forked from mirrors/gstreamer-rs
314 lines
8.6 KiB
Rust
314 lines
8.6 KiB
Rust
// Copyright (C) 2017 Sebastian Dröge <sebastian@centricular.com>
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//
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// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
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// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
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// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
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// option. This file may not be copied, modified, or distributed
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// except according to those terms.
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use ffi;
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use AudioChannelPosition;
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use std::mem;
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use glib;
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use glib::translate::{from_glib, ToGlib};
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use gst;
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use gst::MiniObject;
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use array_init;
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impl AudioChannelPosition {
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pub fn to_mask(self) -> u64 {
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unsafe {
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let val = mem::transmute::<ffi::GstAudioChannelPosition, u32>(self.to_glib());
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1 << val
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}
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}
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pub fn positions_to_mask(positions: &[AudioChannelPosition], force_order: bool) -> Option<u64> {
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assert_initialized_main_thread!();
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let len = positions.len();
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if len > 64 {
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return None;
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}
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let positions_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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positions[i].to_glib()
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}
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});
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unsafe {
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let mut mask = mem::uninitialized();
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let valid: bool = from_glib(ffi::gst_audio_channel_positions_to_mask(
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positions_raw.as_ptr() as *mut _,
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len as i32,
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force_order.to_glib(),
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&mut mask,
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));
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if valid {
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Some(mask)
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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 fn positions_from_mask(
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mask: u64,
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positions: &mut [AudioChannelPosition],
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) -> Result<(), glib::BoolError> {
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assert_initialized_main_thread!();
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if positions.len() > 64 {
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return Err(glib_bool_error!("Invalid number of channels"));
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}
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let len = positions.len();
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let mut positions_raw: [ffi::GstAudioChannelPosition; 64] =
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[ffi::GST_AUDIO_CHANNEL_POSITION_INVALID; 64];
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let valid: bool = unsafe {
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from_glib(ffi::gst_audio_channel_positions_from_mask(
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len as i32,
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mask,
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positions_raw.as_mut_ptr(),
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))
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};
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if valid {
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for (d, s) in positions.iter_mut().zip(positions_raw.iter()) {
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*d = from_glib(*s);
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}
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Ok(())
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} else {
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Err(glib_bool_error!(
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"Couldn't convert channel positions to mask",
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))
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}
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}
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pub fn positions_to_valid_order(
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positions: &mut [AudioChannelPosition],
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) -> Result<(), glib::BoolError> {
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assert_initialized_main_thread!();
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if positions.len() > 64 {
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return Err(glib_bool_error!("Invalid number of channels"));
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}
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let len = positions.len();
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let mut positions_raw: [ffi::GstAudioChannelPosition; 64] =
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array_init::array_init_copy(|i| {
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if i >= len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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positions[i].to_glib()
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}
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});
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let valid: bool = unsafe {
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from_glib(ffi::gst_audio_channel_positions_to_valid_order(
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positions_raw.as_mut_ptr(),
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len as i32,
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))
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};
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if valid {
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for (d, s) in positions.iter_mut().zip(positions_raw.iter()) {
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*d = from_glib(*s);
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}
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Ok(())
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} else {
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Err(glib_bool_error!(
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"Couldn't convert channel positions to mask",
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))
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}
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}
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pub fn get_fallback_mask(channels: u32) -> u64 {
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assert_initialized_main_thread!();
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unsafe { ffi::gst_audio_channel_get_fallback_mask(channels as i32) }
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}
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pub fn check_valid_channel_positions(
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positions: &[::AudioChannelPosition],
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force_order: bool,
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) -> bool {
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assert_initialized_main_thread!();
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if positions.len() > 64 {
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return false;
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}
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let len = positions.len();
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let positions_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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positions[i].to_glib()
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}
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});
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unsafe {
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from_glib(ffi::gst_audio_check_valid_channel_positions(
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positions_raw.as_ptr() as *mut _,
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len as i32,
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force_order.to_glib(),
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))
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}
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}
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}
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pub fn buffer_reorder_channels(
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buffer: &mut gst::BufferRef,
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format: ::AudioFormat,
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channels: u32,
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from: &[AudioChannelPosition],
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to: &[AudioChannelPosition],
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) -> Result<(), glib::BoolError> {
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assert_initialized_main_thread!();
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if from.len() != to.len() || from.len() > 64 {
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return Err(glib_bool_error!("Invalid number of channels"));
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}
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let from_len = from.len();
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let to_len = to.len();
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let from_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= from_len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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from[i].to_glib()
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}
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});
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let to_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= to_len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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to[i].to_glib()
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}
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});
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let valid: bool = unsafe {
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from_glib(ffi::gst_audio_buffer_reorder_channels(
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buffer.as_mut_ptr(),
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format.to_glib(),
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channels as i32,
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from_raw.as_ptr() as *mut _,
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to_raw.as_ptr() as *mut _,
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))
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};
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if valid {
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Ok(())
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} else {
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Err(glib_bool_error!("Failed to reorder channels"))
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}
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}
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pub fn reorder_channels(
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data: &mut [u8],
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format: ::AudioFormat,
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channels: u32,
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from: &[AudioChannelPosition],
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to: &[AudioChannelPosition],
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) -> Result<(), glib::BoolError> {
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assert_initialized_main_thread!();
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if from.len() != to.len() || from.len() > 64 {
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return Err(glib_bool_error!("Invalid number of channels"));
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}
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let from_len = from.len();
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let to_len = to.len();
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let from_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= from_len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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from[i].to_glib()
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}
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});
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let to_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= to_len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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to[i].to_glib()
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}
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});
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let valid: bool = unsafe {
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from_glib(ffi::gst_audio_reorder_channels(
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data.as_mut_ptr() as *mut _,
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data.len(),
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format.to_glib(),
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channels as i32,
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from_raw.as_ptr() as *mut _,
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to_raw.as_ptr() as *mut _,
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))
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};
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if valid {
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Ok(())
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} else {
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Err(glib_bool_error!("Failed to reorder channels"))
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}
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}
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pub fn get_channel_reorder_map(
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from: &[AudioChannelPosition],
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to: &[AudioChannelPosition],
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reorder_map: &mut [usize],
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) -> Result<(), glib::BoolError> {
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assert_initialized_main_thread!();
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if from.len() != to.len() || from.len() != reorder_map.len() || from.len() > 64 {
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return Err(glib_bool_error!("Invalid number of channels"));
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}
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let from_len = from.len();
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let to_len = to.len();
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let from_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= from_len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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from[i].to_glib()
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}
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});
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let to_raw: [ffi::GstAudioChannelPosition; 64] = array_init::array_init_copy(|i| {
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if i >= to_len as usize {
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ffi::GST_AUDIO_CHANNEL_POSITION_INVALID
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} else {
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to[i].to_glib()
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}
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});
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let mut reorder_map_raw = [0i32, 64];
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let valid: bool = unsafe {
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from_glib(ffi::gst_audio_get_channel_reorder_map(
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from_len as i32,
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from_raw.as_ptr() as *mut _,
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to_raw.as_ptr() as *mut _,
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reorder_map_raw.as_mut_ptr(),
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))
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};
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if valid {
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for (d, s) in reorder_map.iter_mut().zip(reorder_map_raw.iter()) {
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*d = *s as usize;
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}
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Ok(())
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} else {
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Err(glib_bool_error!("Failed to reorder channels"))
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}
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}
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