use std::{ collections::HashMap, sync::{ atomic::{AtomicU64, Ordering}, Arc, Mutex, }, }; use anyhow::{anyhow, Context}; use tokio::{ fs, sync::{broadcast, RwLock}, }; use crate::{ audio::{spawn_audio_capture_worker, AudioWorkerDeps}, config::PhoenixConfig, model::{InputSource, MeterFrame, PhoenixGlobalConfig, PhoenixGlobalConfigEnvelope, PhoenixRtaConfig, ServiceStatus}, }; #[derive(Clone)] pub struct AppState { pub config: PhoenixConfig, current_input: Arc>, seq: Arc, metrics_tx: broadcast::Sender, restart_token: Arc, rta_config: Arc>, global_config: Arc>, global_config_rev: Arc, native_wav_recorders: Arc>>, } #[derive(Clone)] pub struct NativeWavCapture { pub sample_rate: u32, pub channels: u16, pub pcm_bytes: Vec, } pub(crate) struct NativeWavRecorder { pub sample_rate: u32, pub channels: u16, pub pcm_bytes: Vec, pub total_frames: usize, pub last_l: i16, pub last_r: i16, pub pending_discontinuity: bool, } const NATIVE_RECORDING_EDGE_FADE_FRAMES: usize = 128; fn apply_native_recording_edge_fades(pcm_bytes: &mut [u8], channels: u16) { let ch = usize::from(channels.max(1)); let frame_size = ch.saturating_mul(2); if frame_size == 0 || pcm_bytes.len() < frame_size * 2 { return; } let total_frames = pcm_bytes.len() / frame_size; if total_frames < 2 { return; } let fade_frames = NATIVE_RECORDING_EDGE_FADE_FRAMES.min(total_frames / 2).max(1); for frame_idx in 0..fade_frames { let in_gain = (frame_idx as f32 + 1.0) / fade_frames as f32; let out_gain = (fade_frames as f32 - frame_idx as f32) / fade_frames as f32; let out_frame_idx = total_frames - fade_frames + frame_idx; for ch_idx in 0..ch { let in_off = frame_idx * frame_size + ch_idx * 2; let in_sample = i16::from_le_bytes([pcm_bytes[in_off], pcm_bytes[in_off + 1]]); let in_scaled = (in_sample as f32 * in_gain).round().clamp(i16::MIN as f32, i16::MAX as f32) as i16; pcm_bytes[in_off..in_off + 2].copy_from_slice(&in_scaled.to_le_bytes()); let out_off = out_frame_idx * frame_size + ch_idx * 2; let out_sample = i16::from_le_bytes([pcm_bytes[out_off], pcm_bytes[out_off + 1]]); let out_scaled = (out_sample as f32 * out_gain).round().clamp(i16::MIN as f32, i16::MAX as f32) as i16; pcm_bytes[out_off..out_off + 2].copy_from_slice(&out_scaled.to_le_bytes()); } } } impl AppState { pub fn new(config: PhoenixConfig) -> Self { let (metrics_tx, _) = broadcast::channel(512); let initial_global_config = load_global_config(&config); let initial_rta_config = apply_global_to_rta(config.default_rta_config(), &initial_global_config); Self { config, current_input: Arc::new(RwLock::new(InputSource::Line)), seq: Arc::new(AtomicU64::new(0)), metrics_tx, restart_token: Arc::new(AtomicU64::new(0)), rta_config: Arc::new(RwLock::new(initial_rta_config)), global_config: Arc::new(RwLock::new(initial_global_config)), global_config_rev: Arc::new(AtomicU64::new(1)), native_wav_recorders: Arc::new(Mutex::new(HashMap::new())), } } pub fn subscribe_metrics(&self) -> broadcast::Receiver { self.metrics_tx.subscribe() } pub async fn input(&self) -> InputSource { *self.current_input.read().await } pub async fn status(&self) -> ServiceStatus { ServiceStatus { ok: true, input: self.input().await, audio_engine: "alsa-direct", metrics_mode: "live", alsa_device: self.config.alsa_device(), sample_rate: self.config.sample_rate, } } pub async fn rta_config(&self) -> PhoenixRtaConfig { self.rta_config.read().await.clone() } pub async fn set_rta_config(&self, config: PhoenixRtaConfig) -> PhoenixRtaConfig { let normalized = normalize_rta_config(config); *self.rta_config.write().await = normalized.clone(); let current = self.global_config.read().await.clone(); let updated_global = PhoenixGlobalConfig { fft_size: normalized.fft_size, input_source: current.input_source, rta_bpo_mode: current.rta_bpo_mode.clone(), input_offset_db_l: normalized.input_offset_db_l, input_offset_db_r: normalized.input_offset_db_r, mono_input: normalized.mono_input, lr_fractional_delay_enabled: normalized.lr_fractional_delay_enabled, lr_fractional_delay_samples: normalized.lr_fractional_delay_samples, al_markers_enabled: current.al_markers_enabled, meter_bar_thin: current.meter_bar_thin, panel_dividers_enabled: current.panel_dividers_enabled, ppm_din_attack_ms: normalized.ppm_din_attack_ms, ppm_din_decay_db_per_s: normalized.ppm_din_decay_db_per_s, ppm_din_fast_attack: normalized.ppm_din_fast_attack, ppm_ebu_attack_ms: normalized.ppm_ebu_attack_ms, ppm_ebu_decay_db_per_s: normalized.ppm_ebu_decay_db_per_s, lufs_i_window_min: normalized.lufs_i_window_min, lufs_i_norm_enabled: normalized.lufs_i_norm_enabled, ppm_din_loudness_boxes: current.ppm_din_loudness_boxes, ppm_din_loudness_offset_db: current.ppm_din_loudness_offset_db, xy_points: current.xy_points, gonio_display_gain_db: current.gonio_display_gain_db, record_output_format: current.record_output_format.clone(), record_mp3_bitrate_kbps: current.record_mp3_bitrate_kbps, record_target: current.record_target.clone(), record_auto_split_gap_sec: current.record_auto_split_gap_sec, record_auto_threshold_dbfs: current.record_auto_threshold_dbfs, clock_led_color: current.clock_led_color.clone(), header_text_color: current.header_text_color.clone(), rta_bar_base_color: current.rta_bar_base_color.clone(), peak_history_scroll_mode: current.peak_history_scroll_mode, peak_history_fill_enabled: current.peak_history_fill_enabled, peak_history_fill_invert: current.peak_history_fill_invert, peak_history_slot: current.peak_history_slot.clone(), phase_display_gain_db: current.phase_display_gain_db, phase_agc_enabled: current.phase_agc_enabled, phase_trail_enabled: current.phase_trail_enabled, phase_amplitude_mode: current.phase_amplitude_mode.clone(), classic_needles_slot: current.classic_needles_slot.clone(), waveform_color_left: current.waveform_color_left.clone(), waveform_color_right: current.waveform_color_right.clone(), waveform_color_diff: current.waveform_color_diff.clone(), vu_color_normal: current.vu_color_normal.clone(), vu_color_warn: current.vu_color_warn.clone(), ppm_din_color_normal: current.ppm_din_color_normal.clone(), ppm_din_color_warn: current.ppm_din_color_warn.clone(), ppm_ebu_color_normal: current.ppm_ebu_color_normal.clone(), ppm_ebu_color_warn: current.ppm_ebu_color_warn.clone(), tp_color_normal: current.tp_color_normal.clone(), tp_color_warn: current.tp_color_warn.clone(), rms_color_normal: current.rms_color_normal.clone(), rms_color_warn: current.rms_color_warn.clone(), lufs_color_i: current.lufs_color_i.clone(), lufs_color_m: current.lufs_color_m.clone(), lufs_color_s: current.lufs_color_s.clone(), lufs_scale_label_color: current.lufs_scale_label_color.clone(), screensaver_enabled: current.screensaver_enabled, screensaver_idle_min: current.screensaver_idle_min, screensaver_activity_db: current.screensaver_activity_db, screensaver_mode: current.screensaver_mode.clone(), screensaver_led_glow: current.screensaver_led_glow, screensaver_led_color: current.screensaver_led_color.clone(), }; if current != updated_global { *self.global_config.write().await = updated_global.clone(); let _ = persist_global_config(&self.config, &updated_global).await; self.global_config_rev.fetch_add(1, Ordering::SeqCst); } normalized } pub async fn global_config(&self) -> PhoenixGlobalConfig { self.global_config.read().await.clone() } pub fn global_config_revision(&self) -> u64 { self.global_config_rev.load(Ordering::SeqCst) } pub async fn global_config_envelope(&self) -> PhoenixGlobalConfigEnvelope { PhoenixGlobalConfigEnvelope { revision: self.global_config_revision(), config: self.global_config().await, } } pub async fn set_global_config( &self, payload: PhoenixGlobalConfig, ) -> anyhow::Result { let normalized = normalize_global_config(payload, &self.config); let current_global = self.global_config.read().await.clone(); if current_global == normalized { return Ok(PhoenixGlobalConfigEnvelope { revision: self.global_config_revision(), config: current_global, }); } let merged_rta = { let current = self.rta_config.read().await.clone(); apply_global_to_rta(current, &normalized) }; *self.global_config.write().await = normalized.clone(); *self.rta_config.write().await = merged_rta; persist_global_config(&self.config, &normalized).await?; let revision = self.global_config_rev.fetch_add(1, Ordering::SeqCst) + 1; Ok(PhoenixGlobalConfigEnvelope { revision, config: normalized, }) } pub fn spawn_audio_capture(&self) { spawn_audio_capture_worker(AudioWorkerDeps { config: self.config.clone(), input: self.current_input.clone(), rta_config: self.rta_config.clone(), global_config_rev: self.global_config_rev.clone(), native_wav_recorders: self.native_wav_recorders.clone(), seq: self.seq.clone(), metrics_tx: self.metrics_tx.clone(), restart_token: self.restart_token.clone(), }); } pub fn start_native_wav_recording(&self, session_id: u64) -> anyhow::Result<()> { if session_id == 0 { return Err(anyhow!("invalid recording session")); } let mut guard = self .native_wav_recorders .lock() .map_err(|_| anyhow!("native recorder lock poisoned"))?; guard.insert( session_id, NativeWavRecorder { sample_rate: self.config.sample_rate, channels: 2, pcm_bytes: Vec::new(), total_frames: 0, last_l: 0, last_r: 0, pending_discontinuity: false, }, ); Ok(()) } pub fn stop_native_wav_recording(&self, session_id: u64) -> anyhow::Result { let mut guard = self .native_wav_recorders .lock() .map_err(|_| anyhow!("native recorder lock poisoned"))?; let Some(capture) = guard.remove(&session_id) else { return Err(anyhow!("recording session not found")); }; let mut pcm_bytes = capture.pcm_bytes; apply_native_recording_edge_fades(&mut pcm_bytes, capture.channels); Ok(NativeWavCapture { sample_rate: capture.sample_rate, channels: capture.channels, pcm_bytes, }) } } fn normalize_rta_config(mut config: PhoenixRtaConfig) -> PhoenixRtaConfig { config.engine = match config.engine.trim().to_ascii_lowercase().as_str() { "fft" => "fft".to_string(), _ => "iir".to_string(), }; config.fft_size = match config.fft_size { 2048 | 4096 | 8192 | 16384 => config.fft_size, n if n < 3072 => 2048, n if n < 6144 => 4096, n if n < 12288 => 8192, _ => 16384, }; config.mono_input = !!config.mono_input; config.lr_fractional_delay_enabled = !!config.lr_fractional_delay_enabled; let lr_delay = if config.lr_fractional_delay_samples.is_finite() { config.lr_fractional_delay_samples } else { 0.05 }; config.lr_fractional_delay_samples = lr_delay.clamp(-1.5, 1.5); config.bpo = match config.bpo.trim().replace('/', "_").as_str() { "1_3" => "1_3".to_string(), "1_12" => "1_12".to_string(), _ => "1_6".to_string(), }; config.freq_range = match config.freq_range.trim().to_ascii_lowercase().as_str() { "lf" => "lf".to_string(), _ => "norm".to_string(), }; config.weighting = match config.weighting.trim().to_ascii_lowercase().as_str() { "a" => "a".to_string(), "c" => "c".to_string(), _ => "z".to_string(), }; config.layout = match config.layout.trim().to_ascii_lowercase().as_str() { "iec" => "iec".to_string(), _ => "rtw".to_string(), }; config.integration = match config.integration.trim().to_ascii_lowercase().as_str() { "impulse" => "impulse".to_string(), "slow" => "slow".to_string(), "peak" => "peak".to_string(), _ => "fast".to_string(), }; config.order = config.order.clamp(2, 8); let tau_fast = if config.tau_fast.is_finite() { config.tau_fast } else { 0.12 }; let tau_slow = if config.tau_slow.is_finite() { config.tau_slow } else { 1.0 }; config.tau_fast = tau_fast.clamp(0.01, 3.0); config.tau_slow = tau_slow.clamp(0.05, 10.0); if config.tau_slow < config.tau_fast { config.tau_slow = config.tau_fast; } let offset_l = if config.input_offset_db_l.is_finite() { config.input_offset_db_l } else { -5.0 }; let offset_r = if config.input_offset_db_r.is_finite() { config.input_offset_db_r } else { -5.0 }; config.input_offset_db_l = offset_l.clamp(-60.0, 20.0); config.input_offset_db_r = offset_r.clamp(-60.0, 20.0); let din_attack_ms = if config.ppm_din_attack_ms.is_finite() { config.ppm_din_attack_ms } else { 5.0 }; let din_decay = if config.ppm_din_decay_db_per_s.is_finite() { config.ppm_din_decay_db_per_s } else { 20.0 / 1.7 }; let ebu_attack_ms = if config.ppm_ebu_attack_ms.is_finite() { config.ppm_ebu_attack_ms } else { 10.0 }; let ebu_decay = if config.ppm_ebu_decay_db_per_s.is_finite() { config.ppm_ebu_decay_db_per_s } else { 24.0 / 2.8 }; config.ppm_din_attack_ms = din_attack_ms.clamp(0.1, 100.0); config.ppm_din_decay_db_per_s = din_decay.clamp(0.1, 120.0); config.ppm_din_fast_attack = !!config.ppm_din_fast_attack; config.ppm_ebu_attack_ms = ebu_attack_ms.clamp(0.1, 100.0); config.ppm_ebu_decay_db_per_s = ebu_decay.clamp(0.1, 120.0); config.lufs_i_window_min = config.lufs_i_window_min.clamp(1, 10); config.lufs_i_norm_enabled = !!config.lufs_i_norm_enabled; config } fn normalize_ui_color(input: String, fallback: &str) -> String { let trimmed = input.trim(); if trimmed.is_empty() { fallback.to_string() } else { trimmed.to_string() } } fn normalize_meter_slot(input: String, fallback: &str) -> String { match input.trim().to_ascii_lowercase().as_str() { "vu" => "vu".to_string(), "ppm-ebu" | "ppm_ebu" | "ppm" => "ppm-ebu".to_string(), "ppm-din" | "ppm_din" => "ppm-din".to_string(), "tp" => "tp".to_string(), "hifi-peak" | "hifi_peak" => "hifi-peak".to_string(), "rms" => "rms".to_string(), "lufs" => "lufs".to_string(), "stopwatch" => "stopwatch".to_string(), _ => fallback.to_string(), } } fn normalize_global_config(mut config: PhoenixGlobalConfig, runtime: &PhoenixConfig) -> PhoenixGlobalConfig { config.fft_size = match config.fft_size { 2048 | 4096 | 8192 | 16384 => config.fft_size, n if n < 3072 => 2048, n if n < 6144 => 4096, n if n < 12288 => 8192, _ => 16384, }; config.input_source = InputSource::Line; config.rta_bpo_mode = match config.rta_bpo_mode.trim().replace('/', "_").as_str() { "1_3" => "1_3".to_string(), "1_12" => "1_12".to_string(), _ => "1_6".to_string(), }; let offset_l = if config.input_offset_db_l.is_finite() { config.input_offset_db_l } else { -5.0 }; let offset_r = if config.input_offset_db_r.is_finite() { config.input_offset_db_r } else { -5.0 }; config.input_offset_db_l = offset_l.clamp(-10.0, 10.0); config.input_offset_db_r = offset_r.clamp(-10.0, 10.0); config.mono_input = !!config.mono_input; config.lr_fractional_delay_enabled = !!config.lr_fractional_delay_enabled; let delay = if config.lr_fractional_delay_samples.is_finite() { config.lr_fractional_delay_samples } else { runtime.lr_fractional_delay_samples }; config.lr_fractional_delay_samples = delay.clamp(-1.5, 1.5); config.al_markers_enabled = !!config.al_markers_enabled; let thin = if config.meter_bar_thin.is_finite() { config.meter_bar_thin } else { 0.55 }; config.meter_bar_thin = thin.clamp(0.35, 0.9); config.panel_dividers_enabled = !!config.panel_dividers_enabled; let din_attack_ms = if config.ppm_din_attack_ms.is_finite() { config.ppm_din_attack_ms } else { 5.0 }; let din_decay = if config.ppm_din_decay_db_per_s.is_finite() { config.ppm_din_decay_db_per_s } else { 20.0 / 1.7 }; let ebu_attack_ms = if config.ppm_ebu_attack_ms.is_finite() { config.ppm_ebu_attack_ms } else { 10.0 }; let ebu_decay = if config.ppm_ebu_decay_db_per_s.is_finite() { config.ppm_ebu_decay_db_per_s } else { 24.0 / 2.8 }; config.ppm_din_attack_ms = din_attack_ms.clamp(0.1, 100.0); config.ppm_din_decay_db_per_s = din_decay.clamp(0.1, 120.0); config.ppm_din_fast_attack = !!config.ppm_din_fast_attack; config.ppm_ebu_attack_ms = ebu_attack_ms.clamp(0.1, 100.0); config.ppm_ebu_decay_db_per_s = ebu_decay.clamp(0.1, 120.0); config.lufs_i_window_min = config.lufs_i_window_min.clamp(1, 10); config.lufs_i_norm_enabled = !!config.lufs_i_norm_enabled; config.ppm_din_loudness_boxes = !!config.ppm_din_loudness_boxes; let loudness_offset = if config.ppm_din_loudness_offset_db.is_finite() { config.ppm_din_loudness_offset_db } else { 0.0 }; config.ppm_din_loudness_offset_db = loudness_offset.clamp(-7.0, 7.0); config.xy_points = match config.xy_points { 128 | 256 | 512 | 1024 | 2048 => config.xy_points, n if n < 192 => 128, n if n < 384 => 256, n if n < 768 => 512, n if n < 1536 => 1024, _ => 2048, }; let gonio_gain = if config.gonio_display_gain_db.is_finite() { config.gonio_display_gain_db } else { -5.0 }; config.gonio_display_gain_db = gonio_gain.clamp(-35.0, 35.0); config.record_output_format = match config.record_output_format.trim().to_ascii_lowercase().as_str() { "mp3" => "mp3".to_string(), "webm" => "webm".to_string(), _ => "wav".to_string(), }; config.record_mp3_bitrate_kbps = match config.record_mp3_bitrate_kbps { 64 | 128 | 192 | 256 | 320 => config.record_mp3_bitrate_kbps, n if n < 96 => 64, n if n < 160 => 128, n if n < 224 => 192, n if n < 288 => 256, _ => 320, }; config.record_target = match config.record_target.trim().to_ascii_lowercase().as_str() { "volumio" => "volumio".to_string(), _ => "analyzer".to_string(), }; let auto_gap = if config.record_auto_split_gap_sec.is_finite() { config.record_auto_split_gap_sec } else { 1.5 }; config.record_auto_split_gap_sec = (auto_gap.clamp(0.5, 3.0) * 2.0).round() / 2.0; let auto_threshold = if config.record_auto_threshold_dbfs.is_finite() { config.record_auto_threshold_dbfs } else { -50.0 }; config.record_auto_threshold_dbfs = auto_threshold.clamp(-120.0, 20.0); config.clock_led_color = normalize_ui_color(config.clock_led_color, "#ff0000"); config.header_text_color = normalize_ui_color(config.header_text_color, "#ffe066"); config.rta_bar_base_color = normalize_ui_color(config.rta_bar_base_color, "#ffe066"); config.peak_history_scroll_mode = match config.peak_history_scroll_mode { x if !x.is_finite() => 1.0, x if (x - 0.5).abs() < f32::EPSILON => 0.5, x if (x - 1.0).abs() < f32::EPSILON => 1.0, x if (x - 2.0).abs() < f32::EPSILON => 2.0, x if (x - 4.0).abs() < f32::EPSILON => 4.0, x if (x - 6.0).abs() < f32::EPSILON => 6.0, x if x < 0.75 => 0.5, x if x < 1.5 => 1.0, x if x < 3.0 => 2.0, x if x < 5.0 => 4.0, _ => 6.0, }; config.peak_history_fill_enabled = !!config.peak_history_fill_enabled; config.peak_history_fill_invert = !!config.peak_history_fill_invert; config.peak_history_slot = normalize_meter_slot(config.peak_history_slot, "ppm-din"); let phase_gain = if config.phase_display_gain_db.is_finite() { config.phase_display_gain_db } else { 0.0 }; config.phase_display_gain_db = (phase_gain.clamp(-35.0, 35.0) / 5.0).round() * 5.0; config.phase_amplitude_mode = match config.phase_amplitude_mode.trim().to_ascii_lowercase().as_str() { "ppm-din" => "ppm-din".to_string(), _ => "bandpass".to_string(), }; config.phase_agc_enabled = if config.phase_amplitude_mode == "ppm-din" { false } else { !!config.phase_agc_enabled }; config.phase_trail_enabled = !!config.phase_trail_enabled; config.classic_needles_slot = normalize_meter_slot(config.classic_needles_slot, "vu"); config.waveform_color_left = normalize_ui_color(config.waveform_color_left, "#00e7ff"); config.waveform_color_right = normalize_ui_color(config.waveform_color_right, "#ff6b81"); config.waveform_color_diff = normalize_ui_color(config.waveform_color_diff, "#00e7ff"); config.vu_color_normal = normalize_ui_color(config.vu_color_normal, "#ffe066"); config.vu_color_warn = normalize_ui_color(config.vu_color_warn, "#ff3b3b"); config.ppm_din_color_normal = normalize_ui_color(config.ppm_din_color_normal, "#ffe066"); config.ppm_din_color_warn = normalize_ui_color(config.ppm_din_color_warn, "#ff3b3b"); config.ppm_ebu_color_normal = normalize_ui_color(config.ppm_ebu_color_normal, "#ffe066"); config.ppm_ebu_color_warn = normalize_ui_color(config.ppm_ebu_color_warn, "#ff3b3b"); config.tp_color_normal = normalize_ui_color(config.tp_color_normal, "#ffe066"); config.tp_color_warn = normalize_ui_color(config.tp_color_warn, "#ff3b3b"); config.rms_color_normal = normalize_ui_color(config.rms_color_normal, "#34d399"); config.rms_color_warn = normalize_ui_color(config.rms_color_warn, "#ff3b3b"); config.lufs_color_i = normalize_ui_color(config.lufs_color_i, "#34d399"); config.lufs_color_m = normalize_ui_color(config.lufs_color_m, "#ffe066"); config.lufs_color_s = normalize_ui_color(config.lufs_color_s, "#ff3b3b"); config.lufs_scale_label_color = normalize_ui_color(config.lufs_scale_label_color, "#8fd3d4"); config.screensaver_enabled = !!config.screensaver_enabled; let idle = if config.screensaver_idle_min.is_finite() { config.screensaver_idle_min } else { 5.0 }; config.screensaver_idle_min = idle.clamp(0.0, 120.0); let activity = if config.screensaver_activity_db.is_finite() { config.screensaver_activity_db } else { -50.0 }; config.screensaver_activity_db = activity.clamp(-120.0, 0.0); config.screensaver_mode = match config.screensaver_mode.trim().to_ascii_lowercase().as_str() { "starfield" => "starfield".to_string(), "black" => "black".to_string(), "dvd" => "dvd".to_string(), _ => "clock".to_string(), }; config.screensaver_led_glow = !!config.screensaver_led_glow; let color = config.screensaver_led_color.trim(); config.screensaver_led_color = if color.is_empty() { "#ff0000".to_string() } else { color.to_string() }; config } fn apply_global_to_rta(mut config: PhoenixRtaConfig, global: &PhoenixGlobalConfig) -> PhoenixRtaConfig { config.fft_size = global.fft_size; config.bpo = global.rta_bpo_mode.clone(); config.input_offset_db_l = global.input_offset_db_l; config.input_offset_db_r = global.input_offset_db_r; config.mono_input = global.mono_input; config.lr_fractional_delay_enabled = global.lr_fractional_delay_enabled; config.lr_fractional_delay_samples = global.lr_fractional_delay_samples; config.ppm_din_attack_ms = global.ppm_din_attack_ms; config.ppm_din_decay_db_per_s = global.ppm_din_decay_db_per_s; config.ppm_din_fast_attack = global.ppm_din_fast_attack; config.ppm_ebu_attack_ms = global.ppm_ebu_attack_ms; config.ppm_ebu_decay_db_per_s = global.ppm_ebu_decay_db_per_s; config.lufs_i_window_min = global.lufs_i_window_min; config.lufs_i_norm_enabled = global.lufs_i_norm_enabled; normalize_rta_config(config) } fn load_global_config(runtime: &PhoenixConfig) -> PhoenixGlobalConfig { let fallback = normalize_global_config(runtime.default_global_config(), runtime); let Ok(raw) = std::fs::read_to_string(&runtime.global_config_path) else { return fallback; }; let Ok(parsed) = serde_json::from_str::(&raw) else { return fallback; }; normalize_global_config(parsed, runtime) } async fn persist_global_config(runtime: &PhoenixConfig, config: &PhoenixGlobalConfig) -> anyhow::Result<()> { let path = runtime.global_config_path.clone(); if let Some(parent) = path.parent() { fs::create_dir_all(parent) .await .with_context(|| format!("failed to create Phoenix config dir {}", parent.display()))?; } let json = serde_json::to_vec_pretty(config)?; fs::write(&path, json) .await .with_context(|| format!("failed to write Phoenix config {}", path.display()))?; Ok(()) }