Struct Graph

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pub struct Graph { /* private fields */ }

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impl Graph

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pub unsafe fn wrap(ptr: *mut AVFilterGraph) -> Self

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pub unsafe fn as_ptr(&self) -> *const AVFilterGraph

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pub unsafe fn as_mut_ptr(&mut self) -> *mut AVFilterGraph

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impl Graph

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pub fn new() -> Self

Examples found in repository?
examples/transcode-audio.rs (line 14)
9fn filter(
10    spec: &str,
11    decoder: &codec::decoder::Audio,
12    encoder: &codec::encoder::Audio,
13) -> Result<filter::Graph, ffmpeg::Error> {
14    let mut filter = filter::Graph::new();
15
16    let args = format!(
17        "time_base={}:sample_rate={}:sample_fmt={}:channel_layout=0x{:x}",
18        decoder.time_base(),
19        decoder.rate(),
20        decoder.format().name(),
21        decoder.channel_layout().bits()
22    );
23
24    filter.add(&filter::find("abuffer").unwrap(), "in", &args)?;
25    filter.add(&filter::find("abuffersink").unwrap(), "out", "")?;
26
27    {
28        let mut out = filter.get("out").unwrap();
29
30        out.set_sample_format(encoder.format());
31        out.set_channel_layout(encoder.channel_layout());
32        out.set_sample_rate(encoder.rate());
33    }
34
35    filter.output("in", 0)?.input("out", 0)?.parse(spec)?;
36    filter.validate()?;
37
38    println!("{}", filter.dump());
39
40    if let Some(codec) = encoder.codec() {
41        if !codec
42            .capabilities()
43            .contains(ffmpeg::codec::capabilities::Capabilities::VARIABLE_FRAME_SIZE)
44        {
45            filter
46                .get("out")
47                .unwrap()
48                .sink()
49                .set_frame_size(encoder.frame_size());
50        }
51    }
52
53    Ok(filter)
54}
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pub fn validate(&mut self) -> Result<(), Error>

Examples found in repository?
examples/transcode-audio.rs (line 36)
9fn filter(
10    spec: &str,
11    decoder: &codec::decoder::Audio,
12    encoder: &codec::encoder::Audio,
13) -> Result<filter::Graph, ffmpeg::Error> {
14    let mut filter = filter::Graph::new();
15
16    let args = format!(
17        "time_base={}:sample_rate={}:sample_fmt={}:channel_layout=0x{:x}",
18        decoder.time_base(),
19        decoder.rate(),
20        decoder.format().name(),
21        decoder.channel_layout().bits()
22    );
23
24    filter.add(&filter::find("abuffer").unwrap(), "in", &args)?;
25    filter.add(&filter::find("abuffersink").unwrap(), "out", "")?;
26
27    {
28        let mut out = filter.get("out").unwrap();
29
30        out.set_sample_format(encoder.format());
31        out.set_channel_layout(encoder.channel_layout());
32        out.set_sample_rate(encoder.rate());
33    }
34
35    filter.output("in", 0)?.input("out", 0)?.parse(spec)?;
36    filter.validate()?;
37
38    println!("{}", filter.dump());
39
40    if let Some(codec) = encoder.codec() {
41        if !codec
42            .capabilities()
43            .contains(ffmpeg::codec::capabilities::Capabilities::VARIABLE_FRAME_SIZE)
44        {
45            filter
46                .get("out")
47                .unwrap()
48                .sink()
49                .set_frame_size(encoder.frame_size());
50        }
51    }
52
53    Ok(filter)
54}
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pub fn add<'a, 'b>( &'a mut self, filter: &Filter, name: &str, args: &str, ) -> Result<Context<'b>, Error>
where 'a: 'b,

Examples found in repository?
examples/transcode-audio.rs (line 24)
9fn filter(
10    spec: &str,
11    decoder: &codec::decoder::Audio,
12    encoder: &codec::encoder::Audio,
13) -> Result<filter::Graph, ffmpeg::Error> {
14    let mut filter = filter::Graph::new();
15
16    let args = format!(
17        "time_base={}:sample_rate={}:sample_fmt={}:channel_layout=0x{:x}",
18        decoder.time_base(),
19        decoder.rate(),
20        decoder.format().name(),
21        decoder.channel_layout().bits()
22    );
23
24    filter.add(&filter::find("abuffer").unwrap(), "in", &args)?;
25    filter.add(&filter::find("abuffersink").unwrap(), "out", "")?;
26
27    {
28        let mut out = filter.get("out").unwrap();
29
30        out.set_sample_format(encoder.format());
31        out.set_channel_layout(encoder.channel_layout());
32        out.set_sample_rate(encoder.rate());
33    }
34
35    filter.output("in", 0)?.input("out", 0)?.parse(spec)?;
36    filter.validate()?;
37
38    println!("{}", filter.dump());
39
40    if let Some(codec) = encoder.codec() {
41        if !codec
42            .capabilities()
43            .contains(ffmpeg::codec::capabilities::Capabilities::VARIABLE_FRAME_SIZE)
44        {
45            filter
46                .get("out")
47                .unwrap()
48                .sink()
49                .set_frame_size(encoder.frame_size());
50        }
51    }
52
53    Ok(filter)
54}
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pub fn get<'a, 'b>(&'b mut self, name: &str) -> Option<Context<'b>>
where 'a: 'b,

Examples found in repository?
examples/transcode-audio.rs (line 28)
9fn filter(
10    spec: &str,
11    decoder: &codec::decoder::Audio,
12    encoder: &codec::encoder::Audio,
13) -> Result<filter::Graph, ffmpeg::Error> {
14    let mut filter = filter::Graph::new();
15
16    let args = format!(
17        "time_base={}:sample_rate={}:sample_fmt={}:channel_layout=0x{:x}",
18        decoder.time_base(),
19        decoder.rate(),
20        decoder.format().name(),
21        decoder.channel_layout().bits()
22    );
23
24    filter.add(&filter::find("abuffer").unwrap(), "in", &args)?;
25    filter.add(&filter::find("abuffersink").unwrap(), "out", "")?;
26
27    {
28        let mut out = filter.get("out").unwrap();
29
30        out.set_sample_format(encoder.format());
31        out.set_channel_layout(encoder.channel_layout());
32        out.set_sample_rate(encoder.rate());
33    }
34
35    filter.output("in", 0)?.input("out", 0)?.parse(spec)?;
36    filter.validate()?;
37
38    println!("{}", filter.dump());
39
40    if let Some(codec) = encoder.codec() {
41        if !codec
42            .capabilities()
43            .contains(ffmpeg::codec::capabilities::Capabilities::VARIABLE_FRAME_SIZE)
44        {
45            filter
46                .get("out")
47                .unwrap()
48                .sink()
49                .set_frame_size(encoder.frame_size());
50        }
51    }
52
53    Ok(filter)
54}
55
56struct Transcoder {
57    stream: usize,
58    filter: filter::Graph,
59    decoder: codec::decoder::Audio,
60    encoder: codec::encoder::Audio,
61}
62
63fn transcoder<P: AsRef<Path>>(
64    ictx: &mut format::context::Input,
65    octx: &mut format::context::Output,
66    path: &P,
67    filter_spec: &str,
68) -> Result<Transcoder, ffmpeg::Error> {
69    let input = ictx
70        .streams()
71        .best(media::Type::Audio)
72        .expect("could not find best audio stream");
73    let mut decoder = input.codec().decoder().audio()?;
74    let codec = ffmpeg::encoder::find(octx.format().codec(path, media::Type::Audio))
75        .expect("failed to find encoder")
76        .audio()?;
77    let global = octx
78        .format()
79        .flags()
80        .contains(ffmpeg::format::flag::Flags::GLOBAL_HEADER);
81
82    decoder.set_parameters(input.parameters())?;
83
84    let mut output = octx.add_stream(codec)?;
85    let mut encoder = output.codec().encoder().audio()?;
86
87    let channel_layout = codec
88        .channel_layouts()
89        .map(|cls| cls.best(decoder.channel_layout().channels()))
90        .unwrap_or(ffmpeg::channel_layout::ChannelLayout::STEREO);
91
92    if global {
93        encoder.set_flags(ffmpeg::codec::flag::Flags::GLOBAL_HEADER);
94    }
95
96    encoder.set_rate(decoder.rate() as i32);
97    encoder.set_channel_layout(channel_layout);
98    encoder.set_channels(channel_layout.channels());
99    encoder.set_format(
100        codec
101            .formats()
102            .expect("unknown supported formats")
103            .next()
104            .unwrap(),
105    );
106    encoder.set_bit_rate(decoder.bit_rate());
107    encoder.set_max_bit_rate(decoder.max_bit_rate());
108
109    encoder.set_time_base((1, decoder.rate() as i32));
110    output.set_time_base((1, decoder.rate() as i32));
111
112    let encoder = encoder.open_as(codec)?;
113    output.set_parameters(&encoder);
114
115    let filter = filter(filter_spec, &decoder, &encoder)?;
116
117    Ok(Transcoder {
118        stream: input.index(),
119        filter: filter,
120        decoder: decoder,
121        encoder: encoder,
122    })
123}
124
125// Transcode the `best` audio stream of the input file into a the output file while applying a
126// given filter. If no filter was specified the stream gets copied (`anull` filter).
127//
128// Example 1: Transcode *.mp3 file to *.wmv while speeding it up
129// transcode-audio in.mp3 out.wmv "atempo=1.2"
130//
131// Example 2: Overlay an audio file
132// transcode-audio in.mp3 out.mp3 "amovie=overlay.mp3 [ov]; [in][ov] amerge [out]"
133//
134// Example 3: Seek to a specified position (in seconds)
135// transcode-audio in.mp3 out.mp3 anull 30
136fn main() {
137    ffmpeg::init().unwrap();
138
139    let input = env::args().nth(1).expect("missing input");
140    let output = env::args().nth(2).expect("missing output");
141    let filter = env::args().nth(3).unwrap_or_else(|| "anull".to_owned());
142    let seek = env::args().nth(4).and_then(|s| s.parse::<i64>().ok());
143
144    let mut ictx = format::input(&input).unwrap();
145    let mut octx = format::output(&output).unwrap();
146    let mut transcoder = transcoder(&mut ictx, &mut octx, &output, &filter).unwrap();
147
148    if let Some(position) = seek {
149        // If the position was given in seconds, rescale it to ffmpegs base timebase.
150        let position = position.rescale((1, 1), rescale::TIME_BASE);
151        // If this seek was embedded in the transcoding loop, a call of `flush()`
152        // for every opened buffer after the successful seek would be advisable.
153        ictx.seek(position, ..position).unwrap();
154    }
155
156    octx.set_metadata(ictx.metadata().to_owned());
157    octx.write_header().unwrap();
158
159    let in_time_base = transcoder.decoder.time_base();
160    let out_time_base = octx.stream(0).unwrap().time_base();
161
162    let mut decoded = frame::Audio::empty();
163    let mut encoded = ffmpeg::Packet::empty();
164
165    for (stream, mut packet) in ictx.packets() {
166        if stream.index() == transcoder.stream {
167            packet.rescale_ts(stream.time_base(), in_time_base);
168
169            if let Ok(true) = transcoder.decoder.decode(&packet, &mut decoded) {
170                let timestamp = decoded.timestamp();
171                decoded.set_pts(timestamp);
172
173                transcoder
174                    .filter
175                    .get("in")
176                    .unwrap()
177                    .source()
178                    .add(&decoded)
179                    .unwrap();
180
181                while let Ok(..) = transcoder
182                    .filter
183                    .get("out")
184                    .unwrap()
185                    .sink()
186                    .frame(&mut decoded)
187                {
188                    if let Ok(true) = transcoder.encoder.encode(&decoded, &mut encoded) {
189                        encoded.set_stream(0);
190                        encoded.rescale_ts(in_time_base, out_time_base);
191                        encoded.write_interleaved(&mut octx).unwrap();
192                    }
193                }
194            }
195        }
196    }
197
198    transcoder
199        .filter
200        .get("in")
201        .unwrap()
202        .source()
203        .flush()
204        .unwrap();
205
206    while let Ok(..) = transcoder
207        .filter
208        .get("out")
209        .unwrap()
210        .sink()
211        .frame(&mut decoded)
212    {
213        if let Ok(true) = transcoder.encoder.encode(&decoded, &mut encoded) {
214            encoded.set_stream(0);
215            encoded.rescale_ts(in_time_base, out_time_base);
216            encoded.write_interleaved(&mut octx).unwrap();
217        }
218    }
219
220    if let Ok(true) = transcoder.encoder.flush(&mut encoded) {
221        encoded.set_stream(0);
222        encoded.rescale_ts(in_time_base, out_time_base);
223        encoded.write_interleaved(&mut octx).unwrap();
224    }
225
226    octx.write_trailer().unwrap();
227}
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pub fn dump(&self) -> String

Examples found in repository?
examples/transcode-audio.rs (line 38)
9fn filter(
10    spec: &str,
11    decoder: &codec::decoder::Audio,
12    encoder: &codec::encoder::Audio,
13) -> Result<filter::Graph, ffmpeg::Error> {
14    let mut filter = filter::Graph::new();
15
16    let args = format!(
17        "time_base={}:sample_rate={}:sample_fmt={}:channel_layout=0x{:x}",
18        decoder.time_base(),
19        decoder.rate(),
20        decoder.format().name(),
21        decoder.channel_layout().bits()
22    );
23
24    filter.add(&filter::find("abuffer").unwrap(), "in", &args)?;
25    filter.add(&filter::find("abuffersink").unwrap(), "out", "")?;
26
27    {
28        let mut out = filter.get("out").unwrap();
29
30        out.set_sample_format(encoder.format());
31        out.set_channel_layout(encoder.channel_layout());
32        out.set_sample_rate(encoder.rate());
33    }
34
35    filter.output("in", 0)?.input("out", 0)?.parse(spec)?;
36    filter.validate()?;
37
38    println!("{}", filter.dump());
39
40    if let Some(codec) = encoder.codec() {
41        if !codec
42            .capabilities()
43            .contains(ffmpeg::codec::capabilities::Capabilities::VARIABLE_FRAME_SIZE)
44        {
45            filter
46                .get("out")
47                .unwrap()
48                .sink()
49                .set_frame_size(encoder.frame_size());
50        }
51    }
52
53    Ok(filter)
54}
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pub fn input(&mut self, name: &str, pad: usize) -> Result<Parser<'_>, Error>

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pub fn output(&mut self, name: &str, pad: usize) -> Result<Parser<'_>, Error>

Examples found in repository?
examples/transcode-audio.rs (line 35)
9fn filter(
10    spec: &str,
11    decoder: &codec::decoder::Audio,
12    encoder: &codec::encoder::Audio,
13) -> Result<filter::Graph, ffmpeg::Error> {
14    let mut filter = filter::Graph::new();
15
16    let args = format!(
17        "time_base={}:sample_rate={}:sample_fmt={}:channel_layout=0x{:x}",
18        decoder.time_base(),
19        decoder.rate(),
20        decoder.format().name(),
21        decoder.channel_layout().bits()
22    );
23
24    filter.add(&filter::find("abuffer").unwrap(), "in", &args)?;
25    filter.add(&filter::find("abuffersink").unwrap(), "out", "")?;
26
27    {
28        let mut out = filter.get("out").unwrap();
29
30        out.set_sample_format(encoder.format());
31        out.set_channel_layout(encoder.channel_layout());
32        out.set_sample_rate(encoder.rate());
33    }
34
35    filter.output("in", 0)?.input("out", 0)?.parse(spec)?;
36    filter.validate()?;
37
38    println!("{}", filter.dump());
39
40    if let Some(codec) = encoder.codec() {
41        if !codec
42            .capabilities()
43            .contains(ffmpeg::codec::capabilities::Capabilities::VARIABLE_FRAME_SIZE)
44        {
45            filter
46                .get("out")
47                .unwrap()
48                .sink()
49                .set_frame_size(encoder.frame_size());
50        }
51    }
52
53    Ok(filter)
54}
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pub fn parse(&mut self, spec: &str) -> Result<(), Error>

Trait Implementations§

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impl Default for Graph

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fn default() -> Self

Returns the “default value” for a type. Read more
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impl Drop for Graph

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fn drop(&mut self)

Executes the destructor for this type. Read more
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impl Send for Graph

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impl Sync for Graph

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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T, U> Into<U> for T
where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.