pool/clientdb/order_test.go
2022-10-18 06:44:01 -07:00

210 lines
5.9 KiB
Go

package clientdb
import (
"crypto/rand"
"fmt"
"reflect"
"testing"
"github.com/btcsuite/btcd/btcutil"
"github.com/davecgh/go-spew/spew"
"github.com/lightninglabs/pool/order"
"github.com/lightninglabs/pool/sidecar"
"github.com/lightningnetwork/lnd/keychain"
"github.com/lightningnetwork/lnd/lntypes"
"github.com/lightningnetwork/lnd/lnwallet/chainfee"
"github.com/stretchr/testify/require"
)
var submitOrderTestCases = []struct {
name string
getOrder func() order.Order
}{{
name: "submit ask successfully",
getOrder: func() order.Order {
// Store a dummy order and see if we can retrieve it again.
o := &order.Ask{
Kit: *dummyOrder(500000, 1337),
AnnouncementConstraints: order.OnlyUnannounced,
ConfirmationConstraints: order.OnlyZeroConf,
}
o.Details().MinUnitsMatch = 10
o.Details().ChannelType = order.ChannelTypeScriptEnforced
o.Details().AuctionType = order.BTCOutboundLiquidity
// It is not possible for an order to have AllowedNodeIDs and
// NotAllowedNodeIDs at the same time but we want to test
// serialization/deserialization here.
o.Details().AllowedNodeIDs = [][33]byte{
{1, 2, 3}, {2, 3, 4}, {3, 4, 5},
}
o.Details().NotAllowedNodeIDs = [][33]byte{{4, 5, 6}, {5, 6, 7}}
o.Details().IsPublic = true
return o
},
}, {
name: "submit bid successfully",
getOrder: func() order.Order {
// Store a dummy order and see if we can retrieve it again.
o := &order.Bid{
Kit: *dummyOrder(500000, 1337),
MinNodeTier: 2,
SelfChanBalance: 123,
SidecarTicket: &sidecar.Ticket{
ID: [8]byte{11, 22, 33, 44, 55, 66, 77},
State: sidecar.StateRegistered,
Offer: sidecar.Offer{
Capacity: 1000000,
PushAmt: 200000,
LeaseDurationBlocks: 2016,
},
Recipient: &sidecar.Recipient{
MultiSigPubKey: testTraderKey,
MultiSigKeyIndex: 7,
},
},
UnannouncedChannel: true,
ZeroConfChannel: true,
}
o.Details().MinUnitsMatch = 10
o.Details().ChannelType = order.ChannelTypeScriptEnforced
// It is not possible for an order to have AllowedNodeIDs and
// NotAllowedNodeIDs at the same time but we want to test
// serialization/deserialization here.
o.Details().AllowedNodeIDs = [][33]byte{
{1, 2, 3}, {2, 3, 4}, {3, 4, 5},
}
o.Details().NotAllowedNodeIDs = [][33]byte{{4, 5, 6}, {5, 6, 7}}
return o
},
}}
// TestSubmitOrder tests that orders can be stored and retrieved correctly.
func TestSubmitOrder(t *testing.T) {
for _, tc := range submitOrderTestCases {
tc := tc
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
store, cleanup := newTestDB(t)
defer cleanup()
o := tc.getOrder()
err := store.SubmitOrder(o)
require.NoError(t, err)
storedOrder, err := store.GetOrder(o.Nonce())
require.NoError(t, err)
require.Equal(t, o, storedOrder)
// Check that we got the correct type back.
require.Equal(t, storedOrder.Type(), o.Type())
// Get all orders and check that we get the same as when
// querying a specific one.
allOrders, err := store.GetOrders()
require.NoError(t, err)
require.Len(t, allOrders, 1)
require.True(
t, reflect.DeepEqual(o, allOrders[0]),
"expected order: %v\ngot: %v", spew.Sdump(o),
spew.Sdump(allOrders[0]),
)
})
}
}
// TestUpdateOrders tests that orders can be updated correctly.
func TestUpdateOrders(t *testing.T) {
t.Parallel()
store, cleanup := newTestDB(t)
defer cleanup()
// Store two dummy orders that we are going to update later.
o1 := &order.Bid{
Kit: *dummyOrder(500000, 1337),
MinNodeTier: 3,
}
o1.Details().MinUnitsMatch = 10
o1.Details().ChannelType = order.ChannelTypeScriptEnforced
err := store.SubmitOrder(o1)
if err != nil {
t.Fatalf("unable to store order: %v", err)
}
o2 := &order.Ask{
Kit: *dummyOrder(500000, 1337),
}
o2.Details().ChannelType = order.ChannelTypeScriptEnforced
err = store.SubmitOrder(o2)
if err != nil {
t.Fatalf("unable to store order: %v", err)
}
// Update the state of the first order and check that it is persisted.
err = store.UpdateOrder(
o1.Nonce(), order.StateModifier(order.StatePartiallyFilled),
)
if err != nil {
t.Fatalf("unable to update order: %v", err)
}
storedOrder, err := store.GetOrder(o1.Nonce())
if err != nil {
t.Fatalf("unable to retrieve order: %v", err)
}
if storedOrder.Details().State != order.StatePartiallyFilled {
t.Fatalf("unexpected order state. got %d expected %d",
storedOrder.Details().State, order.StatePartiallyFilled)
}
// Bulk update the state of both orders and check that they are
// persisted correctly.
stateModifier := order.StateModifier(order.StateCleared)
err = store.UpdateOrders(
[]order.Nonce{o1.Nonce(), o2.Nonce()},
[][]order.Modifier{{stateModifier}, {stateModifier}},
)
if err != nil {
t.Fatalf("unable to update orders: %v", err)
}
allOrders, err := store.GetOrders()
if err != nil {
t.Fatalf("unable to get all orders: %v", err)
}
if len(allOrders) != 2 {
t.Fatalf("unexpected number of orders. got %d expected %d",
len(allOrders), 2)
}
for _, o := range allOrders {
if o.Details().State != order.StateCleared {
t.Fatalf("unexpected order state. got %d expected %d",
o.Details().State, order.StateCleared)
}
}
}
func dummyOrder(amt btcutil.Amount, leaseDuration uint32) *order.Kit {
var testPreimage lntypes.Preimage
if _, err := rand.Read(testPreimage[:]); err != nil {
panic(fmt.Sprintf("could not create private key: %v", err))
}
kit := order.NewKitWithPreimage(testPreimage)
kit.AuctionType = order.BTCInboundLiquidity
kit.Version = order.VersionLeaseDurationBuckets
kit.State = order.StateExecuted
kit.FixedRate = 21
kit.Amt = amt
kit.MultiSigKeyLocator = keychain.KeyLocator{
Family: 123,
Index: 345,
}
kit.MaxBatchFeeRate = chainfee.FeePerKwFloor
copy(kit.AcctKey[:], testTraderKey.SerializeCompressed())
kit.UnitsUnfulfilled = 741
kit.LeaseDuration = leaseDuration
return kit
}