neoneo-go/pkg/network/helper_test.go
Roman Khimov eb11e5fb11 core: implement basic policying support, fix #370
Implement mempool and consensus block creation policies, almost the same as
SimplePolicy plugin for C# node provides with two caveats:
 * HighPriorityTxType is not configured and hardcoded to ClaimType
 * BlockedAccounts are not supported

Other than that it allows us to run successfuly as testnet CN, previously our
proposals were rejected because we were proposing blocks with oversized
transactions (that are rejected by PoolTx() now).

Mainnet and testnet configuration files are updated accordingly, but privnet
is left as is with no limits.

Configuration is currently attached to the Blockchain and so is the code that
does policying, it may be moved somewhere in the future, but it works for
now.
2020-02-19 12:19:02 +03:00

271 lines
7 KiB
Go

package network
import (
"math/rand"
"net"
"sync/atomic"
"testing"
"time"
"github.com/CityOfZion/neo-go/config"
"github.com/CityOfZion/neo-go/pkg/core"
"github.com/CityOfZion/neo-go/pkg/core/block"
"github.com/CityOfZion/neo-go/pkg/core/mempool"
"github.com/CityOfZion/neo-go/pkg/core/state"
"github.com/CityOfZion/neo-go/pkg/core/storage"
"github.com/CityOfZion/neo-go/pkg/core/transaction"
"github.com/CityOfZion/neo-go/pkg/crypto/keys"
"github.com/CityOfZion/neo-go/pkg/io"
"github.com/CityOfZion/neo-go/pkg/network/payload"
"github.com/CityOfZion/neo-go/pkg/util"
"github.com/CityOfZion/neo-go/pkg/vm"
"go.uber.org/zap/zaptest"
)
type testChain struct {
blockheight uint32
}
func (chain testChain) ApplyPolicyToTxSet([]mempool.TxWithFee) []mempool.TxWithFee {
panic("TODO")
}
func (chain testChain) GetConfig() config.ProtocolConfiguration {
panic("TODO")
}
func (chain testChain) References(t *transaction.Transaction) map[transaction.Input]*transaction.Output {
panic("TODO")
}
func (chain testChain) FeePerByte(t *transaction.Transaction) util.Fixed8 {
panic("TODO")
}
func (chain testChain) SystemFee(t *transaction.Transaction) util.Fixed8 {
panic("TODO")
}
func (chain testChain) NetworkFee(t *transaction.Transaction) util.Fixed8 {
panic("TODO")
}
func (chain testChain) AddHeaders(...*block.Header) error {
panic("TODO")
}
func (chain *testChain) AddBlock(block *block.Block) error {
if block.Index == chain.blockheight+1 {
atomic.StoreUint32(&chain.blockheight, block.Index)
}
return nil
}
func (chain *testChain) BlockHeight() uint32 {
return atomic.LoadUint32(&chain.blockheight)
}
func (chain *testChain) Close() {
panic("TODO")
}
func (chain testChain) HeaderHeight() uint32 {
return 0
}
func (chain testChain) GetBlock(hash util.Uint256) (*block.Block, error) {
panic("TODO")
}
func (chain testChain) GetContractState(hash util.Uint160) *state.Contract {
panic("TODO")
}
func (chain testChain) GetHeaderHash(int) util.Uint256 {
return util.Uint256{}
}
func (chain testChain) GetHeader(hash util.Uint256) (*block.Header, error) {
panic("TODO")
}
func (chain testChain) GetAssetState(util.Uint256) *state.Asset {
panic("TODO")
}
func (chain testChain) GetAccountState(util.Uint160) *state.Account {
panic("TODO")
}
func (chain testChain) GetValidators(...*transaction.Transaction) ([]*keys.PublicKey, error) {
panic("TODO")
}
func (chain testChain) GetScriptHashesForVerifying(*transaction.Transaction) ([]util.Uint160, error) {
panic("TODO")
}
func (chain testChain) GetStorageItem(scripthash util.Uint160, key []byte) *state.StorageItem {
panic("TODO")
}
func (chain testChain) GetTestVM() (*vm.VM, storage.Store) {
panic("TODO")
}
func (chain testChain) GetStorageItems(hash util.Uint160) (map[string]*state.StorageItem, error) {
panic("TODO")
}
func (chain testChain) CurrentHeaderHash() util.Uint256 {
return util.Uint256{}
}
func (chain testChain) CurrentBlockHash() util.Uint256 {
return util.Uint256{}
}
func (chain testChain) HasBlock(util.Uint256) bool {
return false
}
func (chain testChain) HasTransaction(util.Uint256) bool {
return false
}
func (chain testChain) GetTransaction(util.Uint256) (*transaction.Transaction, uint32, error) {
panic("TODO")
}
func (chain testChain) GetUnspentCoinState(util.Uint256) *core.UnspentCoinState {
panic("TODO")
}
func (chain testChain) GetMemPool() *mempool.Pool {
panic("TODO")
}
func (chain testChain) IsLowPriority(util.Fixed8) bool {
panic("TODO")
}
func (chain testChain) PoolTx(*transaction.Transaction) error {
panic("TODO")
}
func (chain testChain) VerifyTx(*transaction.Transaction, *block.Block) error {
panic("TODO")
}
type testDiscovery struct{}
func (d testDiscovery) BackFill(addrs ...string) {}
func (d testDiscovery) PoolCount() int { return 0 }
func (d testDiscovery) RegisterBadAddr(string) {}
func (d testDiscovery) RegisterGoodAddr(string) {}
func (d testDiscovery) RegisterConnectedAddr(string) {}
func (d testDiscovery) UnregisterConnectedAddr(string) {}
func (d testDiscovery) UnconnectedPeers() []string { return []string{} }
func (d testDiscovery) RequestRemote(n int) {}
func (d testDiscovery) BadPeers() []string { return []string{} }
func (d testDiscovery) GoodPeers() []string { return []string{} }
type localTransport struct{}
func (t localTransport) Dial(addr string, timeout time.Duration) error {
return nil
}
func (t localTransport) Accept() {}
func (t localTransport) Proto() string { return "local" }
func (t localTransport) Close() {}
var defaultMessageHandler = func(t *testing.T, msg *Message) {}
type localPeer struct {
netaddr net.TCPAddr
server *Server
version *payload.Version
lastBlockIndex uint32
handshaked bool
t *testing.T
messageHandler func(t *testing.T, msg *Message)
pingSent int
}
func newLocalPeer(t *testing.T, s *Server) *localPeer {
naddr, _ := net.ResolveTCPAddr("tcp", "0.0.0.0:0")
return &localPeer{
t: t,
server: s,
netaddr: *naddr,
messageHandler: defaultMessageHandler,
}
}
func (p *localPeer) RemoteAddr() net.Addr {
return &p.netaddr
}
func (p *localPeer) PeerAddr() net.Addr {
return &p.netaddr
}
func (p *localPeer) StartProtocol() {}
func (p *localPeer) Disconnect(err error) {}
func (p *localPeer) EnqueueMessage(msg *Message) error {
b, err := msg.Bytes()
if err != nil {
return err
}
return p.EnqueuePacket(b)
}
func (p *localPeer) EnqueuePacket(m []byte) error {
return p.EnqueueHPPacket(m)
}
func (p *localPeer) EnqueueP2PMessage(msg *Message) error {
return p.EnqueueMessage(msg)
}
func (p *localPeer) EnqueueP2PPacket(m []byte) error {
return p.EnqueueHPPacket(m)
}
func (p *localPeer) EnqueueHPPacket(m []byte) error {
msg := &Message{}
r := io.NewBinReaderFromBuf(m)
err := msg.Decode(r)
if err == nil {
p.messageHandler(p.t, msg)
}
return nil
}
func (p *localPeer) Version() *payload.Version {
return p.version
}
func (p *localPeer) LastBlockIndex() uint32 {
return p.lastBlockIndex
}
func (p *localPeer) HandleVersion(v *payload.Version) error {
p.version = v
return nil
}
func (p *localPeer) SendVersion() error {
m := p.server.getVersionMsg()
_ = p.EnqueueMessage(m)
return nil
}
func (p *localPeer) SendVersionAck(m *Message) error {
_ = p.EnqueueMessage(m)
return nil
}
func (p *localPeer) HandleVersionAck() error {
p.handshaked = true
return nil
}
func (p *localPeer) SendPing(m *Message) error {
p.pingSent++
_ = p.EnqueueMessage(m)
return nil
}
func (p *localPeer) HandlePong(pong *payload.Ping) error {
p.lastBlockIndex = pong.LastBlockIndex
p.pingSent--
return nil
}
func (p *localPeer) Handshaked() bool {
return p.handshaked
}
func newTestServer(t *testing.T) *Server {
return &Server{
ServerConfig: ServerConfig{},
chain: &testChain{},
transport: localTransport{},
discovery: testDiscovery{},
id: rand.Uint32(),
quit: make(chan struct{}),
register: make(chan Peer),
unregister: make(chan peerDrop),
peers: make(map[Peer]bool),
log: zaptest.NewLogger(t),
}
}