github.com/quinndk/ethereum_read@v0.0.0-20181211143958-29c55eec3237/go-ethereum-master_read/p2p/rlpx_test.go (about)

     1  // Copyright 2015 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  	"bytes"
    21  	"crypto/rand"
    22  	"errors"
    23  	"fmt"
    24  	"io"
    25  	"io/ioutil"
    26  	"net"
    27  	"reflect"
    28  	"strings"
    29  	"sync"
    30  	"testing"
    31  	"time"
    32  
    33  	"github.com/davecgh/go-spew/spew"
    34  	"github.com/ethereum/go-ethereum/crypto"
    35  	"github.com/ethereum/go-ethereum/crypto/ecies"
    36  	"github.com/ethereum/go-ethereum/crypto/sha3"
    37  	"github.com/ethereum/go-ethereum/p2p/discover"
    38  	"github.com/ethereum/go-ethereum/p2p/simulations/pipes"
    39  	"github.com/ethereum/go-ethereum/rlp"
    40  )
    41  
    42  func TestSharedSecret(t *testing.T) {
    43  	prv0, _ := crypto.GenerateKey() // = ecdsa.GenerateKey(crypto.S256(), rand.Reader)
    44  	pub0 := &prv0.PublicKey
    45  	prv1, _ := crypto.GenerateKey()
    46  	pub1 := &prv1.PublicKey
    47  
    48  	ss0, err := ecies.ImportECDSA(prv0).GenerateShared(ecies.ImportECDSAPublic(pub1), sskLen, sskLen)
    49  	if err != nil {
    50  		return
    51  	}
    52  	ss1, err := ecies.ImportECDSA(prv1).GenerateShared(ecies.ImportECDSAPublic(pub0), sskLen, sskLen)
    53  	if err != nil {
    54  		return
    55  	}
    56  	t.Logf("Secret:\n%v %x\n%v %x", len(ss0), ss0, len(ss0), ss1)
    57  	if !bytes.Equal(ss0, ss1) {
    58  		t.Errorf("dont match :(")
    59  	}
    60  }
    61  
    62  func TestEncHandshake(t *testing.T) {
    63  	for i := 0; i < 10; i++ {
    64  		start := time.Now()
    65  		if err := testEncHandshake(nil); err != nil {
    66  			t.Fatalf("i=%d %v", i, err)
    67  		}
    68  		t.Logf("(without token) %d %v\n", i+1, time.Since(start))
    69  	}
    70  	for i := 0; i < 10; i++ {
    71  		tok := make([]byte, shaLen)
    72  		rand.Reader.Read(tok)
    73  		start := time.Now()
    74  		if err := testEncHandshake(tok); err != nil {
    75  			t.Fatalf("i=%d %v", i, err)
    76  		}
    77  		t.Logf("(with token) %d %v\n", i+1, time.Since(start))
    78  	}
    79  }
    80  
    81  func testEncHandshake(token []byte) error {
    82  	type result struct {
    83  		side string
    84  		id   discover.NodeID
    85  		err  error
    86  	}
    87  	var (
    88  		prv0, _  = crypto.GenerateKey()
    89  		prv1, _  = crypto.GenerateKey()
    90  		fd0, fd1 = net.Pipe()
    91  		c0, c1   = newRLPX(fd0).(*rlpx), newRLPX(fd1).(*rlpx)
    92  		output   = make(chan result)
    93  	)
    94  
    95  	go func() {
    96  		r := result{side: "initiator"}
    97  		defer func() { output <- r }()
    98  		defer fd0.Close()
    99  
   100  		dest := &discover.Node{ID: discover.PubkeyID(&prv1.PublicKey)}
   101  		r.id, r.err = c0.doEncHandshake(prv0, dest)
   102  		if r.err != nil {
   103  			return
   104  		}
   105  		id1 := discover.PubkeyID(&prv1.PublicKey)
   106  		if r.id != id1 {
   107  			r.err = fmt.Errorf("remote ID mismatch: got %v, want: %v", r.id, id1)
   108  		}
   109  	}()
   110  	go func() {
   111  		r := result{side: "receiver"}
   112  		defer func() { output <- r }()
   113  		defer fd1.Close()
   114  
   115  		r.id, r.err = c1.doEncHandshake(prv1, nil)
   116  		if r.err != nil {
   117  			return
   118  		}
   119  		id0 := discover.PubkeyID(&prv0.PublicKey)
   120  		if r.id != id0 {
   121  			r.err = fmt.Errorf("remote ID mismatch: got %v, want: %v", r.id, id0)
   122  		}
   123  	}()
   124  
   125  	// wait for results from both sides
   126  	r1, r2 := <-output, <-output
   127  	if r1.err != nil {
   128  		return fmt.Errorf("%s side error: %v", r1.side, r1.err)
   129  	}
   130  	if r2.err != nil {
   131  		return fmt.Errorf("%s side error: %v", r2.side, r2.err)
   132  	}
   133  
   134  	// compare derived secrets
   135  	if !reflect.DeepEqual(c0.rw.egressMAC, c1.rw.ingressMAC) {
   136  		return fmt.Errorf("egress mac mismatch:\n c0.rw: %#v\n c1.rw: %#v", c0.rw.egressMAC, c1.rw.ingressMAC)
   137  	}
   138  	if !reflect.DeepEqual(c0.rw.ingressMAC, c1.rw.egressMAC) {
   139  		return fmt.Errorf("ingress mac mismatch:\n c0.rw: %#v\n c1.rw: %#v", c0.rw.ingressMAC, c1.rw.egressMAC)
   140  	}
   141  	if !reflect.DeepEqual(c0.rw.enc, c1.rw.enc) {
   142  		return fmt.Errorf("enc cipher mismatch:\n c0.rw: %#v\n c1.rw: %#v", c0.rw.enc, c1.rw.enc)
   143  	}
   144  	if !reflect.DeepEqual(c0.rw.dec, c1.rw.dec) {
   145  		return fmt.Errorf("dec cipher mismatch:\n c0.rw: %#v\n c1.rw: %#v", c0.rw.dec, c1.rw.dec)
   146  	}
   147  	return nil
   148  }
   149  
   150  func TestProtocolHandshake(t *testing.T) {
   151  	var (
   152  		prv0, _ = crypto.GenerateKey()
   153  		node0   = &discover.Node{ID: discover.PubkeyID(&prv0.PublicKey), IP: net.IP{1, 2, 3, 4}, TCP: 33}
   154  		hs0     = &protoHandshake{Version: 3, ID: node0.ID, Caps: []Cap{{"a", 0}, {"b", 2}}}
   155  
   156  		prv1, _ = crypto.GenerateKey()
   157  		node1   = &discover.Node{ID: discover.PubkeyID(&prv1.PublicKey), IP: net.IP{5, 6, 7, 8}, TCP: 44}
   158  		hs1     = &protoHandshake{Version: 3, ID: node1.ID, Caps: []Cap{{"c", 1}, {"d", 3}}}
   159  
   160  		wg sync.WaitGroup
   161  	)
   162  
   163  	fd0, fd1, err := pipes.TCPPipe()
   164  	if err != nil {
   165  		t.Fatal(err)
   166  	}
   167  
   168  	wg.Add(2)
   169  	go func() {
   170  		defer wg.Done()
   171  		defer fd0.Close()
   172  		rlpx := newRLPX(fd0)
   173  		remid, err := rlpx.doEncHandshake(prv0, node1)
   174  		if err != nil {
   175  			t.Errorf("dial side enc handshake failed: %v", err)
   176  			return
   177  		}
   178  		if remid != node1.ID {
   179  			t.Errorf("dial side remote id mismatch: got %v, want %v", remid, node1.ID)
   180  			return
   181  		}
   182  
   183  		phs, err := rlpx.doProtoHandshake(hs0)
   184  		if err != nil {
   185  			t.Errorf("dial side proto handshake error: %v", err)
   186  			return
   187  		}
   188  		phs.Rest = nil
   189  		if !reflect.DeepEqual(phs, hs1) {
   190  			t.Errorf("dial side proto handshake mismatch:\ngot: %s\nwant: %s\n", spew.Sdump(phs), spew.Sdump(hs1))
   191  			return
   192  		}
   193  		rlpx.close(DiscQuitting)
   194  	}()
   195  	go func() {
   196  		defer wg.Done()
   197  		defer fd1.Close()
   198  		rlpx := newRLPX(fd1)
   199  		remid, err := rlpx.doEncHandshake(prv1, nil)
   200  		if err != nil {
   201  			t.Errorf("listen side enc handshake failed: %v", err)
   202  			return
   203  		}
   204  		if remid != node0.ID {
   205  			t.Errorf("listen side remote id mismatch: got %v, want %v", remid, node0.ID)
   206  			return
   207  		}
   208  
   209  		phs, err := rlpx.doProtoHandshake(hs1)
   210  		if err != nil {
   211  			t.Errorf("listen side proto handshake error: %v", err)
   212  			return
   213  		}
   214  		phs.Rest = nil
   215  		if !reflect.DeepEqual(phs, hs0) {
   216  			t.Errorf("listen side proto handshake mismatch:\ngot: %s\nwant: %s\n", spew.Sdump(phs), spew.Sdump(hs0))
   217  			return
   218  		}
   219  
   220  		if err := ExpectMsg(rlpx, discMsg, []DiscReason{DiscQuitting}); err != nil {
   221  			t.Errorf("error receiving disconnect: %v", err)
   222  		}
   223  	}()
   224  	wg.Wait()
   225  }
   226  
   227  func TestProtocolHandshakeErrors(t *testing.T) {
   228  	our := &protoHandshake{Version: 3, Caps: []Cap{{"foo", 2}, {"bar", 3}}, Name: "quux"}
   229  	tests := []struct {
   230  		code uint64
   231  		msg  interface{}
   232  		err  error
   233  	}{
   234  		{
   235  			code: discMsg,
   236  			msg:  []DiscReason{DiscQuitting},
   237  			err:  DiscQuitting,
   238  		},
   239  		{
   240  			code: 0x989898,
   241  			msg:  []byte{1},
   242  			err:  errors.New("expected handshake, got 989898"),
   243  		},
   244  		{
   245  			code: handshakeMsg,
   246  			msg:  make([]byte, baseProtocolMaxMsgSize+2),
   247  			err:  errors.New("message too big"),
   248  		},
   249  		{
   250  			code: handshakeMsg,
   251  			msg:  []byte{1, 2, 3},
   252  			err:  newPeerError(errInvalidMsg, "(code 0) (size 4) rlp: expected input list for p2p.protoHandshake"),
   253  		},
   254  		{
   255  			code: handshakeMsg,
   256  			msg:  &protoHandshake{Version: 3},
   257  			err:  DiscInvalidIdentity,
   258  		},
   259  	}
   260  
   261  	for i, test := range tests {
   262  		p1, p2 := MsgPipe()
   263  		go Send(p1, test.code, test.msg)
   264  		_, err := readProtocolHandshake(p2, our)
   265  		if !reflect.DeepEqual(err, test.err) {
   266  			t.Errorf("test %d: error mismatch: got %q, want %q", i, err, test.err)
   267  		}
   268  	}
   269  }
   270  
   271  func TestRLPXFrameFake(t *testing.T) {
   272  	buf := new(bytes.Buffer)
   273  	hash := fakeHash([]byte{1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1})
   274  	rw := newRLPXFrameRW(buf, secrets{
   275  		AES:        crypto.Keccak256(),
   276  		MAC:        crypto.Keccak256(),
   277  		IngressMAC: hash,
   278  		EgressMAC:  hash,
   279  	})
   280  
   281  	golden := unhex(`
   282  00828ddae471818bb0bfa6b551d1cb42
   283  01010101010101010101010101010101
   284  ba628a4ba590cb43f7848f41c4382885
   285  01010101010101010101010101010101
   286  `)
   287  
   288  	// Check WriteMsg. This puts a message into the buffer.
   289  	if err := Send(rw, 8, []uint{1, 2, 3, 4}); err != nil {
   290  		t.Fatalf("WriteMsg error: %v", err)
   291  	}
   292  	written := buf.Bytes()
   293  	if !bytes.Equal(written, golden) {
   294  		t.Fatalf("output mismatch:\n  got:  %x\n  want: %x", written, golden)
   295  	}
   296  
   297  	// Check ReadMsg. It reads the message encoded by WriteMsg, which
   298  	// is equivalent to the golden message above.
   299  	msg, err := rw.ReadMsg()
   300  	if err != nil {
   301  		t.Fatalf("ReadMsg error: %v", err)
   302  	}
   303  	if msg.Size != 5 {
   304  		t.Errorf("msg size mismatch: got %d, want %d", msg.Size, 5)
   305  	}
   306  	if msg.Code != 8 {
   307  		t.Errorf("msg code mismatch: got %d, want %d", msg.Code, 8)
   308  	}
   309  	payload, _ := ioutil.ReadAll(msg.Payload)
   310  	wantPayload := unhex("C401020304")
   311  	if !bytes.Equal(payload, wantPayload) {
   312  		t.Errorf("msg payload mismatch:\ngot  %x\nwant %x", payload, wantPayload)
   313  	}
   314  }
   315  
   316  type fakeHash []byte
   317  
   318  func (fakeHash) Write(p []byte) (int, error) { return len(p), nil }
   319  func (fakeHash) Reset()                      {}
   320  func (fakeHash) BlockSize() int              { return 0 }
   321  
   322  func (h fakeHash) Size() int           { return len(h) }
   323  func (h fakeHash) Sum(b []byte) []byte { return append(b, h...) }
   324  
   325  func TestRLPXFrameRW(t *testing.T) {
   326  	var (
   327  		aesSecret      = make([]byte, 16)
   328  		macSecret      = make([]byte, 16)
   329  		egressMACinit  = make([]byte, 32)
   330  		ingressMACinit = make([]byte, 32)
   331  	)
   332  	for _, s := range [][]byte{aesSecret, macSecret, egressMACinit, ingressMACinit} {
   333  		rand.Read(s)
   334  	}
   335  	conn := new(bytes.Buffer)
   336  
   337  	s1 := secrets{
   338  		AES:        aesSecret,
   339  		MAC:        macSecret,
   340  		EgressMAC:  sha3.NewKeccak256(),
   341  		IngressMAC: sha3.NewKeccak256(),
   342  	}
   343  	s1.EgressMAC.Write(egressMACinit)
   344  	s1.IngressMAC.Write(ingressMACinit)
   345  	rw1 := newRLPXFrameRW(conn, s1)
   346  
   347  	s2 := secrets{
   348  		AES:        aesSecret,
   349  		MAC:        macSecret,
   350  		EgressMAC:  sha3.NewKeccak256(),
   351  		IngressMAC: sha3.NewKeccak256(),
   352  	}
   353  	s2.EgressMAC.Write(ingressMACinit)
   354  	s2.IngressMAC.Write(egressMACinit)
   355  	rw2 := newRLPXFrameRW(conn, s2)
   356  
   357  	// send some messages
   358  	for i := 0; i < 10; i++ {
   359  		// write message into conn buffer
   360  		wmsg := []interface{}{"foo", "bar", strings.Repeat("test", i)}
   361  		err := Send(rw1, uint64(i), wmsg)
   362  		if err != nil {
   363  			t.Fatalf("WriteMsg error (i=%d): %v", i, err)
   364  		}
   365  
   366  		// read message that rw1 just wrote
   367  		msg, err := rw2.ReadMsg()
   368  		if err != nil {
   369  			t.Fatalf("ReadMsg error (i=%d): %v", i, err)
   370  		}
   371  		if msg.Code != uint64(i) {
   372  			t.Fatalf("msg code mismatch: got %d, want %d", msg.Code, i)
   373  		}
   374  		payload, _ := ioutil.ReadAll(msg.Payload)
   375  		wantPayload, _ := rlp.EncodeToBytes(wmsg)
   376  		if !bytes.Equal(payload, wantPayload) {
   377  			t.Fatalf("msg payload mismatch:\ngot  %x\nwant %x", payload, wantPayload)
   378  		}
   379  	}
   380  }
   381  
   382  type handshakeAuthTest struct {
   383  	input       string
   384  	isPlain     bool
   385  	wantVersion uint
   386  	wantRest    []rlp.RawValue
   387  }
   388  
   389  var eip8HandshakeAuthTests = []handshakeAuthTest{
   390  	// (Auth₁) RLPx v4 plain encoding
   391  	{
   392  		input: `
   393  			048ca79ad18e4b0659fab4853fe5bc58eb83992980f4c9cc147d2aa31532efd29a3d3dc6a3d89eaf
   394  			913150cfc777ce0ce4af2758bf4810235f6e6ceccfee1acc6b22c005e9e3a49d6448610a58e98744
   395  			ba3ac0399e82692d67c1f58849050b3024e21a52c9d3b01d871ff5f210817912773e610443a9ef14
   396  			2e91cdba0bd77b5fdf0769b05671fc35f83d83e4d3b0b000c6b2a1b1bba89e0fc51bf4e460df3105
   397  			c444f14be226458940d6061c296350937ffd5e3acaceeaaefd3c6f74be8e23e0f45163cc7ebd7622
   398  			0f0128410fd05250273156d548a414444ae2f7dea4dfca2d43c057adb701a715bf59f6fb66b2d1d2
   399  			0f2c703f851cbf5ac47396d9ca65b6260bd141ac4d53e2de585a73d1750780db4c9ee4cd4d225173
   400  			a4592ee77e2bd94d0be3691f3b406f9bba9b591fc63facc016bfa8
   401  		`,
   402  		isPlain:     true,
   403  		wantVersion: 4,
   404  	},
   405  	// (Auth₂) EIP-8 encoding
   406  	{
   407  		input: `
   408  			01b304ab7578555167be8154d5cc456f567d5ba302662433674222360f08d5f1534499d3678b513b
   409  			0fca474f3a514b18e75683032eb63fccb16c156dc6eb2c0b1593f0d84ac74f6e475f1b8d56116b84
   410  			9634a8c458705bf83a626ea0384d4d7341aae591fae42ce6bd5c850bfe0b999a694a49bbbaf3ef6c
   411  			da61110601d3b4c02ab6c30437257a6e0117792631a4b47c1d52fc0f8f89caadeb7d02770bf999cc
   412  			147d2df3b62e1ffb2c9d8c125a3984865356266bca11ce7d3a688663a51d82defaa8aad69da39ab6
   413  			d5470e81ec5f2a7a47fb865ff7cca21516f9299a07b1bc63ba56c7a1a892112841ca44b6e0034dee
   414  			70c9adabc15d76a54f443593fafdc3b27af8059703f88928e199cb122362a4b35f62386da7caad09
   415  			c001edaeb5f8a06d2b26fb6cb93c52a9fca51853b68193916982358fe1e5369e249875bb8d0d0ec3
   416  			6f917bc5e1eafd5896d46bd61ff23f1a863a8a8dcd54c7b109b771c8e61ec9c8908c733c0263440e
   417  			2aa067241aaa433f0bb053c7b31a838504b148f570c0ad62837129e547678c5190341e4f1693956c
   418  			3bf7678318e2d5b5340c9e488eefea198576344afbdf66db5f51204a6961a63ce072c8926c
   419  		`,
   420  		wantVersion: 4,
   421  		wantRest:    []rlp.RawValue{},
   422  	},
   423  	// (Auth₃) RLPx v4 EIP-8 encoding with version 56, additional list elements
   424  	{
   425  		input: `
   426  			01b8044c6c312173685d1edd268aa95e1d495474c6959bcdd10067ba4c9013df9e40ff45f5bfd6f7
   427  			2471f93a91b493f8e00abc4b80f682973de715d77ba3a005a242eb859f9a211d93a347fa64b597bf
   428  			280a6b88e26299cf263b01b8dfdb712278464fd1c25840b995e84d367d743f66c0e54a586725b7bb
   429  			f12acca27170ae3283c1073adda4b6d79f27656993aefccf16e0d0409fe07db2dc398a1b7e8ee93b
   430  			cd181485fd332f381d6a050fba4c7641a5112ac1b0b61168d20f01b479e19adf7fdbfa0905f63352
   431  			bfc7e23cf3357657455119d879c78d3cf8c8c06375f3f7d4861aa02a122467e069acaf513025ff19
   432  			6641f6d2810ce493f51bee9c966b15c5043505350392b57645385a18c78f14669cc4d960446c1757
   433  			1b7c5d725021babbcd786957f3d17089c084907bda22c2b2675b4378b114c601d858802a55345a15
   434  			116bc61da4193996187ed70d16730e9ae6b3bb8787ebcaea1871d850997ddc08b4f4ea668fbf3740
   435  			7ac044b55be0908ecb94d4ed172ece66fd31bfdadf2b97a8bc690163ee11f5b575a4b44e36e2bfb2
   436  			f0fce91676fd64c7773bac6a003f481fddd0bae0a1f31aa27504e2a533af4cef3b623f4791b2cca6
   437  			d490
   438  		`,
   439  		wantVersion: 56,
   440  		wantRest:    []rlp.RawValue{{0x01}, {0x02}, {0xC2, 0x04, 0x05}},
   441  	},
   442  }
   443  
   444  type handshakeAckTest struct {
   445  	input       string
   446  	wantVersion uint
   447  	wantRest    []rlp.RawValue
   448  }
   449  
   450  var eip8HandshakeRespTests = []handshakeAckTest{
   451  	// (Ack₁) RLPx v4 plain encoding
   452  	{
   453  		input: `
   454  			049f8abcfa9c0dc65b982e98af921bc0ba6e4243169348a236abe9df5f93aa69d99cadddaa387662
   455  			b0ff2c08e9006d5a11a278b1b3331e5aaabf0a32f01281b6f4ede0e09a2d5f585b26513cb794d963
   456  			5a57563921c04a9090b4f14ee42be1a5461049af4ea7a7f49bf4c97a352d39c8d02ee4acc416388c
   457  			1c66cec761d2bc1c72da6ba143477f049c9d2dde846c252c111b904f630ac98e51609b3b1f58168d
   458  			dca6505b7196532e5f85b259a20c45e1979491683fee108e9660edbf38f3add489ae73e3dda2c71b
   459  			d1497113d5c755e942d1
   460  		`,
   461  		wantVersion: 4,
   462  	},
   463  	// (Ack₂) EIP-8 encoding
   464  	{
   465  		input: `
   466  			01ea0451958701280a56482929d3b0757da8f7fbe5286784beead59d95089c217c9b917788989470
   467  			b0e330cc6e4fb383c0340ed85fab836ec9fb8a49672712aeabbdfd1e837c1ff4cace34311cd7f4de
   468  			05d59279e3524ab26ef753a0095637ac88f2b499b9914b5f64e143eae548a1066e14cd2f4bd7f814
   469  			c4652f11b254f8a2d0191e2f5546fae6055694aed14d906df79ad3b407d94692694e259191cde171
   470  			ad542fc588fa2b7333313d82a9f887332f1dfc36cea03f831cb9a23fea05b33deb999e85489e645f
   471  			6aab1872475d488d7bd6c7c120caf28dbfc5d6833888155ed69d34dbdc39c1f299be1057810f34fb
   472  			e754d021bfca14dc989753d61c413d261934e1a9c67ee060a25eefb54e81a4d14baff922180c395d
   473  			3f998d70f46f6b58306f969627ae364497e73fc27f6d17ae45a413d322cb8814276be6ddd13b885b
   474  			201b943213656cde498fa0e9ddc8e0b8f8a53824fbd82254f3e2c17e8eaea009c38b4aa0a3f306e8
   475  			797db43c25d68e86f262e564086f59a2fc60511c42abfb3057c247a8a8fe4fb3ccbadde17514b7ac
   476  			8000cdb6a912778426260c47f38919a91f25f4b5ffb455d6aaaf150f7e5529c100ce62d6d92826a7
   477  			1778d809bdf60232ae21ce8a437eca8223f45ac37f6487452ce626f549b3b5fdee26afd2072e4bc7
   478  			5833c2464c805246155289f4
   479  		`,
   480  		wantVersion: 4,
   481  		wantRest:    []rlp.RawValue{},
   482  	},
   483  	// (Ack₃) EIP-8 encoding with version 57, additional list elements
   484  	{
   485  		input: `
   486  			01f004076e58aae772bb101ab1a8e64e01ee96e64857ce82b1113817c6cdd52c09d26f7b90981cd7
   487  			ae835aeac72e1573b8a0225dd56d157a010846d888dac7464baf53f2ad4e3d584531fa203658fab0
   488  			3a06c9fd5e35737e417bc28c1cbf5e5dfc666de7090f69c3b29754725f84f75382891c561040ea1d
   489  			dc0d8f381ed1b9d0d4ad2a0ec021421d847820d6fa0ba66eaf58175f1b235e851c7e2124069fbc20
   490  			2888ddb3ac4d56bcbd1b9b7eab59e78f2e2d400905050f4a92dec1c4bdf797b3fc9b2f8e84a482f3
   491  			d800386186712dae00d5c386ec9387a5e9c9a1aca5a573ca91082c7d68421f388e79127a5177d4f8
   492  			590237364fd348c9611fa39f78dcdceee3f390f07991b7b47e1daa3ebcb6ccc9607811cb17ce51f1
   493  			c8c2c5098dbdd28fca547b3f58c01a424ac05f869f49c6a34672ea2cbbc558428aa1fe48bbfd6115
   494  			8b1b735a65d99f21e70dbc020bfdface9f724a0d1fb5895db971cc81aa7608baa0920abb0a565c9c
   495  			436e2fd13323428296c86385f2384e408a31e104670df0791d93e743a3a5194ee6b076fb6323ca59
   496  			3011b7348c16cf58f66b9633906ba54a2ee803187344b394f75dd2e663a57b956cb830dd7a908d4f
   497  			39a2336a61ef9fda549180d4ccde21514d117b6c6fd07a9102b5efe710a32af4eeacae2cb3b1dec0
   498  			35b9593b48b9d3ca4c13d245d5f04169b0b1
   499  		`,
   500  		wantVersion: 57,
   501  		wantRest:    []rlp.RawValue{{0x06}, {0xC2, 0x07, 0x08}, {0x81, 0xFA}},
   502  	},
   503  }
   504  
   505  func TestHandshakeForwardCompatibility(t *testing.T) {
   506  	var (
   507  		keyA, _       = crypto.HexToECDSA("49a7b37aa6f6645917e7b807e9d1c00d4fa71f18343b0d4122a4d2df64dd6fee")
   508  		keyB, _       = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
   509  		pubA          = crypto.FromECDSAPub(&keyA.PublicKey)[1:]
   510  		pubB          = crypto.FromECDSAPub(&keyB.PublicKey)[1:]
   511  		ephA, _       = crypto.HexToECDSA("869d6ecf5211f1cc60418a13b9d870b22959d0c16f02bec714c960dd2298a32d")
   512  		ephB, _       = crypto.HexToECDSA("e238eb8e04fee6511ab04c6dd3c89ce097b11f25d584863ac2b6d5b35b1847e4")
   513  		ephPubA       = crypto.FromECDSAPub(&ephA.PublicKey)[1:]
   514  		ephPubB       = crypto.FromECDSAPub(&ephB.PublicKey)[1:]
   515  		nonceA        = unhex("7e968bba13b6c50e2c4cd7f241cc0d64d1ac25c7f5952df231ac6a2bda8ee5d6")
   516  		nonceB        = unhex("559aead08264d5795d3909718cdd05abd49572e84fe55590eef31a88a08fdffd")
   517  		_, _, _, _    = pubA, pubB, ephPubA, ephPubB
   518  		authSignature = unhex("299ca6acfd35e3d72d8ba3d1e2b60b5561d5af5218eb5bc182045769eb4226910a301acae3b369fffc4a4899d6b02531e89fd4fe36a2cf0d93607ba470b50f7800")
   519  		_             = authSignature
   520  	)
   521  	makeAuth := func(test handshakeAuthTest) *authMsgV4 {
   522  		msg := &authMsgV4{Version: test.wantVersion, Rest: test.wantRest, gotPlain: test.isPlain}
   523  		copy(msg.Signature[:], authSignature)
   524  		copy(msg.InitiatorPubkey[:], pubA)
   525  		copy(msg.Nonce[:], nonceA)
   526  		return msg
   527  	}
   528  	makeAck := func(test handshakeAckTest) *authRespV4 {
   529  		msg := &authRespV4{Version: test.wantVersion, Rest: test.wantRest}
   530  		copy(msg.RandomPubkey[:], ephPubB)
   531  		copy(msg.Nonce[:], nonceB)
   532  		return msg
   533  	}
   534  
   535  	// check auth msg parsing
   536  	for _, test := range eip8HandshakeAuthTests {
   537  		r := bytes.NewReader(unhex(test.input))
   538  		msg := new(authMsgV4)
   539  		ciphertext, err := readHandshakeMsg(msg, encAuthMsgLen, keyB, r)
   540  		if err != nil {
   541  			t.Errorf("error for input %x:\n  %v", unhex(test.input), err)
   542  			continue
   543  		}
   544  		if !bytes.Equal(ciphertext, unhex(test.input)) {
   545  			t.Errorf("wrong ciphertext for input %x:\n  %x", unhex(test.input), ciphertext)
   546  		}
   547  		want := makeAuth(test)
   548  		if !reflect.DeepEqual(msg, want) {
   549  			t.Errorf("wrong msg for input %x:\ngot %s\nwant %s", unhex(test.input), spew.Sdump(msg), spew.Sdump(want))
   550  		}
   551  	}
   552  
   553  	// check auth resp parsing
   554  	for _, test := range eip8HandshakeRespTests {
   555  		input := unhex(test.input)
   556  		r := bytes.NewReader(input)
   557  		msg := new(authRespV4)
   558  		ciphertext, err := readHandshakeMsg(msg, encAuthRespLen, keyA, r)
   559  		if err != nil {
   560  			t.Errorf("error for input %x:\n  %v", input, err)
   561  			continue
   562  		}
   563  		if !bytes.Equal(ciphertext, input) {
   564  			t.Errorf("wrong ciphertext for input %x:\n  %x", input, err)
   565  		}
   566  		want := makeAck(test)
   567  		if !reflect.DeepEqual(msg, want) {
   568  			t.Errorf("wrong msg for input %x:\ngot %s\nwant %s", input, spew.Sdump(msg), spew.Sdump(want))
   569  		}
   570  	}
   571  
   572  	// check derivation for (Auth₂, Ack₂) on recipient side
   573  	var (
   574  		hs = &encHandshake{
   575  			initiator:     false,
   576  			respNonce:     nonceB,
   577  			randomPrivKey: ecies.ImportECDSA(ephB),
   578  		}
   579  		authCiphertext     = unhex(eip8HandshakeAuthTests[1].input)
   580  		authRespCiphertext = unhex(eip8HandshakeRespTests[1].input)
   581  		authMsg            = makeAuth(eip8HandshakeAuthTests[1])
   582  		wantAES            = unhex("80e8632c05fed6fc2a13b0f8d31a3cf645366239170ea067065aba8e28bac487")
   583  		wantMAC            = unhex("2ea74ec5dae199227dff1af715362700e989d889d7a493cb0639691efb8e5f98")
   584  		wantFooIngressHash = unhex("0c7ec6340062cc46f5e9f1e3cf86f8c8c403c5a0964f5df0ebd34a75ddc86db5")
   585  	)
   586  	if err := hs.handleAuthMsg(authMsg, keyB); err != nil {
   587  		t.Fatalf("handleAuthMsg: %v", err)
   588  	}
   589  	derived, err := hs.secrets(authCiphertext, authRespCiphertext)
   590  	if err != nil {
   591  		t.Fatalf("secrets: %v", err)
   592  	}
   593  	if !bytes.Equal(derived.AES, wantAES) {
   594  		t.Errorf("aes-secret mismatch:\ngot %x\nwant %x", derived.AES, wantAES)
   595  	}
   596  	if !bytes.Equal(derived.MAC, wantMAC) {
   597  		t.Errorf("mac-secret mismatch:\ngot %x\nwant %x", derived.MAC, wantMAC)
   598  	}
   599  	io.WriteString(derived.IngressMAC, "foo")
   600  	fooIngressHash := derived.IngressMAC.Sum(nil)
   601  	if !bytes.Equal(fooIngressHash, wantFooIngressHash) {
   602  		t.Errorf("ingress-mac('foo') mismatch:\ngot %x\nwant %x", fooIngressHash, wantFooIngressHash)
   603  	}
   604  }