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| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2017-9859 | 1 Sma | 78 Sunny Boy 1.5, Sunny Boy 1.5 Firmware, Sunny Boy 2.5 and 75 more | 2025-04-20 | N/A |
| An issue was discovered in SMA Solar Technology products. The inverters make use of a weak hashing algorithm to encrypt the password for REGISTER requests. This hashing algorithm can be cracked relatively easily. An attacker will likely be able to crack the password using offline crackers. This cracked password can then be used to register at the SMA servers. NOTE: the vendor's position is that "we consider the probability of the success of such manipulation to be extremely low." Also, only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9858 | 1 Sma | 78 Sunny Boy 1.5, Sunny Boy 1.5 Firmware, Sunny Boy 2.5 and 75 more | 2025-04-20 | N/A |
| An issue was discovered in SMA Solar Technology products. By sending crafted packets to an inverter and observing the response, active and inactive user accounts can be determined. This aids in further attacks (such as a brute force attack) as one now knows exactly which users exist and which do not. NOTE: the vendor's position is that this "is not a security gap per se." Also, only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9857 | 1 Sma | 79 Sunny Boy 1.5, Sunny Boy 1.5 Firmware, Sunny Boy 2.5 and 76 more | 2025-04-20 | N/A |
| An issue was discovered in SMA Solar Technology products. The SMAdata2+ communication protocol does not properly use authentication with encryption: it is vulnerable to man in the middle, packet injection, and replay attacks. Any setting change, authentication packet, scouting packet, etc. can be replayed, injected, or used for a man in the middle session. All functionalities available in Sunny Explorer can effectively be done from anywhere within the network as long as an attacker gets the packet setup correctly. This includes the authentication process for all (including hidden) access levels and the changing of settings in accordance with the gained access rights. Furthermore, because the SMAdata2+ communication channel is unencrypted, an attacker capable of understanding the protocol can eavesdrop on communications. NOTE: the vendor's position is that authentication with encryption is not required on an isolated subnetwork. Also, only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9856 | 1 Sma | 82 Sunny Boy 1.5, Sunny Boy 1.5 Firmware, Sunny Boy 2.5 and 79 more | 2025-04-20 | 3.4 Low |
| An issue was discovered in SMA Solar Technology products. Sniffed passwords from SMAdata2+ communication can be decrypted very easily. The passwords are "encrypted" using a very simple encryption algorithm. This enables an attacker to find the plaintext passwords and authenticate to the device. NOTE: the vendor reports that only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9855 | 1 Sma | 78 Sunny Boy 1.5, Sunny Boy 1.5 Firmware, Sunny Boy 2.5 and 75 more | 2025-04-20 | 9.8 Critical |
| An issue was discovered in SMA Solar Technology products. A secondary authentication system is available for Installers called the Grid Guard system. This system uses predictable codes, and a single Grid Guard code can be used on any SMA inverter. Any such code, when combined with the installer account, allows changing very sensitive parameters. NOTE: the vendor reports that Grid Guard is not an authentication feature; it is only a tracing feature. Also, only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9854 | 1 Sma | 78 Sunny Boy 1.5, Sunny Boy 1.5 Firmware, Sunny Boy 2.5 and 75 more | 2025-04-20 | N/A |
| An issue was discovered in SMA Solar Technology products. By sniffing for specific packets on the localhost, plaintext passwords can be obtained as they are typed into Sunny Explorer by the user. These passwords can then be used to compromise the overall device. NOTE: the vendor reports that exploitation likelihood is low because these packets are usually sent only once during installation. Also, only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9851 | 1 Sma | 1 Sunny Explorer | 2025-04-20 | N/A |
| An issue was discovered in SMA Solar Technology products. By sending nonsense data or setting up a TELNET session to the database port of Sunny Explorer, the application can be crashed. NOTE: the vendor reports that the maximum possible damage is a communication failure. Also, only Sunny Boy TLST-21 and TL-21 and Sunny Tripower TL-10 and TL-30 could potentially be affected | ||||
| CVE-2017-9847 | 1 Libtorrent | 1 Libtorrent | 2025-04-20 | N/A |
| The bdecode function in bdecode.cpp in libtorrent 1.1.3 allows remote attackers to cause a denial of service (heap-based buffer over-read and application crash) via a crafted file. | ||||
| CVE-2017-9835 | 2 Artifex, Debian | 2 Ghostscript, Debian Linux | 2025-04-20 | N/A |
| The gs_alloc_ref_array function in psi/ialloc.c in Artifex Ghostscript 9.21 allows remote attackers to cause a denial of service (heap-based buffer overflow and application crash) or possibly have unspecified other impact via a crafted PostScript document. This is related to a lack of an integer overflow check in base/gsalloc.c. | ||||
| CVE-2017-9832 | 1 Libmtp Project | 1 Libmtp | 2025-04-20 | N/A |
| An integer overflow vulnerability in ptp-pack.c (ptp_unpack_OPL function) of libmtp (version 1.1.12 and below) allows attackers to cause a denial of service (out-of-bounds memory access) or maybe remote code execution by inserting a mobile device into a personal computer through a USB cable. | ||||
| CVE-2017-9830 | 1 Code42 | 1 Crashplan | 2025-04-20 | N/A |
| Remote Code Execution is possible in Code42 CrashPlan 5.4.x via the org.apache.commons.ssl.rmi.DateRMI Java class, because (upon instantiation) it creates an RMI server that listens on a TCP port and deserializes objects sent by TCP clients. | ||||
| CVE-2015-5607 | 2 Fedoraproject, Ipython | 2 Fedora, Ipython | 2025-04-20 | N/A |
| Cross-site request forgery in the REST API in IPython 2 and 3. | ||||
| CVE-2017-9829 | 1 Vivotek | 6 Network Camera Fd8164, Network Camera Fd8164 Firmware, Network Camera Fd816ba and 3 more | 2025-04-20 | N/A |
| '/cgi-bin/admin/downloadMedias.cgi' of the web service in most of the VIVOTEK Network Cameras is vulnerable, which allows remote attackers to read any file on the camera's Linux filesystem via a crafted HTTP request containing ".." sequences. This vulnerability is already verified on VIVOTEK Network Camera IB8369/FD8164/FD816BA; most others have similar firmware that may be affected. | ||||
| CVE-2017-9828 | 1 Vivotek | 6 Network Camera Fd8164, Network Camera Fd8164 Firmware, Network Camera Fd816ba and 3 more | 2025-04-20 | N/A |
| '/cgi-bin/admin/testserver.cgi' of the web service in most of the VIVOTEK Network Cameras is vulnerable to shell command injection, which allows remote attackers to execute any shell command as root via a crafted HTTP request. This vulnerability is already verified on VIVOTEK Network Camera IB8369/FD8164/FD816BA; most others have similar firmware that may be affected. An attack uses shell metacharacters in the senderemail parameter. | ||||
| CVE-2017-14953 | 1 Hikvision | 2 Ds-2cd2432f-iw, Ds-2cd2432f-iw Firmware | 2025-04-20 | N/A |
| HikVision Wi-Fi IP cameras, when used in a wired configuration, allow physically proximate attackers to trigger association with an arbitrary access point by leveraging a default SSID with no WiFi encryption or authentication. NOTE: Vendor states that this is not a vulnerability, but more an increase to the attack surface of the product | ||||
| CVE-2017-11571 | 1 Fontforge | 1 Fontforge | 2025-04-20 | N/A |
| FontForge 20161012 is vulnerable to a stack-based buffer overflow in addnibble (parsettf.c) resulting in DoS or code execution via a crafted otf file. | ||||
| CVE-2017-14946 | 2 Artifex, Microsoft | 2 Gsview, Windows | 2025-04-20 | N/A |
| Artifex GSView 6.0 Beta on Windows allows attackers to cause a denial of service or possibly have unspecified other impact via a crafted .pdf file, related to "Data from Faulting Address controls Branch Selection starting at mupdfnet64!mIncrementalSaveFile+0x000000000000344e." | ||||
| CVE-2017-9403 | 3 Canonical, Debian, Libtiff | 3 Ubuntu Linux, Debian Linux, Libtiff | 2025-04-20 | N/A |
| In LibTIFF 4.0.7, a memory leak vulnerability was found in the function TIFFReadDirEntryLong8Array in tif_dirread.c, which allows attackers to cause a denial of service via a crafted file. | ||||
| CVE-2017-9407 | 1 Imagemagick | 1 Imagemagick | 2025-04-20 | N/A |
| In ImageMagick 7.0.5-5, the ReadPALMImage function in palm.c allows attackers to cause a denial of service (memory leak) via a crafted file. | ||||
| CVE-2016-2380 | 3 Canonical, Debian, Pidgin | 3 Ubuntu Linux, Debian Linux, Pidgin | 2025-04-20 | N/A |
| An information leak exists in the handling of the MXIT protocol in Pidgin. Specially crafted MXIT data sent to the server could potentially result in an out-of-bounds read. A user could be convinced to enter a particular string which would then get converted incorrectly and could lead to a potential out-of-bounds read. | ||||