject+2 more
6Debian Linux
Enterprise LinuxEnterprise Linux Advanced Virtualization Eus+3 more
Jun 17, 2026
Mar 23, 2022
N/A· v4
7.5 HIGH· v3
6.9 MEDIUM· v2
A use-after-free vulnerability was found in the virtio-net device of QEMU. It could occur when the descriptor's address belongs to the non direct access region, due to num_buffers being set after the virtqueue elem has b...Show more
A use-after-free vulnerability was found in the virtio-net device of QEMU. It could occur when the descriptor's address belongs to the non direct access region, due to num_buffers being set after the virtqueue elem has been unmapped. A malicious guest could use this flaw to crash QEMU, resulting in a denial of service condition, or potentially execute code on the host with the privileges of the QEMU process.Show less
2Debian
Qemu
2Debian Linux
Qemu
Jun 17, 2026
Mar 16, 2022
N/A· v4
3.2 LOW· v3
2.1 LOW· v2
A flaw was found in the vhost-vsock device of QEMU. In case of error, an invalid element was not detached from the virtqueue before freeing its memory, leading to memory leakage and other unexpected results. Affected QEM...Show more
A flaw was found in the vhost-vsock device of QEMU. In case of error, an invalid element was not detached from the virtqueue before freeing its memory, leading to memory leakage and other unexpected results. Affected QEMU versions <= 6.2.0.Show less
2Debian
Qemu
2Debian Linux
Qemu
Jun 17, 2026
Mar 16, 2022
N/A· v4
7.5 HIGH· v3
5.0 MEDIUM· v2
A flaw was found in the virtio-net device of QEMU. This flaw was inadvertently introduced with the fix for CVE-2021-3748, which forgot to unmap the cached virtqueue elements on error, leading to memory leakage and other...Show more
A flaw was found in the virtio-net device of QEMU. This flaw was inadvertently introduced with the fix for CVE-2021-3748, which forgot to unmap the cached virtqueue elements on error, leading to memory leakage and other unexpected results. Affected QEMU version: 6.2.0.Show less
4Debian
FedoraprojectQemu+1 more
8Codeready Linux Builder
Debian LinuxEnterprise Linux+5 more
Jun 17, 2026
Mar 16, 2022
N/A· v4
6.5 MEDIUM· v3
2.1 LOW· v2
An infinite loop flaw was found in the e1000 NIC emulator of the QEMU. This issue occurs while processing transmits (tx) descriptors in process_tx_desc if various descriptor fields are initialized with invalid values. Th...Show more
An infinite loop flaw was found in the e1000 NIC emulator of the QEMU. This issue occurs while processing transmits (tx) descriptors in process_tx_desc if various descriptor fields are initialized with invalid values. This flaw allows a guest to consume CPU cycles on the host, resulting in a denial of service. The highest threat from this vulnerability is to system availability.Show less
2Fedoraproject
Qemu
2Fedora
Qemu
Jun 17, 2026
Mar 3, 2022
N/A· v4
6.5 MEDIUM· v3
2.1 LOW· v2
An out-of-bounds memory access flaw was found in the ATI VGA device emulation of QEMU. This flaw occurs in the ati_2d_blt() routine while handling MMIO write operations when the guest provides invalid values for the dest...Show more
An out-of-bounds memory access flaw was found in the ATI VGA device emulation of QEMU. This flaw occurs in the ati_2d_blt() routine while handling MMIO write operations when the guest provides invalid values for the destination display parameters. A malicious guest could use this flaw to crash the QEMU process on the host, resulting in a denial of service.Show less
3Debian
FedoraprojectQemu
3Debian Linux
FedoraQemu
Jun 17, 2026
Feb 24, 2022
N/A· v4
6.0 MEDIUM· v3
4.9 MEDIUM· v2
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device in versions prior to 6.1.0. The issue occurs while handling a "PVRDMA_REG_DSRHIGH" write from the guest and may result in a crash of QEMU or...Show more
A flaw was found in the QEMU implementation of VMWare's paravirtual RDMA device in versions prior to 6.1.0. The issue occurs while handling a "PVRDMA_REG_DSRHIGH" write from the guest and may result in a crash of QEMU or cause undefined behavior due to the access of an uninitialized pointer. The highest threat from this vulnerability is to system availability.Show less
3Debian
FedoraprojectQemu
3Debian Linux
FedoraQemu
Jun 17, 2026
Feb 24, 2022
N/A· v4
6.0 MEDIUM· v3
4.9 MEDIUM· v2
An integer overflow was found in the QEMU implementation of VMWare's paravirtual RDMA device in versions prior to 6.1.0. The issue occurs while handling a "PVRDMA_REG_DSRHIGH" write from the guest due to improper input v...Show more
An integer overflow was found in the QEMU implementation of VMWare's paravirtual RDMA device in versions prior to 6.1.0. The issue occurs while handling a "PVRDMA_REG_DSRHIGH" write from the guest due to improper input validation. This flaw allows a privileged guest user to make QEMU allocate a large amount of memory, resulting in a denial of service. The highest threat from this vulnerability is to system availability.Show less
1Qemu
1Qemu
Jun 17, 2026
Feb 18, 2022
N/A· v4
5.5 MEDIUM· v3
2.1 LOW· v2
A stack-buffer-overflow was found in QEMU in the NVME component. The flaw lies in nvme_changed_nslist() where a malicious guest controlling certain input can read out of bounds memory. A malicious user could use this fla...Show more
A stack-buffer-overflow was found in QEMU in the NVME component. The flaw lies in nvme_changed_nslist() where a malicious guest controlling certain input can read out of bounds memory. A malicious user could use this flaw leading to disclosure of sensitive information.Show less