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main.cpp
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#include <unistd.h>
#include <cstdlib>
#include <iostream>
#include <optional>
#include <span>
#include <string>
#include <vector>
#include "account.h"
#include "error.h"
#include "exchange_info.h"
#include "get_order.h"
#include "json.h"
#include "post_order.h"
#include "spot_sbe/AccountResponse.h"
#include "spot_sbe/BoolEnum.h"
#include "spot_sbe/ErrorResponse.h"
#include "spot_sbe/ExchangeInfoResponse.h"
#include "spot_sbe/MessageHeader.h"
#include "spot_sbe/NewOrderResultResponse.h"
#include "spot_sbe/OrderResponse.h"
#include "spot_sbe/WebSocketResponse.h"
#include "web_socket_metadata.h"
using spot_sbe::AccountResponse;
using spot_sbe::BoolEnum;
using spot_sbe::ErrorResponse;
using spot_sbe::ExchangeInfoResponse;
using spot_sbe::MessageHeader;
using spot_sbe::NewOrderResultResponse;
using spot_sbe::OrderResponse;
using spot_sbe::WebSocketResponse;
std::vector<char> read_payload(const int fd) {
std::vector<char> payload;
const size_t chunk_size = 64 * 1024;
auto offset = 0;
while (true) {
payload.resize(payload.size() + chunk_size);
const auto bytes = read(fd, payload.data() + offset, chunk_size);
if (bytes < 0) {
perror("read");
exit(1);
}
if (bytes == 0) {
break;
}
payload.resize(offset + bytes);
offset += bytes;
}
return payload;
}
bool as_bool(const BoolEnum::Value bool_enum) {
switch (bool_enum) {
case BoolEnum::Value::False: {
return false;
}
case BoolEnum::Value::True: {
return true;
}
case BoolEnum::Value::NULL_VALUE: {
fprintf(stderr, "Unexpected NULL_VALUE\n");
exit(1);
}
}
return false;
}
Account decode_account(const std::span<char> payload, const MessageHeader& message_header) {
auto account = message_from_header<AccountResponse>(payload, message_header);
Account result;
const auto commission_exponent = account.commissionExponent();
const auto commission_rate_maker = account.commissionRateMaker();
const auto commission_rate_taker = account.commissionRateTaker();
const auto commission_rate_buyer = account.commissionRateBuyer();
const auto commission_rate_seller = account.commissionRateSeller();
result.commission_rates =
CommissionRates{commission_rate_maker, commission_rate_taker, commission_rate_buyer,
commission_rate_seller, commission_exponent};
result.can_trade = as_bool(account.canTrade());
result.can_withdraw = as_bool(account.canWithdraw());
result.can_deposit = as_bool(account.canDeposit());
result.brokered = as_bool(account.brokered());
result.require_self_trade_prevention = as_bool(account.requireSelfTradePrevention());
result.prevent_sor = as_bool(account.preventSor());
result.update_time = account.updateTime(); // SBE timestamps are in microseconds.
result.account_type = account.accountType();
const auto trade_group_id = account.tradeGroupId();
if (trade_group_id != AccountResponse::tradeGroupIdNullValue()) {
result.trade_group_id = trade_group_id;
}
result.uid = account.uid();
auto& balances = account.balances();
result.balances.reserve(balances.count());
balances.forEach([&](auto& balance) {
const auto balances_exponent = balance.exponent();
const auto free = balance.free();
const auto locked = balance.locked();
auto asset = balance.getAssetAsString();
result.balances.push_back(Balances{free, locked, asset, balances_exponent});
});
auto& permissions = account.permissions();
result.permissions.reserve(permissions.count());
permissions.forEach([&](auto& permission) {
result.permissions.push_back(permission.getPermissionAsString());
});
auto& reduce_only_assets = account.reduceOnlyAssets();
result.reduce_only_assets.reserve(reduce_only_assets.count());
reduce_only_assets.forEach([&](auto& reduce_only_asset) {
result.reduce_only_assets.push_back(reduce_only_asset.getAssetAsString());
});
return result;
}
ExchangeInfo decode_exchange_info(const std::span<char> payload,
const MessageHeader& message_header) {
auto exchange_info = message_from_header<ExchangeInfoResponse>(payload, message_header);
ExchangeInfo result;
auto& rate_limits = exchange_info.rateLimits();
result.rate_limits.reserve(rate_limits.count());
rate_limits.forEach([&](const auto& rate_limit) {
// Read buffer into intermediate variables to ensure the buffer is being read sequentially.
const auto rate_limit_type = rate_limit.rateLimitType();
const auto interval = rate_limit.interval();
const auto interval_num = rate_limit.intervalNum();
const auto limit = rate_limit.rateLimit();
result.rate_limits.push_back(RateLimit{rate_limit_type, interval, interval_num, limit});
});
auto& exchange_filters = exchange_info.exchangeFilters();
result.exchange_filters.reserve(exchange_filters.count());
exchange_filters.forEach([&](auto& filter) {
const auto filter_size = filter.filterLength();
char* const filter_data = const_cast<char*>(filter.filter());
const MessageHeader message_header(filter_data, filter_size);
result.exchange_filters.emplace_back(
make_exchange_filter(message_header, std::span{filter_data, filter_size}));
});
auto& symbols = exchange_info.symbols();
result.symbols.reserve(symbols.count());
symbols.forEach([&](auto& symbol) {
const auto status = symbol.status();
const auto base_asset_precision = symbol.baseAssetPrecision();
const auto quote_asset_precision = symbol.quoteAssetPrecision();
const auto base_commission_precision = symbol.baseCommissionPrecision();
const auto quote_commission_precision = symbol.quoteCommissionPrecision();
const OrderTypes order_types(symbol.orderTypes());
const auto iceberg_allowed = as_bool(symbol.icebergAllowed());
const auto oco_allowed = as_bool(symbol.ocoAllowed());
const auto quote_order_qty_market_allowed = as_bool(symbol.quoteOrderQtyMarketAllowed());
const auto allow_trailing_stop = as_bool(symbol.allowTrailingStop());
const auto cancel_replace_allowed = as_bool(symbol.cancelReplaceAllowed());
const auto is_spot_trading_allowed = as_bool(symbol.isSpotTradingAllowed());
const auto is_margin_trading_allowed = as_bool(symbol.isMarginTradingAllowed());
const auto default_self_trade_prevention_mode = symbol.defaultSelfTradePreventionMode();
const SelfTradePreventionModes allowed_self_trade_prevention_modes(
symbol.allowedSelfTradePreventionModes());
auto& filters = symbol.filters();
std::vector<SymbolFilter> symbol_filters;
symbol_filters.reserve(filters.count());
filters.forEach([&](auto& filter) {
const auto filter_size = filter.filterLength();
char* filter_data = const_cast<char*>(filter.filter());
const MessageHeader message_header(filter_data, filter_size);
symbol_filters.emplace_back(
make_symbol_filter(message_header, std::span{filter_data, filter_size}));
});
auto& permissions = symbol.permissions();
std::vector<std::string> symbol_permissions;
symbol_permissions.reserve(permissions.count());
permissions.forEach([&](auto& permission) {
symbol_permissions.push_back(permission.getPermissionAsString());
});
std::string symbol_str = symbol.getSymbolAsString();
std::string base_asset = symbol.getBaseAssetAsString();
std::string quote_asset = symbol.getQuoteAssetAsString();
result.symbols.push_back(SymbolInfo{
status,
base_asset_precision,
quote_asset_precision,
base_commission_precision,
quote_commission_precision,
std::move(order_types),
iceberg_allowed,
oco_allowed,
quote_order_qty_market_allowed,
allow_trailing_stop,
cancel_replace_allowed,
is_spot_trading_allowed,
is_margin_trading_allowed,
default_self_trade_prevention_mode,
allowed_self_trade_prevention_modes,
std::move(symbol_filters),
std::move(symbol_permissions),
std::move(symbol_str),
std::move(base_asset),
std::move(quote_asset),
});
});
auto& sors = exchange_info.sors();
result.sors.reserve(sors.count());
sors.forEach([&](auto& decoder) {
auto& sor_symbols = decoder.sorSymbols();
Sor sor;
sor_symbols.forEach(
[&](auto& symbol) { sor.symbols.push_back(symbol.getSymbolAsString()); });
sor.base_asset = decoder.getBaseAssetAsString();
result.sors.push_back(std::move(sor));
});
return result;
}
GetOrder decode_get_order(const std::span<char> payload, const MessageHeader& message_header) {
auto get_order = message_from_header<OrderResponse>(payload, message_header);
GetOrder result;
auto price_exponent = get_order.priceExponent();
auto qty_exponent = get_order.qtyExponent();
result.order_id = get_order.orderId();
const auto order_list_id = get_order.orderListId();
if (order_list_id != OrderResponse::orderListIdNullValue()) {
result.order_list_id = order_list_id;
}
result.price = Decimal{get_order.price(), price_exponent};
result.orig_qty = Decimal{get_order.origQty(), qty_exponent};
result.executed_qty = Decimal{get_order.executedQty(), qty_exponent};
result.cummulative_quote_qty = Decimal{get_order.cummulativeQuoteQty(), price_exponent};
result.status = get_order.status();
result.time_in_force = get_order.timeInForce();
result.order_type = get_order.orderType();
result.side = get_order.side();
const auto stop_price = get_order.stopPrice();
if (stop_price != OrderResponse::stopPriceNullValue()) {
result.stop_price = Decimal{stop_price, price_exponent};
}
const auto trailing_delta = get_order.trailingDelta();
if (trailing_delta != OrderResponse::trailingDeltaNullValue()) {
result.trailing_delta = trailing_delta;
}
const auto trailing_time = get_order.trailingTime();
if (trailing_time != OrderResponse::trailingTimeNullValue()) {
result.trailing_time = trailing_time;
}
const auto iceberg_qty = get_order.icebergQty();
if (iceberg_qty != OrderResponse::icebergQtyNullValue()) {
result.iceberg_qty = Decimal{iceberg_qty, qty_exponent};
}
result.time = get_order.time();
result.update_time = get_order.updateTime();
result.is_working = as_bool(get_order.isWorking());
const auto working_time = get_order.workingTime();
if (working_time != OrderResponse::workingTimeNullValue()) {
result.working_time = working_time; // SBE timestamps are in microseconds.
}
result.orig_quote_order_qty = Decimal{get_order.origQuoteOrderQty(), price_exponent};
const auto strategy_id = get_order.strategyId();
if (strategy_id != OrderResponse::strategyIdNullValue()) {
result.strategy_id = strategy_id;
}
const auto strategy_type = get_order.strategyType();
if (strategy_type != OrderResponse::strategyTypeNullValue()) {
result.strategy_type = strategy_type;
}
result.order_capacity = get_order.orderCapacity();
result.working_floor = get_order.workingFloor();
result.self_trade_prevention_mode = get_order.selfTradePreventionMode();
const auto prevented_match_id = get_order.preventedMatchId();
if (prevented_match_id != OrderResponse::preventedMatchIdNullValue()) {
result.prevented_match_id = prevented_match_id;
}
const auto prevented_quantity = get_order.preventedQuantity();
if (prevented_quantity != OrderResponse::preventedQuantityNullValue()) {
result.prevented_quantity = Decimal{prevented_quantity, qty_exponent};
}
result.used_sor = get_order.usedSor();
result.symbol = get_order.getSymbolAsString();
result.client_order_id = get_order.getClientOrderIdAsString();
return result;
}
NewOrder decode_post_order(const std::span<char> payload, const MessageHeader& message_header) {
auto post_order = message_from_header<NewOrderResultResponse>(payload, message_header);
NewOrder result;
auto price_exponent = post_order.priceExponent();
auto qty_exponent = post_order.qtyExponent();
result.order_id = post_order.orderId();
const auto order_list_id = post_order.orderListId();
if (order_list_id != NewOrderResultResponse::orderListIdNullValue()) {
result.order_list_id = order_list_id;
}
result.transaction_time = post_order.transactTime(); // SBE timestamps are in microseconds.
result.price = Decimal{post_order.price(), price_exponent};
result.orig_qty = Decimal{post_order.origQty(), qty_exponent};
result.executed_qty = Decimal{post_order.executedQty(), qty_exponent};
result.cummulative_quote_qty = Decimal{post_order.cummulativeQuoteQty(), price_exponent};
result.status = post_order.status();
result.time_in_force = post_order.timeInForce();
result.order_type = post_order.orderType();
result.side = post_order.side();
const auto stop_price = post_order.stopPrice();
if (stop_price != NewOrderResultResponse::stopPriceNullValue()) {
result.stop_price = Decimal{stop_price, price_exponent};
}
const auto trailing_delta = post_order.trailingDelta();
if (trailing_delta != NewOrderResultResponse::trailingDeltaNullValue()) {
result.trailing_delta = trailing_delta;
}
const auto trailing_time = post_order.trailingTime();
if (trailing_time != NewOrderResultResponse::trailingTimeNullValue()) {
result.trailing_time = trailing_time;
}
const auto working_time = post_order.workingTime();
if (working_time != NewOrderResultResponse::workingTimeNullValue()) {
result.working_time = working_time; // SBE timestamps are in microseconds.
}
const auto iceberg_qty = post_order.icebergQty();
if (iceberg_qty != NewOrderResultResponse::icebergQtyNullValue()) {
result.iceberg_qty = iceberg_qty;
}
const auto strategy_id = post_order.strategyId();
if (strategy_id != NewOrderResultResponse::strategyIdNullValue()) {
result.strategy_id = strategy_id;
}
const auto strategy_type = post_order.strategyType();
if (strategy_type != NewOrderResultResponse::strategyTypeNullValue()) {
result.strategy_type = strategy_type;
}
result.order_capacity = post_order.orderCapacity();
result.working_floor = post_order.workingFloor();
result.self_trade_prevention_mode = post_order.selfTradePreventionMode();
const auto trade_group_id = post_order.tradeGroupId();
if (trade_group_id != NewOrderResultResponse::tradeGroupIdNullValue()) {
result.trade_group_id = trade_group_id;
}
const auto prevented_quantity = post_order.preventedQuantity();
if (prevented_quantity != NewOrderResultResponse::preventedQuantityNullValue()) {
result.prevented_quantity = Decimal{prevented_quantity, qty_exponent};
}
result.used_sor = post_order.usedSor();
result.symbol = post_order.getSymbolAsString();
result.client_order_id = post_order.getClientOrderIdAsString();
return result;
}
Error decode_error_response(const std::span<char> payload, const MessageHeader& message_header) {
auto decoder = message_from_header<ErrorResponse>(payload, message_header);
return Error(decoder);
}
WebSocketMetadata decode_websocket_response(const std::span<char> payload,
const MessageHeader& message_header) {
auto decoder = message_from_header<WebSocketResponse>(payload, message_header);
const bool deprecated = as_bool(decoder.sbeSchemaIdVersionDeprecated());
if (deprecated) {
fprintf(stderr, "Warning: sbe-sample-app is using a deprecated schema\n");
}
const auto status = decoder.status();
auto& rate_limits = decoder.rateLimits();
std::vector<WebSocketMetadata::RateLimit> limits;
limits.reserve(rate_limits.count());
rate_limits.forEach([&](const auto& rate_limit) {
const auto rate_limit_type = rate_limit.rateLimitType();
const auto interval = rate_limit.interval();
const auto interval_num = rate_limit.intervalNum();
const auto limit = rate_limit.rateLimit();
const auto count = rate_limit.current();
limits.push_back(
WebSocketMetadata::RateLimit{rate_limit_type, interval, interval_num, limit, count});
});
auto id = decoder.getIdAsString();
const auto result_length = decoder.resultLength();
auto result = std::span<char>(const_cast<char*>(decoder.result()), result_length);
return WebSocketMetadata{status, std::move(limits), std::move(id), std::move(result)};
}
int main() {
auto storage = read_payload(STDIN_FILENO);
auto payload = std::span<char>{storage};
MessageHeader message_header{payload.data(), payload.size()};
// A separate "ErrorResponse" message is returned for errors and its format
// is expected to be backwards compatible across all schema IDs.
auto template_id = message_header.templateId();
if (template_id == ErrorResponse::sbeTemplateId()) {
const auto result = decode_error_response(payload, message_header);
print_json(result);
return 1;
}
const auto schema_id = message_header.schemaId();
if (schema_id != ExchangeInfoResponse::sbeSchemaId()) {
fprintf(stderr, "Unexpected schema ID %d\n", schema_id);
return 1;
}
const auto version = message_header.version();
if (version != ExchangeInfoResponse::sbeSchemaVersion()) {
fprintf(stderr, "Warning: Unexpected version %d\n", version);
// Schemas with the same ID are expected to be backwards compatible.
}
std::optional<WebSocketMetadata> websocket_meta;
if (template_id == WebSocketResponse::sbeTemplateId()) {
websocket_meta = decode_websocket_response(payload, message_header);
payload = websocket_meta->result;
message_header = MessageHeader{payload.data(), payload.size()};
template_id = message_header.templateId();
if (template_id == ErrorResponse::sbeTemplateId()) {
const auto result = decode_error_response(payload, message_header);
print_json(websocket_meta, result);
return 1;
}
}
if (template_id == AccountResponse::sbeTemplateId()) {
const auto result = decode_account(payload, message_header);
print_json(websocket_meta, result);
} else if (template_id == ExchangeInfoResponse::sbeTemplateId()) {
const auto result = decode_exchange_info(payload, message_header);
print_json(websocket_meta, result);
} else if (template_id == NewOrderResultResponse::sbeTemplateId()) {
const auto result = decode_post_order(payload, message_header);
print_json(websocket_meta, result);
} else if (template_id == OrderResponse::sbeTemplateId()) {
const auto result = decode_get_order(payload, message_header);
print_json(websocket_meta, result);
} else {
fprintf(stderr, "Unexpected template ID %d\n", template_id);
return 1;
}
return 0;
}