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sem_post(S-osr5)


sem_post -- unlock a semaphore

Syntax

cc . . . -lsuds
#include <semaphore.h>

int sem_post(semt *sem);

Description

The sem_post function unlocks the semaphore referenced by sem by performing the semaphore unlock operation on that semaphore. If the semaphore value resulting from this operation is positive, then no processes were blocked waiting for the semaphore to become unlocked; the semaphore value is simply incremented.

If the value of the semaphore resulting from this operation is zero, then one of the processes blocked waiting for the semaphore is allowed to return successfully from its call to sem_wait(S-osr5). The process to be unblocked shall be chosen in a manner appropriate to the scheduling policies and parameters in effect for the blocked processes. In the case of the schedulers SCHED_FIFO and SCHED_RR, the highest priority waiting process is unblocked, and if there is more than one highest-priority process blocked waiting for the semaphore, then the highest priority process which has been waiting the longest is unblocked.

The sem_post function is re-entrant with respect to signals and may be invoked from a signal-catching function.

Return values

If successful, the sem_post function returns zero; otherwise the function returns -1, and sets errno to indicate the error.

Diagnostics

If the following condition occurs, the sem_post function returns -1 and sets errno to the corresponding value:

[EINVAL]
The sem does not refer to a valid semaphore.

See also

semaphore(FP), sem_trywait(S-osr5), sem_wait(S-osr5)

Standards conformance

Text reprinted and/or adapted from IEEE Std 1003.1b-1993, IEEE Standard for Information Technology, POSIX Part 1: System Application Program Interface (API) Amendment 1: Realtime Extensions [C Language], copyright © 1993 by the Institute of Electrical and Electronics Engineers, Inc. The IEEE takes no responsibility for and will assume no liability for damages resulting from the reader's misinterpretation of said information resulting from the placement and context in this publication. Information is reproduced with the permission of the IEEE.
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