mirror of
https://github.com/euzu/tuliprox.git
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296 lines
12 KiB
Rust
296 lines
12 KiB
Rust
use crate::model::{Epg, TVGuide};
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use crate::model::{EpgConfig, EpgSmartMatchConfig};
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use crate::model::FetchedPlaylist;
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use crate::processing::parser::xmltv::normalize_channel_name;
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use log::{debug, trace, warn};
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use rphonetic::{DoubleMetaphone, Encoder};
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use std::collections::{HashMap, HashSet};
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use shared::model::{EpgChannel, EpgSmartMatchConfigDto, PlaylistItem, XtreamCluster};
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use std::sync::Arc;
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use shared::utils::Internable;
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pub struct EpgIdCache {
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pub channel_epg_id: HashSet<Arc<str>>,
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pub normalized: HashMap<Arc<str>, Option<Arc<str>>>,
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pub phonetics: HashMap<Arc<str>, HashSet<Arc<str>>>,
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pub processed: HashSet<Arc<str>>,
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pub smart_match_config: EpgSmartMatchConfig,
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pub metaphone: DoubleMetaphone,
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pub smart_match_enabled: bool, // smart match is enabled, normalizing names
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pub fuzzy_match_enabled: bool, // fuzzy matching enabled
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}
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impl EpgIdCache {
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/// Creates a new `EpgIdCache` with configuration for smart and fuzzy matching.
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///
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/// Initializes all internal caches and sets matching options based on the provided EPG configuration. If no configuration is given, defaults are used.
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///
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/// # Examples
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///
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/// ```
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/// let cache = EpgIdCache::new(None);
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/// assert!(cache.is_empty());
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/// ```
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pub fn new(epg_config: Option<&EpgConfig>) -> Self {
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let normalize_config: EpgSmartMatchConfig = epg_config
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.and_then(|cfg| cfg.smart_match.clone())
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.unwrap_or_else(|| EpgSmartMatchConfigDto::default().into());
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EpgIdCache {
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channel_epg_id: HashSet::new(), // contains the epg_ids collected from playlist channels
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normalized: HashMap::new(),
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phonetics: HashMap::new(),
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processed: HashSet::new(),
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metaphone: DoubleMetaphone::default(),
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smart_match_enabled: normalize_config.enabled,
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fuzzy_match_enabled: normalize_config.enabled && normalize_config.fuzzy_matching,
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smart_match_config: normalize_config,
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}
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}
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fn is_empty(&self) -> bool {
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self.channel_epg_id.is_empty() && self.normalized.is_empty()
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}
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/// Normalizes a channel name, computes its phonetic encoding, and stores both in the cache for later EPG matching.
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///
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/// The normalized name is mapped to the provided EPG ID (if any), and the phonetic encoding is added to the phonetics map.
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/// This facilitates efficient lookup and fuzzy matching of channel names during EPG assignment.
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///
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/// # Examples
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///
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/// ```
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/// let mut cache = EpgIdCache::new(None);
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/// cache.normalize_and_store("Discovery Channel", Some(&"discovery.epg".to_string()));
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/// assert!(cache.normalized.contains_key(&cache.normalize("Discovery Channel")));
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/// ```
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fn normalize_and_store(&mut self, name: &str, epg_id: Option<&Arc<str>>) {
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self.insert_normalized(name);
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if let Some(chan_epg_id) = epg_id {
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self.insert_normalized(chan_epg_id);
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}
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}
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fn insert_normalized(&mut self, key: &str) {
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let normalized = self.normalize(key).intern();
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let phonetic = self.phonetic(&normalized);
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self.normalized.insert(normalized.clone(), None);
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self.phonetics
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.entry(phonetic.clone())
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.or_default()
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.insert(normalized);
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}
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/// Returns the normalized form of a channel name using the configured smart match settings.
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///
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/// # Examples
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///
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/// ```
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/// let cache = EpgIdCache::new(None);
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/// let normalized = cache.normalize("HBO HD");
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/// assert!(!normalized.is_empty());
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/// ```
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fn normalize(&self, name: &str) -> String {
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normalize_channel_name(name, &self.smart_match_config)
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}
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pub(crate) fn phonetic(&self, name: &Arc<str>) -> Arc<str> {
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let result = self.metaphone.encode(name);
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if result.is_empty() {
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name.clone()
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} else {
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result.intern()
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}
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}
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pub fn collect_epg_id(&mut self, fp: &mut FetchedPlaylist) {
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let smart_match_enabled = self.smart_match_enabled;
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let fuzzy_matching = self.fuzzy_match_enabled;
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// Helper closure to process a single item
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// We use a closure here to capture `self` and avoid code duplication
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let mut process_item = |name: &str, epg_channel_id: Option<&Arc<str>>| {
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let mut missing_epg_id = true;
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// insert epg_id to known channel epg_ids
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if let Some(id) = epg_channel_id {
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if !id.is_empty() {
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missing_epg_id = false;
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self.channel_epg_id.insert(Arc::clone(id));
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}
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}
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// for fuzzy_matching we need to put the normalized name even if there is an epg_id, because the epg_id
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// could not match to the epg file. And then we try to guess it based on normalized name
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let needs_normalization = smart_match_enabled && (fuzzy_matching || missing_epg_id);
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if needs_normalization {
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self.normalize_and_store(name, epg_channel_id);
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}
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};
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for channel in fp.items() {
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if channel.header.xtream_cluster == XtreamCluster::Live && channel.header.item_type.is_live() {
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process_item(&channel.header.name, channel.header.epg_channel_id.as_ref());
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}
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}
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}
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pub fn match_with_normalized(&mut self, epg_id: &Arc<str>, normalized_epg_ids: &[Arc<str>]) -> bool {
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for key in normalized_epg_ids {
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if let Some(entry) = self.normalized.get_mut(key) {
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entry.replace(Arc::clone(epg_id));
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self.channel_epg_id.insert(Arc::clone(epg_id));
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return true;
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}
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}
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false
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}
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}
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/// Assigns EPG IDs and logos to live playlist channels by matching them with EPG data.
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///
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/// For each live channel in the playlist missing an EPG ID, attempts to assign one using normalized name matching if smart matching is enabled. If a channel has an EPG ID but lacks logos, assigns logos from the corresponding EPG icon tags. Adds the matched EPG data to the provided vector.
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///
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/// # Examples
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///
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/// ```
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/// let mut new_epg = Vec::new();
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/// let mut playlist = FetchedPlaylist::default();
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/// let mut id_cache = EpgIdCache::new(None);
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/// assign_channel_epg(&mut new_epg, &mut playlist, &mut id_cache);
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/// ```
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async fn assign_channel_epg(new_epg: &mut Vec<Epg>, fp: &mut FetchedPlaylist<'_>, id_cache: &mut EpgIdCache) {
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//id_cache.normalized.retain(|_, v| v.is_some());
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if let Some(tv_guide) = &fp.epg {
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let mut processed_epgs = vec![];
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if let Some(epg_sources) = tv_guide.filter(id_cache).await {
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let mut icon_assigned = HashSet::new();
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for epg_source in epg_sources {
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// icon tags
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let icon_tags: HashMap<&Arc<str>, &Arc<EpgChannel>> = epg_source.children.iter()
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.filter(|tag| tag.icon.as_ref().is_some_and(|i| !i.is_empty()))
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.map(|tag| (&tag.id, tag))
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.collect();
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let assign_values = |chan: &mut PlaylistItem| {
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if id_cache.smart_match_enabled {
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// id_cache.processed contains the epg_ids from the xml epg file.
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// if the channel has no epg_id or the epg_id is not present in xmltv/tvguide then we need to match one from existing tvguide
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let not_found_in_epg = match &chan.header.epg_channel_id {
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None => true,
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Some(epg_id) => !id_cache.processed.contains(&**epg_id),
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};
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if not_found_in_epg {
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let try_match = |key: &str| {
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let normalized = id_cache.normalize(key).intern();
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id_cache.normalized.get(&normalized).and_then(|epg_id| {
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epg_id.as_ref().map(|id| {
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trace!("Matched channel {} to epg {id:?}", chan.header.name);
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id.clone()
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})
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})
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};
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if let Some(new_id) = try_match(&chan.header.name)
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.or_else(|| chan.header.epg_channel_id.as_deref().and_then(try_match))
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{
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chan.header.epg_channel_id = Some(new_id);
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}
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}
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}
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if let Some(epg_channel_id) = chan.header.epg_channel_id.as_ref() {
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if !icon_assigned.contains(epg_channel_id) &&
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(epg_source.logo_override || chan.header.logo.is_empty() || chan.header.logo_small.is_empty()) {
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if let Some(icon_tag) = icon_tags.get(epg_channel_id) {
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if let Some(icon) = icon_tag.icon.as_ref() {
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icon_assigned.insert(epg_channel_id.clone());
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if epg_source.logo_override || chan.header.logo.is_empty() {
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trace!("Matched channel {} to epg icon {icon}", chan.header.name);
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chan.header.logo = Arc::clone(icon);
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}
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if epg_source.logo_override || chan.header.logo_small.is_empty() {
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chan.header.logo_small = Arc::clone(icon);
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}
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}
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}
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}
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}
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};
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let filter_live = |c: &&mut PlaylistItem| c.header.xtream_cluster == XtreamCluster::Live && c.header.item_type.is_live();
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if fp.is_memory() {
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fp.items_mut().filter(filter_live).for_each(assign_values);
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} else {
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warn!("Disk based playlist modification is not supported!");
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}
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processed_epgs.push(epg_source);
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}
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}
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if let Some(epg) = TVGuide::merge(processed_epgs) {
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new_epg.push(epg);
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}
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}
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}
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/// Processes a fetched playlist and assigns EPG data to its channels.
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///
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/// Collects EPG channel IDs from the playlist, initializes an EPG ID cache, and assigns EPG data to channels using normalization and smart matching if enabled. Logs a debug message if no EPG IDs are found and smart matching is disabled.
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///
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/// # Examples
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///
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/// ```
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/// let mut playlist = FetchedPlaylist::default();
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/// let mut epg_data = Vec::new();
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/// process_playlist_epg(&mut playlist, &mut epg_data);
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/// ```
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pub async fn process_playlist_epg(fp: &mut FetchedPlaylist<'_>, epg: &mut Vec<Epg>) {
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if fp.input.epg.is_none() {
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return;
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}
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// collect all epg_channel ids
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let mut id_cache = EpgIdCache::new(fp.input.epg.as_ref());
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id_cache.collect_epg_id(fp);
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if id_cache.is_empty() && !id_cache.smart_match_enabled {
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debug!("No epg ids found for input {}", &fp.input.name);
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} else {
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assign_channel_epg(epg, fp, &mut id_cache).await;
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}
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}
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#[cfg(test)]
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mod tests {
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use rand::distr::Alphanumeric;
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use rand::Rng;
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use rphonetic::{DoubleMetaphone, Encoder};
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use tokio::time::Instant;
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fn random_string() -> String {
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rand::rng()
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.sample_iter(&Alphanumeric)
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.take(30)
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.map(char::from)
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.collect()
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}
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#[test]
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fn test_phonetic() {
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let strings: Vec<String> = (0..5_000)
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.map(|_| random_string())
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.collect();
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let phonetic = DoubleMetaphone::new(Some(6));
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let now = Instant::now();
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for value in &strings {
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let _ = phonetic.encode(value);
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}
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let elapsed = now.elapsed();
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println!("Elapsed time: {}.{:03} secs", elapsed.as_secs(), elapsed.subsec_millis());
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}
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} |