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# ifndef INTERNAL_IO_WQ_H
# define INTERNAL_IO_WQ_H
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# include <linux/refcount.h>
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# include <linux/io_uring_types.h>
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struct io_wq ;
enum {
IO_WQ_WORK_CANCEL = 1 ,
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IO_WQ_WORK_HASHED = 2 ,
IO_WQ_WORK_UNBOUND = 4 ,
IO_WQ_WORK_CONCURRENT = 16 ,
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IO_WQ_HASH_SHIFT = 24 , /* upper 8 bits are used for hash key */
} ;
enum io_wq_cancel {
IO_WQ_CANCEL_OK , /* cancelled before started */
IO_WQ_CANCEL_RUNNING , /* found, running, and attempted cancelled */
IO_WQ_CANCEL_NOTFOUND , /* work not found */
} ;
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typedef struct io_wq_work * ( free_work_fn ) ( struct io_wq_work * ) ;
typedef void ( io_wq_work_fn ) ( struct io_wq_work * ) ;
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struct io_wq_hash {
refcount_t refs ;
unsigned long map ;
struct wait_queue_head wait ;
} ;
static inline void io_wq_put_hash ( struct io_wq_hash * hash )
{
if ( refcount_dec_and_test ( & hash - > refs ) )
kfree ( hash ) ;
}
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struct io_wq_data {
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struct io_wq_hash * hash ;
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struct task_struct * task ;
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io_wq_work_fn * do_work ;
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free_work_fn * free_work ;
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} ;
struct io_wq * io_wq_create ( unsigned bounded , struct io_wq_data * data ) ;
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void io_wq_exit_start ( struct io_wq * wq ) ;
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void io_wq_put_and_exit ( struct io_wq * wq ) ;
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void io_wq_enqueue ( struct io_wq * wq , struct io_wq_work * work ) ;
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void io_wq_hash_work ( struct io_wq_work * work , void * val ) ;
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int io_wq_cpu_affinity ( struct io_wq * wq , cpumask_var_t mask ) ;
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int io_wq_max_workers ( struct io_wq * wq , int * new_count ) ;
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static inline bool io_wq_is_hashed ( struct io_wq_work * work )
{
return work - > flags & IO_WQ_WORK_HASHED ;
}
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typedef bool ( work_cancel_fn ) ( struct io_wq_work * , void * ) ;
enum io_wq_cancel io_wq_cancel_cb ( struct io_wq * wq , work_cancel_fn * cancel ,
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void * data , bool cancel_all ) ;
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# if defined(CONFIG_IO_WQ)
extern void io_wq_worker_sleeping ( struct task_struct * ) ;
extern void io_wq_worker_running ( struct task_struct * ) ;
# else
static inline void io_wq_worker_sleeping ( struct task_struct * tsk )
{
}
static inline void io_wq_worker_running ( struct task_struct * tsk )
{
}
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# endif
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static inline bool io_wq_current_is_worker ( void )
{
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return in_task ( ) & & ( current - > flags & PF_IO_WORKER ) & &
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current - > worker_private ;
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}
# endif