sink, source: Fix error reporting style for rate updates

This commit is contained in:
Tanu Kaskinen 2013-08-23 13:58:55 +03:00
parent a32c5e4354
commit 441a5a422c
8 changed files with 41 additions and 41 deletions

View file

@ -1593,7 +1593,7 @@ static bool sink_set_formats(pa_sink *s, pa_idxset *formats) {
return true; return true;
} }
static bool sink_update_rate_cb(pa_sink *s, uint32_t rate) { static int sink_update_rate_cb(pa_sink *s, uint32_t rate) {
struct userdata *u = s->userdata; struct userdata *u = s->userdata;
int i; int i;
bool supported = false; bool supported = false;
@ -1609,16 +1609,16 @@ static bool sink_update_rate_cb(pa_sink *s, uint32_t rate) {
if (!supported) { if (!supported) {
pa_log_info("Sink does not support sample rate of %d Hz", rate); pa_log_info("Sink does not support sample rate of %d Hz", rate);
return false; return -1;
} }
if (!PA_SINK_IS_OPENED(s->state)) { if (!PA_SINK_IS_OPENED(s->state)) {
pa_log_info("Updating rate for device %s, new rate is %d",u->device_name, rate); pa_log_info("Updating rate for device %s, new rate is %d",u->device_name, rate);
u->sink->sample_spec.rate = rate; u->sink->sample_spec.rate = rate;
return true; return 0;
} }
return false; return -1;
} }
static int process_rewind(struct userdata *u) { static int process_rewind(struct userdata *u) {

View file

@ -1401,7 +1401,7 @@ static void source_update_requested_latency_cb(pa_source *s) {
update_sw_params(u); update_sw_params(u);
} }
static bool source_update_rate_cb(pa_source *s, uint32_t rate) { static int source_update_rate_cb(pa_source *s, uint32_t rate) {
struct userdata *u = s->userdata; struct userdata *u = s->userdata;
int i; int i;
bool supported = false; bool supported = false;
@ -1417,16 +1417,16 @@ static bool source_update_rate_cb(pa_source *s, uint32_t rate) {
if (!supported) { if (!supported) {
pa_log_info("Source does not support sample rate of %d Hz", rate); pa_log_info("Source does not support sample rate of %d Hz", rate);
return false; return -1;
} }
if (!PA_SOURCE_IS_OPENED(s->state)) { if (!PA_SOURCE_IS_OPENED(s->state)) {
pa_log_info("Updating rate for device %s, new rate is %d", u->device_name, rate); pa_log_info("Updating rate for device %s, new rate is %d", u->device_name, rate);
u->source->sample_spec.rate = rate; u->source->sample_spec.rate = rate;
return true; return 0;
} }
return false; return -1;
} }
static void thread_func(void *userdata) { static void thread_func(void *userdata) {

View file

@ -426,7 +426,7 @@ int pa_sink_input_new(
module-suspend-on-idle can resume a sink */ module-suspend-on-idle can resume a sink */
pa_log_info("Trying to change sample rate"); pa_log_info("Trying to change sample rate");
if (pa_sink_update_rate(data->sink, data->sample_spec.rate, pa_sink_input_new_data_is_passthrough(data)) == true) if (pa_sink_update_rate(data->sink, data->sample_spec.rate, pa_sink_input_new_data_is_passthrough(data)) >= 0)
pa_log_info("Rate changed to %u Hz", data->sink->sample_spec.rate); pa_log_info("Rate changed to %u Hz", data->sink->sample_spec.rate);
} }
@ -1829,7 +1829,7 @@ int pa_sink_input_finish_move(pa_sink_input *i, pa_sink *dest, bool save) {
SINK_INPUT_MOVE_FINISH hook */ SINK_INPUT_MOVE_FINISH hook */
pa_log_info("Trying to change sample rate"); pa_log_info("Trying to change sample rate");
if (pa_sink_update_rate(dest, i->sample_spec.rate, pa_sink_input_is_passthrough(i)) == true) if (pa_sink_update_rate(dest, i->sample_spec.rate, pa_sink_input_is_passthrough(i)) >= 0)
pa_log_info("Rate changed to %u Hz", dest->sample_spec.rate); pa_log_info("Rate changed to %u Hz", dest->sample_spec.rate);
} }

View file

@ -1377,8 +1377,8 @@ void pa_sink_render_full(pa_sink *s, size_t length, pa_memchunk *result) {
} }
/* Called from main thread */ /* Called from main thread */
bool pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough) { int pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough) {
bool ret = false; int ret = -1;
uint32_t desired_rate = rate; uint32_t desired_rate = rate;
uint32_t default_rate = s->default_sample_rate; uint32_t default_rate = s->default_sample_rate;
uint32_t alternate_rate = s->alternate_sample_rate; uint32_t alternate_rate = s->alternate_sample_rate;
@ -1387,32 +1387,32 @@ bool pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough) {
bool use_alternate = false; bool use_alternate = false;
if (rate == s->sample_spec.rate) if (rate == s->sample_spec.rate)
return true; return 0;
if (!s->update_rate) if (!s->update_rate)
return false; return -1;
if (PA_UNLIKELY(default_rate == alternate_rate && !passthrough)) { if (PA_UNLIKELY(default_rate == alternate_rate && !passthrough)) {
pa_log_debug("Default and alternate sample rates are the same."); pa_log_debug("Default and alternate sample rates are the same.");
return false; return -1;
} }
if (PA_SINK_IS_RUNNING(s->state)) { if (PA_SINK_IS_RUNNING(s->state)) {
pa_log_info("Cannot update rate, SINK_IS_RUNNING, will keep using %u Hz", pa_log_info("Cannot update rate, SINK_IS_RUNNING, will keep using %u Hz",
s->sample_spec.rate); s->sample_spec.rate);
return false; return -1;
} }
if (s->monitor_source) { if (s->monitor_source) {
if (PA_SOURCE_IS_RUNNING(s->monitor_source->state) == true) { if (PA_SOURCE_IS_RUNNING(s->monitor_source->state) == true) {
pa_log_info("Cannot update rate, monitor source is RUNNING"); pa_log_info("Cannot update rate, monitor source is RUNNING");
return false; return -1;
} }
} }
if (PA_UNLIKELY (desired_rate < 8000 || if (PA_UNLIKELY (desired_rate < 8000 ||
desired_rate > PA_RATE_MAX)) desired_rate > PA_RATE_MAX))
return false; return -1;
if (!passthrough) { if (!passthrough) {
pa_assert((default_rate % 4000 == 0) || (default_rate % 11025 == 0)); pa_assert((default_rate % 4000 == 0) || (default_rate % 11025 == 0));
@ -1436,15 +1436,15 @@ bool pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough) {
} }
if (desired_rate == s->sample_spec.rate) if (desired_rate == s->sample_spec.rate)
return false; return -1;
if (!passthrough && pa_sink_used_by(s) > 0) if (!passthrough && pa_sink_used_by(s) > 0)
return false; return -1;
pa_log_debug("Suspending sink %s due to changing the sample rate.", s->name); pa_log_debug("Suspending sink %s due to changing the sample rate.", s->name);
pa_sink_suspend(s, true, PA_SUSPEND_INTERNAL); pa_sink_suspend(s, true, PA_SUSPEND_INTERNAL);
if (s->update_rate(s, desired_rate) == true) { if (s->update_rate(s, desired_rate) >= 0) {
/* update monitor source as well */ /* update monitor source as well */
if (s->monitor_source && !passthrough) if (s->monitor_source && !passthrough)
pa_source_update_rate(s->monitor_source, desired_rate, false); pa_source_update_rate(s->monitor_source, desired_rate, false);
@ -1455,7 +1455,7 @@ bool pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough) {
pa_sink_input_update_rate(i); pa_sink_input_update_rate(i);
} }
ret = true; ret = 0;
} }
pa_sink_suspend(s, false, PA_SUSPEND_INTERNAL); pa_sink_suspend(s, false, PA_SUSPEND_INTERNAL);

View file

@ -230,7 +230,7 @@ struct pa_sink {
/* Called whenever the sampling frequency shall be changed. Called from /* Called whenever the sampling frequency shall be changed. Called from
* main thread. */ * main thread. */
bool (*update_rate)(pa_sink *s, uint32_t rate); int (*update_rate)(pa_sink *s, uint32_t rate);
/* Contains copies of the above data so that the real-time worker /* Contains copies of the above data so that the real-time worker
* thread can work without access locking */ * thread can work without access locking */
@ -411,7 +411,7 @@ unsigned pa_device_init_priority(pa_proplist *p);
/**** May be called by everyone, from main context */ /**** May be called by everyone, from main context */
bool pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough); int pa_sink_update_rate(pa_sink *s, uint32_t rate, bool passthrough);
void pa_sink_set_latency_offset(pa_sink *s, int64_t offset); void pa_sink_set_latency_offset(pa_sink *s, int64_t offset);
/* The returned value is supposed to be in the time domain of the sound card! */ /* The returned value is supposed to be in the time domain of the sound card! */

View file

@ -366,7 +366,7 @@ int pa_source_output_new(
module-suspend-on-idle can resume a source */ module-suspend-on-idle can resume a source */
pa_log_info("Trying to change sample rate"); pa_log_info("Trying to change sample rate");
if (pa_source_update_rate(data->source, data->sample_spec.rate, pa_source_output_new_data_is_passthrough(data)) == true) if (pa_source_update_rate(data->source, data->sample_spec.rate, pa_source_output_new_data_is_passthrough(data)) >= 0)
pa_log_info("Rate changed to %u Hz", data->source->sample_spec.rate); pa_log_info("Rate changed to %u Hz", data->source->sample_spec.rate);
} }
@ -1449,7 +1449,7 @@ int pa_source_output_finish_move(pa_source_output *o, pa_source *dest, bool save
SOURCE_OUTPUT_MOVE_FINISH hook */ SOURCE_OUTPUT_MOVE_FINISH hook */
pa_log_info("Trying to change sample rate"); pa_log_info("Trying to change sample rate");
if (pa_source_update_rate(dest, o->sample_spec.rate, pa_source_output_is_passthrough(o)) == true) if (pa_source_update_rate(dest, o->sample_spec.rate, pa_source_output_is_passthrough(o)) >= 0)
pa_log_info("Rate changed to %u Hz", dest->sample_spec.rate); pa_log_info("Rate changed to %u Hz", dest->sample_spec.rate);
} }

View file

@ -967,40 +967,40 @@ void pa_source_post_direct(pa_source*s, pa_source_output *o, const pa_memchunk *
} }
/* Called from main thread */ /* Called from main thread */
bool pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough) { int pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough) {
bool ret = false; int ret;
uint32_t desired_rate = rate; uint32_t desired_rate = rate;
uint32_t default_rate = s->default_sample_rate; uint32_t default_rate = s->default_sample_rate;
uint32_t alternate_rate = s->alternate_sample_rate; uint32_t alternate_rate = s->alternate_sample_rate;
bool use_alternate = false; bool use_alternate = false;
if (rate == s->sample_spec.rate) if (rate == s->sample_spec.rate)
return true; return 0;
if (!s->update_rate && !s->monitor_of) if (!s->update_rate && !s->monitor_of)
return false; return -1;
if (PA_UNLIKELY(default_rate == alternate_rate && !passthrough)) { if (PA_UNLIKELY(default_rate == alternate_rate && !passthrough)) {
pa_log_debug("Default and alternate sample rates are the same."); pa_log_debug("Default and alternate sample rates are the same.");
return false; return -1;
} }
if (PA_SOURCE_IS_RUNNING(s->state)) { if (PA_SOURCE_IS_RUNNING(s->state)) {
pa_log_info("Cannot update rate, SOURCE_IS_RUNNING, will keep using %u Hz", pa_log_info("Cannot update rate, SOURCE_IS_RUNNING, will keep using %u Hz",
s->sample_spec.rate); s->sample_spec.rate);
return false; return -1;
} }
if (s->monitor_of) { if (s->monitor_of) {
if (PA_SINK_IS_RUNNING(s->monitor_of->state)) { if (PA_SINK_IS_RUNNING(s->monitor_of->state)) {
pa_log_info("Cannot update rate, this is a monitor source and the sink is running."); pa_log_info("Cannot update rate, this is a monitor source and the sink is running.");
return false; return -1;
} }
} }
if (PA_UNLIKELY (desired_rate < 8000 || if (PA_UNLIKELY (desired_rate < 8000 ||
desired_rate > PA_RATE_MAX)) desired_rate > PA_RATE_MAX))
return false; return -1;
if (!passthrough) { if (!passthrough) {
pa_assert((default_rate % 4000 == 0) || (default_rate % 11025 == 0)); pa_assert((default_rate % 4000 == 0) || (default_rate % 11025 == 0));
@ -1024,10 +1024,10 @@ bool pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough) {
} }
if (desired_rate == s->sample_spec.rate) if (desired_rate == s->sample_spec.rate)
return false; return -1;
if (!passthrough && pa_source_used_by(s) > 0) if (!passthrough && pa_source_used_by(s) > 0)
return false; return -1;
pa_log_debug("Suspending source %s due to changing the sample rate.", s->name); pa_log_debug("Suspending source %s due to changing the sample rate.", s->name);
pa_source_suspend(s, true, PA_SUSPEND_INTERNAL); pa_source_suspend(s, true, PA_SUSPEND_INTERNAL);
@ -1046,7 +1046,7 @@ bool pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough) {
s->sample_spec.rate = desired_rate; s->sample_spec.rate = desired_rate;
ret = pa_sink_update_rate(s->monitor_of, desired_rate, false); ret = pa_sink_update_rate(s->monitor_of, desired_rate, false);
if (!ret) { if (ret < 0) {
/* Changing the sink rate failed, roll back the old rate for /* Changing the sink rate failed, roll back the old rate for
* the monitor source. Why did we set the source rate before * the monitor source. Why did we set the source rate before
* calling pa_sink_update_rate(), you may ask. The reason is * calling pa_sink_update_rate(), you may ask. The reason is
@ -1060,10 +1060,10 @@ bool pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough) {
s->sample_spec.rate = old_rate; s->sample_spec.rate = old_rate;
} }
} else } else
ret = false; ret = -1;
} }
if (ret) { if (ret >= 0) {
uint32_t idx; uint32_t idx;
pa_source_output *o; pa_source_output *o;

View file

@ -187,7 +187,7 @@ struct pa_source {
/* Called whenever the sampling frequency shall be changed. Called from /* Called whenever the sampling frequency shall be changed. Called from
* main thread. */ * main thread. */
bool (*update_rate)(pa_source *s, uint32_t rate); int (*update_rate)(pa_source *s, uint32_t rate);
/* Contains copies of the above data so that the real-time worker /* Contains copies of the above data so that the real-time worker
* thread can work without access locking */ * thread can work without access locking */
@ -382,7 +382,7 @@ bool pa_source_update_proplist(pa_source *s, pa_update_mode_t mode, pa_proplist
int pa_source_set_port(pa_source *s, const char *name, bool save); int pa_source_set_port(pa_source *s, const char *name, bool save);
void pa_source_set_mixer_dirty(pa_source *s, bool is_dirty); void pa_source_set_mixer_dirty(pa_source *s, bool is_dirty);
bool pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough); int pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough);
unsigned pa_source_linked_by(pa_source *s); /* Number of connected streams */ unsigned pa_source_linked_by(pa_source *s); /* Number of connected streams */
unsigned pa_source_used_by(pa_source *s); /* Number of connected streams that are not corked */ unsigned pa_source_used_by(pa_source *s); /* Number of connected streams that are not corked */