use AV1 for 1440p and higher
This commit is contained in:
parent
c288f55ed0
commit
f4adda912a
3 changed files with 131 additions and 84 deletions
26
src/main.rs
26
src/main.rs
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@ -7,7 +7,7 @@ mod render;
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mod time;
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use crate::{
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render::Renderer,
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render::{ffmpeg::FfmpegOutputFormat, Renderer},
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time::{parse_date, parse_time, Date, Time}
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};
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use camino::Utf8PathBuf as PathBuf;
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@ -46,7 +46,7 @@ struct Args {
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}
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macro_rules! resolutions {
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($($res:ident: $width:literal x $height:literal at $bitrate:literal),+) => {
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($($res:ident: $width:literal x $height:literal at $bitrate:literal in $format:ident),+) => {
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#[allow(non_camel_case_types, clippy::upper_case_acronyms)]
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#[derive(Clone, Copy, Debug, Deserialize, Eq, Ord, PartialEq, PartialOrd, Serialize)]
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enum Resolution {
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@ -84,6 +84,12 @@ macro_rules! resolutions {
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$(Self::$res => $bitrate),+
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}
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}
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fn format(self) -> FfmpegOutputFormat {
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match self {
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$(Self::$res => FfmpegOutputFormat::$format),+
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}
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}
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}
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impl FromStr for Resolution {
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@ -100,12 +106,12 @@ macro_rules! resolutions {
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}
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resolutions! {
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nHD: 640 x 360 at 500_000,
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HD: 1280 x 720 at 1_000_000,
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FullHD: 1920 x 1080 at 2_000_000,
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WQHD: 2560 x 1440 at 3_000_000,
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nHD: 640 x 360 at 500_000 in AvcAac,
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HD: 1280 x 720 at 1_000_000 in AvcAac,
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FullHD: 1920 x 1080 at 2_000_000 in AvcAac,
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WQHD: 2560 x 1440 at 3_000_000 in Av1Opus,
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// TODO qsx muss mal sagen wieviel bitrate für 4k
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UHD: 3840 x 2160 at 4_000_000
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UHD: 3840 x 2160 at 4_000_000 in Av1Opus
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}
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#[derive(Deserialize, Serialize)]
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@ -234,7 +240,7 @@ fn main() {
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println!("{}", toml::to_string(&project).unwrap());
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let renderer = Renderer::new(&directory, &project).unwrap();
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let recording = renderer.recording_mp4();
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let recording = renderer.recording_mkv();
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// preprocess the video
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if !project.progress.preprocessed {
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@ -282,7 +288,7 @@ fn main() {
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// render the video
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let mut videos = Vec::new();
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videos.push(if project.progress.rendered {
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renderer.video_mp4(&project)
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renderer.video_file_output()
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} else {
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let video = renderer.render(&mut project).unwrap();
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project.progress.rendered = true;
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@ -302,7 +308,7 @@ fn main() {
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continue;
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}
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if !project.progress.transcoded.contains(&res) {
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videos.push(renderer.rescale(res, &project).unwrap());
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videos.push(renderer.rescale(res).unwrap());
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project.progress.transcoded.insert(res);
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println!("{}", toml::to_string(&project).unwrap());
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@ -41,7 +41,9 @@ impl FfmpegInput {
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cmd.arg("-r").arg(fps.to_string());
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}
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if let Some(start) = self.start {
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cmd.arg("-seek_streams_individually").arg("false");
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if self.path.ends_with(".mp4") {
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cmd.arg("-seek_streams_individualy").arg("false");
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}
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cmd.arg("-ss").arg(format_time(start));
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}
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if let Some(duration) = self.duration {
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@ -51,18 +53,35 @@ impl FfmpegInput {
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}
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}
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pub(crate) enum FfmpegOutputFormat {
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/// AV1 / FLAC
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Av1Flac,
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/// AV1 / OPUS
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Av1Opus,
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/// AVC (H.264) / AAC
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AvcAac
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}
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pub(crate) struct FfmpegOutput {
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pub(crate) format: FfmpegOutputFormat,
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pub(crate) audio_bitrate: Option<u64>,
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pub(crate) video_bitrate: Option<u64>,
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pub(crate) fps: Option<Rational>,
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pub(crate) duration: Option<Time>,
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pub(crate) time_base: Option<Rational>,
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pub(crate) fps_mode_vfr: bool,
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pub(crate) faststart: bool,
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pub(crate) path: PathBuf
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}
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impl FfmpegOutput {
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pub(crate) fn new(path: PathBuf) -> Self {
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pub(crate) fn new(format: FfmpegOutputFormat, path: PathBuf) -> Self {
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Self {
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format,
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audio_bitrate: None,
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video_bitrate: None,
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fps: None,
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duration: None,
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time_base: None,
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@ -77,7 +96,42 @@ impl FfmpegOutput {
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self
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}
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fn append_to_cmd(self, cmd: &mut Command) {
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fn append_to_cmd(self, cmd: &mut Command, venc: bool, _aenc: bool, vaapi: bool) {
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// select codec and bitrate
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const QUALITY: &str = "22";
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if venc {
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let mut vcodec: String = match self.format {
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FfmpegOutputFormat::Av1Flac | FfmpegOutputFormat::Av1Opus => "av1".into(),
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FfmpegOutputFormat::AvcAac => "h264".into()
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};
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if vaapi {
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vcodec = format!("{vcodec}_vaapi");
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}
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cmd.arg("-c:v").arg(vcodec);
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if let Some(bv) = self.video_bitrate {
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cmd.arg("-b:v").arg(bv.to_string());
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} else if vaapi {
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cmd.arg("-rc_mode").arg("CQP");
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cmd.arg("-global_quality").arg(QUALITY);
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} else {
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cmd.arg("-crf").arg(QUALITY);
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}
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} else {
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cmd.arg("-c:v").arg("copy");
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}
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cmd.arg("-c:a").arg(match self.format {
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FfmpegOutputFormat::Av1Flac => "flac",
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FfmpegOutputFormat::Av1Opus => "libopus",
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FfmpegOutputFormat::AvcAac => "aac"
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});
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if let Some(ba) = self.audio_bitrate {
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cmd.arg("-b:a").arg(ba.to_string());
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} else {
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cmd.arg("-b:a").arg("128k");
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}
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// other output options
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if let Some(fps) = self.fps {
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cmd.arg("-r").arg(fps.to_string());
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}
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@ -110,7 +164,6 @@ enum FfmpegFilter {
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pub(crate) struct Ffmpeg {
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inputs: Vec<FfmpegInput>,
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filter: FfmpegFilter,
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video_bitrate: Option<u64>,
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output: FfmpegOutput,
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filter_idx: usize
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@ -121,7 +174,6 @@ impl Ffmpeg {
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Self {
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inputs: Vec::new(),
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filter: FfmpegFilter::None,
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video_bitrate: None,
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output,
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filter_idx: 0
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@ -182,11 +234,6 @@ impl Ffmpeg {
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self
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}
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pub fn set_video_bitrate(&mut self, bitrate: u64) -> &mut Self {
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self.video_bitrate = Some(bitrate);
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self
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}
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pub fn run(mut self) -> anyhow::Result<()> {
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let mut cmd = cmd();
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cmd.arg("ffmpeg").arg("-hide_banner").arg("-y");
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@ -256,35 +303,7 @@ impl Ffmpeg {
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}
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}
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// append encoding options
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const QUALITY: &str = "22";
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if venc {
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if vaapi {
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cmd.arg("-c:v").arg("h264_vaapi");
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if self.video_bitrate.is_none() {
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cmd.arg("-rc_mode").arg("CQP");
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cmd.arg("-global_quality").arg(QUALITY);
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}
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} else {
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cmd.arg("-c:v").arg("libx264");
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if self.video_bitrate.is_none() {
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cmd.arg("-crf").arg(QUALITY);
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}
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}
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if self.video_bitrate.is_some() {
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cmd.arg("-b:v").arg(self.video_bitrate.unwrap().to_string());
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}
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} else {
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cmd.arg("-c:v").arg("copy");
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}
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if aenc {
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cmd.arg("-c:a").arg("aac");
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cmd.arg("-b:a").arg("128000");
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} else {
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cmd.arg("-c:a").arg("copy");
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}
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self.output.append_to_cmd(&mut cmd);
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self.output.append_to_cmd(&mut cmd, venc, aenc, vaapi);
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let status = cmd.status()?;
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if status.success() {
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@ -1,7 +1,10 @@
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pub mod ffmpeg;
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mod filter;
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use self::{ffmpeg::FfmpegOutput, filter::Filter};
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use self::{
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ffmpeg::{FfmpegOutput, FfmpegOutputFormat},
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filter::Filter
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};
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use crate::{
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iotro::{intro, outro},
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render::ffmpeg::{Ffmpeg, FfmpegInput},
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@ -114,19 +117,17 @@ pub(crate) struct Renderer<'a> {
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target: PathBuf
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}
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fn svg2mp4(
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fn svg2mkv(
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meta: &ProjectSourceMetadata,
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svg: PathBuf,
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mp4: PathBuf,
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mkv: PathBuf,
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duration: Time
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) -> anyhow::Result<()> {
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let mut ffmpeg = Ffmpeg::new(FfmpegOutput {
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fps: None,
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duration: Some(duration),
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time_base: Some(meta.source_tbn),
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fps_mode_vfr: true,
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faststart: false,
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path: mp4
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..FfmpegOutput::new(FfmpegOutputFormat::Av1Flac, mkv)
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});
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ffmpeg.add_input(FfmpegInput {
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loop_input: true,
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})
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}
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pub(crate) fn recording_mp4(&self) -> PathBuf {
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self.target.join("recording.mp4")
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pub(crate) fn recording_mkv(&self) -> PathBuf {
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self.target.join("recording.mkv")
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}
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fn intro_mkv(&self) -> PathBuf {
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self.target.join("intro.mkv")
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}
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fn outro_mkv(&self) -> PathBuf {
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self.target.join("outro.mkv")
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}
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pub(crate) fn preprocess(&self, project: &mut Project) -> anyhow::Result<()> {
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@ -193,8 +202,11 @@ impl<'a> Renderer<'a> {
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println!("\x1B[1m ==> Concatenating Video and Normalising Audio ...\x1B[0m");
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let source_sample_rate =
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ffprobe_audio("stream=sample_rate", &recording_txt)?.parse()?;
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let recording_mp4 = self.recording_mp4();
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let mut ffmpeg = Ffmpeg::new(FfmpegOutput::new(recording_mp4.clone()));
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let recording_mkv = self.recording_mkv();
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let mut ffmpeg = Ffmpeg::new(FfmpegOutput::new(
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FfmpegOutputFormat::Av1Flac,
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recording_mkv.clone()
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));
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ffmpeg.add_input(FfmpegInput {
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concat: true,
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..FfmpegInput::new(recording_txt)
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@ -202,8 +214,8 @@ impl<'a> Renderer<'a> {
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ffmpeg.enable_loudnorm();
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ffmpeg.run()?;
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let width = ffprobe_video("stream=width", &recording_mp4)?.parse()?;
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let height = ffprobe_video("stream=height", &recording_mp4)?.parse()?;
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let width = ffprobe_video("stream=width", &recording_mkv)?.parse()?;
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let height = ffprobe_video("stream=height", &recording_mkv)?.parse()?;
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let source_res = match (width, height) {
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(3840, 2160) => Resolution::UHD,
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(2560, 1440) => Resolution::WQHD,
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@ -213,9 +225,9 @@ impl<'a> Renderer<'a> {
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(width, height) => bail!("Unknown resolution: {width}x{height}")
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};
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project.source.metadata = Some(ProjectSourceMetadata {
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source_duration: ffprobe_video("format=duration", &recording_mp4)?.parse()?,
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source_fps: ffprobe_video("stream=r_frame_rate", &recording_mp4)?.parse()?,
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source_tbn: ffprobe_video("stream=time_base", &recording_mp4)?.parse()?,
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source_duration: ffprobe_video("format=duration", &recording_mkv)?.parse()?,
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source_fps: ffprobe_video("stream=r_frame_rate", &recording_mkv)?.parse()?,
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source_tbn: ffprobe_video("stream=time_base", &recording_mkv)?.parse()?,
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source_res,
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source_sample_rate
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});
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@ -231,8 +243,8 @@ impl<'a> Renderer<'a> {
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.to_string_pretty()
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.into_bytes()
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)?;
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let intro_mp4 = self.target.join("intro.mp4");
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svg2mp4(metadata, intro_svg, intro_mp4, INTRO_LEN)?;
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let intro_mkv = self.intro_mkv();
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svg2mkv(metadata, intro_svg, intro_mkv, INTRO_LEN)?;
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// render outro to svg then mp4
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let outro_svg = self.target.join("outro.svg");
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@ -240,8 +252,8 @@ impl<'a> Renderer<'a> {
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&outro_svg,
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outro(source_res).to_string_pretty().into_bytes()
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)?;
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let outro_mp4 = self.target.join("outro.mp4");
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svg2mp4(metadata, outro_svg, outro_mp4, OUTRO_LEN)?;
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let outro_mkv = self.outro_mkv();
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svg2mkv(metadata, outro_svg, outro_mkv, OUTRO_LEN)?;
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// copy logo then render to png
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let logo_svg = self.target.join("logo.svg");
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@ -271,25 +283,35 @@ impl<'a> Renderer<'a> {
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Ok(())
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}
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fn video_mp4_res(&self, res: Resolution) -> PathBuf {
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/// Get the video file for a specific resolution, completely finished.
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fn video_file_res(&self, res: Resolution) -> PathBuf {
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let extension = match res.format() {
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FfmpegOutputFormat::Av1Flac => "mkv",
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FfmpegOutputFormat::Av1Opus => "webm",
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FfmpegOutputFormat::AvcAac => "mp4"
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};
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self.target
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.join(format!("{}-{}p.mp4", self.slug, res.height()))
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.join(format!("{}-{}p.{extension}", self.slug, res.height()))
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}
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pub(crate) fn video_mp4(&self, project: &Project) -> PathBuf {
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self.video_mp4_res(project.source.metadata.as_ref().unwrap().source_res)
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/// Get the video file directly outputed to further transcode.
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pub(crate) fn video_file_output(&self) -> PathBuf {
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self.target.join(format!("{}.mkv", self.slug))
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}
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pub(crate) fn render(&self, project: &mut Project) -> anyhow::Result<PathBuf> {
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let source_res = project.source.metadata.as_ref().unwrap().source_res;
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let output = self.video_mp4(project);
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let mut ffmpeg = Ffmpeg::new(FfmpegOutput::new(output.clone()));
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let output = self.video_file_output();
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let mut ffmpeg = Ffmpeg::new(FfmpegOutput {
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video_bitrate: Some(source_res.bitrate() * 3),
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..FfmpegOutput::new(FfmpegOutputFormat::Av1Flac, output.clone())
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});
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// add all of our inputs
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let intro = ffmpeg.add_input(FfmpegInput::new(self.target.join("intro.mp4")));
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let rec_file = self.target.join("recording.mp4");
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let outro = ffmpeg.add_input(FfmpegInput::new(self.target.join("outro.mp4")));
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let intro = ffmpeg.add_input(FfmpegInput::new(self.intro_mkv()));
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let rec_file = self.recording_mkv();
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let outro = ffmpeg.add_input(FfmpegInput::new(self.outro_mkv()));
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let logo = ffmpeg.add_input(FfmpegInput::new(self.target.join("logo.png")));
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let ff = ffmpeg.add_input(FfmpegInput::new(self.target.join("fastforward.png")));
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@ -444,22 +466,22 @@ impl<'a> Renderer<'a> {
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// we're done :)
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ffmpeg.set_filter_output(overlay);
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ffmpeg.set_video_bitrate(source_res.bitrate() * 3);
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ffmpeg.run()?;
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Ok(output)
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}
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pub fn rescale(&self, res: Resolution, project: &Project) -> anyhow::Result<PathBuf> {
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let input = self.video_mp4(project);
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let output = self.video_mp4_res(res);
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pub fn rescale(&self, res: Resolution) -> anyhow::Result<PathBuf> {
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let input = self.video_file_output();
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let output = self.video_file_res(res);
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println!("\x1B[1m ==> Rescaling to {}p\x1B[0m", res.height());
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let mut ffmpeg =
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Ffmpeg::new(FfmpegOutput::new(output.clone()).enable_faststart());
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let mut ffmpeg = Ffmpeg::new(FfmpegOutput {
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video_bitrate: Some(res.bitrate()),
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..FfmpegOutput::new(res.format(), output.clone()).enable_faststart()
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});
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ffmpeg.add_input(FfmpegInput::new(input));
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ffmpeg.rescale_video(res);
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ffmpeg.set_video_bitrate(res.bitrate());
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ffmpeg.run()?;
|
||||
Ok(output)
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue