118 matches found
The vulnerability of the hw/scsi/scsi-generic.c component of the QEMU hardware emulation software, related to reading data beyond the buffer’s acceptable limits, allows a malicious actor to cause a service failure.
The vulnerability of the hw/scsi/scsi-generic.c component of the QEMU hardware emulation software is related to reading data from within acceptable buffer limits. Exploiting this vulnerability can allow an attacker to cause a system failure...
The vulnerability in the block/iscsi.c component of the QEMU hardware emulation software involves reading data beyond the allowed buffer limits, allowing an attacker to access confidential data.
The vulnerability in the block/iscsi.c component of the QEMU hardware emulation software involves reading data from beyond the allowable buffer size. Exploiting this vulnerability can allow an attacker to access confidential data...
The vulnerability of the QEMU hardware emulation software lies in the lack of a necessary encryption step, which allows attackers to gain access to confidential data.
The vulnerability of the QEMU hardware emulation software is related to a implementation error in the handling of pointer authentication. Exploiting this vulnerability can allow an attacker to gain access to confidential data...
The vulnerability of the hw/ppc/spapr.c component of the QEMU hardware emulation software, related to deficiencies in access control to ports, allows a perpetrator to gain access to confidential data.
The vulnerability in the hw/ppc/spapr.c component of the QEMU hardware emulation software is related to deficiencies in access control for ports. Exploiting this vulnerability can allow an attacker to gain access to confidential data...
The vulnerability of the QEMU hardware emulation software, related to pointer swapping errors, allows a hacker to trigger a service failure.
The vulnerability of the QEMU hardware emulation software is related to pointer assignment errors. Exploiting this vulnerability can allow a remote attacker to cause a service failure...
The vulnerability in the hw/usb/hcd-xhci.c component of the QEMU hardware emulation software arises from the use of memory after it has been freed. This allows a malicious actor to trigger a service failure.
The vulnerability in the hw/usb/hcd-xhci.c component of the QEMU hardware emulation software is related to the lack of checking for the return value of usbpacketmap. Exploiting this vulnerability could allow a attacker to cause a service failure...
The vulnerability of the sd_wp_addr component of the emulation software for hardware devices on other platforms, related to reading data beyond the buffer’s acceptable limits, allows a malicious actor to cause a service failure.
The vulnerability of the sdwpaddr component of the hardware emulation software for other platforms supported by QEMU lies in its ability to read data from beyond the allowed buffer size. Exploiting this vulnerability can allow an attacker to cause service failures...
The vulnerability of the e1000e wireless bridge in the hardware emulation software QEMU, related to the use of memory after it is freed, allows a hacker to trigger a service failure.
The vulnerability of the e1000e wireless bridge in the QEMU hardware emulation software is related to the use of memory after it is freed. Exploiting this vulnerability can allow a hacker to cause a system failure...
The vulnerability of the ati_2d_blt() function in the QEMU hardware emulation software allows a hacker to induce a system failure.
The vulnerability of the ati2dblt function in the QEMU hardware emulation software is caused by a buffer overflow in the dynamic memory. Exploiting this vulnerability can allow an attacker to cause a system failure...
The vulnerability of the QEMU hardware emulation software, related to the swapping of the zero pointer, allows a hacker to trigger a service failure.
The vulnerability of the QEMU hardware emulation software is related to the swapping of the zero pointer. Exploiting this vulnerability can allow a hacker to trigger a service failure...
The vulnerability of the `net_tx_pkt_add_raw_fragment` function in the `hw/net/net_tx_pkt.c` file of the QEMU hardware emulation software, related to the insufficient use of the `assert()` function, allows a hacker to trigger a system failure.
The vulnerability of the nettxpktaddrawfragment function in the hw/net/nettxpkt.c file of the QEMU hardware emulation software is related to the insufficient use of the assert function. Exploiting this vulnerability could allow an attacker to cause a system failure...
The vulnerability of the QEMU hardware emulation software, related to the swapping of the zero pointer, allows a hacker to trigger a service failure.
The vulnerability of the QEMU hardware emulation software is related to the swapping of the zero pointer. Exploiting this vulnerability can allow an attacker to trigger a service failure...
The vulnerability in the `hw/rdma/vmw/pvrdma_cmd.c` component of the PVRDMA virtual network adapter driver allows a hacker to trigger a service failure.
The vulnerability in the hw/rdma/vmw/pvrdmacmd.c component of the PVRDMA virtual network adapter’s hardware emulation software, QEMU, is related to pointer assignment errors. Exploiting this vulnerability could allow a remote attacker to cause a service failure by creating CQ/QP objects...
QEMU Buffer Overflow Vulnerability (CNVD-2020-35975)
QEMU Quick Emulator is a set of simulation processor software by French software developer Fabrice Bellard. The software is fast, cross-platform and other characteristics. A buffer overflow vulnerability exists in the hw/pci/pci.c file in QEMU version 4.2.0. The vulnerability stems from a network...
The vulnerability of the emulation software for hardware devices on various platforms, QEMU, allows a hacker to trigger a service failure.
The vulnerability of software for emulating hardware on various platforms under QEMU is related to deficiencies in the handling of zero pointer assignments. Exploiting this vulnerability can allow an attacker to cause a system failure...
The vulnerability of the tcp_emu function in software emulation for hardware devices on various platforms, related to writing beyond the buffer boundaries of memory, allows attackers to access confidential data, compromise its integrity, and cause service failures.
The vulnerability of the tcpemu function in software for emulating hardware on various QEMU platforms is related to a memory management error. Exploiting this vulnerability can allow an attacker to gain access to confidential data, compromise its integrity, and cause service failures...
The vulnerability of the lsi_do_msgin function in the QEMU hardware emulation software, related to reading beyond the data buffer, allows a hacker to trigger a service failure.
The vulnerability of the lsidomsgin function hw/scsi/lsi53c895a.c in the QEMU hardware emulation software is related to reading beyond the buffer data boundary. Exploiting this vulnerability can allow an attacker to cause a service failure due to an invalid value of the msglen variable...
The vulnerability of the rtl8139_do_receive function in the QEMU hardware emulation software, related to integer overflow, allows a hacker to cause a service failure.
The vulnerability of the rtl8139doreceive function in the QEMU hardware emulation software is related to integer overflow. Exploiting this vulnerability could allow a remote attacker to cause a service failure...
The vulnerability of the TCP/IP emulator tcp_emu(), Slirp emulator, and the hardware emulation software QEMU allows a hacker to induce a service failure.
The vulnerability of the tcpemu function slirp/tcpsubr.c of the Slirp TCP/IP emulator and the QEMU hardware emulation software is related to the execution of operations outside the data buffer “scrcv-sbdata”. Exploiting this vulnerability can allow an attacker to cause a service failure...
The vulnerability of the Network Block Device (NBD) hardware emulation server in QEMU allows a hacker to induce a maintenance failure.
The vulnerability of the Network Block Device NBD emulation server of QEMU is related to an uncontrolled resource consumption. Exploiting this vulnerability can allow a remote attacker to trigger a service failure through a specially crafted request...