forked from nuttx/nuttx-update
spinlock: remove recursive locks with write_lock_irqsave/read_lock_irqsave
reason: 1 There is a similar PR, https://github.com/apache/nuttx/pull/14079, 2 Currently, no one is using recursive locks with write_lock_irqsave/read_lock_irqsave. 3 Nested spinlock is harmful, prone to abuse and leading to a decline in code quality and performance 4 Nested spinlock is also not available in Linux. 5 In our future plans, nested usage of enter_critical_section and spin_lock_irqsave will also be removed. Signed-off-by: hujun5 <hujun5@xiaomi.com>
This commit is contained in:
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33226a9bb7
commit
f5136b2afa
2 changed files with 21 additions and 123 deletions
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@ -995,25 +995,19 @@ static inline_function void write_unlock(FAR volatile rwlock_t *lock)
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL), disable local
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* interrupts and take the global read write spinlock (g_irq_rw_spin)
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* and increase g_irq_rw_spin.
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*
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* If the argument lock is specified,
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* The argument lock should be specified,
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* disable local interrupts and take the lock spinlock and return
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* the interrupt state.
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*
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* NOTE: This API is very simple to protect data (e.g. H/W register
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* or internal data structure) in SMP mode. But do not use this API
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* or internal data structure) in SMP mode. Do not use this API
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* with kernel APIs which suspend a caller thread. (e.g. nxsem_wait)
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*
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* If SMP is not enabled:
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* This function is equivalent to up_irq_save().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used
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* and can be nested. Otherwise, nested call for the same lock
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* would cause a deadlock
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* lock - Caller specific spinlock, not NULL.
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*
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* Returned Value:
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* An opaque, architecture-specific value that represents the state of
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@ -1032,11 +1026,7 @@ irqstate_t read_lock_irqsave(FAR rwlock_t *lock);
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL),
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* decrement the call counter (g_irq_rw_spin) and restore the interrupt
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* state as it was prior to the previous call to read_lock_irqsave(NULL).
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*
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* If the argument lock is specified, release the lock and
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* The argument lock should be specified, release the lock and
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* restore the interrupt state as it was prior to the previous call to
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* read_lock_irqsave(lock).
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*
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@ -1044,7 +1034,7 @@ irqstate_t read_lock_irqsave(FAR rwlock_t *lock);
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* This function is equivalent to up_irq_restore().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used.
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* lock - Caller specific spinlock, not NULL.
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*
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* flags - The architecture-specific value that represents the state of
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* the interrupts prior to the call to read_lock_irqsave(lock);
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@ -1065,13 +1055,7 @@ void read_unlock_irqrestore(FAR rwlock_t *lock, irqstate_t flags);
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL),
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* disable local interrupts and take the global spinlock (g_irq_rw_spin)
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* if the call counter (g_irq_write_spin_count[cpu]) equals to 0. Then
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* the counter on the CPU is incremented to allow nested calls and return
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* the interrupt state.
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*
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* If the argument lock is specified,
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* The argument lock should be specified,
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* disable local interrupts and take the lock spinlock and return
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* the interrupt state.
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*
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@ -1083,9 +1067,7 @@ void read_unlock_irqrestore(FAR rwlock_t *lock, irqstate_t flags);
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* This function is equivalent to up_irq_save().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used
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* and can be nested. Otherwise, nested call for the same lock
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* would cause a deadlock
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* lock - Caller specific spinlock, not NULL.
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*
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* Returned Value:
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* An opaque, architecture-specific value that represents the state of
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@ -1104,13 +1086,7 @@ irqstate_t write_lock_irqsave(FAR rwlock_t *lock);
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL),
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* decrement the call counter (g_irq_rw_spin_count[cpu]) and if it
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* decrements to zero then release the spinlock (g_irq_rw_spin) and
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* restore the interrupt state as it was prior to the previous call to
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* write_lock_irqsave(NULL).
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*
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* If the argument lock is specified, release the lock and
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* The argument lock should be specified, release the lock and
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* restore the interrupt state as it was prior to the previous call to
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* write_lock_irqsave(lock).
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*
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@ -1118,7 +1094,7 @@ irqstate_t write_lock_irqsave(FAR rwlock_t *lock);
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* This function is equivalent to up_irq_restore().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used.
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* lock - Caller specific spinlock, not NULL.
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*
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* flags - The architecture-specific value that represents the state of
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* the interrupts prior to the call to write_lock_irqsave(lock);
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@ -47,17 +47,6 @@ volatile spinlock_t g_irq_spin = SP_UNLOCKED;
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volatile uint8_t g_irq_spin_count[CONFIG_SMP_NCPUS];
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#ifdef CONFIG_RW_SPINLOCK
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/* Used for access control */
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static volatile rwlock_t g_irq_rwspin = RW_SP_UNLOCKED;
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/* Handles nested calls to write_lock_irqsave and write_unlock_irqrestore */
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static volatile uint8_t g_irq_rwspin_count[CONFIG_SMP_NCPUS];
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#endif
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/****************************************************************************
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* Public Functions
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****************************************************************************/
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@ -69,11 +58,7 @@ static volatile uint8_t g_irq_rwspin_count[CONFIG_SMP_NCPUS];
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*
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* Description:
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* If SMP is enabled:
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* If the 'lock' argument is not specified (i.e. NULL), disable local
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* interrupts and take the global read write spinlock (g_irq_rwspin)
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* and increase g_irq_rwspin.
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*
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* If the 'lock' argument is specified,
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* The argument lock should be specified,
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* disable local interrupts and take the lock spinlock and return
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* the interrupt state.
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*
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@ -85,9 +70,7 @@ static volatile uint8_t g_irq_rwspin_count[CONFIG_SMP_NCPUS];
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* This function is equivalent to up_irq_save().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used
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* and can be nested. Otherwise, nested call for the same lock
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* would cause a deadlock
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* lock - Caller specific spinlock, not NULL.
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*
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* Returned Value:
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* An opaque, architecture-specific value that represents the state of
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@ -100,14 +83,7 @@ irqstate_t read_lock_irqsave(FAR rwlock_t *lock)
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irqstate_t ret;
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ret = up_irq_save();
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if (NULL == lock)
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{
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read_lock(&g_irq_rwspin);
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}
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else
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{
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read_lock(lock);
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}
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read_lock(lock);
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return ret;
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}
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@ -117,11 +93,7 @@ irqstate_t read_lock_irqsave(FAR rwlock_t *lock)
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL),
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* decrement the call counter (g_irq_rwspin) and restore the interrupt
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* state as it was prior to the previous call to read_lock_irqsave(NULL).
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*
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* If the argument lock is specified, release the lock and
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* The argument lock should be specified, release the lock and
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* restore the interrupt state as it was prior to the previous call to
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* read_lock_irqsave(lock).
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*
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@ -129,7 +101,7 @@ irqstate_t read_lock_irqsave(FAR rwlock_t *lock)
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* This function is equivalent to up_irq_restore().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used.
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* lock - Caller specific spinlock, not NULL.
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*
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* flags - The architecture-specific value that represents the state of
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* the interrupts prior to the call to read_lock_irqsave(lock);
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@ -141,15 +113,7 @@ irqstate_t read_lock_irqsave(FAR rwlock_t *lock)
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void read_unlock_irqrestore(rwlock_t *lock, irqstate_t flags)
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{
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if (NULL == lock)
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{
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read_unlock(&g_irq_rwspin);
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}
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else
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{
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read_unlock(lock);
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}
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read_unlock(lock);
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up_irq_restore(flags);
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}
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@ -158,13 +122,7 @@ void read_unlock_irqrestore(rwlock_t *lock, irqstate_t flags)
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL),
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* disable local interrupts and take the global spinlock (g_irq_rwspin)
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* if the call counter (g_irq_rwspin_count[cpu]) equals to 0. Then
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* the counter on the CPU is incremented to allow nested calls and return
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* the interrupt state.
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*
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* If the argument lock is specified,
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* The argument lock should be specified,
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* disable local interrupts and take the lock spinlock and return
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* the interrupt state.
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*
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@ -176,9 +134,7 @@ void read_unlock_irqrestore(rwlock_t *lock, irqstate_t flags)
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* This function is equivalent to up_irq_save().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used
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* and can be nested. Otherwise, nested call for the same lock
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* would cause a deadlock
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* lock - Caller specific spinlock, not NULL.
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*
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* Returned Value:
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* An opaque, architecture-specific value that represents the state of
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@ -191,21 +147,7 @@ irqstate_t write_lock_irqsave(rwlock_t *lock)
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irqstate_t ret;
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ret = up_irq_save();
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if (NULL == lock)
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{
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int me = this_cpu();
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if (0 == g_irq_rwspin_count[me])
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{
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write_lock(&g_irq_rwspin);
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}
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g_irq_rwspin_count[me]++;
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DEBUGASSERT(0 != g_irq_rwspin_count[me]);
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}
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else
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{
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write_lock(lock);
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}
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write_lock(lock);
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return ret;
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}
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@ -215,13 +157,7 @@ irqstate_t write_lock_irqsave(rwlock_t *lock)
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*
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* Description:
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* If SMP is enabled:
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* If the argument lock is not specified (i.e. NULL),
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* decrement the call counter (g_irq_rwspin_count[cpu]) and if it
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* decrements to zero then release the spinlock (g_irq_rwspin) and
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* restore the interrupt state as it was prior to the previous call to
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* write_lock_irqsave(NULL).
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*
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* If the argument lock is specified, release the lock and
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* The argument lock should be specified, release the lock and
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* restore the interrupt state as it was prior to the previous call to
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* write_lock_irqsave(lock).
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*
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@ -229,7 +165,7 @@ irqstate_t write_lock_irqsave(rwlock_t *lock)
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* This function is equivalent to up_irq_restore().
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*
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* Input Parameters:
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* lock - Caller specific spinlock. If specified NULL, g_irq_spin is used.
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* lock - Caller specific spinlock, not NULL.
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*
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* flags - The architecture-specific value that represents the state of
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* the interrupts prior to the call to write_lock_irqsave(lock);
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@ -241,21 +177,7 @@ irqstate_t write_lock_irqsave(rwlock_t *lock)
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void write_unlock_irqrestore(rwlock_t *lock, irqstate_t flags)
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{
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if (NULL == lock)
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{
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int me = this_cpu();
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DEBUGASSERT(0 < g_irq_rwspin_count[me]);
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g_irq_rwspin_count[me]--;
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if (0 == g_irq_rwspin_count[me])
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{
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write_unlock(&g_irq_rwspin);
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}
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}
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else
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{
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write_unlock(lock);
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}
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write_unlock(lock);
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up_irq_restore(flags);
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}
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