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Search Results (41644 CVEs found)
| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2020-11130 | 1 Qualcomm | 62 Qcm4290, Qcm4290 Firmware, Qcs4290 and 59 more | 2024-11-21 | 7.8 High |
| u'Possible buffer overflow in WIFI hal process due to copying data without checking the buffer length' in Snapdragon Auto, Snapdragon Compute, Snapdragon Industrial IOT, Snapdragon Mobile in QCM4290, QCS4290, QM215, QSM8350, SA6145P, SA6155, SA6155P, SA8155, SA8155P, SC8180X, SC8180XP, SDX55, SDX55M, SM4250, SM4250P, SM6115, SM6115P, SM6125, SM6250, SM6350, SM7125, SM7225, SM7250, SM7250P, SM8150, SM8150P, SM8250, SM8350, SM8350P, SXR2130, SXR2130P | ||||
| CVE-2020-11127 | 1 Qualcomm | 106 Mdm9205, Mdm9205 Firmware, Qcm4290 and 103 more | 2024-11-21 | 7.8 High |
| u'Integer overflow can cause a buffer overflow due to lack of table length check in the extensible boot Loader during the validation of security metadata while processing objects to be loaded' in Snapdragon Auto, Snapdragon Compute, Snapdragon Consumer IOT, Snapdragon Industrial IOT, Snapdragon Mobile, Snapdragon Voice & Music, Snapdragon Wired Infrastructure and Networking in MDM9205, QCM4290, QCS405, QCS410, QCS4290, QCS610, QSM8250, SA415M, SA515M, SA6145P, SA6150P, SA6155, SA6155P, SA8150P, SA8155, SA8155P, SA8195P, SC7180, SC8180X, SC8180X+SDX55, SC8180XP, SDA640, SDA845, SDA855, SDM1000, SDM640, SDM830, SDM845, SDM850, SDX24, SDX50M, SDX55, SDX55M, SM4125, SM4250, SM4250P, SM6115, SM6115P, SM6150, SM6150P, SM6250, SM6250P, SM6350, SM7125, SM7150, SM7150P, SM7225, SM7250, SM7250P, SM8150, SM8150P, SM8250, SXR2130, SXR2130P | ||||
| CVE-2020-11123 | 1 Qualcomm | 230 Apq8009, Apq8009 Firmware, Apq8009w and 227 more | 2024-11-21 | 5.5 Medium |
| u'information disclosure in gatekeeper trustzone implementation as the throttling mechanism to prevent brute force attempts at getting user`s lock-screen password can be bypassed by performing the standard gatekeeper operations.' in Snapdragon Auto, Snapdragon Compute, Snapdragon Connectivity, Snapdragon Consumer IOT, Snapdragon Industrial IOT, Snapdragon IoT, Snapdragon Mobile, Snapdragon Voice & Music, Snapdragon Wearables, Snapdragon Wired Infrastructure and Networking in APQ8009, APQ8009W, APQ8017, APQ8037, APQ8053, APQ8064AU, APQ8096, APQ8096AU, APQ8096SG, APQ8098, MDM8207, MDM9150, MDM9205, MDM9206, MDM9207, MDM9250, MDM9607, MDM9628, MDM9640, MDM9650, MDM9655, MSM8108, MSM8208, MSM8209, MSM8608, MSM8905, MSM8909, MSM8909W, MSM8917, MSM8920, MSM8937, MSM8940, MSM8953, MSM8996, MSM8996AU, MSM8996SG, MSM8998, QCM4290, QCS405, QCS410, QCS4290, QCS603, QCS605, QCS610, QM215, QSM8250, QSM8350, SA415M, SA515M, SA6145P, SA6150P, SA6155, SA6155P, SA8150P, SA8155, SA8155P, SA8195P, SC7180, SC8180X, SC8180XP, SDA429W, SDA640, SDA660, SDA670, SDA845, SDA855, SDM1000, SDM429, SDM429W, SDM439, SDM450, SDM455, SDM630, SDM632, SDM636, SDM640, SDM660, SDM670, SDM710, SDM712, SDM830, SDM845, SDM850, SDW2500, SDX24, SDX50M, SDX55, SDX55M, SM4125, SM4250, SM4250P, SM6115, SM6115P, SM6125, SM6150, SM6150P, SM6250, SM6250P, SM6350, SM7125, SM7150, SM7150P, SM7225, SM7250, SM7250P, SM8150, SM8150P, SM8250, SM8350, SM8350P, SXR1120, SXR1130, SXR2130, SXR2130P, WCD9330 | ||||
| CVE-2020-11121 | 1 Qualcomm | 62 Qcm4290, Qcm4290 Firmware, Qcs4290 and 59 more | 2024-11-21 | 7.8 High |
| u'Possible buffer overflow in WIFI hal process due to usage of memcpy without checking length of destination buffer' in Snapdragon Auto, Snapdragon Compute, Snapdragon Industrial IOT, Snapdragon Mobile in QCM4290, QCS4290, QM215, QSM8350, SA6145P, SA6155, SA6155P, SA8155, SA8155P, SC8180X, SC8180XP, SDX55, SDX55M, SM4250, SM4250P, SM6115, SM6115P, SM6125, SM6250, SM6350, SM7125, SM7225, SM7250, SM7250P, SM8150, SM8150P, SM8250, SM8350, SM8350P, SXR2130, SXR2130P | ||||
| CVE-2020-11012 | 1 Minio | 1 Minio | 2024-11-21 | 9.3 Critical |
| MinIO versions before RELEASE.2020-04-23T00-58-49Z have an authentication bypass issue in the MinIO admin API. Given an admin access key, it is possible to perform admin API operations i.e. creating new service accounts for existing access keys - without knowing the admin secret key. This has been fixed and released in version RELEASE.2020-04-23T00-58-49Z. | ||||
| CVE-2020-10962 | 1 Psappdeploytoolkit | 1 Powershell App Deployment Toolkit | 2024-11-21 | 7.8 High |
| In PowerShell App Deployment Toolkit (aka PSAppDeployToolkit) through 3.8.0, an incorrect access control vulnerability in the default configuration may allow an authenticated user to potentially enable escalation of privilege via local access. | ||||
| CVE-2020-10941 | 3 Arm, Debian, Fedoraproject | 4 Mbed Crypto, Mbed Tls, Debian Linux and 1 more | 2024-11-21 | 5.9 Medium |
| Arm Mbed TLS before 2.16.5 allows attackers to obtain sensitive information (an RSA private key) by measuring cache usage during an import. | ||||
| CVE-2020-10938 | 3 Debian, Graphicsmagick, Opensuse | 4 Debian Linux, Graphicsmagick, Backports and 1 more | 2024-11-21 | 9.8 Critical |
| GraphicsMagick before 1.3.35 has an integer overflow and resultant heap-based buffer overflow in HuffmanDecodeImage in magick/compress.c. | ||||
| CVE-2020-10916 | 1 Tp-link | 2 Tl-wa855re, Tl-wa855re Firmware | 2024-11-21 | 8.0 High |
| This vulnerability allows network-adjacent attackers to escalate privileges on affected installations of TP-Link TL-WA855RE Firmware Ver: 855rev4-up-ver1-0-1-P1[20191213-rel60361] Wi-Fi extenders. Although authentication is required to exploit this vulnerability, the existing authentication mechanism can be bypassed. The specific flaw exists within the first-time setup process. The issue results from the lack of proper validation on first-time setup requests. An attacker can leverage this vulnerability to reset the password for the Admin account and execute code in the context of the device. Was ZDI-CAN-10003. | ||||
| CVE-2020-10820 | 1 Nagios | 1 Nagios Xi | 2024-11-21 | 4.8 Medium |
| Nagios XI 5.6.11 allows XSS via the includes/components/ldap_ad_integration/ password parameter. | ||||
| CVE-2020-10812 | 1 Hdfgroup | 1 Hdf5 | 2024-11-21 | 5.5 Medium |
| An issue was discovered in HDF5 through 1.12.0. A NULL pointer dereference exists in the function H5F_get_nrefs() located in H5Fquery.c. It allows an attacker to cause Denial of Service. | ||||
| CVE-2020-10811 | 1 Hdfgroup | 1 Hdf5 | 2024-11-21 | 5.5 Medium |
| An issue was discovered in HDF5 through 1.12.0. A heap-based buffer over-read exists in the function H5O__layout_decode() located in H5Olayout.c. It allows an attacker to cause Denial of Service. | ||||
| CVE-2020-10810 | 1 Hdfgroup | 1 Hdf5 | 2024-11-21 | 5.5 Medium |
| An issue was discovered in HDF5 through 1.12.0. A NULL pointer dereference exists in the function H5AC_unpin_entry() located in H5AC.c. It allows an attacker to cause Denial of Service. | ||||
| CVE-2020-10809 | 1 Hdfgroup | 1 Hdf5 | 2024-11-21 | 5.5 Medium |
| An issue was discovered in HDF5 through 1.12.0. A heap-based buffer overflow exists in the function Decompress() located in decompress.c. It can be triggered by sending a crafted file to the gif2h5 binary. It allows an attacker to cause Denial of Service. | ||||
| CVE-2020-10799 | 1 Svglib Project | 1 Svglib | 2024-11-21 | 9.8 Critical |
| The svglib package through 0.9.3 for Python allows XXE attacks via an svg2rlg call. | ||||
| CVE-2020-10792 | 1 It-novum | 1 Openitcockpit | 2024-11-21 | 7.5 High |
| openITCOCKPIT through 3.7.2 allows remote attackers to configure the self::DEVELOPMENT or self::STAGING option by placing a hostname containing "dev" or "staging" in the HTTP Host header. | ||||
| CVE-2020-10740 | 1 Redhat | 7 Jboss Enterprise Application Platform, Jboss Enterprise Application Platform Cd, Jboss Enterprise Application Platform Eus and 4 more | 2024-11-21 | 6.6 Medium |
| A vulnerability was found in Wildfly in versions before 20.0.0.Final, where a remote deserialization attack is possible in the Enterprise Application Beans(EJB) due to lack of validation/filtering capabilities in wildfly. | ||||
| CVE-2020-10729 | 2 Debian, Redhat | 4 Debian Linux, Ansible Engine, Ansible Tower and 1 more | 2024-11-21 | 5.5 Medium |
| A flaw was found in the use of insufficiently random values in Ansible. Two random password lookups of the same length generate the equal value as the template caching action for the same file since no re-evaluation happens. The highest threat from this vulnerability would be that all passwords are exposed at once for the file. This flaw affects Ansible Engine versions before 2.9.6. | ||||
| CVE-2020-10713 | 5 Debian, Gnu, Opensuse and 2 more | 10 Debian Linux, Grub2, Leap and 7 more | 2024-11-21 | 8.2 High |
| A flaw was found in grub2, prior to version 2.06. An attacker may use the GRUB 2 flaw to hijack and tamper the GRUB verification process. This flaw also allows the bypass of Secure Boot protections. In order to load an untrusted or modified kernel, an attacker would first need to establish access to the system such as gaining physical access, obtain the ability to alter a pxe-boot network, or have remote access to a networked system with root access. With this access, an attacker could then craft a string to cause a buffer overflow by injecting a malicious payload that leads to arbitrary code execution within GRUB. The highest threat from this vulnerability is to data confidentiality and integrity as well as system availability. | ||||
| CVE-2020-10691 | 1 Redhat | 2 Ansible Engine, Ansible Tower | 2024-11-21 | 5.2 Medium |
| An archive traversal flaw was found in all ansible-engine versions 2.9.x prior to 2.9.7, when running ansible-galaxy collection install. When extracting a collection .tar.gz file, the directory is created without sanitizing the filename. An attacker could take advantage to overwrite any file within the system. | ||||