0.6.0: artwork support, new SwiftUI client, new protocol iteration

Drop of the "XOR encryption"

Signed-off-by: Ivan Bushchik <ivabus@ivabus.dev>
This commit is contained in:
Ivan Bushchik 2024-07-12 23:25:36 +03:00
parent ff52e14863
commit ec55bd2b1e
No known key found for this signature in database
GPG key ID: 2F16FBF3262E090C
75 changed files with 2590 additions and 1015 deletions

1125
Cargo.lock generated

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@ -5,19 +5,19 @@ members = [
"monoclient-s",
"monolib",
"monoloader",
"microserve",
]
[package]
name = "lonelyradio"
description = "TCP radio for lonely ones"
version = "0.5.0"
version = "0.6.0"
edition = "2021"
license = "MIT"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio"
[dependencies]
lonelyradio_types = { version = "0.6.0", path = "./lonelyradio_types" }
rand = "0.8.5"
clap = { version = "4.4.18", features = ["derive"] }
tokio = { version = "1.35.1", features = [
@ -43,9 +43,12 @@ async-stream = "0.3.5"
tokio-stream = { version = "0.1.15", features = ["sync"] }
futures-util = "0.3.30"
samplerate = "0.2.4"
lonelyradio_types = { version = "0.5.0", path = "./lonelyradio_types" }
once_cell = "1.19.0"
flacenc = { version = "0.4.0", default-features = false }
image = "0.25.1"
[build-dependencies]
cc = "1.0.98"
[profile.release]
opt-level = 3

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@ -1,76 +1,90 @@
# lonelyradio
Broadcast audio over the internet.
Broadcast lossless audio over the internet.
Decodes audio streams using [symphonia](https://github.com/pdeljanov/Symphonia).
Optionally transcodes audio into and from FLAC using [flacenc-rs](https://github.com/yotarok/flacenc-rs/) and [claxon](https://github.com/ruuda/claxon).
## Installation
### Install music server
## Install server
```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.5.0 lonelyradio
```
### Install CLI client
```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.5.0 monoclient
```
### Install GUI (Slint) client
```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.5.0 monoclient-s
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.6.0 lonelyradio
```
## Run
```
lonelyradio [-a <ADDRESS:PORT>] [-p|--public-log] [-w|--war] [-m|--max-samplerate M] [--xor-key-file FILE] [--no-resampling] [-f|--flac] <MUSIC_FOLDER>
lonelyradio <MUSIC_FOLDER>
```
All files (recursively) will be shuffled and played back. Public log will be displayed to stdout, private to stderr.
`-m|--max-samplerate M` will resample tracks which samplerate exceeds M to M
`--xor-key-file FILE` will XOR all outgoing bytes looping through FILE
`-f|--flac` will enable (experimental) FLAC compression
Look into `--help` for detailed info
### Clients
[monoclient](./monoclient) is a recommended CLI player for lonelyradio that uses [monolib](./monolib)
#### monoclient-x
[monoclient-x](./monoclient-x) is a SwiftUI player for lonelyradio for iOS/iPadOS/macOS
##### Build
1. Build monolib with [xcframework](https://github.com/Binlogo/cargo-xcframework)
2. Build monoclient-x using Xcode or `xcodebuild`
#### monoclient-s
[monoclient-s](./monoclient-s) is a GUI player for lonelyradio built with [Slint](https://slint.dev)
##### Install
```shell
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.6.0 monoclient-s
```
You may need to install some dependencies for Slint.
Desktop integration will be added later.
##### Build
```
cargo build -p monoclient-s
```
You may need to install some dependencies for Slint.
#### monoclient
[monoclient](./monoclient) is a CLI player for lonelyradio that uses [monolib](./monolib)
```shell
monoclient <SERVER>:<PORT>
```
[monoclient-s](./monoclient-s) is a experimental GUI player for lonelyradio built with [Slint](https://slint.dev)
##### Install monoclient
```shell
monoclient-s
cargo install --git https://github.com/ivabus/lonelyradio --tag 0.6.0 monoclient
```
Desktop integration will be added later.
### Other clients
SwiftUI client is availible in [platform](./platform) directory.
# Other things
[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.
The full protocol specification will be available later. If you would like to learn more about it now, please refer to the monolib.
#### monolib API stability
As lonelyradio has not yet reached its first major release, the API may (and will) break at any point.
### Microphone server
Experimental server (lonelyradio-compatible) for streaming audio from your microphone is available in the [microserve](./microserve) crate.
Experimental (and uncompatible with versions 0.6+) server (lonelyradio-compatible) for streaming audio from your microphone is available in the [microserve](./microserve) crate.
## License

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@ -2,10 +2,11 @@
name = "lonelyradio_types"
description = "Shared types for lonelyradio"
license = "MIT"
version = "0.5.0"
version = "0.6.0"
edition = "2021"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio"
[dependencies]
serde = { version = "1.0.197", features = ["derive"] }
serde_bytes = "0.11.15"

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@ -1,25 +1,63 @@
use serde::{Deserialize, Serialize};
pub const HELLO_MAGIC: u64 = 0x104e1374d10;
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub enum Message {
T(TrackMetadata),
F(FragmentMetadata),
}
#[repr(C)]
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct Settings {
#[serde(rename = "e")]
pub encoder: Encoder,
#[serde(rename = "co")]
pub cover: i32,
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct ServerCapabilities {
#[serde(rename = "e")]
pub encoders: Vec<Encoder>,
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct TrackMetadata {
#[serde(rename = "tls")]
pub track_length_secs: u64,
#[serde(rename = "tlf")]
pub track_length_frac: f32,
#[serde(rename = "c")]
pub channels: u16,
#[serde(rename = "sr")]
pub sample_rate: u32,
pub flac: bool,
#[serde(rename = "e")]
pub encoder: Encoder,
#[serde(rename = "mt")]
pub title: String,
#[serde(rename = "mal")]
pub album: String,
#[serde(rename = "mar")]
pub artist: String,
#[serde(rename = "co")]
#[serde(with = "serde_bytes")]
pub cover: Option<Vec<u8>>,
}
#[repr(u8)]
#[derive(Deserialize, Serialize, Clone, Copy, Debug, PartialEq)]
pub enum Encoder {
Pcm16 = 0,
PcmFloat = 1,
Flac = 2,
}
#[derive(Deserialize, Serialize, Clone, Debug, PartialEq)]
pub struct FragmentMetadata {
// In samples or bytes (if FLAC)
// In bytes
#[serde(rename = "l")]
pub length: u64,
}

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@ -39,7 +39,8 @@ async fn update_start() {
async fn stream(mut s: std::net::TcpStream) {
println!("Playing for {}", s.peer_addr().unwrap());
let md = lonelyradio_types::Message::T(TrackMetadata {
flac: false,
cover: None,
encoder: lonelyradio_types::Encoder::Pcm,
track_length_secs: 0,
track_length_frac: 0.0,
channels: 1,

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@ -1,19 +1,22 @@
[package]
name = "monoclient-s"
description = "Client for lonelyradio built with Slint"
version = "0.5.0"
version = "0.6.0"
edition = "2021"
[dependencies]
slint = { version = "1.6.0", features = ["backend-android-activity-06"] }
monolib = { path = "../monolib" }
slint = { version = "1.6", features = ["backend-android-activity-06"] }
monolib = { path = "../monolib", version = "0.6.0" }
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" }
zune-jpeg = "0.4.11"
[lib]
crate-type = [ "cdylib" ]
# TODO: Set up cargo-bundle
#[package.metadata.bundle]
#name = "monoclient-s"
#identifier = "dev.ivabus.monoclient-s"
#icon = ["lonelyradio.png", "lonelyradio.icns"]
#version = "0.5.0"
#copyright = "Copyright (c) 2024 Ivan Bushchik."
#category = "Music"
[package.metadata.bundle]
name = "monoclient-s"
identifier = "dev.ivabus.monoclient-s"
icon = ["lonelyradio.png", "lonelyradio.icns"]
version = "0.5.0"
copyright = "Copyright (c) 2024 Ivan Bushchik."
category = "Music"

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227
monoclient-s/src/app.rs Normal file
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@ -0,0 +1,227 @@
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();
}

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

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@ -1,181 +1,4 @@
use std::time::Duration;
use monolib::State;
use slint::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;
title: "monoclient-s";
min-width: 192px;
max-width: 768px;
VerticalBox {
alignment: center;
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)
}
}
}
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, None));
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());
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();
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();
mod app;
fn main() {
app::_main()
}

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@ -0,0 +1,453 @@
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@ -0,0 +1,71 @@
//
// ContentView.swift
// monoclient-x
//
// Created by ivabus on 12.06.2024.
//
import SwiftUI
import SwiftData
import AppIntents
struct ContentView: View {
var body: some View {
Player()
}
}
struct PlayIntent: AudioPlaybackIntent {
static var title: LocalizedStringResource = "Start lonelyradio client"
static var description = IntentDescription("Plays from setted up server")
static var openAppWhenRun: Bool = false
static var isDiscoverable: Bool = true
@MainActor
func perform() async throws -> some IntentResult {
Player().play()
return .result()
}
}
struct StopIntent: AudioPlaybackIntent {
static var title: LocalizedStringResource = "Stop lonelyradio client"
static var description = IntentDescription("Stops monoclient")
static var openAppWhenRun: Bool = false
static var isDiscoverable: Bool = true
@MainActor
func perform() async throws -> some IntentResult {
Player().stop()
return .result()
}
}
struct LibraryAppShortcuts: AppShortcutsProvider {
static var appShortcuts: [AppShortcut] {
AppShortcut(
intent: PlayIntent(),
phrases: [
"Start playback \(.applicationName)",
],
shortTitle: "Start monoclient",
systemImageName: "infinity.circle"
)
AppShortcut(
intent: StopIntent(),
phrases: [
"Stop playback in \(.applicationName)"
],
shortTitle: "Stop monoclient",
systemImageName: "stop.fill"
)
}
}
#Preview {
ContentView()
}

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@ -0,0 +1,57 @@
//
// Item.swift
// monoclient-x
//
// Created by ivabus on 12.06.2024.
//
import CoreGraphics
import CoreFoundation
import SwiftUI
import MonoLib
#if os(macOS)
typealias PlatformImage = NSImage
#else
typealias PlatformImage = UIImage
#endif
struct Metadata {
public var title: String
public var album: String
public var artist: String
mutating func update() {
self.title = String(cString: c_get_metadata_title())
self.album = String(cString: c_get_metadata_album())
self.artist = String(cString: c_get_metadata_artist())
}
}
extension Metadata: Equatable {
static func == (lhs: Self, rhs: Self) -> Bool {
(lhs.album == rhs.album) && (lhs.artist == rhs.artist) && (lhs.title == rhs.title)
}
}
struct Cover {
public var cover: PlatformImage
mutating func update() {
let cov = c_get_cover_jpeg()
if cov.length != 0 {
let data = CFDataCreate(kCFAllocatorDefault, cov.bytes, Int(cov.length))!
#if os(macOS)
self.cover = PlatformImage(cgImage: CGImage(jpegDataProviderSource: CGDataProvider(data: data)!, decode: nil, shouldInterpolate: false, intent: CGColorRenderingIntent.absoluteColorimetric)!, size: NSSize.init(width: 768, height:768))
#else
self.cover = PlatformImage(cgImage: CGImage(jpegDataProviderSource: CGDataProvider(data: data)!, decode: nil, shouldInterpolate: false, intent: CGColorRenderingIntent.absoluteColorimetric)!).preparingForDisplay()!
#endif
// deallocating memory
c_drop(cov.bytes, Int(cov.length))
print(self.cover.size)
} else {
self.cover = PlatformImage()
}
}
}

View file

@ -0,0 +1,271 @@
//
// Player.swift
// monoclient-x
//
// Created by ivabus on 13.06.2024.
//
import SwiftUI
import AVFAudio
import MediaPlayer
import MonoLib
enum PlayerState {
case NotStarted
case Playing
case Paused
mutating func update() {
self = switch c_get_state() {
case 2: PlayerState.Playing
case 3: PlayerState.Paused
default: PlayerState.NotStarted
}
}
}
enum EncoderType: UInt8 {
case PCM16 = 0
case PCMFloat = 1
case FLAC = 2
}
enum CoverSize: Int32 {
case Full = 0
case High = 768
case Medium = 512
case Low = 256
case Min = 128
case NoCover = -1
}
struct Settings {
var encoder: EncoderType = EncoderType.FLAC
var cover_size: CoverSize = CoverSize.High/*
init(enc: EncoderType, cov: CoverSize) {
encoder = enc
cover_size = cov
}*/
}
struct Player: View {
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()
@State var metadata: Metadata = Metadata(title: "", album: "", artist: "")
@State var prev_meta: Metadata = Metadata(title: "", album: "", artist: "")
@State var cover: Cover = Cover(cover: PlatformImage())
@State var state: PlayerState = PlayerState.NotStarted
@State var settings: Settings = Settings.init()
@AppStorage("ContentView.server") var server: String = ""
var body: some View {
VStack(alignment: .center) {
#if os(macOS)
Image(nsImage: cover.cover)
.resizable()
.aspectRatio(contentMode: .fit)
.frame(minWidth: 256, maxWidth: 256, minHeight: 256, maxHeight: 256)
.frame(width: 256.0, height: 256.0)
.clipShape(.rect(cornerRadius: 24))
.shadow(radius: 16)
.padding(16)
#else
Image(uiImage: cover.cover)
.resizable()
.aspectRatio(contentMode: .fit)
.frame(minWidth: 256, maxWidth: 256, minHeight: 256, maxHeight: 256)
.frame(width: 256.0, height: 256.0)
.clipShape(.rect(cornerRadius: 24))
.shadow(radius: 16)
.padding(16)
#endif
VStack(alignment: .center){
Text(metadata.title).bold()
Text(metadata.album)
Text(metadata.artist)
}.frame(minHeight: 64)
TextField(
"Server",
text: $server,
onCommit: {
#if os(macOS)
DispatchQueue.main.async {
NSApp.keyWindow?.makeFirstResponder(nil)
}
#endif
}
)
.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){
Image(systemName: state == PlayerState.NotStarted ? "infinity.circle" : (state == PlayerState.Playing) ? "pause.circle.fill" : "play.circle" )
.font(.system(size: 30))
.padding(4)
}
.buttonStyle(.borderedProminent)
.buttonBorderShape(.capsule)
Button(action: next){
Image(systemName: "forward.end.fill").padding(4).frame(width: 32, height: 24)
}.disabled(state == PlayerState.NotStarted)
.buttonStyle(.bordered)
.font(.system(size: 20))
.buttonBorderShape(.capsule)
}
Menu {
Picker("Encoder", selection: $settings.encoder) {
Text("PCM (s16)")
.tag(EncoderType.PCM16)
Text("PCM (f32)")
.tag(EncoderType.PCMFloat)
Text("FLAC (s24)")
.tag(EncoderType.FLAC)
}.pickerStyle(.menu)
Picker("Cover size", selection: $settings.cover_size) {
Text("Original")
.tag(CoverSize.Full)
Text("High (768)")
.tag(CoverSize.High)
Text("Medium (512)")
.tag(CoverSize.Medium)
Text("Low (256)")
.tag(CoverSize.Low)
Text("Min (128)")
.tag(CoverSize.Min)
Text("No cover")
.tag(CoverSize.NoCover)
}.pickerStyle(.menu)
} label: {
Label("Settings", systemImage: "gearshape")
.padding(16)
}.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] = [
MPMediaItemPropertyArtist: metadata.artist,
MPMediaItemPropertyAlbumTitle: metadata.album,
MPMediaItemPropertyTitle: metadata.title,
MPMediaItemPropertyArtwork: mediaArtwork,
MPNowPlayingInfoPropertyIsLiveStream: true,
MPMediaItemPropertyPlaybackDuration: c_get_metadata_length(),
]
MPNowPlayingInfoCenter.default().nowPlayingInfo = nowPlayingInfo
}
.onAppear() {
#if os(iOS)
UIApplication.shared.beginReceivingRemoteControlEvents()
#endif
MPRemoteCommandCenter.shared().previousTrackCommand.isEnabled = false
MPRemoteCommandCenter.shared().nextTrackCommand.isEnabled = true
MPRemoteCommandCenter.shared().skipForwardCommand.isEnabled = false
MPRemoteCommandCenter.shared().skipBackwardCommand.isEnabled = false
MPRemoteCommandCenter.shared().pauseCommand.addTarget(handler: { _ in
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()
return MPRemoteCommandHandlerStatus.success
})
MPRemoteCommandCenter.shared().nextTrackCommand.addTarget(handler: {_ in
next()
return MPRemoteCommandHandlerStatus.success
})
}
.animation(.spring, value: UUID())
}
func play() {
switch state {
case PlayerState.NotStarted: do {
#if os(iOS)
let audioSession = AVAudioSession.sharedInstance()
do {
try audioSession.setCategory(
.playback, mode: .default)
try audioSession.setActive(true)
} catch {
print("Failed to set the audio session configuration")
}
#endif
Thread.detachNewThread {
c_start(server, CSettings(encoder: settings.encoder.rawValue, cover: settings.cover_size.rawValue))
}
}
default: do {
c_toggle()
state.update()
}
}
}
func stop() {
c_stop()
state.update()
cover = Cover(cover: PlatformImage())
}
func next() {
c_stop()
state.update()
play()
}
}

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@ -0,0 +1,10 @@
<?xml version="1.0" encoding="UTF-8"?>
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
<plist version="1.0">
<dict>
<key>com.apple.security.app-sandbox</key>
<true/>
<key>com.apple.security.network.client</key>
<true/>
</dict>
</plist>

View file

@ -0,0 +1,35 @@
//
// monoclient_xApp.swift
// monoclient-x
//
// Created by ivabus on 12.06.2024.
//
import SwiftUI
@main
struct monoclient_xApp: App {
var body: some Scene {
#if os(macOS)
WindowGroup {
ContentView().onAppear {
NSWindow.allowsAutomaticWindowTabbing = false
}
.containerBackground(.ultraThinMaterial, for: .window)
.windowFullScreenBehavior(.disabled)
.windowResizeBehavior(.disabled)
}.defaultSize(width: 256, height: 512)
.windowStyle(.hiddenTitleBar)
.commands {
CommandGroup(replacing: CommandGroupPlacement.newItem) {
}
}
#else
WindowGroup {
ContentView()
}
.defaultSize(width: 256, height: 512)
#endif
}
}

View file

@ -1,12 +1,14 @@
[package]
name = "monoclient"
license = "MIT"
version = "0.5.0"
version = "0.6.0"
edition = "2021"
authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
repository = "https://github.com/ivabus/lonelyradio"
[dependencies]
monolib = { version = "0.5.0", path = "../monolib" }
monolib = { version = "0.6.0", path = "../monolib" }
clap = { version = "4.4.18", features = ["derive"] }
crossterm = "0.27.0"
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" }

View file

@ -3,10 +3,14 @@ use crossterm::cursor::MoveToColumn;
use crossterm::event::{poll, read, Event};
use crossterm::style::Print;
use crossterm::terminal::{Clear, ClearType};
use lonelyradio_types::{Encoder, Settings};
use std::io::stdout;
use std::path::PathBuf;
use std::sync::OnceLock;
use std::time::Instant;
static VERBOSE: OnceLock<bool> = OnceLock::new();
#[derive(Parser)]
struct Args {
/// Remote address
@ -14,6 +18,9 @@ struct Args {
#[arg(long)]
xor_key_file: Option<PathBuf>,
#[arg(short, long)]
verbose: bool,
}
const HELP: &str = r#"Keybinds:
@ -22,16 +29,31 @@ const HELP: &str = r#"Keybinds:
Q - Quit monoclient
H - Show this help"#;
macro_rules! verbose {
($($arg:tt)*) => {{
if *VERBOSE.get().unwrap() {
crossterm::execute!(stdout(), Clear(ClearType::CurrentLine), MoveToColumn(0)).unwrap();
println!("{}", format_args!($($arg)*));
crossterm::execute!(stdout(), Clear(ClearType::CurrentLine), MoveToColumn(0)).unwrap();
}
}};
}
fn main() {
let args = Args::parse();
VERBOSE.set(args.verbose).unwrap();
std::thread::spawn(move || {
monolib::run(
&args.address,
args.xor_key_file.map(|key| std::fs::read(key).expect("Failed to read preshared key")),
Settings {
encoder: Encoder::PcmFloat,
cover: -1,
},
)
});
while monolib::get_metadata().is_none() {}
let mut md = monolib::get_metadata().unwrap();
verbose!("md: {:?}", md);
let mut track_start = Instant::now();
let mut seconds_past = 0;
crossterm::execute!(
@ -101,9 +123,10 @@ fn main() {
}
}
if monolib::get_metadata().unwrap() != md
&& track_length <= (Instant::now() - track_start).as_secs_f64()
//&& track_length <= (Instant::now() - track_start).as_secs_f64()
{
md = next_md.clone();
verbose!("md: {:?}", md);
crossterm::execute!(stdout(), Clear(ClearType::CurrentLine), MoveToColumn(0)).unwrap();
print!(
"Playing: {} - {} - {} (0:00 / {}:{:02})",

View file

@ -1,6 +1,6 @@
[package]
name = "monolib"
version = "0.5.0"
version = "0.6.0"
edition = "2021"
license = "MIT"
description = "A library implementing the lonely radio audio streaming protocol"
@ -9,11 +9,19 @@ authors = ["Ivan Bushchik <ivabus@ivabus.dev>"]
[lib]
name = "monolib"
crate-type = ["staticlib", "cdylib", "rlib"]
crate-type = ["cdylib", "staticlib", "rlib"]
[dependencies]
rodio = { version = "0.17.3", default-features = false }
byteorder = "1.5.0"
rmp-serde = "1.1.2"
lonelyradio_types = { version = "0.5.0", path = "../lonelyradio_types" }
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" }
claxon = "0.4.3"
[package.metadata.xcframework]
include-dir = "src"
lib-type = "cdylib"
zip = false
macOS = true
iOS = true
simulators = true

12
monolib/cbindgen.toml Normal file
View file

@ -0,0 +1,12 @@
language = "C"
include_version = false
############################ Code Style Options ################################
braces = "SameLine"
line_length = 100
tab_width = 2
line_endings = "LF"

View file

@ -1,18 +1,46 @@
use crate::*;
use std::ffi::{c_char, c_float, c_ushort};
use std::ffi::{c_char, c_float};
use std::ffi::{CStr, CString};
#[repr(C)]
#[derive(Debug, PartialEq)]
pub struct CTrackMetadata {
pub title: *mut c_char,
pub album: *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)]
#[derive(Clone, Debug, PartialEq)]
pub struct CSettings {
/// See lonelyradio_types -> Encoder
pub encoder: u8,
pub cover: i32,
}
#[no_mangle]
#[allow(clippy::not_unsafe_ptr_arg_deref)]
pub extern "C" fn c_start(server: *const c_char) {
pub extern "C" fn c_start(server: *const c_char, settings: CSettings) {
let serv = unsafe { CStr::from_ptr(server) };
run(
match serv.to_str() {
Ok(s) => s,
_ => "",
},
None,
Settings {
encoder: match settings.encoder {
0 => Encoder::Pcm16,
1 => Encoder::PcmFloat,
2 => Encoder::Flac,
_ => return,
},
cover: settings.cover,
},
)
}
@ -27,9 +55,9 @@ pub extern "C" fn c_stop() {
}
#[no_mangle]
pub extern "C" fn c_get_state() -> c_ushort {
pub extern "C" fn c_get_state() -> c_char {
let state = STATE.read().unwrap();
*state as c_ushort
*state as c_char
}
#[no_mangle]
@ -69,10 +97,55 @@ pub extern "C" fn c_get_metadata_title() -> *mut c_char {
}
#[no_mangle]
pub extern "C" fn c_get_metadata_length() -> *mut c_float {
pub extern "C" fn c_get_metadata_length() -> c_float {
let md = MD.read().unwrap();
match md.as_ref() {
Some(md) => &mut (md.track_length_secs as c_float + md.track_length_frac as c_float),
None => &mut 0.0,
Some(md) => md.track_length_secs as c_float + md.track_length_frac as c_float,
None => 0.0,
}
}
#[repr(C)]
pub struct CImageJpeg {
pub length: u32,
pub bytes: *mut u8,
}
/// # Safety
/// Manually deallocate returned memory after use
#[no_mangle]
pub unsafe extern "C" fn c_get_cover_jpeg() -> CImageJpeg {
let md = MD.read().unwrap();
if let Some(md) = md.as_ref() {
if let Some(cov) = md.cover.as_ref() {
//eprintln!("{} {:p}", *len, cov.as_ptr());
let len = cov.len() as u32;
//let b = Box::new(.as_slice());
let clone = cov.clone();
let ptr = clone.as_ptr() as *mut u8;
std::mem::forget(clone);
CImageJpeg {
length: len,
bytes: ptr,
}
} else {
eprintln!("No cov");
CImageJpeg {
length: 0,
bytes: std::ptr::null_mut(),
}
}
} else {
eprintln!("No md");
CImageJpeg {
length: 0,
bytes: std::ptr::null_mut(),
}
}
}
/// # Safety
/// None
#[no_mangle]
pub unsafe extern "C" fn c_drop(ptr: *mut u8, count: usize) {
std::alloc::dealloc(ptr, std::alloc::Layout::from_size_align(count, 1).unwrap());
}

View file

@ -16,20 +16,20 @@
/// Functions, providing C-like API
pub mod c;
mod reader;
use byteorder::{LittleEndian, ReadBytesExt};
use lonelyradio_types::{Message, TrackMetadata};
use byteorder::{LittleEndian, ReadBytesExt, WriteBytesExt};
use lonelyradio_types::{Encoder, Message, ServerCapabilities, Settings, TrackMetadata};
use rodio::buffer::SamplesBuffer;
use rodio::{OutputStream, Sink};
use std::error::Error;
use std::io::{BufReader, Read};
use std::io::{Read, Write};
use std::net::TcpStream;
use std::sync::atomic::AtomicU8;
use std::sync::RwLock;
use std::time::Instant;
const CACHE_SIZE: usize = 128;
const CACHE_SIZE_PCM: usize = 32;
const CACHE_SIZE_COMPRESSED: usize = 2;
static SINK: RwLock<Option<Sink>> = RwLock::new(None);
static VOLUME: AtomicU8 = AtomicU8::new(255);
@ -76,7 +76,8 @@ pub fn stop() {
let sink = SINK.read().unwrap();
if let Some(sink) = sink.as_ref() {
sink.pause()
sink.pause();
sink.clear()
}
drop(sink);
drop(state);
@ -143,12 +144,16 @@ pub fn set_volume(volume: u8) {
}
/// Download track as samples
pub fn get_track(server: &str, xor_key: Option<Vec<u8>>) -> Option<(TrackMetadata, Vec<i16>)> {
let mut stream = BufReader::new(match xor_key {
Some(k) => reader::Reader::XorEncrypted(TcpStream::connect(server).unwrap(), k, 0),
None => reader::Reader::Unencrypted(TcpStream::connect(server).unwrap()),
});
pub fn get_track(server: &str, mut settings: Settings) -> Option<(TrackMetadata, Vec<i16>)> {
let mut connection = unwrap(TcpStream::connect(server))?;
unwrap(connection.write_u64::<LittleEndian>(lonelyradio_types::HELLO_MAGIC))?;
let capabilities: ServerCapabilities = unwrap(rmp_serde::from_read(&mut connection))?;
if !capabilities.encoders.contains(&settings.encoder) {
settings.encoder = Encoder::Pcm16
}
unwrap(connection.write_all(&rmp_serde::to_vec_named(&settings).unwrap()))?;
let mut stream = connection;
let mut samples = vec![];
let mut md: Option<TrackMetadata> = None;
loop {
@ -160,47 +165,59 @@ pub fn get_track(server: &str, xor_key: Option<Vec<u8>>) -> Option<(TrackMetadat
}
md = Some(tmd);
}
Message::F(fmd) => {
if !md.clone().unwrap().flac {
Message::F(fmd) => match md.as_ref().unwrap().encoder {
Encoder::Pcm16 => {
let mut buf = vec![0; fmd.length as usize];
stream.read_i16_into::<LittleEndian>(&mut buf).unwrap();
samples.append(&mut buf);
} else {
let take = stream.by_ref().take(fmd.length);
}
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))
}
fn unwrap<T, E: Error>(thing: Result<T, E>) -> T {
fn unwrap<T, E: Error>(thing: Result<T, E>) -> Option<T> {
if thing.is_err() {
*STATE.write().unwrap() = State::NotStarted;
}
thing.unwrap()
thing.ok()
}
/// Starts playing at "server:port"
pub fn run(server: &str, xor_key: Option<Vec<u8>>) {
pub fn run(server: &str, settings: Settings) {
let _ = _run(server, settings);
}
pub fn _run(server: &str, settings: Settings) -> Option<()> {
let mut settings = settings;
let mut state = STATE.write().unwrap();
if *state == State::Playing || *state == State::Paused {
return;
return None;
}
*state = State::Playing;
drop(state);
let mut stream = BufReader::new(match xor_key {
Some(k) => reader::Reader::XorEncrypted(unwrap(TcpStream::connect(server)), k, 0),
None => reader::Reader::Unencrypted(unwrap(TcpStream::connect(server))),
});
let mut connection = unwrap(TcpStream::connect(server))?;
unwrap(connection.write_u64::<LittleEndian>(lonelyradio_types::HELLO_MAGIC))?;
let capabilities: ServerCapabilities = unwrap(rmp_serde::from_read(&mut connection))?;
if !capabilities.encoders.contains(&settings.encoder) {
settings.encoder = Encoder::Pcm16
}
unwrap(connection.write_all(&rmp_serde::to_vec_named(&settings).unwrap()))?;
let mut stream = connection;
let mut sink = SINK.write().unwrap();
let (_stream, stream_handle) = unwrap(OutputStream::try_default());
let (_stream, stream_handle) = unwrap(OutputStream::try_default())?;
// Can't reuse old sink for some reason
let audio_sink = Sink::try_new(&stream_handle).unwrap();
@ -215,7 +232,7 @@ pub fn run(server: &str, xor_key: Option<Vec<u8>>) {
// No metadata shift
if watching_sleep_until_end() {
_stop();
return;
return None;
}
let mut md = MD.write().unwrap();
*md = Some(tmd.clone());
@ -227,49 +244,60 @@ pub fn run(server: &str, xor_key: Option<Vec<u8>>) {
}
if *STATE.read().unwrap() == State::Resetting {
_stop();
return;
}
if !MD.read().unwrap().clone().unwrap().flac {
let mut samples_i16 = vec![0; fmd.length as usize];
if stream.read_i16_into::<LittleEndian>(&mut samples_i16).is_err() {
return;
};
samples.append(
&mut samples_i16.iter().map(|sample| *sample as f32 / 32767.0).collect(),
);
} else {
let take = stream.by_ref().take(fmd.length);
let mut reader = claxon::FlacReader::new(take).unwrap();
samples.append(
&mut reader
.samples()
.map(|x| x.unwrap_or(0) as f32 / 32767.0)
.collect::<Vec<f32>>(),
);
return None;
}
match MD.read().unwrap().as_ref().unwrap().encoder {
Encoder::Pcm16 => {
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>>(),
);
}
};
// Sink's thread is detached from main thread, so we need to synchronize with it
// Why we should synchronize with it?
// Let's say, that if we don't synchronize with it, we would have
// a lot (no upper limit, actualy) of buffered sound, waiting for playing in
// sink
// Synchronizing with sink
let sink = SINK.read().unwrap();
let _md = MD.read().unwrap();
let md = _md.as_ref().unwrap().clone();
drop(_md);
if let Some(sink) = sink.as_ref() {
while sink.len() >= CACHE_SIZE {
while (sink.len() >= CACHE_SIZE_PCM && md.encoder != Encoder::Flac)
|| (sink.len() >= CACHE_SIZE_COMPRESSED && md.encoder == Encoder::Flac)
{
// Sleeping exactly one buffer and watching for reset signal
if watching_sleep(
if sink.len() > 2 {
sink.len() as f32 - 2.0
} else {
0.25
} * fmd.length as f32 / md.sample_rate as f32
} * samples.len() as f32 / md.sample_rate as f32
/ 4.0,
) {
_stop();
return;
return None;
}
}
sink.append(SamplesBuffer::new(

View file

@ -0,0 +1,5 @@
framework module MonoLib {
// a header file in the same directory as the modulemap
header "monolib.h"
export *
}

View file

@ -1,20 +1,42 @@
#include <stdarg.h>
#include <stdbool.h>
#include <stddef.h>
#include <stdint.h>
#include <stdlib.h>
void c_start(const char *server);
typedef struct CImageJpeg {
uint32_t length;
uint8_t *bytes;
} CImageJpeg;
void c_toggle(void);
typedef struct CSettings {
/**
* See lonelyradio_types -> Encoder
*/
uint8_t encoder;
int32_t cover;
} CSettings;
void c_stop(void);
void c_drop(uint8_t *ptr, size_t count);
unsigned short c_get_state(void);
char *c_get_metadata_artist(void);
/**
* # Safety
* Manually deallocate returned memory after use
*/
struct CImageJpeg c_get_cover_jpeg(void);
char *c_get_metadata_album(void);
char *c_get_metadata_artist(void);
float c_get_metadata_length(void);
char *c_get_metadata_title(void);
float *c_get_metadata_length(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

@ -1,25 +0,0 @@
use std::{io, net::TcpStream};
pub(crate) enum Reader {
Unencrypted(TcpStream),
XorEncrypted(TcpStream, Vec<u8>, u64),
}
impl io::Read for Reader {
fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
match self {
Self::Unencrypted(s) => s.read(buf),
Self::XorEncrypted(s, key, n) => {
let out = s.read(buf);
if let Ok(i) = &out {
for k in buf.iter_mut().take(*i) {
*k ^= key[*n as usize];
*n += 1;
*n %= key.len() as u64;
}
}
out
}
}
}
}

1
monolib/src/target Symbolic link
View file

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

1
monolib/target Symbolic link
View file

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

View file

@ -1,6 +1,6 @@
[package]
name = "monoloader"
version = "0.4.0"
version = "0.6.0"
edition = "2021"
# See more keys and their definitions at https://doc.rust-lang.org/cargo/reference/manifest.html
@ -9,3 +9,4 @@ edition = "2021"
monolib = { path = "../monolib" }
clap = { version = "4.4.18", features = ["derive"] }
hound = "3.5.1"
lonelyradio_types = { version = "0.6.0", path = "../lonelyradio_types" }

View file

@ -1,4 +1,5 @@
use clap::Parser;
use lonelyradio_types::Settings;
use std::path::PathBuf;
#[derive(Parser)]
@ -14,7 +15,10 @@ fn main() {
let args = Args::parse();
let (md, samples) = monolib::get_track(
&args.address,
args.xor_key_file.map(|key| std::fs::read(key).expect("Failed to read preshared key")),
Settings {
encoder: lonelyradio_types::Encoder::Pcm16,
cover: -1,
},
)
.unwrap();
println!(

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@ -1,13 +0,0 @@
//
// MonoLib-Bridging-Header.h
// monoclient
//
// Created by ivabus on 03.03.2024.
//
#ifndef MonoLib_Bridging_Header_h
#define MonoLib_Bridging_Header_h
#import "monolib.h"
#endif /* MonoLib_Bridging_Header_h */

View file

@ -1,21 +0,0 @@
# Platform-specific player realizations
## Rust + SwiftUI (iOS/iPadOS/macOS (iOS mode))
### Build `monolib`
```
cargo lipo --release --targets aarch64-apple-ios -p monolib
```
For running in simulator
```
cargo lipo --release --targets aarch64-apple-ios-sim,x86_64-apple-ios -p monolib
```
### Build and run app
Open Xcode and run.
[Screenshots (pre v0.2)](./screenshots/swiftui)

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@ -1,116 +0,0 @@
//
// ContentView.swift
// monoclient
//
// Created by ivabus on 03.03.2024.
//
import AVFAudio
import SwiftUI
class MonoLib {
func run(server: String) async {
let audioSession = AVAudioSession.sharedInstance()
do {
try audioSession.setCategory(
.playback, mode: .default,
policy: .longFormAudio)
try audioSession.setActive(true)
} catch {
print("Failed to set the audio session configuration")
}
c_start(server)
}
}
struct ContentView: View {
let timer = Timer.publish(every: 0.25, on: .main, in: .common).autoconnect()
@State private var server: String = ""
@State private var port: String = ""
@State private var playing: Bool = true
@State private var running: Bool = false
@State var now_playing_artist: String = ""
@State var now_playing_album: String = ""
@State var now_playing_title: String = ""
var body: some View {
VStack {
Text("Monoclient").font(.largeTitle).fontWidth(.expanded).bold()
VStack(alignment: .center) {
HStack {
Text("Server").frame(minWidth: 50, idealWidth: 60)
TextField(
"Required",
text: $server
)
.disableAutocorrection(true)
}
.textFieldStyle(.roundedBorder)
HStack {
Text("Port").frame(minWidth: 50, idealWidth: 60)
TextField(
"Required",
text: $port
)
.disableAutocorrection(true).keyboardType(.numberPad).keyboardShortcut(.escape)
}
.textFieldStyle(.roundedBorder)
Button(action: {
if running {
playing = !playing
c_toggle()
}
running = true
let a = MonoLib()
Task.init {
await a.run(server: server + ":" + port)
}
}) {
Image(
systemName: running
? (playing ? "pause.circle.fill" : "play.circle") : "infinity.circle"
).font(.largeTitle)
}.buttonStyle(
.borderedProminent)
HStack{
Button(action: {
c_stop()
running = false
playing = true
}) { Image(systemName: "stop").font(.title3) }.buttonStyle(
.bordered
).disabled(!running)
Button(action: {
c_stop()
playing = true
let a = MonoLib()
Task.init {
await a.run(server: server + ":" + port)
}
}) {Image(systemName: "forward").font(.title3)}.buttonStyle(.bordered).disabled(!running)
}
}.frame(width: 300)
VStack(spacing: 10) {
Text(now_playing_artist).onReceive(timer) { _ in
now_playing_artist = String(cString: c_get_metadata_artist()!)
}
Text(now_playing_album).onReceive(timer) { _ in
now_playing_album = String(cString: c_get_metadata_album()!)
}
Text(now_playing_title).onReceive(timer) { _ in
now_playing_title = String(cString: c_get_metadata_title()!)
}.bold()
}.frame(minHeight: 100)
}.padding()
}
}
#Preview {
ContentView()
}

View file

@ -1,17 +0,0 @@
//
// monoclientApp.swift
// monoclient
//
// Created by ivabus on 03.03.2024.
//
import SwiftUI
@main
struct monoclientApp: App {
var body: some Scene {
WindowGroup {
ContentView()
}
}
}

View file

@ -65,19 +65,11 @@ pub async fn get_meta(file_path: &Path) -> (u16, u32, Time) {
}
let args = Args::parse();
(
channels,
if sample_rate > args.max_samplerate {
args.max_samplerate
} else {
sample_rate
},
track_length,
)
(channels, get_resampling_rate(&sample_rate, &args.max_samplerate), track_length)
}
/// Getting samples
pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<i16>> {
pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<f32>> {
let args = Args::parse();
let file = Box::new(std::fs::File::open(&file_path).unwrap());
let mut hint = Hint::new();
@ -122,13 +114,13 @@ pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<i16>> {
let mut byte_buf =
SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec());
byte_buf.copy_interleaved_ref(decoded);
let output_rate = get_resampling_rate(&spec.rate, &args.max_samplerate);
let output_rate = get_resampling_rate(&spec.rate,&args.max_samplerate);
// About Samplerate struct:
// We are downsampling, not upsampling, so we should be fine
yield (
if output_rate == spec.rate {
byte_buf.samples().iter().map(|x| (*x * 32768.0) as i16).collect()
byte_buf.samples().to_vec()
} else {
samplerate::convert(
spec.rate,
@ -138,17 +130,14 @@ pub fn decode_file_stream(file_path: PathBuf) -> impl Stream<Item = Vec<i16>> {
byte_buf.samples(),
)
.unwrap()
.iter()
.map(|x| (*x * 32768.0) as i16)
.collect()
}
);
} else {
let mut byte_buf =
SampleBuffer::<i16>::new(decoded.capacity() as u64, *decoded.spec());
SampleBuffer::<f32>::new(decoded.capacity() as u64, *decoded.spec());
byte_buf.copy_interleaved_ref(decoded);
yield (byte_buf.samples().to_vec());
yield byte_buf.samples().to_vec();
}
continue;
}

52
src/encode.rs Normal file
View file

@ -0,0 +1,52 @@
use flacenc::{component::BitRepr, error::Verify, source::MemSource};
use lonelyradio_types::Encoder;
pub fn encode(
codec: Encoder,
mut samples: Vec<f32>,
sample_rate: u32,
channels: u16,
) -> Option<Vec<u8>> {
match codec {
Encoder::Pcm16 => {
let mut samples = samples.iter_mut().map(|x| (*x * 32768.0) as i16).collect::<Vec<_>>();
// Launching lonelyradio on the router moment
if cfg!(target_endian = "big") {
samples.iter_mut().for_each(|sample| {
*sample = sample.to_le();
});
}
// Sowwy about that
let (_, samples, _) = unsafe { samples.align_to::<u8>() };
Some(samples.to_vec())
}
Encoder::PcmFloat => {
// Launching lonelyradio on the router moment
// Sowwy about that
let samples = samples.iter().map(|x| x.to_bits()).collect::<Vec<u32>>();
let (_, samples, _) = unsafe { samples.align_to::<u8>() };
Some(samples.to_vec())
}
Encoder::Flac => {
let encoded = flacenc::encode_with_fixed_block_size(
&flacenc::config::Encoder::default().into_verified().unwrap(),
MemSource::from_samples(
// 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();
encoded.write(&mut sink).unwrap();
Some(sink.as_slice().to_vec())
}
}
}

View file

@ -1,27 +1,30 @@
mod decode;
mod writer;
mod encode;
use std::io::Cursor;
use std::io::Read;
use std::net::TcpStream;
use std::path::Path;
use std::path::PathBuf;
use std::sync::Arc;
use chrono::Local;
use clap::Parser;
use flacenc::component::BitRepr;
use flacenc::error::Verify;
use flacenc::source::MemSource;
use encode::encode;
use futures_util::pin_mut;
use futures_util::StreamExt;
use image::io::Reader as ImageReader;
use lofty::Accessor;
use lofty::TaggedFileExt;
use lonelyradio_types::Encoder;
use lonelyradio_types::ServerCapabilities;
use lonelyradio_types::Settings;
use lonelyradio_types::{FragmentMetadata, Message, TrackMetadata};
use once_cell::sync::Lazy;
use rand::prelude::*;
use std::io::Write;
use tokio::net::TcpListener;
use tokio_stream::Stream;
use walkdir::DirEntry;
use writer::Writer;
use crate::decode::decode_file_stream;
use crate::decode::get_meta;
@ -51,48 +54,37 @@ struct Args {
#[arg(long)]
no_resampling: bool,
/// Use FLAC compression
#[arg(short, long)]
flac: bool,
/// Enable XOR "encryption"
#[arg(long)]
xor_key_file: Option<PathBuf>,
/// Size of artwork (-1 for no artwork, 0 for original, N for NxN)
#[arg(long, default_value = "96000")]
artwork: i32,
}
static KEY: Lazy<Option<Arc<Vec<u8>>>> = Lazy::new(|| {
let args = Args::parse();
if let Some(path) = args.xor_key_file {
let key = std::fs::read(path).expect("Failed to read preshared key");
Some(Arc::new(key))
} else {
None
}
});
const SUPPORTED_ENCODERS: [Encoder; 3] = [Encoder::Pcm16, Encoder::PcmFloat, Encoder::Flac];
async fn stream_track(
samples_stream: impl Stream<Item = Vec<i16>>,
samples_stream: impl Stream<Item = Vec<f32>>,
war: bool,
md: TrackMetadata,
s: &mut Writer,
s: &mut TcpStream,
) -> bool {
pin_mut!(samples_stream);
let _md = md.clone();
if s.write_all(rmp_serde::to_vec(&Message::T(_md)).unwrap().as_slice()).is_err() {
if s.write_all(rmp_serde::encode::to_vec_named(&Message::T(_md)).unwrap().as_slice()).is_err() {
return true;
};
// Why chunks?
// flacenc is broken on low amount of samples (Symphonia's AIFF decoder returns ~2304
// samples per packet (on bo en's tracks), instead of usual ~8192 on any other lossless decoder)
// flacenc is broken on low amount of samples (Symphonia's AIFF decoder returns
// ~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
.as_mut()
.chunks(if md.flac && md.track_length_secs > 1 {
2
} else {
1
.chunks(match md.encoder {
Encoder::Pcm16 => 1,
Encoder::PcmFloat => 1,
Encoder::Flac => 16,
})
.next()
.await
@ -100,57 +92,51 @@ async fn stream_track(
let mut _samples = _samples.concat();
if war {
_samples.iter_mut().for_each(|sample| {
*sample = sample.signum() * 32767;
*sample = sample.signum();
});
}
if !md.flac {
let _md = Message::F(FragmentMetadata {
length: _samples.len() as u64,
});
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true;
}
// Launching lonelyradio on the router moment
if cfg!(target_endian = "big") {
_samples.iter_mut().for_each(|sample| {
*sample = sample.to_le();
match md.encoder {
Encoder::Pcm16 => {
let _md = Message::F(FragmentMetadata {
length: _samples.len() as u64 * 2,
});
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true;
}
if s.write_all(
&encode(Encoder::Pcm16, _samples, md.sample_rate, md.channels).unwrap(),
)
.is_err()
{
return true;
}
}
// Sowwy about that
let (_, samples, _) = unsafe { _samples.align_to::<u8>() };
if s.write_all(samples).is_err() {
return true;
Encoder::PcmFloat => {
let _md = Message::F(FragmentMetadata {
length: _samples.len() as u64 * 4,
});
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true;
}
if s.write_all(
&encode(Encoder::PcmFloat, _samples, md.sample_rate, md.channels).unwrap(),
)
.is_err()
{
return true;
}
}
} else {
let encoded = flacenc::encode_with_fixed_block_size(
&flacenc::config::Encoder::default().into_verified().unwrap(),
MemSource::from_samples(
// I'm crying (It's just a burning memory)
&_samples.iter().map(|x| *x as i32).collect::<Vec<i32>>(),
md.channels as usize,
16,
md.sample_rate as usize,
),
256,
);
if encoded.is_err() {
return true;
}
let mut sink = flacenc::bitsink::ByteSink::new();
encoded.unwrap().write(&mut sink).unwrap();
let _md = Message::F(FragmentMetadata {
length: sink.as_slice().len() as u64,
});
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true;
}
if s.write_all(sink.as_slice()).is_err() {
return true;
Encoder::Flac => {
let encoded = encode(Encoder::Flac, _samples, md.sample_rate, md.channels).unwrap();
let _md = Message::F(FragmentMetadata {
length: encoded.as_slice().len() as u64,
});
if s.write_all(rmp_serde::to_vec(&_md).unwrap().as_slice()).is_err() {
return true;
}
if s.write_all(encoded.as_slice()).is_err() {
return true;
}
}
}
}
@ -160,9 +146,9 @@ async fn stream_track(
#[tokio::main]
async fn main() {
let args = Args::parse();
let listener = TcpListener::bind(Args::parse().address).await.unwrap();
let listener = TcpListener::bind(args.address).await.unwrap();
let tracklist = Arc::new(
walkdir::WalkDir::new(Args::parse().dir)
walkdir::WalkDir::new(args.dir)
.into_iter()
.filter_entry(is_not_hidden)
.filter_map(|v| v.ok())
@ -172,25 +158,36 @@ async fn main() {
);
loop {
let (socket, _) = listener.accept().await.unwrap();
let s = socket.into_std().unwrap();
let mut s = socket.into_std().unwrap();
s.set_nonblocking(false).unwrap();
let s = if args.xor_key_file.is_some() {
Writer::XorEncrypted(
s,
match &*KEY {
Some(a) => a.clone(),
_ => {
unreachable!()
}
},
0,
)
} else {
Writer::Unencrypted(s)
let mut hello = [0u8; 8];
if s.read_exact(&mut hello).is_err() {
continue;
}
if hello != lonelyradio_types::HELLO_MAGIC.to_le_bytes() {
continue;
}
if s.write_all(
&rmp_serde::to_vec_named(&ServerCapabilities {
encoders: SUPPORTED_ENCODERS.to_vec(),
})
.unwrap(),
)
.is_err()
{
continue;
};
tokio::spawn(stream(s, tracklist.clone()));
let settings: Settings = match rmp_serde::from_read(&s) {
Ok(s) => s,
_ => continue,
};
if settings.cover < -1 {
continue;
}
tokio::spawn(stream(s, tracklist.clone(), settings));
}
}
fn is_not_hidden(entry: &DirEntry) -> bool {
entry.file_name().to_str().map(|s| entry.depth() == 0 || !s.starts_with('.')).unwrap_or(false)
}
@ -207,7 +204,7 @@ fn track_valid(track: &Path) -> bool {
true
}
async fn stream(mut s: Writer, tracklist: Arc<Vec<PathBuf>>) {
async fn stream(mut s: TcpStream, tracklist: Arc<Vec<PathBuf>>, settings: Settings) {
let args = Args::parse();
loop {
@ -216,6 +213,7 @@ async fn stream(mut s: Writer, tracklist: Arc<Vec<PathBuf>>) {
let mut title = String::new();
let mut artist = String::new();
let mut album = String::new();
let mut cover = std::thread::spawn(|| None);
let mut file = std::fs::File::open(&track).unwrap();
let tagged = match lofty::read_from(&mut file) {
Ok(f) => f,
@ -224,12 +222,33 @@ async fn stream(mut s: Writer, tracklist: Arc<Vec<PathBuf>>) {
if let Some(id3v2) = tagged.primary_tag() {
title =
id3v2.title().unwrap_or(track.file_stem().unwrap().to_string_lossy()).to_string();
album = id3v2.album().unwrap_or("[No tag]".into()).to_string();
artist = id3v2.artist().unwrap_or("[No tag]".into()).to_string();
album = id3v2.album().unwrap_or("".into()).to_string();
artist = id3v2.artist().unwrap_or("".into()).to_string();
if !(id3v2.pictures().is_empty() || args.artwork == -1 || settings.cover == -1) {
let pic = id3v2.pictures()[0].clone();
cover = std::thread::spawn(move || {
let dec = ImageReader::new(Cursor::new(pic.into_data()))
.with_guessed_format()
.ok()?
.decode()
.ok()?;
let mut img = Vec::new();
if args.artwork != 0 && settings.cover != 0 {
let size = std::cmp::min(args.artwork as u32, settings.cover as u32);
dec.resize(size, size, image::imageops::FilterType::Lanczos3)
} else {
dec
}
.to_rgb8()
.write_to(&mut Cursor::new(&mut img), image::ImageFormat::Jpeg)
.unwrap();
Some(img)
});
};
};
let track_message = format!("{} - {} - {}", &artist, &album, &title);
eprintln!(
"[{}] {} to {}:{}{}",
"[{}] {} to {}:{}{} ({:?})",
Local::now().to_rfc3339(),
track_message,
s.peer_addr().unwrap().ip(),
@ -238,7 +257,8 @@ async fn stream(mut s: Writer, tracklist: Arc<Vec<PathBuf>>) {
" with WAR.rs"
} else {
""
}
},
settings.encoder
);
if args.public_log {
@ -262,7 +282,8 @@ async fn stream(mut s: Writer, tracklist: Arc<Vec<PathBuf>>) {
TrackMetadata {
track_length_frac: time.frac as f32,
track_length_secs: time.seconds,
flac: args.flac,
encoder: settings.encoder,
cover: cover.join().unwrap(),
album,
artist,
title,

View file

@ -1,59 +0,0 @@
use std::{
borrow::BorrowMut,
io,
net::{SocketAddr, TcpStream},
sync::Arc,
};
pub(crate) enum Writer {
Unencrypted(TcpStream),
XorEncrypted(TcpStream, Arc<Vec<u8>>, u64),
}
impl io::Write for Writer {
fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
match self {
Self::Unencrypted(s) => s.write(buf),
Self::XorEncrypted(s, key, n) => {
for mut k in buf.iter().copied() {
k ^= key[*n as usize];
*n += 1;
*n %= key.len() as u64;
s.write_all(&[k])?;
}
Ok(buf.len())
}
}
}
fn write_all(&mut self, buf: &[u8]) -> io::Result<()> {
match self {
Self::Unencrypted(s) => s.write_all(buf),
Self::XorEncrypted(s, key, n) => s.write_all(
&buf.iter()
.borrow_mut()
.copied()
.map(|mut k| {
k ^= key[*n as usize];
*n += 1;
*n %= key.len() as u64;
k
})
// I don't like it
.collect::<Vec<u8>>(),
),
}
}
fn flush(&mut self) -> io::Result<()> {
match self {
Self::XorEncrypted(s, _, _) | Self::Unencrypted(s) => s.flush(),
}
}
}
impl Writer {
pub fn peer_addr(&self) -> io::Result<SocketAddr> {
match self {
Self::XorEncrypted(s, _, _) | Self::Unencrypted(s) => s.peer_addr(),
}
}
}