1use std::path::{Path, PathBuf};
2use std::time::{Duration, Instant, SystemTime, UNIX_EPOCH};
3use tokio::io::AsyncBufReadExt;
4use tokio::process::Command;
5
6use crate::{Codec, RateControlMode, Resolution, ffmpeg_path, probe};
7
8#[derive(Debug, Clone)]
10pub struct EncodeJob {
11 pub input: String,
13 pub output: String,
15 pub resolution: Option<Resolution>,
17 pub codec: Codec,
19 pub crf: i32,
21 pub rate_control: RateControlMode,
23 pub target_bitrate: f64, pub max_bitrate: f64, pub bufsize: f64, pub preset: String,
31 pub extra_args: Vec<String>,
33}
34
35#[derive(Debug, Clone)]
37pub struct EncodeResult {
38 pub job: EncodeJob,
40 pub bitrate: f64, pub file_size: u64, pub duration: Duration, }
47
48#[derive(Debug, Clone, Default)]
50pub struct Progress {
51 pub frame: i64,
53 pub fps: f64,
55 pub bitrate: f64, pub speed: f64, pub time: Duration,
61}
62
63pub async fn encode(
65 job: EncodeJob,
66 progress_tx: Option<tokio::sync::mpsc::Sender<Progress>>,
67) -> anyhow::Result<EncodeResult> {
68 match job.rate_control {
69 RateControlMode::Vbr => encode_two_pass(job, progress_tx).await,
70 _ => encode_single_pass(job, progress_tx).await,
71 }
72}
73
74async fn encode_single_pass(
75 job: EncodeJob,
76 progress_tx: Option<tokio::sync::mpsc::Sender<Progress>>,
77) -> anyhow::Result<EncodeResult> {
78 let args = build_encode_args(&job, EncodePass::Single)?;
79 run_encode(job, args, progress_tx).await
80}
81
82async fn encode_two_pass(
83 job: EncodeJob,
84 progress_tx: Option<tokio::sync::mpsc::Sender<Progress>>,
85) -> anyhow::Result<EncodeResult> {
86 if job.target_bitrate <= 0.0 {
87 anyhow::bail!("target bitrate must be greater than zero for VBR mode");
88 }
89
90 let passlog_prefix = make_passlog_prefix(&job.output);
91 let cleanup = PasslogCleanup::new(passlog_prefix.clone());
92
93 let first_pass_args = build_encode_args(&job, EncodePass::First(&passlog_prefix))?;
94 run_ffmpeg(first_pass_args, None).await?;
95
96 let second_pass_args = build_encode_args(&job, EncodePass::Second(&passlog_prefix))?;
97 let result = run_encode(job, second_pass_args, progress_tx).await;
98
99 cleanup.run();
100 result
101}
102
103async fn run_encode(
104 job: EncodeJob,
105 args: Vec<String>,
106 progress_tx: Option<tokio::sync::mpsc::Sender<Progress>>,
107) -> anyhow::Result<EncodeResult> {
108 let start = Instant::now();
109 run_ffmpeg(args, progress_tx).await?;
110
111 let elapsed = start.elapsed();
112
113 let meta = std::fs::metadata(&job.output)
115 .map_err(|e| anyhow::anyhow!("failed to stat output: {e}"))?;
116
117 let probe_result = probe(&job.output).await?;
118 let bitrate = probe_result.format.bit_rate as f64 / 1000.0;
119
120 Ok(EncodeResult { job, bitrate, file_size: meta.len(), duration: elapsed })
121}
122
123async fn run_ffmpeg(
124 args: Vec<String>,
125 progress_tx: Option<tokio::sync::mpsc::Sender<Progress>>,
126) -> anyhow::Result<()> {
127 let mut cmd = Command::new(ffmpeg_path());
128 cmd.args(&args).stdout(std::process::Stdio::piped()).stderr(std::process::Stdio::piped());
129
130 let mut child = cmd.spawn().map_err(|e| anyhow::anyhow!("failed to start ffmpeg: {e}"))?;
131
132 if let Some(stdout) = child.stdout.take() {
134 let tx = progress_tx.clone();
135 tokio::spawn(async move {
136 let reader = tokio::io::BufReader::new(stdout);
137 let mut lines = reader.lines();
138 let mut p = Progress::default();
139 while let Ok(Some(line)) = lines.next_line().await {
140 if parse_progress_line(&line, &mut p) {
141 if let Some(ref tx) = tx {
142 let _ = tx.try_send(p.clone());
143 }
144 }
145 }
146 });
147 }
148
149 let output = child.wait_with_output().await?;
150 if !output.status.success() {
151 let stderr = String::from_utf8_lossy(&output.stderr);
152 anyhow::bail!("ffmpeg encode failed: {stderr}");
153 }
154
155 Ok(())
156}
157
158pub async fn extract(input: &str, output: &str, start: f64, duration: f64) -> anyhow::Result<()> {
160 let args = vec![
161 "-y".to_string(),
162 "-ss".into(),
163 format!("{start:.6}"),
164 "-i".into(),
165 input.into(),
166 "-t".into(),
167 format!("{duration:.6}"),
168 "-c".into(),
169 "copy".into(),
170 "-avoid_negative_ts".into(),
171 "make_zero".into(),
172 output.into(),
173 ];
174
175 let output = Command::new(ffmpeg_path())
176 .args(&args)
177 .stderr(std::process::Stdio::piped())
178 .output()
179 .await?;
180
181 if !output.status.success() {
182 let stderr = String::from_utf8_lossy(&output.stderr);
183 anyhow::bail!("ffmpeg extract failed: {stderr}");
184 }
185 Ok(())
186}
187
188pub async fn concat(inputs: &[String], output: &str) -> anyhow::Result<()> {
190 if inputs.is_empty() {
191 anyhow::bail!("cannot concat an empty input list");
192 }
193
194 let list_path = make_concat_list_path(output);
195 let list_body = inputs
196 .iter()
197 .map(|path| format!("file '{}'", path.replace('\'', "'\\''")))
198 .collect::<Vec<_>>()
199 .join("\n");
200 std::fs::write(&list_path, format!("{list_body}\n"))?;
201
202 let args = vec![
203 "-y".to_string(),
204 "-f".into(),
205 "concat".into(),
206 "-safe".into(),
207 "0".into(),
208 "-i".into(),
209 list_path.to_string_lossy().into_owned(),
210 "-c".into(),
211 "copy".into(),
212 output.into(),
213 ];
214
215 let result = run_ffmpeg(args, None).await;
216 let _ = std::fs::remove_file(&list_path);
217 result
218}
219
220enum EncodePass<'a> {
221 Single,
222 First(&'a Path),
223 Second(&'a Path),
224}
225
226fn build_encode_args(job: &EncodeJob, pass: EncodePass<'_>) -> anyhow::Result<Vec<String>> {
227 let mut args = vec!["-y".into(), "-i".into(), job.input.clone(), "-an".into()];
228
229 if !matches!(pass, EncodePass::First(_)) {
230 args.extend(["-progress".into(), "pipe:1".into(), "-nostats".into()]);
231 }
232
233 args.extend(["-c:v".into(), job.codec.as_str().into()]);
234
235 match job.rate_control {
237 RateControlMode::Qp => match job.codec {
238 Codec::SvtAv1 => {
239 args.extend(["-qp".into(), job.crf.to_string()]);
240 args.extend(["-svtav1-params".into(), "enable-adaptive-quantization=0".into()]);
241 }
242 _ => {
243 args.extend(["-qp".into(), job.crf.to_string()]);
244 }
245 },
246 RateControlMode::CappedCrf => {
247 if job.max_bitrate <= 0.0 {
248 anyhow::bail!("max bitrate must be greater than zero for capped CRF mode");
249 }
250 let bufsize = if job.bufsize > 0.0 { job.bufsize } else { job.max_bitrate * 2.0 };
251 args.extend(["-crf".into(), job.crf.to_string()]);
252 args.extend(["-maxrate".into(), format!("{:.0}k", job.max_bitrate)]);
253 args.extend(["-bufsize".into(), format!("{bufsize:.0}k")]);
254 }
255 RateControlMode::Vbr => {
256 if job.target_bitrate <= 0.0 {
257 anyhow::bail!("target bitrate must be greater than zero for VBR mode");
258 }
259 args.extend(["-b:v".into(), format!("{:.0}k", job.target_bitrate)]);
260 args.extend(["-maxrate".into(), format!("{:.0}k", job.target_bitrate * 2.0)]);
261 args.extend(["-bufsize".into(), format!("{:.0}k", job.target_bitrate * 4.0)]);
262
263 let passlog = match pass {
264 EncodePass::First(path) => {
265 args.extend(["-pass".into(), "1".into()]);
266 path
267 }
268 EncodePass::Second(path) => {
269 args.extend(["-pass".into(), "2".into()]);
270 path
271 }
272 EncodePass::Single => {
273 anyhow::bail!("VBR mode requires a two-pass encode flow");
274 }
275 };
276
277 args.extend(["-passlogfile".into(), passlog.to_string_lossy().into_owned()]);
278 }
279 RateControlMode::Crf => {
280 args.extend(["-crf".into(), job.crf.to_string()]);
281 }
282 }
283
284 if !job.preset.is_empty() {
285 args.extend(["-preset".into(), job.preset.clone()]);
286 }
287
288 if let Some(ref res) = job.resolution {
289 if res.width > 0 && res.height > 0 {
290 args.extend([
291 "-vf".into(),
292 format!("scale={}:{}:flags=lanczos", res.width, res.height),
293 ]);
294 }
295 }
296
297 args.extend(job.extra_args.iter().cloned());
298
299 match pass {
300 EncodePass::First(_) => {
301 args.extend(["-f".into(), "null".into()]);
302 args.push(null_output_path().into());
303 }
304 EncodePass::Single | EncodePass::Second(_) => args.push(job.output.clone()),
305 }
306
307 Ok(args)
308}
309
310fn make_passlog_prefix(output: &str) -> PathBuf {
311 let output_path = Path::new(output);
312 let parent =
313 output_path.parent().filter(|p| !p.as_os_str().is_empty()).unwrap_or(Path::new("."));
314 let stem = output_path.file_stem().and_then(|s| s.to_str()).unwrap_or("viser");
315 let unique = SystemTime::now().duration_since(UNIX_EPOCH).map(|d| d.as_millis()).unwrap_or(0);
316 parent.join(format!(".{stem}.viser-passlog-{unique}-{}", std::process::id()))
317}
318
319fn make_concat_list_path(output: &str) -> PathBuf {
320 let output_path = Path::new(output);
321 let parent =
322 output_path.parent().filter(|p| !p.as_os_str().is_empty()).unwrap_or(Path::new("."));
323 let stem = output_path.file_stem().and_then(|s| s.to_str()).unwrap_or("viser");
324 let unique = SystemTime::now().duration_since(UNIX_EPOCH).map(|d| d.as_millis()).unwrap_or(0);
325 parent.join(format!(".{stem}.viser-concat-{unique}-{}.txt", std::process::id()))
326}
327
328fn null_output_path() -> &'static str {
329 if cfg!(windows) { "NUL" } else { "/dev/null" }
330}
331
332struct PasslogCleanup {
333 parent: PathBuf,
334 prefix: String,
335}
336
337impl PasslogCleanup {
338 fn new(path: PathBuf) -> Self {
339 let parent = path.parent().unwrap_or(Path::new(".")).to_path_buf();
340 let prefix = path.file_name().and_then(|name| name.to_str()).unwrap_or_default().to_owned();
341 Self { parent, prefix }
342 }
343
344 fn run(&self) {
345 let Ok(entries) = std::fs::read_dir(&self.parent) else {
346 return;
347 };
348
349 for entry in entries.flatten() {
350 let path = entry.path();
351 let Some(name) = path.file_name().and_then(|name| name.to_str()) else {
352 continue;
353 };
354 if !name.starts_with(&self.prefix) {
355 continue;
356 }
357 if let Err(err) = std::fs::remove_file(&path) {
358 tracing::debug!(?path, ?err, "failed to remove ffmpeg two-pass log file");
359 }
360 }
361 }
362}
363
364fn parse_progress_line(line: &str, p: &mut Progress) -> bool {
366 let Some((key, value)) = line.split_once('=') else {
367 return false;
368 };
369
370 match key {
371 "frame" => {
372 p.frame = value.parse().unwrap_or(0);
373 }
374 "fps" => {
375 p.fps = value.parse().unwrap_or(0.0);
376 }
377 "bitrate" => {
378 let v = value.trim_end_matches("kbits/s");
379 p.bitrate = v.parse().unwrap_or(0.0);
380 }
381 "speed" => {
382 let v = value.trim_end_matches('x');
383 p.speed = v.parse().unwrap_or(0.0);
384 }
385 "out_time_us" => {
386 let us: u64 = value.parse().unwrap_or(0);
387 p.time = Duration::from_micros(us);
388 }
389 "progress" => return true,
390 _ => {}
391 }
392 false
393}
394
395#[cfg(test)]
396mod tests {
397 use super::*;
398 use crate::Codec;
399
400 fn sample_job(mode: RateControlMode) -> EncodeJob {
401 EncodeJob {
402 input: "input.mp4".into(),
403 output: "output.mp4".into(),
404 resolution: Some(crate::Resolution::new(1280, 720)),
405 codec: Codec::X264,
406 crf: 23,
407 rate_control: mode,
408 target_bitrate: 2500.0,
409 max_bitrate: 3000.0,
410 bufsize: 6000.0,
411 preset: "medium".into(),
412 extra_args: vec![],
413 }
414 }
415
416 #[test]
417 fn test_build_encode_args_crf_single_pass() {
418 let args =
419 build_encode_args(&sample_job(RateControlMode::Crf), EncodePass::Single).unwrap();
420 assert!(args.windows(2).any(|w| w == ["-crf", "23"]));
421 assert_eq!(args.last().unwrap(), "output.mp4");
422 }
423
424 #[test]
425 fn test_build_encode_args_vbr_first_pass_uses_null_output() {
426 let job = sample_job(RateControlMode::Vbr);
427 let passlog = Path::new("/tmp/viser-passlog");
428 let args = build_encode_args(&job, EncodePass::First(passlog)).unwrap();
429 assert!(args.windows(2).any(|w| w == ["-pass", "1"]));
430 assert!(args.windows(2).any(|w| w == ["-f", "null"]));
431 assert_eq!(args.last().unwrap(), null_output_path());
432 }
433
434 #[test]
435 fn test_build_encode_args_vbr_second_pass_writes_output() {
436 let job = sample_job(RateControlMode::Vbr);
437 let passlog = Path::new("/tmp/viser-passlog");
438 let args = build_encode_args(&job, EncodePass::Second(passlog)).unwrap();
439 assert!(args.windows(2).any(|w| w == ["-pass", "2"]));
440 assert_eq!(args.last().unwrap(), "output.mp4");
441 }
442
443 #[test]
444 fn test_build_encode_args_capped_crf_sets_vbv() {
445 let args =
446 build_encode_args(&sample_job(RateControlMode::CappedCrf), EncodePass::Single).unwrap();
447 assert!(args.windows(2).any(|w| w == ["-crf", "23"]));
448 assert!(args.windows(2).any(|w| w == ["-maxrate", "3000k"]));
449 assert!(args.windows(2).any(|w| w == ["-bufsize", "6000k"]));
450 }
451}