cmd/devp2p/internal/ethtest: add more tx propagation tests (#22630)
This adds a test for large tx announcement messages, as well as a test to check that announced tx hashes are requested by the node.
This commit is contained in:
parent
49281ab84f
commit
cac1b21d39
@ -19,6 +19,7 @@ package ethtest
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import (
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/eth/protocols/eth"
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@ -125,22 +126,7 @@ func (s *Suite) TestSimultaneousRequests_66(t *utesting.T) {
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// TestBroadcast_66 tests whether a block announcement is correctly
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// propagated to the given node's peer(s) on the eth66 protocol.
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func (s *Suite) TestBroadcast_66(t *utesting.T) {
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sendConn, receiveConn := s.setupConnection66(t), s.setupConnection66(t)
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defer sendConn.Close()
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defer receiveConn.Close()
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nextBlock := len(s.chain.blocks)
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blockAnnouncement := &NewBlock{
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Block: s.fullChain.blocks[nextBlock],
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TD: s.fullChain.TD(nextBlock + 1),
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}
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s.testAnnounce66(t, sendConn, receiveConn, blockAnnouncement)
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// update test suite chain
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s.chain.blocks = append(s.chain.blocks, s.fullChain.blocks[nextBlock])
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// wait for client to update its chain
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if err := receiveConn.waitForBlock66(s.chain.Head()); err != nil {
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t.Fatal(err)
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}
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s.sendNextBlock66(t)
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}
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// TestGetBlockBodies_66 tests whether the given node can respond to
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@ -426,3 +412,82 @@ func (s *Suite) TestSameRequestID_66(t *utesting.T) {
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// check response from first request
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headersMatch(t, s.chain, s.getBlockHeaders66(t, conn, req1, reqID))
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}
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// TestLargeTxRequest_66 tests whether a node can fulfill a large GetPooledTransactions
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// request.
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func (s *Suite) TestLargeTxRequest_66(t *utesting.T) {
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// send the next block to ensure the node is no longer syncing and is able to accept
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// txs
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s.sendNextBlock66(t)
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// send 2000 transactions to the node
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hashMap, txs := generateTxs(t, s, 2000)
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sendConn := s.setupConnection66(t)
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defer sendConn.Close()
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sendMultipleSuccessfulTxs(t, s, sendConn, txs)
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// set up connection to receive to ensure node is peered with the receiving connection
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// before tx request is sent
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recvConn := s.setupConnection66(t)
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defer recvConn.Close()
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// create and send pooled tx request
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hashes := make([]common.Hash, 0)
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for _, hash := range hashMap {
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hashes = append(hashes, hash)
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}
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getTxReq := ð.GetPooledTransactionsPacket66{
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RequestId: 1234,
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GetPooledTransactionsPacket: hashes,
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}
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if err := recvConn.write66(getTxReq, GetPooledTransactions{}.Code()); err != nil {
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t.Fatalf("could not write to conn: %v", err)
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}
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// check that all received transactions match those that were sent to node
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switch msg := recvConn.waitForResponse(s.chain, timeout, getTxReq.RequestId).(type) {
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case PooledTransactions:
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for _, gotTx := range msg {
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if _, exists := hashMap[gotTx.Hash()]; !exists {
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t.Fatalf("unexpected tx received: %v", gotTx.Hash())
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}
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}
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default:
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t.Fatalf("unexpected %s", pretty.Sdump(msg))
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}
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}
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// TestNewPooledTxs_66 tests whether a node will do a GetPooledTransactions
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// request upon receiving a NewPooledTransactionHashes announcement.
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func (s *Suite) TestNewPooledTxs_66(t *utesting.T) {
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// send the next block to ensure the node is no longer syncing and is able to accept
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// txs
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s.sendNextBlock66(t)
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// generate 50 txs
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hashMap, _ := generateTxs(t, s, 50)
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// create new pooled tx hashes announcement
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hashes := make([]common.Hash, 0)
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for _, hash := range hashMap {
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hashes = append(hashes, hash)
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}
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announce := NewPooledTransactionHashes(hashes)
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// send announcement
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conn := s.setupConnection66(t)
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defer conn.Close()
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if err := conn.Write(announce); err != nil {
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t.Fatalf("could not write to connection: %v", err)
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}
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// wait for GetPooledTxs request
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for {
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_, msg := conn.readAndServe66(s.chain, timeout)
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switch msg := msg.(type) {
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case GetPooledTransactions:
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if len(msg) != len(hashes) {
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t.Fatalf("unexpected number of txs requested: wanted %d, got %d", len(hashes), len(msg))
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}
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return
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case *NewPooledTransactionHashes:
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// ignore propagated txs from old tests
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continue
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default:
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t.Fatalf("unexpected %s", pretty.Sdump(msg))
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}
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}
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}
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@ -111,6 +111,18 @@ func (c *Conn) read66() (uint64, Message) {
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msg = new(Transactions)
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case (NewPooledTransactionHashes{}).Code():
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msg = new(NewPooledTransactionHashes)
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case (GetPooledTransactions{}.Code()):
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ethMsg := new(eth.GetPooledTransactionsPacket66)
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if err := rlp.DecodeBytes(rawData, ethMsg); err != nil {
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return 0, errorf("could not rlp decode message: %v", err)
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}
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return ethMsg.RequestId, GetPooledTransactions(ethMsg.GetPooledTransactionsPacket)
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case (PooledTransactions{}.Code()):
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ethMsg := new(eth.PooledTransactionsPacket66)
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if err := rlp.DecodeBytes(rawData, ethMsg); err != nil {
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return 0, errorf("could not rlp decode message: %v", err)
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}
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return ethMsg.RequestId, PooledTransactions(ethMsg.PooledTransactionsPacket)
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default:
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msg = errorf("invalid message code: %d", code)
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}
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@ -124,6 +136,15 @@ func (c *Conn) read66() (uint64, Message) {
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return 0, errorf("invalid message: %s", string(rawData))
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}
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func (c *Conn) waitForResponse(chain *Chain, timeout time.Duration, requestID uint64) Message {
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for {
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id, msg := c.readAndServe66(chain, timeout)
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if id == requestID {
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return msg
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}
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}
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}
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// ReadAndServe serves GetBlockHeaders requests while waiting
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// on another message from the node.
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func (c *Conn) readAndServe66(chain *Chain, timeout time.Duration) (uint64, Message) {
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@ -173,27 +194,33 @@ func (s *Suite) testAnnounce66(t *utesting.T, sendConn, receiveConn *Conn, block
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}
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func (s *Suite) waitAnnounce66(t *utesting.T, conn *Conn, blockAnnouncement *NewBlock) {
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timeout := 20 * time.Second
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_, msg := conn.readAndServe66(s.chain, timeout)
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switch msg := msg.(type) {
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case *NewBlock:
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t.Logf("received NewBlock message: %s", pretty.Sdump(msg.Block))
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assert.Equal(t,
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blockAnnouncement.Block.Header(), msg.Block.Header(),
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"wrong block header in announcement",
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)
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assert.Equal(t,
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blockAnnouncement.TD, msg.TD,
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"wrong TD in announcement",
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)
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case *NewBlockHashes:
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blockHashes := *msg
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t.Logf("received NewBlockHashes message: %s", pretty.Sdump(blockHashes))
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assert.Equal(t, blockAnnouncement.Block.Hash(), blockHashes[0].Hash,
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"wrong block hash in announcement",
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)
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default:
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t.Fatalf("unexpected: %s", pretty.Sdump(msg))
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for {
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_, msg := conn.readAndServe66(s.chain, timeout)
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switch msg := msg.(type) {
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case *NewBlock:
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t.Logf("received NewBlock message: %s", pretty.Sdump(msg.Block))
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assert.Equal(t,
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blockAnnouncement.Block.Header(), msg.Block.Header(),
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"wrong block header in announcement",
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)
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assert.Equal(t,
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blockAnnouncement.TD, msg.TD,
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"wrong TD in announcement",
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)
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return
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case *NewBlockHashes:
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blockHashes := *msg
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t.Logf("received NewBlockHashes message: %s", pretty.Sdump(blockHashes))
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assert.Equal(t, blockAnnouncement.Block.Hash(), blockHashes[0].Hash,
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"wrong block hash in announcement",
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)
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return
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case *NewPooledTransactionHashes:
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// ignore old txs being propagated
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continue
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default:
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t.Fatalf("unexpected: %s", pretty.Sdump(msg))
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}
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}
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}
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@ -268,3 +295,24 @@ func headersMatch(t *utesting.T, chain *Chain, headers BlockHeaders) {
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assert.Equal(t, chain.blocks[int(num)].Header(), header)
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}
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}
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func (s *Suite) sendNextBlock66(t *utesting.T) {
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sendConn, receiveConn := s.setupConnection66(t), s.setupConnection66(t)
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defer sendConn.Close()
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defer receiveConn.Close()
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// create new block announcement
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nextBlock := len(s.chain.blocks)
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blockAnnouncement := &NewBlock{
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Block: s.fullChain.blocks[nextBlock],
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TD: s.fullChain.TD(nextBlock + 1),
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}
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// send announcement and wait for node to request the header
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s.testAnnounce66(t, sendConn, receiveConn, blockAnnouncement)
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// update test suite chain
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s.chain.blocks = append(s.chain.blocks, s.fullChain.blocks[nextBlock])
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// wait for client to update its chain
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if err := receiveConn.waitForBlock66(s.chain.Head()); err != nil {
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t.Fatal(err)
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}
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}
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@ -97,6 +97,8 @@ func (s *Suite) AllEthTests() []utesting.Test {
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{Name: "TestTransaction_66", Fn: s.TestTransaction_66},
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{Name: "TestMaliciousTx", Fn: s.TestMaliciousTx},
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{Name: "TestMaliciousTx_66", Fn: s.TestMaliciousTx_66},
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{Name: "TestLargeTxRequest_66", Fn: s.TestLargeTxRequest_66},
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{Name: "TestNewPooledTxs_66", Fn: s.TestNewPooledTxs_66},
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}
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}
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@ -129,6 +131,8 @@ func (s *Suite) Eth66Tests() []utesting.Test {
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{Name: "TestMaliciousStatus_66", Fn: s.TestMaliciousStatus_66},
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{Name: "TestTransaction_66", Fn: s.TestTransaction_66},
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{Name: "TestMaliciousTx_66", Fn: s.TestMaliciousTx_66},
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{Name: "TestLargeTxRequest_66", Fn: s.TestLargeTxRequest_66},
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{Name: "TestNewPooledTxs_66", Fn: s.TestNewPooledTxs_66},
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}
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}
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@ -455,7 +459,6 @@ func (s *Suite) testAnnounce(t *utesting.T, sendConn, receiveConn *Conn, blockAn
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}
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func (s *Suite) waitAnnounce(t *utesting.T, conn *Conn, blockAnnouncement *NewBlock) {
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timeout := 20 * time.Second
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switch msg := conn.ReadAndServe(s.chain, timeout).(type) {
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case *NewBlock:
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t.Logf("received NewBlock message: %s", pretty.Sdump(msg.Block))
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@ -17,12 +17,15 @@
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package ethtest
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import (
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"math/big"
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"strings"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/internal/utesting"
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"github.com/ethereum/go-ethereum/params"
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)
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//var faucetAddr = common.HexToAddress("0x71562b71999873DB5b286dF957af199Ec94617F7")
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@ -40,7 +43,9 @@ func sendSuccessfulTxWithConn(t *utesting.T, s *Suite, tx *types.Transaction, se
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if err := sendConn.Write(&Transactions{tx}); err != nil {
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t.Fatal(err)
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}
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time.Sleep(100 * time.Millisecond)
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// update last nonce seen
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nonce = tx.Nonce()
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recvConn := s.setupConnection(t)
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// Wait for the transaction announcement
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switch msg := recvConn.ReadAndServe(s.chain, timeout).(type) {
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@ -66,6 +71,60 @@ func sendSuccessfulTxWithConn(t *utesting.T, s *Suite, tx *types.Transaction, se
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}
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}
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var nonce = uint64(99)
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func sendMultipleSuccessfulTxs(t *utesting.T, s *Suite, sendConn *Conn, txs []*types.Transaction) {
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txMsg := Transactions(txs)
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t.Logf("sending %d txs\n", len(txs))
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recvConn := s.setupConnection(t)
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defer recvConn.Close()
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// Send the transactions
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if err := sendConn.Write(&txMsg); err != nil {
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t.Fatal(err)
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}
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// update nonce
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nonce = txs[len(txs)-1].Nonce()
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// Wait for the transaction announcement(s) and make sure all sent txs are being propagated
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recvHashes := make([]common.Hash, 0)
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// all txs should be announced within 3 announcements
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for i := 0; i < 3; i++ {
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switch msg := recvConn.ReadAndServe(s.chain, timeout).(type) {
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case *Transactions:
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for _, tx := range *msg {
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recvHashes = append(recvHashes, tx.Hash())
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}
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case *NewPooledTransactionHashes:
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recvHashes = append(recvHashes, *msg...)
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default:
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if !strings.Contains(pretty.Sdump(msg), "i/o timeout") {
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t.Fatalf("unexpected message while waiting to receive txs: %s", pretty.Sdump(msg))
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}
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}
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// break once all 2000 txs have been received
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if len(recvHashes) == 2000 {
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break
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}
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if len(recvHashes) > 0 {
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_, missingTxs := compareReceivedTxs(recvHashes, txs)
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if len(missingTxs) > 0 {
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continue
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} else {
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t.Logf("successfully received all %d txs", len(txs))
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return
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}
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}
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}
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_, missingTxs := compareReceivedTxs(recvHashes, txs)
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if len(missingTxs) > 0 {
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for _, missing := range missingTxs {
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t.Logf("missing tx: %v", missing.Hash())
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}
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t.Fatalf("missing %d txs", len(missingTxs))
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}
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}
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func waitForTxPropagation(t *utesting.T, s *Suite, txs []*types.Transaction, recvConn *Conn) {
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// Wait for another transaction announcement
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switch msg := recvConn.ReadAndServe(s.chain, time.Second*8).(type) {
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@ -75,7 +134,7 @@ func waitForTxPropagation(t *utesting.T, s *Suite, txs []*types.Transaction, rec
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for i, recvTx := range *msg {
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recvTxs[i] = recvTx.Hash()
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}
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badTxs := containsTxs(recvTxs, txs)
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badTxs, _ := compareReceivedTxs(recvTxs, txs)
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if len(badTxs) > 0 {
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for _, tx := range badTxs {
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t.Logf("received bad tx: %v", tx)
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@ -83,7 +142,7 @@ func waitForTxPropagation(t *utesting.T, s *Suite, txs []*types.Transaction, rec
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t.Fatalf("received %d bad txs", len(badTxs))
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}
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case *NewPooledTransactionHashes:
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badTxs := containsTxs(*msg, txs)
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badTxs, _ := compareReceivedTxs(*msg, txs)
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if len(badTxs) > 0 {
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for _, tx := range badTxs {
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t.Logf("received bad tx: %v", tx)
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@ -98,18 +157,27 @@ func waitForTxPropagation(t *utesting.T, s *Suite, txs []*types.Transaction, rec
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}
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}
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// containsTxs checks whether the hashes of the received transactions are present in
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// the given set of txs
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func containsTxs(recvTxs []common.Hash, txs []*types.Transaction) []common.Hash {
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containedTxs := make([]common.Hash, 0)
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for _, recvTx := range recvTxs {
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for _, tx := range txs {
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if recvTx == tx.Hash() {
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containedTxs = append(containedTxs, recvTx)
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}
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// compareReceivedTxs compares the received set of txs against the given set of txs,
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// returning both the set received txs that were present within the given txs, and
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// the set of txs that were missing from the set of received txs
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func compareReceivedTxs(recvTxs []common.Hash, txs []*types.Transaction) (present []*types.Transaction, missing []*types.Transaction) {
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// create a map of the hashes received from node
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recvHashes := make(map[common.Hash]common.Hash)
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for _, hash := range recvTxs {
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recvHashes[hash] = hash
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}
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// collect present txs and missing txs separately
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present = make([]*types.Transaction, 0)
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missing = make([]*types.Transaction, 0)
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for _, tx := range txs {
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if _, exists := recvHashes[tx.Hash()]; exists {
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present = append(present, tx)
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} else {
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missing = append(missing, tx)
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}
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}
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return containedTxs
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return present, missing
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}
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func unknownTx(t *utesting.T, s *Suite) *types.Transaction {
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@ -119,7 +187,7 @@ func unknownTx(t *utesting.T, s *Suite) *types.Transaction {
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to = *tx.To()
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}
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txNew := types.NewTransaction(tx.Nonce()+1, to, tx.Value(), tx.Gas(), tx.GasPrice(), tx.Data())
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return signWithFaucet(t, txNew)
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return signWithFaucet(t, s.chain.chainConfig, txNew)
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}
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func getNextTxFromChain(t *utesting.T, s *Suite) *types.Transaction {
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@ -138,6 +206,30 @@ func getNextTxFromChain(t *utesting.T, s *Suite) *types.Transaction {
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return tx
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}
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func generateTxs(t *utesting.T, s *Suite, numTxs int) (map[common.Hash]common.Hash, []*types.Transaction) {
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txHashMap := make(map[common.Hash]common.Hash, numTxs)
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txs := make([]*types.Transaction, numTxs)
|
||||
|
||||
nextTx := getNextTxFromChain(t, s)
|
||||
gas := nextTx.Gas()
|
||||
|
||||
nonce = nonce + 1
|
||||
// generate txs
|
||||
for i := 0; i < numTxs; i++ {
|
||||
tx := generateTx(t, s.chain.chainConfig, nonce, gas)
|
||||
txHashMap[tx.Hash()] = tx.Hash()
|
||||
txs[i] = tx
|
||||
nonce = nonce + 1
|
||||
}
|
||||
return txHashMap, txs
|
||||
}
|
||||
|
||||
func generateTx(t *utesting.T, chainConfig *params.ChainConfig, nonce uint64, gas uint64) *types.Transaction {
|
||||
var to common.Address
|
||||
tx := types.NewTransaction(nonce, to, big.NewInt(1), gas, big.NewInt(1), []byte{})
|
||||
return signWithFaucet(t, chainConfig, tx)
|
||||
}
|
||||
|
||||
func getOldTxFromChain(t *utesting.T, s *Suite) *types.Transaction {
|
||||
var tx *types.Transaction
|
||||
for _, blocks := range s.fullChain.blocks[:s.chain.Len()-1] {
|
||||
@ -160,7 +252,7 @@ func invalidNonceTx(t *utesting.T, s *Suite) *types.Transaction {
|
||||
to = *tx.To()
|
||||
}
|
||||
txNew := types.NewTransaction(tx.Nonce()-2, to, tx.Value(), tx.Gas(), tx.GasPrice(), tx.Data())
|
||||
return signWithFaucet(t, txNew)
|
||||
return signWithFaucet(t, s.chain.chainConfig, txNew)
|
||||
}
|
||||
|
||||
func hugeAmount(t *utesting.T, s *Suite) *types.Transaction {
|
||||
@ -171,7 +263,7 @@ func hugeAmount(t *utesting.T, s *Suite) *types.Transaction {
|
||||
to = *tx.To()
|
||||
}
|
||||
txNew := types.NewTransaction(tx.Nonce(), to, amount, tx.Gas(), tx.GasPrice(), tx.Data())
|
||||
return signWithFaucet(t, txNew)
|
||||
return signWithFaucet(t, s.chain.chainConfig, txNew)
|
||||
}
|
||||
|
||||
func hugeGasPrice(t *utesting.T, s *Suite) *types.Transaction {
|
||||
@ -182,7 +274,7 @@ func hugeGasPrice(t *utesting.T, s *Suite) *types.Transaction {
|
||||
to = *tx.To()
|
||||
}
|
||||
txNew := types.NewTransaction(tx.Nonce(), to, tx.Value(), tx.Gas(), gasPrice, tx.Data())
|
||||
return signWithFaucet(t, txNew)
|
||||
return signWithFaucet(t, s.chain.chainConfig, txNew)
|
||||
}
|
||||
|
||||
func hugeData(t *utesting.T, s *Suite) *types.Transaction {
|
||||
@ -192,11 +284,11 @@ func hugeData(t *utesting.T, s *Suite) *types.Transaction {
|
||||
to = *tx.To()
|
||||
}
|
||||
txNew := types.NewTransaction(tx.Nonce(), to, tx.Value(), tx.Gas(), tx.GasPrice(), largeBuffer(2))
|
||||
return signWithFaucet(t, txNew)
|
||||
return signWithFaucet(t, s.chain.chainConfig, txNew)
|
||||
}
|
||||
|
||||
func signWithFaucet(t *utesting.T, tx *types.Transaction) *types.Transaction {
|
||||
signer := types.HomesteadSigner{}
|
||||
func signWithFaucet(t *utesting.T, chainConfig *params.ChainConfig, tx *types.Transaction) *types.Transaction {
|
||||
signer := types.LatestSigner(chainConfig)
|
||||
signedTx, err := types.SignTx(tx, signer, faucetKey)
|
||||
if err != nil {
|
||||
t.Fatalf("could not sign tx: %v\n", err)
|
||||
|
@ -120,6 +120,14 @@ type NewPooledTransactionHashes eth.NewPooledTransactionHashesPacket
|
||||
|
||||
func (nb NewPooledTransactionHashes) Code() int { return 24 }
|
||||
|
||||
type GetPooledTransactions eth.GetPooledTransactionsPacket
|
||||
|
||||
func (gpt GetPooledTransactions) Code() int { return 25 }
|
||||
|
||||
type PooledTransactions eth.PooledTransactionsPacket
|
||||
|
||||
func (pt PooledTransactions) Code() int { return 26 }
|
||||
|
||||
// Conn represents an individual connection with a peer
|
||||
type Conn struct {
|
||||
*rlpx.Conn
|
||||
@ -163,6 +171,10 @@ func (c *Conn) Read() Message {
|
||||
msg = new(Transactions)
|
||||
case (NewPooledTransactionHashes{}).Code():
|
||||
msg = new(NewPooledTransactionHashes)
|
||||
case (GetPooledTransactions{}.Code()):
|
||||
msg = new(GetPooledTransactions)
|
||||
case (PooledTransactions{}.Code()):
|
||||
msg = new(PooledTransactions)
|
||||
default:
|
||||
return errorf("invalid message code: %d", code)
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user