use std::sync::Arc;
use anyhow::Result;
use crate::traits::{TokenIdType, Tokenizer as TokenizerTrait};
pub struct Sequence {
tokenizer: Arc<dyn TokenizerTrait>,
token_ids: Vec<TokenIdType>,
prefix_offset: usize,
read_offset: usize,
skip_special_tokens: bool,
}
impl std::fmt::Debug for Sequence {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
f.debug_struct("Sequence")
.field("tokenizer", &"Arc<dyn Tokenizer>")
.field(
"token_ids",
&format_args!("{}", {
let token_ids = self.token_ids();
if token_ids.len() <= 20 {
format!("{token_ids:?}")
} else {
let first_ten = &token_ids[..10];
let last_ten = &token_ids[token_ids.len() - 10..];
format!("{first_ten:?} ... {last_ten:?}")
}
}),
)
.field("prefix_offset", &self.prefix_offset)
.field("read_offset", &self.read_offset)
.field("token count", &self.token_ids.len())
.finish()
}
}
impl Sequence {
pub fn new(tokenizer: Arc<dyn TokenizerTrait>) -> Self {
Self::new_with_options(tokenizer, false)
}
pub fn new_with_options(tokenizer: Arc<dyn TokenizerTrait>, skip_special_tokens: bool) -> Self {
Self {
tokenizer,
token_ids: Vec::new(),
prefix_offset: 0,
read_offset: 0,
skip_special_tokens,
}
}
pub fn with_tokens(tokenizer: Arc<dyn TokenizerTrait>, token_ids: Vec<TokenIdType>) -> Self {
Self::with_tokens_and_options(tokenizer, token_ids, false)
}
pub fn with_tokens_and_options(
tokenizer: Arc<dyn TokenizerTrait>,
token_ids: Vec<TokenIdType>,
skip_special_tokens: bool,
) -> Self {
let len = token_ids.len();
Self {
tokenizer,
token_ids,
prefix_offset: 0,
read_offset: len,
skip_special_tokens,
}
}
#[inline]
pub fn is_empty(&self) -> bool {
self.token_ids.is_empty()
}
#[inline]
pub fn len(&self) -> usize {
self.token_ids.len()
}
pub fn clear(&mut self) {
self.token_ids.clear();
self.prefix_offset = 0;
self.read_offset = 0;
}
pub fn append_text(&mut self, input: &str, add_special_tokens: bool) -> Result<()> {
let encoding = self.tokenizer.encode(input, add_special_tokens)?;
self.token_ids.extend(encoding.token_ids());
Ok(())
}
#[inline]
pub fn append_token(&mut self, token_id: TokenIdType) -> Result<String> {
let old_read_offset = self.read_offset;
self.token_ids.push(token_id);
self.read_offset = self.token_ids.len();
if self.prefix_offset == 0 && old_read_offset == 0 {
let text = self
.tokenizer
.decode(&self.token_ids, self.skip_special_tokens)?;
if text.ends_with("�") {
return Ok(String::new());
}
self.prefix_offset = 0;
return Ok(text);
}
let prefix_text = self.tokenizer.decode(
&self.token_ids[self.prefix_offset..old_read_offset],
self.skip_special_tokens,
)?;
let new_text = self.tokenizer.decode(
&self.token_ids[self.prefix_offset..],
self.skip_special_tokens,
)?;
let mut prefix_text_len = prefix_text.len();
while !new_text.is_char_boundary(prefix_text_len) && prefix_text_len > 0 {
prefix_text_len -= 1;
}
if new_text.len() > prefix_text.len() {
if new_text.ends_with("�") {
return Ok(String::new());
} else {
let incremental_text = new_text[prefix_text_len..].to_string().replace("�", "");
self.prefix_offset = old_read_offset;
return Ok(incremental_text);
}
}
Ok(String::new())
}
#[inline]
pub fn tokenizer(&self) -> &Arc<dyn TokenizerTrait> {
&self.tokenizer
}
#[inline]
pub fn token_ids(&self) -> &[TokenIdType] {
&self.token_ids
}
pub fn text(&self) -> Result<String> {
self.tokenizer
.decode(&self.token_ids, self.skip_special_tokens)
}
#[inline]
pub fn prefix_offset(&self) -> usize {
self.prefix_offset
}
#[inline]
pub fn read_offset(&self) -> usize {
self.read_offset
}
#[inline]
pub fn skip_special_tokens(&self) -> bool {
self.skip_special_tokens
}
}
#[cfg(test)]
mod tests {
use crate::{mock::MockTokenizer, *};
#[test]
fn test_sequence_new() {
let tokenizer = Arc::new(MockTokenizer::new());
let seq = Sequence::new(tokenizer);
assert!(seq.is_empty());
assert_eq!(seq.len(), 0);
}
#[test]
fn test_sequence_append_text() {
let tokenizer = Arc::new(MockTokenizer::new());
let mut seq = Sequence::new(tokenizer);
seq.append_text("Hello", false).unwrap();
assert!(!seq.is_empty());
assert!(!seq.is_empty());
let text = seq.text().unwrap();
assert_eq!(text, "Hello");
}
#[test]
fn test_sequence_append_token() {
let tokenizer = Arc::new(MockTokenizer::new());
let mut seq = Sequence::new(tokenizer.clone());
let text1 = seq.append_token(1).unwrap();
assert_eq!(text1, "Hello");
let text2 = seq.append_token(2).unwrap();
assert_eq!(text2, " world");
assert_eq!(seq.text().unwrap(), "Hello world");
}
#[test]
fn test_sequence_clear() {
let tokenizer = Arc::new(MockTokenizer::new());
let mut seq = Sequence::new(tokenizer);
seq.append_text("Hello world", false).unwrap();
assert!(!seq.is_empty());
seq.clear();
assert!(seq.is_empty());
assert_eq!(seq.len(), 0);
assert_eq!(seq.prefix_offset(), 0);
assert_eq!(seq.read_offset(), 0);
}
#[test]
fn test_sequence_debug() {
let tokenizer = Arc::new(MockTokenizer::new());
let mut seq = Sequence::new(tokenizer);
seq.append_text("Test", false).unwrap();
let debug_str = format!("{seq:?}");
assert!(debug_str.contains("Sequence"));
assert!(debug_str.contains("token count"));
}
}