Files
jellytau/src-tauri/src/commands/connectivity.rs
T
dtourolle 3fbf6afdbc Background-audio handoff for video + repository/player refactor
Hand video playback off to a native audio-only stream when the app is
backgrounded or locked, with no on-device video decode (UR-040). Adds
player_enter/exit_background_audio commands, an audio-only stream URL
for video items across the repository layer, and the frontend handoff
state machine wired into VideoPlayer. Includes accompanying
repository/offline/player refactoring and regenerates the traceability
matrix.
2026-07-22 21:52:07 +02:00

103 lines
2.9 KiB
Rust

//! Server-reachability / connectivity commands.
//!
//! TRACES: UR-043 | IR-027 | DR-055
use crate::connectivity::{ConnectivityMonitor, ConnectivityStatus};
use std::sync::Arc;
use tauri::State;
/// Wrapper for ConnectivityMonitor managed state
pub struct ConnectivityMonitorWrapper(pub Arc<tokio::sync::Mutex<ConnectivityMonitor>>);
/// Check if the server is currently reachable
#[tauri::command]
#[specta::specta]
pub async fn connectivity_check_server(
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<bool, String> {
let monitor = state.0.lock().await;
Ok(monitor.check_reachability().await)
}
/// Set the server URL and trigger an immediate check
#[tauri::command]
#[specta::specta]
pub async fn connectivity_set_server_url(
url: String,
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<(), String> {
let monitor = state.0.lock().await;
monitor.set_server_url(url).await;
Ok(())
}
/// Get the current connectivity status
#[tauri::command]
#[specta::specta]
pub async fn connectivity_get_status(
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<ConnectivityStatus, String> {
let monitor = state.0.lock().await;
Ok(monitor.get_status().await)
}
/// Start monitoring connectivity with adaptive polling
#[tauri::command]
#[specta::specta]
pub async fn connectivity_start_monitoring(
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<(), String> {
let monitor = state.0.lock().await;
monitor.start_monitoring().await;
Ok(())
}
/// Stop monitoring connectivity
#[tauri::command]
#[specta::specta]
pub async fn connectivity_stop_monitoring(
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<(), String> {
let monitor = state.0.lock().await;
monitor.stop_monitoring();
Ok(())
}
/// Mark the server as reachable (called after successful API calls)
#[tauri::command]
#[specta::specta]
pub async fn connectivity_mark_reachable(
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<(), String> {
let monitor = state.0.lock().await;
monitor.mark_reachable().await;
Ok(())
}
/// Mark the server as unreachable (called after failed API calls)
#[tauri::command]
#[specta::specta]
pub async fn connectivity_mark_unreachable(
error: Option<String>,
state: State<'_, ConnectivityMonitorWrapper>,
) -> Result<(), String> {
let monitor = state.0.lock().await;
monitor.mark_unreachable(error).await;
Ok(())
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_connectivity_monitor_wrapper_structure() {
// Test that wrapper can be created and holds Arc
// We can't instantiate ConnectivityMonitor directly in tests
// due to its dependencies, so we just test the wrapper type structure
// This verifies the wrapper type exists and can hold Arc<Mutex>
assert_eq!(std::mem::size_of::<ConnectivityMonitorWrapper>() > 0, true);
}
}