58.412 CVE tracked
792 Exploited now
188 Used by ransomware
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CVE Tracker
58.412 CVE
Ten vendors followed by CPE identifier, not by keyword: a CVE appears here once NVD says which products it affects — usually a few days after it is published.
| Identifier | Severity, sorted descending | Product and flaw | EPSS, sort descending | In KEV since, sort descending |
|---|---|---|---|---|
| CVE-2017-0445 | HIGH 7.0 | google android An elevation of privilege vulnerability in the HTC touchscreen driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process | 1.0% | — |
| CVE-2017-0444 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Realtek sound driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 1.1% | — |
| CVE-2017-0443 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0442 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0441 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0440 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0439 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0438 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0437 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm Wi-Fi driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0436 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm sound driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.9% | — |
| CVE-2017-0435 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Qualcomm sound driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 0.8% | — |
| CVE-2017-0434 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Synaptics touchscreen driver could enable a local malicious application to execute arbitrary code within the context of the touchscreen chipset. This issue is rated as High because it first requires compromising a | 0.9% | — |
| CVE-2017-0433 | HIGH 7.0 | google android An elevation of privilege vulnerability in the Synaptics touchscreen driver could enable a local malicious application to execute arbitrary code within the context of the touchscreen chipset. This issue is rated as High because it first requires compromising a | 1.0% | — |
| CVE-2017-0432 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the MediaTek driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. Produ | 2.1% | — |
| CVE-2017-0404 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the kernel sound subsystem could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process | 1.6% | — |
| CVE-2017-0403 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the kernel performance subsystem could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged p | 1.6% | — |
| CVE-2017-0343 | HIGH 7.0 | nvidia gpu_driver All versions of the NVIDIA Windows GPU Display Driver contain a vulnerability in the kernel mode layer (nvlddmkm.sys) where user can trigger a race condition due to lack of synchronization in two functions leading to a denial of service or potential escalation | 0.2% | — |
| CVE-2017-0339 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the NVIDIA crypto driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 1.8% | — |
| CVE-2017-0332 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the NVIDIA crypto driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 2.1% | — |
| CVE-2017-0329 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the NVIDIA boot and power management processor driver could enable a local malicious application to execute arbitrary code within the context of the boot and power management processor. This issue is rated as High bec | 2.1% | — |
| CVE-2017-0327 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the NVIDIA crypto driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 1.8% | — |
| CVE-2017-0325 | HIGH 7.0 | linux linux_kernel An elevation of privilege vulnerability in the NVIDIA I2C HID driver could enable a local malicious application to execute arbitrary code within the context of the kernel. This issue is rated as High because it first requires compromising a privileged process. | 1.8% | — |
| CVE-2017-0279 | HIGH 7.0 | microsoft windows_10 The Microsoft Server Message Block 1.0 (SMBv1) server on Microsoft Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8.1, Windows Server 2012 Gold and R2, Windows RT 8.1, Windows 10 Gold, 1511, 1607, and 1703, and Windows Server 2016 allows an attacke | 10.8% | — |
| CVE-2017-0278 | HIGH 7.0 | microsoft windows_10 The Microsoft Server Message Block 1.0 (SMBv1) server on Microsoft Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8.1, Windows Server 2012 Gold and R2, Windows RT 8.1, Windows 10 Gold, 1511, 1607, and 1703, and Windows Server 2016 allows an attacke | 10.8% | — |
| CVE-2017-0277 | HIGH 7.0 | microsoft windows_10 The Microsoft Server Message Block 1.0 (SMBv1) server on Microsoft Windows Server 2008 SP2 and R2 SP1, Windows 7 SP1, Windows 8.1, Windows Server 2012 Gold and R2, Windows RT 8.1, Windows 10 Gold, 1511, 1607, and 1703, and Windows Server 2016 allows an attacke | 10.8% | — |