← Back

Debian Linux

debian_linux

Vendor: Debian • 10,002 CVEs

CVEs (10,002)

CVE
VENDORS
PRODUCTS
UPDATED
PUBLISHED
CVSS
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
5.5 MEDIUM· v3
4.3 MEDIUM· v2
A reachable assertion in the lookup1_values function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service by opening a crafted Ogg Vorbis file.
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
7.1 HIGH· v3
5.8 MEDIUM· v2
An out-of-bounds read of a global buffer in the draw_line function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service or disclose sensitive information by opening a crafted Ogg Vorbis file.
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
7.8 HIGH· v3
6.8 MEDIUM· v2
A stack buffer overflow in the compute_codewords function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service or execute arbitrary code by opening a crafted Ogg Vorbis file.
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
7.1 HIGH· v3
5.8 MEDIUM· v2
Use of uninitialized stack variables in the start_decoder function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service or disclose sensitive information by opening a crafted Ogg Vorbis file.
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
5.5 MEDIUM· v3
4.3 MEDIUM· v2
A NULL pointer dereference in the get_window function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service by opening a crafted Ogg Vorbis file.
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
5.5 MEDIUM· v3
4.3 MEDIUM· v2
Division by zero in the predict_point function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service by opening a crafted Ogg Vorbis file.
2Debian
Stb Vorbis Project
2Debian Linux
Stb Vorbis
Jun 17, 2026
Aug 15, 2019
N/A· v4
7.8 HIGH· v3
6.8 MEDIUM· v2
A heap buffer overflow in the start_decoder function in stb_vorbis through 2019-03-04 allows an attacker to cause a denial of service or execute arbitrary code by opening a crafted Ogg Vorbis file.
5Canonical
DebianFedoraproject+2 more
5Debian Linux
FedoraLeap+2 more
Jun 17, 2026
Aug 15, 2019
N/A· v4
7.5 HIGH· v3
5.0 MEDIUM· v2
Due to incorrect string termination, Squid cachemgr.cgi 4.0 through 4.7 may access unallocated memory. On systems with memory access protections, this can cause the CGI process to terminate unexpectedly, resulting in a d...Show more
Due to incorrect string termination, Squid cachemgr.cgi 4.0 through 4.7 may access unallocated memory. On systems with memory access protections, this can cause the CGI process to terminate unexpectedly, resulting in a denial of service for all clients using it.Show less
2Debian
Gonicus
2Debian Linux
Gosa
Jun 17, 2026
Aug 15, 2019
N/A· v4
9.8 CRITICAL· v3
7.5 HIGH· v2
Incorrect Access Control in the LDAP class of GONICUS GOsa through 2019-04-11 allows an attacker to log into any account with a username containing the case-insensitive substring "success" when an arbitrary password is p...Show more
Incorrect Access Control in the LDAP class of GONICUS GOsa through 2019-04-11 allows an attacker to log into any account with a username containing the case-insensitive substring "success" when an arbitrary password is provided.Show less
7Apple
CanonicalDebian+4 more
147Alp Al00b Firmware
AndroidAres Al00b Firmware+144 more
Jun 17, 2026
Aug 14, 2019
N/A· v4
8.1 HIGH· v3
4.8 MEDIUM· v2
The Bluetooth BR/EDR specification up to and including version 5.1 permits sufficiently low encryption key length and does not prevent an attacker from influencing the key length negotiation. This allows practical brute-...Show more
The Bluetooth BR/EDR specification up to and including version 5.1 permits sufficiently low encryption key length and does not prevent an attacker from influencing the key length negotiation. This allows practical brute-force attacks (aka "KNOB") that can decrypt traffic and inject arbitrary ciphertext without the victim noticing.Show less
4Debian
FedoraprojectLibtiff+1 more
4Debian Linux
FedoraLeap+1 more
Jun 17, 2026
Aug 14, 2019
N/A· v4
6.5 MEDIUM· v3
4.3 MEDIUM· v2
_TIFFCheckMalloc and _TIFFCheckRealloc in tif_aux.c in LibTIFF through 4.0.10 mishandle Integer Overflow checks because they rely on compiler behavior that is undefined by the applicable C standards. This can, for exampl...Show more
_TIFFCheckMalloc and _TIFFCheckRealloc in tif_aux.c in LibTIFF through 4.0.10 mishandle Integer Overflow checks because they rely on compiler behavior that is undefined by the applicable C standards. This can, for example, lead to an application crash.Show less
11Apache
AppleCanonical+8 more
18Debian Linux
Diskstation ManagerEnterprise Linux+15 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to a flood of empty frames, potentially leading to a denial of service. The attacker sends a stream of frames with an empty payload and without the end-of-stream flag. These fra...Show more
Some HTTP/2 implementations are vulnerable to a flood of empty frames, potentially leading to a denial of service. The attacker sends a stream of frames with an empty payload and without the end-of-stream flag. These frames can be DATA, HEADERS, CONTINUATION and/or PUSH_PROMISE. The peer spends time processing each frame disproportionate to attack bandwidth. This can consume excess CPU.Show less
12Apache
AppleCanonical+9 more
23Clustered Data Ontap
Communications Element ManagerDebian Linux+20 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to unconstrained interal data buffering, potentially leading to a denial of service. The attacker opens the HTTP/2 window so the peer can send without constraint; however, they...Show more
Some HTTP/2 implementations are vulnerable to unconstrained interal data buffering, potentially leading to a denial of service. The attacker opens the HTTP/2 window so the peer can send without constraint; however, they leave the TCP window closed so the peer cannot actually write (many of) the bytes on the wire. The attacker then sends a stream of requests for a large response object. Depending on how the servers queue the responses, this can consume excess memory, CPU, or both.Show less
12Apache
AppleCanonical+9 more
19Debian Linux
Diskstation ManagerEnterprise Linux+16 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
6.5 MEDIUM· v3
6.8 MEDIUM· v2
Some HTTP/2 implementations are vulnerable to a header leak, potentially leading to a denial of service. The attacker sends a stream of headers with a 0-length header name and 0-length header value, optionally Huffman en...Show more
Some HTTP/2 implementations are vulnerable to a header leak, potentially leading to a denial of service. The attacker sends a stream of headers with a 0-length header name and 0-length header value, optionally Huffman encoded into 1-byte or greater headers. Some implementations allocate memory for these headers and keep the allocation alive until the session dies. This can consume excess memory.Show less
12Apache
AppleCanonical+9 more
22Big Ip Local Traffic Manager
Debian LinuxDiskstation Manager+19 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to a settings flood, potentially leading to a denial of service. The attacker sends a stream of SETTINGS frames to the peer. Since the RFC requires that the peer reply with one...Show more
Some HTTP/2 implementations are vulnerable to a settings flood, potentially leading to a denial of service. The attacker sends a stream of SETTINGS frames to the peer. Since the RFC requires that the peer reply with one acknowledgement per SETTINGS frame, an empty SETTINGS frame is almost equivalent in behavior to a ping. Depending on how efficiently this data is queued, this can consume excess CPU, memory, or both.Show less
13Apache
AppleCanonical+10 more
28Big Ip Local Traffic Manager
Cloud InsightsDebian Linux+25 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to a reset flood, potentially leading to a denial of service. The attacker opens a number of streams and sends an invalid request over each stream that should solicit a stream o...Show more
Some HTTP/2 implementations are vulnerable to a reset flood, potentially leading to a denial of service. The attacker opens a number of streams and sends an invalid request over each stream that should solicit a stream of RST_STREAM frames from the peer. Depending on how the peer queues the RST_STREAM frames, this can consume excess memory, CPU, or both.Show less
12Apache
AppleCanonical+9 more
20Debian Linux
Diskstation ManagerEnterprise Communications Broker+17 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to resource loops, potentially leading to a denial of service. The attacker creates multiple request streams and continually shuffles the priority of the streams in a way that c...Show more
Some HTTP/2 implementations are vulnerable to resource loops, potentially leading to a denial of service. The attacker creates multiple request streams and continually shuffles the priority of the streams in a way that causes substantial churn to the priority tree. This can consume excess CPU.Show less
4Apache
AppleDebian+1 more
4Debian Linux
Node.jsSwiftnio+1 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to ping floods, potentially leading to a denial of service. The attacker sends continual pings to an HTTP/2 peer, causing the peer to build an internal queue of responses. Depen...Show more
Some HTTP/2 implementations are vulnerable to ping floods, potentially leading to a denial of service. The attacker sends continual pings to an HTTP/2 peer, causing the peer to build an internal queue of responses. Depending on how efficiently this data is queued, this can consume excess CPU, memory, or both.Show less
12Apache
AppleCanonical+9 more
20Debian Linux
Diskstation ManagerEnterprise Communications Broker+17 more
Jun 17, 2026
Aug 13, 2019
N/A· v4
7.5 HIGH· v3
7.8 HIGH· v2
Some HTTP/2 implementations are vulnerable to window size manipulation and stream prioritization manipulation, potentially leading to a denial of service. The attacker requests a large amount of data from a specified res...Show more
Some HTTP/2 implementations are vulnerable to window size manipulation and stream prioritization manipulation, potentially leading to a denial of service. The attacker requests a large amount of data from a specified resource over multiple streams. They manipulate window size and stream priority to force the server to queue the data in 1-byte chunks. Depending on how efficiently this data is queued, this can consume excess CPU, memory, or both.Show less
2Debian
Golang
2Debian Linux
Go
Jun 17, 2026
Aug 13, 2019
N/A· v4
9.8 CRITICAL· v3
7.5 HIGH· v2
net/url in Go before 1.11.13 and 1.12.x before 1.12.8 mishandles malformed hosts in URLs, leading to an authorization bypass in some applications. This is related to a Host field with a suffix appearing in neither Hostna...Show more
net/url in Go before 1.11.13 and 1.12.x before 1.12.8 mishandles malformed hosts in URLs, leading to an authorization bypass in some applications. This is related to a Host field with a suffix appearing in neither Hostname() nor Port(), and is related to a non-numeric port number. For example, an attacker can compose a crafted javascript:// URL that results in a hostname of google.com.Show less