mod.rs 9.2 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265
  1. use flowy_ot::core::*;
  2. use rand::{prelude::*, Rng as WrappedRng};
  3. use std::sync::Once;
  4. #[derive(Clone, Debug)]
  5. pub enum TestOp {
  6. Insert(usize, &'static str, usize),
  7. // delta_i, s, start, length,
  8. InsertBold(usize, &'static str, Interval),
  9. // delta_i, start, length, enable
  10. Bold(usize, Interval, bool),
  11. Delete(usize, Interval),
  12. Italic(usize, Interval, bool),
  13. Transform(usize, usize),
  14. // invert the delta_a base on the delta_b
  15. Invert(usize, usize),
  16. AssertStr(usize, &'static str),
  17. AssertOpsJson(usize, &'static str),
  18. }
  19. pub struct OpTester {
  20. deltas: Vec<Delta>,
  21. }
  22. impl OpTester {
  23. pub fn new() -> Self {
  24. static INIT: Once = Once::new();
  25. INIT.call_once(|| {
  26. std::env::set_var("RUST_LOG", "info");
  27. env_logger::init();
  28. });
  29. let mut deltas = Vec::with_capacity(2);
  30. for _ in 0..2 {
  31. let delta = Delta::default();
  32. deltas.push(delta);
  33. }
  34. Self { deltas }
  35. }
  36. pub fn run_op(&mut self, op: &TestOp) {
  37. match op {
  38. TestOp::Insert(delta_i, s, index) => {
  39. self.update_delta_with_insert(*delta_i, s, *index);
  40. },
  41. TestOp::Delete(delta_i, interval) => {
  42. //
  43. self.update_delta_with_delete(*delta_i, interval);
  44. },
  45. TestOp::InsertBold(delta_i, s, _interval) => {
  46. let attrs = AttrsBuilder::new().bold(true).build();
  47. let delta = &mut self.deltas[*delta_i];
  48. delta.insert(s, attrs);
  49. },
  50. TestOp::Bold(delta_i, interval, enable) => {
  51. let attrs = AttrsBuilder::new().bold(*enable).build();
  52. self.update_delta_with_attribute(*delta_i, attrs, interval);
  53. },
  54. TestOp::Italic(delta_i, interval, enable) => {
  55. let attrs = AttrsBuilder::new().italic(*enable).build();
  56. self.update_delta_with_attribute(*delta_i, attrs, interval);
  57. },
  58. TestOp::Transform(delta_a_i, delta_b_i) => {
  59. let delta_a = &self.deltas[*delta_a_i];
  60. let delta_b = &self.deltas[*delta_b_i];
  61. let (a_prime, b_prime) = delta_a.transform(delta_b).unwrap();
  62. log::trace!("a:{:?},b:{:?}", a_prime, b_prime);
  63. let new_delta_a = delta_a.compose(&b_prime).unwrap();
  64. let new_delta_b = delta_b.compose(&a_prime).unwrap();
  65. self.deltas[*delta_a_i] = new_delta_a;
  66. self.deltas[*delta_b_i] = new_delta_b;
  67. },
  68. TestOp::Invert(delta_a_i, delta_b_i) => {
  69. let delta_a = &self.deltas[*delta_a_i];
  70. let delta_b = &self.deltas[*delta_b_i];
  71. let (_, b_prime) = delta_a.transform(delta_b).unwrap();
  72. let undo = b_prime.invert_delta(&delta_a);
  73. let new_delta = delta_a.compose(&b_prime).unwrap();
  74. let new_delta_after_undo = new_delta.compose(&undo).unwrap();
  75. assert_eq!(delta_a, &new_delta_after_undo);
  76. self.deltas[*delta_a_i] = new_delta_after_undo;
  77. },
  78. TestOp::AssertStr(delta_i, expected) => {
  79. let s = self.deltas[*delta_i].apply("").unwrap();
  80. assert_eq!(&s, expected);
  81. },
  82. TestOp::AssertOpsJson(delta_i, expected) => {
  83. let delta_i_json = serde_json::to_string(&self.deltas[*delta_i]).unwrap();
  84. let expected_delta: Delta = serde_json::from_str(expected).unwrap();
  85. let target_delta: Delta = serde_json::from_str(&delta_i_json).unwrap();
  86. if expected_delta != target_delta {
  87. log::error!("✅ expect: {}", expected,);
  88. log::error!("❌ receive: {}", delta_i_json);
  89. }
  90. assert_eq!(target_delta, expected_delta);
  91. },
  92. }
  93. }
  94. pub fn run_script(&mut self, script: Vec<TestOp>) {
  95. for (_i, op) in script.iter().enumerate() {
  96. self.run_op(op);
  97. }
  98. }
  99. pub fn get_delta(&mut self, index: usize) -> &mut Delta { &mut self.deltas[index] }
  100. pub fn update_delta_with_insert(&mut self, delta_index: usize, s: &str, index: usize) {
  101. let old_delta = &mut self.deltas[delta_index];
  102. let target_interval = Interval::new(0, old_delta.target_len);
  103. if old_delta.target_len < index {
  104. log::error!("{} out of bounds {}", index, target_interval);
  105. }
  106. let mut attributes = old_delta.attributes_in_interval(Interval::new(index, index + 1));
  107. if attributes == Attributes::Empty {
  108. attributes = Attributes::Follow;
  109. }
  110. let insert = OpBuilder::insert(s).attributes(attributes).build();
  111. let new_delta = new_delta_with_op(old_delta, insert, Interval::new(index, index));
  112. self.deltas[delta_index] = new_delta;
  113. }
  114. pub fn update_delta_with_attribute(
  115. &mut self,
  116. delta_index: usize,
  117. attributes: Attributes,
  118. interval: &Interval,
  119. ) {
  120. let old_delta = &self.deltas[delta_index];
  121. let mut retain = OpBuilder::retain(interval.size() as u64)
  122. .attributes(attributes)
  123. .build();
  124. let attributes = old_delta.attributes_in_interval(*interval);
  125. retain.extend_attributes(attributes);
  126. let new_delta = new_delta_with_op(old_delta, retain, *interval);
  127. self.deltas[delta_index] = new_delta;
  128. }
  129. pub fn update_delta_with_delete(&mut self, delta_index: usize, interval: &Interval) {
  130. let old_delta = &self.deltas[delta_index];
  131. let mut delete = OpBuilder::delete(interval.size() as u64).build();
  132. let attributes = old_delta.attributes_in_interval(*interval);
  133. delete.extend_attributes(attributes);
  134. let new_delta = new_delta_with_op(old_delta, delete, *interval);
  135. self.deltas[delta_index] = new_delta;
  136. }
  137. }
  138. fn new_delta_with_op(delta: &Delta, op: Operation, interval: Interval) -> Delta {
  139. let mut new_delta = Delta::default();
  140. let (prefix, interval, suffix) = target_length_split_with_interval(delta.target_len, interval);
  141. // prefix
  142. if prefix.is_empty() == false && prefix != interval {
  143. let intervals = split_interval_with_delta(delta, &prefix);
  144. intervals.into_iter().for_each(|interval| {
  145. let attributes = delta.attributes_in_interval(interval);
  146. new_delta.retain(interval.size() as u64, attributes);
  147. });
  148. }
  149. new_delta.add(op);
  150. // suffix
  151. if suffix.is_empty() == false {
  152. let intervals = split_interval_with_delta(delta, &suffix);
  153. intervals.into_iter().for_each(|interval| {
  154. let attributes = delta.attributes_in_interval(interval);
  155. new_delta.retain(interval.size() as u64, attributes);
  156. });
  157. }
  158. delta.compose(&new_delta).unwrap()
  159. }
  160. fn split_interval_with_delta(delta: &Delta, interval: &Interval) -> Vec<Interval> {
  161. let mut start = 0;
  162. let mut new_intervals = vec![];
  163. delta.ops.iter().for_each(|op| match op {
  164. Operation::Delete(_) => {},
  165. Operation::Retain(_) => {},
  166. Operation::Insert(insert) => {
  167. let len = insert.num_chars() as usize;
  168. let end = start + len;
  169. let insert_interval = Interval::new(start, end);
  170. let new_interval = interval.intersect(insert_interval);
  171. if !new_interval.is_empty() {
  172. new_intervals.push(new_interval)
  173. }
  174. start += len;
  175. },
  176. });
  177. new_intervals
  178. }
  179. pub fn target_length_split_with_interval(
  180. length: usize,
  181. interval: Interval,
  182. ) -> (Interval, Interval, Interval) {
  183. let original_interval = Interval::new(0, length);
  184. let prefix = original_interval.prefix(interval);
  185. let suffix = original_interval.suffix(interval);
  186. (prefix, interval, suffix)
  187. }
  188. pub fn debug_print_delta(delta: &Delta) {
  189. eprintln!("😁 {}", serde_json::to_string(delta).unwrap());
  190. }
  191. pub struct Rng(StdRng);
  192. impl Default for Rng {
  193. fn default() -> Self { Rng(StdRng::from_rng(thread_rng()).unwrap()) }
  194. }
  195. impl Rng {
  196. pub fn from_seed(seed: [u8; 32]) -> Self { Rng(StdRng::from_seed(seed)) }
  197. pub fn gen_string(&mut self, len: usize) -> String {
  198. (0..len).map(|_| self.0.gen::<char>()).collect()
  199. }
  200. pub fn gen_delta(&mut self, s: &str) -> Delta {
  201. let mut delta = Delta::default();
  202. loop {
  203. let left = s.chars().count() - delta.base_len;
  204. if left == 0 {
  205. break;
  206. }
  207. let i = if left == 1 {
  208. 1
  209. } else {
  210. 1 + self.0.gen_range(0, std::cmp::min(left - 1, 20))
  211. };
  212. match self.0.gen_range(0.0, 1.0) {
  213. f if f < 0.2 => {
  214. delta.insert(&self.gen_string(i), Attributes::Empty);
  215. },
  216. f if f < 0.4 => {
  217. delta.delete(i as u64);
  218. },
  219. _ => {
  220. delta.retain(i as u64, Attributes::Empty);
  221. },
  222. }
  223. }
  224. if self.0.gen_range(0.0, 1.0) < 0.3 {
  225. delta.insert(&("1".to_owned() + &self.gen_string(10)), Attributes::Empty);
  226. }
  227. delta
  228. }
  229. }