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Количество 84

Количество 84

oracle-oval логотип

ELSA-2023-12326

больше 3 лет назад

ELSA-2023-12326: openssl security update (IMPORTANT)

EPSS: Средний
oracle-oval логотип

ELSA-2023-12297

больше 3 лет назад

ELSA-2023-12297: openssl security update (IMPORTANT)

EPSS: Средний
oracle-oval логотип

ELSA-2023-12210

больше 3 лет назад

ELSA-2023-12210: openssl security update (IMPORTANT)

EPSS: Средний
oracle-oval логотип

ELSA-2023-12205

больше 3 лет назад

ELSA-2023-12205: openssl security update (IMPORTANT)

EPSS: Средний
fstec логотип

BDU:2023-00665

больше 3 лет назад

Уязвимость функции GENERAL_NAME_cmp библиотеки OpenSSL, позволяющая нарушителю вызвать отказ в обслуживании

CVSS3: 7.4
EPSS: Средний
altlinux логотип

ALT-PU-2023-6515

почти 3 года назад

ALT-PU-2023-6515: package `sssd` update to version 2.9.2-alt1

CVSS3: 7.4
EPSS: Средний
altlinux логотип

ALT-PU-2023-6187

почти 3 года назад

ALT-PU-2023-6187: package `sssd` update to version 2.9.2-alt1

CVSS3: 7.4
EPSS: Средний
altlinux логотип

ALT-PU-2023-1221

больше 3 лет назад

ALT-PU-2023-1221: package `LibreSSL` update to version 3.6.2-alt1

CVSS3: 7.4
EPSS: Средний
ubuntu логотип

CVE-2023-0215

больше 3 лет назад

The public API function BIO_new_NDEF is a helper function used for streaming ASN.1 data via a BIO. It is primarily used internally to OpenSSL to support the SMIME, CMS and PKCS7 streaming capabilities, but may also be called directly by end user applications. The function receives a BIO from the caller, prepends a new BIO_f_asn1 filter BIO onto the front of it to form a BIO chain, and then returns the new head of the BIO chain to the caller. Under certain conditions, for example if a CMS recipient public key is invalid, the new filter BIO is freed and the function returns a NULL result indicating a failure. However, in this case, the BIO chain is not properly cleaned up and the BIO passed by the caller still retains internal pointers to the previously freed filter BIO. If the caller then goes on to call BIO_pop() on the BIO then a use-after-free will occur. This will most likely result in a crash. This scenario occurs directly in the internal function B64_write_ASN1() which may caus...

CVSS3: 7.5
EPSS: Низкий
redhat логотип

CVE-2023-0215

больше 3 лет назад

The public API function BIO_new_NDEF is a helper function used for streaming ASN.1 data via a BIO. It is primarily used internally to OpenSSL to support the SMIME, CMS and PKCS7 streaming capabilities, but may also be called directly by end user applications. The function receives a BIO from the caller, prepends a new BIO_f_asn1 filter BIO onto the front of it to form a BIO chain, and then returns the new head of the BIO chain to the caller. Under certain conditions, for example if a CMS recipient public key is invalid, the new filter BIO is freed and the function returns a NULL result indicating a failure. However, in this case, the BIO chain is not properly cleaned up and the BIO passed by the caller still retains internal pointers to the previously freed filter BIO. If the caller then goes on to call BIO_pop() on the BIO then a use-after-free will occur. This will most likely result in a crash. This scenario occurs directly in the internal function B64_write_ASN1() which may caus...

CVSS3: 7.5
EPSS: Низкий
nvd логотип

CVE-2023-0215

больше 3 лет назад

The public API function BIO_new_NDEF is a helper function used for streaming ASN.1 data via a BIO. It is primarily used internally to OpenSSL to support the SMIME, CMS and PKCS7 streaming capabilities, but may also be called directly by end user applications. The function receives a BIO from the caller, prepends a new BIO_f_asn1 filter BIO onto the front of it to form a BIO chain, and then returns the new head of the BIO chain to the caller. Under certain conditions, for example if a CMS recipient public key is invalid, the new filter BIO is freed and the function returns a NULL result indicating a failure. However, in this case, the BIO chain is not properly cleaned up and the BIO passed by the caller still retains internal pointers to the previously freed filter BIO. If the caller then goes on to call BIO_pop() on the BIO then a use-after-free will occur. This will most likely result in a crash. This scenario occurs directly in the internal function B64_write_ASN1() which may cau

CVSS3: 7.5
EPSS: Низкий
msrc логотип

CVE-2023-0215

около 2 месяцев назад

Use-after-free following BIO_new_NDEF

CVSS3: 7.5
EPSS: Низкий
debian логотип

CVE-2023-0215

больше 3 лет назад

The public API function BIO_new_NDEF is a helper function used for str ...

CVSS3: 7.5
EPSS: Низкий
redos логотип

ROS-20230620-06

больше 3 лет назад

Множественные уязвимости python3-cryptography

CVSS3: 9.1
EPSS: Низкий
github логотип

GHSA-r7jw-wp68-3xch

больше 3 лет назад

openssl-src vulnerable to Use-after-free following `BIO_new_NDEF`

CVSS3: 7.5
EPSS: Низкий
altlinux логотип

ALT-PU-2023-4398

около 3 лет назад

ALT-PU-2023-4398: package `LibreSSL` update to version 3.7.3-alt1

CVSS3: 9.8
EPSS: Низкий
altlinux логотип

ALT-PU-2024-2511

больше 2 лет назад

ALT-PU-2024-2511: package `python3` update to version 3.9.18-alt1

CVSS3: 9.8
EPSS: Низкий
ubuntu логотип

CVE-2022-4450

больше 3 лет назад

The function PEM_read_bio_ex() reads a PEM file from a BIO and parses and decodes the "name" (e.g. "CERTIFICATE"), any header data and the payload data. If the function succeeds then the "name_out", "header" and "data" arguments are populated with pointers to buffers containing the relevant decoded data. The caller is responsible for freeing those buffers. It is possible to construct a PEM file that results in 0 bytes of payload data. In this case PEM_read_bio_ex() will return a failure code but will populate the header argument with a pointer to a buffer that has already been freed. If the caller also frees this buffer then a double free will occur. This will most likely lead to a crash. This could be exploited by an attacker who has the ability to supply malicious PEM files for parsing to achieve a denial of service attack. The functions PEM_read_bio() and PEM_read() are simple wrappers around PEM_read_bio_ex() and therefore these functions are also directly affected. These functi...

CVSS3: 7.5
EPSS: Средний
redhat логотип

CVE-2022-4450

больше 3 лет назад

The function PEM_read_bio_ex() reads a PEM file from a BIO and parses and decodes the "name" (e.g. "CERTIFICATE"), any header data and the payload data. If the function succeeds then the "name_out", "header" and "data" arguments are populated with pointers to buffers containing the relevant decoded data. The caller is responsible for freeing those buffers. It is possible to construct a PEM file that results in 0 bytes of payload data. In this case PEM_read_bio_ex() will return a failure code but will populate the header argument with a pointer to a buffer that has already been freed. If the caller also frees this buffer then a double free will occur. This will most likely lead to a crash. This could be exploited by an attacker who has the ability to supply malicious PEM files for parsing to achieve a denial of service attack. The functions PEM_read_bio() and PEM_read() are simple wrappers around PEM_read_bio_ex() and therefore these functions are also directly affected. These functi...

CVSS3: 7.5
EPSS: Средний
nvd логотип

CVE-2022-4450

больше 3 лет назад

The function PEM_read_bio_ex() reads a PEM file from a BIO and parses and decodes the "name" (e.g. "CERTIFICATE"), any header data and the payload data. If the function succeeds then the "name_out", "header" and "data" arguments are populated with pointers to buffers containing the relevant decoded data. The caller is responsible for freeing those buffers. It is possible to construct a PEM file that results in 0 bytes of payload data. In this case PEM_read_bio_ex() will return a failure code but will populate the header argument with a pointer to a buffer that has already been freed. If the caller also frees this buffer then a double free will occur. This will most likely lead to a crash. This could be exploited by an attacker who has the ability to supply malicious PEM files for parsing to achieve a denial of service attack. The functions PEM_read_bio() and PEM_read() are simple wrappers around PEM_read_bio_ex() and therefore these functions are also directly affected. These functio

CVSS3: 7.5
EPSS: Средний

Уязвимостей на страницу

Уязвимость
CVSS
EPSS
Опубликовано
oracle-oval логотип
ELSA-2023-12326

ELSA-2023-12326: openssl security update (IMPORTANT)

60%
Средний
больше 3 лет назад
oracle-oval логотип
ELSA-2023-12297

ELSA-2023-12297: openssl security update (IMPORTANT)

60%
Средний
больше 3 лет назад
oracle-oval логотип
ELSA-2023-12210

ELSA-2023-12210: openssl security update (IMPORTANT)

60%
Средний
больше 3 лет назад
oracle-oval логотип
ELSA-2023-12205

ELSA-2023-12205: openssl security update (IMPORTANT)

60%
Средний
больше 3 лет назад
fstec логотип
BDU:2023-00665

Уязвимость функции GENERAL_NAME_cmp библиотеки OpenSSL, позволяющая нарушителю вызвать отказ в обслуживании

CVSS3: 7.4
60%
Средний
больше 3 лет назад
altlinux логотип
ALT-PU-2023-6515

ALT-PU-2023-6515: package `sssd` update to version 2.9.2-alt1

CVSS3: 7.4
60%
Средний
почти 3 года назад
altlinux логотип
ALT-PU-2023-6187

ALT-PU-2023-6187: package `sssd` update to version 2.9.2-alt1

CVSS3: 7.4
60%
Средний
почти 3 года назад
altlinux логотип
ALT-PU-2023-1221

ALT-PU-2023-1221: package `LibreSSL` update to version 3.6.2-alt1

CVSS3: 7.4
60%
Средний
больше 3 лет назад
ubuntu логотип
CVE-2023-0215

The public API function BIO_new_NDEF is a helper function used for streaming ASN.1 data via a BIO. It is primarily used internally to OpenSSL to support the SMIME, CMS and PKCS7 streaming capabilities, but may also be called directly by end user applications. The function receives a BIO from the caller, prepends a new BIO_f_asn1 filter BIO onto the front of it to form a BIO chain, and then returns the new head of the BIO chain to the caller. Under certain conditions, for example if a CMS recipient public key is invalid, the new filter BIO is freed and the function returns a NULL result indicating a failure. However, in this case, the BIO chain is not properly cleaned up and the BIO passed by the caller still retains internal pointers to the previously freed filter BIO. If the caller then goes on to call BIO_pop() on the BIO then a use-after-free will occur. This will most likely result in a crash. This scenario occurs directly in the internal function B64_write_ASN1() which may caus...

CVSS3: 7.5
4%
Низкий
больше 3 лет назад
redhat логотип
CVE-2023-0215

The public API function BIO_new_NDEF is a helper function used for streaming ASN.1 data via a BIO. It is primarily used internally to OpenSSL to support the SMIME, CMS and PKCS7 streaming capabilities, but may also be called directly by end user applications. The function receives a BIO from the caller, prepends a new BIO_f_asn1 filter BIO onto the front of it to form a BIO chain, and then returns the new head of the BIO chain to the caller. Under certain conditions, for example if a CMS recipient public key is invalid, the new filter BIO is freed and the function returns a NULL result indicating a failure. However, in this case, the BIO chain is not properly cleaned up and the BIO passed by the caller still retains internal pointers to the previously freed filter BIO. If the caller then goes on to call BIO_pop() on the BIO then a use-after-free will occur. This will most likely result in a crash. This scenario occurs directly in the internal function B64_write_ASN1() which may caus...

CVSS3: 7.5
4%
Низкий
больше 3 лет назад
nvd логотип
CVE-2023-0215

The public API function BIO_new_NDEF is a helper function used for streaming ASN.1 data via a BIO. It is primarily used internally to OpenSSL to support the SMIME, CMS and PKCS7 streaming capabilities, but may also be called directly by end user applications. The function receives a BIO from the caller, prepends a new BIO_f_asn1 filter BIO onto the front of it to form a BIO chain, and then returns the new head of the BIO chain to the caller. Under certain conditions, for example if a CMS recipient public key is invalid, the new filter BIO is freed and the function returns a NULL result indicating a failure. However, in this case, the BIO chain is not properly cleaned up and the BIO passed by the caller still retains internal pointers to the previously freed filter BIO. If the caller then goes on to call BIO_pop() on the BIO then a use-after-free will occur. This will most likely result in a crash. This scenario occurs directly in the internal function B64_write_ASN1() which may cau

CVSS3: 7.5
4%
Низкий
больше 3 лет назад
msrc логотип
CVE-2023-0215

Use-after-free following BIO_new_NDEF

CVSS3: 7.5
4%
Низкий
около 2 месяцев назад
debian логотип
CVE-2023-0215

The public API function BIO_new_NDEF is a helper function used for str ...

CVSS3: 7.5
4%
Низкий
больше 3 лет назад
redos логотип
ROS-20230620-06

Множественные уязвимости python3-cryptography

CVSS3: 9.1
больше 3 лет назад
github логотип
GHSA-r7jw-wp68-3xch

openssl-src vulnerable to Use-after-free following `BIO_new_NDEF`

CVSS3: 7.5
4%
Низкий
больше 3 лет назад
altlinux логотип
ALT-PU-2023-4398

ALT-PU-2023-4398: package `LibreSSL` update to version 3.7.3-alt1

CVSS3: 9.8
около 3 лет назад
altlinux логотип
ALT-PU-2024-2511

ALT-PU-2024-2511: package `python3` update to version 3.9.18-alt1

CVSS3: 9.8
больше 2 лет назад
ubuntu логотип
CVE-2022-4450

The function PEM_read_bio_ex() reads a PEM file from a BIO and parses and decodes the "name" (e.g. "CERTIFICATE"), any header data and the payload data. If the function succeeds then the "name_out", "header" and "data" arguments are populated with pointers to buffers containing the relevant decoded data. The caller is responsible for freeing those buffers. It is possible to construct a PEM file that results in 0 bytes of payload data. In this case PEM_read_bio_ex() will return a failure code but will populate the header argument with a pointer to a buffer that has already been freed. If the caller also frees this buffer then a double free will occur. This will most likely lead to a crash. This could be exploited by an attacker who has the ability to supply malicious PEM files for parsing to achieve a denial of service attack. The functions PEM_read_bio() and PEM_read() are simple wrappers around PEM_read_bio_ex() and therefore these functions are also directly affected. These functi...

CVSS3: 7.5
20%
Средний
больше 3 лет назад
redhat логотип
CVE-2022-4450

The function PEM_read_bio_ex() reads a PEM file from a BIO and parses and decodes the "name" (e.g. "CERTIFICATE"), any header data and the payload data. If the function succeeds then the "name_out", "header" and "data" arguments are populated with pointers to buffers containing the relevant decoded data. The caller is responsible for freeing those buffers. It is possible to construct a PEM file that results in 0 bytes of payload data. In this case PEM_read_bio_ex() will return a failure code but will populate the header argument with a pointer to a buffer that has already been freed. If the caller also frees this buffer then a double free will occur. This will most likely lead to a crash. This could be exploited by an attacker who has the ability to supply malicious PEM files for parsing to achieve a denial of service attack. The functions PEM_read_bio() and PEM_read() are simple wrappers around PEM_read_bio_ex() and therefore these functions are also directly affected. These functi...

CVSS3: 7.5
20%
Средний
больше 3 лет назад
nvd логотип
CVE-2022-4450

The function PEM_read_bio_ex() reads a PEM file from a BIO and parses and decodes the "name" (e.g. "CERTIFICATE"), any header data and the payload data. If the function succeeds then the "name_out", "header" and "data" arguments are populated with pointers to buffers containing the relevant decoded data. The caller is responsible for freeing those buffers. It is possible to construct a PEM file that results in 0 bytes of payload data. In this case PEM_read_bio_ex() will return a failure code but will populate the header argument with a pointer to a buffer that has already been freed. If the caller also frees this buffer then a double free will occur. This will most likely lead to a crash. This could be exploited by an attacker who has the ability to supply malicious PEM files for parsing to achieve a denial of service attack. The functions PEM_read_bio() and PEM_read() are simple wrappers around PEM_read_bio_ex() and therefore these functions are also directly affected. These functio

CVSS3: 7.5
20%
Средний
больше 3 лет назад

Уязвимостей на страницу