use crate::cfi::Cfi;
use crate::section::Section;
use serde::{Deserialize, Serialize};
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct SearchResult {
pub spine_index: usize,
pub snippet: String,
pub cfi: String,
pub char_offset: usize,
}
pub struct SearchEngine;
impl SearchEngine {
pub fn search(sections: &[Section], query: &str, case_sensitive: bool) -> Vec<SearchResult> {
if query.trim().is_empty() {
return Vec::new();
}
#[cfg(feature = "parallel")]
{
use rayon::prelude::*;
sections
.par_iter()
.flat_map(|section| Self::search_section(section, query, case_sensitive))
.collect()
}
#[cfg(not(feature = "parallel"))]
{
let mut results = Vec::new();
for section in sections {
results.extend(Self::search_section(section, query, case_sensitive));
}
results
}
}
pub fn search_section(
section: &Section,
query: &str,
case_sensitive: bool,
) -> Vec<SearchResult> {
let mut results = Vec::new();
if query.trim().is_empty() || section.plain_text.is_empty() {
return results;
}
let query_lower = if case_sensitive {
query.to_string()
} else {
query.to_lowercase()
};
let target_text = if case_sensitive {
§ion.plain_text
} else {
§ion.plain_text_lower
};
let finder = memchr::memmem::Finder::new(query_lower.as_bytes());
let is_ascii = target_text.is_ascii();
for match_byte_idx in finder.find_iter(target_text.as_bytes()) {
let char_offset = if is_ascii {
match_byte_idx
} else {
target_text[..match_byte_idx].chars().count()
};
let q_char_count = if is_ascii {
query_lower.len()
} else {
query_lower.chars().count()
};
let text_chars: Vec<char> = section.plain_text.chars().collect();
let total_chars = text_chars.len();
let start_c = char_offset.saturating_sub(40);
let end_c = (char_offset + q_char_count + 40).min(total_chars);
let match_end_c = (char_offset + q_char_count).min(total_chars);
let before: String = text_chars[start_c..char_offset].iter().collect();
let matched: String = text_chars[char_offset..match_end_c].iter().collect();
let after: String = text_chars[match_end_c..end_c].iter().collect();
let prefix = if start_c > 0 { "..." } else { "" };
let suffix = if end_c < total_chars { "..." } else { "" };
let snippet = format!(
"{}{}<mark>{}</mark>{}{}",
prefix,
html_escape(&before),
html_escape(&matched),
html_escape(&after),
suffix
);
let cfi = Cfi::from_spine_index(section.index, None, char_offset).to_string();
results.push(SearchResult {
spine_index: section.index,
snippet,
cfi,
char_offset,
});
}
results
}
pub fn search_regex(sections: &[Section], pattern: &str) -> Result<Vec<SearchResult>, String> {
let re = regex::Regex::new(pattern)
.map_err(|e| format!("Invalid regex pattern '{}': {}", pattern, e))?;
let mut results = Vec::new();
for section in sections {
for m in re.find_iter(§ion.plain_text) {
let abs_idx = m.start();
let match_str = m.as_str();
let text_chars: Vec<char> = section.plain_text.chars().collect();
let char_idx = section.plain_text[..abs_idx.min(section.plain_text.len())]
.chars()
.count();
let q_char_len = match_str.chars().count();
let start_c = char_idx.saturating_sub(40);
let end_c = (char_idx + q_char_len + 40).min(text_chars.len());
let match_end = (char_idx + q_char_len).min(text_chars.len());
let before: String = text_chars[start_c..char_idx].iter().collect();
let matched: String = text_chars[char_idx..match_end].iter().collect();
let after: String = text_chars[match_end..end_c].iter().collect();
let prefix = if start_c > 0 { "..." } else { "" };
let suffix = if end_c < text_chars.len() { "..." } else { "" };
let snippet = format!(
"{}{}<mark>{}</mark>{}{}",
prefix,
html_escape(&before),
html_escape(&matched),
html_escape(&after),
suffix
);
let cfi = Cfi::from_spine_index(section.index, None, char_idx).to_string();
results.push(SearchResult {
spine_index: section.index,
snippet,
cfi,
char_offset: char_idx,
});
}
}
Ok(results)
}
pub fn to_readium_search_json(results: &[SearchResult], query: &str) -> Result<String, String> {
let locators: Vec<serde_json::Value> = results
.iter()
.map(|r| {
serde_json::json!({
"href": format!("section_{}.html", r.spine_index),
"type": "application/xhtml+xml",
"locations": {
"cfi": r.cfi,
"position": r.char_offset / 1000 + 1
},
"text": {
"snippet": r.snippet
}
})
})
.collect();
let collection = serde_json::json!({
"@context": "http://readium.org/webpub-manifest/context.jsonld",
"metadata": {
"numberOfResults": results.len(),
"query": query
},
"locators": locators
});
serde_json::to_string_pretty(&collection)
.map_err(|e| format!("Failed to serialize Readium Search JSON: {}", e))
}
}
pub fn html_escape(s: &str) -> String {
s.replace('&', "&")
.replace('<', "<")
.replace('>', ">")
.replace('"', """)
.replace('\'', "'")
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_search() {
let sec = Section {
index: 0,
idref: "ch1".to_string(),
href: "ch1.xhtml".to_string(),
full_path: "OEBPS/ch1.xhtml".to_string(),
raw_html: "<p>Hello Rust Reader</p>".to_string(),
processed_html: "<p>Hello Rust Reader</p>".to_string(),
plain_text: "Hello Rust Reader".to_string(),
plain_text_lower: "hello rust reader".to_string(),
char_count: 17,
viewport_width: None,
viewport_height: None,
};
let results = SearchEngine::search(&[sec], "Rust", false);
assert_eq!(results.len(), 1);
assert_eq!(results[0].spine_index, 0);
assert!(results[0].snippet.contains("Rust"));
}
}