use std::{collections::HashMap, str::FromStr, sync::Arc};
use arrow::{
array::{BinaryArray, BinaryBuilder, StringArray, StringBuilder, UInt8Array, UInt64Array},
datatypes::{DataType, Field, Schema},
error::ArrowError,
record_batch::RecordBatch,
};
use nautilus_core::Params;
use nautilus_model::{
enums::AssetClass,
identifiers::{InstrumentId, Symbol},
instruments::option_spread::OptionSpread,
types::{currency::Currency, price::Price, quantity::Quantity},
};
#[allow(unused)]
use rust_decimal::Decimal;
#[allow(unused)]
use serde_json::Value;
use ustr::Ustr;
use crate::arrow::{
ArrowSchemaProvider, EncodeToRecordBatch, EncodingError, KEY_INSTRUMENT_ID,
KEY_PRICE_PRECISION, KEY_SIZE_PRECISION, extract_column,
};
fn asset_class_to_string(ac: AssetClass) -> String {
match ac {
AssetClass::FX => "FX".to_string(),
AssetClass::Equity => "Equity".to_string(),
AssetClass::Commodity => "Commodity".to_string(),
AssetClass::Debt => "Debt".to_string(),
AssetClass::Index => "Index".to_string(),
AssetClass::Cryptocurrency => "Cryptocurrency".to_string(),
AssetClass::Alternative => "Alternative".to_string(),
}
}
fn asset_class_from_str(s: &str) -> Result<AssetClass, EncodingError> {
match s {
"FX" => Ok(AssetClass::FX),
"Equity" => Ok(AssetClass::Equity),
"Commodity" => Ok(AssetClass::Commodity),
"Debt" => Ok(AssetClass::Debt),
"Index" => Ok(AssetClass::Index),
"Cryptocurrency" => Ok(AssetClass::Cryptocurrency),
"Alternative" => Ok(AssetClass::Alternative),
_ => Err(EncodingError::ParseError(
"asset_class",
format!("Unknown asset class: {s}"),
)),
}
}
impl ArrowSchemaProvider for OptionSpread {
fn get_schema(metadata: Option<HashMap<String, String>>) -> Schema {
let fields = vec![
Field::new("id", DataType::Utf8, false),
Field::new("raw_symbol", DataType::Utf8, false),
Field::new("underlying", DataType::Utf8, false),
Field::new("strategy_type", DataType::Utf8, false),
Field::new("asset_class", DataType::Utf8, false),
Field::new("exchange", DataType::Utf8, true), Field::new("currency", DataType::Utf8, false),
Field::new("price_precision", DataType::UInt8, false),
Field::new("size_precision", DataType::UInt8, false),
Field::new("price_increment", DataType::Utf8, false),
Field::new("size_increment", DataType::Utf8, false),
Field::new("multiplier", DataType::Utf8, false),
Field::new("lot_size", DataType::Utf8, false),
Field::new("max_quantity", DataType::Utf8, true), Field::new("min_quantity", DataType::Utf8, true), Field::new("max_price", DataType::Utf8, true), Field::new("min_price", DataType::Utf8, true), Field::new("activation_ns", DataType::UInt64, false),
Field::new("expiration_ns", DataType::UInt64, false),
Field::new("margin_init", DataType::Utf8, false),
Field::new("margin_maint", DataType::Utf8, false),
Field::new("maker_fee", DataType::Utf8, false),
Field::new("taker_fee", DataType::Utf8, false),
Field::new("info", DataType::Binary, true), Field::new("ts_event", DataType::UInt64, false),
Field::new("ts_init", DataType::UInt64, false),
];
let mut final_metadata = HashMap::new();
final_metadata.insert("class".to_string(), "OptionSpread".to_string());
if let Some(meta) = metadata {
final_metadata.extend(meta);
}
Schema::new_with_metadata(fields, final_metadata)
}
}
impl EncodeToRecordBatch for OptionSpread {
fn encode_batch(
#[allow(unused)] metadata: &HashMap<String, String>,
data: &[Self],
) -> Result<RecordBatch, ArrowError> {
let mut id_builder = StringBuilder::new();
let mut raw_symbol_builder = StringBuilder::new();
let mut underlying_builder = StringBuilder::new();
let mut strategy_type_builder = StringBuilder::new();
let mut asset_class_builder = StringBuilder::new();
let mut exchange_builder = StringBuilder::new();
let mut currency_builder = StringBuilder::new();
let mut price_precision_builder = UInt8Array::builder(data.len());
let mut size_precision_builder = UInt8Array::builder(data.len());
let mut price_increment_builder = StringBuilder::new();
let mut size_increment_builder = StringBuilder::new();
let mut multiplier_builder = StringBuilder::new();
let mut lot_size_builder = StringBuilder::new();
let mut max_quantity_builder = StringBuilder::new();
let mut min_quantity_builder = StringBuilder::new();
let mut max_price_builder = StringBuilder::new();
let mut min_price_builder = StringBuilder::new();
let mut activation_ns_builder = UInt64Array::builder(data.len());
let mut expiration_ns_builder = UInt64Array::builder(data.len());
let mut margin_init_builder = StringBuilder::new();
let mut margin_maint_builder = StringBuilder::new();
let mut maker_fee_builder = StringBuilder::new();
let mut taker_fee_builder = StringBuilder::new();
let mut info_builder = BinaryBuilder::new();
let mut ts_event_builder = UInt64Array::builder(data.len());
let mut ts_init_builder = UInt64Array::builder(data.len());
for os in data {
id_builder.append_value(os.id.to_string());
raw_symbol_builder.append_value(os.raw_symbol);
underlying_builder.append_value(os.underlying);
strategy_type_builder.append_value(os.strategy_type);
asset_class_builder.append_value(asset_class_to_string(os.asset_class));
if let Some(exchange) = os.exchange {
exchange_builder.append_value(exchange);
} else {
exchange_builder.append_null();
}
currency_builder.append_value(os.currency.to_string());
price_precision_builder.append_value(os.price_precision);
size_precision_builder.append_value(os.size_precision);
price_increment_builder.append_value(os.price_increment.to_string());
size_increment_builder.append_value(os.size_increment.to_string());
multiplier_builder.append_value(os.multiplier.to_string());
lot_size_builder.append_value(os.lot_size.to_string());
if let Some(max_qty) = os.max_quantity {
max_quantity_builder.append_value(max_qty.to_string());
} else {
max_quantity_builder.append_null();
}
if let Some(min_qty) = os.min_quantity {
min_quantity_builder.append_value(min_qty.to_string());
} else {
min_quantity_builder.append_null();
}
if let Some(max_p) = os.max_price {
max_price_builder.append_value(max_p.to_string());
} else {
max_price_builder.append_null();
}
if let Some(min_p) = os.min_price {
min_price_builder.append_value(min_p.to_string());
} else {
min_price_builder.append_null();
}
activation_ns_builder.append_value(os.activation_ns.as_u64());
expiration_ns_builder.append_value(os.expiration_ns.as_u64());
margin_init_builder.append_value(os.margin_init.to_string());
margin_maint_builder.append_value(os.margin_maint.to_string());
maker_fee_builder.append_value(os.maker_fee.to_string());
taker_fee_builder.append_value(os.taker_fee.to_string());
if let Some(ref info) = os.info {
match serde_json::to_vec(info) {
Ok(json_bytes) => {
info_builder.append_value(json_bytes);
}
Err(e) => {
return Err(ArrowError::InvalidArgumentError(format!(
"Failed to serialize info dict to JSON: {e}"
)));
}
}
} else {
info_builder.append_null();
}
ts_event_builder.append_value(os.ts_event.as_u64());
ts_init_builder.append_value(os.ts_init.as_u64());
}
let mut final_metadata = metadata.clone();
final_metadata.insert("class".to_string(), "OptionSpread".to_string());
RecordBatch::try_new(
Self::get_schema(Some(final_metadata)).into(),
vec![
Arc::new(id_builder.finish()),
Arc::new(raw_symbol_builder.finish()),
Arc::new(underlying_builder.finish()),
Arc::new(strategy_type_builder.finish()),
Arc::new(asset_class_builder.finish()),
Arc::new(exchange_builder.finish()),
Arc::new(currency_builder.finish()),
Arc::new(price_precision_builder.finish()),
Arc::new(size_precision_builder.finish()),
Arc::new(price_increment_builder.finish()),
Arc::new(size_increment_builder.finish()),
Arc::new(multiplier_builder.finish()),
Arc::new(lot_size_builder.finish()),
Arc::new(max_quantity_builder.finish()),
Arc::new(min_quantity_builder.finish()),
Arc::new(max_price_builder.finish()),
Arc::new(min_price_builder.finish()),
Arc::new(activation_ns_builder.finish()),
Arc::new(expiration_ns_builder.finish()),
Arc::new(margin_init_builder.finish()),
Arc::new(margin_maint_builder.finish()),
Arc::new(maker_fee_builder.finish()),
Arc::new(taker_fee_builder.finish()),
Arc::new(info_builder.finish()),
Arc::new(ts_event_builder.finish()),
Arc::new(ts_init_builder.finish()),
],
)
}
fn metadata(&self) -> HashMap<String, String> {
let mut metadata = HashMap::new();
metadata.insert(KEY_INSTRUMENT_ID.to_string(), self.id.to_string());
metadata.insert(
KEY_PRICE_PRECISION.to_string(),
self.price_precision.to_string(),
);
metadata.insert(
KEY_SIZE_PRECISION.to_string(),
self.size_precision.to_string(),
);
metadata
}
}
pub fn decode_option_spread_batch(
#[allow(unused)] metadata: &HashMap<String, String>,
record_batch: &RecordBatch,
) -> Result<Vec<OptionSpread>, EncodingError> {
let cols = record_batch.columns();
let num_rows = record_batch.num_rows();
let id_values = extract_column::<StringArray>(cols, "id", 0, DataType::Utf8)?;
let raw_symbol_values = extract_column::<StringArray>(cols, "raw_symbol", 1, DataType::Utf8)?;
let underlying_values = extract_column::<StringArray>(cols, "underlying", 2, DataType::Utf8)?;
let strategy_type_values =
extract_column::<StringArray>(cols, "strategy_type", 3, DataType::Utf8)?;
let asset_class_values = extract_column::<StringArray>(cols, "asset_class", 4, DataType::Utf8)?;
let exchange_values = cols
.get(5)
.ok_or_else(|| EncodingError::MissingColumn("exchange", 5))?;
let currency_values = extract_column::<StringArray>(cols, "currency", 6, DataType::Utf8)?;
let price_precision_values =
extract_column::<UInt8Array>(cols, "price_precision", 7, DataType::UInt8)?;
let size_precision_values =
extract_column::<UInt8Array>(cols, "size_precision", 8, DataType::UInt8)?;
let price_increment_values =
extract_column::<StringArray>(cols, "price_increment", 9, DataType::Utf8)?;
let size_increment_values =
extract_column::<StringArray>(cols, "size_increment", 10, DataType::Utf8)?;
let multiplier_values = extract_column::<StringArray>(cols, "multiplier", 11, DataType::Utf8)?;
let lot_size_values = extract_column::<StringArray>(cols, "lot_size", 12, DataType::Utf8)?;
let max_quantity_values = cols
.get(13)
.ok_or_else(|| EncodingError::MissingColumn("max_quantity", 13))?;
let min_quantity_values = cols
.get(14)
.ok_or_else(|| EncodingError::MissingColumn("min_quantity", 14))?;
let max_price_values = cols
.get(15)
.ok_or_else(|| EncodingError::MissingColumn("max_price", 15))?;
let min_price_values = cols
.get(16)
.ok_or_else(|| EncodingError::MissingColumn("min_price", 16))?;
let activation_ns_values =
extract_column::<UInt64Array>(cols, "activation_ns", 17, DataType::UInt64)?;
let expiration_ns_values =
extract_column::<UInt64Array>(cols, "expiration_ns", 18, DataType::UInt64)?;
let margin_init_values =
extract_column::<StringArray>(cols, "margin_init", 19, DataType::Utf8)?;
let margin_maint_values =
extract_column::<StringArray>(cols, "margin_maint", 20, DataType::Utf8)?;
let maker_fee_values = extract_column::<StringArray>(cols, "maker_fee", 21, DataType::Utf8)?;
let taker_fee_values = extract_column::<StringArray>(cols, "taker_fee", 22, DataType::Utf8)?;
let info_values = cols
.get(23)
.ok_or_else(|| EncodingError::MissingColumn("info", 23))?;
let ts_event_values = extract_column::<UInt64Array>(cols, "ts_event", 24, DataType::UInt64)?;
let ts_init_values = extract_column::<UInt64Array>(cols, "ts_init", 25, DataType::UInt64)?;
let mut result = Vec::with_capacity(num_rows);
for i in 0..num_rows {
let id = InstrumentId::from_str(id_values.value(i))
.map_err(|e| EncodingError::ParseError("id", format!("row {i}: {e}")))?;
let raw_symbol = Symbol::from(raw_symbol_values.value(i));
let underlying = Ustr::from(underlying_values.value(i));
let strategy_type = Ustr::from(strategy_type_values.value(i));
let asset_class = asset_class_from_str(asset_class_values.value(i))?;
let exchange = if exchange_values.is_null(i) {
None
} else {
let exchange_str = exchange_values
.as_any()
.downcast_ref::<StringArray>()
.ok_or_else(|| {
EncodingError::ParseError("exchange", format!("row {i}: invalid type"))
})?
.value(i);
Some(Ustr::from(exchange_str))
};
let currency = Currency::from_str(currency_values.value(i))
.map_err(|e| EncodingError::ParseError("currency", format!("row {i}: {e}")))?;
let price_prec = price_precision_values.value(i);
let _size_prec = size_precision_values.value(i);
let price_increment = Price::from_str(price_increment_values.value(i))
.map_err(|e| EncodingError::ParseError("price_increment", format!("row {i}: {e}")))?;
let _size_increment = Quantity::from_str(size_increment_values.value(i))
.map_err(|e| EncodingError::ParseError("size_increment", format!("row {i}: {e}")))?; let multiplier = Quantity::from_str(multiplier_values.value(i))
.map_err(|e| EncodingError::ParseError("multiplier", format!("row {i}: {e}")))?;
let lot_size = Quantity::from_str(lot_size_values.value(i))
.map_err(|e| EncodingError::ParseError("lot_size", format!("row {i}: {e}")))?;
let max_quantity =
if max_quantity_values.is_null(i) {
None
} else {
let max_qty_str = max_quantity_values
.as_any()
.downcast_ref::<StringArray>()
.ok_or_else(|| {
EncodingError::ParseError("max_quantity", format!("row {i}: invalid type"))
})?
.value(i);
Some(Quantity::from_str(max_qty_str).map_err(|e| {
EncodingError::ParseError("max_quantity", format!("row {i}: {e}"))
})?)
};
let min_quantity =
if min_quantity_values.is_null(i) {
None
} else {
let min_qty_str = min_quantity_values
.as_any()
.downcast_ref::<StringArray>()
.ok_or_else(|| {
EncodingError::ParseError("min_quantity", format!("row {i}: invalid type"))
})?
.value(i);
Some(Quantity::from_str(min_qty_str).map_err(|e| {
EncodingError::ParseError("min_quantity", format!("row {i}: {e}"))
})?)
};
let max_price = if max_price_values.is_null(i) {
None
} else {
let max_p_str = max_price_values
.as_any()
.downcast_ref::<StringArray>()
.ok_or_else(|| {
EncodingError::ParseError("max_price", format!("row {i}: invalid type"))
})?
.value(i);
Some(
Price::from_str(max_p_str)
.map_err(|e| EncodingError::ParseError("max_price", format!("row {i}: {e}")))?,
)
};
let min_price = if min_price_values.is_null(i) {
None
} else {
let min_p_str = min_price_values
.as_any()
.downcast_ref::<StringArray>()
.ok_or_else(|| {
EncodingError::ParseError("min_price", format!("row {i}: invalid type"))
})?
.value(i);
Some(
Price::from_str(min_p_str)
.map_err(|e| EncodingError::ParseError("min_price", format!("row {i}: {e}")))?,
)
};
let activation_ns = nautilus_core::UnixNanos::from(activation_ns_values.value(i));
let expiration_ns = nautilus_core::UnixNanos::from(expiration_ns_values.value(i));
let margin_init = Decimal::from_str(margin_init_values.value(i))
.map_err(|e| EncodingError::ParseError("margin_init", format!("row {i}: {e}")))?;
let margin_maint = Decimal::from_str(margin_maint_values.value(i))
.map_err(|e| EncodingError::ParseError("margin_maint", format!("row {i}: {e}")))?;
let maker_fee = Decimal::from_str(maker_fee_values.value(i))
.map_err(|e| EncodingError::ParseError("maker_fee", format!("row {i}: {e}")))?;
let taker_fee = Decimal::from_str(taker_fee_values.value(i))
.map_err(|e| EncodingError::ParseError("taker_fee", format!("row {i}: {e}")))?;
let info = if info_values.is_null(i) {
None
} else {
let info_bytes = info_values
.as_any()
.downcast_ref::<BinaryArray>()
.ok_or_else(|| EncodingError::ParseError("info", format!("row {i}: invalid type")))?
.value(i);
match serde_json::from_slice::<Params>(info_bytes) {
Ok(info_dict) => Some(info_dict),
Err(e) => {
return Err(EncodingError::ParseError(
"info",
format!("row {i}: failed to deserialize JSON: {e}"),
));
}
}
};
let ts_event = nautilus_core::UnixNanos::from(ts_event_values.value(i));
let ts_init = nautilus_core::UnixNanos::from(ts_init_values.value(i));
let option_spread = OptionSpread::new(
id,
raw_symbol,
asset_class,
exchange,
underlying,
strategy_type,
activation_ns,
expiration_ns,
currency,
price_prec,
price_increment,
multiplier,
lot_size,
max_quantity,
min_quantity,
max_price,
min_price,
Some(margin_init),
Some(margin_maint),
Some(maker_fee),
Some(taker_fee),
info,
ts_event,
ts_init,
);
result.push(option_spread);
}
Ok(result)
}