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131 lines
4.8 KiB
C++
131 lines
4.8 KiB
C++
#ifndef foomainloophfoo
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#define foomainloophfoo
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/***
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This file is part of PulseAudio.
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Copyright 2004-2006 Lennart Poettering
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Copyright 2006 Pierre Ossman <ossman@cendio.se> for Cendio AB
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PulseAudio is free software; you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License as published
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by the Free Software Foundation; either version 2.1 of the License,
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or (at your option) any later version.
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PulseAudio is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with PulseAudio; if not, see <http://www.gnu.org/licenses/>.
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***/
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#include <pulse/mainloop-api.h>
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#include <pulse/cdecl.h>
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PA_C_DECL_BEGIN
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struct pollfd;
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/** \page mainloop Main Loop
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*
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* \section overv_sec Overview
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*
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* The built-in main loop implementation is based on the poll() system call.
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* It supports the functions defined in the main loop abstraction and very
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* little else.
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*
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* The main loop is created using pa_mainloop_new() and destroyed using
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* pa_mainloop_free(). To get access to the main loop abstraction,
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* pa_mainloop_get_api() is used.
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*
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* \section iter_sec Iteration
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*
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* The main loop is designed around the concept of iterations. Each iteration
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* consists of three steps that repeat during the application's entire
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* lifetime:
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*
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* -# Prepare - Build a list of file descriptors
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* that need to be monitored and calculate the next timeout.
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* -# Poll - Execute the actual poll() system call.
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* -# Dispatch - Dispatch any events that have fired.
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*
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* When using the main loop, the application can either execute each
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* iteration, one at a time, using pa_mainloop_iterate(), or let the library
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* iterate automatically using pa_mainloop_run().
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*
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* \section thread_sec Threads
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*
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* The main loop functions are designed to be thread safe, but the objects
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* are not. What this means is that multiple main loops can be used, but only
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* one object per thread.
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*
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*/
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/** \file
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*
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* A minimal main loop implementation based on the C library's poll()
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* function. Using the routines defined herein you may create a simple
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* main loop supporting the generic main loop abstraction layer as
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* defined in \ref mainloop-api.h. This implementation is thread safe
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* as long as you access the main loop object from a single thread only.
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*
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* See also \subpage mainloop
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*/
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/** An opaque main loop object */
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typedef struct pa_mainloop pa_mainloop;
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/** Allocate a new main loop object */
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pa_mainloop *pa_mainloop_new(void);
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/** Free a main loop object */
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void pa_mainloop_free(pa_mainloop* m);
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/** Prepare for a single iteration of the main loop. Returns a negative value
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on error or exit request. timeout specifies a maximum timeout for the subsequent
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poll, or -1 for blocking behaviour. .*/
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int pa_mainloop_prepare(pa_mainloop *m, int timeout);
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/** Execute the previously prepared poll. Returns a negative value on error.*/
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int pa_mainloop_poll(pa_mainloop *m);
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/** Dispatch timeout, io and deferred events from the previously executed poll. Returns
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a negative value on error. On success returns the number of source dispatched. */
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int pa_mainloop_dispatch(pa_mainloop *m);
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/** Return the return value as specified with the main loop's quit() routine. */
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int pa_mainloop_get_retval(pa_mainloop *m);
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/** Run a single iteration of the main loop. This is a convenience function
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for pa_mainloop_prepare(), pa_mainloop_poll() and pa_mainloop_dispatch().
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Returns a negative value on error or exit request. If block is nonzero,
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block for events if none are queued. Optionally return the return value as
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specified with the main loop's quit() routine in the integer variable retval points
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to. On success returns the number of sources dispatched in this iteration. */
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int pa_mainloop_iterate(pa_mainloop *m, int block, int *retval);
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/** Run unlimited iterations of the main loop object until the main loop's quit() routine is called. */
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int pa_mainloop_run(pa_mainloop *m, int *retval);
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/** Return the abstract main loop abstraction layer vtable for this
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main loop. No need to free the API as it is owned by the loop
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and is destroyed when the loop is freed. */
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pa_mainloop_api* pa_mainloop_get_api(pa_mainloop*m);
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/** Shutdown the main loop with the specified return value */
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void pa_mainloop_quit(pa_mainloop *m, int retval);
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/** Interrupt a running poll (for threaded systems) */
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void pa_mainloop_wakeup(pa_mainloop *m);
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/** Generic prototype of a poll() like function */
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typedef int (*pa_poll_func)(struct pollfd *ufds, unsigned long nfds, int timeout, void*userdata);
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/** Change the poll() implementation */
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void pa_mainloop_set_poll_func(pa_mainloop *m, pa_poll_func poll_func, void *userdata);
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PA_C_DECL_END
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#endif
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