Properly implement using zaptel for timing of file playback

git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@1137 65c4cc65-6c06-0410-ace0-fbb531ad65f3
1.0
Mark Spencer 23 years ago
parent 97fc11c244
commit 40e4cfe458

@ -91,7 +91,7 @@ ifeq (${OSARCH},OpenBSD)
CFLAGS+=-pthread CFLAGS+=-pthread
endif endif
#CFLAGS+=$(shell if [ -f /usr/include/linux/zaptel.h ]; then echo "-DZAPTEL_OPTIMIZATIONS"; fi) CFLAGS+=$(shell if [ -f /usr/include/linux/zaptel.h ]; then echo "-DZAPTEL_OPTIMIZATIONS"; fi)
LIBEDIT=editline/libedit.a LIBEDIT=editline/libedit.a

@ -938,13 +938,19 @@ char ast_waitfordigit(struct ast_channel *c, int ms)
return result; return result;
} }
int ast_settimeout(struct ast_channel *c, int ms) int ast_settimeout(struct ast_channel *c, int samples, int (*func)(void *data), void *data)
{ {
int res = -1; int res = -1;
#ifdef ZAPTEL_OPTIMIZATIONS #ifdef ZAPTEL_OPTIMIZATIONS
if (c->timingfd > -1) { if (c->timingfd > -1) {
ms *= 8; if (!func) {
res = ioctl(c->timingfd, ZT_TIMERCONFIG, &ms); samples = 0;
data = 0;
}
ast_log(LOG_DEBUG, "Scheduling timer at %d sample intervals\n", samples);
res = ioctl(c->timingfd, ZT_TIMERCONFIG, &samples);
c->timingfunc = func;
c->timingdata = data;
} }
#endif #endif
return res; return res;
@ -983,6 +989,10 @@ struct ast_frame *ast_read(struct ast_channel *chan)
{ {
struct ast_frame *f = NULL; struct ast_frame *f = NULL;
int blah; int blah;
#ifdef ZAPTEL_OPTIMIZATIONS
int (*func)(void *);
void *data;
#endif
static struct ast_frame null_frame = static struct ast_frame null_frame =
{ {
AST_FRAME_NULL, AST_FRAME_NULL,
@ -1027,10 +1037,18 @@ struct ast_frame *ast_read(struct ast_channel *chan)
chan->exception = 0; chan->exception = 0;
blah = -1; blah = -1;
ioctl(chan->timingfd, ZT_TIMERACK, &blah); ioctl(chan->timingfd, ZT_TIMERACK, &blah);
blah = 0; func = chan->timingfunc;
ioctl(chan->timingfd, ZT_TIMERCONFIG, &blah); data = chan->timingdata;
f = &null_frame;
pthread_mutex_unlock(&chan->lock); pthread_mutex_unlock(&chan->lock);
if (func) {
func(data);
} else {
blah = 0;
pthread_mutex_lock(&chan->lock);
ioctl(chan->timingfd, ZT_TIMERCONFIG, &blah);
pthread_mutex_unlock(&chan->lock);
}
f = &null_frame;
return f; return f;
} }
#endif #endif

@ -508,16 +508,26 @@ static int ast_readaudio_callback(void *data)
if (ast_write(s->owner, fr)) { if (ast_write(s->owner, fr)) {
ast_log(LOG_WARNING, "Failed to write frame\n"); ast_log(LOG_WARNING, "Failed to write frame\n");
s->owner->streamid = -1; s->owner->streamid = -1;
#ifdef ZAPTEL_OPTIMIZATIONS
ast_settimeout(s->owner, 0, NULL, NULL);
#endif
return 0; return 0;
} }
} else { } else {
/* Stream has finished */ /* Stream has finished */
s->owner->streamid = -1; s->owner->streamid = -1;
#ifdef ZAPTEL_OPTIMIZATIONS
ast_settimeout(s->owner, 0, NULL, NULL);
#endif
return 0; return 0;
} }
} }
if (whennext != s->lasttimeout) { if (whennext != s->lasttimeout) {
#ifdef ZAPTEL_OPTIMIZATIONS
ast_settimeout(s->owner, whennext, ast_readaudio_callback, s);
#else
s->owner->streamid = ast_sched_add(s->owner->sched, whennext/8, ast_readaudio_callback, s); s->owner->streamid = ast_sched_add(s->owner->sched, whennext/8, ast_readaudio_callback, s);
#endif
s->lasttimeout = whennext; s->lasttimeout = whennext;
return 0; return 0;
} }
@ -606,6 +616,9 @@ int ast_closestream(struct ast_filestream *f)
if (f->owner->streamid > -1) if (f->owner->streamid > -1)
ast_sched_del(f->owner->sched, f->owner->streamid); ast_sched_del(f->owner->sched, f->owner->streamid);
f->owner->streamid = -1; f->owner->streamid = -1;
#ifdef ZAPTEL_OPTIMIZATIONS
ast_settimeout(f->owner, 0, NULL, NULL);
#endif
} else { } else {
f->owner->vstream = NULL; f->owner->vstream = NULL;
if (f->owner->vstreamid > -1) if (f->owner->vstreamid > -1)
@ -766,15 +779,15 @@ char ast_waitstream(struct ast_channel *c, char *breakon)
struct ast_frame *fr; struct ast_frame *fr;
while(c->stream) { while(c->stream) {
res = ast_sched_wait(c->sched); res = ast_sched_wait(c->sched);
if (res < 0) { if ((res < 0) && !c->timingfunc) {
if (c->stream) if (c->stream)
ast_closestream(c->stream); ast_closestream(c->stream);
if (c->vstream) if (c->vstream)
ast_closestream(c->vstream); ast_closestream(c->vstream);
break; break;
} }
/* Setup timeout if supported */ if (res < 0)
ast_settimeout(c, res); res = 1000;
res = ast_waitfor(c, res); res = ast_waitfor(c, res);
if (res < 0) { if (res < 0) {
ast_log(LOG_WARNING, "Select failed (%s)\n", strerror(errno)); ast_log(LOG_WARNING, "Select failed (%s)\n", strerror(errno));
@ -832,7 +845,6 @@ char ast_waitstream_fr(struct ast_channel *c, char *breakon, char *forward, char
ast_closestream(c->vstream); ast_closestream(c->vstream);
break; break;
} }
ast_settimeout(c, res);
res = ast_waitfor(c, res); res = ast_waitfor(c, res);
if (res < 0) { if (res < 0) {
ast_log(LOG_WARNING, "Select failed (%s)\n", strerror(errno)); ast_log(LOG_WARNING, "Select failed (%s)\n", strerror(errno));
@ -899,7 +911,6 @@ char ast_waitstream_full(struct ast_channel *c, char *breakon, int audiofd, int
ast_closestream(c->vstream); ast_closestream(c->vstream);
break; break;
} }
ast_settimeout(c, ms);
rchan = ast_waitfor_nandfds(&c, 1, &cmdfd, (cmdfd > -1) ? 1 : 0, NULL, &outfd, &ms); rchan = ast_waitfor_nandfds(&c, 1, &cmdfd, (cmdfd > -1) ? 1 : 0, NULL, &outfd, &ms);
if (!rchan && (outfd < 0) && (ms)) { if (!rchan && (outfd < 0) && (ms)) {
ast_log(LOG_WARNING, "Wait failed (%s)\n", strerror(errno)); ast_log(LOG_WARNING, "Wait failed (%s)\n", strerror(errno));

@ -48,7 +48,6 @@ struct ast_filestream {
}; };
static struct ast_filestream *glist = NULL;
static pthread_mutex_t vox_lock = AST_MUTEX_INITIALIZER; static pthread_mutex_t vox_lock = AST_MUTEX_INITIALIZER;
static int glistcnt = 0; static int glistcnt = 0;

@ -125,7 +125,8 @@ struct ast_channel {
/*! Timing fd */ /*! Timing fd */
int timingfd; int timingfd;
int (*timingfunc)(void *data);
void *timingdata;
/*! State of line -- Don't write directly, use ast_setstate */ /*! State of line -- Don't write directly, use ast_setstate */
int _state; int _state;
@ -695,8 +696,8 @@ int ast_autoservice_start(struct ast_channel *chan);
int ast_autoservice_stop(struct ast_channel *chan); int ast_autoservice_stop(struct ast_channel *chan);
/* If built with zaptel optimizations, force a scheduled expiration on the /* If built with zaptel optimizations, force a scheduled expiration on the
timer fd */ timer fd, at which point we call the callback function / data */
int ast_settimeout(struct ast_channel *c, int ms); int ast_settimeout(struct ast_channel *c, int samples, int (*func)(void *data), void *data);
/* Transfer a channel (if supported). Returns -1 on error, 0 if not supported /* Transfer a channel (if supported). Returns -1 on error, 0 if not supported
and 1 if supported and requested */ and 1 if supported and requested */

@ -259,7 +259,7 @@ int ast_stream_rewind(struct ast_filestream *fs, long ms);
*/ */
long ast_tellstream(struct ast_filestream *fs); long ast_tellstream(struct ast_filestream *fs);
#define AST_RESERVED_POINTERS 12 #define AST_RESERVED_POINTERS 20
#if defined(__cplusplus) || defined(c_plusplus) #if defined(__cplusplus) || defined(c_plusplus)
} }

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