predictor.rs 32 KB

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  1. use std::cmp::{max, min};
  2. use std::collections::{BTreeMap, VecDeque};
  3. use std::sync::Arc;
  4. use chrono::{Utc};
  5. use futures_channel::mpsc::UnboundedSender;
  6. use futures_util::StreamExt;
  7. use rust_decimal::prelude::*;
  8. use rust_decimal_macros::dec;
  9. use tokio::sync::{Mutex};
  10. use tracing::{info};
  11. use global::cci::CentralControlInfo;
  12. use global::fixed_time_range_deque::FixedTimeRangeDeque;
  13. use global::params::Params;
  14. use standard::{Depth, Record, Ticker, Trade};
  15. use crate::utils;
  16. #[derive(Debug, Clone)]
  17. pub struct Predictor {
  18. pub depth_vec: Vec<Depth>, // 深度队列
  19. pub volume_vec: Vec<Decimal>, // 交易量队列
  20. pub trade_long_vec: FixedTimeRangeDeque<Trade>, // 交易队列
  21. pub trade_short_vec: FixedTimeRangeDeque<Trade>, // 交易队列
  22. pub trade_fixed_vec: Vec<Trade>, // 交易队列(观察持仓后的资金流)
  23. pub spread_vec: Vec<Decimal>, // 价差队列
  24. pub record_vec: VecDeque<Record>, // 蜡烛队列
  25. pub mid_price: Decimal, // 中间价
  26. pub ask_price: Decimal, // 卖一价
  27. pub bid_price: Decimal, // 买一价
  28. pub last_price: Decimal, // 最后成交价
  29. pub trades_volume_short: Decimal, // 过去10秒的成交量总和
  30. pub trades_volume_short_ema: Decimal, // 过去10秒的成交量总和的ema
  31. pub spread: Decimal, // 当前价差
  32. pub spread_ema_1000: Decimal, // 价差的ema,1000级别
  33. pub optimal_ask_price: Decimal, // 卖出挂单价
  34. pub optimal_bid_price: Decimal, // 买入挂单价
  35. pub profit_point: Decimal, // 利润点数
  36. pub profit_point_ema: Decimal, // 利润点数的ema
  37. pub profit_point_vec: Vec<Decimal>, // 利润队列
  38. pub inventory: Decimal, // 库存,也就是q
  39. pub pos_amount: Decimal, // 原始持仓量
  40. pub pos_avg_price: Decimal, // 原始持仓价格
  41. pub level: Decimal, // martin
  42. pub money_flow: Decimal, // 资金流
  43. pub ask_delta: Decimal, // δa
  44. pub bid_delta: Decimal, // δb
  45. pub mid_price_time_vec: FixedTimeRangeDeque<Decimal>, // 中间价格队列,
  46. pub fair_price_time_vec: FixedTimeRangeDeque<Decimal>, // 公平价格队列,
  47. pub fair_price_long_time_vec: FixedTimeRangeDeque<Decimal>, //
  48. pub fair_price_vec: Vec<Decimal>, // 公平价格列表,0表示做市所,1表示参考所
  49. pub fair_price: Decimal, // 公平价格
  50. pub fair_price_ema_short: Decimal, // 公平价格_ema
  51. pub fair_price_ema_long: Decimal, // 公平价格_ema
  52. pub fair_rate_focus_open: Decimal, // 变化幅度焦点
  53. pub mid_price_focus_open: Decimal, // 观测焦点时的价格
  54. pub fair_rate_focus_close: Decimal, // 变化幅度焦点
  55. pub fair_price_focus_close: Decimal, // 观测焦点时的价格
  56. pub fair_price_when_ordering: Decimal, // 下单时的公平价格
  57. pub price_times_avg: Decimal, // 公平所与做市所的价格倍率的平均值
  58. pub is_ready: bool, // 是否已准备好
  59. pub prev_trade_time: i64, // 上次交易时间,也就是t
  60. pub t_diff: Decimal, // (T-t)
  61. pub last_update_time: Decimal, // 最后更新时间(depth)
  62. pub last_index: Decimal, // 最后更新的index
  63. pub prev_insert_time: Decimal,
  64. pub prev_save_time: Decimal,
  65. pub init_time: Decimal,
  66. pub params: Params,
  67. pub debug_sender: UnboundedSender<Vec<Decimal>>
  68. }
  69. impl Predictor {
  70. // 时间窗口大小(微秒)
  71. // const MAX_TIME_RANGE_MICROS: i64 = 3 * 60_000_000;
  72. const TIME_DIFF_RANGE_MICROS: i64 = 15 * 60_000_000;
  73. const TRADE_LONG_RANGE_MICROS: i64 = 60_000_000;
  74. // const SPREAD_RANGE_MICROS: i64 = 15 * 60_000_000;
  75. const TRADE_SHORT_RANGE_MICROS: i64 = 2 * 60_000_000;
  76. // const ONE_MILLION: Decimal = dec!(1_000_000);
  77. // const TWENTY_THOUSAND: Decimal = dec!(20_000);
  78. const DONT_VIEW: Decimal = dec!(14142135623730951);
  79. pub fn new(_cci_arc: Arc<Mutex<CentralControlInfo>>, params: Params) -> Self {
  80. // 创建数据通道
  81. // 创建一个无界通道
  82. let (tx, mut rx) = futures_channel::mpsc::unbounded::<Vec<Decimal>>();
  83. let account_port = params.port.clone();
  84. tokio::spawn(async move {
  85. let len = 16usize;
  86. let mut prev_save_time = Decimal::from(Utc::now().timestamp_millis());
  87. let mut debugs: Vec<VecDeque<Option<Decimal>>> = vec![VecDeque::new(); len];
  88. while let Some(value) = rx.next().await {
  89. // 数据填充到对应位置
  90. for i in 0..len {
  91. if value[i] == Self::DONT_VIEW {
  92. debugs[i].push_back(None);
  93. } else {
  94. debugs[i].push_back(Some(value[i]));
  95. }
  96. }
  97. // 长度限制
  98. if debugs[0].len() > 500_000 {
  99. for i in 0..len {
  100. debugs[i].pop_front(); // 从前面移除元素
  101. }
  102. }
  103. let now = Decimal::from(Utc::now().timestamp_millis());
  104. if now - prev_save_time < dec!(60000) {
  105. continue;
  106. }
  107. let debugs_clone = debugs.clone();
  108. let temp_html_str = tokio::task::spawn_blocking(move || {
  109. utils::build_html_file(&debugs_clone)
  110. }).await.unwrap();
  111. let path = format!("./db/{}.html", account_port);
  112. utils::write_to_file(&temp_html_str, path).await;
  113. prev_save_time = Decimal::from(Utc::now().timestamp_millis());
  114. }
  115. });
  116. let predictor = Self {
  117. // 接针版本
  118. depth_vec: vec![Depth::new(); 10],
  119. fair_price_vec: vec![Decimal::ZERO; 10],
  120. volume_vec: vec![Decimal::ZERO; 10],
  121. // 老的队列
  122. spread_vec: vec![],
  123. trade_long_vec: FixedTimeRangeDeque::new(Self::TRADE_LONG_RANGE_MICROS),
  124. trade_short_vec: FixedTimeRangeDeque::new(Self::TRADE_SHORT_RANGE_MICROS),
  125. trade_fixed_vec: vec![],
  126. profit_point_vec: vec![],
  127. record_vec: VecDeque::new(),
  128. mid_price: Default::default(),
  129. ask_price: Default::default(),
  130. bid_price: Default::default(),
  131. last_price: Default::default(),
  132. trades_volume_short: Default::default(),
  133. trades_volume_short_ema: Default::default(),
  134. spread: Default::default(),
  135. spread_ema_1000: Default::default(),
  136. optimal_ask_price: Default::default(),
  137. optimal_bid_price: Default::default(),
  138. inventory: Default::default(),
  139. ask_delta: Default::default(),
  140. bid_delta: Default::default(),
  141. fair_price_time_vec: FixedTimeRangeDeque::new((params.second_observation_time.to_f64().unwrap() * 1_000_000f64).to_i64().unwrap()),
  142. fair_price_long_time_vec: FixedTimeRangeDeque::new(5 * 60_000_000),
  143. mid_price_time_vec: FixedTimeRangeDeque::new(100_000),
  144. fair_price: Default::default(),
  145. fair_price_ema_short: Default::default(),
  146. fair_price_ema_long: Default::default(),
  147. fair_rate_focus_open: Default::default(),
  148. mid_price_focus_open: Default::default(),
  149. fair_rate_focus_close: Default::default(),
  150. fair_price_focus_close: Default::default(),
  151. fair_price_when_ordering: Default::default(),
  152. price_times_avg: Default::default(),
  153. is_ready: false,
  154. prev_trade_time: Utc::now().timestamp_micros(),
  155. t_diff: Default::default(),
  156. level: Default::default(),
  157. pos_amount: Default::default(),
  158. money_flow: Default::default(),
  159. profit_point: Default::default(),
  160. profit_point_ema: Default::default(),
  161. last_update_time: Default::default(),
  162. last_index: Default::default(),
  163. pos_avg_price: Default::default(),
  164. prev_insert_time: Default::default(),
  165. prev_save_time: Decimal::from(Utc::now().timestamp_millis()),
  166. init_time: Decimal::from(Utc::now().timestamp_millis()),
  167. params,
  168. debug_sender: tx,
  169. };
  170. predictor
  171. }
  172. pub async fn on_depth(&mut self, depth: &Depth, index: usize) {
  173. self.last_update_time = depth.time;
  174. self.last_index = Decimal::from(index);
  175. if index == 0 {
  176. self.ask_price = depth.asks[0].price;
  177. self.bid_price = depth.bids[0].price;
  178. self.mid_price = (self.ask_price + self.bid_price) / Decimal::TWO;
  179. self.mid_price_time_vec.push_back(self.mid_price);
  180. if !self.inventory.is_zero() {
  181. let mut profit_now = if self.inventory > Decimal::ZERO {
  182. (self.mid_price - self.pos_avg_price) / self.pos_avg_price
  183. } else {
  184. (self.pos_avg_price - self.mid_price) / self.pos_avg_price
  185. };
  186. profit_now -= dec!(0.0006);
  187. profit_now.rescale(8);
  188. self.profit_point_vec.push(profit_now);
  189. // let total: Decimal = self.profit_fixed_vec.iter().sum();
  190. self.profit_point = profit_now;
  191. self.profit_point_ema = self.profit_point_ema * dec!(0.99) + self.profit_point * dec!(0.01);
  192. }
  193. }
  194. self.update_fair_price(depth, index).await;
  195. self.update_spread();
  196. self.depth_vec[index] = depth.clone();
  197. if self.mid_price.is_zero() {
  198. return;
  199. }
  200. self.processor().await;
  201. }
  202. pub async fn on_trade(&mut self, trade: &Trade, _index: usize) {
  203. self.trade_long_vec.push_back(trade.clone());
  204. self.trade_short_vec.push_back(trade.clone());
  205. if !self.inventory.is_zero() {
  206. self.trade_fixed_vec.push(trade.clone());
  207. if self.trade_fixed_vec.len() > 100 {
  208. let (bought_sum, sold_sum): (Decimal, Decimal) = self.trade_fixed_vec.iter()
  209. .fold((Decimal::ZERO, Decimal::ZERO), |(buy_sum, sell_sum), item| {
  210. if item.size > Decimal::ZERO {
  211. (buy_sum + item.value.abs(), sell_sum)
  212. } else if item.size < Decimal::ZERO {
  213. (buy_sum, sell_sum + item.value.abs())
  214. } else {
  215. (buy_sum, sell_sum)
  216. }
  217. });
  218. self.money_flow = (bought_sum - sold_sum) / (bought_sum + sold_sum);
  219. self.money_flow.rescale(4);
  220. }
  221. }
  222. self.last_price = trade.price;
  223. // self.processor().await;
  224. }
  225. pub async fn update_level(&mut self) {
  226. self.level = (Decimal::NEGATIVE_ONE + (Decimal::ONE + dec!(8) * self.inventory.abs()).sqrt().unwrap()) / Decimal::TWO;
  227. self.level = min(self.level, dec!(6));
  228. }
  229. pub async fn on_ticker(&mut self, _ticker: &Ticker) {}
  230. pub async fn on_record(&mut self, _record: &Record) {}
  231. pub async fn on_inventory(&mut self, pos_amount: &Decimal, pos_avg_price: &Decimal, min_amount_value: &Decimal) {
  232. if self.mid_price.is_zero() {
  233. return;
  234. }
  235. let prev_inventory = self.inventory;
  236. self.pos_amount = pos_amount.clone();
  237. self.pos_avg_price = pos_avg_price.clone();
  238. self.inventory = (pos_amount / (min_amount_value / self.mid_price)).trunc();
  239. // 小于1但不为0的情况,需要平完
  240. if self.inventory.is_zero() && !pos_amount.is_zero() {
  241. self.inventory = if pos_amount > &Decimal::ZERO {
  242. Decimal::ONE
  243. } else {
  244. Decimal::NEGATIVE_ONE
  245. };
  246. }
  247. if prev_inventory != self.inventory && prev_inventory.is_zero() {
  248. self.prev_trade_time = Utc::now().timestamp_micros();
  249. }
  250. // 重置fair数据,用于重新计算幅度
  251. if prev_inventory != self.inventory {
  252. self.fair_price_time_vec.deque.clear();
  253. }
  254. // 重置资金流计算
  255. if prev_inventory != self.inventory && self.inventory.is_zero() {
  256. self.trade_fixed_vec.clear();
  257. self.profit_point_vec.clear();
  258. self.profit_point = Decimal::ZERO;
  259. self.profit_point_ema = Decimal::ZERO;
  260. self.money_flow = Decimal::ZERO;
  261. }
  262. self.update_level().await;
  263. self.processor().await;
  264. }
  265. pub fn get_real_rate(price_vec: &FixedTimeRangeDeque<Decimal>) -> Decimal {
  266. let last_fair_price = price_vec.deque.iter().last().unwrap();
  267. let min_price = price_vec.deque.iter().min().unwrap();
  268. let max_price = price_vec.deque.iter().max().unwrap();
  269. let up_rate = (last_fair_price - min_price) / min_price;
  270. let down_rate = (max_price - last_fair_price) / max_price;
  271. if up_rate > down_rate {
  272. up_rate
  273. } else {
  274. -down_rate
  275. }
  276. }
  277. pub async fn update_fair_price(&mut self, depth: &Depth, index: usize) {
  278. if self.mid_price.is_zero() {
  279. return;
  280. }
  281. let a1 = &depth.asks[0];
  282. let b1 = &depth.bids[0];
  283. // https://quant.stackexchange.com/questions/50651/how-to-understand-micro-price-aka-weighted-mid-price
  284. let total = a1.value + b1.value;
  285. let fair_price = a1.price * b1.value / total + b1.price * a1.value / total;
  286. // let fair_price = (a1.price + b1.price) / Decimal::TWO;
  287. self.fair_price_vec[index] = if self.fair_price_vec[index].is_zero() {
  288. fair_price
  289. } else {
  290. self.fair_price_vec[index] * dec!(0.5) + fair_price * dec!(0.5)
  291. };
  292. self.fair_price_vec[index].rescale(self.mid_price.scale());
  293. self.volume_vec[index] = a1.size + b1.size;
  294. // 合成公平价格
  295. if !self.fair_price_vec[0].is_zero() && !self.fair_price_vec[1].is_zero() {
  296. self.price_times_avg = if self.price_times_avg.is_zero() {
  297. self.fair_price_vec[1] / self.fair_price_vec[0]
  298. } else {
  299. self.price_times_avg * dec!(0.9995) + dec!(0.0005) * self.fair_price_vec[1] / self.fair_price_vec[0]
  300. };
  301. // 进行价格归一化处理,公平所的价格有可能是带前缀的
  302. // let fair_price_part0 = self.fair_price_vec[0] * dec!(0.2);
  303. // let fair_price_part1 = (self.fair_price_vec[1] / self.price_times_avg) * dec!(0.8);
  304. self.fair_price = self.fair_price_vec[1] / self.price_times_avg;
  305. self.fair_price_time_vec.push_back(self.fair_price);
  306. self.fair_price_long_time_vec.push_back(self.fair_price);
  307. self.fair_price_ema_long = if self.fair_price_ema_long.is_zero() {
  308. self.fair_price
  309. } else {
  310. self.fair_price_ema_long * dec!(0.67) + self.fair_price * dec!(0.33)
  311. };
  312. self.fair_price_ema_short = if self.fair_price_ema_short.is_zero() {
  313. self.fair_price
  314. } else {
  315. self.fair_price_ema_short * dec!(0.999) + self.fair_price * dec!(0.001)
  316. };
  317. if self.fair_price_time_vec.len() < 2 {
  318. return;
  319. }
  320. let mut rate = Self::get_real_rate(&self.fair_price_time_vec);
  321. rate.rescale(8);
  322. // 重置开仓焦点,条件1
  323. if !self.fair_rate_focus_open.is_zero() {
  324. if self.fair_rate_focus_open > Decimal::ZERO && self.spread_ema_1000 < Decimal::ZERO {
  325. self.fair_rate_focus_open = Decimal::ZERO;
  326. }
  327. if self.fair_rate_focus_open < Decimal::ZERO && self.spread_ema_1000 > Decimal::ZERO {
  328. self.fair_rate_focus_open = Decimal::ZERO;
  329. }
  330. }
  331. // 重置开仓焦点,条件2
  332. if !self.fair_rate_focus_open.is_zero() && !self.inventory.is_zero() {
  333. self.fair_rate_focus_open = Decimal::ZERO;
  334. }
  335. // 重置开仓焦点,条件3
  336. if !self.mid_price_focus_open.is_zero() {
  337. let focus_rate = (self.mid_price - self.mid_price_focus_open) / self.mid_price_focus_open;
  338. if self.fair_rate_focus_open > Decimal::ZERO && focus_rate < Decimal::NEGATIVE_ONE * self.params.open_activate / dec!(3) {
  339. self.fair_rate_focus_open = Decimal::ZERO;
  340. }
  341. if self.fair_rate_focus_open < Decimal::ZERO && focus_rate > self.params.open_activate / dec!(3) {
  342. self.fair_rate_focus_open = Decimal::ZERO;
  343. }
  344. }
  345. // 更新程序关注的开仓焦点
  346. if self.fair_rate_focus_open.is_zero() && self.inventory.is_zero() {
  347. // 只有有强度的rate才有资格被称为针,并且差价够大,
  348. if rate.abs() > self.params.open_activate && self.spread.abs() > self.params.min_spread {
  349. // 向上涨,并且fair下穿mid,视为观测阶段开始
  350. if rate > Decimal::ZERO && self.spread < Decimal::ZERO {
  351. self.fair_rate_focus_open = rate;
  352. self.mid_price_focus_open = self.mid_price;
  353. }
  354. // 向下跌,并且fair上穿mid,视为观测阶段开始
  355. if rate < Decimal::ZERO && self.spread > Decimal::ZERO {
  356. self.fair_rate_focus_open = rate;
  357. self.mid_price_focus_open = self.mid_price;
  358. }
  359. }
  360. }
  361. // ============================ 平仓逻辑处理 =======================
  362. // close_rate:
  363. // 大于0:当前价格在均线之上
  364. // 小于0:当前价格在均线之下
  365. let close_rate = rate.clone();
  366. // 重置平仓焦点,条件1
  367. if !self.fair_rate_focus_close.is_zero() && self.inventory.is_zero() {
  368. self.fair_rate_focus_close = Decimal::ZERO;
  369. }
  370. // 重置平仓焦点,条件2
  371. if !self.fair_rate_focus_close.is_zero() && self.fair_rate_focus_close > dec!(-0.1) {
  372. let focus_rate = (self.mid_price - self.fair_price_focus_close) / self.fair_price_focus_close;
  373. if self.fair_rate_focus_close > Decimal::ZERO && focus_rate < Decimal::NEGATIVE_ONE * self.params.close_activate / Decimal::TWO {
  374. self.fair_rate_focus_close = Decimal::ZERO;
  375. }
  376. if self.fair_rate_focus_close < Decimal::ZERO && focus_rate > self.params.close_activate / Decimal::TWO {
  377. self.fair_rate_focus_close = Decimal::ZERO;
  378. }
  379. }
  380. // 更新程序关注的平仓焦点
  381. let close_activate = self.params.open_activate;
  382. if self.fair_rate_focus_close.is_zero() && !self.inventory.is_zero() && close_rate.abs() > close_activate {
  383. // 多单平仓逻辑
  384. if self.inventory > Decimal::ZERO && close_rate > Decimal::ZERO {
  385. if self.profit_point > Decimal::ZERO {
  386. self.fair_rate_focus_close = close_rate;
  387. self.fair_price_focus_close = self.mid_price;
  388. } else if self.t_diff.is_zero() {
  389. self.fair_rate_focus_close = close_rate;
  390. self.fair_price_focus_close = self.mid_price;
  391. }
  392. }
  393. // 空单平仓逻辑
  394. if self.inventory < Decimal::ZERO && close_rate < Decimal::ZERO {
  395. if self.profit_point > Decimal::ZERO {
  396. self.fair_rate_focus_close = close_rate;
  397. self.fair_price_focus_close = self.fair_price;
  398. } else if self.t_diff.is_zero() {
  399. self.fair_rate_focus_close = close_rate;
  400. self.fair_price_focus_close = self.fair_price;
  401. }
  402. }
  403. }
  404. // ============================ 平仓特殊逻辑处理1 =======================
  405. // if self.fair_rate_focus_close.is_zero() && !self.inventory.is_zero() && self.profit_point < dec!(-0.01) {
  406. // self.fair_rate_focus_close = dec!(-0.11);
  407. // self.fair_price_focus_close = self.mid_price;
  408. //
  409. // // let prev_open_activate = self.params.open_activate;
  410. // // self.params.open_activate = self.params.open_activate * dec!(1.5);
  411. //
  412. // info!("----------------------------------------");
  413. // // info!("止损,参数调整:{} -> {}", prev_open_activate, self.params.open_activate);
  414. // info!("硬止损, 在价格{}处,成本价{},价值={}, p={}。", self.fair_price_focus_close, self.pos_avg_price, self.pos_avg_price*self.pos_amount, self.profit_point);
  415. // info!("----------------------------------------");
  416. // }
  417. // ============================ 平仓特殊逻辑处理2 =======================
  418. if self.fair_rate_focus_close.is_zero() && !self.inventory.is_zero() && self.profit_point_vec.len() > 1 {
  419. let prev_profit_point = self.profit_point_vec[self.profit_point_vec.len() - 2];
  420. let profit_point = self.profit_point_vec[self.profit_point_vec.len() - 1];
  421. if (prev_profit_point >= Decimal::ZERO && profit_point < Decimal::ZERO) || (prev_profit_point > Decimal::ZERO && profit_point <= Decimal::ZERO) {
  422. self.fair_rate_focus_close = dec!(-0.12);
  423. self.fair_price_focus_close = self.mid_price;
  424. info!("----------------------------------------");
  425. info!("止损逻辑2, 在价格{}处,成本价{},价值={}, p={}。", self.fair_price_focus_close, self.pos_avg_price, self.pos_avg_price*self.pos_amount, self.profit_point);
  426. info!("----------------------------------------");
  427. }
  428. }
  429. }
  430. // // 判断价格是否回归
  431. // if !self.is_regressed && self.inventory > Decimal::ZERO && self.spread_sma_1000 < max(self.spread_sma, self.spread_sma_2000) {
  432. // self.is_regressed = true
  433. // } else if !self.is_regressed && self.inventory < Decimal::ZERO && self.spread_sma_1000 > min(self.spread_sma, self.spread_sma_2000) {
  434. // self.is_regressed = true
  435. // }
  436. }
  437. pub fn update_spread(&mut self) {
  438. if self.mid_price.is_zero() || self.fair_price.is_zero() {
  439. return;
  440. }
  441. self.spread = (self.fair_price - self.mid_price) / self.mid_price;
  442. // self.spread.rescale(8);
  443. self.spread_vec.push(self.spread);
  444. self.spread_ema_1000 = if self.spread_ema_1000.is_zero() {
  445. self.spread
  446. } else {
  447. self.spread_ema_1000 * dec!(0.999) + self.spread * dec!(0.001)
  448. };
  449. // self.spread_sma_1000.rescale(8);
  450. // self.spread_sma_1000_time_vec.push_back(self.spread_ema_1000);
  451. while self.spread_vec.len() > 1_000 {
  452. self.spread_vec.remove(0);
  453. }
  454. }
  455. pub fn update_delta(&mut self) {
  456. // -2表示不想成交
  457. // -1表示市价成交(委托对手盘的价格,但不一定能市价成交),这里再想想吧,经常委托出去没成交,明显比别人慢了
  458. // 0是买一/卖一成交
  459. if self.fair_price.is_zero() {
  460. return;
  461. }
  462. // 可能是趋势
  463. // let is_open_long = self.spread_sma_1000 - self.spread_sma > self.params.open && self.fair_price > self.mid_price;
  464. // let is_open_short = self.spread_sma_1000 - self.spread_sma < self.params.open * Decimal::NEGATIVE_ONE && self.fair_price < self.mid_price;
  465. // 可能是接针
  466. let is_open_long = self.fair_rate_focus_open < Decimal::ZERO;
  467. let is_open_short = self.fair_rate_focus_open > Decimal::ZERO;
  468. let is_close_long = self.inventory > Decimal::ZERO && (self.fair_rate_focus_close > Decimal::ZERO || self.fair_rate_focus_close < dec!(-0.1));
  469. let is_close_short = self.inventory < Decimal::ZERO && (self.fair_rate_focus_close < Decimal::ZERO || self.fair_rate_focus_close < dec!(-0.1));
  470. self.bid_delta = dec!(-2);
  471. self.ask_delta = dec!(-2);
  472. if is_close_long {
  473. // let close_rate = (self.error_rate / dec!(0.5)) * self.params.close;
  474. //
  475. // self.ask_delta = self.mid_price * close_rate;
  476. self.ask_delta = self.mid_price * self.params.close;
  477. } else if is_close_short {
  478. // let close_rate = (self.error_rate / dec!(0.5)) * self.params.close;
  479. //
  480. // self.bid_delta = self.mid_price * close_rate;
  481. self.bid_delta = self.mid_price * self.params.close;
  482. } else if is_open_long {
  483. // let is_open_long_market = self.spread_sma_1000 - self.spread_sma > self.params.open_market;
  484. // self.bid_delta = if is_open_long_market {
  485. // dec!(-1)
  486. // } else {
  487. // dec!(0)
  488. // };
  489. self.bid_delta = self.params.open * self.mid_price;
  490. } else if is_open_short {
  491. // let is_open_short_market = self.spread_sma_1000 - self.spread_sma < self.params.open_market * Decimal::NEGATIVE_ONE;
  492. // self.ask_delta = if is_open_short_market {
  493. // dec!(-1)
  494. // } else {
  495. // dec!(0)
  496. // }
  497. self.ask_delta = self.params.open * self.mid_price;
  498. }
  499. }
  500. pub fn update_optimal_ask_and_bid(&mut self) {
  501. self.optimal_ask_price = if self.ask_delta == dec!(-1) {
  502. self.bid_price
  503. } else if self.ask_delta == dec!(-2) {
  504. Self::DONT_VIEW
  505. } else {
  506. max(self.ask_price + self.ask_delta, self.bid_price)
  507. };
  508. self.optimal_bid_price = if self.bid_delta == dec!(-1) {
  509. self.ask_price
  510. } else if self.bid_delta == dec!(-2) {
  511. Self::DONT_VIEW
  512. } else {
  513. min(self.bid_price - self.bid_delta, self.ask_price)
  514. };
  515. self.optimal_ask_price.rescale(self.mid_price.scale());
  516. self.optimal_bid_price.rescale(self.mid_price.scale());
  517. }
  518. pub fn update_t_diff(&mut self) {
  519. if self.prev_trade_time > 0 {
  520. let time_diff_decimal = Decimal::from_i64(Utc::now().timestamp_micros() - self.prev_trade_time).unwrap();
  521. self.t_diff = max(Decimal::ONE - time_diff_decimal / Decimal::from_i64(Self::TIME_DIFF_RANGE_MICROS).unwrap(), Decimal::ZERO);
  522. } else {
  523. self.t_diff = Decimal::ONE;
  524. }
  525. }
  526. pub fn check_ready(&mut self) {
  527. if self.is_ready {
  528. return;
  529. }
  530. if self.mid_price == Decimal::ZERO {
  531. return;
  532. }
  533. if self.fair_price == Decimal::ZERO {
  534. return;
  535. }
  536. if self.ask_price == Decimal::ZERO {
  537. return;
  538. }
  539. if self.bid_price == Decimal::ZERO {
  540. return;
  541. }
  542. if self.trade_long_vec.len() < 100 {
  543. return;
  544. }
  545. self.is_ready = true;
  546. info!("========================================行情数据预热完毕==================================")
  547. }
  548. // #[instrument(skip(self), level="TRACE")]
  549. async fn processor(&mut self) {
  550. self.check_ready();
  551. if !self.is_ready {
  552. return;
  553. }
  554. self.trades_volume_short = self.trade_short_vec.deque.iter().map(|item| item.value).sum();
  555. self.trades_volume_short_ema = if self.trades_volume_short_ema.is_zero() {
  556. self.trades_volume_short
  557. } else {
  558. self.trades_volume_short_ema * dec!(0.9995) + self.trades_volume_short * dec!(0.0005)
  559. };
  560. self.update_t_diff();
  561. self.update_delta();
  562. self.update_optimal_ask_and_bid();
  563. // let mut smm = Decimal::ZERO;
  564. // if !self.depth_vec[1].time.is_zero() {
  565. // let sma = self.depth_vec[1].asks[0].price;
  566. // let smb = self.depth_vec[1].bids[0].price;
  567. // smm = (sma + smb) / Decimal::TWO;
  568. // }
  569. // let cci_arc = self.cci_arc.clone();
  570. let now = Decimal::from_i64(Utc::now().timestamp_millis()).unwrap();
  571. let mid_price = self.mid_price;
  572. let ask_price = self.ask_price;
  573. let bid_price = self.bid_price;
  574. let last_price = self.last_price;
  575. let fair_price = self.fair_price;
  576. let spread = self.profit_point;
  577. let spread_max = self.profit_point_ema;
  578. let spread_min = Self::DONT_VIEW;
  579. // let spread = self.price_times_avg;
  580. // let spread_max = self.fair_price_vec[1] / self.fair_price_vec[0];
  581. // let spread_min = self.fair_price / self.mid_price;
  582. let optimal_ask_price = self.optimal_ask_price;
  583. let optimal_bid_price = self.optimal_bid_price;
  584. let inventory = self.inventory;
  585. let sigma_square = if self.fair_price_time_vec.len() > 1 {
  586. Self::get_real_rate(&self.fair_price_time_vec)
  587. } else {
  588. Decimal::ZERO
  589. };
  590. // let sigma_square = self.error_rate;
  591. let gamma = self.fair_rate_focus_open;
  592. let kappa = self.fair_rate_focus_close;
  593. let flow_ratio = Decimal::ZERO;
  594. let need_append = now - self.prev_insert_time > Decimal::ONE_HUNDRED;
  595. if !need_append {
  596. return;
  597. }
  598. self.debug_sender.unbounded_send(vec![
  599. now,
  600. mid_price,
  601. ask_price,
  602. bid_price,
  603. last_price,
  604. spread,
  605. spread_max,
  606. spread_min,
  607. optimal_ask_price,
  608. optimal_bid_price,
  609. inventory,
  610. sigma_square,
  611. gamma,
  612. kappa,
  613. flow_ratio,
  614. fair_price
  615. ]).unwrap();
  616. self.prev_insert_time = Decimal::from(Utc::now().timestamp_millis())
  617. }
  618. // #[instrument(skip(self, ref_ticker_map), level="TRACE")]
  619. pub fn get_ref_price(&mut self, _ref_ticker_map: &BTreeMap<String, Ticker>) -> Vec<Vec<Decimal>> {
  620. vec![]
  621. }
  622. }