๐จ CVE-2012-2601
SQL injection vulnerability in WrVMwareHostList.asp in Ipswitch WhatsUp Gold 15.02 allows remote attackers to execute arbitrary SQL commands via the sGroupList parameter.
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SQL injection vulnerability in WrVMwareHostList.asp in Ipswitch WhatsUp Gold 15.02 allows remote attackers to execute arbitrary SQL commands via the sGroupList parameter.
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Exploit Database
ipswitch whatsup gold 15.02 - Persistent Cross-Site Scripting / Blind SQL Injection / Remote Code Execution
ipswitch whatsup gold 15.02 - Persistent Cross-Site Scripting / Blind SQL Injection / Remote Code Execution. CVE-2012-4344CVE-84761CVE-2012-2601CVE-84313CVE-2012-2589 . webapps exploit for ASP platform
๐จ CVE-2012-4344
Cross-site scripting (XSS) vulnerability in Ipswitch WhatsUp Gold 15.02 allows remote attackers to inject arbitrary web script or HTML via unspecified vectors involving the SNMP system name of the attacking host.
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Cross-site scripting (XSS) vulnerability in Ipswitch WhatsUp Gold 15.02 allows remote attackers to inject arbitrary web script or HTML via unspecified vectors involving the SNMP system name of the attacking host.
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Exploit Database
ipswitch whatsup gold 15.02 - Persistent Cross-Site Scripting / Blind SQL Injection / Remote Code Execution
ipswitch whatsup gold 15.02 - Persistent Cross-Site Scripting / Blind SQL Injection / Remote Code Execution. CVE-2012-4344CVE-84761CVE-2012-2601CVE-84313CVE-2012-2589 . webapps exploit for ASP platform
๐จ CVE-2015-6004
Multiple SQL injection vulnerabilities in IPSwitch WhatsUp Gold before 16.4 allow remote attackers to execute arbitrary SQL commands via (1) the UniqueID (aka sUniqueID) parameter to WrFreeFormText.asp in the Reports component or (2) the Find Device parameter.
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Multiple SQL injection vulnerabilities in IPSwitch WhatsUp Gold before 16.4 allow remote attackers to execute arbitrary SQL commands via (1) the UniqueID (aka sUniqueID) parameter to WrFreeFormText.asp in the Reports component or (2) the Find Device parameter.
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๐จ CVE-2015-6005
Multiple cross-site scripting (XSS) vulnerabilities in IPSwitch WhatsUp Gold before 16.4 allow remote attackers to inject arbitrary web script or HTML via (1) an SNMP OID object, (2) an SNMP trap message, (3) the View Names field, (4) the Group Names field, (5) the Flow Monitor Credentials field, (6) the Flow Monitor Threshold Name field, (7) the Task Library Name field, (8) the Task Library Description field, (9) the Policy Library Name field, (10) the Policy Library Description field, (11) the Template Library Name field, (12) the Template Library Description field, (13) the System Script Library Name field, (14) the System Script Library Description field, or (15) the CLI Settings Library Description field.
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Multiple cross-site scripting (XSS) vulnerabilities in IPSwitch WhatsUp Gold before 16.4 allow remote attackers to inject arbitrary web script or HTML via (1) an SNMP OID object, (2) an SNMP trap message, (3) the View Names field, (4) the Group Names field, (5) the Flow Monitor Credentials field, (6) the Flow Monitor Threshold Name field, (7) the Task Library Name field, (8) the Task Library Description field, (9) the Policy Library Name field, (10) the Policy Library Description field, (11) the Template Library Name field, (12) the Template Library Description field, (13) the System Script Library Name field, (14) the System Script Library Description field, or (15) the CLI Settings Library Description field.
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๐จ CVE-2015-8261
The DroneDeleteOldMeasurements implementation in Ipswitch WhatsUp Gold before 16.4 does not properly validate serialized XML objects, which allows remote attackers to conduct SQL injection attacks via a crafted SOAP request.
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The DroneDeleteOldMeasurements implementation in Ipswitch WhatsUp Gold before 16.4 does not properly validate serialized XML objects, which allows remote attackers to conduct SQL injection attacks via a crafted SOAP request.
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๐จ CVE-2016-1000000
Ipswitch WhatsUp Gold 16.4.1 WrFreeFormText.asp sUniqueID Parameter Blind SQL Injection
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Ipswitch WhatsUp Gold 16.4.1 WrFreeFormText.asp sUniqueID Parameter Blind SQL Injection
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๐จ CVE-2018-5777
An issue was discovered in Ipswitch WhatsUp Gold before 2017 Plus SP1 (17.1.1). Remote clients can take advantage of a misconfiguration in the TFTP server that could allow attackers to execute arbitrary commands on the TFTP server via unspecified vectors.
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An issue was discovered in Ipswitch WhatsUp Gold before 2017 Plus SP1 (17.1.1). Remote clients can take advantage of a misconfiguration in the TFTP server that could allow attackers to execute arbitrary commands on the TFTP server via unspecified vectors.
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๐จ CVE-2018-5778
An issue was discovered in Ipswitch WhatsUp Gold before 2017 Plus SP1 (17.1.1). Multiple SQL injection vulnerabilities are present in the legacy .ASP pages, which could allow attackers to execute arbitrary SQL commands via unspecified vectors.
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An issue was discovered in Ipswitch WhatsUp Gold before 2017 Plus SP1 (17.1.1). Multiple SQL injection vulnerabilities are present in the legacy .ASP pages, which could allow attackers to execute arbitrary SQL commands via unspecified vectors.
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๐จ CVE-2018-8938
A Code Injection issue was discovered in DlgSelectMibFile.asp in Ipswitch WhatsUp Gold before 2018 (18.0). Malicious actors can inject a specially crafted SNMP MIB file that could allow them to execute arbitrary commands and code on the WhatsUp Gold server.
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A Code Injection issue was discovered in DlgSelectMibFile.asp in Ipswitch WhatsUp Gold before 2018 (18.0). Malicious actors can inject a specially crafted SNMP MIB file that could allow them to execute arbitrary commands and code on the WhatsUp Gold server.
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๐จ CVE-2018-8939
An SSRF issue was discovered in NmAPI.exe in Ipswitch WhatsUp Gold before 2018 (18.0). Malicious actors can submit specially crafted requests via the NmAPI executable to (1) gain unauthorized access to the WhatsUp Gold system, (2) obtain information about the WhatsUp Gold system, or (3) execute remote commands.
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An SSRF issue was discovered in NmAPI.exe in Ipswitch WhatsUp Gold before 2018 (18.0). Malicious actors can submit specially crafted requests via the NmAPI executable to (1) gain unauthorized access to the WhatsUp Gold system, (2) obtain information about the WhatsUp Gold system, or (3) execute remote commands.
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๐จ CVE-2022-29845
In Progress Ipswitch WhatsUp Gold 21.1.0 through 21.1.1, and 22.0.0, it is possible for an authenticated user to invoke an API transaction that would allow them to read the contents of a local file.
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In Progress Ipswitch WhatsUp Gold 21.1.0 through 21.1.1, and 22.0.0, it is possible for an authenticated user to invoke an API transaction that would allow them to read the contents of a local file.
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๐จ CVE-2022-29846
In Progress Ipswitch WhatsUp Gold 16.1 through 21.1.1, and 22.0.0, it is possible for an unauthenticated attacker to obtain the WhatsUp Gold installation serial number.
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In Progress Ipswitch WhatsUp Gold 16.1 through 21.1.1, and 22.0.0, it is possible for an unauthenticated attacker to obtain the WhatsUp Gold installation serial number.
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๐จ CVE-2022-29847
In Progress Ipswitch WhatsUp Gold 21.0.0 through 21.1.1, and 22.0.0, it is possible for an unauthenticated attacker to invoke an API transaction that would allow them to relay encrypted WhatsUp Gold user credentials to an arbitrary host.
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In Progress Ipswitch WhatsUp Gold 21.0.0 through 21.1.1, and 22.0.0, it is possible for an unauthenticated attacker to invoke an API transaction that would allow them to relay encrypted WhatsUp Gold user credentials to an arbitrary host.
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๐จ CVE-2022-29848
In Progress Ipswitch WhatsUp Gold 17.0.0 through 21.1.1, and 22.0.0, it is possible for an authenticated user to invoke an API transaction that would allow them to read sensitive operating-system attributes from a host that is accessible by the WhatsUp Gold system.
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In Progress Ipswitch WhatsUp Gold 17.0.0 through 21.1.1, and 22.0.0, it is possible for an authenticated user to invoke an API transaction that would allow them to read sensitive operating-system attributes from a host that is accessible by the WhatsUp Gold system.
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๐จ CVE-2024-37370
In MIT Kerberos 5 (aka krb5) before 1.21.3, an attacker can modify the plaintext Extra Count field of a confidential GSS krb5 wrap token, causing the unwrapped token to appear truncated to the application.
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In MIT Kerberos 5 (aka krb5) before 1.21.3, an attacker can modify the plaintext Extra Count field of a confidential GSS krb5 wrap token, causing the unwrapped token to appear truncated to the application.
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GitHub
Fix vulnerabilities in GSS message token handling ยท krb5/krb5@55fbf43
In gss_krb5int_unseal_token_v3() and gss_krb5int_unseal_v3_iov(),
verify the Extra Count field of CFX wrap tokens against the encrypted
header. Reported by Jacob Champion.
In gss_krb5int_unseal_t...
verify the Extra Count field of CFX wrap tokens against the encrypted
header. Reported by Jacob Champion.
In gss_krb5int_unseal_t...
๐จ CVE-2024-37371
In MIT Kerberos 5 (aka krb5) before 1.21.3, an attacker can cause invalid memory reads during GSS message token handling by sending message tokens with invalid length fields.
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In MIT Kerberos 5 (aka krb5) before 1.21.3, an attacker can cause invalid memory reads during GSS message token handling by sending message tokens with invalid length fields.
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GitHub
Fix vulnerabilities in GSS message token handling ยท krb5/krb5@55fbf43
In gss_krb5int_unseal_token_v3() and gss_krb5int_unseal_v3_iov(),
verify the Extra Count field of CFX wrap tokens against the encrypted
header. Reported by Jacob Champion.
In gss_krb5int_unseal_t...
verify the Extra Count field of CFX wrap tokens against the encrypted
header. Reported by Jacob Champion.
In gss_krb5int_unseal_t...
๐จ CVE-2024-39428
In trusty service, there is a possible out of bounds write due to a missing bounds check. This could lead to local denial of service with System execution privileges needed
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In trusty service, there is a possible out of bounds write due to a missing bounds check. This could lead to local denial of service with System execution privileges needed
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๐จ CVE-2022-34269
An issue was discovered in RWS WorldServer before 11.7.3. An authenticated, remote attacker can perform a ws-legacy/load_dtd?system_id= blind SSRF attack to deploy JSP code to the Apache Axis service running on the localhost interface, leading to command execution.
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An issue was discovered in RWS WorldServer before 11.7.3. An authenticated, remote attacker can perform a ws-legacy/load_dtd?system_id= blind SSRF attack to deploy JSP code to the Apache Axis service running on the localhost interface, leading to command execution.
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๐จ CVE-2024-0258
The issue was addressed with improved memory handling. This issue is fixed in tvOS 17.4, iOS 17.4 and iPadOS 17.4, macOS Sonoma 14.4, watchOS 10.4. An app may be able to execute arbitrary code out of its sandbox or with certain elevated privileges.
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The issue was addressed with improved memory handling. This issue is fixed in tvOS 17.4, iOS 17.4 and iPadOS 17.4, macOS Sonoma 14.4, watchOS 10.4. An app may be able to execute arbitrary code out of its sandbox or with certain elevated privileges.
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seclists.org
Full Disclosure: APPLE-SA-03-07-2024-2 macOS Sonoma 14.4
๐จ CVE-2024-0045
In smp_proc_sec_req of smp_act.cc, there is a possible out of bounds read due to improper input validation. This could lead to remote (proximal/adjacent) information disclosure with no additional execution privileges needed. User interaction is not needed for exploitation.
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In smp_proc_sec_req of smp_act.cc, there is a possible out of bounds read due to improper input validation. This could lead to remote (proximal/adjacent) information disclosure with no additional execution privileges needed. User interaction is not needed for exploitation.
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๐จ CVE-2019-19049
A memory leak in the unittest_data_add() function in drivers/of/unittest.c in the Linux kernel before 5.3.10 allows attackers to cause a denial of service (memory consumption) by triggering of_fdt_unflatten_tree() failures, aka CID-e13de8fe0d6a. NOTE: third parties dispute the relevance of this because unittest.c can only be reached during boot
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A memory leak in the unittest_data_add() function in drivers/of/unittest.c in the Linux kernel before 5.3.10 allows attackers to cause a denial of service (memory consumption) by triggering of_fdt_unflatten_tree() failures, aka CID-e13de8fe0d6a. NOTE: third parties dispute the relevance of this because unittest.c can only be reached during boot
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