2014-12-05 23:14:55 +02:00
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package eth
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import (
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"io"
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"math/big"
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"testing"
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"github.com/ethereum/go-ethereum/core/types"
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2014-12-10 01:55:50 +02:00
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"github.com/ethereum/go-ethereum/crypto"
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2014-12-05 23:14:55 +02:00
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"github.com/ethereum/go-ethereum/p2p"
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)
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type testMsgReadWriter struct {
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in chan p2p.Msg
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out chan p2p.Msg
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}
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func (self *testMsgReadWriter) In(msg p2p.Msg) {
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self.in <- msg
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}
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func (self *testMsgReadWriter) Out(msg p2p.Msg) {
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self.in <- msg
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}
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func (self *testMsgReadWriter) WriteMsg(msg p2p.Msg) error {
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self.out <- msg
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return nil
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}
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func (self *testMsgReadWriter) EncodeMsg(code uint64, data ...interface{}) error {
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return self.WriteMsg(p2p.NewMsg(code, data))
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}
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func (self *testMsgReadWriter) ReadMsg() (p2p.Msg, error) {
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msg, ok := <-self.in
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if !ok {
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return msg, io.EOF
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}
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return msg, nil
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}
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func errorCheck(t *testing.T, expCode int, err error) {
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perr, ok := err.(*protocolError)
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if ok && perr != nil {
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if code := perr.Code; code != expCode {
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ok = false
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}
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}
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if !ok {
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t.Errorf("expected error code %v, got %v", ErrNoStatusMsg, err)
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}
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}
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type TestBackend struct {
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getTransactions func() []*types.Transaction
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addTransactions func(txs []*types.Transaction)
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getBlockHashes func(hash []byte, amount uint32) (hashes [][]byte)
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2014-12-10 01:55:50 +02:00
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addBlockHashes func(next func() ([]byte, bool), peerId string)
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getBlock func(hash []byte) *types.Block
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addBlock func(block *types.Block, peerId string) (err error)
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addPeer func(td *big.Int, currentBlock []byte, peerId string, requestHashes func([]byte) error, requestBlocks func([][]byte) error, invalidBlock func(error)) (best bool)
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removePeer func(peerId string)
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2014-12-05 23:14:55 +02:00
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status func() (td *big.Int, currentBlock []byte, genesisBlock []byte)
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}
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func (self *TestBackend) GetTransactions() (txs []*types.Transaction) {
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if self.getTransactions != nil {
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txs = self.getTransactions()
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}
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return
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}
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func (self *TestBackend) AddTransactions(txs []*types.Transaction) {
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if self.addTransactions != nil {
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self.addTransactions(txs)
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}
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}
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func (self *TestBackend) GetBlockHashes(hash []byte, amount uint32) (hashes [][]byte) {
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if self.getBlockHashes != nil {
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hashes = self.getBlockHashes(hash, amount)
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}
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return
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}
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2014-12-10 01:55:50 +02:00
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func (self *TestBackend) AddBlockHashes(next func() ([]byte, bool), peerId string) {
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if self.addBlockHashes != nil {
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self.addBlockHashes(next, peerId)
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2014-12-05 23:14:55 +02:00
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}
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}
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2014-12-10 01:55:50 +02:00
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2014-12-05 23:14:55 +02:00
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func (self *TestBackend) GetBlock(hash []byte) (block *types.Block) {
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if self.getBlock != nil {
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block = self.getBlock(hash)
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}
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return
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}
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2014-12-10 01:55:50 +02:00
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func (self *TestBackend) AddBlock(block *types.Block, peerId string) (err error) {
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if self.addBlock != nil {
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err = self.addBlock(block, peerId)
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}
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return
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}
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2014-12-10 01:55:50 +02:00
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func (self *TestBackend) AddPeer(td *big.Int, currentBlock []byte, peerId string, requestBlockHashes func([]byte) error, requestBlocks func([][]byte) error, invalidBlock func(error)) (best bool) {
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if self.addPeer != nil {
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best = self.addPeer(td, currentBlock, peerId, requestBlockHashes, requestBlocks, invalidBlock)
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}
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return
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}
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2014-12-10 01:55:50 +02:00
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func (self *TestBackend) RemovePeer(peerId string) {
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if self.removePeer != nil {
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self.removePeer(peerId)
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}
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}
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2014-12-05 23:14:55 +02:00
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func (self *TestBackend) Status() (td *big.Int, currentBlock []byte, genesisBlock []byte) {
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if self.status != nil {
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td, currentBlock, genesisBlock = self.status()
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}
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return
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}
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2014-12-10 01:55:50 +02:00
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// TODO: refactor this into p2p/client_identity
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type peerId struct {
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pubkey []byte
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}
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func (self *peerId) String() string {
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return "test peer"
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}
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func (self *peerId) Pubkey() (pubkey []byte) {
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pubkey = self.pubkey
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if len(pubkey) == 0 {
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pubkey = crypto.GenerateNewKeyPair().PublicKey
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self.pubkey = pubkey
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}
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return
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}
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func testPeer() *p2p.Peer {
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return p2p.NewPeer(&peerId{}, []p2p.Cap{})
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}
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func TestErrNoStatusMsg(t *testing.T) {
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quit := make(chan bool)
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rw := &testMsgReadWriter{make(chan p2p.Msg, 10), make(chan p2p.Msg, 10)}
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testBackend := &TestBackend{}
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var err error
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go func() {
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err = runEthProtocol(testBackend, testPeer(), rw)
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close(quit)
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}()
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statusMsg := p2p.NewMsg(4)
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rw.In(statusMsg)
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<-quit
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errorCheck(t, ErrNoStatusMsg, err)
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// read(t, remote, []byte("hello, world"), nil)
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}
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