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CVE archive

July 2017

Browse CVE records published in July 2017, with severity, affected products, CWE, KEV, and source-backed vulnerability context.

Showing 50 of 1427 matching CVEs · Page 10 of 29.

Unknown · CVSS Not scored

CVE-2017-1000003: ATutor versions 2.2.1 and earlier are vulnerable to an incorrect access control check vulnerability in the...

ATutor versions 2.2.1 and earlier are vulnerable to an incorrect access control check vulnerability in the Social Application component resulting in privilege escalation. ATutor versions 2.2.1 and earlier are vulnerable to an incorrect access control check vulnerability in the Module component resulting in privilege escalation. ATutor versions 2.2.1 and earlier are vulnerable to a incorrect access control check vulnerability in the Alternative Content component resulting in privilege escalation.

Published Jul 13, 2017 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-1000006: Plotly, Inc.

Plotly, Inc. plotly.js versions prior to 1.16.0 are vulnerable to an XSS issue.

Published Jul 13, 2017 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-1000002: ATutor versions 2.2.1 and earlier are vulnerable to a directory traversal and file extension check bypass i...

ATutor versions 2.2.1 and earlier are vulnerable to a directory traversal and file extension check bypass in the Course component resulting in code execution. ATutor versions 2.2.1 and earlier are vulnerable to a directory traversal vulnerability in the Course Icon component resulting in information disclosure.

Published Jul 13, 2017 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-1000004: ATutor version 2.2.1 and earlier are vulnerable to a SQL injection in the Assignment Dropbox, BasicLTI, Blo...

ATutor version 2.2.1 and earlier are vulnerable to a SQL injection in the Assignment Dropbox, BasicLTI, Blog Post, Blog, Group Course Email, Course Alumni, Course Enrolment, Group Membership, Course unenrolment, Course Enrolment List Search, Glossary, Social Group Member Search, Social Friend Search, Social Group Search, File Comment, Gradebook Test Title, User Group Membership, Inbox/Sent Items, Sent Messages, Links, Photo Album, Poll, Social Application, Social Profile, Test, Content Menu, Auto-Login, and Gradebook components resulting in information disclosure, database modification, or potential code execution.

Published Jul 13, 2017 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-18344: The timer_create syscall implementation in kernel/time/posix-timers.c in the Linux kernel before 4.14.8 doe...

The timer_create syscall implementation in kernel/time/posix-timers.c in the Linux kernel before 4.14.8 doesn't properly validate the sigevent->sigev_notify field, which leads to out-of-bounds access in the show_timer function (called when /proc/$PID/timers is read). This allows userspace applications to read arbitrary kernel memory (on a kernel built with CONFIG_POSIX_TIMERS and CONFIG_CHECKPOINT_RESTORE).

Published Jul 26, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-18343: The debug handler in Symfony before v2.7.33, 2.8.x before v2.8.26, 3.x before v3.2.13, and 3.3.x before v3....

The debug handler in Symfony before v2.7.33, 2.8.x before v2.8.26, 3.x before v3.2.13, and 3.3.x before v3.3.6 has XSS via an array key during exception pretty printing in ExceptionHandler.php, as demonstrated by a /_debugbar/open?op=get URI. NOTE: the vendor's position is that this is not a vulnerability because the debug tools are not intended for production use. NOTE: the Symfony Debug component is used by Laravel Debugbar

Published Jul 20, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-17707: Due to missing authorization checks, any authenticated user is able to list, upload, or delete attachments...

Due to missing authorization checks, any authenticated user is able to list, upload, or delete attachments to password safe entries in Pleasant Password Server before 7.8.3. To perform those actions on an entry, the user needs to know the corresponding "CredentialId" value, which uniquely identifies a password safe entry. Since "CredentialId" values are implemented as GUIDs, they are hard to guess. However, if for example an entry's owner grants read-only access to a malicious user, the value gets exposed to the malicious user. The same holds true for temporary grants.

Published Jul 31, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-17316: Huawei DP300 V500R002C00; RP200 V500R002C00; V600R006C00; TE30 V100R001C10; V500R002C00; V600R006C00; TE40...

Huawei DP300 V500R002C00; RP200 V500R002C00; V600R006C00; TE30 V100R001C10; V500R002C00; V600R006C00; TE40 V500R002C00; V600R006C00; TE50 V500R002C00; V600R006C00; TE60 V100R001C10; V500R002C00; V600R006C00 have an out-of-bounds read vulnerability. An unauthenticated, remote attacker has to control the peer device and craft the Signalling Connection Control Part (SCCP) messages to the target devices. Due to insufficient input validation of some values in the messages, successful exploit will cause out-of-bounds read and some services abnormal.

Published Jul 2, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-17317: Common Open Policy Service Protocol (COPS) module in Huawei USG6300 V100R001C10; V100R001C20; V100R001C30;...

Common Open Policy Service Protocol (COPS) module in Huawei USG6300 V100R001C10; V100R001C20; V100R001C30; V500R001C00; V500R001C20; V500R001C30; V500R001C50; Secospace USG6500 V100R001C10; V100R001C20; V100R001C30; V500R001C00; V500R001C20; V500R001C30; V500R001C50; Secospace USG6600 V100R001C00; V100R001C20; V100R001C30; V500R001C00; V500R001C20; V500R001C30; V500R001C50; TE30 V100R001C02; V100R001C10; V500R002C00; V600R006C00; TE40 V500R002C00; V600R006C00; TE50 V500R002C00; V600R006C00; TE60 V100R001C01; V100R001C10; V500R002C00; V600R006C00 has a buffer overflow vulnerability. An unauthenticated, remote attacker has to control the peer device and send specially crafted message to the affected products. Due to insufficient input validation, successful exploit may cause some services abnormal.

Published Jul 2, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-17175: Short Message Service (SMS) module of Mate 9 Pro Huawei smart phones with the versions before LON-AL00B 8.0...

Short Message Service (SMS) module of Mate 9 Pro Huawei smart phones with the versions before LON-AL00B 8.0.0.354(C00) has a Denial of Service (DoS) vulnerability. An unauthenticated attacker may set up a pseudo base station, and send special malware text message to the phone, causing the mobile phone to fail to make calls and send and receive text messages.

Published Jul 2, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-17174: Some Huawei products RSE6500 V500R002C00; SoftCo V200R003C20SPCb00; VP9660 V600R006C10; eSpace U1981 V100R0...

Some Huawei products RSE6500 V500R002C00; SoftCo V200R003C20SPCb00; VP9660 V600R006C10; eSpace U1981 V100R001C20; V200R003C20; V200R003C30; V200R003C50 have a weak algorithm vulnerability. To exploit the vulnerability, a remote, unauthenticated attacker has to capture TLS traffic between clients and the affected products. The attacker may launch the Bleichenbacher attack on RSA key exchange to decrypt the session key and the previously captured sessions by some cryptanalytic operations. Successful exploit may cause information leak.

Published Jul 31, 2018 · Updated Aug 5, 2024

Medium · CVSS 6.5

CVE-2017-15125: A flaw was found in CloudForms before 5.9.0.22 in the self-service UI snapshot feature where the name field...

A flaw was found in CloudForms before 5.9.0.22 in the self-service UI snapshot feature where the name field is not properly sanitized for HTML and JavaScript input. An attacker could use this flaw to execute a stored XSS attack on an application administrator using CloudForms. Please note that CSP (Content Security Policy) prevents exploitation of this XSS however not all browsers support CSP.

Published Jul 27, 2018 · Updated Aug 5, 2024

Medium · CVSS 5.8

CVE-2017-15119: The Network Block Device (NBD) server in Quick Emulator (QEMU) before 2.11 is vulnerable to a denial of ser...

The Network Block Device (NBD) server in Quick Emulator (QEMU) before 2.11 is vulnerable to a denial of service issue. It could occur if a client sent large option requests, making the server waste CPU time on reading up to 4GB per request. A client could use this flaw to keep the NBD server from serving other requests, resulting in DoS.

Published Jul 27, 2018 · Updated Aug 5, 2024

High · CVSS 8.3

CVE-2017-15118: A stack-based buffer overflow vulnerability was found in NBD server implementation in qemu before 2.11 allo...

A stack-based buffer overflow vulnerability was found in NBD server implementation in qemu before 2.11 allowing a client to request an export name of size up to 4096 bytes, which in fact should be limited to 256 bytes, causing an out-of-bounds stack write in the qemu process. If NBD server requires TLS, the attacker cannot trigger the buffer overflow without first successfully negotiating TLS.

Published Jul 27, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-14710: The Shein Group Ltd.

The Shein Group Ltd. "SHEIN - Fashion Shopping" app -- aka shein fashion-shopping/id878577184 -- for iOS does not verify X.509 certificates from SSL servers, which allows man-in-the-middle attackers to spoof servers and obtain sensitive information via a crafted certificate.

Published Jul 12, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13719: The Amcrest IPM-721S Amcrest_IPC-AWXX_Eng_N_V2.420.AC00.17.R.20170322 allows HTTP requests that permit enab...

The Amcrest IPM-721S Amcrest_IPC-AWXX_Eng_N_V2.420.AC00.17.R.20170322 allows HTTP requests that permit enabling various functionalities of the camera by using HTTP APIs, instead of the web management interface that is provided by the application. This HTTP API receives the credentials as base64 encoded in the Authorization HTTP header. However, a missing length check in the code allows an attacker to send a string of 1024 characters in the password field, and allows an attacker to exploit a memory corruption issue. This can allow an attacker to circumvent the account protection mechanism and brute force the credentials. If the firmware version Amcrest_IPC-AWXX_Eng_N_V2.420.AC00.17.R.20170322 is dissected using the binwalk tool, one obtains a _user-x.squashfs.img.extracted archive which contains the filesystem set up on the device that has many of the binaries in the /usr folder. The binary "sonia" is the one that has the vulnerable function that performs the credential check in the binary for the HTTP API specification. If we open this binary in IDA Pro we will notice that this follows an ARM little-endian format. The function at address 00415364 in IDA Pro starts the HTTP authentication process. This function calls another function at sub_ 0042CCA0 at address 0041549C. This function performs a strchr operation after base64 decoding the credentials, and stores the result on the stack, which results in a stack-based buffer overflow.

Published Jul 3, 2019 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13094: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including modification of the encryption key and insertion of hardware trojans in any IP

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of the encryption key and insertion of hardware trojans in any IP. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13092: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including improperly specified HDL syntax allows use of an EDA tool as a decryption oracle

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including improperly specified HDL syntax allows use of an EDA tool as a decryption oracle. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13093: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including modification of encrypted IP cyphertext to insert hardware trojans

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of encrypted IP cyphertext to insert hardware trojans. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13091: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including improperly specified padding in CBC mode allows use of an EDA tool as a decryption oracle

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including improperly specified padding in CBC mode allows use of an EDA tool as a decryption oracle. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13096: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including modification of Rights Block to remove or relax access control

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of Rights Block to remove or relax access control. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13097: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including modification of Rights Block to remove or relax license requirement

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of Rights Block to remove or relax license requirement. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024

Unknown · CVSS Not scored

CVE-2017-13095: The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), including modification of a license-deny response to a license grant

The P1735 IEEE standard describes flawed methods for encrypting electronic-design intellectual property (IP), as well as the management of access rights for such IP, including modification of a license-deny response to a license grant. The methods are flawed and, in the most egregious cases, enable attack vectors that allow recovery of the entire underlying plaintext IP. Implementations of IEEE P1735 may be weak to cryptographic attacks that allow an attacker to obtain plaintext intellectual property without the key, among other impacts.

Published Jul 13, 2018 · Updated Aug 5, 2024