#![allow(unused, non_snake_case, clippy::all)]
use crate::Value;
use crate::get_value;
use crate::runtime::*;
use crate::exchange_generated::ExchangeBase;
use crate::exchange::ExchangeRuntime;
use crate::exchange::CallDynamicChecked;
use crate::pro::*;
pub struct HollaexCore {
pub parent: crate::exchanges::hollaex::HollaexCore,
}
impl HollaexCore {
pub fn new(config: Option<crate::Value>) -> Self {
let mut s = Self { parent: crate::exchanges::hollaex::HollaexCore::new(config) };
s.init();
s
}
pub fn init(&mut self) {
let described = HollaexCore::describe(self);
self.initialize_properties(described);
<Self as crate::exchange_generated::ExchangeBase>::after_construct(self);
}
#[inline]
pub fn bind(&mut self) {}
}
impl crate::exchange::DerivedExchange for HollaexCore {
fn nonce(&self, ) -> crate::Value {
crate::exchange::DerivedExchange::nonce(&self.parent)
}
fn parse_ticker(&self, ticker: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_ticker(&self.parent, ticker, market)
}
fn parse_trade(&self, trade: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_trade(&self.parent, trade, market)
}
fn parse_order(&self, order: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_order(&self.parent, order, market)
}
fn parse_market(&self, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_market(&self.parent, market)
}
fn parse_ohlcv(&self, ohlcv: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_ohlcv(&self.parent, ohlcv, market)
}
fn parse_order_book(&self, ob: crate::Value, symbol: crate::Value, ts: crate::Value, bk: crate::Value, ak: crate::Value, pk: crate::Value, ak2: crate::Value, ck: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_order_book(&self.parent, ob, symbol, ts, bk, ak, pk, ak2, ck)
}
fn parse_balance(&self, response: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_balance(&self.parent, response)
}
fn parse_position(&self, position: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_position(&self.parent, position, market)
}
fn parse_funding_rate(&self, rate: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_funding_rate(&self.parent, rate, market)
}
fn parse_deposit(&self, tx: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_deposit(&self.parent, tx, currency)
}
fn parse_deposit_address(&self, depositAddress: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_deposit_address(&self.parent, depositAddress, currency)
}
fn parse_last_price(&self, entry: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_last_price(&self.parent, entry, market)
}
fn parse_withdrawal(&self, tx: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_withdrawal(&self.parent, tx, currency)
}
fn parse_ledger_entry(&self, entry: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_ledger_entry(&self.parent, entry, currency)
}
fn parse_transfer(&self, transfer: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_transfer(&self.parent, transfer, currency)
}
fn parse_currency(&self, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_currency(&self.parent, currency)
}
fn parse_bid_ask(&self, bidask: crate::Value, price_key: crate::Value, amount_key: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_bid_ask(&self.parent, bidask, price_key, amount_key, market)
}
fn parse_open_interest(&self, interest: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_open_interest(&self.parent, interest, market)
}
fn parse_liquidation(&self, liquidation: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_liquidation(&self.parent, liquidation, market)
}
fn parse_funding_rate_history(&self, entry: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_funding_rate_history(&self.parent, entry, market)
}
fn parse_margin_modification(&self, data: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_margin_modification(&self.parent, data, market)
}
fn parse_account(&self, account: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_account(&self.parent, account)
}
fn parse_my_trade(&self, trade: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_my_trade(&self.parent, trade, market)
}
fn parse_transaction(&self, transaction: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_transaction(&self.parent, transaction, currency)
}
fn parse_borrow_interest(&self, info: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_borrow_interest(&self.parent, info, market)
}
fn parse_adl_rank(&self, info: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_adl_rank(&self.parent, info, market)
}
fn parse_income(&self, info: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_income(&self.parent, info, market)
}
fn parse_greeks(&self, greeks: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_greeks(&self.parent, greeks, market)
}
fn parse_margin_mode(&self, margin_mode: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_margin_mode(&self.parent, margin_mode, market)
}
fn parse_conversion(&self, conversion: crate::Value, from_currency: crate::Value, to_currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_conversion(&self.parent, conversion, from_currency, to_currency)
}
fn parse_borrow_rate(&self, info: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_borrow_rate(&self.parent, info, currency)
}
fn parse_leverage(&self, leverage: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_leverage(&self.parent, leverage, market)
}
fn parse_market_leverage_tiers(&self, info: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_market_leverage_tiers(&self.parent, info, market)
}
fn parse_deposit_withdraw_fee(&self, fee: crate::Value, currency: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_deposit_withdraw_fee(&self.parent, fee, currency)
}
fn parse_prediction_trade(&self, trade: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_prediction_trade(&self.parent, trade, market)
}
fn parse_prediction_order(&self, order: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_prediction_order(&self.parent, order, market)
}
fn parse_prediction_position(&self, position: crate::Value, market: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::parse_prediction_position(&self.parent, position, market)
}
fn create_expired_option_market(&self, symbol: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::create_expired_option_market(&self.parent, symbol)
}
fn sign(&self, path: crate::Value, api: crate::Value, method: crate::Value, params: crate::Value, headers: crate::Value, body: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::sign(&self.parent, path, api, method, params, headers, body)
}
fn handle_errors(&self, code: crate::Value, reason: crate::Value, url: crate::Value, method: crate::Value, headers: crate::Value, body: crate::Value, response: crate::Value, request_headers: crate::Value, request_body: crate::Value) -> crate::Value {
crate::exchange::DerivedExchange::handle_errors(&self.parent, code, reason, url, method, headers, body, response, request_headers, request_body)
}
}
impl crate::exchange_generated::ExchangeBase for HollaexCore {
fn call_dynamic<'a>(&'a mut self, method: &'a str, args: Vec<crate::Value>)
-> std::pin::Pin<Box<dyn std::future::Future<Output = crate::Value> + Send + 'a>>
{
Box::pin(async move {
match method {
"handle_error_message" => self.handle_error_message(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)),
"handle_message" => { self.handle_message(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"handle_pong" => self.handle_pong(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)),
"ping" => self.ping(args.get(0).cloned().unwrap_or(crate::Value::Null)),
"watch_balance" => self.watch_balance(&args[..]).await,
"watch_my_trades" => self.watch_my_trades(&args[..]).await,
"watch_order_book" => self.watch_order_book(args.get(0).cloned().unwrap_or(crate::Value::Null), &args[1.min(args.len())..]).await,
"watch_orders" => self.watch_orders(&args[..]).await,
"watch_private" => self.watch_private(args.get(0).cloned().unwrap_or(crate::Value::Null), &args[1.min(args.len())..]).await,
"watch_public" => self.watch_public(args.get(0).cloned().unwrap_or(crate::Value::Null), &args[1.min(args.len())..]).await,
"watch_trades" => self.watch_trades(args.get(0).cloned().unwrap_or(crate::Value::Null), &args[1.min(args.len())..]).await,
_ => crate::exchange_generated::ExchangeBase::call_dynamic(&mut self.parent, method, args).await,
}
})
}
}
impl HollaexCore {
#[allow(dead_code, unreachable_patterns, clippy::all)]
pub fn dispatch_ws_handler(&mut self, __name: &crate::Value, args: &[crate::Value]) -> crate::Value {
let __n = match __name { crate::Value::Str(s) => s.as_ref(), _ => return crate::Value::Null };
match __n {
"handle_balance" => { self.handle_balance(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"handle_error_message" => self.handle_error_message(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)),
"handle_message" => { self.handle_message(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"handle_my_trades" => { self.handle_my_trades(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null), &args[2.min(args.len())..]); crate::Value::Null },
"handle_order" => { self.handle_order(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null), &args[2.min(args.len())..]); crate::Value::Null },
"handle_order_book" => { self.handle_order_book(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"handle_pong" => self.handle_pong(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)),
"handle_trades" => { self.handle_trades(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"on_close" => { self.on_close(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"on_error" => { self.on_error(args.get(0).cloned().unwrap_or(crate::Value::Null), args.get(1).cloned().unwrap_or(crate::Value::Null)); crate::Value::Null },
"ping" => self.ping(args.get(0).cloned().unwrap_or(crate::Value::Null)),
"watch_balance" => { crate::exchange_stubs::enqueue_spawn("watch_balance", args.to_vec()); crate::Value::Null },
"watch_my_trades" => { crate::exchange_stubs::enqueue_spawn("watch_my_trades", args.to_vec()); crate::Value::Null },
"watch_order_book" => { crate::exchange_stubs::enqueue_spawn("watch_order_book", args.to_vec()); crate::Value::Null },
"watch_orders" => { crate::exchange_stubs::enqueue_spawn("watch_orders", args.to_vec()); crate::Value::Null },
"watch_private" => { crate::exchange_stubs::enqueue_spawn("watch_private", args.to_vec()); crate::Value::Null },
"watch_public" => { crate::exchange_stubs::enqueue_spawn("watch_public", args.to_vec()); crate::Value::Null },
"watch_trades" => { crate::exchange_stubs::enqueue_spawn("watch_trades", args.to_vec()); crate::Value::Null },
_ => crate::Value::Null,
}
}
}
impl std::ops::Deref for HollaexCore {
type Target = crate::exchange::Exchange;
fn deref(&self) -> &crate::exchange::Exchange { std::ops::Deref::deref(&self.parent) }
}
impl std::ops::DerefMut for HollaexCore {
fn deref_mut(&mut self) -> &mut crate::exchange::Exchange { std::ops::DerefMut::deref_mut(&mut self.parent) }
}
impl HollaexCore {
pub fn describe(&self) -> Value {
return self.deep_extend(self.parent.describe(), &[Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("has".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("ws".to_string(), Value::Bool(true));
m.insert("watchBalance".to_string(), Value::Bool(true));
m.insert("watchMyTrades".to_string(), Value::Bool(false));
m.insert("watchOHLCV".to_string(), Value::Bool(false));
m.insert("watchOrderBook".to_string(), Value::Bool(true));
m.insert("watchOrders".to_string(), Value::Bool(true));
m.insert("watchTicker".to_string(), Value::Bool(false));
m.insert("watchTickers".to_string(), Value::Bool(false));
m.insert("watchTrades".to_string(), Value::Bool(true));
m.insert("watchTradesForSymbols".to_string(), Value::Bool(false));
m
}));
m.insert("urls".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("api".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("ws".to_string(), Value::Str("wss://api.hollaex.com/stream".into()));
m
}));
m.insert("test".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("ws".to_string(), Value::Str("wss://api.sandbox.hollaex.com/stream".into()));
m
}));
m
}));
m.insert("options".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("watchBalance".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
m.insert("watchOrders".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
m
}));
m.insert("streaming".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("ping".to_string(), Value::Str("ping".into()).clone());
m
}));
m.insert("exceptions".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("ws".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("exact".to_string(), Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("Bearer or HMAC authentication required".to_string(), Value::Str("BadSymbol".into()).clone());
m.insert("Error: wrong input".to_string(), Value::Str("BadRequest".into()).clone());
m
}));
m
}));
m
}));
m
})]);
Value::Null
}
pub async fn watch_order_book(&mut self, mut symbol: Value, optional_args: &[Value]) -> Value {
let mut limit = get_arg(optional_args, 0, Value::Null);
let mut params = get_arg(optional_args, 1, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
if (self.markets.clone() == Value::Null) {
self.load_markets(&[]).await;
}
let mut market: Value = self.market(symbol);
let mut messageHash: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", Value::Str("orderbook".into()), Value::Str(":".into())).into()), market.as_map().and_then(|__m| __m.get("id")).cloned().unwrap_or(Value::Null)).into());
let mut orderbook: Value = self.watch_public(messageHash, &[params]).await;
return orderbook.limit();
Value::Null
}
pub fn handle_order_book(&mut self, mut client: Value, mut message: Value) {
let __pro_message_arc: std::sync::Arc<indexmap::IndexMap<String, Value>> = (match &message { Value::Dict(__d) => __d.clone(), _ => std::sync::Arc::new(indexmap::IndexMap::new()) });
let __pro_message: &indexmap::IndexMap<String, Value> = &__pro_message_arc;
let mut marketId: Value = self.safe_string_k(message, "symbol", &[]);
let mut channel: Value = (match __pro_message.get("topic").cloned() { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null });
let mut market: Value = self.safe_market(&[marketId.clone()]);
let mut symbol: Value = market.as_map().and_then(|__m| __m.get("symbol")).cloned().unwrap_or(Value::Null);
if (symbol == Value::Null) {
return;
}
let mut data: Value = (match __pro_message.get("data").cloned() { Some(__v) if matches!(__v, Value::Dict(_)) => __v, _ => Value::Null });
let mut timestamp: Value = self.safe_string_k(data.clone(), "timestamp", &[]);
let mut timestampMs: Value = self.parse8601(timestamp);
let mut snapshot: Value = self.parse_order_book(data, symbol.clone(), &[timestampMs]);
let mut orderbook: Value = Value::Null;
if !(in_op(&self.orderbooks, &symbol)) {
orderbook = self.order_book(&[snapshot.clone()]);
if let Value::Dict(__d) = &mut self.orderbooks { std::sync::Arc::make_mut(__d).insert(crate::runtime::stringify_param(&symbol), orderbook.clone()); }
} else {
orderbook = get_value(&self.orderbooks, &symbol);
if (orderbook == Value::Null) {
return;
}
orderbook.reset(snapshot);
}
let mut messageHash: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", channel, Value::Str(":".into())).into()), marketId).into());
client.resolve(&[orderbook, messageHash]);
}
pub async fn watch_trades(&mut self, mut symbol: Value, optional_args: &[Value]) -> Value {
let mut since = get_arg(optional_args, 0, Value::Null);
let mut limit = get_arg(optional_args, 1, Value::Null);
let mut params = get_arg(optional_args, 2, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
if (self.markets.clone() == Value::Null) {
self.load_markets(&[]).await;
}
let mut market: Value = self.market(symbol.clone());
symbol = market.as_map().and_then(|__m| __m.get("symbol")).cloned().unwrap_or(Value::Null);
let mut messageHash: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", Value::Str("trade".into()), Value::Str(":".into())).into()), market.as_map().and_then(|__m| __m.get("id")).cloned().unwrap_or(Value::Null)).into());
let mut trades: Value = self.watch_public(messageHash, &[params]).await;
if is_true(&self.newUpdates) {
limit = trades.get_limit(symbol, limit.clone());
}
return self.filter_by_since_limit(trades, &[since, limit, Value::Str("timestamp".into()), Value::Bool(true)]);
Value::Null
}
pub fn handle_trades(&mut self, mut client: Value, mut message: Value) {
let __pro_message_arc: std::sync::Arc<indexmap::IndexMap<String, Value>> = (match &message { Value::Dict(__d) => __d.clone(), _ => std::sync::Arc::new(indexmap::IndexMap::new()) });
let __pro_message: &indexmap::IndexMap<String, Value> = &__pro_message_arc;
let mut channel: Value = (match __pro_message.get("topic").cloned() { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null });
let mut marketId: Value = self.safe_string_k(message, "symbol", &[]);
let mut market: Value = self.safe_market(&[marketId.clone()]);
let mut symbol: Value = market.as_map().and_then(|__m| __m.get("symbol")).cloned().unwrap_or(Value::Null);
let mut stored: Value = self.safe_value(self.trades.clone(), symbol.clone(), &[]);
if (stored == Value::Null) {
let mut limit: Value = self.safe_integer_k(self.options.clone(), "tradesLimit", &[Value::Int(1000)]);
stored = ArrayCache::new(limit);
if let Value::Dict(__d) = &mut self.trades { std::sync::Arc::make_mut(__d).insert(crate::runtime::stringify_param(&symbol), stored.clone()); }
}
let mut data: Value = (match __pro_message.get("data").cloned() { Some(__v) if matches!(__v, Value::Arr(_)) => __v, _ => Value::from(vec![]) });
let mut parsedTrades: Value = self.parse_trades(data, &[market]);
{
let mut j: Value = Value::Int(0);
let mut __for_first_372: bool = true;
while { if !__for_first_372 { j = (match (&(j), &(Value::Int(1))) { (Value::Int(x), Value::Int(y)) => Value::Int(x + y), (Value::Int(x), Value::Float(y)) => Value::Float(*x as f64 + *y), (Value::Float(x), Value::Int(y)) => Value::Float(*x + *y as f64), (Value::Float(x), Value::Float(y)) => Value::Float(x + y), _ => Value::Null }); } __for_first_372 = false; j.as_f64().unwrap_or(f64::NAN) < ((parsedTrades.len() as i64) as f64) } {
stored.append(parsedTrades.as_array().and_then(|__arr| match &j { Value::Int(__n) => __arr.get(*__n as usize), Value::Str(__s) => __s.parse::<usize>().ok().and_then(|__n| __arr.get(__n)), _ => None }).cloned().unwrap_or(Value::Null));
}
}
let mut messageHash: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", channel, Value::Str(":".into())).into()), marketId).into());
client.resolve(&[stored.clone(), messageHash]);
client.resolve(&[stored, channel]);
}
pub async fn watch_my_trades(&mut self, optional_args: &[Value]) -> Value {
let mut symbol = get_arg(optional_args, 0, Value::Null);
let mut since = get_arg(optional_args, 1, Value::Null);
let mut limit = get_arg(optional_args, 2, Value::Null);
let mut params = get_arg(optional_args, 3, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
if (self.markets.clone() == Value::Null) {
self.load_markets(&[]).await;
}
let mut messageHash: Value = Value::Str("usertrade".into());
let mut market: Value = Value::Null;
if (symbol != Value::Null) {
market = self.market(symbol.clone());
symbol = market.as_map().and_then(|__m| __m.get("symbol")).cloned().unwrap_or(Value::Null);
messageHash = Value::Str(format!("{}{}", messageHash, Value::Str(format!("{}{}", Value::Str(":".into()), market.as_map().and_then(|__m| __m.get("id")).cloned().unwrap_or(Value::Null)).into())).into());
}
let mut trades: Value = self.watch_private(messageHash, &[params]).await;
if is_true(&self.newUpdates) {
limit = trades.get_limit(symbol.clone(), limit.clone());
}
return self.filter_by_symbol_since_limit(trades, &[symbol, since, limit, Value::Bool(true)]);
Value::Null
}
pub fn handle_my_trades(&mut self, mut client: Value, mut message: Value, optional_args: &[Value]) {
let mut subscription = get_arg(optional_args, 0, Value::Null);
let __message_empty = indexmap::IndexMap::new();
let message = message.as_map().unwrap_or(&__message_empty);
let mut channel: Value = (match message.get("topic") { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s.clone()), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null });
let mut rawTrades: Value = (match message.get("data") { Some(__v) if !matches!(__v, Value::Null) && !matches!(__v, Value::Str(__s) if __s.is_empty()) => __v.clone(), _ => Value::Null });
let mut dataLength: Value = get_array_length(&rawTrades);
if is_equal(&dataLength, &Value::Int(0)) {
return;
}
if (self.myTrades.clone() == Value::Null) {
let mut limit: Value = self.safe_integer_k(self.options.clone(), "tradesLimit", &[Value::Int(1000)]);
self.myTrades = ArrayCache::new(limit);
}
let mut stored: Value = self.myTrades.clone();
let mut marketIds: Value = Value::Map({
let mut m = indexmap::IndexMap::new();
m
});
{
let mut i: Value = Value::Int(0);
let mut __for_first_373: bool = true;
while { if !__for_first_373 { i = (match (&(i), &(Value::Int(1))) { (Value::Int(x), Value::Int(y)) => Value::Int(x + y), (Value::Int(x), Value::Float(y)) => Value::Float(*x as f64 + *y), (Value::Float(x), Value::Int(y)) => Value::Float(*x + *y as f64), (Value::Float(x), Value::Float(y)) => Value::Float(x + y), _ => Value::Null }); } __for_first_373 = false; i.as_f64().unwrap_or(f64::NAN) < get_array_length(&rawTrades).as_f64().unwrap_or(f64::NAN) } {
let mut trade: Value = get_value(&rawTrades, &i);
let mut trade: Value = get_value(&rawTrades, &i);
let mut parsed: Value = self.parse_trade(trade.clone(), &[]);
stored.append(parsed);
let mut symbol: Value = crate::value::get_value_k(&trade, "symbol");
let mut market: Value = self.market(symbol);
let mut marketId: Value = market.as_map().and_then(|__m| __m.get("id")).cloned().unwrap_or(Value::Null);
if (marketId != Value::Null) {
if let Value::Dict(__d) = &mut marketIds { std::sync::Arc::make_mut(__d).insert(crate::runtime::stringify_param(&marketId), Value::Bool(true)); }
}
}
}
client.resolve(&[self.myTrades.clone(), channel.clone()]);
let mut keys: Value = object_keys(&marketIds);
{
let mut i: Value = Value::Int(0);
let mut __for_first_374: bool = true;
while { if !__for_first_374 { i = (match (&(i), &(Value::Int(1))) { (Value::Int(x), Value::Int(y)) => Value::Int(x + y), (Value::Int(x), Value::Float(y)) => Value::Float(*x as f64 + *y), (Value::Float(x), Value::Int(y)) => Value::Float(*x + *y as f64), (Value::Float(x), Value::Float(y)) => Value::Float(x + y), _ => Value::Null }); } __for_first_374 = false; i.as_f64().unwrap_or(f64::NAN) < ((keys.len() as i64) as f64) } {
let mut marketId: Value = keys.as_array().and_then(|__arr| match &i { Value::Int(__n) => __arr.get(*__n as usize), Value::Str(__s) => __s.parse::<usize>().ok().and_then(|__n| __arr.get(__n)), _ => None }).cloned().unwrap_or(Value::Null);
let mut messageHash: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", channel, Value::Str(":".into())).into()), marketId).into());
client.resolve(&[self.myTrades.clone(), messageHash]);
}
}
}
pub async fn watch_orders(&mut self, optional_args: &[Value]) -> Value {
let mut symbol = get_arg(optional_args, 0, Value::Null);
let mut since = get_arg(optional_args, 1, Value::Null);
let mut limit = get_arg(optional_args, 2, Value::Null);
let mut params = get_arg(optional_args, 3, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
if (self.markets.clone() == Value::Null) {
self.load_markets(&[]).await;
}
let mut messageHash: Value = Value::Str("order".into());
let mut market: Value = Value::Null;
if (symbol != Value::Null) {
market = self.market(symbol.clone());
symbol = market.as_map().and_then(|__m| __m.get("symbol")).cloned().unwrap_or(Value::Null);
messageHash = Value::Str(format!("{}{}", messageHash, Value::Str(format!("{}{}", Value::Str(":".into()), market.as_map().and_then(|__m| __m.get("id")).cloned().unwrap_or(Value::Null)).into())).into());
}
let mut orders: Value = self.watch_private(messageHash, &[params]).await;
if is_true(&self.newUpdates) {
limit = orders.get_limit(symbol.clone(), limit.clone());
}
return self.filter_by_symbol_since_limit(orders, &[symbol, since, limit, Value::Bool(true)]);
Value::Null
}
pub fn handle_order(&mut self, mut client: Value, mut message: Value, optional_args: &[Value]) {
let mut subscription = get_arg(optional_args, 0, Value::Null);
let __message_empty = indexmap::IndexMap::new();
let message = message.as_map().unwrap_or(&__message_empty);
let mut channel: Value = (match message.get("topic") { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s.clone()), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null });
let mut data: Value = (match message.get("data") { Some(__v) if !matches!(__v, Value::Null) && !matches!(__v, Value::Str(__s) if __s.is_empty()) => __v.clone(), _ => Value::Map({
let mut m = indexmap::IndexMap::new();
m
}) });
let mut dataLength: Value = get_array_length(&data);
if is_equal(&dataLength, &Value::Int(0)) {
return;
}
if (self.orders.clone() == Value::Null) {
let mut limit: Value = self.safe_integer_k(self.options.clone(), "ordersLimit", &[Value::Int(1000)]);
self.orders = ArrayCacheBySymbolById::new(limit);
}
let mut stored: Value = self.orders.clone();
let mut rawOrders: Value = Value::Null;
if !(matches!(&data, Value::Arr(_))) {
rawOrders = Value::from(vec![data.clone()]);
} else {
rawOrders = data;
}
let mut marketIds: Value = Value::Map({
let mut m = indexmap::IndexMap::new();
m
});
{
let mut i: Value = Value::Int(0);
let mut __for_first_375: bool = true;
while { if !__for_first_375 { i = (match (&(i), &(Value::Int(1))) { (Value::Int(x), Value::Int(y)) => Value::Int(x + y), (Value::Int(x), Value::Float(y)) => Value::Float(*x as f64 + *y), (Value::Float(x), Value::Int(y)) => Value::Float(*x + *y as f64), (Value::Float(x), Value::Float(y)) => Value::Float(x + y), _ => Value::Null }); } __for_first_375 = false; i.as_f64().unwrap_or(f64::NAN) < ((rawOrders.len() as i64) as f64) } {
let mut order: Value = rawOrders.as_array().and_then(|__arr| match &i { Value::Int(__n) => __arr.get(*__n as usize), Value::Str(__s) => __s.parse::<usize>().ok().and_then(|__n| __arr.get(__n)), _ => None }).cloned().unwrap_or(Value::Null);
let mut parsed: Value = self.parse_order(order.clone(), &[]);
stored.append(parsed);
let mut symbol: Value = crate::value::get_value_k(&order, "symbol");
let mut market: Value = self.market(symbol);
let mut marketId: Value = market.as_map().and_then(|__m| __m.get("id")).cloned().unwrap_or(Value::Null);
if (marketId != Value::Null) {
if let Value::Dict(__d) = &mut marketIds { std::sync::Arc::make_mut(__d).insert(crate::runtime::stringify_param(&marketId), Value::Bool(true)); }
}
}
}
client.resolve(&[self.orders.clone(), channel.clone()]);
let mut keys: Value = object_keys(&marketIds);
{
let mut i: Value = Value::Int(0);
let mut __for_first_376: bool = true;
while { if !__for_first_376 { i = (match (&(i), &(Value::Int(1))) { (Value::Int(x), Value::Int(y)) => Value::Int(x + y), (Value::Int(x), Value::Float(y)) => Value::Float(*x as f64 + *y), (Value::Float(x), Value::Int(y)) => Value::Float(*x + *y as f64), (Value::Float(x), Value::Float(y)) => Value::Float(x + y), _ => Value::Null }); } __for_first_376 = false; i.as_f64().unwrap_or(f64::NAN) < ((keys.len() as i64) as f64) } {
let mut marketId: Value = keys.as_array().and_then(|__arr| match &i { Value::Int(__n) => __arr.get(*__n as usize), Value::Str(__s) => __s.parse::<usize>().ok().and_then(|__n| __arr.get(__n)), _ => None }).cloned().unwrap_or(Value::Null);
let mut messageHash: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", channel, Value::Str(":".into())).into()), marketId).into());
client.resolve(&[self.orders.clone(), messageHash]);
}
}
}
pub async fn watch_balance(&mut self, optional_args: &[Value]) -> Value {
let mut params = get_arg(optional_args, 0, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
let mut messageHash: Value = Value::Str("wallet".into());
return self.watch_private(messageHash, &[params]).await;
Value::Null
}
pub fn handle_balance(&mut self, mut client: Value, mut message: Value) {
let __pro_message_arc: std::sync::Arc<indexmap::IndexMap<String, Value>> = (match &message { Value::Dict(__d) => __d.clone(), _ => std::sync::Arc::new(indexmap::IndexMap::new()) });
let __pro_message: &indexmap::IndexMap<String, Value> = &__pro_message_arc;
let mut messageHash: Value = (match __pro_message.get("topic").cloned() { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null });
let mut data: Value = (match __pro_message.get("data").cloned() { Some(Value::Str(__s)) if __s.is_empty() => Value::Null, Some(__v) => __v, None => Value::Null });
let mut keys: Value = object_keys(&data);
let mut timestamp: Value = self.safe_timestamp_k(message, "time", &[]);
if let Value::Dict(__d) = &mut self.balance { std::sync::Arc::make_mut(__d).insert("info".into(), data.clone()); }
if let Value::Dict(__d) = &mut self.balance { std::sync::Arc::make_mut(__d).insert("timestamp".into(), timestamp.clone()); }
{ let __be_tmp = self.iso8601(timestamp); if let Value::Dict(__d) = &mut self.balance { std::sync::Arc::make_mut(__d).insert("datetime".into(), __be_tmp); } }
{
let mut i: Value = Value::Int(0);
let mut __for_first_377: bool = true;
while { if !__for_first_377 { i = (match (&(i), &(Value::Int(1))) { (Value::Int(x), Value::Int(y)) => Value::Int(x + y), (Value::Int(x), Value::Float(y)) => Value::Float(*x as f64 + *y), (Value::Float(x), Value::Int(y)) => Value::Float(*x + *y as f64), (Value::Float(x), Value::Float(y)) => Value::Float(x + y), _ => Value::Null }); } __for_first_377 = false; i.as_f64().unwrap_or(f64::NAN) < ((keys.len() as i64) as f64) } {
let mut key: Value = keys.as_array().and_then(|__arr| match &i { Value::Int(__n) => __arr.get(*__n as usize), Value::Str(__s) => __s.parse::<usize>().ok().and_then(|__n| __arr.get(__n)), _ => None }).cloned().unwrap_or(Value::Null);
let mut parts: Value = split(&key, &Value::Str("_".into()));
let mut currencyId: Value = self.safe_string(parts.clone(), Value::Int(0), &[]);
let mut code: Value = self.safe_currency_code(currencyId, &[]);
let mut account: Value = self.account();
if (code != Value::Null) && (in_op(&self.balance, &code)) {
account = get_value(&self.balance, &code);
}
let mut second: Option<String> = self.safe_string(parts, Value::Int(1), &[]).as_str().map(str::to_owned);
let mut freeOrTotal: Value = (if (second.as_deref() == Some("available")) { Value::Str("free".into()) } else { Value::Str("total".into()) });
add_element_to_object(&mut account, &freeOrTotal, self.safe_string(data.clone(), key, &[]));
if (code != Value::Null) {
if let Value::Dict(__d) = &mut self.balance { std::sync::Arc::make_mut(__d).insert(crate::runtime::stringify_param(&code), account); }
}
}
}
{ let __t = self.safe_balance(self.balance.clone()); self.balance = __t; }
client.resolve(&[self.balance.clone(), messageHash]);
}
pub async fn watch_public(&mut self, mut messageHash: Value, optional_args: &[Value]) -> Value {
let mut params = get_arg(optional_args, 0, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
let mut url: Value = self.urls.as_map().and_then(|__m| __m.get("api")).cloned().unwrap_or(Value::Null).as_map().and_then(|__m| __m.get("ws")).cloned().unwrap_or(Value::Null);
let mut request: Value = Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("op".to_string(), Value::Str("subscribe".into()));
m.insert("args".to_string(), Value::from(vec![messageHash.clone()]));
m
});
let mut message: Value = self.extend(request, &[params]);
return self.watch(url, messageHash.clone(), &[message, messageHash.clone()]).await;
Value::Null
}
pub async fn watch_private(&mut self, mut messageHash: Value, optional_args: &[Value]) -> Value {
let mut params = get_arg(optional_args, 0, Value::Map({
let mut m = indexmap::IndexMap::new();
m
}));
self.check_required_credentials(&[]);
let mut expires: Value = self.safe_string_k(self.options.clone(), "ws-expires", &[]);
if (expires == Value::Null) {
let mut timeout: Value = (match &to_string_val(&((match ((self.timeout.clone()).as_f64(), (Value::Int(1000)).as_f64()) { (Some(x), Some(y)) if y != 0.0 => Value::Float(x / y), _ => Value::Null }))) { Value::Str(__parse_s) => __parse_s.trim().parse::<i64>().map(Value::Int).unwrap_or(Value::Null), Value::Int(__parse_n) => Value::Int(*__parse_n), Value::Float(__parse_f) => Value::Int(*__parse_f as i64), _ => Value::Null });
expires = self.sum(&[self.seconds(), timeout]);
if (expires == Value::Null) {
panic!("{}", crate::exchange_errors::arguments_required(format!("{}{}", self.id.clone(), Value::Str(" watchPrivate() expires is required".into()))));
}
expires = to_string_val(&expires);
if let Value::Dict(__d) = &mut self.options { std::sync::Arc::make_mut(__d).insert("ws-expires".into(), expires.clone()); }
}
let mut url: Value = self.urls.as_map().and_then(|__m| __m.get("api")).cloned().unwrap_or(Value::Null).as_map().and_then(|__m| __m.get("ws")).cloned().unwrap_or(Value::Null);
let mut auth: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", Value::Str("CONNECT".into()), Value::Str("/stream".into())).into()), expires).into());
let mut signature: Value = self.hmac(self.encode(auth), self.encode(self.secret.clone()), Value::Str("sha256".into()), &[]);
let mut authParams: Value = Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("api-key".to_string(), self.apiKey.clone());
m.insert("api-signature".to_string(), signature);
m.insert("api-expires".to_string(), expires);
m
});
let mut signedUrl: Value = Value::Str(format!("{}{}", add(&url, &Value::Str("?".into())), self.urlencode(authParams, &[])).into());
let mut request: Value = Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("op".to_string(), Value::Str("subscribe".into()));
m.insert("args".to_string(), Value::from(vec![messageHash.clone()]));
m
});
let mut message: Value = self.extend(request, &[params]);
return self.watch(signedUrl, messageHash.clone(), &[message, messageHash.clone()]).await;
Value::Null
}
pub fn handle_error_message(&self, mut client: Value, mut message: Value) -> Value {
let mut error: Value = self.safe_integer_k(message.clone(), "error", &[]);
let _try_result = std::panic::catch_unwind(std::panic::AssertUnwindSafe(|| {
if (error != Value::Null) {
let mut feedback: Value = Value::Str(format!("{}{}", Value::Str(format!("{}{}", self.id.clone(), Value::Str(" ".into())).into()), json_stringify(&message)).into());
self.throw_exactly_matched_exception(crate::value::get_value_k(&self.exceptions.as_map().and_then(|__m| __m.get("ws")).cloned().unwrap_or(Value::Null), "exact"), error.clone(), feedback.clone());
}
#[allow(unreachable_code)] { Value::Null }}));
if let Err(_try_err) = _try_result { let e: Value = panic_to_value(_try_err);
if is_instance(&e, &Value::Str("AuthenticationError".into())) {
return Value::Bool(false);
}
}
return Value::Bool(true);
Value::Null
}
pub fn handle_message(&mut self, mut client: Value, mut message: Value) {
let __pro_message_arc: std::sync::Arc<indexmap::IndexMap<String, Value>> = (match &message { Value::Dict(__d) => __d.clone(), _ => std::sync::Arc::new(indexmap::IndexMap::new()) });
let __pro_message: &indexmap::IndexMap<String, Value> = &__pro_message_arc;
if (self.handle_error_message(client.clone(), message.clone()).as_bool() != Some(true)) {
return;
}
let mut content: Option<String> = (match __pro_message.get("message").cloned() { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null }).as_str().map(str::to_owned);
if (content.as_deref() == Some("pong")) {
self.handle_pong(client.clone(), message.clone());
return;
}
let mut methods: Value = Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("trade".to_string(), Value::Str("handle_trades".into()).clone());
m.insert("orderbook".to_string(), Value::Str("handle_order_book".into()).clone());
m.insert("order".to_string(), Value::Str("handle_order".into()).clone());
m.insert("wallet".to_string(), Value::Str("handle_balance".into()).clone());
m.insert("usertrade".to_string(), Value::Str("handle_my_trades".into()).clone());
m
});
let mut topic: Value = (match __pro_message.get("topic").cloned() { Some(Value::Str(__s)) if !__s.is_empty() => Value::Str(__s), Some(Value::Int(__n)) => Value::Str(__n.to_string().into()), Some(Value::Float(__f)) => Value::Str(__f.to_string().into()), _ => Value::Null });
let mut method: Value = self.safe_value(methods, topic, &[]);
if (method != Value::Null) {
self.dispatch_ws_handler(&method, &[client, message.clone()]);
}
}
pub fn ping(&self, mut client: Value) -> Value {
return Value::Map({
let mut m = indexmap::IndexMap::new();
m.insert("op".to_string(), Value::Str("ping".into()));
m
});
Value::Null
}
pub fn handle_pong(&self, mut client: Value, mut message: Value) -> Value {
crate::set_value(&mut client, &Value::Str("lastPong".into()), self.milliseconds());
return message;
Value::Null
}
pub fn on_error(&mut self, mut client: Value, mut error: Value) {
if let Value::Dict(__d) = &mut self.options { std::sync::Arc::make_mut(__d).insert("ws-expires".into(), Value::Null); }
self.parent.on_error(&[client, error.clone()]);
}
pub fn on_close(&mut self, mut client: Value, mut error: Value) {
if let Value::Dict(__d) = &mut self.options { std::sync::Arc::make_mut(__d).insert("ws-expires".into(), Value::Null); }
self.parent.on_close(&[client, error.clone()]);
}
}