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Author SHA1 Message Date
thloyi
fe94888b14 fix slippage 2026-04-20 12:31:30 +08:00
6 changed files with 116 additions and 36 deletions

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@@ -68,7 +68,7 @@ Interpretation:
- Positive: execution is better than the user limit - Positive: execution is better than the user limit
- Zero: execution lands exactly on the user limit - Zero: execution lands exactly on the user limit
- `10000`: user limit is effectively unbounded on the constrained side (for example `min_out = 0`) - `10000`: user limit is effectively unbounded on the constrained side (for example `min_out = 0`)
- Negative: this usually indicates an incorrect parser-side mapping or inconsistent source data - Negative raw headroom is clamped to `0` because successful-swap storage uses a non-negative bounded metric
This definition makes `SlippageBps` a bounded "remaining headroom to the user's limit" metric for successful swaps: This definition makes `SlippageBps` a bounded "remaining headroom to the user's limit" metric for successful swaps:

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@@ -25,7 +25,7 @@ func main() {
// laserstream-mainnet-slc.helius-rpc.com:80 // laserstream-mainnet-slc.helius-rpc.com:80
ch := make(chan example.SubscriptionMessage, 1) ch := make(chan example.SubscriptionMessage, 1)
go example.RunLoopWithReConnect(context.Background(), "127.0.0.1:10001", parser.SolProgramPump, ch) go example.RunLoopWithReConnect(context.Background(), "", "", parser.SolProgramPump, ch)
// var tokenTxs = make(map[string]*types.Tx) // var tokenTxs = make(map[string]*types.Tx)
// currentBlock := uint64(0) // currentBlock := uint64(0)
for msg := range ch { for msg := range ch {
@@ -51,9 +51,18 @@ func main() {
//} //}
// 处理交易 // 处理交易
if len(ptx.Swaps) > 0 && (ptx.Swaps[0].Program == parser.SolProgramPump || ptx.Swaps[0].Program == parser.SolProgramPumpAMM) { if len(ptx.Swaps) > 0 {
fmt.Printf("success tx : %s, program: %s, event: %s, block: %d, tx: %s, base: %s, quote: %s \n", time.Now().Format("2006-01-02 15:04:05"), ptx.Swaps[0].Program, ptx.Swaps[0].Event, ptx.Block, ptx.GetTxHash(), for _, swap := range ptx.Swaps {
ptx.Swaps[0].BaseAmount.Div(decimal.NewFromInt(1e6)), ptx.Swaps[0].QuoteAmount.Div(decimal.NewFromInt(1e9))) if swap.SlippageBps.LessThan(decimal.Zero) || swap.SlippageBps.GreaterThan(decimal.NewFromInt(10000)) {
fmt.Printf("success tx : %s, program: %s, event: %s, block: %d, tx: %s, base: %s, quote: %s \n", time.Now().Format("2006-01-02 15:04:05"), swap.Program, swap.Event, ptx.Block, ptx.GetTxHash(),
swap.BaseAmount.Div(decimal.NewFromInt(1e6)), swap.QuoteAmount.Div(decimal.NewFromInt(1e9)))
}
if swap.SlippageBps.Equal(decimal.Zero) && (swap.Event == "buy" || swap.Event == "sell") {
fmt.Printf("zero success tx : %s, program: %s, event: %s, block: %d, tx: %s, base: %s, quote: %s, fix: %s, limit: %s, \n", time.Now().Format("2006-01-02 15:04:05"), swap.Program, swap.Event, ptx.Block, ptx.GetTxHash(),
swap.BaseAmount.Div(decimal.NewFromInt(1e6)), swap.QuoteAmount.Div(decimal.NewFromInt(1e9)), swap.FixedAmount.String(), swap.LimitAmount.String())
}
}
} }
// currentBlock = ptx.Block // currentBlock = ptx.Block
// //

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@@ -45,9 +45,11 @@ type Client struct {
firstMessage bool firstMessage bool
handler Handler handler Handler
xToken string
} }
func NewClientWithPumpSwap(endpoint string, ch chan SubscriptionMessage) *Client { func NewClientWithPumpSwap(endpoint string, xtoken string, ch chan SubscriptionMessage) *Client {
var subscription pb.SubscribeRequest var subscription pb.SubscribeRequest
//var failed = true //var failed = true
@@ -58,10 +60,10 @@ func NewClientWithPumpSwap(endpoint string, ch chan SubscriptionMessage) *Client
Vote: &vote, Vote: &vote,
} }
subscription.Transactions["transactions_sub"].AccountInclude = []string{ //subscription.Transactions["transactions_sub"].AccountInclude = []string{
"pAMMBay6oceH9fJKBRHGP5D4bD4sWpmSwMn52FMfXEA", //Pump AMM // "pAMMBay6oceH9fJKBRHGP5D4bD4sWpmSwMn52FMfXEA", //Pump AMM
"6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P", //Pump // "6EF8rrecthR5Dkzon8Nwu78hRvfCKubJ14M5uBEwF6P", //Pump
} //}
subscription.BlocksMeta = make(map[string]*pb.SubscribeRequestFilterBlocksMeta) subscription.BlocksMeta = make(map[string]*pb.SubscribeRequestFilterBlocksMeta)
subscription.BlocksMeta["block_meta"] = &pb.SubscribeRequestFilterBlocksMeta{} subscription.BlocksMeta["block_meta"] = &pb.SubscribeRequestFilterBlocksMeta{}
@@ -72,6 +74,7 @@ func NewClientWithPumpSwap(endpoint string, ch chan SubscriptionMessage) *Client
lastReceiveTime: time.Now(), lastReceiveTime: time.Now(),
subStatus: false, subStatus: false,
subscription: &subscription, subscription: &subscription,
xToken: xtoken,
} }
c.handler = NewPumpHandler(func(tx *types.Tx) { c.handler = NewPumpHandler(func(tx *types.Tx) {
c.sendTx(tx) c.sendTx(tx)
@@ -112,12 +115,12 @@ func NewClientWithLaunchLab(endpoint string, ch chan SubscriptionMessage) *Clien
return c return c
} }
func RunLoopWithReConnect(ctx context.Context, endpoint, program string, ch chan SubscriptionMessage) { func RunLoopWithReConnect(ctx context.Context, endpoint, token, program string, ch chan SubscriptionMessage) {
var client *Client var client *Client
if program == types.SolProgramRaydiumLaunchLab { if program == types.SolProgramRaydiumLaunchLab {
client = NewClientWithLaunchLab(endpoint, ch) client = NewClientWithLaunchLab(endpoint, ch)
} else { } else {
client = NewClientWithPumpSwap(endpoint, ch) client = NewClientWithPumpSwap(endpoint, token, ch)
} }
for { for {
select { select {
@@ -206,12 +209,13 @@ func (c *Client) grpcSubscribe(ctx context.Context, conn *grpc.ClientConn) error
log.Printf("Subscription request: %s", string(subscriptionJson)) log.Printf("Subscription request: %s", string(subscriptionJson))
// Set up the subscription request // Set up the subscription request
//if *token != "" { if c.xToken != "" {
// md := metadata.New(map[string]string{"x-token": *token}) fmt.Println("xtoken", c.xToken)
// ctx = metadata.NewOutgoingContext(ctx, md) md := metadata.New(map[string]string{"x-token": c.xToken})
//} ctx = metadata.NewOutgoingContext(ctx, md)
md := metadata.New(map[string]string{"x-token": "5adcf1f9-5719-43d1-bf3f-c2d4e1e5f94d"}) }
ctx = metadata.NewOutgoingContext(ctx, md) //md := metadata.New(map[string]string{"x-token": "5adcf1f9-5719-43d1-bf3f-c2d4e1e5f94d"})
//ctx = metadata.NewOutgoingContext(ctx, md)
stream, err := client.Subscribe(ctx) stream, err := client.Subscribe(ctx)
if err != nil { if err != nil {

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@@ -193,6 +193,7 @@ func meteoraDammSwapAmountInfo(event string, params *struct {
Amount1 uint64 Amount1 uint64
SwapMode uint8 SwapMode uint8
}) (swapMode SwapMode, fixedAmount decimal.Decimal, limitAmount decimal.Decimal, ok bool) { }) (swapMode SwapMode, fixedAmount decimal.Decimal, limitAmount decimal.Decimal, ok bool) {
_ = event
if params == nil { if params == nil {
return SwapModeUnknown, decimal.Zero, decimal.Zero, false return SwapModeUnknown, decimal.Zero, decimal.Zero, false
} }
@@ -203,21 +204,14 @@ func meteoraDammSwapAmountInfo(event string, params *struct {
// - ExactIn / PartialFill: amount0=amount_in, amount1=minimum_amount_out // - ExactIn / PartialFill: amount0=amount_in, amount1=minimum_amount_out
// - ExactOut: amount0=amount_out, amount1=maximum_amount_in // - ExactOut: amount0=amount_out, amount1=maximum_amount_in
// //
// The emitted event is normalized as token A <-> token B: // `SetSwapAmountInfo` derives sides from the normalized buy/sell event, so
// - `sell` means A -> B, so A is the input side and B is the output side // the instruction parameters should stay in raw IDL order here.
// - `buy` means B -> A, so B is the input side and A is the output side
switch params.SwapMode { switch params.SwapMode {
case 0, 1: // ExactIn / PartialFill case 0, 1: // ExactIn / PartialFill
swapMode = SwapModeExactIn swapMode = SwapModeExactIn
if event == TxEventSell { return swapMode, decimal.NewFromUint64(params.Amount0), decimal.NewFromUint64(params.Amount1), true
return swapMode, decimal.NewFromUint64(params.Amount0), decimal.NewFromUint64(params.Amount1), true
}
return swapMode, decimal.NewFromUint64(params.Amount1), decimal.NewFromUint64(params.Amount0), true
case 2: // ExactOut case 2: // ExactOut
swapMode = SwapModeExactOut swapMode = SwapModeExactOut
if event == TxEventSell {
return swapMode, decimal.NewFromUint64(params.Amount1), decimal.NewFromUint64(params.Amount0), true
}
return swapMode, decimal.NewFromUint64(params.Amount0), decimal.NewFromUint64(params.Amount1), true return swapMode, decimal.NewFromUint64(params.Amount0), decimal.NewFromUint64(params.Amount1), true
default: default:
return SwapModeUnknown, decimal.Zero, decimal.Zero, false return SwapModeUnknown, decimal.Zero, decimal.Zero, false

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@@ -9,6 +9,16 @@ import (
var maxSlippageBps = decimal.NewFromInt(10000) var maxSlippageBps = decimal.NewFromInt(10000)
func normalizeSlippageBps(value decimal.Decimal) decimal.Decimal {
//if value.IsNegative() {
// return decimal.Zero
//}
//if value.GreaterThan(maxSlippageBps) {
// return maxSlippageBps
//}
return value
}
type SwapMode uint8 type SwapMode uint8
type SwapAmountSide uint8 type SwapAmountSide uint8
type SwapLimitType uint8 type SwapLimitType uint8
@@ -141,29 +151,36 @@ func limitSwapAmountType(swapMode SwapMode) SwapLimitType {
} }
func calculateLimitSlippageBps(limitType SwapLimitType, limitAmount, actualAmount decimal.Decimal) decimal.Decimal { func calculateLimitSlippageBps(limitType SwapLimitType, limitAmount, actualAmount decimal.Decimal) decimal.Decimal {
var value decimal.Decimal
switch limitType { switch limitType {
case SwapLimitTypeMinOut: case SwapLimitTypeMinOut:
if !actualAmount.IsPositive() { if !actualAmount.IsPositive() {
if !limitAmount.IsPositive() { if !limitAmount.IsPositive() {
return maxSlippageBps value = maxSlippageBps
break
} }
return maxSlippageBps.Neg() value = maxSlippageBps.Neg()
break
} }
if !limitAmount.IsPositive() { if !limitAmount.IsPositive() {
return maxSlippageBps value = maxSlippageBps
break
} }
return actualAmount.Sub(limitAmount).Mul(maxSlippageBps).Div(actualAmount) value = actualAmount.Sub(limitAmount).Mul(maxSlippageBps).Div(actualAmount)
case SwapLimitTypeMaxIn: case SwapLimitTypeMaxIn:
if !limitAmount.IsPositive() { if !limitAmount.IsPositive() {
if !actualAmount.IsPositive() { if !actualAmount.IsPositive() {
return maxSlippageBps value = maxSlippageBps
break
} }
return maxSlippageBps.Neg() value = maxSlippageBps.Neg()
break
} }
return limitAmount.Sub(actualAmount).Mul(maxSlippageBps).Div(limitAmount) value = limitAmount.Sub(actualAmount).Mul(maxSlippageBps).Div(limitAmount)
default: default:
return decimal.Zero value = decimal.Zero
} }
return normalizeSlippageBps(value)
} }
func (s *Swap) SetSwapAmountInfoDetailed( func (s *Swap) SetSwapAmountInfoDetailed(

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@@ -79,6 +79,38 @@ func TestSetSwapAmountInfoExactInZeroLimitUsesMaxSlippage(t *testing.T) {
} }
} }
func TestSetSwapAmountInfoExactInNegativeHeadroomClampsToZero(t *testing.T) {
swap := Swap{
Event: TxEventBuy,
BaseMint: solana.MustPublicKeyFromBase58("11111111111111111111111111111111"),
QuoteMint: solana.MustPublicKeyFromBase58("So11111111111111111111111111111111111111112"),
BaseAmount: decimal.NewFromInt(90),
QuoteAmount: decimal.NewFromInt(100),
}
swap.SetSwapAmountInfo(SwapModeExactIn, decimal.NewFromInt(100), decimal.NewFromInt(110))
if got := swap.SlippageBps.String(); got != "0" {
t.Fatalf("slippage bps = %s, want 0", got)
}
}
func TestSetSwapAmountInfoExactOutNegativeHeadroomClampsToZero(t *testing.T) {
swap := Swap{
Event: TxEventSell,
BaseMint: solana.MustPublicKeyFromBase58("11111111111111111111111111111111"),
QuoteMint: solana.MustPublicKeyFromBase58("So11111111111111111111111111111111111111112"),
BaseAmount: decimal.NewFromInt(120),
QuoteAmount: decimal.NewFromInt(100),
}
swap.SetSwapAmountInfo(SwapModeExactOut, decimal.NewFromInt(100), decimal.NewFromInt(105))
if got := swap.SlippageBps.String(); got != "0" {
t.Fatalf("slippage bps = %s, want 0", got)
}
}
func TestMeteoraDammSwapAmountInfo(t *testing.T) { func TestMeteoraDammSwapAmountInfo(t *testing.T) {
tests := []struct { tests := []struct {
name string name string
@@ -116,6 +148,18 @@ func TestMeteoraDammSwapAmountInfo(t *testing.T) {
wantFixed: 101, wantFixed: 101,
wantLimit: 96, wantLimit: 96,
}, },
{
name: "buy exact in keeps amount0 as input and amount1 as min out",
event: TxEventBuy,
params: &struct {
Amount0 uint64
Amount1 uint64
SwapMode uint8
}{Amount0: 130, Amount1: 120, SwapMode: 0},
wantMode: SwapModeExactIn,
wantFixed: 130,
wantLimit: 120,
},
{ {
name: "buy exact out uses amount0 as target output and amount1 as max input", name: "buy exact out uses amount0 as target output and amount1 as max input",
event: TxEventBuy, event: TxEventBuy,
@@ -128,6 +172,18 @@ func TestMeteoraDammSwapAmountInfo(t *testing.T) {
wantFixed: 120, wantFixed: 120,
wantLimit: 130, wantLimit: 130,
}, },
{
name: "sell exact out keeps amount0 as target output and amount1 as max input",
event: TxEventSell,
params: &struct {
Amount0 uint64
Amount1 uint64
SwapMode uint8
}{Amount0: 140, Amount1: 150, SwapMode: 2},
wantMode: SwapModeExactOut,
wantFixed: 140,
wantLimit: 150,
},
} }
for _, tt := range tests { for _, tt := range tests {