use crate::book::Book;
use serde::{Deserialize, Serialize};
#[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
pub struct BookFingerprint {
pub content_hash: String,
pub metadata_hash: String,
pub total_sections: usize,
pub total_characters: usize,
}
impl BookFingerprint {
pub fn match_score(&self, other: &BookFingerprint) -> f64 {
if self.content_hash == other.content_hash {
return 1.0;
}
if self.total_sections == other.total_sections && self.total_characters > 0 {
let char_diff = (self.total_characters as f64 - other.total_characters as f64).abs();
let len_similarity =
1.0 - (char_diff / (self.total_characters.max(other.total_characters) as f64));
if self.metadata_hash == other.metadata_hash {
return (0.6 + 0.4 * len_similarity).clamp(0.0, 1.0);
} else {
return (0.8 * len_similarity).clamp(0.0, 1.0);
}
}
if self.metadata_hash == other.metadata_hash {
return 0.5;
}
0.0
}
pub fn is_duplicate_of(&self, other: &BookFingerprint) -> bool {
self.match_score(other) >= 0.85
}
}
pub struct FingerprintGenerator;
impl FingerprintGenerator {
pub fn generate(book: &Book) -> BookFingerprint {
let meta = book.metadata();
let id_str = meta.identifier.as_deref().unwrap_or("");
let meta_raw = format!(
"{}:{}:{}",
meta.title.trim().to_lowercase(),
meta.creator().trim().to_lowercase(),
id_str.trim().to_lowercase()
);
let metadata_hash = hex_sha256(meta_raw.as_bytes());
let mut text_buf = String::new();
let mut total_characters = 0;
for section in &book.sections {
let norm_text: String = section
.plain_text
.chars()
.filter(|c| !c.is_whitespace())
.collect();
total_characters += section.char_count;
text_buf.push_str(&norm_text);
}
let content_hash = hex_sha256(text_buf.as_bytes());
BookFingerprint {
content_hash,
metadata_hash,
total_sections: book.sections.len(),
total_characters,
}
}
}
fn hex_sha256(input: &[u8]) -> String {
let mut state: [u32; 8] = [
0x6a09e667, 0xbb67ae85, 0x3c6ef372, 0xa54ff53a, 0x510e527f, 0x9b05688c, 0x1f83d9ab,
0x5be0cd19,
];
for chunk in input.chunks(64) {
let mut w = [0u32; 64];
for (j, &byte) in chunk.iter().enumerate() {
w[j / 4] |= (byte as u32) << (24 - 8 * (j % 4));
}
if chunk.len() < 64 {
w[chunk.len() / 4] |= 0x80 << (24 - 8 * (chunk.len() % 4));
}
let mut a = state[0];
let mut b = state[1];
let mut c = state[2];
let mut d = state[3];
let mut e = state[4];
let mut f = state[5];
let mut g = state[6];
let mut h = state[7];
let s0 = a.rotate_right(2) ^ a.rotate_right(13) ^ a.rotate_right(22);
let maj = (a & b) ^ (a & c) ^ (b & c);
let t2 = s0.wrapping_add(maj);
let s1 = e.rotate_right(6) ^ e.rotate_right(11) ^ e.rotate_right(25);
let ch = (e & f) ^ (!e & g);
let t1 = h
.wrapping_add(s1)
.wrapping_add(ch)
.wrapping_add(0x428a2f98)
.wrapping_add(w[0]);
h = g;
g = f;
f = e;
e = d.wrapping_add(t1);
d = c;
c = b;
b = a;
a = t1.wrapping_add(t2);
state[0] = state[0].wrapping_add(a);
state[1] = state[1].wrapping_add(b);
state[2] = state[2].wrapping_add(c);
state[3] = state[3].wrapping_add(d);
state[4] = state[4].wrapping_add(e);
state[5] = state[5].wrapping_add(f);
state[6] = state[6].wrapping_add(g);
state[7] = state[7].wrapping_add(h);
}
state
.iter()
.map(|v| format!("{:08x}", v))
.collect::<String>()
}