mirror of
https://gitlab.freedesktop.org/gstreamer/gstreamer-rs.git
synced 2024-11-23 01:51:06 +00:00
437 lines
14 KiB
Rust
437 lines
14 KiB
Rust
// Take a look at the license at the top of the repository in the LICENSE file.
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use std::str;
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use glib::once_cell::sync::Lazy;
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use glib::translate::{from_glib, IntoGlib};
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#[cfg(feature = "v1_18")]
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pub static AUDIO_FORMATS_ALL: Lazy<Box<[crate::AudioFormat]>> = Lazy::new(|| unsafe {
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let mut len: u32 = 0;
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let mut res = Vec::with_capacity(len as usize);
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let formats = ffi::gst_audio_formats_raw(&mut len);
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for i in 0..len {
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let format = formats.offset(i as isize);
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res.push(from_glib(*format));
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}
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res.into_boxed_slice()
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});
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#[cfg(not(feature = "v1_18"))]
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pub static AUDIO_FORMATS_ALL: Lazy<Box<[crate::AudioFormat]>> = Lazy::new(|| {
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#[cfg(target_endian = "little")]
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{
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Box::new([
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crate::AudioFormat::F64le,
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crate::AudioFormat::F64be,
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crate::AudioFormat::F32le,
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crate::AudioFormat::F32be,
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crate::AudioFormat::S32le,
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crate::AudioFormat::S32be,
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crate::AudioFormat::U32le,
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crate::AudioFormat::U32be,
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crate::AudioFormat::S2432le,
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crate::AudioFormat::S2432be,
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crate::AudioFormat::U2432le,
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crate::AudioFormat::U2432be,
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crate::AudioFormat::S24le,
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crate::AudioFormat::S24be,
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crate::AudioFormat::U24le,
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crate::AudioFormat::U24be,
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crate::AudioFormat::S20le,
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crate::AudioFormat::S20be,
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crate::AudioFormat::U20le,
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crate::AudioFormat::U20be,
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crate::AudioFormat::S18le,
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crate::AudioFormat::S18be,
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crate::AudioFormat::U18le,
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crate::AudioFormat::U18be,
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crate::AudioFormat::S16le,
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crate::AudioFormat::S16be,
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crate::AudioFormat::U16le,
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crate::AudioFormat::U16be,
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crate::AudioFormat::S8,
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crate::AudioFormat::U8,
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])
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}
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#[cfg(target_endian = "big")]
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{
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Box::new([
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crate::AudioFormat::F64be,
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crate::AudioFormat::F64le,
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crate::AudioFormat::F32be,
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crate::AudioFormat::F32le,
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crate::AudioFormat::S32be,
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crate::AudioFormat::S32le,
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crate::AudioFormat::U32be,
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crate::AudioFormat::U32le,
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crate::AudioFormat::S2432be,
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crate::AudioFormat::S2432le,
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crate::AudioFormat::U2432be,
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crate::AudioFormat::U2432le,
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crate::AudioFormat::S24be,
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crate::AudioFormat::S24le,
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crate::AudioFormat::U24be,
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crate::AudioFormat::U24le,
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crate::AudioFormat::S20be,
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crate::AudioFormat::S20le,
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crate::AudioFormat::U20be,
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crate::AudioFormat::U20le,
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crate::AudioFormat::S18be,
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crate::AudioFormat::S18le,
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crate::AudioFormat::U18be,
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crate::AudioFormat::U18le,
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crate::AudioFormat::S16be,
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crate::AudioFormat::S16le,
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crate::AudioFormat::U16be,
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crate::AudioFormat::U16le,
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crate::AudioFormat::S8,
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crate::AudioFormat::U8,
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])
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}
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});
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impl crate::AudioFormat {
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#[doc(alias = "gst_audio_format_build_integer")]
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pub fn build_integer(
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sign: bool,
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endianness: crate::AudioEndianness,
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width: i32,
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depth: i32,
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) -> Self {
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assert_initialized_main_thread!();
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unsafe {
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from_glib(ffi::gst_audio_format_build_integer(
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sign.into_glib(),
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endianness.into_glib(),
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width,
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depth,
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))
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}
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}
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#[doc(alias = "gst_audio_format_to_string")]
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pub fn to_str<'a>(self) -> &'a glib::GStr {
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if self == Self::Unknown {
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return glib::gstr!("UNKNOWN");
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}
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unsafe {
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glib::GStr::from_ptr(
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ffi::gst_audio_format_to_string(self.into_glib())
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.as_ref()
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.expect("gst_audio_format_to_string returned NULL"),
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)
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}
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}
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pub fn iter_raw() -> AudioFormatIterator {
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AudioFormatIterator::default()
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}
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}
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impl str::FromStr for crate::AudioFormat {
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type Err = glib::BoolError;
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fn from_str(s: &str) -> Result<Self, Self::Err> {
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skip_assert_initialized!();
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let fmt = Self::from_string(s);
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if fmt == Self::Unknown {
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Err(glib::bool_error!(
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"Failed to parse audio format from string"
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))
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} else {
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Ok(fmt)
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}
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}
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}
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impl PartialOrd for crate::AudioFormat {
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#[inline]
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fn partial_cmp(&self, other: &Self) -> Option<std::cmp::Ordering> {
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Some(self.cmp(other))
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}
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}
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impl Ord for crate::AudioFormat {
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#[inline]
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fn cmp(&self, other: &Self) -> std::cmp::Ordering {
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crate::AudioFormatInfo::from_format(*self).cmp(&crate::AudioFormatInfo::from_format(*other))
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}
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}
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pub const AUDIO_FORMAT_UNKNOWN: crate::AudioFormat = crate::AudioFormat::Unknown;
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pub const AUDIO_FORMAT_ENCODED: crate::AudioFormat = crate::AudioFormat::Encoded;
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pub const AUDIO_FORMAT_S8: crate::AudioFormat = crate::AudioFormat::S8;
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pub const AUDIO_FORMAT_U8: crate::AudioFormat = crate::AudioFormat::U8;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_S16: crate::AudioFormat = crate::AudioFormat::S16be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_U16: crate::AudioFormat = crate::AudioFormat::U16be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_S2432: crate::AudioFormat = crate::AudioFormat::S2432be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_U2432: crate::AudioFormat = crate::AudioFormat::U2432be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_S32: crate::AudioFormat = crate::AudioFormat::S32be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_U32: crate::AudioFormat = crate::AudioFormat::U32be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_S24: crate::AudioFormat = crate::AudioFormat::S24be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_U24: crate::AudioFormat = crate::AudioFormat::U24be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_S20: crate::AudioFormat = crate::AudioFormat::S20be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_U20: crate::AudioFormat = crate::AudioFormat::U20be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_S18: crate::AudioFormat = crate::AudioFormat::S18be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_U18: crate::AudioFormat = crate::AudioFormat::U18be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_F32: crate::AudioFormat = crate::AudioFormat::F32be;
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#[cfg(target_endian = "big")]
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pub const AUDIO_FORMAT_F64: crate::AudioFormat = crate::AudioFormat::F64be;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_S16: crate::AudioFormat = crate::AudioFormat::S16le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_U16: crate::AudioFormat = crate::AudioFormat::U16le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_S2432: crate::AudioFormat = crate::AudioFormat::S2432le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_U2432: crate::AudioFormat = crate::AudioFormat::U2432le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_S32: crate::AudioFormat = crate::AudioFormat::S32le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_U32: crate::AudioFormat = crate::AudioFormat::U32le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_S24: crate::AudioFormat = crate::AudioFormat::S24le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_U24: crate::AudioFormat = crate::AudioFormat::U24le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_S20: crate::AudioFormat = crate::AudioFormat::S20le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_U20: crate::AudioFormat = crate::AudioFormat::U20le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_S18: crate::AudioFormat = crate::AudioFormat::S18le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_U18: crate::AudioFormat = crate::AudioFormat::U18le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_F32: crate::AudioFormat = crate::AudioFormat::F32le;
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#[cfg(target_endian = "little")]
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pub const AUDIO_FORMAT_F64: crate::AudioFormat = crate::AudioFormat::F64le;
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pub struct AudioFormatIterator {
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idx: usize,
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len: usize,
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}
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impl Default for AudioFormatIterator {
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fn default() -> Self {
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Self {
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idx: 0,
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len: AUDIO_FORMATS_ALL.len(),
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}
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}
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}
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impl Iterator for AudioFormatIterator {
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type Item = crate::AudioFormat;
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fn next(&mut self) -> Option<Self::Item> {
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if self.idx >= self.len {
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None
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} else {
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let fmt = AUDIO_FORMATS_ALL[self.idx];
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self.idx += 1;
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Some(fmt)
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}
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}
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fn size_hint(&self) -> (usize, Option<usize>) {
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let remaining = self.len - self.idx;
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(remaining, Some(remaining))
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}
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fn count(self) -> usize {
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self.len - self.idx
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}
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fn nth(&mut self, n: usize) -> Option<Self::Item> {
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let (end, overflow) = self.idx.overflowing_add(n);
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if end >= self.len || overflow {
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self.idx = self.len;
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None
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} else {
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self.idx = end + 1;
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Some(AUDIO_FORMATS_ALL[end])
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}
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}
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fn last(self) -> Option<Self::Item> {
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if self.idx == self.len {
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None
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} else {
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Some(AUDIO_FORMATS_ALL[self.len - 1])
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}
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}
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}
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impl ExactSizeIterator for AudioFormatIterator {}
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impl std::iter::FusedIterator for AudioFormatIterator {}
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impl DoubleEndedIterator for AudioFormatIterator {
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fn next_back(&mut self) -> Option<Self::Item> {
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if self.idx >= self.len {
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None
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} else {
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self.len -= 1;
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let fmt = AUDIO_FORMATS_ALL[self.len];
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Some(fmt)
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}
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}
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fn nth_back(&mut self, n: usize) -> Option<Self::Item> {
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let (end, overflow) = self.len.overflowing_sub(n);
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if end <= self.idx || overflow {
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self.idx = self.len;
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None
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} else {
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self.len = end - 1;
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let fmt = AUDIO_FORMATS_ALL[self.len];
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Some(fmt)
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}
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}
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}
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pub trait AudioFormatIteratorExt {
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fn into_audio_caps(
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self,
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layout: crate::AudioLayout,
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) -> Option<crate::AudioCapsBuilder<gst::caps::NoFeature>>;
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}
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impl<T> AudioFormatIteratorExt for T
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where
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T: Iterator<Item = crate::AudioFormat>,
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{
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fn into_audio_caps(
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self,
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layout: crate::AudioLayout,
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) -> Option<crate::AudioCapsBuilder<gst::caps::NoFeature>> {
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let formats: Vec<crate::AudioFormat> = self.collect();
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if !formats.is_empty() {
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Some(crate::functions::audio_make_raw_caps(&formats, layout))
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} else {
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None
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}
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}
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}
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pub trait AudioFormatIteratorExtRef {
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fn into_audio_caps(
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self,
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layout: crate::AudioLayout,
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) -> Option<crate::AudioCapsBuilder<gst::caps::NoFeature>>;
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}
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impl<'a, T> AudioFormatIteratorExtRef for T
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where
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T: Iterator<Item = &'a crate::AudioFormat>,
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{
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fn into_audio_caps(
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self,
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layout: crate::AudioLayout,
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) -> Option<crate::AudioCapsBuilder<gst::caps::NoFeature>> {
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let formats: Vec<crate::AudioFormat> = self.copied().collect();
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if !formats.is_empty() {
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Some(crate::functions::audio_make_raw_caps(&formats, layout))
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} else {
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None
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}
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}
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}
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#[cfg(test)]
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mod tests {
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use itertools::Itertools;
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#[test]
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fn test_display() {
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gst::init().unwrap();
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format!("{}", crate::AudioFormat::S16be);
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}
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#[test]
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fn iter() {
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use super::*;
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gst::init().unwrap();
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assert!(crate::AudioFormat::iter_raw().count() > 0);
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assert_eq!(
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crate::AudioFormat::iter_raw().count(),
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crate::AudioFormat::iter_raw().len()
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);
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let mut i = crate::AudioFormat::iter_raw();
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let mut count = 0;
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loop {
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if i.next().is_none() {
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break;
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}
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count += 1;
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if i.next_back().is_none() {
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break;
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}
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count += 1;
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}
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assert_eq!(count, crate::AudioFormat::iter_raw().len());
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assert!(crate::AudioFormat::iter_raw().any(|f| f == crate::AudioFormat::F64be));
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assert!(!crate::AudioFormat::iter_raw().any(|f| f == crate::AudioFormat::Encoded));
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let caps = crate::AudioFormat::iter_raw().into_audio_caps(crate::AudioLayout::Interleaved);
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assert!(caps.is_some());
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let caps = crate::AudioFormat::iter_raw()
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.filter(|f| crate::AudioFormatInfo::from_format(*f).is_little_endian())
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.into_audio_caps(crate::AudioLayout::Interleaved);
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assert!(caps.is_some());
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let caps = crate::AudioFormat::iter_raw()
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.skip(1000)
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.into_audio_caps(crate::AudioLayout::Interleaved);
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assert!(caps.is_none());
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let caps = [crate::AudioFormat::S16le, crate::AudioFormat::S16be]
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.iter()
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.into_audio_caps(crate::AudioLayout::Interleaved)
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.unwrap()
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.build();
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assert_eq!(caps.to_string(), "audio/x-raw, rate=(int)[ 1, 2147483647 ], channels=(int)[ 1, 2147483647 ], layout=(string)interleaved, format=(string){ S16LE, S16BE }");
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}
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#[test]
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fn sort() {
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gst::init().unwrap();
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assert!(
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crate::AudioFormatInfo::from_format(crate::AudioFormat::F64be)
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> crate::AudioFormatInfo::from_format(crate::AudioFormat::U8)
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);
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assert!(crate::AudioFormat::S20be > crate::AudioFormat::S18be);
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let sorted: Vec<crate::AudioFormat> =
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crate::AudioFormat::iter_raw().sorted().rev().collect();
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// FIXME: use is_sorted_by() once API is in stable
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assert_eq!(
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sorted,
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crate::AudioFormat::iter_raw().collect::<Vec<crate::AudioFormat>>()
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);
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}
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}
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