Remove pa_bool_t and replace it with bool.

commands used for this (executed from the pulseaudio/src directory):
    find . -regex '\(.*\.[hc]\|.*\.cc\|.*\.m4\)' -not -name 'macro.h' \
        -a -not -name 'reserve.[ch]' -a -not -name 'reserve-monitor.[ch]' \
        -a -not -name 'glib-mainloop.c' -a -not -name 'gkt-test.c' \
        -a -not -name 'glib-mainloop.c' -a -not -name 'gkt-test.c' \
        -a -not -name 'poll-win32.c' -a -not -name 'thread-win32.c' \
        -a -not -name 'dllmain.c' -a -not -name 'gconf-helper.c' \
        -exec sed -i -e 's/\bpa_bool_t\b/bool/g' \
        -e 's/\bTRUE\b/true/g' -e 's/\bFALSE\b/false/g' {} \;

and:
    sed -i -e '181,194!s/\bpa_bool_t\b/bool/' \
        -e '181,194!s/\bTRUE\b/true/' -e \
        '181,194!s/\bFALSE\b/false/' pulsecore/macro.h
This commit is contained in:
poljar (Damir Jelić) 2013-06-27 19:28:09 +02:00 committed by Tanu Kaskinen
parent e9822bfcb0
commit d806b19714
288 changed files with 3360 additions and 3360 deletions

View file

@ -51,7 +51,7 @@ typedef struct pa_source_volume_change pa_source_volume_change;
#define PA_MAX_OUTPUTS_PER_SOURCE 32
/* Returns true if source is linked: registered and accessible from client side. */
static inline pa_bool_t PA_SOURCE_IS_LINKED(pa_source_state_t x) {
static inline bool PA_SOURCE_IS_LINKED(pa_source_state_t x) {
return x == PA_SOURCE_RUNNING || x == PA_SOURCE_IDLE || x == PA_SOURCE_SUSPENDED;
}
@ -93,17 +93,17 @@ struct pa_source {
pa_cvolume real_volume; /* The volume that the hardware is configured to */
pa_cvolume soft_volume; /* The internal software volume we apply to all PCM data while it passes through */
pa_bool_t muted:1;
bool muted:1;
pa_bool_t refresh_volume:1;
pa_bool_t refresh_muted:1;
pa_bool_t save_port:1;
pa_bool_t save_volume:1;
pa_bool_t save_muted:1;
bool refresh_volume:1;
bool refresh_muted:1;
bool save_port:1;
bool save_volume:1;
bool save_muted:1;
/* Saved volume state while we're in passthrough mode */
pa_cvolume saved_volume;
pa_bool_t saved_save_volume:1;
bool saved_save_volume:1;
pa_asyncmsgq *asyncmsgq;
@ -126,7 +126,7 @@ struct pa_source {
/* Called when the volume is queried. Called from main loop
* context. If this is NULL a PA_SOURCE_MESSAGE_GET_VOLUME message
* will be sent to the IO thread instead. If refresh_volume is
* FALSE neither this function is called nor a message is sent.
* false neither this function is called nor a message is sent.
*
* You must use the function pa_source_set_get_volume_callback() to
* set this callback. */
@ -159,7 +159,7 @@ struct pa_source {
/* Called when the mute setting is queried. Called from main loop
* context. If this is NULL a PA_SOURCE_MESSAGE_GET_MUTE message
* will be sent to the IO thread instead. If refresh_mute is
* FALSE neither this function is called nor a message is sent.
* false neither this function is called nor a message is sent.
*
* You must use the function pa_source_set_get_mute_callback() to
* set this callback. */
@ -187,7 +187,7 @@ struct pa_source {
/* Called whenever the sampling frequency shall be changed. Called from
* main thread. */
pa_bool_t (*update_rate)(pa_source *s, uint32_t rate);
bool (*update_rate)(pa_source *s, uint32_t rate);
/* Contains copies of the above data so that the real-time worker
* thread can work without access locking */
@ -198,9 +198,9 @@ struct pa_source {
pa_rtpoll *rtpoll;
pa_cvolume soft_volume;
pa_bool_t soft_muted:1;
bool soft_muted:1;
pa_bool_t requested_latency_valid:1;
bool requested_latency_valid:1;
pa_usec_t requested_latency;
/* Then number of bytes this source will be rewound for at
@ -281,19 +281,19 @@ typedef struct pa_source_new_data {
pa_channel_map channel_map;
uint32_t alternate_sample_rate;
pa_cvolume volume;
pa_bool_t muted:1;
bool muted:1;
pa_bool_t volume_is_set:1;
pa_bool_t muted_is_set:1;
pa_bool_t sample_spec_is_set:1;
pa_bool_t channel_map_is_set:1;
pa_bool_t alternate_sample_rate_is_set:1;
bool volume_is_set:1;
bool muted_is_set:1;
bool sample_spec_is_set:1;
bool channel_map_is_set:1;
bool alternate_sample_rate_is_set:1;
pa_bool_t namereg_fail:1;
bool namereg_fail:1;
pa_bool_t save_port:1;
pa_bool_t save_volume:1;
pa_bool_t save_muted:1;
bool save_port:1;
bool save_volume:1;
bool save_muted:1;
} pa_source_new_data;
pa_source_new_data* pa_source_new_data_init(pa_source_new_data *data);
@ -302,7 +302,7 @@ void pa_source_new_data_set_sample_spec(pa_source_new_data *data, const pa_sampl
void pa_source_new_data_set_channel_map(pa_source_new_data *data, const pa_channel_map *map);
void pa_source_new_data_set_alternate_sample_rate(pa_source_new_data *data, const uint32_t alternate_sample_rate);
void pa_source_new_data_set_volume(pa_source_new_data *data, const pa_cvolume *volume);
void pa_source_new_data_set_muted(pa_source_new_data *data, pa_bool_t mute);
void pa_source_new_data_set_muted(pa_source_new_data *data, bool mute);
void pa_source_new_data_set_port(pa_source_new_data *data, const char *port);
void pa_source_new_data_done(pa_source_new_data *data);
@ -318,7 +318,7 @@ void pa_source_set_set_volume_callback(pa_source *s, pa_source_cb_t cb);
void pa_source_set_write_volume_callback(pa_source *s, pa_source_cb_t cb);
void pa_source_set_get_mute_callback(pa_source *s, pa_source_cb_t cb);
void pa_source_set_set_mute_callback(pa_source *s, pa_source_cb_t cb);
void pa_source_enable_decibel_volume(pa_source *s, pa_bool_t enable);
void pa_source_enable_decibel_volume(pa_source *s, bool enable);
void pa_source_put(pa_source *s);
void pa_source_unlink(pa_source *s);
@ -336,7 +336,7 @@ void pa_source_attach(pa_source *s);
void pa_source_set_soft_volume(pa_source *s, const pa_cvolume *volume);
void pa_source_volume_changed(pa_source *s, const pa_cvolume *new_volume);
void pa_source_mute_changed(pa_source *s, pa_bool_t new_muted);
void pa_source_mute_changed(pa_source *s, bool new_muted);
int pa_source_sync_suspend(pa_source *s);
@ -355,34 +355,34 @@ pa_usec_t pa_source_get_fixed_latency(pa_source *s);
size_t pa_source_get_max_rewind(pa_source *s);
int pa_source_update_status(pa_source*s);
int pa_source_suspend(pa_source *s, pa_bool_t suspend, pa_suspend_cause_t cause);
int pa_source_suspend_all(pa_core *c, pa_bool_t suspend, pa_suspend_cause_t cause);
int pa_source_suspend(pa_source *s, bool suspend, pa_suspend_cause_t cause);
int pa_source_suspend_all(pa_core *c, bool suspend, pa_suspend_cause_t cause);
/* Use this instead of checking s->flags & PA_SOURCE_FLAT_VOLUME directly. */
pa_bool_t pa_source_flat_volume_enabled(pa_source *s);
bool pa_source_flat_volume_enabled(pa_source *s);
/* Get the master source when sharing volumes */
pa_source *pa_source_get_master(pa_source *s);
/* Is the source in passthrough mode? (that is, is this a monitor source for a sink
* that has a passthrough sink input connected to it. */
pa_bool_t pa_source_is_passthrough(pa_source *s);
bool pa_source_is_passthrough(pa_source *s);
/* These should be called when a source enters/leaves passthrough mode */
void pa_source_enter_passthrough(pa_source *s);
void pa_source_leave_passthrough(pa_source *s);
void pa_source_set_volume(pa_source *source, const pa_cvolume *volume, pa_bool_t sendmsg, pa_bool_t save);
const pa_cvolume *pa_source_get_volume(pa_source *source, pa_bool_t force_refresh);
void pa_source_set_volume(pa_source *source, const pa_cvolume *volume, bool sendmsg, bool save);
const pa_cvolume *pa_source_get_volume(pa_source *source, bool force_refresh);
void pa_source_set_mute(pa_source *source, pa_bool_t mute, pa_bool_t save);
pa_bool_t pa_source_get_mute(pa_source *source, pa_bool_t force_refresh);
void pa_source_set_mute(pa_source *source, bool mute, bool save);
bool pa_source_get_mute(pa_source *source, bool force_refresh);
pa_bool_t pa_source_update_proplist(pa_source *s, pa_update_mode_t mode, pa_proplist *p);
bool pa_source_update_proplist(pa_source *s, pa_update_mode_t mode, pa_proplist *p);
int pa_source_set_port(pa_source *s, const char *name, pa_bool_t save);
void pa_source_set_mixer_dirty(pa_source *s, pa_bool_t is_dirty);
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);
pa_bool_t pa_source_update_rate(pa_source *s, uint32_t rate, pa_bool_t passthrough);
bool 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_used_by(pa_source *s); /* Number of connected streams that are not corked */
@ -391,11 +391,11 @@ unsigned pa_source_check_suspend(pa_source *s); /* Returns how many streams are
/* Moves all inputs away, and stores them in pa_queue */
pa_queue *pa_source_move_all_start(pa_source *s, pa_queue *q);
void pa_source_move_all_finish(pa_source *s, pa_queue *q, pa_bool_t save);
void pa_source_move_all_finish(pa_source *s, pa_queue *q, bool save);
void pa_source_move_all_fail(pa_queue *q);
pa_idxset* pa_source_get_formats(pa_source *s);
pa_bool_t pa_source_check_format(pa_source *s, pa_format_info *f);
bool pa_source_check_format(pa_source *s, pa_format_info *f);
pa_idxset* pa_source_check_formats(pa_source *s, pa_idxset *in_formats);
/*** To be called exclusively by the source driver, from IO context */
@ -418,11 +418,11 @@ void pa_source_set_fixed_latency_within_thread(pa_source *s, pa_usec_t latency);
void pa_source_update_volume_and_mute(pa_source *s);
pa_bool_t pa_source_volume_change_apply(pa_source *s, pa_usec_t *usec_to_next);
bool pa_source_volume_change_apply(pa_source *s, pa_usec_t *usec_to_next);
/*** To be called exclusively by source output drivers, from IO context */
void pa_source_invalidate_requested_latency(pa_source *s, pa_bool_t dynamic);
void pa_source_invalidate_requested_latency(pa_source *s, bool dynamic);
pa_usec_t pa_source_get_latency_within_thread(pa_source *s);
#define pa_source_assert_io_context(s) \