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Количество 16

Количество 16

ubuntu логотип

CVE-2024-49985

8 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
EPSS: Низкий
redhat логотип

CVE-2024-49985

8 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
EPSS: Низкий
nvd логотип

CVE-2024-49985

8 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
EPSS: Низкий
msrc логотип

CVE-2024-49985

7 месяцев назад

CVSS3: 5.5
EPSS: Низкий
debian логотип

CVE-2024-49985

8 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: i ...

CVSS3: 5.5
EPSS: Низкий
github логотип

GHSA-qfhj-q535-jf9w

8 месяцев назад

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
EPSS: Низкий
redos логотип

ROS-20250317-01

3 месяца назад

Множественные уязвимости kernel-lt

CVSS3: 8.8
EPSS: Низкий
oracle-oval логотип

ELSA-2024-12884

6 месяцев назад

ELSA-2024-12884: Unbreakable Enterprise kernel security update (IMPORTANT)

EPSS: Низкий
oracle-oval логотип

ELSA-2024-12887

6 месяцев назад

ELSA-2024-12887: Unbreakable Enterprise kernel security update (IMPORTANT)

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:4376-1

6 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:4315-1

6 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:3986-1

7 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:3984-1

7 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:4364-1

6 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:4387-1

6 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий
suse-cvrf логотип

SUSE-SU-2024:4318-1

6 месяцев назад

Security update for the Linux Kernel

EPSS: Низкий

Уязвимостей на страницу

Уязвимость
CVSS
EPSS
Опубликовано
ubuntu логотип
CVE-2024-49985

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
0%
Низкий
8 месяцев назад
redhat логотип
CVE-2024-49985

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
0%
Низкий
8 месяцев назад
nvd логотип
CVE-2024-49985

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
0%
Низкий
8 месяцев назад
msrc логотип
CVSS3: 5.5
0%
Низкий
7 месяцев назад
debian логотип
CVE-2024-49985

In the Linux kernel, the following vulnerability has been resolved: i ...

CVSS3: 5.5
0%
Низкий
8 месяцев назад
github логотип
GHSA-qfhj-q535-jf9w

In the Linux kernel, the following vulnerability has been resolved: i2c: stm32f7: Do not prepare/unprepare clock during runtime suspend/resume In case there is any sort of clock controller attached to this I2C bus controller, for example Versaclock or even an AIC32x4 I2C codec, then an I2C transfer triggered from the clock controller clk_ops .prepare callback may trigger a deadlock on drivers/clk/clk.c prepare_lock mutex. This is because the clock controller first grabs the prepare_lock mutex and then performs the prepare operation, including its I2C access. The I2C access resumes this I2C bus controller via .runtime_resume callback, which calls clk_prepare_enable(), which attempts to grab the prepare_lock mutex again and deadlocks. Since the clock are already prepared since probe() and unprepared in remove(), use simple clk_enable()/clk_disable() calls to enable and disable the clock on runtime suspend and resume, to avoid hitting the prepare_lock mutex.

CVSS3: 5.5
0%
Низкий
8 месяцев назад
redos логотип
ROS-20250317-01

Множественные уязвимости kernel-lt

CVSS3: 8.8
3 месяца назад
oracle-oval логотип
ELSA-2024-12884

ELSA-2024-12884: Unbreakable Enterprise kernel security update (IMPORTANT)

6 месяцев назад
oracle-oval логотип
ELSA-2024-12887

ELSA-2024-12887: Unbreakable Enterprise kernel security update (IMPORTANT)

6 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:4376-1

Security update for the Linux Kernel

6 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:4315-1

Security update for the Linux Kernel

6 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:3986-1

Security update for the Linux Kernel

7 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:3984-1

Security update for the Linux Kernel

7 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:4364-1

Security update for the Linux Kernel

6 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:4387-1

Security update for the Linux Kernel

6 месяцев назад
suse-cvrf логотип
SUSE-SU-2024:4318-1

Security update for the Linux Kernel

6 месяцев назад

Уязвимостей на страницу