refactor: decompose oversized modules into directory form (avhw + state + cap_portal + state_portal + webrtc + bench bins) #26
@@ -63,6 +63,8 @@ pub use types::{
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BitrateCommand, CpuNv12Frame, EncodeOutcome, EncodeStages, EncodedH264Frame, ResolutionChange,
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SwEncodeTiming,
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};
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#[allow(unused_imports)]
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pub use util::av_err_to_string;
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pub(crate) use util::ff_err;
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// ---------------------------------------------------------------------------
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+1
-1
@@ -1,7 +1,7 @@
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use ffmpeg_next::ffi;
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/// Convert an FFmpeg error code to a human-readable string.
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pub(crate) fn av_err_to_string(err: i32) -> String {
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pub fn av_err_to_string(err: i32) -> String {
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let mut buf = vec![0u8; 128];
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// SAFETY: buf points to 128 writable bytes and lives for the duration of
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// av_strerror.
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@@ -0,0 +1,76 @@
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use std::time::Instant;
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use anyhow::{bail, Result};
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use ffmpeg_next as ff;
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use ffmpeg_next::ffi;
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use ffmpeg_next::packet::Mut;
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use wl_webrtc::cap_portal::{CapPortal, PwCtrlEvent};
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pub fn receive_first_frame(cap: &CapPortal) -> Result<wl_webrtc::cap_portal::PwDmaBufFrame> {
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// Drain-and-wait loop that mirrors production's repeated-poll semantics
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// (state_portal.rs::poll_and_encode driven by main.rs's outer loop), but with
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// a single bounded 10s total deadline appropriate for a bench tool. Unlike a
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// single 10s blocking wait, this loop actually iterates: each turn drains ALL
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// pending control events (the ctrl channel is bounded to 8 — a single
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// if-let would silently miss backlog) and then waits a short slice for a
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// frame, so StreamEnded/Error arriving mid-wait are observed within ~200ms.
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const TOTAL_DEADLINE: std::time::Duration = std::time::Duration::from_secs(10);
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const WAIT_SLICE: std::time::Duration = std::time::Duration::from_millis(200);
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let deadline = Instant::now() + TOTAL_DEADLINE;
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loop {
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while let Ok(ctrl) = cap.event_receiver().try_recv() {
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match ctrl {
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PwCtrlEvent::StreamEnded => bail!("PipeWire stream ended before first frame"),
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PwCtrlEvent::FormatChanged { .. } => {}
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PwCtrlEvent::Error(e) => bail!("PipeWire error: {e}"),
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}
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}
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let remaining = match deadline.checked_duration_since(Instant::now()) {
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Some(r) if !r.is_zero() => r,
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_ => bail!("Timeout waiting for first frame (10s)"),
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};
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let slice = remaining.min(WAIT_SLICE);
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match cap.frame_receiver().recv_timeout(slice) {
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Ok(frame) => return Ok(frame),
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Err(crossbeam_channel::RecvTimeoutError::Timeout) => continue,
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Err(crossbeam_channel::RecvTimeoutError::Disconnected) => {
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bail!("PipeWire frame channel disconnected");
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}
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}
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}
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}
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pub fn drain_encoder(
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enc_video: &mut ff::encoder::video::Video,
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octx: &mut ff::format::context::Output,
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) -> Result<()> {
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loop {
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let mut pkt = ff::Packet::empty();
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// SAFETY: enc_video is the opened encoder; pkt is an empty Packet whose
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// inner AVPacket pointer is valid. avcodec_receive_packet fills pkt with
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// the next encoded packet, or returns EAGAIN/EOF when drained.
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let ret = unsafe { ffi::avcodec_receive_packet(enc_video.as_mut_ptr(), pkt.as_mut_ptr()) };
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if ret < 0 {
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if ret == ffi::AVERROR(ffi::EAGAIN) || ret == ffi::AVERROR_EOF {
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break;
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}
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eprintln!("avcodec_receive_packet failed: {ret}");
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break;
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}
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let enc_tb = enc_video.time_base();
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// SAFETY: octx.as_ptr() is a valid AVFormatContext; streams is a NULL-terminated
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// array of AVStream*. We index [0] which exists because we created exactly one
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// stream in setup. Reading time_base is a plain AVRational field access.
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let stream_tb = unsafe {
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let streams = (*octx.as_ptr()).streams;
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let st = *streams.add(0);
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ff::Rational::from((*st).time_base)
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};
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pkt.rescale_ts(enc_tb, stream_tb);
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pkt.set_stream(0);
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pkt.write_interleaved(octx)
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.map_err(|e| anyhow::anyhow!("write packet failed: {e}"))?;
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}
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Ok(())
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}
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@@ -15,11 +15,13 @@ use clap::Parser;
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use ffmpeg_next as ff;
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use ffmpeg_next::ffi;
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use ffmpeg_next::packet::Mut;
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use wl_webrtc::args::Args;
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use wl_webrtc::cap_portal::{CapPortal, PwCtrlEvent};
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#[path = "common/mod.rs"]
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mod common;
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#[derive(Parser, Debug)]
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#[command(
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name = "sw_encode_bench",
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@@ -61,40 +63,6 @@ fn pix_fmt(p: ff::format::Pixel) -> ffi::AVPixelFormat {
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Into::<ffi::AVPixelFormat>::into(p)
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}
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fn receive_first_frame(cap: &CapPortal) -> Result<wl_webrtc::cap_portal::PwDmaBufFrame> {
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// Drain-and-wait loop that mirrors production's repeated-poll semantics
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// (state_portal.rs::poll_and_encode driven by main.rs's outer loop), but with
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// a single bounded 10s total deadline appropriate for a bench tool. Unlike a
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// single 10s blocking wait, this loop actually iterates: each turn drains ALL
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// pending control events (the ctrl channel is bounded to 8 — a single
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// if-let would silently miss backlog) and then waits a short slice for a
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// frame, so StreamEnded/Error arriving mid-wait are observed within ~200ms.
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const TOTAL_DEADLINE: std::time::Duration = std::time::Duration::from_secs(10);
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const WAIT_SLICE: std::time::Duration = std::time::Duration::from_millis(200);
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let deadline = Instant::now() + TOTAL_DEADLINE;
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loop {
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while let Ok(ctrl) = cap.event_receiver().try_recv() {
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match ctrl {
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PwCtrlEvent::StreamEnded => bail!("PipeWire stream ended before first frame"),
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PwCtrlEvent::FormatChanged { .. } => {}
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PwCtrlEvent::Error(e) => bail!("PipeWire error: {e}"),
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}
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}
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let remaining = match deadline.checked_duration_since(Instant::now()) {
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Some(r) if !r.is_zero() => r,
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_ => bail!("Timeout waiting for first frame (10s)"),
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};
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let slice = remaining.min(WAIT_SLICE);
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match cap.frame_receiver().recv_timeout(slice) {
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Ok(frame) => return Ok(frame),
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Err(crossbeam_channel::RecvTimeoutError::Timeout) => continue,
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Err(crossbeam_channel::RecvTimeoutError::Disconnected) => {
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bail!("PipeWire frame channel disconnected");
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}
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}
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}
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}
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fn main() -> Result<()> {
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let bench_args = BenchArgs::parse();
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@@ -133,7 +101,7 @@ fn main() -> Result<()> {
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println!("[1/4] Portal connected, PipeWire stream active\n");
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println!("[2/4] Waiting for first frame from PipeWire...");
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let first_frame = receive_first_frame(&cap)?;
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let first_frame = common::receive_first_frame(&cap)?;
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let src_width = first_frame.width;
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let src_height = first_frame.height;
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@@ -462,7 +430,7 @@ fn main() -> Result<()> {
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}
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}
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drain_encoder(&mut enc_video, &mut octx)?;
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common::drain_encoder(&mut enc_video, &mut octx)?;
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stats
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.encode_us
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@@ -489,7 +457,7 @@ fn main() -> Result<()> {
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unsafe {
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ffi::avcodec_send_frame(enc_video.as_mut_ptr(), ptr::null());
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}
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drain_encoder(&mut enc_video, &mut octx)?;
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common::drain_encoder(&mut enc_video, &mut octx)?;
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octx.write_trailer()
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.map_err(|e| anyhow::anyhow!("Failed to write trailer: {e}"))?;
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@@ -577,38 +545,3 @@ fn main() -> Result<()> {
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println!("Output written to: {}", bench_args.output);
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Ok(())
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}
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fn drain_encoder(
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enc_video: &mut ff::encoder::video::Video,
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octx: &mut ff::format::context::Output,
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) -> Result<()> {
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loop {
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let mut pkt = ff::Packet::empty();
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// SAFETY: enc_video is the opened encoder; pkt is an empty Packet whose
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// inner AVPacket pointer is valid. avcodec_receive_packet fills pkt with
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// the next encoded packet, or returns EAGAIN/EOF when drained.
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let ret = unsafe { ffi::avcodec_receive_packet(enc_video.as_mut_ptr(), pkt.as_mut_ptr()) };
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if ret < 0 {
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if ret == ffi::AVERROR(ffi::EAGAIN) || ret == ffi::AVERROR_EOF {
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break;
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}
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eprintln!("avcodec_receive_packet failed: {ret}");
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break;
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}
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let enc_tb = enc_video.time_base();
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// SAFETY: octx.as_ptr() is a valid AVFormatContext; streams is a NULL-terminated
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// array of AVStream*. We index [0] which exists because we created exactly one
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// stream in setup. Reading time_base is a plain AVRational field access.
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let stream_tb = unsafe {
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let streams = (*octx.as_ptr()).streams;
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let st = *streams.add(0);
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ff::Rational::from((*st).time_base)
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};
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pkt.rescale_ts(enc_tb, stream_tb);
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pkt.set_stream(0);
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pkt.write_interleaved(octx)
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.map_err(|e| anyhow::anyhow!("write packet failed: {e}"))?;
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}
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Ok(())
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}
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@@ -15,12 +15,14 @@ use clap::{Parser, ValueEnum};
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use ffmpeg_next as ff;
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use ffmpeg_next::ffi;
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use ffmpeg_next::packet::Mut;
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use wl_webrtc::args::Args;
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use wl_webrtc::avhw::{import_dma_buf_to_vaapi, AvHwDevCtx, AvHwFrameCtx};
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use wl_webrtc::avhw::{av_err_to_string, import_dma_buf_to_vaapi, AvHwDevCtx, AvHwFrameCtx};
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use wl_webrtc::cap_portal::{CapPortal, PwCtrlEvent};
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#[path = "common/mod.rs"]
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mod common;
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#[derive(Parser, Debug)]
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#[command(name = "vaapi_import_bench", about = "VAAPI DMA-BUF import benchmark")]
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struct BenchArgs {
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@@ -124,86 +126,6 @@ impl Drop for SwsContext {
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}
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}
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fn av_err_to_string(ret: i32) -> String {
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let mut buf = vec![0u8; 128];
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// SAFETY: buf is a 128-byte Vec initialized to zeros; av_strerror writes at most
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// buf.len() bytes (including NUL) into the buffer. The ret value is an FFmpeg
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// error code. We treat the buffer as `*mut i8` for the C string out-param.
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unsafe {
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ffi::av_strerror(ret, buf.as_mut_ptr() as *mut i8, buf.len());
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}
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let end = buf.iter().position(|&b| b == 0).unwrap_or(buf.len());
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String::from_utf8_lossy(&buf[..end]).to_string()
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}
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fn receive_first_frame(cap: &CapPortal) -> Result<wl_webrtc::cap_portal::PwDmaBufFrame> {
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// Drain-and-wait loop that mirrors production's repeated-poll semantics
|
||||
// (state_portal.rs::poll_and_encode driven by main.rs's outer loop), but with
|
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// a single bounded 10s total deadline appropriate for a bench tool. Unlike a
|
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// single 10s blocking wait, this loop actually iterates: each turn drains ALL
|
||||
// pending control events (the ctrl channel is bounded to 8 — a single
|
||||
// if-let would silently miss backlog) and then waits a short slice for a
|
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// frame, so StreamEnded/Error arriving mid-wait are observed within ~200ms.
|
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const TOTAL_DEADLINE: std::time::Duration = std::time::Duration::from_secs(10);
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const WAIT_SLICE: std::time::Duration = std::time::Duration::from_millis(200);
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let deadline = Instant::now() + TOTAL_DEADLINE;
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loop {
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while let Ok(ctrl) = cap.event_receiver().try_recv() {
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match ctrl {
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PwCtrlEvent::StreamEnded => bail!("PipeWire stream ended before first frame"),
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PwCtrlEvent::FormatChanged { .. } => {}
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PwCtrlEvent::Error(e) => bail!("PipeWire error: {e}"),
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}
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}
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let remaining = match deadline.checked_duration_since(Instant::now()) {
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Some(r) if !r.is_zero() => r,
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_ => bail!("Timeout waiting for first frame (10s)"),
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};
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let slice = remaining.min(WAIT_SLICE);
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match cap.frame_receiver().recv_timeout(slice) {
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Ok(frame) => return Ok(frame),
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Err(crossbeam_channel::RecvTimeoutError::Timeout) => continue,
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Err(crossbeam_channel::RecvTimeoutError::Disconnected) => {
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bail!("PipeWire frame channel disconnected");
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}
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}
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}
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}
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fn drain_encoder(
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enc_video: &mut ff::codec::encoder::video::Video,
|
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octx: &mut ff::format::context::Output,
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) -> Result<()> {
|
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loop {
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let mut pkt = ff::Packet::empty();
|
||||
// SAFETY: enc_video is the opened encoder; pkt is an empty Packet whose inner
|
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// AVPacket pointer is valid. avcodec_receive_packet fills pkt with the next
|
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// encoded packet or returns EAGAIN/EOF when drained.
|
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let ret = unsafe { ffi::avcodec_receive_packet(enc_video.as_mut_ptr(), pkt.as_mut_ptr()) };
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if ret < 0 {
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if ret == ffi::AVERROR(ffi::EAGAIN) || ret == ffi::AVERROR_EOF {
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break;
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}
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eprintln!("avcodec_receive_packet failed: {ret}");
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break;
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}
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let enc_tb = enc_video.time_base();
|
||||
// SAFETY: octx.as_ptr() is a valid AVFormatContext; streams is a NULL-terminated
|
||||
// array; we index [0] which exists because we created exactly one stream in
|
||||
// setup. Reading time_base is a plain AVRational field access.
|
||||
let stream_tb = unsafe {
|
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let streams = (*octx.as_ptr()).streams;
|
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let st = *streams.add(0);
|
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ff::Rational::from((*st).time_base)
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};
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pkt.rescale_ts(enc_tb, stream_tb);
|
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pkt.set_stream(0);
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pkt.write_interleaved(octx)
|
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.map_err(|e| anyhow::anyhow!("write packet failed: {e}"))?;
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||||
}
|
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Ok(())
|
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}
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fn create_software_encoder(output_path: &Path, width: u32, height: u32) -> Result<SoftwareEncoder> {
|
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let output_cstr = CString::new(output_path.to_str().unwrap())?;
|
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let codec = ff::encoder::find_by_name("libx264")
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@@ -394,7 +316,7 @@ fn encode_yuv_frame(encoder: &mut SoftwareEncoder, pts: &mut i64) -> Result<u64>
|
||||
bail!("avcodec_send_frame failed: {r}");
|
||||
}
|
||||
}
|
||||
drain_encoder(&mut encoder.enc_video, &mut encoder.octx)?;
|
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common::drain_encoder(&mut encoder.enc_video, &mut encoder.octx)?;
|
||||
Ok(t_encode.elapsed().as_micros() as u64)
|
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}
|
||||
|
||||
@@ -403,7 +325,7 @@ fn finish_encoder(mut encoder: SoftwareEncoder) -> Result<()> {
|
||||
unsafe {
|
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ffi::avcodec_send_frame(encoder.enc_video.as_mut_ptr(), ptr::null());
|
||||
}
|
||||
drain_encoder(&mut encoder.enc_video, &mut encoder.octx)?;
|
||||
common::drain_encoder(&mut encoder.enc_video, &mut encoder.octx)?;
|
||||
encoder
|
||||
.octx
|
||||
.write_trailer()
|
||||
@@ -904,7 +826,7 @@ fn main() -> Result<()> {
|
||||
println!("[1/3] Portal connected, PipeWire stream active\n");
|
||||
|
||||
println!("[2/3] Waiting for first frame from PipeWire...");
|
||||
let first_frame = receive_first_frame(&cap)?;
|
||||
let first_frame = common::receive_first_frame(&cap)?;
|
||||
|
||||
let src_width = first_frame.width;
|
||||
let src_height = first_frame.height;
|
||||
|
||||
Reference in New Issue
Block a user