use crate::config::Config;
use crate::input_method::{InputMethod, Rule};
use crate::mode::{Mode, OutputOptions};
const MAX_ACTIVE_TRANS: usize = 32;
#[derive(Clone, Copy, Debug, PartialEq, Eq, Default)]
pub struct Transformation {
pub rule: Rule,
pub target: Option<usize>,
pub is_upper_case: bool,
}
#[inline]
fn lower(c: char) -> char {
if c.is_ascii() { c.to_ascii_lowercase() } else { c.to_lowercase().next().unwrap_or(c) }
}
#[inline]
fn is_upper(c: char) -> bool {
if c.is_ascii() { c.is_ascii_uppercase() } else { lower(c) != c }
}
fn uoh_tail_match(s: &str) -> bool {
for pat in ["uơ", "ưo"] {
if let Some(idx) = s.find(pat) {
let after = &s[idx + pat.len()..];
if after.chars().next().is_some_and(|c| c.is_alphabetic()) {
return true;
}
}
}
false
}
pub struct Engine {
committed_text: String,
active_buffer: [Transformation; MAX_ACTIVE_TRANS],
active_len: usize,
input_method: InputMethod,
all_rules: Box<[Rule]>,
ascii_rule_indices: [(u16, u16); 128],
non_ascii_rule_indices: Box<[(char, (u16, u16))]>,
ascii_effect_keys: [bool; 128],
non_ascii_effect_keys: Vec<char>,
config: Config,
work_comp: Vec<Transformation>,
scratch_comp: Vec<Transformation>,
prev_preedit: String,
delta_buf: String,
}
impl Engine {
pub fn new(input_method: InputMethod) -> Self {
Self::with_config(input_method, Config::default())
}
pub fn with_config(input_method: InputMethod, config: Config) -> Self {
let mut rules_by_key: std::collections::BTreeMap<char, Vec<Rule>> =
std::collections::BTreeMap::new();
for rule in &input_method.rules {
let key = lower(rule.key);
rules_by_key.entry(key).or_default().push(*rule);
}
let total_rules: usize = rules_by_key.values().map(|v| v.len()).sum();
let mut all_rules_vec = Vec::with_capacity(total_rules);
let mut ascii_rule_indices = [(0u16, 0u16); 128];
let mut non_ascii_indices_vec = Vec::new();
for (key, rules) in rules_by_key {
let start = all_rules_vec.len() as u16;
all_rules_vec.extend(rules);
let end = all_rules_vec.len() as u16;
if key.is_ascii() {
ascii_rule_indices[key as usize] = (start, end);
} else {
non_ascii_indices_vec.push((key, (start, end)));
}
}
let mut ascii_effect_keys = [false; 128];
let mut non_ascii_effect_keys: Vec<char> = Vec::new();
for key in &input_method.keys {
if key.is_ascii() {
ascii_effect_keys[*key as usize] = true;
} else {
non_ascii_effect_keys.push(*key);
}
}
non_ascii_effect_keys.sort_unstable();
non_ascii_effect_keys.dedup();
Self {
committed_text: String::new(),
active_buffer: [Transformation::default(); MAX_ACTIVE_TRANS],
active_len: 0,
input_method,
all_rules: all_rules_vec.into_boxed_slice(),
ascii_rule_indices,
non_ascii_rule_indices: non_ascii_indices_vec.into_boxed_slice(),
ascii_effect_keys,
non_ascii_effect_keys,
config,
work_comp: Vec::with_capacity(MAX_ACTIVE_TRANS),
scratch_comp: Vec::with_capacity(MAX_ACTIVE_TRANS),
prev_preedit: String::with_capacity(64),
delta_buf: String::with_capacity(64),
}
}
#[inline]
fn active_slice(&self) -> &[Transformation] {
&self.active_buffer[..self.active_len]
}
fn take_active_into(&mut self, out: &mut Vec<Transformation>) {
out.clear();
out.extend_from_slice(self.active_slice());
self.active_len = 0;
}
fn set_active_from_vec(&mut self, src: &mut Vec<Transformation>) {
self.active_len = src.len().min(MAX_ACTIVE_TRANS);
self.active_buffer[..self.active_len].copy_from_slice(&src[..self.active_len]);
src.clear();
}
pub fn config(&self) -> Config {
self.config
}
pub fn set_config(&mut self, config: Config) {
self.config = config;
}
pub fn input_method(&self) -> InputMethod {
self.input_method.clone()
}
fn get_applicable_rules(&self, key: char) -> &[Rule] {
let key = lower(key);
if key.is_ascii() {
let (start, end) = self.ascii_rule_indices[key as usize];
&self.all_rules[start as usize..end as usize]
} else {
self.non_ascii_rule_indices
.binary_search_by_key(&key, |(k, _)| *k)
.map(|idx| {
let (start, end) = self.non_ascii_rule_indices[idx].1;
&self.all_rules[start as usize..end as usize]
})
.unwrap_or(&[])
}
}
fn can_process_key_raw(&self, lower_key: char) -> bool {
if crate::utils::is_alpha(lower_key)
|| (lower_key.is_ascii() && self.ascii_effect_keys[lower_key as usize])
|| self.non_ascii_effect_keys.binary_search(&lower_key).is_ok()
{
return true;
}
if crate::utils::is_word_break_symbol(lower_key) {
return false;
}
crate::utils::is_vietnamese_rune(lower_key)
}
fn generate_transformations(
&self,
composition: &mut Vec<Transformation>,
key: char,
is_upper_case: bool,
) {
let lower_key = lower(key);
let mut transformations = crate::bamboo_util::generate_transformations(
composition,
self.get_applicable_rules(lower_key),
self.config.to_flags(),
lower_key,
is_upper_case,
);
if transformations.is_empty() {
transformations = crate::bamboo_util::generate_fallback_transformations(
self.get_applicable_rules(lower_key),
lower_key,
is_upper_case,
);
let mut new_comp = composition.clone();
new_comp.extend(transformations.clone());
if !self.input_method.super_keys.is_empty() {
let current_str = crate::flattener::flatten_slice(
&new_comp,
OutputOptions::TONE_LESS | OutputOptions::LOWER_CASE,
);
if uoh_tail_match(¤t_str) {
let (target, rule) = crate::bamboo_util::find_target(
&new_comp,
self.get_applicable_rules(self.input_method.super_keys[0]),
self.config.to_flags(),
);
if let (Some(target), Some(mut rule)) = (target, rule) {
rule.key = '\0';
transformations.push(Transformation {
rule,
target: Some(target),
is_upper_case: false,
});
}
}
}
}
composition.extend(transformations.iter().cloned());
if self.config.to_flags() & crate::bamboo_util::EFREE_TONE_MARKING != 0
&& self.is_valid_internal(composition, false)
{
let extra = crate::bamboo_util::refresh_last_tone_target(
composition,
self.config.to_flags() & crate::bamboo_util::ESTD_TONE_STYLE != 0,
);
composition.extend(extra);
}
}
fn last_syllable_start(composition: &[Transformation]) -> usize {
let mut idx = composition.len();
let mut last_is_vowel = false;
let mut found_vowel = false;
while idx > 0 {
let tmp = &composition[idx - 1];
if tmp.target.is_none() {
let is_v = crate::utils::is_vowel(tmp.rule.result);
if found_vowel && !is_v && !last_is_vowel {
break;
}
if is_v {
found_vowel = true;
}
last_is_vowel = is_v;
}
idx -= 1;
}
idx
}
fn new_composition_in_place(
&self,
composition: &mut Vec<Transformation>,
scratch: &mut Vec<Transformation>,
key: char,
is_upper_case: bool,
) {
let syllable_abs_start = Self::last_syllable_start(composition);
scratch.clear();
scratch.extend(composition.drain(syllable_abs_start..));
let offset = syllable_abs_start;
if offset != 0 {
for t in scratch.iter_mut() {
if let Some(target) = t.target {
t.target = Some(target.saturating_sub(offset));
}
}
}
self.generate_transformations(scratch, key, is_upper_case);
if offset != 0 {
for t in scratch.iter_mut() {
if let Some(target) = t.target {
t.target = Some(target + offset);
}
}
}
composition.append(scratch);
}
pub fn process(&mut self, s: &str, mode: Mode) -> String {
self.process_str(s, mode).output()
}
pub fn process_str(&mut self, s: &str, mode: Mode) -> &Self {
for key in s.chars() {
self.process_key(key, mode);
}
self
}
fn lcp_chars_and_bytes(a: &str, b: &str) -> (usize, usize) {
let mut lcp_chars = 0usize;
let mut lcp_bytes = 0usize;
for (ac, bc) in a.chars().zip(b.chars()) {
if ac == bc {
lcp_chars += 1;
lcp_bytes += ac.len_utf8();
} else {
break;
}
}
(lcp_chars, lcp_bytes)
}
pub fn process_key_delta(&mut self, key: char, mode: Mode) -> (usize, usize, &str) {
self.process_key(key, mode);
let active_len = self.active_len;
let active = &self.active_buffer[..active_len];
crate::flattener::flatten_slice_into(active, OutputOptions::NONE, &mut self.delta_buf);
let (lcp_chars, lcp_bytes) = Self::lcp_chars_and_bytes(&self.prev_preedit, &self.delta_buf);
let prev_chars = self.prev_preedit.chars().count();
let prev_bytes = self.prev_preedit.len();
let backspaces_chars = prev_chars.saturating_sub(lcp_chars);
let backspaces_bytes = prev_bytes.saturating_sub(lcp_bytes);
std::mem::swap(&mut self.prev_preedit, &mut self.delta_buf);
let inserted = &self.prev_preedit[lcp_bytes..];
(backspaces_chars, backspaces_bytes, inserted)
}
pub fn process_key_delta_into(
&mut self,
key: char,
mode: Mode,
inserted: &mut String,
) -> usize {
let (backspaces_chars, _backspaces_bytes, ins) = self.process_key_delta(key, mode);
inserted.clear();
inserted.push_str(ins);
backspaces_chars
}
pub fn process_key(&mut self, key: char, mode: Mode) {
let lower_key = lower(key);
let is_upper_case = is_upper(key);
if mode == Mode::English || !self.can_process_key_raw(lower_key) {
if crate::utils::is_word_break_symbol(lower_key) {
self.commit();
}
let trans = crate::bamboo_util::new_appending_trans(lower_key, is_upper_case);
self.push_active(trans);
if crate::utils::is_word_break_symbol(lower_key) {
self.commit();
}
return;
}
let mut work = std::mem::take(&mut self.work_comp);
let mut scratch = std::mem::take(&mut self.scratch_comp);
self.take_active_into(&mut work);
self.new_composition_in_place(&mut work, &mut scratch, lower_key, is_upper_case);
self.set_active_from_vec(&mut work);
self.work_comp = work;
self.scratch_comp = scratch;
}
fn push_active(&mut self, trans: Transformation) {
if self.active_len < MAX_ACTIVE_TRANS {
self.active_buffer[self.active_len] = trans;
self.active_len += 1;
}
}
pub fn commit(&mut self) {
if self.active_len == 0 {
return;
}
let word = self.output();
self.committed_text.push_str(&word);
self.active_len = 0;
}
pub fn output(&self) -> String {
crate::flattener::flatten_slice(self.active_slice(), OutputOptions::NONE)
}
pub fn get_processed_str(&self, options: OutputOptions) -> String {
let active = self.active_slice();
if options.contains(OutputOptions::FULL_TEXT) {
let mut result = self.committed_text.clone();
result.push_str(&crate::flattener::flatten_slice(active, options));
return result;
}
if options.contains(OutputOptions::PUNCTUATION_MODE) {
if active.is_empty() {
return String::new();
}
let (_, tail) = crate::bamboo_util::extract_last_word_with_punctuation_marks(
active,
&self.input_method.keys,
);
return crate::flattener::flatten_slice(tail, OutputOptions::NONE);
}
crate::flattener::flatten_slice(active, options)
}
pub fn is_valid(&self, input_is_full_complete: bool) -> bool {
self.is_valid_internal(self.active_slice(), input_is_full_complete)
}
fn is_valid_internal(
&self,
composition: &[Transformation],
input_is_full_complete: bool,
) -> bool {
crate::bamboo_util::is_valid(composition, input_is_full_complete)
}
pub fn restore_last_word(&mut self, to_vietnamese: bool) {
let mut work = std::mem::take(&mut self.work_comp);
let mut scratch = std::mem::take(&mut self.scratch_comp);
self.take_active_into(&mut work);
if work.is_empty() {
self.set_active_from_vec(&mut work);
self.work_comp = work;
self.scratch_comp = scratch;
return;
}
let (prev_slice, last) =
crate::bamboo_util::extract_last_word(&work, Some(&self.input_method.keys));
let mut previous = prev_slice.to_vec();
if last.is_empty() {
self.set_active_from_vec(&mut work);
self.work_comp = work;
self.scratch_comp = scratch;
return;
}
if !to_vietnamese {
previous.extend(crate::bamboo_util::break_composition_slice(last));
self.set_active_from_vec(&mut previous);
self.work_comp = work;
self.scratch_comp = scratch;
return;
}
let mut new_comp: Vec<Transformation> = Vec::new();
for t in last {
if t.rule.key == '\0' {
continue;
}
self.new_composition_in_place(&mut new_comp, &mut scratch, t.rule.key, t.is_upper_case);
}
previous.extend(new_comp);
self.set_active_from_vec(&mut previous);
self.work_comp = work;
self.scratch_comp = scratch;
}
pub fn remove_last_char(&mut self, refresh_last_tone_target: bool) {
let mut work = std::mem::take(&mut self.work_comp);
self.take_active_into(&mut work);
let last_appending_idx = crate::bamboo_util::find_last_appending_trans_idx(&work);
let Some(last_idx) = last_appending_idx else {
self.set_active_from_vec(&mut work);
self.work_comp = work;
return;
};
let last_appending_key = work[last_idx].rule.key;
if !self.can_process_key_raw(last_appending_key) {
work.pop();
self.set_active_from_vec(&mut work);
self.work_comp = work;
return;
}
if work.is_empty() {
self.set_active_from_vec(&mut work);
self.work_comp = work;
return;
}
let (prev_slice, last_comb_slice) =
crate::bamboo_util::extract_last_word(&work, Some(&self.input_method.keys));
let mut previous = prev_slice.to_vec();
let last_comb = last_comb_slice.to_vec();
let mut new_comb: Vec<Transformation> = Vec::new();
let prev_len = previous.len();
for (i, t) in last_comb.into_iter().enumerate() {
let actual_idx = prev_len + i;
if actual_idx == last_idx {
continue;
}
if let Some(target) = t.target
&& target == last_idx
{
continue;
}
new_comb.push(t);
}
if refresh_last_tone_target {
let extra = crate::bamboo_util::refresh_last_tone_target(
&mut new_comb,
self.config.to_flags() & crate::bamboo_util::ESTD_TONE_STYLE != 0,
);
new_comb.extend(extra);
}
previous.extend(new_comb);
self.set_active_from_vec(&mut previous);
self.work_comp = work;
}
pub fn reset(&mut self) {
self.committed_text.clear();
self.active_len = 0;
self.prev_preedit.clear();
self.delta_buf.clear();
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn delta_backspaces_and_inserted() {
let telex = InputMethod::telex();
let mut e = Engine::new(telex);
let (bs1, _bb1, ins1) = e.process_key_delta('a', Mode::Vietnamese);
assert_eq!(bs1, 0, "First 'a' should have 0 backspaces");
assert_eq!(ins1, "a");
let (bs2, _bb2, ins2) = e.process_key_delta('s', Mode::Vietnamese);
assert_eq!(bs2, 1, "Adding 's' to 'a' should have 1 backspace for 'á'");
assert_eq!(ins2, "á");
let (bs3, _bb3, ins3) = e.process_key_delta(' ', Mode::Vietnamese);
assert_eq!(bs3, 1, "Space should clear the preedit 'á'");
assert_eq!(ins3, "");
}
}