"Host Memory Backends" and "Memory devices" queue ("mem"):
 - Fix NVDIMM error message
 - Add ThreadContext user-creatable object and wire it up for NUMA-aware
   hostmem preallocation
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 QSSqyfasVHY=
 =bLuc
 -----END PGP SIGNATURE-----
Merge tag 'mem-2022-10-28' of https://github.com/davidhildenbrand/qemu into staging
Hi,
"Host Memory Backends" and "Memory devices" queue ("mem"):
- Fix NVDIMM error message
- Add ThreadContext user-creatable object and wire it up for NUMA-aware
  hostmem preallocation
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# =bLuc
# -----END PGP SIGNATURE-----
# gpg: Signature made Fri 28 Oct 2022 05:44:16 EDT
# gpg:                using RSA key 1BD9CAAD735C4C3A460DFCCA4DDE10F700FF835A
# gpg:                issuer "david@redhat.com"
# gpg: Good signature from "David Hildenbrand <david@redhat.com>" [unknown]
# gpg:                 aka "David Hildenbrand <davidhildenbrand@gmail.com>" [full]
# gpg:                 aka "David Hildenbrand <hildenbr@in.tum.de>" [unknown]
# gpg: WARNING: The key's User ID is not certified with a trusted signature!
# gpg:          There is no indication that the signature belongs to the owner.
# Primary key fingerprint: 1BD9 CAAD 735C 4C3A 460D  FCCA 4DDE 10F7 00FF 835A
* tag 'mem-2022-10-28' of https://github.com/davidhildenbrand/qemu:
  vl: Allow ThreadContext objects to be created before the sandbox option
  hostmem: Allow for specifying a ThreadContext for preallocation
  util: Make qemu_prealloc_mem() optionally consume a ThreadContext
  util: Add write-only "node-affinity" property for ThreadContext
  util: Introduce ThreadContext user-creatable object
  util: Introduce qemu_thread_set_affinity() and qemu_thread_get_affinity()
  util: Cleanup and rename os_mem_prealloc()
  hw/mem/nvdimm: fix error message for 'unarmed' flag
Signed-off-by: Stefan Hajnoczi <stefanha@redhat.com>
		
	
			
		
			
				
	
	
		
			405 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			405 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
#ifndef QEMU_THREAD_H
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#define QEMU_THREAD_H
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#include "qemu/processor.h"
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#include "qemu/atomic.h"
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typedef struct QemuCond QemuCond;
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typedef struct QemuSemaphore QemuSemaphore;
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typedef struct QemuEvent QemuEvent;
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typedef struct QemuLockCnt QemuLockCnt;
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typedef struct QemuThread QemuThread;
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#ifdef _WIN32
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#include "qemu/thread-win32.h"
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#else
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#include "qemu/thread-posix.h"
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#endif
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/* include QSP header once QemuMutex, QemuCond etc. are defined */
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#include "qemu/qsp.h"
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#define QEMU_THREAD_JOINABLE 0
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#define QEMU_THREAD_DETACHED 1
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void qemu_mutex_init(QemuMutex *mutex);
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void qemu_mutex_destroy(QemuMutex *mutex);
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int qemu_mutex_trylock_impl(QemuMutex *mutex, const char *file, const int line);
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void qemu_mutex_lock_impl(QemuMutex *mutex, const char *file, const int line);
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void qemu_mutex_unlock_impl(QemuMutex *mutex, const char *file, const int line);
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void qemu_rec_mutex_init(QemuRecMutex *mutex);
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void qemu_rec_mutex_destroy(QemuRecMutex *mutex);
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void qemu_rec_mutex_lock_impl(QemuRecMutex *mutex, const char *file, int line);
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int qemu_rec_mutex_trylock_impl(QemuRecMutex *mutex, const char *file, int line);
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void qemu_rec_mutex_unlock_impl(QemuRecMutex *mutex, const char *file, int line);
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typedef void (*QemuMutexLockFunc)(QemuMutex *m, const char *f, int l);
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typedef int (*QemuMutexTrylockFunc)(QemuMutex *m, const char *f, int l);
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typedef void (*QemuRecMutexLockFunc)(QemuRecMutex *m, const char *f, int l);
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typedef int (*QemuRecMutexTrylockFunc)(QemuRecMutex *m, const char *f, int l);
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typedef void (*QemuCondWaitFunc)(QemuCond *c, QemuMutex *m, const char *f,
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                                 int l);
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typedef bool (*QemuCondTimedWaitFunc)(QemuCond *c, QemuMutex *m, int ms,
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                                      const char *f, int l);
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extern QemuMutexLockFunc qemu_bql_mutex_lock_func;
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extern QemuMutexLockFunc qemu_mutex_lock_func;
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extern QemuMutexTrylockFunc qemu_mutex_trylock_func;
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extern QemuRecMutexLockFunc qemu_rec_mutex_lock_func;
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extern QemuRecMutexTrylockFunc qemu_rec_mutex_trylock_func;
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extern QemuCondWaitFunc qemu_cond_wait_func;
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extern QemuCondTimedWaitFunc qemu_cond_timedwait_func;
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/* convenience macros to bypass the profiler */
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#define qemu_mutex_lock__raw(m)                         \
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        qemu_mutex_lock_impl(m, __FILE__, __LINE__)
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#define qemu_mutex_trylock__raw(m)                      \
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        qemu_mutex_trylock_impl(m, __FILE__, __LINE__)
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#ifdef __COVERITY__
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/*
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 * Coverity is severely confused by the indirect function calls,
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 * hide them.
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 */
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#define qemu_mutex_lock(m)                                              \
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            qemu_mutex_lock_impl(m, __FILE__, __LINE__)
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#define qemu_mutex_trylock(m)                                           \
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            qemu_mutex_trylock_impl(m, __FILE__, __LINE__)
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#define qemu_rec_mutex_lock(m)                                          \
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            qemu_rec_mutex_lock_impl(m, __FILE__, __LINE__)
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#define qemu_rec_mutex_trylock(m)                                       \
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            qemu_rec_mutex_trylock_impl(m, __FILE__, __LINE__)
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#define qemu_cond_wait(c, m)                                            \
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            qemu_cond_wait_impl(c, m, __FILE__, __LINE__)
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#define qemu_cond_timedwait(c, m, ms)                                   \
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            qemu_cond_timedwait_impl(c, m, ms, __FILE__, __LINE__)
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#else
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#define qemu_mutex_lock(m) ({                                           \
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            QemuMutexLockFunc _f = qatomic_read(&qemu_mutex_lock_func); \
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            _f(m, __FILE__, __LINE__);                                  \
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        })
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#define qemu_mutex_trylock(m) ({                                              \
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            QemuMutexTrylockFunc _f = qatomic_read(&qemu_mutex_trylock_func); \
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            _f(m, __FILE__, __LINE__);                                        \
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        })
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#define qemu_rec_mutex_lock(m) ({                                             \
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            QemuRecMutexLockFunc _f = qatomic_read(&qemu_rec_mutex_lock_func);\
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            _f(m, __FILE__, __LINE__);                                        \
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        })
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#define qemu_rec_mutex_trylock(m) ({                            \
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            QemuRecMutexTrylockFunc _f;                         \
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            _f = qatomic_read(&qemu_rec_mutex_trylock_func);    \
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            _f(m, __FILE__, __LINE__);                          \
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        })
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#define qemu_cond_wait(c, m) ({                                         \
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            QemuCondWaitFunc _f = qatomic_read(&qemu_cond_wait_func);   \
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            _f(c, m, __FILE__, __LINE__);                               \
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        })
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#define qemu_cond_timedwait(c, m, ms) ({                                       \
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            QemuCondTimedWaitFunc _f = qatomic_read(&qemu_cond_timedwait_func);\
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            _f(c, m, ms, __FILE__, __LINE__);                                  \
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        })
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#endif
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#define qemu_mutex_unlock(mutex) \
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        qemu_mutex_unlock_impl(mutex, __FILE__, __LINE__)
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#define qemu_rec_mutex_unlock(mutex) \
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        qemu_rec_mutex_unlock_impl(mutex, __FILE__, __LINE__)
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static inline void (qemu_mutex_lock)(QemuMutex *mutex)
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{
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    qemu_mutex_lock(mutex);
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}
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static inline int (qemu_mutex_trylock)(QemuMutex *mutex)
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{
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    return qemu_mutex_trylock(mutex);
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}
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static inline void (qemu_mutex_unlock)(QemuMutex *mutex)
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{
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    qemu_mutex_unlock(mutex);
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}
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static inline void (qemu_rec_mutex_lock)(QemuRecMutex *mutex)
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{
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    qemu_rec_mutex_lock(mutex);
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}
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static inline int (qemu_rec_mutex_trylock)(QemuRecMutex *mutex)
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{
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    return qemu_rec_mutex_trylock(mutex);
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}
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static inline void (qemu_rec_mutex_unlock)(QemuRecMutex *mutex)
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{
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    qemu_rec_mutex_unlock(mutex);
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}
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void qemu_cond_init(QemuCond *cond);
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void qemu_cond_destroy(QemuCond *cond);
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/*
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 * IMPORTANT: The implementation does not guarantee that pthread_cond_signal
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 * and pthread_cond_broadcast can be called except while the same mutex is
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 * held as in the corresponding pthread_cond_wait calls!
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 */
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void qemu_cond_signal(QemuCond *cond);
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void qemu_cond_broadcast(QemuCond *cond);
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void qemu_cond_wait_impl(QemuCond *cond, QemuMutex *mutex,
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                         const char *file, const int line);
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bool qemu_cond_timedwait_impl(QemuCond *cond, QemuMutex *mutex, int ms,
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                              const char *file, const int line);
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static inline void (qemu_cond_wait)(QemuCond *cond, QemuMutex *mutex)
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{
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    qemu_cond_wait(cond, mutex);
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}
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/* Returns true if timeout has not expired, and false otherwise */
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static inline bool (qemu_cond_timedwait)(QemuCond *cond, QemuMutex *mutex,
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                                         int ms)
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{
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    return qemu_cond_timedwait(cond, mutex, ms);
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}
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void qemu_sem_init(QemuSemaphore *sem, int init);
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void qemu_sem_post(QemuSemaphore *sem);
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void qemu_sem_wait(QemuSemaphore *sem);
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int qemu_sem_timedwait(QemuSemaphore *sem, int ms);
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void qemu_sem_destroy(QemuSemaphore *sem);
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void qemu_event_init(QemuEvent *ev, bool init);
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void qemu_event_set(QemuEvent *ev);
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void qemu_event_reset(QemuEvent *ev);
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void qemu_event_wait(QemuEvent *ev);
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void qemu_event_destroy(QemuEvent *ev);
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void qemu_thread_create(QemuThread *thread, const char *name,
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                        void *(*start_routine)(void *),
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                        void *arg, int mode);
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int qemu_thread_set_affinity(QemuThread *thread, unsigned long *host_cpus,
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                             unsigned long nbits);
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int qemu_thread_get_affinity(QemuThread *thread, unsigned long **host_cpus,
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                             unsigned long *nbits);
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void *qemu_thread_join(QemuThread *thread);
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void qemu_thread_get_self(QemuThread *thread);
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bool qemu_thread_is_self(QemuThread *thread);
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G_NORETURN void qemu_thread_exit(void *retval);
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void qemu_thread_naming(bool enable);
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struct Notifier;
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/**
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 * qemu_thread_atexit_add:
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 * @notifier: Notifier to add
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 *
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 * Add the specified notifier to a list which will be run via
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 * notifier_list_notify() when this thread exits (either by calling
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 * qemu_thread_exit() or by returning from its start_routine).
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 * The usual usage is that the caller passes a Notifier which is
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 * a per-thread variable; it can then use the callback to free
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 * other per-thread data.
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 *
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 * If the thread exits as part of the entire process exiting,
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 * it is unspecified whether notifiers are called or not.
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 */
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void qemu_thread_atexit_add(struct Notifier *notifier);
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/**
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 * qemu_thread_atexit_remove:
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 * @notifier: Notifier to remove
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 *
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 * Remove the specified notifier from the thread-exit notification
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 * list. It is not valid to try to remove a notifier which is not
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 * on the list.
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 */
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void qemu_thread_atexit_remove(struct Notifier *notifier);
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#ifdef CONFIG_TSAN
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#include <sanitizer/tsan_interface.h>
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#endif
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struct QemuSpin {
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    int value;
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};
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static inline void qemu_spin_init(QemuSpin *spin)
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{
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    qatomic_set(&spin->value, 0);
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#ifdef CONFIG_TSAN
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    __tsan_mutex_create(spin, __tsan_mutex_not_static);
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#endif
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}
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/* const parameter because the only purpose here is the TSAN annotation */
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static inline void qemu_spin_destroy(const QemuSpin *spin)
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{
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#ifdef CONFIG_TSAN
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    __tsan_mutex_destroy((void *)spin, __tsan_mutex_not_static);
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#endif
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}
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static inline void qemu_spin_lock(QemuSpin *spin)
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{
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#ifdef CONFIG_TSAN
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    __tsan_mutex_pre_lock(spin, 0);
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#endif
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    while (unlikely(qatomic_xchg(&spin->value, 1))) {
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        while (qatomic_read(&spin->value)) {
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            cpu_relax();
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        }
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    }
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#ifdef CONFIG_TSAN
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    __tsan_mutex_post_lock(spin, 0, 0);
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#endif
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}
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static inline bool qemu_spin_trylock(QemuSpin *spin)
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{
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#ifdef CONFIG_TSAN
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    __tsan_mutex_pre_lock(spin, __tsan_mutex_try_lock);
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#endif
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    bool busy = qatomic_xchg(&spin->value, true);
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#ifdef CONFIG_TSAN
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    unsigned flags = __tsan_mutex_try_lock;
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    flags |= busy ? __tsan_mutex_try_lock_failed : 0;
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    __tsan_mutex_post_lock(spin, flags, 0);
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#endif
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    return busy;
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}
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static inline bool qemu_spin_locked(QemuSpin *spin)
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{
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    return qatomic_read(&spin->value);
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}
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static inline void qemu_spin_unlock(QemuSpin *spin)
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{
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#ifdef CONFIG_TSAN
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    __tsan_mutex_pre_unlock(spin, 0);
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#endif
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    qatomic_store_release(&spin->value, 0);
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#ifdef CONFIG_TSAN
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    __tsan_mutex_post_unlock(spin, 0);
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#endif
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}
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struct QemuLockCnt {
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#ifndef CONFIG_LINUX
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    QemuMutex mutex;
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#endif
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    unsigned count;
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};
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/**
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 * qemu_lockcnt_init: initialize a QemuLockcnt
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 * @lockcnt: the lockcnt to initialize
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 *
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 * Initialize lockcnt's counter to zero and prepare its mutex
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 * for usage.
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 */
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void qemu_lockcnt_init(QemuLockCnt *lockcnt);
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/**
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 * qemu_lockcnt_destroy: destroy a QemuLockcnt
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 * @lockcnt: the lockcnt to destruct
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 *
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 * Destroy lockcnt's mutex.
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 */
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void qemu_lockcnt_destroy(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_inc: increment a QemuLockCnt's counter
 | 
						|
 * @lockcnt: the lockcnt to operate on
 | 
						|
 *
 | 
						|
 * If the lockcnt's count is zero, wait for critical sections
 | 
						|
 * to finish and increment lockcnt's count to 1.  If the count
 | 
						|
 * is not zero, just increment it.
 | 
						|
 *
 | 
						|
 * Because this function can wait on the mutex, it must not be
 | 
						|
 * called while the lockcnt's mutex is held by the current thread.
 | 
						|
 * For the same reason, qemu_lockcnt_inc can also contribute to
 | 
						|
 * AB-BA deadlocks.  This is a sample deadlock scenario:
 | 
						|
 *
 | 
						|
 *            thread 1                      thread 2
 | 
						|
 *            -------------------------------------------------------
 | 
						|
 *            qemu_lockcnt_lock(&lc1);
 | 
						|
 *                                          qemu_lockcnt_lock(&lc2);
 | 
						|
 *            qemu_lockcnt_inc(&lc2);
 | 
						|
 *                                          qemu_lockcnt_inc(&lc1);
 | 
						|
 */
 | 
						|
void qemu_lockcnt_inc(QemuLockCnt *lockcnt);
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						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_dec: decrement a QemuLockCnt's counter
 | 
						|
 * @lockcnt: the lockcnt to operate on
 | 
						|
 */
 | 
						|
void qemu_lockcnt_dec(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_dec_and_lock: decrement a QemuLockCnt's counter and
 | 
						|
 * possibly lock it.
 | 
						|
 * @lockcnt: the lockcnt to operate on
 | 
						|
 *
 | 
						|
 * Decrement lockcnt's count.  If the new count is zero, lock
 | 
						|
 * the mutex and return true.  Otherwise, return false.
 | 
						|
 */
 | 
						|
bool qemu_lockcnt_dec_and_lock(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_dec_if_lock: possibly decrement a QemuLockCnt's counter and
 | 
						|
 * lock it.
 | 
						|
 * @lockcnt: the lockcnt to operate on
 | 
						|
 *
 | 
						|
 * If the count is 1, decrement the count to zero, lock
 | 
						|
 * the mutex and return true.  Otherwise, return false.
 | 
						|
 */
 | 
						|
bool qemu_lockcnt_dec_if_lock(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_lock: lock a QemuLockCnt's mutex.
 | 
						|
 * @lockcnt: the lockcnt to operate on
 | 
						|
 *
 | 
						|
 * Remember that concurrent visits are not blocked unless the count is
 | 
						|
 * also zero.  You can use qemu_lockcnt_count to check for this inside a
 | 
						|
 * critical section.
 | 
						|
 */
 | 
						|
void qemu_lockcnt_lock(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_unlock: release a QemuLockCnt's mutex.
 | 
						|
 * @lockcnt: the lockcnt to operate on.
 | 
						|
 */
 | 
						|
void qemu_lockcnt_unlock(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_inc_and_unlock: combined unlock/increment on a QemuLockCnt.
 | 
						|
 * @lockcnt: the lockcnt to operate on.
 | 
						|
 *
 | 
						|
 * This is the same as
 | 
						|
 *
 | 
						|
 *     qemu_lockcnt_unlock(lockcnt);
 | 
						|
 *     qemu_lockcnt_inc(lockcnt);
 | 
						|
 *
 | 
						|
 * but more efficient.
 | 
						|
 */
 | 
						|
void qemu_lockcnt_inc_and_unlock(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
/**
 | 
						|
 * qemu_lockcnt_count: query a LockCnt's count.
 | 
						|
 * @lockcnt: the lockcnt to query.
 | 
						|
 *
 | 
						|
 * Note that the count can change at any time.  Still, while the
 | 
						|
 * lockcnt is locked, one can usefully check whether the count
 | 
						|
 * is non-zero.
 | 
						|
 */
 | 
						|
unsigned qemu_lockcnt_count(QemuLockCnt *lockcnt);
 | 
						|
 | 
						|
#endif
 |