| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Due to improper path sanitization, archives containing relative file paths can cause files to be written (or overwritten) outside of the target directory. |
| Due to improper sanitization of user input, HTTPEngine.Handle allows for directory traversal, allowing an attacker to read files outside of the target directory that the server has permission to read. |
| Improper Limitation of a Pathname to a Restricted Directory ('Path Traversal') vulnerability in Salon Booking System Salon booking system allows File Manipulation.This issue affects Salon booking system: from n/a through 9.9. |
| Gradle is a build tool with a focus on build automation and support for multi-language development. In affected versions when unpacking Tar archives, Gradle did not check that files could be written outside of the unpack location. This could lead to important files being overwritten anywhere the Gradle process has write permissions. For a build reading Tar entries from a Tar archive, this issue could allow Gradle to disclose information from sensitive files through an arbitrary file read. To exploit this behavior, an attacker needs to either control the source of an archive already used by the build or modify the build to interact with a malicious archive. It is unlikely that this would go unnoticed. A fix has been released in Gradle 7.6.2 and 8.2 to protect against this vulnerability. Starting from these versions, Gradle will refuse to handle Tar archives which contain path traversal elements in a Tar entry name. Users are advised to upgrade. There are no known workarounds for this vulnerability.
### Impact
This is a path traversal vulnerability when Gradle deals with Tar archives, often referenced as TarSlip, a variant of ZipSlip.
* When unpacking Tar archives, Gradle did not check that files could be written outside of the unpack location. This could lead to important files being overwritten anywhere the Gradle process has write permissions.
* For a build reading Tar entries from a Tar archive, this issue could allow Gradle to disclose information from sensitive files through an arbitrary file read.
To exploit this behavior, an attacker needs to either control the source of an archive already used by the build or modify the build to interact with a malicious archive. It is unlikely that this would go unnoticed.
Gradle uses Tar archives for its [Build Cache](https://docs.gradle.org/current/userguide/build_cache.html). These archives are safe when created by Gradle. But if an attacker had control of a remote build cache server, they could inject malicious build cache entries that leverage this vulnerability. This attack vector could also be exploited if a man-in-the-middle can be performed between the remote cache and the build.
### Patches
A fix has been released in Gradle 7.6.2 and 8.2 to protect against this vulnerability. Starting from these versions, Gradle will refuse to handle Tar archives which contain path traversal elements in a Tar entry name.
It is recommended that users upgrade to a patched version.
### Workarounds
There is no workaround.
* If your build deals with Tar archives that you do not fully trust, you need to inspect them to confirm they do not attempt to leverage this vulnerability.
* If you use the Gradle remote build cache, make sure only trusted parties have write access to it and that connections to the remote cache are properly secured.
### References
* [CWE-22: Improper Limitation of a Pathname to a Restricted Directory ('Path Traversal')](https://cwe.mitre.org/data/definitions/22.html)
* [Gradle Build Cache](https://docs.gradle.org/current/userguide/build_cache.html)
* [ZipSlip](https://security.snyk.io/research/zip-slip-vulnerability) |
| Unspecified vulnerability in the Oracle GlassFish Server component in Oracle Fusion Middleware 2.1.1, 3.0.1, and 3.1.2; the Oracle JDeveloper component in Oracle Fusion Middleware 11.1.2.3.0, 11.1.2.4.0, and 12.1.2.0.0; and the Oracle WebLogic Server component in Oracle Fusion Middleware 10.3.6.0 and 12.1.1 allows remote attackers to affect confidentiality via unknown vectors related to Java Server Faces or Web Container. |
| Directory traversal vulnerability in Easytime Studio Easy File Manager 1.1 for iOS allows remote attackers to read arbitrary files via a ..%2f (encoded dot dot slash) to the default URI. |
| Directory traversal vulnerability in Gummy Bear Studios FTP Drive + HTTP Server 1.0.4 and earlier allows remote attackers to read arbitrary files via a ..%2f (encoded dot dot slash) in a GET request. |
| Directory traversal vulnerability in SavySoda WiFi HD Free before 7.0 allows remote attackers to read arbitrary files via a ..%2f (encoded dot dot slash) in a GET request. |
| The SecureSphere Operations Manager (SOM) Management Server in Imperva SecureSphere 9.0.0.5 allows remote attackers to obtain sensitive information via (1) a direct request to dwr/call/plaincall/AsyncOperationsContainer.getOperationState.dwr, which reveals the installation path in the s0.filePath field, or (2) a T/keyManagement request to plain/settings.html, which reveals a temporary path in an error message. |
| ServerAdmin/TestDRConnection.jsp in DS3 Authentication Server allows remote attackers to obtain sensitive information via a direct request, which reveals the installation path in a -REG-E-OPEN error message. |
| Heap-based buffer overflow in Ruby 1.8, 1.9 before 1.9.3-p484, 2.0 before 2.0.0-p353, 2.1 before 2.1.0 preview2, and trunk before revision 43780 allows context-dependent attackers to cause a denial of service (segmentation fault) and possibly execute arbitrary code via a string that is converted to a floating point value, as demonstrated using (1) the to_f method or (2) JSON.parse. |
| Directory traversal vulnerability in the trend-data daemon (xymond_rrd) in Xymon 4.x before 4.3.12 allows remote attackers to delete arbitrary files via a .. (dot dot) in the host name in a "drophost" command. |
| Directory traversal vulnerability in Django 1.4.x before 1.4.7, 1.5.x before 1.5.3, and 1.6.x before 1.6 beta 3 allows remote attackers to read arbitrary files via a file path in the ALLOWED_INCLUDE_ROOTS setting followed by a .. (dot dot) in a ssi template tag. |
| The skb_flow_dissect function in net/core/flow_dissector.c in the Linux kernel through 3.12 allows remote attackers to cause a denial of service (infinite loop) via a small value in the IHL field of a packet with IPIP encapsulation. |
| Directory traversal vulnerability in the client in Tryton 3.0.0, as distributed before 20131104 and earlier, allows remote servers to write arbitrary files via path separators in the extension of a report. |
| Directory traversal vulnerability in repository/filesystem/lib.php in Moodle through 2.2.11, 2.3.x before 2.3.10, 2.4.x before 2.4.7, and 2.5.x before 2.5.3 allows remote authenticated users to read arbitrary files via a .. (dot dot) in a path. |
| Directory traversal vulnerability in File Roller 3.6.x before 3.6.4, 3.8.x before 3.8.3, and 3.9.x before 3.9.3, when libarchive is used, allows remote attackers to create arbitrary files via a crafted archive that is not properly handled in a "Keep directory structure" action, related to fr-archive-libarchive.c and fr-window.c. |
| Multiple directory traversal vulnerabilities in the doApiAction function in data/class/api/SC_Api_Operation.php in LOCKON EC-CUBE 2.12.0 through 2.12.5 on Windows allow remote attackers to read arbitrary files via vectors involving a (1) Operation, (2) Service, (3) Style, (4) Validate, or (5) Version value. |
| The http-domino-enum-passwords.nse script in NMap before 6.40, when domino-enum-passwords.idpath is set, allows remote servers to upload "arbitrarily named" files via a crafted FullName parameter in a response, as demonstrated using directory traversal sequences. |
| Directory traversal vulnerability in DeWeS web server 0.4.2 and possibly earlier, as used in Twilight CMS, allows remote attackers to read arbitrary files via a ..%5c (dot dot encoded backslash) in a GET request. |