mirror of https://github.com/poanetwork/quorum.git
permission: refactor hex node id to avoid many changes
This commit is contained in:
parent
50f5852ae4
commit
712f4907ee
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@ -225,12 +225,11 @@ type TxPool struct {
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wg sync.WaitGroup // for shutdown sync
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homestead bool
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EnodeId string
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}
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// NewTxPool creates a new transaction pool to gather, sort and filter inbound
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// transactions from the network.
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func NewTxPool(config TxPoolConfig, chainconfig *params.ChainConfig, chain blockChain, id string) *TxPool {
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func NewTxPool(config TxPoolConfig, chainconfig *params.ChainConfig, chain blockChain) *TxPool {
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// Sanitize the input to ensure no vulnerable gas prices are set
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config = (&config).sanitize()
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@ -246,7 +245,6 @@ func NewTxPool(config TxPoolConfig, chainconfig *params.ChainConfig, chain block
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all: newTxLookup(),
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chainHeadCh: make(chan ChainHeadEvent, chainHeadChanSize),
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gasPrice: new(big.Int).SetUint64(config.PriceLimit),
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EnodeId: id,
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}
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pool.locals = newAccountSet(pool.signer)
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for _, addr := range config.Locals {
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@ -84,7 +84,7 @@ func setupTxPool() (*TxPool, *ecdsa.PrivateKey) {
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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key, _ := crypto.GenerateKey()
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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return pool, key
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}
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@ -95,7 +95,7 @@ func setupQuorumTxPool() (*TxPool, *ecdsa.PrivateKey) {
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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key, _ := crypto.GenerateKey()
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pool := NewTxPool(testTxPoolConfig, params.QuorumTestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.QuorumTestChainConfig, blockchain)
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return pool, key
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}
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@ -205,7 +205,7 @@ func TestStateChangeDuringTransactionPoolReset(t *testing.T) {
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tx0 := transaction(0, 100000, key)
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tx1 := transaction(1, 100000, key)
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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defer pool.Stop()
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nonce := pool.State().GetNonce(address)
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@ -287,7 +287,7 @@ func TestInvalidTransactions(t *testing.T) {
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statedb, _ := state.New(common.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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params.TestChainConfig.TransactionSizeLimit = 128
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pool2 := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool2 := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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pool2.currentState.AddBalance(from, big.NewInt(0xffffffffffffff))
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data2 := make([]byte, (127 * 1024))
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@ -691,7 +691,7 @@ func TestTransactionPostponing(t *testing.T) {
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statedb, _ := state.New(common.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create two test accounts to produce different gap profiles with
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@ -910,7 +910,7 @@ func testTransactionQueueGlobalLimiting(t *testing.T, nolocals bool) {
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config.NoLocals = nolocals
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config.GlobalQueue = config.AccountQueue*3 - 1 // reduce the queue limits to shorten test time (-1 to make it non divisible)
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create a number of test accounts and fund them (last one will be the local)
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@ -998,7 +998,7 @@ func testTransactionQueueTimeLimiting(t *testing.T, nolocals bool) {
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config.Lifetime = time.Second
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config.NoLocals = nolocals
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create two test accounts to ensure remotes expire but locals do not
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@ -1157,7 +1157,7 @@ func TestTransactionPendingGlobalLimiting(t *testing.T) {
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config := testTxPoolConfig
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config.GlobalSlots = config.AccountSlots * 10
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create a number of test accounts and fund them
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@ -1205,7 +1205,7 @@ func TestTransactionCapClearsFromAll(t *testing.T) {
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config.AccountQueue = 2
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config.GlobalSlots = 8
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create a number of test accounts and fund them
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@ -1237,7 +1237,7 @@ func TestTransactionPendingMinimumAllowance(t *testing.T) {
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config := testTxPoolConfig
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config.GlobalSlots = 0
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create a number of test accounts and fund them
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@ -1282,7 +1282,7 @@ func TestTransactionPoolRepricing(t *testing.T) {
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statedb, _ := state.New(common.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Keep track of transaction events to ensure all executables get announced
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@ -1403,7 +1403,7 @@ func TestTransactionPoolRepricingKeepsLocals(t *testing.T) {
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statedb, _ := state.New(common.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create a number of test accounts and fund them
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@ -1469,7 +1469,7 @@ func TestTransactionPoolUnderpricing(t *testing.T) {
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config.GlobalSlots = 2
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config.GlobalQueue = 2
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Keep track of transaction events to ensure all executables get announced
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@ -1575,7 +1575,7 @@ func TestTransactionPoolStableUnderpricing(t *testing.T) {
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config.GlobalSlots = 128
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config.GlobalQueue = 0
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Keep track of transaction events to ensure all executables get announced
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@ -1637,7 +1637,7 @@ func TestTransactionReplacement(t *testing.T) {
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statedb, _ := state.New(common.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Keep track of transaction events to ensure all executables get announced
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@ -1736,7 +1736,7 @@ func testTransactionJournaling(t *testing.T, nolocals bool) {
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config.Journal = journal
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config.Rejournal = time.Second
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pool := NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(config, params.TestChainConfig, blockchain)
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// Create two test accounts to ensure remotes expire but locals do not
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local, _ := crypto.GenerateKey()
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@ -1773,7 +1773,7 @@ func testTransactionJournaling(t *testing.T, nolocals bool) {
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statedb.SetNonce(crypto.PubkeyToAddress(local.PublicKey), 1)
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blockchain = &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool = NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool = NewTxPool(config, params.TestChainConfig, blockchain)
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pending, queued = pool.Stats()
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if queued != 0 {
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@ -1799,7 +1799,7 @@ func testTransactionJournaling(t *testing.T, nolocals bool) {
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statedb.SetNonce(crypto.PubkeyToAddress(local.PublicKey), 1)
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blockchain = &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool = NewTxPool(config, params.TestChainConfig, blockchain, "")
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pool = NewTxPool(config, params.TestChainConfig, blockchain)
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pending, queued = pool.Stats()
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if pending != 0 {
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@ -1829,7 +1829,7 @@ func TestTransactionStatusCheck(t *testing.T) {
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statedb, _ := state.New(common.Hash{}, state.NewDatabase(ethdb.NewMemDatabase()))
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blockchain := &testBlockChain{statedb, statedb, 1000000, new(event.Feed)}
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
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defer pool.Stop()
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// Create the test accounts to check various transaction statuses with
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@ -2007,7 +2007,7 @@ func TestEIP155SignerOnTxPool(t *testing.T) {
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Ethash: new(params.EthashConfig),
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}
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pool := NewTxPool(testTxPoolConfig, chainconfig, blockchain, "")
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pool := NewTxPool(testTxPoolConfig, chainconfig, blockchain)
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if reflect.TypeOf(types.EIP155Signer{}) != reflect.TypeOf(pool.signer) {
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t.Fail()
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@ -2,17 +2,19 @@ package types
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import (
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"fmt"
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"github.com/ethereum/go-ethereum/common"
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testifyassert "github.com/stretchr/testify/assert"
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"math/big"
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"testing"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto"
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testifyassert "github.com/stretchr/testify/assert"
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)
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var (
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NETWORKADMIN = "NWADMIN"
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ORGADMIN = "OADMIN"
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NODE1 = "enode://ac6b1096ca56b9f6d004b779ae3728bf83f8e22453404cc3cef16a3d9b96608bc67c4b30db88e0a5a6c6390213f7acbe1153ff6d23ce57380104288ae19373ef@127.0.0.1:21000?discport=0&raftport=50401"
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NODE2 = "enode://0ba6b9f606a43a95edc6247cdb1c1e105145817be7bcafd6b2c0ba15d58145f0dc1a194f70ba73cd6f4cdd6864edc7687f311254c7555cc32e4d45aeb1b80416@127.0.0.1:21001?discport=0&raftport=50402"
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ORGADMIN = "OADMIN"
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NODE1 = "enode://ac6b1096ca56b9f6d004b779ae3728bf83f8e22453404cc3cef16a3d9b96608bc67c4b30db88e0a5a6c6390213f7acbe1153ff6d23ce57380104288ae19373ef@127.0.0.1:21000?discport=0&raftport=50401"
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NODE2 = "enode://0ba6b9f606a43a95edc6247cdb1c1e105145817be7bcafd6b2c0ba15d58145f0dc1a194f70ba73cd6f4cdd6864edc7687f311254c7555cc32e4d45aeb1b80416@127.0.0.1:21001?discport=0&raftport=50402"
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)
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var Acct1 = common.BytesToAddress([]byte("permission"))
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@ -98,19 +100,19 @@ func TestRoleCache_UpsertRole(t *testing.T) {
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assert := testifyassert.New(t)
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// add a role into the cache and validate
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RoleInfoMap.UpsertRole(NETWORKADMIN, NETWORKADMIN, true, true, FullAccess, true )
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RoleInfoMap.UpsertRole(NETWORKADMIN, NETWORKADMIN, true, true, FullAccess, true)
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roleInfo := RoleInfoMap.GetRole(NETWORKADMIN, NETWORKADMIN)
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assert.False(roleInfo == nil, fmt.Sprintf("Expected role details, got nil"))
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assert.True(roleInfo.OrgId == NETWORKADMIN, fmt.Sprintf("Expected org id for node %v, got %v", NETWORKADMIN, roleInfo.OrgId))
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assert.True(roleInfo.RoleId == NETWORKADMIN, fmt.Sprintf("Expected node id %v, got %v", NETWORKADMIN, roleInfo.RoleId))
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// add another role and validate the list function
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RoleInfoMap.UpsertRole(ORGADMIN, ORGADMIN, true, true, FullAccess, true )
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RoleInfoMap.UpsertRole(ORGADMIN, ORGADMIN, true, true, FullAccess, true)
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roleList := RoleInfoMap.GetRoleList()
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assert.True(len(roleList) == 2, fmt.Sprintf("Expected 2 entries, got %v", len(roleList)))
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// update role status and validate
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RoleInfoMap.UpsertRole(ORGADMIN, ORGADMIN, true, true, FullAccess, false )
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RoleInfoMap.UpsertRole(ORGADMIN, ORGADMIN, true, true, FullAccess, false)
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roleInfo = RoleInfoMap.GetRole(ORGADMIN, ORGADMIN)
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assert.True(roleInfo.Active == false, fmt.Sprintf("Expected role active status to be %v, got %v", true, roleInfo.Active))
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}
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@ -119,19 +121,19 @@ func TestAcctCache_UpsertAccount(t *testing.T) {
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assert := testifyassert.New(t)
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// add an account into the cache and validate
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive )
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive)
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acctInfo := AcctInfoMap.GetAccount(Acct1)
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assert.False(acctInfo == nil, fmt.Sprintf("Expected account details, got nil"))
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assert.True(acctInfo.OrgId == NETWORKADMIN, fmt.Sprintf("Expected org id for the account to be %v, got %v", NETWORKADMIN, acctInfo.OrgId))
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assert.True(acctInfo.AcctId == Acct1, fmt.Sprintf("Expected account id %x, got %x", Acct1, acctInfo.AcctId))
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// add a second account and validate the list function
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AcctInfoMap.UpsertAccount(ORGADMIN, ORGADMIN, Acct2, true, AcctActive )
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AcctInfoMap.UpsertAccount(ORGADMIN, ORGADMIN, Acct2, true, AcctActive)
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acctList := AcctInfoMap.GetAcctList()
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assert.True(len(acctList) == 2, fmt.Sprintf("Expected 2 entries, got %v", len(acctList)))
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// update account status and validate
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AcctInfoMap.UpsertAccount(ORGADMIN, ORGADMIN, Acct2, true, AcctBlacklisted )
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AcctInfoMap.UpsertAccount(ORGADMIN, ORGADMIN, Acct2, true, AcctBlacklisted)
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acctInfo = AcctInfoMap.GetAccount(Acct2)
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assert.True(acctInfo.Status == AcctBlacklisted, fmt.Sprintf("Expected account status to be %v, got %v", AcctBlacklisted, acctInfo.Status))
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@ -152,10 +154,10 @@ func TestGetAcctAccess(t *testing.T) {
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// Create an org with two roles and two accounts linked to different roles. Validate account access
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OrgInfoMap.UpsertOrg(NETWORKADMIN, "", NETWORKADMIN, big.NewInt(1), OrgApproved)
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RoleInfoMap.UpsertRole(NETWORKADMIN, NETWORKADMIN, true, true, FullAccess, true )
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RoleInfoMap.UpsertRole(NETWORKADMIN, "ROLE1", true, true, FullAccess, true )
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive )
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AcctInfoMap.UpsertAccount(NETWORKADMIN, "ROLE1", Acct2, true, AcctActive )
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RoleInfoMap.UpsertRole(NETWORKADMIN, NETWORKADMIN, true, true, FullAccess, true)
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RoleInfoMap.UpsertRole(NETWORKADMIN, "ROLE1", true, true, FullAccess, true)
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive)
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AcctInfoMap.UpsertAccount(NETWORKADMIN, "ROLE1", Acct2, true, AcctActive)
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access = GetAcctAccess(Acct1)
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assert.True(access == FullAccess, fmt.Sprintf("Expected account access to be %v, got %v", FullAccess, access))
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@ -172,7 +174,7 @@ func TestGetAcctAccess(t *testing.T) {
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// mark the role as inactive and account access should now nbe read only
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OrgInfoMap.UpsertOrg(NETWORKADMIN, "", NETWORKADMIN, big.NewInt(1), OrgApproved)
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RoleInfoMap.UpsertRole(NETWORKADMIN, "ROLE1", true, true, FullAccess, false )
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RoleInfoMap.UpsertRole(NETWORKADMIN, "ROLE1", true, true, FullAccess, false)
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access = GetAcctAccess(Acct2)
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assert.True(access == ReadOnly, fmt.Sprintf("Expected account access to be %v, got %v", ReadOnly, access))
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}
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@ -195,14 +197,27 @@ func TestValidateNodeForTxn(t *testing.T) {
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// populate an org, account and node. validate access
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OrgInfoMap.UpsertOrg(NETWORKADMIN, "", NETWORKADMIN, big.NewInt(1), OrgApproved)
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NodeInfoMap.UpsertNode(NETWORKADMIN, NODE1, NodeApproved)
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive )
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive)
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txnAllowed = ValidateNodeForTxn(NODE1, Acct1)
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assert.True(txnAllowed == true, "Expected access %v, got %v", true, txnAllowed)
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// test access from a node not linked to the org. should return false
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OrgInfoMap.UpsertOrg(ORGADMIN, "", ORGADMIN, big.NewInt(1), OrgApproved)
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NodeInfoMap.UpsertNode(ORGADMIN, NODE2, NodeApproved)
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AcctInfoMap.UpsertAccount(ORGADMIN, ORGADMIN, Acct2, true, AcctActive )
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AcctInfoMap.UpsertAccount(ORGADMIN, ORGADMIN, Acct2, true, AcctActive)
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txnAllowed = ValidateNodeForTxn(NODE1, Acct2)
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assert.True(txnAllowed == false, "Expected access %v, got %v", true, txnAllowed)
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}
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// This is to make sure enode.ParseV4() honors single hexNodeId value eventhough it does follow enode URI scheme
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func TestValidateNodeForTxn_whenUsingOnlyHexNodeId(t *testing.T) {
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OrgInfoMap.UpsertOrg(NETWORKADMIN, "", NETWORKADMIN, big.NewInt(1), OrgApproved)
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NodeInfoMap.UpsertNode(NETWORKADMIN, NODE1, NodeApproved)
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AcctInfoMap.UpsertAccount(NETWORKADMIN, NETWORKADMIN, Acct1, true, AcctActive)
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arbitraryPrivateKey, _ := crypto.GenerateKey()
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hexNodeId := fmt.Sprintf("%x", crypto.FromECDSAPub(&arbitraryPrivateKey.PublicKey)[1:])
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txnAllowed := ValidateNodeForTxn(hexNodeId, Acct1)
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testifyassert.False(t, txnAllowed)
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}
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@ -41,6 +41,11 @@ import (
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type EthAPIBackend struct {
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eth *Ethereum
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gpo *gasprice.Oracle
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// Quorum
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//
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// hex node id from node public key
|
||||
hexNodeId string
|
||||
}
|
||||
|
||||
// ChainConfig returns the active chain configuration.
|
||||
|
@ -184,7 +189,7 @@ func (b *EthAPIBackend) SubscribeLogsEvent(ch chan<- []*types.Log) event.Subscri
|
|||
func (b *EthAPIBackend) SendTx(ctx context.Context, signedTx *types.Transaction) error {
|
||||
// validation for node need to happen here and cannot be done as a part of
|
||||
// validateTx in tx_pool.go as tx_pool validation will happen in every node
|
||||
if b.eth.txPool.EnodeId != "" && !types.ValidateNodeForTxn(b.eth.txPool.EnodeId, signedTx.From()) {
|
||||
if b.hexNodeId != "" && !types.ValidateNodeForTxn(b.hexNodeId, signedTx.From()) {
|
||||
return errors.New("cannot send transaction from this node")
|
||||
}
|
||||
return b.eth.txPool.AddLocal(signedTx)
|
||||
|
|
|
@ -197,7 +197,7 @@ func New(ctx *node.ServiceContext, config *Config) (*Ethereum, error) {
|
|||
if config.TxPool.Journal != "" {
|
||||
config.TxPool.Journal = ctx.ResolvePath(config.TxPool.Journal)
|
||||
}
|
||||
eth.txPool = core.NewTxPool(config.TxPool, eth.chainConfig, eth.blockchain, fmt.Sprintf("%x", crypto.FromECDSAPub(&ctx.NodeKey().PublicKey)[1:]))
|
||||
eth.txPool = core.NewTxPool(config.TxPool, eth.chainConfig, eth.blockchain)
|
||||
|
||||
if eth.protocolManager, err = NewProtocolManager(eth.chainConfig, config.SyncMode, config.NetworkId, eth.eventMux, eth.txPool, eth.engine, eth.blockchain, chainDb, config.RaftMode); err != nil {
|
||||
return nil, err
|
||||
|
@ -206,7 +206,8 @@ func New(ctx *node.ServiceContext, config *Config) (*Ethereum, error) {
|
|||
eth.miner = miner.New(eth, eth.chainConfig, eth.EventMux(), eth.engine, config.MinerRecommit, config.MinerGasFloor, config.MinerGasCeil, eth.isLocalBlock)
|
||||
eth.miner.SetExtra(makeExtraData(config.MinerExtraData, eth.chainConfig.IsQuorum))
|
||||
|
||||
eth.APIBackend = &EthAPIBackend{eth, nil}
|
||||
hexNodeId := fmt.Sprintf("%x", crypto.FromECDSAPub(&ctx.NodeKey().PublicKey)[1:]) // Quorum
|
||||
eth.APIBackend = &EthAPIBackend{eth, nil, hexNodeId}
|
||||
gpoParams := config.GPO
|
||||
if gpoParams.Default == nil {
|
||||
gpoParams.Default = config.MinerGasPrice
|
||||
|
|
|
@ -498,7 +498,7 @@ func TestTransactionStatusLes2(t *testing.T) {
|
|||
chain := pm.blockchain.(*core.BlockChain)
|
||||
config := core.DefaultTxPoolConfig
|
||||
config.Journal = ""
|
||||
txpool := core.NewTxPool(config, params.TestChainConfig, chain, "")
|
||||
txpool := core.NewTxPool(config, params.TestChainConfig, chain)
|
||||
pm.txpool = txpool
|
||||
peer, _ := newTestPeer(t, "peer", 2, pm, true)
|
||||
defer peer.close()
|
||||
|
|
|
@ -97,7 +97,7 @@ func newTestWorkerBackend(t *testing.T, chainConfig *params.ChainConfig, engine
|
|||
genesis := gspec.MustCommit(db)
|
||||
|
||||
chain, _ := core.NewBlockChain(db, nil, gspec.Config, engine, vm.Config{}, nil)
|
||||
txpool := core.NewTxPool(testTxPoolConfig, chainConfig, chain, "")
|
||||
txpool := core.NewTxPool(testTxPoolConfig, chainConfig, chain)
|
||||
|
||||
// Generate a small n-block chain and an uncle block for it
|
||||
if n > 0 {
|
||||
|
|
Loading…
Reference in New Issue