0.7.0: Playlists, Vorbis, ALAC and more

- XSPF playlists support
- Modernization of error handling and server-client communications
- Vorbis and ALAC transcoding
- All transcoders are now optional but enabled on default
- lonelyradio_types crate is now exported through monolib

Signed-off-by: Ivan Bushchik <ivabus@ivabus.dev>
This commit is contained in:
Ivan Bushchik 2024-08-26 20:08:19 +03:00
parent adf4b7bb1c
commit 29338f32e3
No known key found for this signature in database
GPG key ID: 2F16FBF3262E090C
29 changed files with 2002 additions and 2780 deletions

1
.gitignore vendored
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@ -50,7 +50,6 @@ fastlane/test_output
### SwiftPackageManager ### ### SwiftPackageManager ###
Packages Packages
xcuserdata xcuserdata
*.xcodeproj
### Xcode ### ### Xcode ###
# Xcode # Xcode

1856
Cargo.lock generated

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@ -10,20 +10,17 @@ members = [
[package] [package]
name = "lonelyradio" name = "lonelyradio"
description = "TCP radio for lonely ones" description = "TCP radio for lonely ones"
version = "0.6.1" version = "0.7.0"
edition = "2021" edition = "2021"
license = "MIT" license = "MIT"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"] authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio" repository = "https://github.com/ivabus/lonelyradio"
[dependencies] [dependencies]
lonelyradio_types = { version = "0.6.0", path = "./lonelyradio_types" } lonelyradio_types = { version = "0.7.0", path = "./lonelyradio_types" }
rand = "0.8.5" rand = "0.8.5"
clap = { version = "4.4.18", features = ["derive"] } clap = { version = "4.4.18", features = ["derive"] }
tokio = { version = "1.35.1", features = [ tokio = { version = "1.35.1", features = [
"sync",
"fs",
"io-util",
"net", "net",
"rt-multi-thread", "rt-multi-thread",
"rt", "rt",
@ -42,14 +39,27 @@ lofty = "0.18.2"
async-stream = "0.3.5" async-stream = "0.3.5"
tokio-stream = { version = "0.1.15", features = ["sync"] } tokio-stream = { version = "0.1.15", features = ["sync"] }
futures-util = "0.3.30" futures-util = "0.3.30"
samplerate = "0.2.4"
once_cell = "1.19.0" once_cell = "1.19.0"
flacenc = { version = "0.4.0", default-features = false } image = { version = "0.25.1", default-features = false, features = ["png", "jpeg", "bmp"]}
image = "0.25.1" xspf = "0.4.0"
url = "2.5.2"
samplerate = "0.2.4"
[build-dependencies] # Optional encoders
cc = "1.0.98" flacenc = { version = "0.4.0", default-features = false, optional = true }
alac-encoder = { version = "0.3.0", optional = true }
vorbis_rs = {version = "0.5.4", optional = true }
[profile.release] [features]
default = ["all-lossless", "all-lossy"]
all-lossless = ["alac", "flac"]
all-lossy = ["vorbis"]
alac = ["dep:alac-encoder"]
flac = ["dep:flacenc"]
vorbis = ["dep:vorbis_rs"]
[profile.distribute]
inherits = "release"
opt-level = 3 opt-level = 3
strip = true strip = true
lto = "fat"

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@ -1,27 +1,33 @@
# lonelyradio # lonelyradio Music Streamer
Broadcast lossless audio over the internet. Shuffles through your [XSPF playlists](https://www.xspf.org) or your entire library.
Decodes audio streams using [symphonia](https://github.com/pdeljanov/Symphonia). Decodes audio streams using [symphonia](https://github.com/pdeljanov/Symphonia) (supported [decoders](https://github.com/pdeljanov/Symphonia?tab=readme-ov-file#codecs-decoders) and [demuxers](https://github.com/pdeljanov/Symphonia?tab=readme-ov-file#formats-demuxers))
Optionally transcodes audio into and from FLAC using [flacenc-rs](https://github.com/yotarok/flacenc-rs/) and [claxon](https://github.com/ruuda/claxon). Streams music using [FLAC](https://crates.io/crates/flacenc), [ALAC](https://crates.io/crates/alac-encoder), [Vorbis](https://crates.io/crates/vorbis_rs) or raw PCM on clients requests.
## Install server ### Install server
```shell ```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.6.1 lonelyradio cargo install --git https://github.com/ivabus/lonelyradio --tag 0.7.0 lonelyradio
``` ```
## Run ### Run
``` ```
lonelyradio <MUSIC_FOLDER> lonelyradio <MUSIC_FOLDER>
``` ```
All files (recursively) will be shuffled and played back. Public log will be displayed to stdout, private to stderr. All files (recursively) will be shuffled and played back. Log will be displayed to stdout.
Look into `--help` for detailed info Look into `--help` for detailed info
#### Playlists
Specify a directory with playlists with `--playlist-dir`. lonelyradio will scan them on startup and play them on clients requests.
Only the `<location>` and (playlist's) element would be used and only `file://` is supported.
### Clients ### Clients
#### monoclient-x #### monoclient-x
@ -37,42 +43,37 @@ Look into `--help` for detailed info
[monoclient-s](./monoclient-s) is a GUI player for lonelyradio built with [Slint](https://slint.dev) [monoclient-s](./monoclient-s) is a GUI player for lonelyradio built with [Slint](https://slint.dev)
##### Install ##### Install
```shell ```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.6.1 monoclient-s cargo install --git https://github.com/ivabus/lonelyradio --tag 0.7.0 monoclient-s
``` ```
You may need to install some dependencies for Slint. You may need to install some dependencies for Slint.
Desktop integration will be added later. Desktop integration will be added later.
##### Build
```
cargo build -p monoclient-s
```
You may need to install some dependencies for Slint.
#### monoclient #### monoclient
[monoclient](./monoclient) is a CLI player for lonelyradio that uses [monolib](./monolib) [monoclient](./monoclient) is a CLI player for lonelyradio that uses [monolib](./monolib)
##### Install monoclient
```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.7.0 monoclient
```
#### Usage
```shell ```shell
monoclient <SERVER>:<PORT> monoclient <SERVER>:<PORT>
``` ```
##### Install monoclient Look into `--help` for detailed info on usage.
```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.6.1 monoclient
```
# Other things # Other things
[monoloader](./monoloader) is a tool, that allows you to download individual audio tracks from lonelyradio-compatible servers. [monoloader](./monoloader) is a tool that allows you to download individual audio tracks from lonelyradio-compatible servers.
[monolib](./monolib) provides a C API compatible with lonelyradio for creating custom clients. [monolib](./monolib) provides a C API compatible with lonelyradio for creating custom clients.
@ -82,10 +83,6 @@ The full protocol specification will be available later. If you would like to le
As lonelyradio has not yet reached its first major release, the API may (and will) break at any point. As lonelyradio has not yet reached its first major release, the API may (and will) break at any point.
### Microphone server
Experimental (and uncompatible with versions 0.6+) server (lonelyradio-compatible) for streaming audio from your microphone is available in the [microserve](./microserve) crate.
## License ## License
lonelyradio, monolib and monoclient, as well as all other crates in this repository, are licensed under the terms of the [MIT license](./LICENSE). lonelyradio, monolib and monoclient, as well as all other crates in this repository, are licensed under the terms of the [MIT license](./LICENSE).

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@ -1,12 +1,13 @@
[package] [package]
name = "lonelyradio_types" name = "lonelyradio_types"
edition = "2021"
version = "0.7.0"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
description = "Shared types for lonelyradio" description = "Shared types for lonelyradio"
license = "MIT" license = "MIT"
version = "0.6.0"
edition = "2021"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio" repository = "https://github.com/ivabus/lonelyradio"
[dependencies] [dependencies]
serde = { version = "1.0.197", features = ["derive"] } serde = {version = "1.0.209", features = ["derive"]}
serde_bytes = "0.11.15" serde_bytes = {version = "0.11.15"}

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@ -1,9 +1,39 @@
use serde::{Deserialize, Serialize}; use serde::{Deserialize, Serialize};
pub const HELLO_MAGIC: u64 = 0x104e1374d10; pub const HELLO_MAGIC: &[u8; 8] = b"lonelyra";
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)] #[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub enum Message { pub enum Request {
// Just play what server wants you to give
#[serde(rename = "p", alias = "Play")]
Play(Settings),
#[serde(rename = "lpl", alias = "ListPlaylist")]
ListPlaylist,
#[serde(rename = "ppl", alias = "PlayPlaylist")]
PlayPlaylist(String, Settings),
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct PlaylistResponce {
pub playlists: Vec<String>,
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub enum RequestResult {
Ok,
Playlist(PlaylistResponce),
Error(RequestError),
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub enum RequestError {
NoSuchPlaylist,
WrongCoverSize,
UnsupportedEncoder,
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub enum PlayMessage {
T(TrackMetadata), T(TrackMetadata),
F(FragmentMetadata), F(FragmentMetadata),
} }
@ -11,10 +41,10 @@ pub enum Message {
#[repr(C)] #[repr(C)]
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)] #[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct Settings { pub struct Settings {
#[serde(rename = "e")] #[serde(rename = "e", alias = "encoder")]
pub encoder: Encoder, pub encoder: Encoder,
#[serde(rename = "co")] #[serde(rename = "co", alias = "cover")]
pub cover: i32, pub cover: i32,
} }
@ -22,6 +52,9 @@ pub struct Settings {
pub struct ServerCapabilities { pub struct ServerCapabilities {
#[serde(rename = "e")] #[serde(rename = "e")]
pub encoders: Vec<Encoder>, pub encoders: Vec<Encoder>,
// Will be used in the next updates
//#[serde(rename = "ar")]
//pub available_requests: Vec<Request>,
} }
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)] #[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
@ -42,22 +75,47 @@ pub struct TrackMetadata {
pub album: String, pub album: String,
#[serde(rename = "mar")] #[serde(rename = "mar")]
pub artist: String, pub artist: String,
#[serde(rename = "co")]
#[serde(with = "serde_bytes")] #[serde(
rename = "co",
skip_serializing_if = "Option::is_none",
with = "serde_bytes",
default = "none"
)]
pub cover: Option<Vec<u8>>, pub cover: Option<Vec<u8>>,
pub id: u8,
} }
// WavPack, Opus and Aac are currently unimplemented.
#[repr(u8)] #[repr(u8)]
#[derive(Deserialize, Serialize, Clone, Copy, Debug, PartialEq)] #[derive(Deserialize, Serialize, Clone, Copy, Debug, PartialEq)]
pub enum Encoder { pub enum Encoder {
Pcm16 = 0, Pcm16 = 0,
PcmFloat = 1, PcmFloat = 1,
Flac = 2, Flac = 2,
Alac = 3,
WavPack = 4,
Opus = 5,
Aac = 6,
Vorbis = 7,
} }
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)] #[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct FragmentMetadata { pub struct FragmentMetadata {
// In bytes // In bytes or samples, depends on encoder: Pcm* - samples, any compressed - bytes
#[serde(rename = "l")] #[serde(rename = "le")]
pub length: u64, pub length: u64,
#[serde(
rename = "mc",
skip_serializing_if = "Option::is_none",
with = "serde_bytes",
default = "none"
)]
pub magic_cookie: Option<Vec<u8>>,
}
fn none() -> Option<Vec<u8>> {
None
} }

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View file

@ -1,24 +0,0 @@
[package]
name = "microserve"
version = "0.5.0"
license = "MIT"
edition = "2021"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio"
[dependencies]
cpal = "0.15.3"
lonelyradio_types = { path = "../lonelyradio_types" }
once_cell = "1.19.0"
queues = "1.1.0"
rmp-serde = "1.3.0"
tokio = { version = "1.35.1", features = [
"sync",
"fs",
"io-util",
"net",
"rt-multi-thread",
"rt",
"macros",
] }

View file

@ -1,96 +0,0 @@
use cpal::traits::{DeviceTrait, HostTrait, StreamTrait};
use lonelyradio_types::{FragmentMetadata, TrackMetadata};
use once_cell::sync::Lazy;
use std::collections::VecDeque;
use std::io::Write;
use std::sync::Arc;
use std::sync::Mutex;
use std::sync::RwLock;
use std::time::Duration;
use tokio::net::TcpListener;
static QUEUE: Lazy<Arc<RwLock<VecDeque<Vec<i16>>>>> =
Lazy::new(|| Arc::new(RwLock::new(VecDeque::new())));
static START_INDEX: Mutex<usize> = Mutex::new(0);
#[tokio::main]
async fn main() {
tokio::spawn(listen_mic());
println!("Started buffering");
let listener = TcpListener::bind("0.0.0.0:5894").await.unwrap();
std::thread::sleep(Duration::from_secs(5));
tokio::spawn(update_start());
println!("Accepting connections");
loop {
let (socket, _) = listener.accept().await.unwrap();
let socket = socket.into_std().unwrap();
tokio::spawn(stream(socket));
}
}
async fn update_start() {
loop {
std::thread::sleep(Duration::from_secs(1));
*START_INDEX.lock().unwrap() = QUEUE.read().unwrap().len() - 5;
}
}
async fn stream(mut s: std::net::TcpStream) {
println!("Playing for {}", s.peer_addr().unwrap());
let md = lonelyradio_types::Message::T(TrackMetadata {
cover: None,
encoder: lonelyradio_types::Encoder::Pcm,
track_length_secs: 0,
track_length_frac: 0.0,
channels: 1,
sample_rate: 44100,
title: "microserve instance".to_string(),
album: "".to_string(),
artist: "".to_string(),
});
s.write_all(rmp_serde::to_vec(&md).unwrap().as_slice()).unwrap();
let mut ind = *START_INDEX.lock().unwrap();
dbg!(ind);
loop {
let front = QUEUE.read().unwrap()[ind].clone();
ind += 1;
let md = lonelyradio_types::Message::F(FragmentMetadata {
length: front.len() as u64,
});
s.write_all(rmp_serde::to_vec(&md).unwrap().as_slice()).unwrap();
if s.write_all(unsafe { front.as_slice().align_to::<u8>().1 }).is_err() {
return;
};
while ind >= QUEUE.read().unwrap().len() - 5 {
std::thread::sleep(Duration::from_millis(100))
}
}
}
async fn listen_mic() {
let host = cpal::default_host();
let device = host.default_input_device().unwrap();
let config = device.default_input_config().unwrap();
let stream = match config.sample_format() {
cpal::SampleFormat::F32 => device.build_input_stream(
&config.into(),
move |data: &[f32], _: &_| {
let samples = data.iter().map(|x| (*x * 32767.0) as i16).collect();
QUEUE.write().unwrap().push_back(samples);
},
|e| eprintln!("Error while reading: {}", e),
None,
),
_ => {
unimplemented!()
}
}
.unwrap();
loop {
stream.play().unwrap();
std::thread::sleep(Duration::from_millis(100));
}
}

View file

@ -1,17 +1,13 @@
[package] [package]
name = "monoclient-s" name = "monoclient-s"
description = "Client for lonelyradio built with Slint" description = "Client for lonelyradio built with Slint"
version = "0.6.0" version = "0.7.0"
edition = "2021" edition = "2021"
[dependencies] [dependencies]
slint = { version = "1.6", features = ["backend-android-activity-06"] } slint = { version = "1.6" }
monolib = { path = "../monolib", version = "0.6.0" } monolib = { path = "../monolib", version = "0.7.0" }
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" } zune-jpeg = "0.4.13"
zune-jpeg = "0.4.11"
[lib]
crate-type = [ "cdylib" ]
[package.metadata.bundle] [package.metadata.bundle]
name = "monoclient-s" name = "monoclient-s"

View file

@ -1,227 +0,0 @@
use std::time::Duration;
use monolib::State;
use slint::{Image, Rgb8Pixel, Rgba8Pixel, SharedPixelBuffer, Weak};
slint::slint! {
import { AboutSlint, Button, VerticalBox, GroupBox, Slider } from "std-widgets.slint";
export component MainWindow inherits Window {
max-height: self.preferred-height;
callback play;
callback stop;
callback next;
callback change_volume(float);
callback text_edited;
in-out property <string> addr: address.text;
in-out property <string> mtitle: "";
in-out property <string> malbum: "";
in-out property <string> martist: "";
in-out property <float> volume: svolume.value;
in-out property <bool> start_enabled: false;
in-out property <bool> playing: false;
in-out property <bool> paused: false;
in property <image> cover: @image-url("lonelyradio.png");
title: "monoclient-s";
min-width: 192px;
max-width: 768px;
VerticalBox {
alignment: center;
spacing: 0px;
Image {
source: cover;
max-height: 192px;
max-width: 192px;
min-height: 192px;
min-width: 192px;
}
GroupBox{
max-width: 768px;
address := TextInput {
text: "";
horizontal-alignment: center;
height: 1.25rem;
accepted => {
self.clear_focus()
}
edited => {
text_edited()
}
}
}
VerticalLayout {
max-width: 512px;
VerticalLayout {
spacing: 4px;
Button {
max-width: 256px;
text: playing ? (paused ? "Play" : "Pause") : "Start";
enabled: start_enabled || playing;
clicked => {
play()
}
}
HorizontalLayout {
spacing: 4px;
max-width: 256px;
Button {
text: "Stop";
enabled: playing && !paused;
clicked => {
stop()
}
}
Button {
text: "Next";
enabled: playing && !paused;
clicked => {
next()
}
}
}
svolume := Slider {
value: 255;
maximum: 255;
changed(f) => {
change_volume(f)
}
}
}
}
VerticalLayout {
padding: 4px;
tartist := Text {
height: 1.25rem;
font-weight: 600;
text: martist;
overflow: elide;
}
talbum := Text {
height: 1.25rem;
text: malbum;
overflow: elide;
}
ttitle := Text {
height: 1.25rem;
text: mtitle;
overflow: elide;
}
}
}
}
}
fn start_playback(window_weak: Weak<MainWindow>) {
let window = window_weak.upgrade().unwrap();
let addr = window.get_addr().to_string();
let handle = std::thread::spawn(move || {
monolib::run(
&addr,
lonelyradio_types::Settings {
encoder: lonelyradio_types::Encoder::Flac,
cover: 512,
},
)
});
std::thread::sleep(Duration::from_millis(166));
if handle.is_finished() {
window.set_playing(false);
return;
}
window.set_playing(true);
window.set_paused(false);
while monolib::get_metadata().is_none() {}
monolib::set_volume(window.get_volume() as u8);
}
pub fn _main() {
let window = MainWindow::new().unwrap();
let window_weak = window.as_weak();
window.on_text_edited(move || {
let window = window_weak.upgrade().unwrap();
let addr = window.get_addr().to_string();
window.set_start_enabled(addr.contains(':'));
});
let window_weak = window.as_weak();
window.on_play(move || match monolib::get_state() {
State::NotStarted => start_playback(window_weak.clone()),
State::Paused => {
let window = window_weak.upgrade().unwrap();
window.set_paused(false);
monolib::toggle();
}
State::Resetting => {}
State::Playing => {
let window = window_weak.upgrade().unwrap();
window.set_paused(true);
monolib::toggle()
}
});
let window_weak = window.as_weak();
window.on_next(move || {
monolib::stop();
start_playback(window_weak.clone())
});
let window_weak = window.as_weak();
window.on_stop(move || {
let window = window_weak.upgrade().unwrap();
window.set_playing(false);
window.set_martist("".into());
window.set_malbum("".into());
window.set_mtitle("".into());
window.set_cover(Image::from_rgba8(SharedPixelBuffer::<Rgba8Pixel>::new(1, 1)));
monolib::stop();
});
window.on_change_volume(move |vol| monolib::set_volume(vol as u8));
let window_weak = window.as_weak();
std::thread::spawn(move || loop {
let window = window_weak.clone();
while monolib::get_metadata().is_none() {
std::thread::sleep(Duration::from_millis(25))
}
let md = monolib::get_metadata().unwrap();
let _md = md.clone();
if let Some(jpeg) = md.cover {
let mut decoder = zune_jpeg::JpegDecoder::new(jpeg);
decoder.decode_headers().unwrap();
let (w, h) = decoder.dimensions().unwrap();
let decoded = decoder.decode().unwrap();
let mut pixel_buffer = SharedPixelBuffer::<Rgb8Pixel>::new(w as u32, h as u32);
pixel_buffer.make_mut_bytes().copy_from_slice(&decoded);
window
.upgrade_in_event_loop(|win| {
let image = Image::from_rgb8(pixel_buffer);
win.set_cover(image);
})
.unwrap();
} else {
window
.upgrade_in_event_loop(|win| {
win.set_cover(Image::from_rgba8(SharedPixelBuffer::<Rgba8Pixel>::new(1, 1)));
})
.unwrap();
}
slint::invoke_from_event_loop(move || {
let window = window.unwrap();
window.set_martist(md.artist.clone().into());
window.set_malbum(md.album.clone().into());
window.set_mtitle(md.title.clone().into());
})
.unwrap();
while monolib::get_metadata() == Some(_md.clone()) {
std::thread::sleep(Duration::from_millis(100))
}
});
window.run().unwrap();
}

View file

@ -1,7 +0,0 @@
mod app;
#[cfg(target_os = "andoid")]
#[no_mangle]
fn android_main(app: slint::android::AndroidApp) {
slint::android::init(app).unwrap();
app::_main();
}

View file

@ -1,4 +1,262 @@
mod app; use std::time::Duration;
fn main() {
app::_main() use monolib::State;
use slint::{
Image, ModelRc, Rgb8Pixel, Rgba8Pixel, SharedPixelBuffer, SharedString, VecModel, Weak,
};
slint::slint! {
import { ComboBox, Button, VerticalBox, GroupBox, Slider } from "std-widgets.slint";
export component MainWindow inherits Window {
max-height: self.preferred-height;
callback play;
callback stop;
callback next;
callback refreshp;
callback change_volume(float);
callback text_edited;
in-out property <string> addr: address.text;
in-out property <string> mtitle: "";
in-out property <string> malbum: "";
in-out property <string> martist: "";
in-out property <float> volume: svolume.value;
in-out property <bool> start_enabled: false;
in-out property <bool> playing: false;
in-out property <bool> paused: false;
in property <image> cover: @image-url("lonelyradio.png");
in property <[string]> playlists: ["All tracks"];
in-out property <string> selected_playlist: selected.current-value;
title: "monoclient-s";
min-width: 192px;
max-width: 768px;
VerticalBox {
alignment: center;
spacing: 0px;
Image {
source: cover;
max-height: 192px;
max-width: 192px;
min-height: 192px;
min-width: 192px;
}
GroupBox{
max-width: 768px;
address := TextInput {
text: "";
horizontal-alignment: center;
height: 1.25rem;
accepted => {
self.clear_focus()
}
edited => {
text_edited();
}
}
}
VerticalLayout {
max-width: 512px;
VerticalLayout {
spacing: 4px;
Button {
max-width: 256px;
text: playing ? (paused ? "Play" : "Pause") : "Start";
enabled: start_enabled || playing;
clicked => {
play()
}
}
HorizontalLayout {
spacing: 4px;
max-width: 256px;
Button {
text: "Stop";
enabled: playing && !paused;
clicked => {
stop()
}
}
Button {
text: "Next";
enabled: playing && !paused;
clicked => {
next()
}
}
}
HorizontalLayout {
selected := ComboBox {
model: playlists;
current-value: "All tracks";
selected() => {
self.clear_focus()
}
}
}
svolume := Slider {
value: 255;
maximum: 255;
changed(f) => {
change_volume(f)
}
}
}
}
VerticalLayout {
padding: 4px;
tartist := Text {
height: 1.25rem;
font-weight: 600;
text: martist;
overflow: elide;
}
talbum := Text {
height: 1.25rem;
text: malbum;
overflow: elide;
}
ttitle := Text {
height: 1.25rem;
text: mtitle;
overflow: elide;
}
}
}
}
}
#[allow(dead_code)]
fn start_playback(window_weak: Weak<MainWindow>) {
let window = window_weak.upgrade().unwrap();
let addr = window.get_addr().to_string();
let playlist = window.get_selected_playlist();
let handle = std::thread::spawn(move || {
monolib::run(
&addr,
lonelyradio_types::Settings {
encoder: lonelyradio_types::Encoder::Flac,
cover: 512,
},
if playlist == "All tracks" {
""
} else {
&playlist
},
)
});
std::thread::sleep(Duration::from_millis(166));
if handle.is_finished() {
window.set_playing(false);
return;
}
window.set_playing(true);
window.set_paused(false);
while monolib::get_metadata().is_none() {}
monolib::set_volume(window.get_volume() as u8);
}
pub fn main() {
let window = MainWindow::new().unwrap();
let window_weak = window.as_weak();
window.on_text_edited(move || {
let window = window_weak.upgrade().unwrap();
let addr = window.get_addr().to_string();
if addr.contains(':') {
window.set_start_enabled(true);
let playlists = match monolib::list_playlists(&window.get_addr()) {
Some(v) => [vec!["All tracks".to_string()], v].concat(),
None => vec!["All tracks".to_string()],
};
window.set_playlists(ModelRc::new(VecModel::from(
playlists.iter().map(SharedString::from).collect::<Vec<_>>(),
)));
} else {
window.set_start_enabled(false);
}
});
let window_weak = window.as_weak();
window.on_play(move || match monolib::get_state() {
State::NotStarted => start_playback(window_weak.clone()),
State::Paused => {
let window = window_weak.upgrade().unwrap();
window.set_paused(false);
monolib::toggle();
}
State::Resetting => {}
State::Playing => {
let window = window_weak.upgrade().unwrap();
window.set_paused(true);
monolib::toggle()
}
});
let window_weak = window.as_weak();
window.on_next(move || {
monolib::stop();
start_playback(window_weak.clone())
});
let window_weak = window.as_weak();
window.on_stop(move || {
let window = window_weak.upgrade().unwrap();
window.set_playing(false);
window.set_martist("".into());
window.set_malbum("".into());
window.set_mtitle("".into());
window.set_cover(Image::from_rgba8(SharedPixelBuffer::<Rgba8Pixel>::new(1, 1)));
monolib::stop();
});
window.on_change_volume(move |vol| monolib::set_volume(vol as u8));
let window_weak = window.as_weak();
std::thread::spawn(move || loop {
let window = window_weak.clone();
while monolib::get_metadata().is_none() {
std::thread::sleep(Duration::from_millis(25))
}
let md = monolib::get_metadata().unwrap();
let _md = md.clone();
if let Some(jpeg) = md.cover {
let mut decoder = zune_jpeg::JpegDecoder::new(jpeg);
decoder.decode_headers().unwrap();
let (w, h) = decoder.dimensions().unwrap();
let decoded = decoder.decode().unwrap();
let mut pixel_buffer = SharedPixelBuffer::<Rgb8Pixel>::new(w as u32, h as u32);
pixel_buffer.make_mut_bytes().copy_from_slice(&decoded);
window
.upgrade_in_event_loop(|win| {
let image = Image::from_rgb8(pixel_buffer);
win.set_cover(image);
})
.unwrap();
} else {
window
.upgrade_in_event_loop(|win| {
win.set_cover(Image::from_rgba8(SharedPixelBuffer::<Rgba8Pixel>::new(1, 1)));
})
.unwrap();
}
slint::invoke_from_event_loop(move || {
let window = window.unwrap();
window.set_martist(md.artist.clone().into());
window.set_malbum(md.album.clone().into());
window.set_mtitle(md.title.clone().into());
})
.unwrap();
while monolib::get_metadata() == Some(_md.clone()) {
std::thread::sleep(Duration::from_millis(100))
}
});
window.run().unwrap();
} }

View file

@ -47,7 +47,7 @@ struct Cover {
self.cover = PlatformImage(cgImage: CGImage(jpegDataProviderSource: CGDataProvider(data: data)!, decode: nil, shouldInterpolate: false, intent: CGColorRenderingIntent.absoluteColorimetric)!).preparingForDisplay()! self.cover = PlatformImage(cgImage: CGImage(jpegDataProviderSource: CGDataProvider(data: data)!, decode: nil, shouldInterpolate: false, intent: CGColorRenderingIntent.absoluteColorimetric)!).preparingForDisplay()!
#endif #endif
// deallocating memory // deallocating memory
c_drop(cov.bytes, Int(cov.length)) c_drop(cov.bytes, UInt(Int(cov.length)))
print(self.cover.size) print(self.cover.size)
} else { } else {

View file

@ -29,6 +29,11 @@ enum EncoderType: UInt8 {
case PCM16 = 0 case PCM16 = 0
case PCMFloat = 1 case PCMFloat = 1
case FLAC = 2 case FLAC = 2
case Alac = 3
//WavPack = 4,
//Opus = 5,
//Aac = 6,
case Vorbis = 7
} }
enum CoverSize: Int32 { enum CoverSize: Int32 {
@ -40,110 +45,166 @@ enum CoverSize: Int32 {
case NoCover = -1 case NoCover = -1
} }
struct PlayList: Identifiable, Hashable {
var id: Int
var name: String
}
struct Settings { struct Settings {
var encoder: EncoderType = EncoderType.FLAC var encoder: EncoderType = EncoderType.FLAC
var cover_size: CoverSize = CoverSize.High/* var cover_size: CoverSize = CoverSize.High/*
init(enc: EncoderType, cov: CoverSize) { init(enc: EncoderType, cov: CoverSize) {
encoder = enc encoder = enc
cover_size = cov cover_size = cov
}*/ }*/
} }
#if os(tvOS)
typealias MyStack = HStack
#else
typealias MyStack = VStack
#endif
struct Player: View { struct Player: View {
let timer_state = Timer.publish(every: 0.25, on: .main, in: .common).autoconnect() let timer_state = Timer.publish(every: 0.25, on: .main, in: .common).autoconnect()
let timer_meta = Timer.publish(every: 0.5, on: .main, in: .common).autoconnect() let timer_playlists = Timer.publish(every: 5, on: .main, in: .common).autoconnect()
@State var metadata: Metadata = Metadata(title: "", album: "", artist: "") @State var metadata: Metadata = Metadata(title: "", album: "", artist: "")
@State var prev_meta: Metadata = Metadata(title: "", album: "", artist: "") @State var prev_meta: Metadata = Metadata(title: "", album: "", artist: "")
@State var cover: Cover = Cover(cover: PlatformImage()) @State var cover: Cover = Cover(cover: PlatformImage())
@State var state: PlayerState = PlayerState.NotStarted @State var state: PlayerState = PlayerState.NotStarted
@State var settings: Settings = Settings.init() @State var settings: Settings = Settings.init()
@State var playlists: [PlayList] = [PlayList(id: 0, name: "All tracks")]
@State var playlist: PlayList = PlayList(id: 0, name: "All tracks")
@AppStorage("ContentView.server") var server: String = "" @AppStorage("ContentView.server") var server: String = ""
var body: some View { var body: some View {
VStack(alignment: .center) {
MyStack(alignment: .center) {
VStack(alignment: .center) {
#if os(macOS) #if os(macOS)
Image(nsImage: cover.cover) Image(nsImage: cover.cover)
.resizable() .resizable()
.aspectRatio(contentMode: .fit) .aspectRatio(contentMode: .fit)
.frame(minWidth: 256, maxWidth: 256, minHeight: 256, maxHeight: 256) .frame(minWidth: 256, maxWidth: 256, minHeight: 256, maxHeight: 256)
.frame(width: 256.0, height: 256.0) .frame(width: 256.0, height: 256.0)
.clipShape(.rect(cornerRadius: 24)) .clipShape(.rect(cornerRadius: 24))
.shadow(radius: 16) .shadow(radius: 16)
.padding(16) .padding(16)
#else #else
Image(uiImage: cover.cover) Image(uiImage: cover.cover)
.resizable() .resizable()
.aspectRatio(contentMode: .fit) .aspectRatio(contentMode: .fit)
.frame(minWidth: 256, maxWidth: 256, minHeight: 256, maxHeight: 256) .frame(minWidth: 256, maxWidth: 256, minHeight: 256, maxHeight: 256)
.frame(width: 256.0, height: 256.0) .frame(width: 256.0, height: 256.0)
.clipShape(.rect(cornerRadius: 24)) .clipShape(.rect(cornerRadius: 24))
.shadow(radius: 16) .shadow(radius: 16)
.padding(16) .padding(16)
#endif #endif
VStack(alignment: .center){
Text(metadata.title).bold()
Text(metadata.album) VStack(alignment: .center){
Text(metadata.title).bold()
Text(metadata.artist)
}.frame(minHeight: 64) Text(metadata.album)
TextField( Text(metadata.artist)
"Server", }.frame(minHeight: 64).onReceive(timer_state) { _ in
text: $server, metadata.update()
onCommit: { if prev_meta != metadata {
#if os(macOS) prev_meta = metadata
DispatchQueue.main.async { cover.update()
NSApp.keyWindow?.makeFirstResponder(nil)
} }
let image = cover.cover
let mediaArtwork = MPMediaItemArtwork(boundsSize: image.size) { (size: CGSize) -> PlatformImage in
return image
}
#if os(macOS)
MPNowPlayingInfoCenter.default().playbackState = state == PlayerState.Playing ? .playing : .paused
#endif #endif
let nowPlayingInfo: [String: Any] = [
MPMediaItemPropertyArtist: metadata.artist,
MPMediaItemPropertyAlbumTitle: metadata.album,
MPMediaItemPropertyTitle: metadata.title,
MPMediaItemPropertyArtwork: mediaArtwork,
MPNowPlayingInfoPropertyIsLiveStream: true,
MPMediaItemPropertyPlaybackDuration: c_get_metadata_length(),
]
MPNowPlayingInfoCenter.default().nowPlayingInfo = nowPlayingInfo
} }
)
.disableAutocorrection(true)
.frame(width: 256)
.textFieldStyle(.roundedBorder)
.padding(16)
.multilineTextAlignment(.center)
HStack(spacing: 8) {
Button(action: stop){
Image(systemName: "stop.fill").padding(4).frame(width: 32, height: 24)
}
.disabled(state == PlayerState.NotStarted)
.buttonStyle(.bordered)
.font(.system(size: 20))
.buttonBorderShape(.capsule)
Button(action: play){ TextField(
Image(systemName: state == PlayerState.NotStarted ? "infinity.circle" : (state == PlayerState.Playing) ? "pause.circle.fill" : "play.circle" ) "Server",
.font(.system(size: 30)) text: $server,
.padding(4) onCommit: {
} #if os(macOS)
.buttonStyle(.borderedProminent) DispatchQueue.main.async {
.buttonBorderShape(.capsule) NSApp.keyWindow?.makeFirstResponder(nil)
}
#endif
}
)
.disableAutocorrection(true)
.frame(width: 256)
.textFieldStyle(.roundedBorder)
.padding(16)
.multilineTextAlignment(.center)
Button(action: next){ HStack(spacing: 8) {
Image(systemName: "forward.end.fill").padding(4).frame(width: 32, height: 24) Button(action: stop){
}.disabled(state == PlayerState.NotStarted) Image(systemName: "stop.fill").padding(4).frame(width: 32, height: 24)
}
.disabled(state == PlayerState.NotStarted)
.buttonStyle(.bordered) .buttonStyle(.bordered)
.font(.system(size: 20)) .font(.system(size: 20))
.buttonBorderShape(.capsule) .buttonBorderShape(.capsule)
}
Menu { Button(action: play){
Picker("Encoder", selection: $settings.encoder) { Image(systemName: state == PlayerState.NotStarted ? "infinity.circle" : (state == PlayerState.Playing) ? "pause.circle.fill" : "play.circle" )
Text("PCM (s16)") .font(.system(size: 30))
.tag(EncoderType.PCM16) .padding(4)
Text("PCM (f32)") }
.tag(EncoderType.PCMFloat) .buttonStyle(.borderedProminent)
Text("FLAC (s24)") .buttonBorderShape(.capsule)
.tag(EncoderType.FLAC)
}.pickerStyle(.menu) Button(action: next){
Image(systemName: "forward.end.fill").padding(4).frame(width: 32, height: 24)
Picker("Cover size", selection: $settings.cover_size) { }.disabled(state == PlayerState.NotStarted)
.buttonStyle(.bordered)
.font(.system(size: 20))
.buttonBorderShape(.capsule)
}.onReceive(timer_state) { _ in
state.update()
}
Menu {
Picker("Playlist", selection: $playlist) {
ForEach ($playlists) { pl in
Text(pl.wrappedValue.name).tag(pl.wrappedValue)
}
}.pickerStyle(.menu)
Picker("Encoder", selection: $settings.encoder) {
Text("PCM (s16)")
.tag(EncoderType.PCM16)
Text("PCM (f32)")
.tag(EncoderType.PCMFloat)
Text("FLAC (s24)")
.tag(EncoderType.FLAC)
Text("ALAC (s16)")
.tag(EncoderType.Alac)
Text("Vorbis (lossy)")
.tag(EncoderType.Vorbis)
}.pickerStyle(.menu)
Picker("Cover size", selection: $settings.cover_size) {
Text("Original") Text("Original")
.tag(CoverSize.Full) .tag(CoverSize.Full)
Text("High (768)") Text("High (768)")
@ -157,77 +218,58 @@ struct Player: View {
Text("No cover") Text("No cover")
.tag(CoverSize.NoCover) .tag(CoverSize.NoCover)
}.pickerStyle(.menu) }.pickerStyle(.menu)
} label: { } label: {
Label("Settings", systemImage: "gearshape") Label("Settings", systemImage: "gearshape")
.padding(16) .padding(16)
}.frame(maxWidth: 128) }.frame(maxWidth: 128)
}
.padding(32)
.onReceive(timer_state) { _ in
state.update()
#if os(macOS)
MPNowPlayingInfoCenter.default().playbackState = state == PlayerState.Playing ? .playing : .paused
#endif
}
.onReceive(timer_meta) { _ in
metadata.update()
if prev_meta != metadata || metadata.album == "" || cover.cover == PlatformImage() {
prev_meta = metadata
cover.update()
}
let image = cover.cover
let mediaArtwork = MPMediaItemArtwork(boundsSize: image.size) { (size: CGSize) -> PlatformImage in
return image
} }
let nowPlayingInfo: [String: Any] = [ .padding(32)
MPMediaItemPropertyArtist: metadata.artist, .onReceive(timer_playlists) { _ in
MPMediaItemPropertyAlbumTitle: metadata.album, var id = -1
MPMediaItemPropertyTitle: metadata.title, playlists = (["All tracks"] + String(cString: c_list_playlists(server)).components(separatedBy: "\n")).map({elem in
MPMediaItemPropertyArtwork: mediaArtwork, if elem.isEmpty {
MPNowPlayingInfoPropertyIsLiveStream: true, return PlayList(id: -1, name: elem)
MPMediaItemPropertyPlaybackDuration: c_get_metadata_length(), }
id += 1;
] return PlayList(id: id, name: elem)
MPNowPlayingInfoCenter.default().nowPlayingInfo = nowPlayingInfo }).filter({elem in elem.id != -1})
}
} .onAppear() {
.onAppear() {
#if os(iOS) #if os(iOS)
UIApplication.shared.beginReceivingRemoteControlEvents() UIApplication.shared.beginReceivingRemoteControlEvents()
#endif #endif
MPRemoteCommandCenter.shared().previousTrackCommand.isEnabled = false MPRemoteCommandCenter.shared().previousTrackCommand.isEnabled = false
MPRemoteCommandCenter.shared().nextTrackCommand.isEnabled = true MPRemoteCommandCenter.shared().nextTrackCommand.isEnabled = true
MPRemoteCommandCenter.shared().skipForwardCommand.isEnabled = false MPRemoteCommandCenter.shared().skipForwardCommand.isEnabled = false
MPRemoteCommandCenter.shared().skipBackwardCommand.isEnabled = false MPRemoteCommandCenter.shared().skipBackwardCommand.isEnabled = false
MPRemoteCommandCenter.shared().pauseCommand.addTarget(handler: { _ in MPRemoteCommandCenter.shared().pauseCommand.addTarget(handler: { _ in
if state != PlayerState.Paused { if state != PlayerState.Paused {
play()
}
return MPRemoteCommandHandlerStatus.success
})
MPRemoteCommandCenter.shared().playCommand.addTarget(handler: { _ in
if state != PlayerState.Playing {
play()
}
return MPRemoteCommandHandlerStatus.success
})
MPRemoteCommandCenter.shared().togglePlayPauseCommand.addTarget(handler: {_ in
play() play()
} return MPRemoteCommandHandlerStatus.success
return MPRemoteCommandHandlerStatus.success })
})
MPRemoteCommandCenter.shared().playCommand.addTarget(handler: { _ in MPRemoteCommandCenter.shared().nextTrackCommand.addTarget(handler: {_ in
if state != PlayerState.Playing { next()
play() return MPRemoteCommandHandlerStatus.success
} })
return MPRemoteCommandHandlerStatus.success
})
}
MPRemoteCommandCenter.shared().togglePlayPauseCommand.addTarget(handler: {_ in .animation(.spring, value: UUID())
play()
return MPRemoteCommandHandlerStatus.success
})
MPRemoteCommandCenter.shared().nextTrackCommand.addTarget(handler: {_ in
next()
return MPRemoteCommandHandlerStatus.success
})
} }
.animation(.spring, value: UUID())
} }
@ -236,7 +278,8 @@ struct Player: View {
func play() { func play() {
switch state { switch state {
case PlayerState.NotStarted: do { case PlayerState.NotStarted: do {
#if os(iOS) /*#if os(macOS)
#else*/
let audioSession = AVAudioSession.sharedInstance() let audioSession = AVAudioSession.sharedInstance()
do { do {
try audioSession.setCategory( try audioSession.setCategory(
@ -246,9 +289,9 @@ struct Player: View {
} catch { } catch {
print("Failed to set the audio session configuration") print("Failed to set the audio session configuration")
} }
#endif /*#endif*/
Thread.detachNewThread { Thread.detachNewThread {
c_start(server, CSettings(encoder: settings.encoder.rawValue, cover: settings.cover_size.rawValue)) c_start(server, CSettings(encoder: settings.encoder.rawValue, cover: settings.cover_size.rawValue), playlist.name == "All tracks" ? "" : playlist.name)
} }
} }
default: do { default: do {

View file

@ -25,11 +25,12 @@ struct monoclient_xApp: App {
CommandGroup(replacing: CommandGroupPlacement.newItem) { CommandGroup(replacing: CommandGroupPlacement.newItem) {
} }
} }
.defaultSize(width: 256, height: 512)
#else #else
WindowGroup { WindowGroup {
ContentView() ContentView()
} }
.defaultSize(width: 256, height: 512)
#endif #endif
} }
} }

View file

@ -1,14 +1,12 @@
[package] [package]
name = "monoclient" name = "monoclient"
license = "MIT" license = "MIT"
version = "0.6.1" version = "0.7.0"
edition = "2021" edition = "2021"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"] authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio" repository = "https://github.com/ivabus/lonelyradio"
[dependencies] [dependencies]
monolib = { version = "0.6.0", path = "../monolib" } monolib = { version = "0.7.0", path = "../monolib" }
clap = { version = "4.4.18", features = ["derive"] } clap = { version = "4.5.16", features = ["derive"] }
crossterm = "0.27.0" crossterm = "0.28.1"
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" }

View file

@ -3,7 +3,7 @@ use crossterm::cursor::MoveToColumn;
use crossterm::event::{poll, read, Event}; use crossterm::event::{poll, read, Event};
use crossterm::style::Print; use crossterm::style::Print;
use crossterm::terminal::{Clear, ClearType}; use crossterm::terminal::{Clear, ClearType};
use lonelyradio_types::{Encoder, Settings}; use monolib::lonelyradio_types::{Encoder, Settings};
use std::io::stdout; use std::io::stdout;
use std::sync::OnceLock; use std::sync::OnceLock;
use std::time::Instant; use std::time::Instant;
@ -17,6 +17,12 @@ struct Args {
#[arg(short, long)] #[arg(short, long)]
verbose: bool, verbose: bool,
#[arg(short, long, default_value = "")]
playlist: String,
#[arg(short, long)]
list: bool,
} }
const HELP: &str = r#"Keybinds: const HELP: &str = r#"Keybinds:
@ -37,17 +43,29 @@ macro_rules! verbose {
fn main() { fn main() {
let args = Args::parse(); let args = Args::parse();
VERBOSE.set(args.verbose).unwrap(); VERBOSE.set(args.verbose).unwrap();
if args.list {
println!(
"Available playlists: {}",
match monolib::list_playlists(&args.address) {
Some(s) => format!("{:?}", s),
None => String::from("None"),
}
);
return;
}
std::thread::spawn(move || { std::thread::spawn(move || {
monolib::run( monolib::run(
&args.address, &args.address,
Settings { Settings {
encoder: Encoder::PcmFloat, encoder: Encoder::Flac,
cover: -1, cover: -1,
}, },
&args.playlist,
) )
}); });
while monolib::get_metadata().is_none() {} while monolib::get_metadata().is_none() {}
let mut md = monolib::get_metadata().unwrap(); let mut md = monolib::get_metadata().unwrap();
let mut next_md = md.clone();
verbose!("md: {:?}", md); verbose!("md: {:?}", md);
let mut track_start = Instant::now(); let mut track_start = Instant::now();
let mut seconds_past = 0; let mut seconds_past = 0;
@ -63,7 +81,6 @@ fn main() {
)) ))
) )
.unwrap(); .unwrap();
let mut next_md = md.clone();
crossterm::terminal::enable_raw_mode().unwrap(); crossterm::terminal::enable_raw_mode().unwrap();
loop { loop {
if let Ok(true) = poll(std::time::Duration::from_micros(1)) { if let Ok(true) = poll(std::time::Duration::from_micros(1)) {
@ -116,8 +133,8 @@ fn main() {
} }
} }
} }
if monolib::get_metadata().unwrap() != md if next_md != md
//&& track_length <= (Instant::now() - track_start).as_secs_f64() && md.track_length_secs as f64 <= (Instant::now() - track_start).as_secs_f64()
{ {
md = next_md.clone(); md = next_md.clone();
verbose!("md: {:?}", md); verbose!("md: {:?}", md);

View file

@ -1,6 +1,6 @@
[package] [package]
name = "monolib" name = "monolib"
version = "0.6.0" version = "0.7.0"
edition = "2021" edition = "2021"
license = "MIT" license = "MIT"
description = "A library implementing the lonely radio audio streaming protocol" description = "A library implementing the lonely radio audio streaming protocol"
@ -12,11 +12,25 @@ name = "monolib"
crate-type = ["cdylib", "staticlib", "rlib"] crate-type = ["cdylib", "staticlib", "rlib"]
[dependencies] [dependencies]
rodio = { version = "0.17.3", default-features = false } rodio = { version = "0.19.0", default-features = false }
byteorder = "1.5.0" byteorder = "1.5.0"
rmp-serde = "1.1.2" rmp-serde = "1.1.2"
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" } lonelyradio_types = { version = "0.7.0", path = "../lonelyradio_types" }
claxon = "0.4.3" anyhow = "1.0.86"
# Optional decoders
claxon = { version = "0.4.3", optional = true }
symphonia-codec-alac = {version = "0.5.4", optional = true }
symphonia-core = {version = "0.5.4", optional = true }
vorbis_rs = {version = "0.5.4", optional = true }
[features]
default = ["all-lossless", "all-lossy"]
all-lossless = ["alac", "flac"]
all-lossy = ["vorbis"]
alac = ["dep:symphonia-codec-alac", "dep:symphonia-core"]
flac = ["dep:claxon"]
vorbis = ["dep:vorbis_rs"]
[package.metadata.xcframework] [package.metadata.xcframework]
include-dir = "src" include-dir = "src"
@ -24,4 +38,5 @@ lib-type = "cdylib"
zip = false zip = false
macOS = true macOS = true
iOS = true iOS = true
#tvOS = true
simulators = true simulators = true

View file

@ -11,39 +11,52 @@ pub struct CTrackMetadata {
pub artist: *mut c_char, pub artist: *mut c_char,
} }
pub const ENCODER_PCM16: u8 = 0;
pub const ENCODER_PCMFLOAT: u8 = 1;
pub const ENCODER_FLAC: u8 = 2;
#[repr(C)] #[repr(C)]
#[derive(Clone, Debug, PartialEq)] #[derive(Clone, Debug, PartialEq)]
pub struct CSettings { pub struct CSettings {
/// See lonelyradio_types -> Encoder /// See lonelyradio_types for numeric representation -> Encoder
pub encoder: u8, pub encoder: u8,
pub cover: i32, pub cover: i32,
} }
#[no_mangle] #[no_mangle]
#[allow(clippy::not_unsafe_ptr_arg_deref)] #[allow(clippy::not_unsafe_ptr_arg_deref)]
pub extern "C" fn c_start(server: *const c_char, settings: CSettings) { /// Starts audio playback using rodio
/// Play without playlist => playlist = ""
pub extern "C" fn c_start(server: *const c_char, settings: CSettings, playlist: *const c_char) {
let serv = unsafe { CStr::from_ptr(server) }; let serv = unsafe { CStr::from_ptr(server) };
let playlist = unsafe { CStr::from_ptr(playlist) };
run( run(
match serv.to_str() { serv.to_str().unwrap_or_default(),
Ok(s) => s,
_ => "",
},
Settings { Settings {
encoder: match settings.encoder { encoder: match settings.encoder {
0 => Encoder::Pcm16, 0 => Encoder::Pcm16,
1 => Encoder::PcmFloat, 1 => Encoder::PcmFloat,
2 => Encoder::Flac, 2 => Encoder::Flac,
3 => Encoder::Alac,
7 => Encoder::Vorbis,
_ => return, _ => return,
}, },
cover: settings.cover, cover: settings.cover,
}, },
playlist.to_str().unwrap_or_default(),
) )
} }
#[no_mangle]
#[allow(clippy::not_unsafe_ptr_arg_deref)]
/// Playlists separated by '\n'
pub extern "C" fn c_list_playlists(server: *const c_char) -> *mut c_char {
let serv = unsafe { CStr::from_ptr(server) };
let playlists = list_playlists(serv.to_str().unwrap_or_default());
CString::new(match playlists {
None => "".to_string(),
Some(s) => s.join("\n"),
})
.unwrap()
.into_raw()
}
#[no_mangle] #[no_mangle]
pub extern "C" fn c_toggle() { pub extern "C" fn c_toggle() {
toggle() toggle()

99
monolib/src/decode.rs Normal file
View file

@ -0,0 +1,99 @@
use std::io::{Cursor, Read};
use byteorder::{LittleEndian, ReadBytesExt};
use lonelyradio_types::{Encoder, FragmentMetadata, TrackMetadata};
use symphonia_core::{
audio::SampleBuffer,
codecs::{Decoder, CODEC_TYPE_ALAC},
formats::Packet,
};
pub(crate) fn decode(
mut stream: impl ReadBytesExt,
md: &TrackMetadata,
fmd: &FragmentMetadata,
) -> anyhow::Result<Vec<f32>> {
let mut samples = vec![];
match md.encoder {
Encoder::Pcm16 => {
let mut samples_i16 = vec![0; fmd.length as usize / 2];
stream.read_i16_into::<LittleEndian>(&mut samples_i16)?;
samples
.append(&mut samples_i16.iter().map(|sample| *sample as f32 / 32767.0).collect());
}
Encoder::PcmFloat => {
let mut samples_f32 = vec![0f32; fmd.length as usize / 4];
stream.read_f32_into::<LittleEndian>(&mut samples_f32)?;
samples.append(&mut samples_f32);
}
Encoder::Flac => {
#[cfg(feature = "alac")]
{
let take = std::io::Read::by_ref(&mut stream).take(fmd.length);
let mut reader = claxon::FlacReader::new(take)?;
samples.append(
&mut reader
.samples()
.map(|x| x.unwrap_or(0) as f32 / 32768.0 / 256.0)
.collect::<Vec<f32>>(),
);
}
#[cfg(not(feature = "flac"))]
{
unimplemented!("flac decoding is disabled in library")
}
}
Encoder::Alac => {
#[cfg(feature = "alac")]
{
let mut buf = vec![];
std::io::Read::by_ref(&mut stream).take(fmd.length).read_to_end(&mut buf)?;
let mut reader = symphonia_codec_alac::AlacDecoder::try_new(
symphonia_core::codecs::CodecParameters::default()
.for_codec(CODEC_TYPE_ALAC)
.with_extra_data(fmd.magic_cookie.clone().unwrap().into_boxed_slice()),
&symphonia_core::codecs::DecoderOptions {
verify: false,
},
)?;
let decoded = reader.decode(&Packet::new_from_slice(0, 0, 0, &buf))?;
let mut byte_buf =
SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec());
byte_buf.copy_interleaved_ref(decoded);
samples.extend(byte_buf.samples());
}
#[cfg(not(feature = "alac"))]
{
unimplemented!("alac decoding is disabled in library")
}
}
Encoder::Vorbis => {
#[cfg(feature = "vorbis")]
{
let mut buf = vec![];
std::io::Read::by_ref(&mut stream).take(fmd.length).read_to_end(&mut buf)?;
let mut decoder = vorbis_rs::VorbisDecoder::new(Cursor::new(buf))?;
let mut interleaved = vec![];
while let Some(decoded_block) = decoder.decode_audio_block()? {
let s = decoded_block.samples();
interleaved.resize(s[0].len() * s.len(), 0f32);
for (ind, channel) in s.iter().enumerate() {
for (samind, sample) in channel.iter().enumerate() {
interleaved[ind + samind * md.channels as usize] = *sample;
}
}
samples.extend(interleaved);
interleaved = vec![];
}
}
#[cfg(not(feature = "vorbis"))]
{
unimplemented!("vorbis decoding is disabled in library")
}
}
Encoder::Aac | Encoder::Opus | Encoder::WavPack => unimplemented!(),
};
Ok(samples)
}

View file

@ -17,19 +17,36 @@
/// Functions, providing C-like API /// Functions, providing C-like API
pub mod c; pub mod c;
use byteorder::{LittleEndian, ReadBytesExt, WriteBytesExt}; pub use lonelyradio_types;
use lonelyradio_types::{Encoder, Message, ServerCapabilities, Settings, TrackMetadata};
use anyhow::{bail, Context};
use decode::decode;
use lonelyradio_types::{
Encoder, PlayMessage, Request, RequestResult, ServerCapabilities, Settings, TrackMetadata,
};
use rodio::buffer::SamplesBuffer; use rodio::buffer::SamplesBuffer;
use rodio::{OutputStream, Sink}; use rodio::{OutputStream, Sink};
use std::error::Error; use std::io::Write;
use std::io::{Read, Write};
use std::net::TcpStream; use std::net::TcpStream;
use std::sync::atomic::AtomicU8; use std::sync::atomic::AtomicU8;
use std::sync::RwLock; use std::sync::RwLock;
use std::time::Instant; use std::time::Instant;
mod decode;
const CACHE_SIZE_PCM: usize = 32; const CACHE_SIZE_PCM: usize = 32;
const CACHE_SIZE_COMPRESSED: usize = 2; const CACHE_SIZE_COMPRESSED: usize = 4;
const SUPPORTED_DECODERS: &[Encoder] = &[
Encoder::Pcm16,
Encoder::PcmFloat,
#[cfg(feature = "flac")]
Encoder::Flac,
#[cfg(feature = "alac")]
Encoder::Alac,
#[cfg(feature = "vorbis")]
Encoder::Vorbis,
];
static SINK: RwLock<Option<Sink>> = RwLock::new(None); static SINK: RwLock<Option<Sink>> = RwLock::new(None);
static VOLUME: AtomicU8 = AtomicU8::new(255); static VOLUME: AtomicU8 = AtomicU8::new(255);
@ -144,139 +161,146 @@ pub fn set_volume(volume: u8) {
} }
/// Download track as samples /// Download track as samples
pub fn get_track(server: &str, mut settings: Settings) -> Option<(TrackMetadata, Vec<i16>)> { pub fn get_track(
let mut connection = unwrap(TcpStream::connect(server))?; server: &str,
unwrap(connection.write_u64::<LittleEndian>(lonelyradio_types::HELLO_MAGIC))?; mut settings: Settings,
let capabilities: ServerCapabilities = unwrap(rmp_serde::from_read(&mut connection))?; playlist: &str,
) -> anyhow::Result<(TrackMetadata, Vec<f32>)> {
let mut connection = TcpStream::connect(server)?;
connection.write_all(lonelyradio_types::HELLO_MAGIC)?;
let capabilities: ServerCapabilities = rmp_serde::from_read(&mut connection)?;
if !capabilities.encoders.contains(&settings.encoder) { if !capabilities.encoders.contains(&settings.encoder) {
settings.encoder = Encoder::Pcm16 settings.encoder = Encoder::Pcm16
} }
unwrap(connection.write_all(&rmp_serde::to_vec_named(&settings).unwrap()))?;
let mut stream = connection; let request = if playlist.is_empty() {
Request::Play(settings)
} else {
Request::PlayPlaylist(playlist.to_string(), settings)
};
connection.write_all(&rmp_serde::to_vec_named(&request).unwrap())?;
let response: RequestResult = rmp_serde::from_read(&connection)?;
if let RequestResult::Error(e) = response {
bail!("{e:?}")
}
let mut samples = vec![]; let mut samples = vec![];
let mut md: Option<TrackMetadata> = None; let mut md: Option<TrackMetadata> = None;
loop { loop {
let recv_md: Message = rmp_serde::from_read(&mut stream).expect("Failed to parse message"); let recv_md: PlayMessage = rmp_serde::from_read(&mut connection)?;
match recv_md { match recv_md {
Message::T(tmd) => { PlayMessage::T(tmd) => {
if md.is_some() { if md.is_some() {
break; break;
} }
md = Some(tmd); md = Some(tmd);
} }
Message::F(fmd) => match md.as_ref().unwrap().encoder { PlayMessage::F(fmd) => {
Encoder::Pcm16 => { samples.extend(decode(&mut connection, md.as_ref().unwrap(), &fmd)?)
let mut buf = vec![0; fmd.length as usize]; }
stream.read_i16_into::<LittleEndian>(&mut buf).unwrap();
samples.append(&mut buf);
}
Encoder::PcmFloat => unimplemented!(),
Encoder::Flac => {
let take = std::io::Read::by_ref(&mut stream).take(fmd.length);
let mut reader = claxon::FlacReader::new(take).unwrap();
samples.append(
&mut reader.samples().map(|x| x.unwrap_or(0) as i16).collect::<Vec<i16>>(),
);
}
},
} }
} }
md.map(|md| (md, samples))
if let Some(md) = md {
Ok((md, samples))
} else {
bail!("No metadata")
}
} }
fn unwrap<T, E: Error>(thing: Result<T, E>) -> Option<T> { pub fn list_playlists(server: &str) -> Option<Vec<String>> {
if thing.is_err() { let mut connection = TcpStream::connect(server).ok()?;
*STATE.write().unwrap() = State::NotStarted; connection.write_all(lonelyradio_types::HELLO_MAGIC).ok()?;
let _: ServerCapabilities = rmp_serde::from_read(&mut connection).ok()?;
connection.write_all(&rmp_serde::to_vec_named(&Request::ListPlaylist).ok()?).ok()?;
let res: RequestResult = rmp_serde::from_read(connection).ok()?;
match res {
RequestResult::Playlist(plist) => Some(plist.playlists),
_ => None,
} }
thing.ok()
} }
/// Starts playing at "server:port" /// Starts playing at "server:port"
pub fn run(server: &str, settings: Settings) { pub fn run(server: &str, settings: Settings, playlist: &str) {
let _ = _run(server, settings); let result = _run(server, settings, playlist);
if let Err(e) = result {
println!("{:?}", e);
*STATE.write().unwrap() = State::NotStarted;
}
} }
pub fn _run(server: &str, settings: Settings) -> Option<()> { pub(crate) fn _run(server: &str, mut settings: Settings, playlist: &str) -> anyhow::Result<()> {
let mut settings = settings; if !SUPPORTED_DECODERS.contains(&settings.encoder) {
eprintln!(
"monolib was built without support for {:?}, falling back to Pcm16",
settings.encoder
);
settings.encoder = Encoder::Pcm16
}
let mut state = STATE.write().unwrap(); let mut state = STATE.write().unwrap();
if *state == State::Playing || *state == State::Paused { if *state == State::Playing || *state == State::Paused {
return None; return Ok(());
} }
*state = State::Playing; *state = State::Playing;
drop(state); drop(state);
let mut connection = unwrap(TcpStream::connect(server))?; let mut connection = TcpStream::connect(server).context("failed to connect to the server")?;
unwrap(connection.write_u64::<LittleEndian>(lonelyradio_types::HELLO_MAGIC))?; connection.write_all(lonelyradio_types::HELLO_MAGIC)?;
let capabilities: ServerCapabilities = unwrap(rmp_serde::from_read(&mut connection))?; let capabilities: ServerCapabilities = rmp_serde::from_read(&mut connection)?;
if !capabilities.encoders.contains(&settings.encoder) { if !capabilities.encoders.contains(&settings.encoder) {
settings.encoder = Encoder::Pcm16 settings.encoder = Encoder::Pcm16
} }
unwrap(connection.write_all(&rmp_serde::to_vec_named(&settings).unwrap()))?;
let request = if playlist.is_empty() {
Request::Play(settings)
} else {
Request::PlayPlaylist(playlist.to_string(), settings)
};
connection.write_all(&rmp_serde::to_vec_named(&request).unwrap())?;
let response: RequestResult = rmp_serde::from_read(&connection).unwrap();
if let RequestResult::Error(e) = response {
bail!("{:?}", e)
}
let mut stream = connection; let mut stream = connection;
let mut sink = SINK.write().unwrap(); let mut sink = SINK.write().unwrap();
let (_stream, stream_handle) = unwrap(OutputStream::try_default())?; let (_stream, stream_handle) =
OutputStream::try_default().context("failed to determine audio device")?;
// Can't reuse old sink for some reason // Can't reuse old sink for some reason
let audio_sink = Sink::try_new(&stream_handle).unwrap(); let audio_sink = Sink::try_new(&stream_handle).context("failed to create audio sink")?;
*sink = Some(audio_sink); *sink = Some(audio_sink);
drop(sink); drop(sink);
let mut samples = Vec::with_capacity(8192); let mut samples = Vec::with_capacity(8192);
loop { loop {
let recv_md: Message = rmp_serde::from_read(&mut stream).expect("Failed to parse message"); let recv_md: PlayMessage =
rmp_serde::from_read(&mut stream).expect("Failed to parse message");
match recv_md { match recv_md {
Message::T(tmd) => { PlayMessage::T(tmd) => {
// No metadata shift // No metadata shift
if watching_sleep_until_end() { if watching_sleep_until_end() {
_stop(); _stop();
return None; return Ok(());
} }
let mut md = MD.write().unwrap(); let mut md = MD.write().unwrap();
*md = Some(tmd.clone()); *md = Some(tmd.clone());
drop(md); drop(md);
} }
Message::F(fmd) => { PlayMessage::F(fmd) => {
while *STATE.read().unwrap() == State::Paused { while *STATE.read().unwrap() == State::Paused {
std::thread::sleep(std::time::Duration::from_secs_f32(0.25)) std::thread::sleep(std::time::Duration::from_secs_f32(0.25))
} }
if *STATE.read().unwrap() == State::Resetting { if *STATE.read().unwrap() == State::Resetting {
_stop(); _stop();
return None; return Ok(());
} }
match MD.read().unwrap().as_ref().unwrap().encoder {
Encoder::Pcm16 => { samples.extend(decode(&mut stream, &MD.read().unwrap().clone().unwrap(), &fmd)?);
let mut samples_i16 = vec![0; fmd.length as usize / 2];
if stream.read_i16_into::<LittleEndian>(&mut samples_i16).is_err() {
return None;
};
samples.append(
&mut samples_i16
.iter()
.map(|sample| *sample as f32 / 32767.0)
.collect(),
);
}
Encoder::PcmFloat => {
let mut samples_f32 = vec![0f32; fmd.length as usize / 4];
if stream.read_f32_into::<LittleEndian>(&mut samples_f32).is_err() {
return None;
};
samples.append(&mut samples_f32);
}
Encoder::Flac => {
let take = std::io::Read::by_ref(&mut stream).take(fmd.length);
let mut reader = claxon::FlacReader::new(take).unwrap();
samples.append(
&mut reader
.samples()
.map(|x| x.unwrap_or(0) as f32 / 32768.0 / 256.0)
.collect::<Vec<f32>>(),
);
}
};
// Synchronizing with sink // Synchronizing with sink
let sink = SINK.read().unwrap(); let sink = SINK.read().unwrap();
@ -284,8 +308,12 @@ pub fn _run(server: &str, settings: Settings) -> Option<()> {
let md = _md.as_ref().unwrap().clone(); let md = _md.as_ref().unwrap().clone();
drop(_md); drop(_md);
if let Some(sink) = sink.as_ref() { if let Some(sink) = sink.as_ref() {
while (sink.len() >= CACHE_SIZE_PCM && md.encoder != Encoder::Flac) while (sink.len() >= CACHE_SIZE_PCM
|| (sink.len() >= CACHE_SIZE_COMPRESSED && md.encoder == Encoder::Flac) && md.encoder == Encoder::Pcm16
&& md.encoder == Encoder::PcmFloat)
|| (sink.len() >= CACHE_SIZE_COMPRESSED
&& md.encoder != Encoder::Pcm16
&& md.encoder != Encoder::PcmFloat)
{ {
// Sleeping exactly one buffer and watching for reset signal // Sleeping exactly one buffer and watching for reset signal
if watching_sleep( if watching_sleep(
@ -297,7 +325,7 @@ pub fn _run(server: &str, settings: Settings) -> Option<()> {
/ 4.0, / 4.0,
) { ) {
_stop(); _stop();
return None; return Ok(());
} }
} }
sink.append(SamplesBuffer::new( sink.append(SamplesBuffer::new(

View file

@ -1,23 +1,45 @@
#include <stdarg.h> #include <stdarg.h>
#include <stdbool.h> #include <stdbool.h>
#include <stddef.h>
#include <stdint.h> #include <stdint.h>
#include <stdlib.h> #include <stdlib.h>
typedef struct CSettings {
/**
* See lonelyradio_types for numeric representation -> Encoder
*/
uint8_t encoder;
int32_t cover;
} CSettings;
typedef struct CImageJpeg { typedef struct CImageJpeg {
uint32_t length; uint32_t length;
uint8_t *bytes; uint8_t *bytes;
} CImageJpeg; } CImageJpeg;
typedef struct CSettings { /**
/** * Starts audio playback using rodio
* See lonelyradio_types -> Encoder * Play without playlist => playlist = ""
*/ */
uint8_t encoder; void c_start(const char *server, struct CSettings settings, const char *playlist);
int32_t cover;
} CSettings;
void c_drop(uint8_t *ptr, size_t count); /**
* Playlists separated by '\n'
*/
char *c_list_playlists(const char *server);
void c_toggle(void);
void c_stop(void);
char c_get_state(void);
char *c_get_metadata_artist(void);
char *c_get_metadata_album(void);
char *c_get_metadata_title(void);
float c_get_metadata_length(void);
/** /**
* # Safety * # Safety
@ -25,18 +47,8 @@ void c_drop(uint8_t *ptr, size_t count);
*/ */
struct CImageJpeg c_get_cover_jpeg(void); struct CImageJpeg c_get_cover_jpeg(void);
char *c_get_metadata_album(void); /**
* # Safety
char *c_get_metadata_artist(void); * None
*/
float c_get_metadata_length(void); void c_drop(uint8_t *ptr, uintptr_t count);
char *c_get_metadata_title(void);
char c_get_state(void);
void c_start(const char *server, struct CSettings settings);
void c_stop(void);
void c_toggle(void);

View file

@ -1 +0,0 @@
../target

View file

@ -1,12 +1,11 @@
[package] [package]
name = "monoloader" name = "monoloader"
version = "0.6.0" version = "0.7.0"
edition = "2021" edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html # See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
[dependencies] [dependencies]
monolib = { path = "../monolib" } monolib = { version = "0.7.0", path = "../monolib" }
clap = { version = "4.4.18", features = ["derive"] } clap = { version = "4.4.18", features = ["derive"] }
hound = "3.5.1" hound = "3.5.1"
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" }

View file

@ -1,5 +1,5 @@
use clap::Parser; use clap::Parser;
use lonelyradio_types::Settings; use monolib::lonelyradio_types::Settings;
use std::path::PathBuf; use std::path::PathBuf;
#[derive(Parser)] #[derive(Parser)]
@ -9,34 +9,53 @@ struct Args {
#[arg(long)] #[arg(long)]
xor_key_file: Option<PathBuf>, xor_key_file: Option<PathBuf>,
#[arg(short, long, default_value = "")]
playlist: String,
#[arg(short, long)]
list: bool,
} }
fn main() { fn main() {
let args = Args::parse(); let args = Args::parse();
if args.list {
println!(
"Available playlists: {}",
match monolib::list_playlists(&args.address) {
Some(s) => format!("{:?}", s),
None => String::from("None"),
}
);
return;
}
let (md, samples) = monolib::get_track( let (md, samples) = monolib::get_track(
&args.address, &args.address,
Settings { Settings {
encoder: lonelyradio_types::Encoder::Pcm16, encoder: monolib::lonelyradio_types::Encoder::Flac,
cover: -1, cover: -1,
}, },
&args.playlist,
) )
.unwrap(); .unwrap();
println!( println!(
"Downloaded: {} - {} - {} ({} MB)", "Downloaded: {} - {} - {} ({:?}, {} MiB)",
md.artist, md.artist,
md.album, md.album,
md.title, md.title,
samples.len() as f32 * 2.0 / 1024.0 / 1024.0 md.encoder,
samples.len() as f32 / 256.0 / 1024.0
); );
let spec = hound::WavSpec { let spec = hound::WavSpec {
channels: md.channels, channels: md.channels,
sample_rate: md.sample_rate, sample_rate: md.sample_rate,
bits_per_sample: 16, bits_per_sample: 32,
sample_format: hound::SampleFormat::Int, sample_format: hound::SampleFormat::Float,
}; };
let mut writer = let mut writer =
hound::WavWriter::create(format!("{} - {}.wav", md.artist, md.title), spec).unwrap(); hound::WavWriter::create(format!("{} - {}.wav", md.artist, md.title), spec).unwrap();
let mut writer_i16 = writer.get_i16_writer(samples.len() as u32); samples.iter().for_each(|s| writer.write_sample(*s).unwrap());
samples.iter().for_each(|s| writer_i16.write_sample(*s)); writer.flush().unwrap();
writer_i16.flush().unwrap();
} }

View file

@ -11,7 +11,7 @@ use symphonia::core::units::Time;
use crate::Args; use crate::Args;
pub async fn get_meta(file_path: &Path) -> (u16, u32, Time) { pub async fn get_meta(file_path: &Path, encoder_wants: u32) -> (u16, u32, Time) {
let file = Box::new(std::fs::File::open(file_path).unwrap()); let file = Box::new(std::fs::File::open(file_path).unwrap());
let mut hint = Hint::new(); let mut hint = Hint::new();
hint.with_extension(file_path.extension().unwrap().to_str().unwrap()); hint.with_extension(file_path.extension().unwrap().to_str().unwrap());
@ -65,11 +65,26 @@ pub async fn get_meta(file_path: &Path) -> (u16, u32, Time) {
} }
let args = Args::parse(); let args = Args::parse();
(channels, get_resampling_rate(&sample_rate, &args.max_samplerate), track_length) (
channels,
if args.no_resampling && encoder_wants == 0 {
sample_rate
} else {
get_resampling_rate(
&sample_rate,
&if encoder_wants != 0 {
args.max_samplerate.min(encoder_wants)
} else {
args.max_samplerate
},
)
},
track_length,
)
} }
/// Getting samples /// Getting samples
pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<f32>> { pub fn decode_file_stream(file_path: PathBuf, encoder_wants: u32) -> impl Stream<Item = Vec<f32>> {
let args = Args::parse(); let args = Args::parse();
let file = Box::new(std::fs::File::open(&file_path).unwrap()); let file = Box::new(std::fs::File::open(&file_path).unwrap());
let mut hint = Hint::new(); let mut hint = Hint::new();
@ -93,7 +108,7 @@ pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<f32>> {
.expect("no supported audio tracks"); .expect("no supported audio tracks");
let mut decoder = symphonia::default::get_codecs() let mut decoder = symphonia::default::get_codecs()
.make(track.codec_params.clone().with_max_frames_per_packet(65536), &Default::default()) .make(&track.codec_params, &Default::default())
.expect("unsupported codec"); .expect("unsupported codec");
let track_id = track.id; let track_id = track.id;
stream! { stream! {
@ -109,30 +124,30 @@ pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<f32>> {
match decoder.decode(&packet) { match decoder.decode(&packet) {
Ok(decoded) => { Ok(decoded) => {
if decoded.spec().rate > args.max_samplerate { let output_rate = get_resampling_rate(&decoded.spec().rate, &if encoder_wants != 0 {
args.max_samplerate.min(encoder_wants)
} else {
args.max_samplerate
});
if decoded.spec().rate > output_rate && (!args.no_resampling || encoder_wants != 0) {
let spec = *decoded.spec(); let spec = *decoded.spec();
let mut byte_buf = let mut byte_buf =
SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec()); SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec());
byte_buf.copy_interleaved_ref(decoded); byte_buf.copy_interleaved_ref(decoded);
let output_rate = get_resampling_rate(&spec.rate,&args.max_samplerate);
// About Samplerate struct: // About Samplerate struct:
// We are downsampling, not upsampling, so we should be fine // We are downsampling, not upsampling, so we should be fine
yield ( yield (if output_rate == spec.rate {
if output_rate == spec.rate { byte_buf.samples().to_vec()
byte_buf.samples().to_vec() } else {
} else { samplerate::convert(
samplerate::convert( spec.rate,
spec.rate, output_rate,
args.max_samplerate, spec.channels.count(),
spec.channels.count(), samplerate::ConverterType::Linear,
samplerate::ConverterType::Linear, byte_buf.samples(),
byte_buf.samples(), )
) .unwrap()
.unwrap() });
}
);
} else { } else {
let mut byte_buf = let mut byte_buf =
SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec()); SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec());

View file

@ -1,52 +1,133 @@
use flacenc::{component::BitRepr, error::Verify, source::MemSource};
use lonelyradio_types::Encoder; use lonelyradio_types::Encoder;
// Return: 0 - encoded bytes, 1 - magic cookie (for alac only)
#[allow(unused_variables)]
pub fn encode( pub fn encode(
codec: Encoder, codec: Encoder,
mut samples: Vec<f32>, mut samples: Vec<f32>,
sample_rate: u32, sample_rate: u32,
channels: u16, channels: u16,
) -> Option<Vec<u8>> { ) -> Option<(Vec<u8>, Option<Vec<u8>>)> {
match codec { match codec {
Encoder::Pcm16 => { Encoder::Pcm16 => {
#[allow(unused_mut)]
let mut samples = samples.iter_mut().map(|x| (*x * 32768.0) as i16).collect::<Vec<_>>(); let mut samples = samples.iter_mut().map(|x| (*x * 32768.0) as i16).collect::<Vec<_>>();
// Launching lonelyradio on the router moment // Launching lonelyradio on the router moment
if cfg!(target_endian = "big") { #[cfg(target_endian = "big")]
{
samples.iter_mut().for_each(|sample| { samples.iter_mut().for_each(|sample| {
*sample = sample.to_le(); *sample = sample.to_le();
}); });
} }
// Sowwy about that // Sowwy about that
let (_, samples, _) = unsafe { samples.align_to::<u8>() }; let (_, samples, _) = unsafe { samples.align_to::<u8>() };
Some(samples.to_vec()) Some((samples.to_vec(), None))
} }
Encoder::PcmFloat => { Encoder::PcmFloat => {
// Launching lonelyradio on the router moment
// Sowwy about that // Sowwy about that
let samples = samples.iter().map(|x| x.to_bits()).collect::<Vec<u32>>();
let (_, samples, _) = unsafe { samples.align_to::<u8>() }; let (_, samples, _) = unsafe { samples.align_to::<u8>() };
Some(samples.to_vec()) Some((samples.to_vec(), None))
} }
Encoder::Flac => { Encoder::Flac => {
let encoded = flacenc::encode_with_fixed_block_size( #[cfg(feature = "flac")]
&flacenc::config::Encoder::default().into_verified().unwrap(), {
MemSource::from_samples( use flacenc::{component::BitRepr, error::Verify, source::MemSource};
// I'm crying (It's just a burning memory)
&samples
.iter()
.map(|x| (*x as f64 * 32768.0 * 256.0) as i32)
.collect::<Vec<i32>>(),
channels as usize,
24,
sample_rate as usize,
),
256,
)
.unwrap();
let mut sink = flacenc::bitsink::ByteSink::new(); let encoded = flacenc::encode_with_fixed_block_size(
encoded.write(&mut sink).unwrap(); &flacenc::config::Encoder::default().into_verified().unwrap(),
Some(sink.as_slice().to_vec()) MemSource::from_samples(
&samples
.iter()
.map(|x| (*x as f64 * 32768.0 * 256.0) as i32)
.collect::<Vec<i32>>(),
channels as usize,
24,
sample_rate as usize,
),
256,
)
.unwrap();
let mut sink = flacenc::bitsink::ByteSink::new();
encoded.write(&mut sink).unwrap();
Some((sink.as_slice().to_vec(), None))
}
#[cfg(not(feature = "flac"))]
{
unimplemented!()
}
} }
Encoder::Alac => {
#[cfg(feature = "alac")]
{
use alac_encoder::{AlacEncoder, FormatDescription};
let samples = samples.iter_mut().map(|x| (*x * 32768.0) as i16).collect::<Vec<_>>();
let (_, samples, _) = unsafe { samples.align_to::<u8>() };
let input_format =
FormatDescription::pcm::<i16>(sample_rate as f64, channels as u32);
let output_format = FormatDescription::alac(
sample_rate as f64,
samples.len() as u32,
channels as u32,
);
// Initialize the encoder
let mut encoder = AlacEncoder::new(&output_format);
// Allocate a buffer for the encoder to write chunks to.
let mut output = vec![0u8; output_format.max_packet_size()];
let size = encoder.encode(&input_format, samples, &mut output);
// Here you can do whatever you want with the result:
Some((Vec::from(&output[0..size]), Some(encoder.magic_cookie())))
}
#[cfg(not(feature = "alac"))]
{
unimplemented!()
}
}
Encoder::Vorbis => {
#[cfg(feature = "vorbis")]
{
use std::num::{NonZeroU32, NonZeroU8};
let out: Vec<u8> = vec![];
let mut encoder = vorbis_rs::VorbisEncoderBuilder::new(
NonZeroU32::new(sample_rate).unwrap(),
NonZeroU8::new(channels as u8).unwrap(),
out,
)
.unwrap()
.bitrate_management_strategy(
vorbis_rs::VorbisBitrateManagementStrategy::ConstrainedAbr {
// I will think about clients asking about bitrate later, now it's just
// "enough" 128 kib/s
maximum_bitrate: NonZeroU32::new(192 * 1024).unwrap(),
},
)
.build()
.unwrap();
let mut samples_channels = vec![];
for i in 0..channels as usize {
samples_channels.push(
samples[i..]
.iter()
.step_by(channels as usize)
.copied()
.collect::<Vec<f32>>(),
);
}
encoder.encode_audio_block(samples_channels).unwrap();
Some((encoder.finish().unwrap(), None))
}
#[cfg(not(feature = "vorbis"))]
{
unimplemented!()
}
}
Encoder::Aac | Encoder::Opus | Encoder::WavPack => unimplemented!(),
} }
} }

View file

@ -1,9 +1,9 @@
mod decode; mod decode;
mod encode; mod encode;
use std::collections::HashMap;
use std::io::Cursor; use std::io::Cursor;
use std::io::Read; use std::io::Read;
use std::net::TcpStream;
use std::path::Path; use std::path::Path;
use std::path::PathBuf; use std::path::PathBuf;
use std::sync::Arc; use std::sync::Arc;
@ -13,18 +13,22 @@ use clap::Parser;
use encode::encode; use encode::encode;
use futures_util::pin_mut; use futures_util::pin_mut;
use futures_util::StreamExt; use futures_util::StreamExt;
use image::io::Reader as ImageReader; use image::ImageReader;
use lofty::Accessor; use lofty::Accessor;
use lofty::TaggedFileExt; use lofty::TaggedFileExt;
use lonelyradio_types::Encoder; use lonelyradio_types::Encoder;
use lonelyradio_types::Request;
use lonelyradio_types::RequestResult;
use lonelyradio_types::ServerCapabilities; use lonelyradio_types::ServerCapabilities;
use lonelyradio_types::Settings; use lonelyradio_types::Settings;
use lonelyradio_types::{FragmentMetadata, Message, TrackMetadata}; use lonelyradio_types::{FragmentMetadata, PlayMessage, TrackMetadata};
use rand::prelude::*; use rand::prelude::*;
use std::io::Write; use std::io::Write;
use tokio::net::TcpListener; use tokio::net::TcpListener;
use tokio_stream::Stream; use tokio_stream::Stream;
use url::Url;
use walkdir::DirEntry; use walkdir::DirEntry;
use xspf::Playlist;
use crate::decode::decode_file_stream; use crate::decode::decode_file_stream;
use crate::decode::get_meta; use crate::decode::get_meta;
@ -38,14 +42,6 @@ struct Args {
#[arg(short, default_value = "0.0.0.0:5894")] #[arg(short, default_value = "0.0.0.0:5894")]
address: String, address: String,
/// Enable "public" log (without sensitive information)
#[arg(short, long)]
public_log: bool,
/// Process all samples to -1 or 1
#[arg(short, long)]
war: bool,
/// Resample all tracks, which samplerate exceeds N /// Resample all tracks, which samplerate exceeds N
#[arg(short, long, default_value = "96000")] #[arg(short, long, default_value = "96000")]
max_samplerate: u32, max_samplerate: u32,
@ -57,54 +53,65 @@ struct Args {
/// Size of artwork (-1 for no artwork, 0 for original, N for NxN) /// Size of artwork (-1 for no artwork, 0 for original, N for NxN)
#[arg(long, default_value = "96000")] #[arg(long, default_value = "96000")]
artwork: i32, artwork: i32,
#[arg(long)]
playlist_dir: Option<PathBuf>,
} }
const SUPPORTED_ENCODERS: [Encoder; 3] = [Encoder::Pcm16, Encoder::PcmFloat, Encoder::Flac]; const SUPPORTED_ENCODERS: &[Encoder] = &[
Encoder::Pcm16,
Encoder::PcmFloat,
#[cfg(feature = "flac")]
Encoder::Flac,
#[cfg(feature = "alac")]
Encoder::Alac,
#[cfg(feature = "vorbis")]
Encoder::Vorbis,
];
async fn stream_track( async fn stream_track(
samples_stream: impl Stream<Item = Vec<f32>>, samples_stream: impl Stream<Item = Vec<f32>>,
war: bool,
md: TrackMetadata, md: TrackMetadata,
s: &mut TcpStream, mut s: impl Write,
) -> bool { ) -> bool {
pin_mut!(samples_stream); pin_mut!(samples_stream);
let _md = md.clone(); let _md = md.clone();
if s.write_all(rmp_serde::encode::to_vec_named(&Message::T(_md)).unwrap().as_slice()).is_err() { if s.write_all(rmp_serde::encode::to_vec_named(&PlayMessage::T(_md)).unwrap().as_slice())
.is_err()
{
return true; return true;
}; };
// Why chunks? // Why chunks?
// flacenc is broken on low amount of samples (Symphonia's AIFF decoder returns // Different codecs have different quality on different audio lenghts
// ~2304 samples per packet (on bo en's tracks), instead of usual ~8192 on any
// other lossless decoder)
while let Some(mut _samples) = samples_stream while let Some(mut _samples) = samples_stream
.as_mut() .as_mut()
.chunks(match md.encoder { .chunks(match md.encoder {
Encoder::Pcm16 => 1, Encoder::Pcm16 => 1,
Encoder::PcmFloat => 1, Encoder::PcmFloat => 1,
Encoder::Flac => 16, Encoder::Flac => 16,
Encoder::Alac => 32,
Encoder::Vorbis => 64,
Encoder::Aac | Encoder::Opus | Encoder::WavPack => unimplemented!(),
}) })
.next() .next()
.await .await
{ {
let mut _samples = _samples.concat(); let mut _samples = _samples.concat();
if war {
_samples.iter_mut().for_each(|sample| {
*sample = sample.signum();
});
}
match md.encoder { match md.encoder {
Encoder::Pcm16 => { Encoder::Pcm16 => {
let _md = Message::F(FragmentMetadata { let _md = PlayMessage::F(FragmentMetadata {
length: _samples.len() as u64 * 2, length: _samples.len() as u64 * 2,
magic_cookie: None,
}); });
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() { if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true; return true;
} }
if s.write_all( if s.write_all(
&encode(Encoder::Pcm16, _samples, md.sample_rate, md.channels).unwrap(), &encode(Encoder::Pcm16, _samples, md.sample_rate, md.channels).unwrap().0,
) )
.is_err() .is_err()
{ {
@ -112,24 +119,27 @@ async fn stream_track(
} }
} }
Encoder::PcmFloat => { Encoder::PcmFloat => {
let _md = Message::F(FragmentMetadata { let _md = PlayMessage::F(FragmentMetadata {
length: _samples.len() as u64 * 4, length: _samples.len() as u64 * 4,
magic_cookie: None,
}); });
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() { if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true; return true;
} }
if s.write_all( if s.write_all(
&encode(Encoder::PcmFloat, _samples, md.sample_rate, md.channels).unwrap(), &encode(Encoder::PcmFloat, _samples, md.sample_rate, md.channels).unwrap().0,
) )
.is_err() .is_err()
{ {
return true; return true;
} }
} }
Encoder::Flac => { Encoder::Flac | Encoder::Alac | Encoder::Vorbis => {
let encoded = encode(Encoder::Flac, _samples, md.sample_rate, md.channels).unwrap(); let (encoded, magic_cookie) =
let _md = Message::F(FragmentMetadata { encode(md.encoder, _samples, md.sample_rate, md.channels).unwrap();
let _md = PlayMessage::F(FragmentMetadata {
length: encoded.as_slice().len() as u64, length: encoded.as_slice().len() as u64,
magic_cookie,
}); });
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() { if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true; return true;
@ -138,11 +148,39 @@ async fn stream_track(
return true; return true;
} }
} }
Encoder::Aac | Encoder::Opus | Encoder::WavPack => unimplemented!(),
} }
} }
false false
} }
fn get_playlists(dir: impl AsRef<Path>) -> Option<HashMap<String, Arc<Vec<PathBuf>>>> {
let mut map: HashMap<String, Arc<Vec<PathBuf>>> = HashMap::new();
for playlist in walkdir::WalkDir::new(dir)
.into_iter()
.filter_entry(is_not_hidden)
.filter_map(|v| v.ok())
.map(|x| x.into_path())
.filter(|x| x.is_file())
{
let mut name = playlist.file_name().unwrap().to_str().unwrap().to_string();
let parsed = Playlist::read_file(playlist).unwrap();
if let Some(ref n) = parsed.title {
name = n.clone();
}
let tracklist = parsed
.track_list
.iter()
.flat_map(|x| x.location.iter().flat_map(|l| Url::parse(l.as_str()).ok()))
.filter(|x| x.scheme() == "file")
.map(|x| x.to_file_path().unwrap())
.filter(|x| track_valid(x))
.collect();
map.insert(name, Arc::new(tracklist));
}
Some(map)
}
#[tokio::main] #[tokio::main]
async fn main() { async fn main() {
let args = Args::parse(); let args = Args::parse();
@ -156,17 +194,24 @@ async fn main() {
.filter(|x| track_valid(x)) .filter(|x| track_valid(x))
.collect::<Vec<PathBuf>>(), .collect::<Vec<PathBuf>>(),
); );
let playlists: Option<HashMap<String, Arc<Vec<PathBuf>>>> = match args.playlist_dir.as_ref() {
None => None,
Some(dir) => get_playlists(dir),
};
loop { loop {
let (socket, _) = listener.accept().await.unwrap(); let (socket, _) = listener.accept().await.unwrap();
let mut s = socket.into_std().unwrap(); let mut s = socket.into_std().unwrap();
s.set_nonblocking(false).unwrap(); s.set_nonblocking(false).unwrap();
let mut hello = [0u8; 8]; let mut hello = [0u8; 8];
if s.read_exact(&mut hello).is_err() { if s.read_exact(&mut hello).is_err() {
continue; continue;
} }
if hello != lonelyradio_types::HELLO_MAGIC.to_le_bytes() {
if &hello != lonelyradio_types::HELLO_MAGIC {
continue; continue;
} }
if s.write_all( if s.write_all(
&rmp_serde::to_vec_named(&ServerCapabilities { &rmp_serde::to_vec_named(&ServerCapabilities {
encoders: SUPPORTED_ENCODERS.to_vec(), encoders: SUPPORTED_ENCODERS.to_vec(),
@ -177,17 +222,82 @@ async fn main() {
{ {
continue; continue;
}; };
let settings: Settings = match rmp_serde::from_read(&s) { s.flush().unwrap();
Ok(s) => s,
_ => continue, let request: Request = match rmp_serde::from_read(&s) {
Ok(r) => r,
Err(_) => {
continue;
}
}; };
if settings.cover < -1 {
continue; match request {
Request::Play(settings) => {
if s.write_all(&rmp_serde::to_vec_named(&check_settings(&settings)).unwrap())
.is_err()
{
continue;
}
tokio::spawn(stream(s, tracklist.clone(), settings));
}
Request::ListPlaylist => match playlists {
None => {
s.write_all(
&rmp_serde::to_vec_named(&RequestResult::Playlist(
lonelyradio_types::PlaylistResponce {
playlists: vec![],
},
))
.unwrap(),
)
.unwrap();
}
Some(ref playlists) => {
s.write_all(
&rmp_serde::to_vec_named(&RequestResult::Playlist(
lonelyradio_types::PlaylistResponce {
playlists: playlists.keys().cloned().collect(),
},
))
.unwrap(),
)
.unwrap();
}
},
Request::PlayPlaylist(playlist, settings) => {
if playlists.is_none() || playlists.as_ref().unwrap().get(&playlist).is_none() {
s.write_all(
&rmp_serde::to_vec_named(&RequestResult::Error(
lonelyradio_types::RequestError::NoSuchPlaylist,
))
.unwrap(),
)
.unwrap();
continue;
}
if s.write_all(&rmp_serde::to_vec_named(&check_settings(&settings)).unwrap())
.is_err()
{
continue;
}
let tracklist = playlists.as_ref().unwrap().get(&playlist).unwrap().clone();
tokio::spawn(stream(s, tracklist, settings));
}
} }
tokio::spawn(stream(s, tracklist.clone(), settings));
} }
} }
fn check_settings(settings: &Settings) -> RequestResult {
if settings.cover < -1 {
return RequestResult::Error(lonelyradio_types::RequestError::WrongCoverSize);
}
if !SUPPORTED_ENCODERS.contains(&settings.encoder) {
return RequestResult::Error(lonelyradio_types::RequestError::UnsupportedEncoder);
}
RequestResult::Ok
}
fn is_not_hidden(entry: &DirEntry) -> bool { fn is_not_hidden(entry: &DirEntry) -> bool {
entry.file_name().to_str().map(|s| entry.depth() == 0 || !s.starts_with('.')).unwrap_or(false) entry.file_name().to_str().map(|s| entry.depth() == 0 || !s.starts_with('.')).unwrap_or(false)
} }
@ -212,9 +322,13 @@ fn track_valid(track: &Path) -> bool {
} }
} }
async fn stream(mut s: TcpStream, tracklist: Arc<Vec<PathBuf>>, settings: Settings) { async fn stream(mut s: impl Write, tracklist: Arc<Vec<PathBuf>>, settings: Settings) {
let args = Args::parse(); let args = Args::parse();
let encoder_wants = match settings.encoder {
Encoder::Opus | Encoder::Vorbis | Encoder::Aac => 48000,
Encoder::Flac => 96000,
_ => 0,
};
loop { loop {
let track = tracklist.choose(&mut thread_rng()).unwrap().clone(); let track = tracklist.choose(&mut thread_rng()).unwrap().clone();
@ -255,43 +369,19 @@ async fn stream(mut s: TcpStream, tracklist: Arc<Vec<PathBuf>>, settings: Settin
}; };
}; };
let track_message = format!("{} - {} - {}", &artist, &album, &title); let track_message = format!("{} - {} - {}", &artist, &album, &title);
eprintln!( println!("[{}] {} ({:?})", Local::now().to_rfc3339(), track_message, settings.encoder);
"[{}] {} to {}:{}{} ({:?})",
Local::now().to_rfc3339(),
track_message,
s.peer_addr().unwrap().ip(),
s.peer_addr().unwrap().port(),
if args.war {
" with WAR.rs"
} else {
""
},
settings.encoder
);
if args.public_log { let (channels, sample_rate, time) = get_meta(track.as_path(), encoder_wants).await;
println!( let stream = decode_file_stream(track, encoder_wants);
"[{}] {} to {}{}", let id = thread_rng().gen();
Local::now().to_rfc3339(),
track.to_str().unwrap(),
s.peer_addr().unwrap().port(),
if args.war {
" with WAR.rs"
} else {
""
}
);
}
let (channels, sample_rate, time) = get_meta(track.as_path()).await;
let stream = decode_file_stream(track);
if stream_track( if stream_track(
stream, stream,
args.war,
TrackMetadata { TrackMetadata {
track_length_frac: time.frac as f32, track_length_frac: time.frac as f32,
track_length_secs: time.seconds, track_length_secs: time.seconds,
encoder: settings.encoder, encoder: settings.encoder,
cover: cover.join().unwrap(), cover: cover.join().unwrap(),
id,
album, album,
artist, artist,
title, title,