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Searched refs:mutexes (Results 1 – 25 of 28) sorted by relevance

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/linux-6.12.1/drivers/reset/
Dreset-eyeq.c160 struct mutex mutexes[EQR_MAX_DOMAIN_COUNT]; member
190 lockdep_assert_held(&priv->mutexes[domain]); in eqr_busy_wait_locked()
249 lockdep_assert_held(&priv->mutexes[domain]); in eqr_assert_locked()
290 guard(mutex)(&priv->mutexes[domain]); in eqr_assert()
303 lockdep_assert_held(&priv->mutexes[domain]); in eqr_deassert_locked()
344 guard(mutex)(&priv->mutexes[domain]); in eqr_deassert()
360 guard(mutex)(&priv->mutexes[domain]); in eqr_status()
459 mutex_init(&priv->mutexes[i]); in eqr_probe()
/linux-6.12.1/tools/perf/util/
Dsharded_mutex.h18 struct mutex mutexes[]; member
26 return &sm->mutexes[hash_bits(hash, sm->cap_bits)]; in sharded_mutex__get_mutex()
Dsharded_mutex.c22 mutex_init(&result->mutexes[i]); in sharded_mutex__new()
30 mutex_destroy(&sm->mutexes[i]); in sharded_mutex__delete()
/linux-6.12.1/Documentation/locking/
Drt-mutex.rst5 RT-mutexes with priority inheritance are used to support PI-futexes,
16 RT-mutexes extend the semantics of simple mutexes by the priority
27 mutexes which protect shared resources. Priority inheritance is not a
40 RT-mutexes are optimized for fastpath operations and have no internal
Dmutex-design.rst9 What are mutexes?
12 In the Linux kernel, mutexes refer to a particular locking primitive
69 While formally kernel mutexes are sleepable locks, it is path (ii) that
87 - Held mutexes must not be reinitialized.
95 - Uses symbolic names of mutexes, whenever they are printed
165 When to use mutexes
168 Unless the strict semantics of mutexes are unsuitable and/or the critical
Dww-mutex-design.rst5 Please read mutex-design.rst first, as it applies to wait/wound mutexes too.
60 Compared to normal mutexes two additional concepts/objects show up in the lock
61 interface for w/w mutexes:
70 W/w class: In contrast to normal mutexes the lock class needs to be explicit for
71 w/w mutexes, since it is required to initialize the acquire context. The lock
238 mutexes are a natural fit for such a case for two reasons:
340 increase in code size if wait/wound mutexes are not used.
373 - Attempting to lock more mutexes after ww_acquire_done.
375 unlocking all mutexes.
377 before unlocking all mutexes.
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Dpi-futex.rst64 locks (such as futex-based pthread mutexes) is priority inheritance:
79 mutexes involves no kernel work at all - they behave quite similarly to
82 futexes.) Userspace uses atomic ops to lock/unlock these mutexes without
115 possible anyway, due to existing ABI properties of pthread mutexes.]
Drt-mutex-design.rst120 - The highest priority process waiting on one of the mutexes
131 The PI chain is a list of processes and mutexes that may cause priority
177 have multiple chains merge at mutexes. If we add another process G that is
209 a tree of all top waiters of the mutexes that are owned by the process.
211 blocked on mutexes owned by the process.
229 the nesting of mutexes. Let's look at the example where we have 3 mutexes,
293 Now since mutexes can be defined by user-land applications, we don't want a DOS
294 type of application that nests large amounts of mutexes to create a large
318 mutexes short.
336 The macro rt_mutex_cmpxchg is used to try to lock and unlock mutexes. If
[all …]
Drobust-futexes.rst42 There is a big conceptual problem with futex based mutexes though: it is
122 mechanism, which fully enables robust mutexes.
133 - no registration of individual locks is needed: robust mutexes don't
134 need any extra per-lock syscalls. Robust mutexes thus become a very
137 mutexes are just as fast.
158 [which it currently does for !pshared robust mutexes], and that took 256
Dlocktypes.rst101 RT-mutexes are mutexes with support for priority inheritance (PI).
110 and rwlock_t to be implemented via RT-mutexes.
120 as mutexes and completions.
Dlockdep-design.rst111 Unused locks (e.g., mutexes) cannot be part of the cause of an error.
/linux-6.12.1/kernel/configs/
Ddebug.config95 # Lock Debugging (spinlocks, mutexes, etc...)
/linux-6.12.1/Documentation/userspace-api/
Dfutex2.rst10 performant synchronization mechanisms, such as mutexes, semaphores and
/linux-6.12.1/Documentation/driver-api/media/
Ddtv-demux.rst39 addressed, e.g. by protecting parts of code with mutexes.
/linux-6.12.1/Documentation/livepatch/
Dcallbacks.rst18 mutexes/spinlocks, or even stop_machine(), to avoid concurrency issues.
/linux-6.12.1/Documentation/process/
Dvolatile-considered-harmful.rst22 safe (spinlocks, mutexes, memory barriers, etc.) are designed to prevent
/linux-6.12.1/fs/jffs2/
DREADME.Locking66 2. Never attempt to lock two file mutexes in one thread.
/linux-6.12.1/Documentation/virt/kvm/
Dlocking.rst10 The acquisition orders for mutexes are as follows:
/linux-6.12.1/Documentation/scheduler/
Dcompletion.rst182 most cases you probably don't want to call this with held mutexes.
/linux-6.12.1/Documentation/kernel-hacking/
Dlocking.rst879 (spinlocks, rwlocks and mutexes are not recursive in Linux). This is
1052 Both spinlocks and mutexes have read/write variants: ``rwlock_t`` and
/linux-6.12.1/Documentation/RCU/Design/Expedited-Grace-Periods/
DExpedited-Grace-Periods.rst513 expedited grace period are awakened. A pair of mutexes are used to allow
/linux-6.12.1/Documentation/sound/kernel-api/
Dwriting-an-alsa-driver.rst1874 mutexes or any schedule-related functions are not available in the
2193 usually avoided via spin-locks, mutexes or semaphores. In general, if a
2198 mutexes or semaphores instead.
2209 mutexes can sleep, and hence they cannot be used inside the atomic
/linux-6.12.1/Documentation/trace/
Dkprobes.rst574 Kprobes does not use mutexes or allocate memory except during
/linux-6.12.1/lib/
DKconfig.debug1357 menu "Lock Debugging (spinlocks, mutexes, etc...)"
1403 NOTE: this feature can also be enabled for rwlocks, mutexes
1593 mutexes and rwsems.
/linux-6.12.1/Documentation/networking/dsa/
Ddsa.rst629 interrupts, mutexes, locks, etc. This function is also expected to properly

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