github.com/pslzym/go-ethereum@v1.8.17-0.20180926104442-4b6824e07b1b/p2p/server_test.go (about)

     1  // Copyright 2014 The go-ethereum Authors
     2  // This file is part of the go-ethereum library.
     3  //
     4  // The go-ethereum library is free software: you can redistribute it and/or modify
     5  // it under the terms of the GNU Lesser General Public License as published by
     6  // the Free Software Foundation, either version 3 of the License, or
     7  // (at your option) any later version.
     8  //
     9  // The go-ethereum library is distributed in the hope that it will be useful,
    10  // but WITHOUT ANY WARRANTY; without even the implied warranty of
    11  // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
    12  // GNU Lesser General Public License for more details.
    13  //
    14  // You should have received a copy of the GNU Lesser General Public License
    15  // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
    16  
    17  package p2p
    18  
    19  import (
    20  	"crypto/ecdsa"
    21  	"errors"
    22  	"math/rand"
    23  	"net"
    24  	"reflect"
    25  	"testing"
    26  	"time"
    27  
    28  	"github.com/ethereum/go-ethereum/crypto"
    29  	"github.com/ethereum/go-ethereum/crypto/sha3"
    30  	"github.com/ethereum/go-ethereum/log"
    31  	"github.com/ethereum/go-ethereum/p2p/enode"
    32  	"github.com/ethereum/go-ethereum/p2p/enr"
    33  )
    34  
    35  // func init() {
    36  // 	log.Root().SetHandler(log.LvlFilterHandler(log.LvlTrace, log.StreamHandler(os.Stderr, log.TerminalFormat(false))))
    37  // }
    38  
    39  type testTransport struct {
    40  	rpub *ecdsa.PublicKey
    41  	*rlpx
    42  
    43  	closeErr error
    44  }
    45  
    46  func newTestTransport(rpub *ecdsa.PublicKey, fd net.Conn) transport {
    47  	wrapped := newRLPX(fd).(*rlpx)
    48  	wrapped.rw = newRLPXFrameRW(fd, secrets{
    49  		MAC:        zero16,
    50  		AES:        zero16,
    51  		IngressMAC: sha3.NewKeccak256(),
    52  		EgressMAC:  sha3.NewKeccak256(),
    53  	})
    54  	return &testTransport{rpub: rpub, rlpx: wrapped}
    55  }
    56  
    57  func (c *testTransport) doEncHandshake(prv *ecdsa.PrivateKey, dialDest *ecdsa.PublicKey) (*ecdsa.PublicKey, error) {
    58  	return c.rpub, nil
    59  }
    60  
    61  func (c *testTransport) doProtoHandshake(our *protoHandshake) (*protoHandshake, error) {
    62  	pubkey := crypto.FromECDSAPub(c.rpub)[1:]
    63  	return &protoHandshake{ID: pubkey, Name: "test"}, nil
    64  }
    65  
    66  func (c *testTransport) close(err error) {
    67  	c.rlpx.fd.Close()
    68  	c.closeErr = err
    69  }
    70  
    71  func startTestServer(t *testing.T, remoteKey *ecdsa.PublicKey, pf func(*Peer)) *Server {
    72  	config := Config{
    73  		Name:       "test",
    74  		MaxPeers:   10,
    75  		ListenAddr: "127.0.0.1:0",
    76  		PrivateKey: newkey(),
    77  	}
    78  	server := &Server{
    79  		Config:       config,
    80  		newPeerHook:  pf,
    81  		newTransport: func(fd net.Conn) transport { return newTestTransport(remoteKey, fd) },
    82  	}
    83  	if err := server.Start(); err != nil {
    84  		t.Fatalf("Could not start server: %v", err)
    85  	}
    86  	return server
    87  }
    88  
    89  func TestServerListen(t *testing.T) {
    90  	// start the test server
    91  	connected := make(chan *Peer)
    92  	remid := &newkey().PublicKey
    93  	srv := startTestServer(t, remid, func(p *Peer) {
    94  		if p.ID() != enode.PubkeyToIDV4(remid) {
    95  			t.Error("peer func called with wrong node id")
    96  		}
    97  		connected <- p
    98  	})
    99  	defer close(connected)
   100  	defer srv.Stop()
   101  
   102  	// dial the test server
   103  	conn, err := net.DialTimeout("tcp", srv.ListenAddr, 5*time.Second)
   104  	if err != nil {
   105  		t.Fatalf("could not dial: %v", err)
   106  	}
   107  	defer conn.Close()
   108  
   109  	select {
   110  	case peer := <-connected:
   111  		if peer.LocalAddr().String() != conn.RemoteAddr().String() {
   112  			t.Errorf("peer started with wrong conn: got %v, want %v",
   113  				peer.LocalAddr(), conn.RemoteAddr())
   114  		}
   115  		peers := srv.Peers()
   116  		if !reflect.DeepEqual(peers, []*Peer{peer}) {
   117  			t.Errorf("Peers mismatch: got %v, want %v", peers, []*Peer{peer})
   118  		}
   119  	case <-time.After(1 * time.Second):
   120  		t.Error("server did not accept within one second")
   121  	}
   122  }
   123  
   124  func TestServerDial(t *testing.T) {
   125  	// run a one-shot TCP server to handle the connection.
   126  	listener, err := net.Listen("tcp", "127.0.0.1:0")
   127  	if err != nil {
   128  		t.Fatalf("could not setup listener: %v", err)
   129  	}
   130  	defer listener.Close()
   131  	accepted := make(chan net.Conn)
   132  	go func() {
   133  		conn, err := listener.Accept()
   134  		if err != nil {
   135  			t.Error("accept error:", err)
   136  			return
   137  		}
   138  		accepted <- conn
   139  	}()
   140  
   141  	// start the server
   142  	connected := make(chan *Peer)
   143  	remid := &newkey().PublicKey
   144  	srv := startTestServer(t, remid, func(p *Peer) { connected <- p })
   145  	defer close(connected)
   146  	defer srv.Stop()
   147  
   148  	// tell the server to connect
   149  	tcpAddr := listener.Addr().(*net.TCPAddr)
   150  	node := enode.NewV4(remid, tcpAddr.IP, tcpAddr.Port, 0)
   151  	srv.AddPeer(node)
   152  
   153  	select {
   154  	case conn := <-accepted:
   155  		defer conn.Close()
   156  
   157  		select {
   158  		case peer := <-connected:
   159  			if peer.ID() != enode.PubkeyToIDV4(remid) {
   160  				t.Errorf("peer has wrong id")
   161  			}
   162  			if peer.Name() != "test" {
   163  				t.Errorf("peer has wrong name")
   164  			}
   165  			if peer.RemoteAddr().String() != conn.LocalAddr().String() {
   166  				t.Errorf("peer started with wrong conn: got %v, want %v",
   167  					peer.RemoteAddr(), conn.LocalAddr())
   168  			}
   169  			peers := srv.Peers()
   170  			if !reflect.DeepEqual(peers, []*Peer{peer}) {
   171  				t.Errorf("Peers mismatch: got %v, want %v", peers, []*Peer{peer})
   172  			}
   173  
   174  			// Test AddTrustedPeer/RemoveTrustedPeer and changing Trusted flags
   175  			// Particularly for race conditions on changing the flag state.
   176  			if peer := srv.Peers()[0]; peer.Info().Network.Trusted {
   177  				t.Errorf("peer is trusted prematurely: %v", peer)
   178  			}
   179  			done := make(chan bool)
   180  			go func() {
   181  				srv.AddTrustedPeer(node)
   182  				if peer := srv.Peers()[0]; !peer.Info().Network.Trusted {
   183  					t.Errorf("peer is not trusted after AddTrustedPeer: %v", peer)
   184  				}
   185  				srv.RemoveTrustedPeer(node)
   186  				if peer := srv.Peers()[0]; peer.Info().Network.Trusted {
   187  					t.Errorf("peer is trusted after RemoveTrustedPeer: %v", peer)
   188  				}
   189  				done <- true
   190  			}()
   191  			// Trigger potential race conditions
   192  			peer = srv.Peers()[0]
   193  			_ = peer.Inbound()
   194  			_ = peer.Info()
   195  			<-done
   196  		case <-time.After(1 * time.Second):
   197  			t.Error("server did not launch peer within one second")
   198  		}
   199  
   200  	case <-time.After(1 * time.Second):
   201  		t.Error("server did not connect within one second")
   202  	}
   203  }
   204  
   205  // This test checks that tasks generated by dialstate are
   206  // actually executed and taskdone is called for them.
   207  func TestServerTaskScheduling(t *testing.T) {
   208  	var (
   209  		done           = make(chan *testTask)
   210  		quit, returned = make(chan struct{}), make(chan struct{})
   211  		tc             = 0
   212  		tg             = taskgen{
   213  			newFunc: func(running int, peers map[enode.ID]*Peer) []task {
   214  				tc++
   215  				return []task{&testTask{index: tc - 1}}
   216  			},
   217  			doneFunc: func(t task) {
   218  				select {
   219  				case done <- t.(*testTask):
   220  				case <-quit:
   221  				}
   222  			},
   223  		}
   224  	)
   225  
   226  	// The Server in this test isn't actually running
   227  	// because we're only interested in what run does.
   228  	srv := &Server{
   229  		Config:  Config{MaxPeers: 10},
   230  		quit:    make(chan struct{}),
   231  		ntab:    fakeTable{},
   232  		running: true,
   233  		log:     log.New(),
   234  	}
   235  	srv.loopWG.Add(1)
   236  	go func() {
   237  		srv.run(tg)
   238  		close(returned)
   239  	}()
   240  
   241  	var gotdone []*testTask
   242  	for i := 0; i < 100; i++ {
   243  		gotdone = append(gotdone, <-done)
   244  	}
   245  	for i, task := range gotdone {
   246  		if task.index != i {
   247  			t.Errorf("task %d has wrong index, got %d", i, task.index)
   248  			break
   249  		}
   250  		if !task.called {
   251  			t.Errorf("task %d was not called", i)
   252  			break
   253  		}
   254  	}
   255  
   256  	close(quit)
   257  	srv.Stop()
   258  	select {
   259  	case <-returned:
   260  	case <-time.After(500 * time.Millisecond):
   261  		t.Error("Server.run did not return within 500ms")
   262  	}
   263  }
   264  
   265  // This test checks that Server doesn't drop tasks,
   266  // even if newTasks returns more than the maximum number of tasks.
   267  func TestServerManyTasks(t *testing.T) {
   268  	alltasks := make([]task, 300)
   269  	for i := range alltasks {
   270  		alltasks[i] = &testTask{index: i}
   271  	}
   272  
   273  	var (
   274  		srv = &Server{
   275  			quit:    make(chan struct{}),
   276  			ntab:    fakeTable{},
   277  			running: true,
   278  			log:     log.New(),
   279  		}
   280  		done       = make(chan *testTask)
   281  		start, end = 0, 0
   282  	)
   283  	defer srv.Stop()
   284  	srv.loopWG.Add(1)
   285  	go srv.run(taskgen{
   286  		newFunc: func(running int, peers map[enode.ID]*Peer) []task {
   287  			start, end = end, end+maxActiveDialTasks+10
   288  			if end > len(alltasks) {
   289  				end = len(alltasks)
   290  			}
   291  			return alltasks[start:end]
   292  		},
   293  		doneFunc: func(tt task) {
   294  			done <- tt.(*testTask)
   295  		},
   296  	})
   297  
   298  	doneset := make(map[int]bool)
   299  	timeout := time.After(2 * time.Second)
   300  	for len(doneset) < len(alltasks) {
   301  		select {
   302  		case tt := <-done:
   303  			if doneset[tt.index] {
   304  				t.Errorf("task %d got done more than once", tt.index)
   305  			} else {
   306  				doneset[tt.index] = true
   307  			}
   308  		case <-timeout:
   309  			t.Errorf("%d of %d tasks got done within 2s", len(doneset), len(alltasks))
   310  			for i := 0; i < len(alltasks); i++ {
   311  				if !doneset[i] {
   312  					t.Logf("task %d not done", i)
   313  				}
   314  			}
   315  			return
   316  		}
   317  	}
   318  }
   319  
   320  type taskgen struct {
   321  	newFunc  func(running int, peers map[enode.ID]*Peer) []task
   322  	doneFunc func(task)
   323  }
   324  
   325  func (tg taskgen) newTasks(running int, peers map[enode.ID]*Peer, now time.Time) []task {
   326  	return tg.newFunc(running, peers)
   327  }
   328  func (tg taskgen) taskDone(t task, now time.Time) {
   329  	tg.doneFunc(t)
   330  }
   331  func (tg taskgen) addStatic(*enode.Node) {
   332  }
   333  func (tg taskgen) removeStatic(*enode.Node) {
   334  }
   335  
   336  type testTask struct {
   337  	index  int
   338  	called bool
   339  }
   340  
   341  func (t *testTask) Do(srv *Server) {
   342  	t.called = true
   343  }
   344  
   345  // This test checks that connections are disconnected
   346  // just after the encryption handshake when the server is
   347  // at capacity. Trusted connections should still be accepted.
   348  func TestServerAtCap(t *testing.T) {
   349  	trustedNode := newkey()
   350  	trustedID := enode.PubkeyToIDV4(&trustedNode.PublicKey)
   351  	srv := &Server{
   352  		Config: Config{
   353  			PrivateKey:   newkey(),
   354  			MaxPeers:     10,
   355  			NoDial:       true,
   356  			TrustedNodes: []*enode.Node{newNode(trustedID, nil)},
   357  		},
   358  	}
   359  	if err := srv.Start(); err != nil {
   360  		t.Fatalf("could not start: %v", err)
   361  	}
   362  	defer srv.Stop()
   363  
   364  	newconn := func(id enode.ID) *conn {
   365  		fd, _ := net.Pipe()
   366  		tx := newTestTransport(&trustedNode.PublicKey, fd)
   367  		node := enode.SignNull(new(enr.Record), id)
   368  		return &conn{fd: fd, transport: tx, flags: inboundConn, node: node, cont: make(chan error)}
   369  	}
   370  
   371  	// Inject a few connections to fill up the peer set.
   372  	for i := 0; i < 10; i++ {
   373  		c := newconn(randomID())
   374  		if err := srv.checkpoint(c, srv.addpeer); err != nil {
   375  			t.Fatalf("could not add conn %d: %v", i, err)
   376  		}
   377  	}
   378  	// Try inserting a non-trusted connection.
   379  	anotherID := randomID()
   380  	c := newconn(anotherID)
   381  	if err := srv.checkpoint(c, srv.posthandshake); err != DiscTooManyPeers {
   382  		t.Error("wrong error for insert:", err)
   383  	}
   384  	// Try inserting a trusted connection.
   385  	c = newconn(trustedID)
   386  	if err := srv.checkpoint(c, srv.posthandshake); err != nil {
   387  		t.Error("unexpected error for trusted conn @posthandshake:", err)
   388  	}
   389  	if !c.is(trustedConn) {
   390  		t.Error("Server did not set trusted flag")
   391  	}
   392  
   393  	// Remove from trusted set and try again
   394  	srv.RemoveTrustedPeer(newNode(trustedID, nil))
   395  	c = newconn(trustedID)
   396  	if err := srv.checkpoint(c, srv.posthandshake); err != DiscTooManyPeers {
   397  		t.Error("wrong error for insert:", err)
   398  	}
   399  
   400  	// Add anotherID to trusted set and try again
   401  	srv.AddTrustedPeer(newNode(anotherID, nil))
   402  	c = newconn(anotherID)
   403  	if err := srv.checkpoint(c, srv.posthandshake); err != nil {
   404  		t.Error("unexpected error for trusted conn @posthandshake:", err)
   405  	}
   406  	if !c.is(trustedConn) {
   407  		t.Error("Server did not set trusted flag")
   408  	}
   409  }
   410  
   411  func TestServerPeerLimits(t *testing.T) {
   412  	srvkey := newkey()
   413  	clientkey := newkey()
   414  	clientnode := enode.NewV4(&clientkey.PublicKey, nil, 0, 0)
   415  
   416  	var tp = &setupTransport{
   417  		pubkey: &clientkey.PublicKey,
   418  		phs: protoHandshake{
   419  			ID: crypto.FromECDSAPub(&clientkey.PublicKey)[1:],
   420  			// Force "DiscUselessPeer" due to unmatching caps
   421  			// Caps: []Cap{discard.cap()},
   422  		},
   423  	}
   424  
   425  	srv := &Server{
   426  		Config: Config{
   427  			PrivateKey: srvkey,
   428  			MaxPeers:   0,
   429  			NoDial:     true,
   430  			Protocols:  []Protocol{discard},
   431  		},
   432  		newTransport: func(fd net.Conn) transport { return tp },
   433  		log:          log.New(),
   434  	}
   435  	if err := srv.Start(); err != nil {
   436  		t.Fatalf("couldn't start server: %v", err)
   437  	}
   438  	defer srv.Stop()
   439  
   440  	// Check that server is full (MaxPeers=0)
   441  	flags := dynDialedConn
   442  	dialDest := clientnode
   443  	conn, _ := net.Pipe()
   444  	srv.SetupConn(conn, flags, dialDest)
   445  	if tp.closeErr != DiscTooManyPeers {
   446  		t.Errorf("unexpected close error: %q", tp.closeErr)
   447  	}
   448  	conn.Close()
   449  
   450  	srv.AddTrustedPeer(clientnode)
   451  
   452  	// Check that server allows a trusted peer despite being full.
   453  	conn, _ = net.Pipe()
   454  	srv.SetupConn(conn, flags, dialDest)
   455  	if tp.closeErr == DiscTooManyPeers {
   456  		t.Errorf("failed to bypass MaxPeers with trusted node: %q", tp.closeErr)
   457  	}
   458  
   459  	if tp.closeErr != DiscUselessPeer {
   460  		t.Errorf("unexpected close error: %q", tp.closeErr)
   461  	}
   462  	conn.Close()
   463  
   464  	srv.RemoveTrustedPeer(clientnode)
   465  
   466  	// Check that server is full again.
   467  	conn, _ = net.Pipe()
   468  	srv.SetupConn(conn, flags, dialDest)
   469  	if tp.closeErr != DiscTooManyPeers {
   470  		t.Errorf("unexpected close error: %q", tp.closeErr)
   471  	}
   472  	conn.Close()
   473  }
   474  
   475  func TestServerSetupConn(t *testing.T) {
   476  	var (
   477  		clientkey, srvkey = newkey(), newkey()
   478  		clientpub         = &clientkey.PublicKey
   479  		srvpub            = &srvkey.PublicKey
   480  	)
   481  	tests := []struct {
   482  		dontstart bool
   483  		tt        *setupTransport
   484  		flags     connFlag
   485  		dialDest  *enode.Node
   486  
   487  		wantCloseErr error
   488  		wantCalls    string
   489  	}{
   490  		{
   491  			dontstart:    true,
   492  			tt:           &setupTransport{pubkey: clientpub},
   493  			wantCalls:    "close,",
   494  			wantCloseErr: errServerStopped,
   495  		},
   496  		{
   497  			tt:           &setupTransport{pubkey: clientpub, encHandshakeErr: errors.New("read error")},
   498  			flags:        inboundConn,
   499  			wantCalls:    "doEncHandshake,close,",
   500  			wantCloseErr: errors.New("read error"),
   501  		},
   502  		{
   503  			tt:           &setupTransport{pubkey: clientpub},
   504  			dialDest:     enode.NewV4(&newkey().PublicKey, nil, 0, 0),
   505  			flags:        dynDialedConn,
   506  			wantCalls:    "doEncHandshake,close,",
   507  			wantCloseErr: DiscUnexpectedIdentity,
   508  		},
   509  		{
   510  			tt:           &setupTransport{pubkey: clientpub, phs: protoHandshake{ID: randomID().Bytes()}},
   511  			dialDest:     enode.NewV4(clientpub, nil, 0, 0),
   512  			flags:        dynDialedConn,
   513  			wantCalls:    "doEncHandshake,doProtoHandshake,close,",
   514  			wantCloseErr: DiscUnexpectedIdentity,
   515  		},
   516  		{
   517  			tt:           &setupTransport{pubkey: clientpub, protoHandshakeErr: errors.New("foo")},
   518  			dialDest:     enode.NewV4(clientpub, nil, 0, 0),
   519  			flags:        dynDialedConn,
   520  			wantCalls:    "doEncHandshake,doProtoHandshake,close,",
   521  			wantCloseErr: errors.New("foo"),
   522  		},
   523  		{
   524  			tt:           &setupTransport{pubkey: srvpub, phs: protoHandshake{ID: crypto.FromECDSAPub(srvpub)[1:]}},
   525  			flags:        inboundConn,
   526  			wantCalls:    "doEncHandshake,close,",
   527  			wantCloseErr: DiscSelf,
   528  		},
   529  		{
   530  			tt:           &setupTransport{pubkey: clientpub, phs: protoHandshake{ID: crypto.FromECDSAPub(clientpub)[1:]}},
   531  			flags:        inboundConn,
   532  			wantCalls:    "doEncHandshake,doProtoHandshake,close,",
   533  			wantCloseErr: DiscUselessPeer,
   534  		},
   535  	}
   536  
   537  	for i, test := range tests {
   538  		srv := &Server{
   539  			Config: Config{
   540  				PrivateKey: srvkey,
   541  				MaxPeers:   10,
   542  				NoDial:     true,
   543  				Protocols:  []Protocol{discard},
   544  			},
   545  			newTransport: func(fd net.Conn) transport { return test.tt },
   546  			log:          log.New(),
   547  		}
   548  		if !test.dontstart {
   549  			if err := srv.Start(); err != nil {
   550  				t.Fatalf("couldn't start server: %v", err)
   551  			}
   552  		}
   553  		p1, _ := net.Pipe()
   554  		srv.SetupConn(p1, test.flags, test.dialDest)
   555  		if !reflect.DeepEqual(test.tt.closeErr, test.wantCloseErr) {
   556  			t.Errorf("test %d: close error mismatch: got %q, want %q", i, test.tt.closeErr, test.wantCloseErr)
   557  		}
   558  		if test.tt.calls != test.wantCalls {
   559  			t.Errorf("test %d: calls mismatch: got %q, want %q", i, test.tt.calls, test.wantCalls)
   560  		}
   561  	}
   562  }
   563  
   564  type setupTransport struct {
   565  	pubkey            *ecdsa.PublicKey
   566  	encHandshakeErr   error
   567  	phs               protoHandshake
   568  	protoHandshakeErr error
   569  
   570  	calls    string
   571  	closeErr error
   572  }
   573  
   574  func (c *setupTransport) doEncHandshake(prv *ecdsa.PrivateKey, dialDest *ecdsa.PublicKey) (*ecdsa.PublicKey, error) {
   575  	c.calls += "doEncHandshake,"
   576  	return c.pubkey, c.encHandshakeErr
   577  }
   578  
   579  func (c *setupTransport) doProtoHandshake(our *protoHandshake) (*protoHandshake, error) {
   580  	c.calls += "doProtoHandshake,"
   581  	if c.protoHandshakeErr != nil {
   582  		return nil, c.protoHandshakeErr
   583  	}
   584  	return &c.phs, nil
   585  }
   586  func (c *setupTransport) close(err error) {
   587  	c.calls += "close,"
   588  	c.closeErr = err
   589  }
   590  
   591  // setupConn shouldn't write to/read from the connection.
   592  func (c *setupTransport) WriteMsg(Msg) error {
   593  	panic("WriteMsg called on setupTransport")
   594  }
   595  func (c *setupTransport) ReadMsg() (Msg, error) {
   596  	panic("ReadMsg called on setupTransport")
   597  }
   598  
   599  func newkey() *ecdsa.PrivateKey {
   600  	key, err := crypto.GenerateKey()
   601  	if err != nil {
   602  		panic("couldn't generate key: " + err.Error())
   603  	}
   604  	return key
   605  }
   606  
   607  func randomID() (id enode.ID) {
   608  	for i := range id {
   609  		id[i] = byte(rand.Intn(255))
   610  	}
   611  	return id
   612  }