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use std::fs;
use crate::config::*;
extern crate json;
const fn build_lookup_table() -> [usize; 128] {
let mut result = [0; 128];
let mut i = 0;
while i < NUM_KEYS {
result[KEY_CHARS[i] as usize] = i;
i += 1;
}
return result;
}
const CHAR_TO_INDEX: [usize; 128] = build_lookup_table();
const NUM_BIGRAMS: usize = NUM_KEYS * NUM_KEYS;
pub struct Corpus {
bigram_percs: [f32; NUM_BIGRAMS],
skipgram_percs: [f32; NUM_BIGRAMS],
character_percs: [f32; 128],
}
fn pair_to_index(x: u8, y: u8) -> usize {
let xi = CHAR_TO_INDEX[x as usize];
let yi = CHAR_TO_INDEX[y as usize];
xi + NUM_KEYS * yi
}
impl Corpus {
pub fn get_character_perc(&self, c: u8) -> f32 {
self.character_percs[c as usize]
}
pub fn get_bigram_perc(&self, x: u8, y: u8) -> f32 {
self.bigram_percs[pair_to_index(x, y)]
}
pub fn get_skipgram_perc(&self, x: u8, y: u8) -> f32 {
self.skipgram_percs[pair_to_index(x, y)]
}
pub fn load_from_json_file(path: &str) -> Result<Corpus, std::io::Error> {
let contents = fs::read_to_string(path)?;
let json = json::parse(&contents).unwrap();
let mut character_percs = [0.0; 128];
let mut bigram_percs = [0.0; NUM_BIGRAMS];
let mut skipgram_percs = [0.0; NUM_BIGRAMS];
for (key, value) in json.entries() {
if key == "characters" {
for (c, p) in value.entries() {
if let Some(c) = canonicalise(c.as_bytes()[0] as char) {
character_percs[c as usize] = p.as_f32().unwrap();
}
}
} else if key == "bigrams" {
for (b, p) in value.entries() {
let canon: Vec<Option<u8>> = b
.as_bytes()
.iter()
.map(|&b| canonicalise(b as char))
.collect();
if let Some(c1) = canon[0] {
if let Some(c2) = canon[1] {
bigram_percs[pair_to_index(c1, c2)] += p.as_f32().unwrap();
bigram_percs[pair_to_index(c2, c1)] += p.as_f32().unwrap();
}
}
}
} else if key == "skipgrams" {
for (t, p) in value.entries() {
let canon: Vec<Option<u8>> = t
.as_bytes()
.iter()
.map(|&b| canonicalise(b as char))
.collect();
if let Some(c1) = canon[0] {
if let Some(c3) = canon[1] {
skipgram_percs[pair_to_index(c1, c3)] += p.as_f32().unwrap();
skipgram_percs[pair_to_index(c3, c1)] += p.as_f32().unwrap();
}
}
}
}
}
return Ok(Corpus {
skipgram_percs,
bigram_percs,
character_percs,
});
}
pub fn load_from_text_file(path: &str) -> Result<Corpus, std::io::Error> {
let contents = fs::read_to_string(path)?;
let mut bigram_count = [0; NUM_BIGRAMS];
let mut skipgram_count = [0; NUM_BIGRAMS];
let mut character_count = [0; 128];
let mut total_count = 0;
let mut total_bigrams = 0;
let mut total_trigrams = 0;
let mut last_char: Option<u8> = None;
let mut last_last_char: Option<u8> = None;
for c in contents.chars() {
let current_char = canonicalise(c);
if let Some(c) = current_char {
if let Some(lc) = last_char {
if let Some(llc) = last_last_char {
if llc != lc && lc != c && llc != c {
skipgram_count[pair_to_index(llc, c)] += 1;
skipgram_count[pair_to_index(c, llc)] += 1;
}
total_trigrams += 1;
}
if lc != c {
bigram_count[pair_to_index(c, lc)] += 1;
bigram_count[pair_to_index(lc, c)] += 1;
}
total_bigrams += 1;
}
character_count[c as usize] += 1;
total_count += 1;
}
last_last_char = last_char;
last_char = current_char;
}
let mut bigram_percs = [0.0; NUM_BIGRAMS];
let mut skipgram_percs = [0.0; NUM_BIGRAMS];
let mut character_percs = [0.0; 128];
for i in 0..NUM_BIGRAMS {
bigram_percs[i] = bigram_count[i] as f32 / total_bigrams as f32;
skipgram_percs[i] = skipgram_count[i] as f32 / total_trigrams as f32;
}
for i in 0..128 {
character_percs[i] = character_count[i] as f32 / total_count as f32;
}
return Ok(Corpus {
skipgram_percs,
bigram_percs,
character_percs,
});
}
}
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