Files
exchange-monitor-go/exchange/hyperliquid_trade.go
T
jackyu66git 9d942e9dee fix: HL size 动态格式化(从 Meta 取 szDecimals)
- 新增 HyperLiquidTrade.GetSize(),从 HL Meta.Universe 获取
  每个币的 SzDecimals 运行时格式化订单数量
- 替代硬编码的 exchange.GetHLSize() switch case
- trader.go 中 placeOrder/placeOrderAt 两处调用切换为新方法
- 新增 TryEntry 价格<=0 检查,过滤异常数据
2026-05-04 22:50:24 +08:00

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package exchange
import (
"context"
"crypto/ecdsa"
"encoding/hex"
"encoding/json"
"fmt"
"math"
"strconv"
"strings"
"sync"
"time"
"github.com/ethereum/go-ethereum/crypto"
hl "github.com/sonirico/go-hyperliquid"
)
type HyperLiquidTrade struct {
exchange *hl.Exchange
info *hl.Info
privateKey *ecdsa.PrivateKey
mainAddress string
nonceMu sync.Mutex
lastNonce int64
configured bool
// szDecimals maps coin name -> decimal places for size formatting
// Populated from HL Meta on initExchange()
szDecimals map[string]int
}
func NewHyperLiquidTrade(privateKeyHex, mainAddress, apiAddress string) (*HyperLiquidTrade, error) {
if privateKeyHex == "" {
return &HyperLiquidTrade{}, nil
}
keyHex := strings.TrimPrefix(privateKeyHex, "0x")
keyBytes, err := hex.DecodeString(keyHex)
if err != nil {
return nil, fmt.Errorf("decode private key: %w", err)
}
privKey, err := crypto.ToECDSA(keyBytes)
if err != nil {
return nil, fmt.Errorf("to ECDSA: %w", err)
}
ctx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
info := hl.NewInfo(ctx, hl.MainnetAPIURL, true, nil, nil, nil)
return &HyperLiquidTrade{
privateKey: privKey,
mainAddress: mainAddress,
info: info,
configured: true,
}, nil
}
func (h *HyperLiquidTrade) initExchange() error {
if h.exchange != nil {
return nil
}
if !h.configured {
return fmt.Errorf("HL not configured")
}
ctx, cancel := context.WithTimeout(context.Background(), 15*time.Second)
defer cancel()
meta, err := h.info.Meta(ctx)
if err != nil {
return fmt.Errorf("meta: %w", err)
}
spotMeta, err := h.info.SpotMeta(ctx)
if err != nil {
return fmt.Errorf("spot meta: %w", err)
}
h.exchange = hl.NewExchange(ctx, h.privateKey, hl.MainnetAPIURL, meta, "", h.mainAddress, spotMeta, nil)
// Build szDecimals map from HL Meta for correct size formatting
h.szDecimals = make(map[string]int, len(meta.Universe))
for _, asset := range meta.Universe {
h.szDecimals[asset.Name] = asset.SzDecimals
}
return nil
}
// GetSize returns a formatted size string for HL orders using the correct szDecimals.
func (h *HyperLiquidTrade) GetSize(coin string, amountUSD, price float64) string {
sz := amountUSD / price
decimals, ok := h.szDecimals[coin]
if !ok {
// Fallback: 4 decimal places
return fmt.Sprintf("%.4f", math.Floor(sz*10000)/10000)
}
switch decimals {
case 0:
sz = math.Floor(sz)
if sz < 1 {
sz = 1
}
return fmt.Sprintf("%.0f", sz)
case 1:
sz = math.Floor(sz*10) / 10
if sz < 0.1 {
sz = 0.1
}
return fmt.Sprintf("%.1f", sz)
case 2:
sz = math.Floor(sz*100) / 100
if sz < 0.01 {
sz = 0.01
}
return fmt.Sprintf("%.2f", sz)
default:
mult := math.Pow10(decimals)
sz = math.Floor(sz*mult) / mult
if sz < 1/mult {
sz = 1 / mult
}
return fmt.Sprintf("%."+strconv.Itoa(decimals)+"f", sz)
}
}
// PlaceMarketOrder places a market order and returns the raw JSON response.
func (h *HyperLiquidTrade) IsConfigured() bool {
return h.configured
}
func (h *HyperLiquidTrade) PlaceMarketOrder(coin, side, sz string) (string, error) {
if !h.configured {
return "", fmt.Errorf("HL not configured")
}
if err := h.initExchange(); err != nil {
return "", fmt.Errorf("init: %w", err)
}
isBuy := side == "buy"
size, _ := strconv.ParseFloat(sz, 64)
ctx, cancel := context.WithTimeout(context.Background(), 10*time.Second)
defer cancel()
mids, err := h.info.AllMids(ctx)
if err != nil {
return "", fmt.Errorf("mids: %w", err)
}
priceStr, ok := mids[coin]
if !ok {
return "", fmt.Errorf("coin %s not found", coin)
}
midPx, _ := strconv.ParseFloat(priceStr, 64)
limitPx := midPx * 2.0
if !isBuy {
limitPx = midPx * 0.5
}
result, err := h.exchange.MarketOpen(ctx, coin, isBuy, size, &limitPx, 0.05, nil, nil)
if err != nil {
return "", fmt.Errorf("market open: %w", err)
}
respJSON, _ := json.Marshal(result)
return string(respJSON), nil
}
// EstimateFeeFromResponse calculates the fee using the response's filled size × price
// × configured taker rate. This is NOT an actual fee from HL — HL does not return
// fee amounts in the order response. The result is equivalent to estimating from
// TradeAmountUSD, but more accurate for partial fills since it uses actual filled sz/px.
func (h *HyperLiquidTrade) EstimateFeeFromResponse(orderResponseJSON string, takerFeePct float64) (feeUSD float64, err error) {
// HL MarketOpen returns a single OrderStatus object (NOT wrapped in statuses array):
// {"resting":..., "filled":{"totalSz":"82.5","avgPx":"0.12153","oid":52463955193}, "error":...}
var resp struct {
Resting *json.RawMessage `json:"resting,omitempty"`
Filled *struct {
TotalSz string `json:"totalSz"`
AvgPx string `json:"avgPx"`
} `json:"filled,omitempty"`
Error *string `json:"error,omitempty"`
}
if err := json.Unmarshal([]byte(orderResponseJSON), &resp); err != nil {
return 0, fmt.Errorf("parse: %w", err)
}
if resp.Filled != nil {
sz, _ := strconv.ParseFloat(resp.Filled.TotalSz, 64)
px, _ := strconv.ParseFloat(resp.Filled.AvgPx, 64)
if sz > 0 && px > 0 {
return sz * px * takerFeePct / 100, nil
}
}
return 0, fmt.Errorf("no filled status in response")
}
func (h *HyperLiquidTrade) GetBalance() (float64, error) {
if !h.configured {
return 0, fmt.Errorf("HL not configured")
}
ctx, cancel := context.WithTimeout(context.Background(), 15*time.Second)
defer cancel()
// HL testnet USDC is on spot, not perp. Use SpotUserState.
state, err := h.info.SpotUserState(ctx, h.mainAddress)
if err != nil {
return 0, fmt.Errorf("spot user state: %w", err)
}
for _, b := range state.Balances {
if b.Coin == "USDC" {
total, _ := strconv.ParseFloat(b.Total, 64)
hold, _ := strconv.ParseFloat(b.Hold, 64)
return total - hold, nil
}
}
return 0, fmt.Errorf("USDC balance not found in spot state")
}
func GetHLSize(coin string, amountUSD, price float64) string {
sz := amountUSD / price
switch coin {
// integer sizes (szDecimals=0)
case "DOGE", "ONDO", "WIF", "ALGO", "PYTH", "SAND", "ADA", "HBAR",
"IOTA", "FET", "JUP", "MOVE":
sz = math.Floor(sz)
if sz < 1 {
sz = 1
}
return fmt.Sprintf("%.0f", sz)
// 1 decimal (szDecimals=1)
case "OP", "ARB", "DYDX", "WLD", "SUI", "TIA", "NEAR", "FIL":
sz = math.Floor(sz*10) / 10
if sz < 0.1 {
sz = 0.1
}
return fmt.Sprintf("%.1f", sz)
// 2 decimals (szDecimals=2)
case "APT":
sz = math.Floor(sz*100) / 100
if sz < 0.01 {
sz = 0.01
}
return fmt.Sprintf("%.2f", sz)
default:
return fmt.Sprintf("%.4f", sz)
}
}