=============== pmodidl/Cargo.toml ============
[package]
name = "pmodidl"
version = "0.1.0"
edition = "2024"

[dependencies]
serde = "1.0.228"
utoipa = { version = "5.4.0", features = ["axum_extras"] }
utoipa-swagger-ui = { version = "9.0.2", features = ["axum"] }
quick-xml = { version = "0.38.3", features = ["serialize"] }
bevy_reflect = "0.17.1"
bevy_reflect_derive = "0.17.1"
pmoutils = { path = "../pmoutils" }
xmltree = "0.10"
========= End of pmodidl/Cargo.toml ===========

=============== pmodidl/examples/test_serialization.rs ============
use pmodidl::{DIDLLite, Item, Resource};

fn main() {
    let item1 = Item {
        id: "test1".to_string(),
        parent_id: "root".to_string(),
        restricted: Some("1".to_string()),
        title: "Test Song".to_string(),
        creator: Some("Test Artist".to_string()),
        class: "object.item.audioItem.musicTrack".to_string(),
        artist: Some("Test Artist".to_string()),
        album: None, // Pas d'album
        genre: None,
        album_art: None, // Pas d'albumArtURI
        album_art_pk: None,
        date: None,
        original_track_number: None,
        resources: vec![Resource {
            protocol_info: "http-get:*:audio/flac:*".to_string(),
            bits_per_sample: Some("16".to_string()),
            sample_frequency: Some("44100".to_string()),
            nr_audio_channels: Some("2".to_string()),
            duration: Some("0:03:00".to_string()),
            url: "http://example.com/test.flac".to_string(),
        }],
        descriptions: vec![],
    };

    let didl = DIDLLite {
        xmlns: "urn:schemas-upnp-org:metadata-1-0/DIDL-Lite/".to_string(),
        xmlns_upnp: Some("urn:schemas-upnp-org:metadata-1-0/upnp/".to_string()),
        xmlns_dc: Some("http://purl.org/dc/elements/1.1/".to_string()),
        xmlns_dlna: Some("urn:schemas-dlna-org:metadata-1-0/".to_string()),
        xmlns_pv: None,
        xmlns_sec: None,
        containers: vec![],
        items: vec![item1],
    };

    let xml = quick_xml::se::to_string(&didl).expect("Serialization failed");

    println!("=== Output from quick_xml::se::to_string() ===");
    println!("{}", xml);
    println!("\n=== Length: {} bytes ===", xml.len());
    println!(
        "\n=== Starts with '<?xml' ? {} ===",
        xml.starts_with("<?xml")
    );
    println!("\n=== With manual XML declaration ===");
    let with_decl = format!("<?xml version=\"1.0\" encoding=\"UTF-8\"?>{}", xml);
    println!("{}", with_decl);
}
========= End of pmodidl/examples/test_serialization.rs ===========

=============== pmodidl/src/lib.rs ============
//! # pmodidl - DIDL-Lite Parser
//!
//! Parser et utilitaires pour le format DIDL-Lite utilisé dans UPnP/DLNA.

use bevy_reflect::Reflect;
use pmoutils::ToXmlElement;
use serde::{Deserialize, Serialize};
use std::borrow::Cow;
use std::collections::HashSet;
use std::fmt::Write;
use std::io::Cursor;
use xmltree::{Element, XMLNode};

// ============= Couche d'abstraction générique =============

/// Trait pour tout parser de métadonnées média
pub trait MediaMetadataParser: Sized {
    type Error: std::error::Error + Send + Sync + 'static;

    /// Parse une chaîne de métadonnées
    fn parse(input: &str) -> Result<Self, Self::Error>;

    /// Retourne le format du parser
    fn format_name() -> &'static str;
}

/// Enveloppe générique pour tout type de métadonnées parsées
#[derive(Debug, Clone, Serialize, Deserialize, Reflect)]
pub struct ParsedMetadata<T> {
    /// Format du document (ex: "DIDL-Lite", "RSS", etc.)
    pub format: String,

    /// Données parsées
    pub data: T,

    /// Timestamp du parsing (exclu de la réflexion car SystemTime n'implémente pas Reflect)
    #[reflect(ignore)]
    #[serde(skip_serializing_if = "Option::is_none")]
    pub parsed_at: Option<std::time::SystemTime>,
}

impl<T> ParsedMetadata<T> {
    pub fn new(format: impl Into<String>, data: T) -> Self {
        Self {
            format: format.into(),
            data,
            parsed_at: Some(std::time::SystemTime::now()),
        }
    }

    /// Transforme les données avec une fonction
    pub fn map<U, F>(self, f: F) -> ParsedMetadata<U>
    where
        F: FnOnce(T) -> U,
    {
        ParsedMetadata {
            format: self.format,
            data: f(self.data),
            parsed_at: self.parsed_at,
        }
    }
}

/// Fonction helper pour parser et envelopper automatiquement
pub fn parse_metadata<P: MediaMetadataParser>(input: &str) -> Result<ParsedMetadata<P>, P::Error> {
    let data = P::parse(input)?;
    Ok(ParsedMetadata::new(P::format_name(), data))
}

// ============= Implémentation pour DIDLLite =============

impl MediaMetadataParser for DIDLLite {
    type Error = quick_xml::de::DeError;

    fn parse(input: &str) -> Result<Self, Self::Error> {
        let sanitized = sanitize_singleton_elements(input);
        quick_xml::de::from_str(sanitized.as_ref())
    }

    fn format_name() -> &'static str {
        "DIDL-Lite"
    }
}

/// Type alias pour faciliter l'utilisation
pub type DidlMetadata = ParsedMetadata<DIDLLite>;

// ============= Structures DIDL-Lite =============

/// Racine d'un document DIDL-Lite
#[derive(Debug, Clone, Serialize, Deserialize, utoipa::ToSchema, Reflect)]
#[serde(rename = "DIDL-Lite")]
pub struct DIDLLite {
    #[serde(rename = "@xmlns")]
    pub xmlns: String,

    #[serde(rename = "@xmlns:upnp", skip_serializing_if = "Option::is_none")]
    pub xmlns_upnp: Option<String>,

    #[serde(rename = "@xmlns:dc", skip_serializing_if = "Option::is_none")]
    pub xmlns_dc: Option<String>,

    #[serde(rename = "@xmlns:dlna", skip_serializing_if = "Option::is_none")]
    pub xmlns_dlna: Option<String>,

    #[serde(rename = "@xmlns:sec", skip_serializing_if = "Option::is_none")]
    pub xmlns_sec: Option<String>,

    #[serde(rename = "@xmlns:pv", skip_serializing_if = "Option::is_none")]
    pub xmlns_pv: Option<String>,

    #[serde(rename = "container", default)]
    pub containers: Vec<Container>,

    #[serde(rename = "item", default)]
    pub items: Vec<Item>,
}

/// Container pouvant contenir d'autres containers ou items
#[derive(Debug, Clone, Serialize, Deserialize, utoipa::ToSchema, Reflect)]
pub struct Container {
    #[serde(rename = "@id")]
    pub id: String,

    #[serde(rename = "@parentID", default)]
    pub parent_id: String,

    #[serde(rename = "@restricted", skip_serializing_if = "Option::is_none")]
    pub restricted: Option<String>,

    #[serde(rename = "@childCount", skip_serializing_if = "Option::is_none")]
    pub child_count: Option<String>,

    #[serde(rename = "@searchable", skip_serializing_if = "Option::is_none")]
    pub searchable: Option<String>,

    #[serde(rename = "dc:title", alias = "title")]
    pub title: String,

    #[serde(rename = "upnp:class", alias = "class", default)]
    pub class: String,

    #[serde(rename = "container", default)]
    pub containers: Vec<Container>,

    #[serde(rename = "item", default)]
    pub items: Vec<Item>,
}

/// Item représentant un objet audio
#[derive(Debug, Clone, Serialize, Deserialize, utoipa::ToSchema, Reflect)]
pub struct Item {
    #[serde(rename = "@id")]
    pub id: String,

    #[serde(rename = "@parentID", default)]
    pub parent_id: String,

    #[serde(rename = "@restricted", skip_serializing_if = "Option::is_none")]
    pub restricted: Option<String>,

    #[serde(rename = "dc:title", alias = "title")]
    pub title: String,

    #[serde(
        rename = "dc:creator",
        alias = "creator",
        skip_serializing_if = "Option::is_none"
    )]
    pub creator: Option<String>,

    #[serde(rename = "upnp:class", alias = "class", default)]
    pub class: String,

    #[serde(
        rename = "upnp:artist",
        alias = "artist",
        skip_serializing_if = "Option::is_none"
    )]
    pub artist: Option<String>,

    #[serde(
        rename = "upnp:album",
        alias = "album",
        skip_serializing_if = "Option::is_none"
    )]
    pub album: Option<String>,

    #[serde(
        rename = "upnp:genre",
        alias = "genre",
        skip_serializing_if = "Option::is_none"
    )]
    pub genre: Option<String>,

    #[serde(
        rename = "upnp:albumArtURI",
        alias = "albumArtURI",
        skip_serializing_if = "Option::is_none"
    )]
    pub album_art: Option<String>,

    #[serde(skip)]
    pub album_art_pk: Option<String>,

    #[serde(
        rename = "dc:date",
        alias = "date",
        skip_serializing_if = "Option::is_none"
    )]
    pub date: Option<String>,

    #[serde(
        rename = "upnp:originalTrackNumber",
        alias = "originalTrackNumber",
        skip_serializing_if = "Option::is_none"
    )]
    pub original_track_number: Option<String>,

    #[serde(rename = "res", default)]
    pub resources: Vec<Resource>,

    #[serde(rename = "desc", default)]
    pub descriptions: Vec<Description>,
}

/// Ressource média (fichier audio)
#[derive(Debug, Clone, Serialize, Deserialize, utoipa::ToSchema, Reflect)]
pub struct Resource {
    #[serde(rename = "@protocolInfo", default)]
    pub protocol_info: String,

    #[serde(rename = "@bitsPerSample", skip_serializing_if = "Option::is_none")]
    pub bits_per_sample: Option<String>,

    #[serde(rename = "@sampleFrequency", skip_serializing_if = "Option::is_none")]
    pub sample_frequency: Option<String>,

    #[serde(rename = "@nrAudioChannels", skip_serializing_if = "Option::is_none")]
    pub nr_audio_channels: Option<String>,

    #[serde(rename = "@duration", skip_serializing_if = "Option::is_none")]
    pub duration: Option<String>,

    #[serde(rename = "$text", default)]
    pub url: String,
}

/// Description avec métadonnées additionnelles (replaygain, etc.)
#[derive(Debug, Clone, Serialize, Deserialize, utoipa::ToSchema, Reflect)]
pub struct Description {
    #[serde(rename = "@id", skip_serializing_if = "Option::is_none")]
    pub id: Option<String>,

    #[serde(rename = "@nameSpace", skip_serializing_if = "Option::is_none")]
    pub namespace: Option<String>,

    #[serde(rename = "track_gain", skip_serializing_if = "Option::is_none")]
    pub track_gain: Option<String>,

    #[serde(rename = "track_peak", skip_serializing_if = "Option::is_none")]
    pub track_peak: Option<String>,
}

// ============= Implémentation des méthodes =============

impl Default for DIDLLite {
    fn default() -> Self {
        Self {
            xmlns: "urn:schemas-upnp-org:metadata-1-0/DIDL-Lite/".to_string(),
            xmlns_upnp: Some("urn:schemas-upnp-org:metadata-1-0/upnp/".to_string()),
            xmlns_dc: Some("http://purl.org/dc/elements/1.1/".to_string()),
            xmlns_dlna: None,
            xmlns_sec: None,
            xmlns_pv: None,
            containers: Vec::new(),
            items: Vec::new(),
        }
    }
}

impl DIDLLite {
    /// Applique les namespaces sur un élément xmltree.
    fn set_namespaces(&self, elem: &mut Element) {
        elem.attributes.insert("xmlns".into(), self.xmlns.clone());
        if let Some(ref upnp) = self.xmlns_upnp {
            elem.attributes.insert("xmlns:upnp".into(), upnp.clone());
        }
        if let Some(ref dc) = self.xmlns_dc {
            elem.attributes.insert("xmlns:dc".into(), dc.clone());
        }
        if let Some(ref dlna) = self.xmlns_dlna {
            elem.attributes.insert("xmlns:dlna".into(), dlna.clone());
        }
        if let Some(ref sec) = self.xmlns_sec {
            elem.attributes.insert("xmlns:sec".into(), sec.clone());
        }
        if let Some(ref pv) = self.xmlns_pv {
            elem.attributes.insert("xmlns:pv".into(), pv.clone());
        }
    }

    /// Itère sur tous les containers de manière récursive
    pub fn all_containers(&self) -> impl Iterator<Item = &Container> {
        AllContainersIter::new(&self.containers)
    }

    /// Itère sur tous les items de manière récursive
    pub fn all_items(&self) -> impl Iterator<Item = &Item> {
        AllItemsIter::new(&self.containers, &self.items)
    }

    /// Trouve un container par ID
    pub fn get_container_by_id(&self, id: &str) -> Option<&Container> {
        self.all_containers().find(|c| c.id == id)
    }

    /// Trouve un item par ID
    pub fn get_item_by_id(&self, id: &str) -> Option<&Item> {
        self.all_items().find(|i| i.id == id)
    }

    /// Filtre les containers
    pub fn filter_containers<F>(&self, predicate: F) -> impl Iterator<Item = &Container>
    where
        F: Fn(&Container) -> bool,
    {
        self.all_containers().filter(move |c| predicate(c))
    }

    /// Filtre les items
    pub fn filter_items<F>(&self, predicate: F) -> impl Iterator<Item = &Item>
    where
        F: Fn(&Item) -> bool,
    {
        self.all_items().filter(move |i| predicate(i))
    }

    /// Génère une représentation Markdown
    pub fn to_markdown(&self) -> String {
        let mut buf = String::new();
        buf.push_str("### DIDL-Lite Document\n\n");

        if !self.containers.is_empty() {
            buf.push_str("#### Containers\n\n");
            for container in &self.containers {
                container.write_markdown(&mut buf, 0);
            }
        }

        if !self.items.is_empty() {
            buf.push_str("#### Items\n\n");
            for item in &self.items {
                item.write_markdown(&mut buf, 0);
            }
        }

        buf
    }
}

impl Container {
    /// Itère sur tous les containers enfants récursivement
    pub fn all_containers(&self) -> impl Iterator<Item = &Container> {
        AllContainersIter::new(&self.containers)
    }

    /// Itère sur tous les items de ce container et ses enfants
    pub fn all_items(&self) -> impl Iterator<Item = &Item> {
        AllItemsIter::new(&self.containers, &self.items)
    }

    fn write_markdown(&self, buf: &mut String, depth: usize) {
        let indent = "  ".repeat(depth);

        writeln!(buf, "{}- **Container**: {}", indent, self.title).unwrap();
        writeln!(buf, "{}  - ID: `{}`", indent, self.id).unwrap();
        writeln!(buf, "{}  - ParentID: `{}`", indent, self.parent_id).unwrap();
        writeln!(buf, "{}  - Class: `{}`", indent, self.class).unwrap();

        if let Some(ref restricted) = self.restricted {
            writeln!(buf, "{}  - Restricted: `{}`", indent, restricted).unwrap();
        }
        if let Some(ref count) = self.child_count {
            writeln!(buf, "{}  - ChildCount: `{}`", indent, count).unwrap();
        }

        if !self.containers.is_empty() {
            writeln!(buf, "{}  - Subcontainers:", indent).unwrap();
            for sub in &self.containers {
                sub.write_markdown(buf, depth + 2);
            }
        }

        if !self.items.is_empty() {
            writeln!(buf, "{}  - Items:", indent).unwrap();
            for item in &self.items {
                item.write_markdown(buf, depth + 2);
            }
        }

        buf.push('\n');
    }
}

impl Item {
    /// Formate la date pour satisfaire les clients stricts (YYYY-MM-DD). Si seule
    /// l'année est fournie, on complète avec "-01-01".
    fn normalized_date(&self) -> Option<String> {
        self.date.as_ref().map(|d| {
            let trimmed = d.trim();
            if trimmed.len() == 4 && trimmed.chars().all(|c| c.is_ascii_digit()) {
                format!("{}-01-01", trimmed)
            } else {
                trimmed.to_string()
            }
        })
    }

    /// Itère sur les ressources audio uniquement
    pub fn audio_resources(&self) -> impl Iterator<Item = &Resource> {
        self.resources
            .iter()
            .filter(|r| r.protocol_info.contains("audio/"))
    }

    /// Retourne la ressource principale (première disponible)
    pub fn primary_resource(&self) -> Option<&Resource> {
        self.resources.first()
    }

    /// Itère sur les métadonnées sous forme de paires clé-valeur
    pub fn metadata(&self) -> impl Iterator<Item = (&str, &str)> {
        let mut pairs = Vec::new();

        pairs.push(("title", self.title.as_str()));

        if let Some(ref artist) = self.artist {
            pairs.push(("artist", artist.as_str()));
        }
        if let Some(ref album) = self.album {
            pairs.push(("album", album.as_str()));
        }
        if let Some(ref genre) = self.genre {
            pairs.push(("genre", genre.as_str()));
        }
        if let Some(ref date) = self.date {
            pairs.push(("date", date.as_str()));
        }
        if let Some(ref track) = self.original_track_number {
            pairs.push(("trackNumber", track.as_str()));
        }

        for desc in &self.descriptions {
            if let Some(ref gain) = desc.track_gain {
                pairs.push(("replayGain", gain.as_str()));
            }
            if let Some(ref peak) = desc.track_peak {
                pairs.push(("replayPeak", peak.as_str()));
            }
        }

        pairs.into_iter()
    }

    fn write_markdown(&self, buf: &mut String, depth: usize) {
        let indent = "  ".repeat(depth);

        writeln!(buf, "{}- **Item**: {}", indent, self.title).unwrap();
        writeln!(buf, "{}  - ID: `{}`", indent, self.id).unwrap();
        writeln!(buf, "{}  - ParentID: `{}`", indent, self.parent_id).unwrap();
        writeln!(buf, "{}  - Class: `{}`", indent, self.class).unwrap();

        if let Some(ref creator) = self.creator {
            writeln!(buf, "{}  - Creator: {}", indent, creator).unwrap();
        }
        if let Some(ref artist) = self.artist {
            writeln!(buf, "{}  - Artist: {}", indent, artist).unwrap();
        }
        if let Some(ref album) = self.album {
            writeln!(buf, "{}  - Album: {}", indent, album).unwrap();
        }
        if let Some(ref genre) = self.genre {
            writeln!(buf, "{}  - Genre: {}", indent, genre).unwrap();
        }
        if let Some(ref art) = self.album_art {
            writeln!(buf, "{}  - Album Art: ![Cover]({})", indent, art).unwrap();
        }
        if let Some(ref date) = self.date {
            writeln!(buf, "{}  - Date: {}", indent, date).unwrap();
        }
        if let Some(ref track) = self.original_track_number {
            writeln!(buf, "{}  - Track: {}", indent, track).unwrap();
        }

        if !self.resources.is_empty() {
            writeln!(buf, "{}  - Resources:", indent).unwrap();
            for res in &self.resources {
                writeln!(buf, "{}    - URL: {}", indent, res.url).unwrap();
                writeln!(buf, "{}      - Protocol: `{}`", indent, res.protocol_info).unwrap();
                if let Some(ref dur) = res.duration {
                    writeln!(buf, "{}      - Duration: `{}`", indent, dur).unwrap();
                }
                if let Some(ref bits) = res.bits_per_sample {
                    writeln!(buf, "{}      - BitsPerSample: `{}`", indent, bits).unwrap();
                }
                if let Some(ref freq) = res.sample_frequency {
                    writeln!(buf, "{}      - SampleFrequency: `{}`", indent, freq).unwrap();
                }
                if let Some(ref channels) = res.nr_audio_channels {
                    writeln!(buf, "{}      - Channels: `{}`", indent, channels).unwrap();
                }
            }
        }

        if !self.descriptions.is_empty() {
            writeln!(buf, "{}  - Descriptions:", indent).unwrap();
            for desc in &self.descriptions {
                if let Some(ref ns) = desc.namespace {
                    writeln!(buf, "{}    - Namespace: `{}`", indent, ns).unwrap();
                }
                if let Some(ref gain) = desc.track_gain {
                    writeln!(buf, "{}      - Track Gain: `{}`", indent, gain).unwrap();
                }
                if let Some(ref peak) = desc.track_peak {
                    writeln!(buf, "{}      - Track Peak: `{}`", indent, peak).unwrap();
                }
            }
        }

        buf.push('\n');
    }
}

// ============= Implémentation ToXmlElement =============

fn text_element(name: &str, value: &str) -> Element {
    let mut e = Element::new(name);
    e.children.push(XMLNode::Text(value.to_string()));
    e
}

const SINGLETON_ELEMENTS: &[&str] = &[
    "dc:title",
    "title",
    "dc:creator",
    "creator",
    "upnp:class",
    "class",
    "upnp:artist",
    "artist",
    "upnp:album",
    "album",
    "upnp:genre",
    "genre",
    "upnp:albumArtURI",
    "albumArtURI",
    "dc:date",
    "date",
    "upnp:originalTrackNumber",
    "originalTrackNumber",
];

fn sanitize_singleton_elements(input: &str) -> Cow<'_, str> {
    if !SINGLETON_ELEMENTS.iter().any(|tag| input.contains(tag)) {
        return Cow::Borrowed(input);
    }

    let mut cursor = Cursor::new(input.as_bytes());
    let mut root = match Element::parse(&mut cursor) {
        Ok(elem) => elem,
        Err(_) => return Cow::Borrowed(input),
    };

    if !dedup_singleton_children(&mut root) {
        return Cow::Borrowed(input);
    }

    let mut buf = Vec::new();
    if root.write(&mut buf).is_err() {
        return Cow::Borrowed(input);
    }

    String::from_utf8(buf)
        .map(Cow::Owned)
        .unwrap_or_else(|_| Cow::Borrowed(input))
}

fn dedup_singleton_children(element: &mut Element) -> bool {
    let mut changed = false;
    let mut seen: HashSet<String> = HashSet::new();
    let mut idx = 0;

    while idx < element.children.len() {
        let mut remove_current = false;
        if let XMLNode::Element(child_elem) = &mut element.children[idx] {
            if SINGLETON_ELEMENTS.contains(&child_elem.name.as_str())
                && !seen.insert(child_elem.name.clone())
            {
                remove_current = true;
                changed = true;
            } else if dedup_singleton_children(child_elem) {
                changed = true;
            }
        }

        if remove_current {
            element.children.remove(idx);
        } else {
            idx += 1;
        }
    }

    changed
}

impl ToXmlElement for DIDLLite {
    fn to_xml_element(&self) -> Element {
        let mut root = Element::new("DIDL-Lite");
        self.set_namespaces(&mut root);
        for c in &self.containers {
            root.children.push(XMLNode::Element(c.to_xml_element()));
        }
        for i in &self.items {
            root.children.push(XMLNode::Element(i.to_xml_element()));
        }
        root
    }
}

impl ToXmlElement for Container {
    fn to_xml_element(&self) -> Element {
        let mut elem = Element::new("container");
        elem.attributes.insert("id".into(), self.id.clone());
        elem.attributes
            .insert("parentID".into(), self.parent_id.clone());
        if let Some(ref r) = self.restricted {
            elem.attributes.insert("restricted".into(), r.clone());
        }
        if let Some(ref cc) = self.child_count {
            elem.attributes.insert("childCount".into(), cc.clone());
        }
        if let Some(ref searchable) = self.searchable {
            elem.attributes
                .insert("searchable".into(), searchable.clone());
        }

        elem.children
            .push(XMLNode::Element(text_element("dc:title", &self.title)));
        elem.children
            .push(XMLNode::Element(text_element("upnp:class", &self.class)));

        for c in &self.containers {
            elem.children.push(XMLNode::Element(c.to_xml_element()));
        }
        for i in &self.items {
            elem.children.push(XMLNode::Element(i.to_xml_element()));
        }

        elem
    }
}

impl ToXmlElement for Item {
    fn to_xml_element(&self) -> Element {
        let mut elem = Element::new("item");
        elem.attributes.insert("id".into(), self.id.clone());
        elem.attributes
            .insert("parentID".into(), self.parent_id.clone());
        if let Some(ref r) = self.restricted {
            elem.attributes.insert("restricted".into(), r.clone());
        }

        elem.children
            .push(XMLNode::Element(text_element("dc:title", &self.title)));

        if let Some(ref c) = self.creator {
            elem.children
                .push(XMLNode::Element(text_element("dc:creator", c)));
        }

        elem.children
            .push(XMLNode::Element(text_element("upnp:class", &self.class)));

        if let Some(ref artist) = self.artist {
            elem.children
                .push(XMLNode::Element(text_element("upnp:artist", artist)));
        }
        if let Some(ref album) = self.album {
            elem.children
                .push(XMLNode::Element(text_element("upnp:album", album)));
        }
        if let Some(ref genre) = self.genre {
            elem.children
                .push(XMLNode::Element(text_element("upnp:genre", genre)));
        }
        if let Some(ref art) = self.album_art {
            elem.children
                .push(XMLNode::Element(text_element("upnp:albumArtURI", art)));
        }
        if let Some(date) = self.normalized_date() {
            elem.children
                .push(XMLNode::Element(text_element("dc:date", &date)));
        }
        if let Some(ref track) = self.original_track_number {
            elem.children.push(XMLNode::Element(text_element(
                "upnp:originalTrackNumber",
                track,
            )));
        }

        for res in &self.resources {
            elem.children.push(XMLNode::Element(res.to_xml_element()));
        }
        for desc in &self.descriptions {
            elem.children.push(XMLNode::Element(desc.to_xml_element()));
        }

        elem
    }
}

impl ToXmlElement for Resource {
    fn to_xml_element(&self) -> Element {
        let mut elem = Element::new("res");
        elem.attributes
            .insert("protocolInfo".into(), self.protocol_info.clone());
        if let Some(ref bps) = self.bits_per_sample {
            elem.attributes.insert("bitsPerSample".into(), bps.clone());
        }
        if let Some(ref freq) = self.sample_frequency {
            elem.attributes
                .insert("sampleFrequency".into(), freq.clone());
        }
        if let Some(ref ch) = self.nr_audio_channels {
            elem.attributes.insert("nrAudioChannels".into(), ch.clone());
        }
        if let Some(ref dur) = self.duration {
            elem.attributes.insert("duration".into(), dur.clone());
        }
        elem.children.push(XMLNode::Text(self.url.clone()));
        elem
    }
}

impl ToXmlElement for Description {
    fn to_xml_element(&self) -> Element {
        let mut elem = Element::new("desc");
        if let Some(ref id) = self.id {
            elem.attributes.insert("id".into(), id.clone());
        }
        if let Some(ref ns) = self.namespace {
            elem.attributes.insert("nameSpace".into(), ns.clone());
        }
        if let Some(ref gain) = self.track_gain {
            elem.children
                .push(XMLNode::Element(text_element("track_gain", gain)));
        }
        if let Some(ref peak) = self.track_peak {
            elem.children
                .push(XMLNode::Element(text_element("track_peak", peak)));
        }
        elem
    }
}

// ============= Itérateurs personnalisés =============

struct AllContainersIter<'a> {
    stack: Vec<&'a Container>,
}

impl<'a> AllContainersIter<'a> {
    fn new(containers: &'a [Container]) -> Self {
        Self {
            stack: containers.iter().collect(),
        }
    }
}

impl<'a> Iterator for AllContainersIter<'a> {
    type Item = &'a Container;

    fn next(&mut self) -> Option<Self::Item> {
        self.stack.pop().map(|container| {
            // Ajouter les enfants à la pile
            self.stack.extend(container.containers.iter());
            container
        })
    }
}

struct AllItemsIter<'a> {
    containers: Vec<&'a Container>,
    current_items: std::slice::Iter<'a, Item>,
}

impl<'a> AllItemsIter<'a> {
    fn new(containers: &'a [Container], items: &'a [Item]) -> Self {
        Self {
            containers: containers.iter().collect(),
            current_items: items.iter(),
        }
    }
}

impl<'a> Iterator for AllItemsIter<'a> {
    type Item = &'a Item;

    fn next(&mut self) -> Option<Self::Item> {
        loop {
            if let Some(item) = self.current_items.next() {
                return Some(item);
            }

            let container = self.containers.pop()?;
            self.containers.extend(container.containers.iter());
            self.current_items = container.items.iter();
        }
    }
}

#[cfg(test)]
mod tests {
    use super::*;

    #[test]
    fn test_parse_simple_didl() {
        let xml = r#"
        <DIDL-Lite xmlns="urn:schemas-upnp-org:metadata-1-0/DIDL-Lite/"
                   xmlns:dc="http://purl.org/dc/elements/1.1/"
                   xmlns:upnp="urn:schemas-upnp-org:metadata-1-0/upnp/">
            <item id="1" parentID="0">
                <dc:title>Test Song</dc:title>
                <upnp:class>object.item.audioItem.musicTrack</upnp:class>
                <res protocolInfo="http-get:*:audio/mpeg:*">http://example.com/song.mp3</res>
            </item>
        </DIDL-Lite>
        "#;

        let didl = DIDLLite::parse(xml).unwrap();
        assert_eq!(didl.items.len(), 1);
        assert_eq!(didl.items[0].title, "Test Song");
    }

    #[test]
    fn test_parse_without_namespaces() {
        // Teste un XML sans namespaces explicites (devices UPnP laxistes)
        let xml = r#"
        <DIDL-Lite xmlns="urn:schemas-upnp-org:metadata-1-0/DIDL-Lite/">
            <item id="1" parentID="0">
                <title>Test Song</title>
                <class>object.item.audioItem.musicTrack</class>
                <res protocolInfo="http-get:*:audio/mpeg:*">http://example.com/song.mp3</res>
            </item>
        </DIDL-Lite>
        "#;

        let didl = DIDLLite::parse(xml).unwrap();
        assert_eq!(didl.items.len(), 1);
        assert_eq!(didl.items[0].title, "Test Song");
    }

    #[test]
    fn test_generic_parser() {
        let xml = r#"
        <DIDL-Lite xmlns="urn:schemas-upnp-org:metadata-1-0/DIDL-Lite/"
                   xmlns:dc="http://purl.org/dc/elements/1.1/"
                   xmlns:upnp="urn:schemas-upnp-org:metadata-1-0/upnp/">
        </DIDL-Lite>
        "#;

        // Utiliser le parser générique
        let metadata: DidlMetadata = parse_metadata(xml).unwrap();

        assert_eq!(metadata.format, "DIDL-Lite");
        assert!(metadata.parsed_at.is_some());
    }

    #[test]
    fn test_metadata_map() {
        let xml = r#"
        <DIDL-Lite xmlns="urn:schemas-upnp-org:metadata-1-0/DIDL-Lite/"
                   xmlns:dc="http://purl.org/dc/elements/1.1/"
                   xmlns:upnp="urn:schemas-upnp-org:metadata-1-0/upnp/">
        </DIDL-Lite>
        "#;

        let metadata: DidlMetadata = parse_metadata(xml).unwrap();

        // Transformer les données
        let item_count = metadata.map(|didl| didl.items.len());

        assert_eq!(item_count.format, "DIDL-Lite");
        assert_eq!(item_count.data, 0);
    }
}
========= End of pmodidl/src/lib.rs ===========

