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// Copyright 2016 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.

package network

import (
    "flag"
    "fmt"
    "os"
    "sync"
    "testing"

    "github.com/ethereum/go-ethereum/log"
    "github.com/ethereum/go-ethereum/p2p"
    "github.com/ethereum/go-ethereum/p2p/discover"
    "github.com/ethereum/go-ethereum/p2p/protocols"
    p2ptest "github.com/ethereum/go-ethereum/p2p/testing"
)

var (
    loglevel = flag.Int("loglevel", 2, "verbosity of logs")
)

func init() {
    flag.Parse()
    log.Root().SetHandler(log.LvlFilterHandler(log.Lvl(*loglevel), log.StreamHandler(os.Stderr, log.TerminalFormat(true))))
}

type testStore struct {
    sync.Mutex

    values map[string][]byte
}

func newTestStore() *testStore {
    return &testStore{values: make(map[string][]byte)}
}

func (t *testStore) Load(key string) ([]byte, error) {
    t.Lock()
    defer t.Unlock()
    v, ok := t.values[key]
    if !ok {
        return nil, fmt.Errorf("key not found: %s", key)
    }
    return v, nil
}

func (t *testStore) Save(key string, v []byte) error {
    t.Lock()
    defer t.Unlock()
    t.values[key] = v
    return nil
}

func HandshakeMsgExchange(lhs, rhs *HandshakeMsg, id discover.NodeID) []p2ptest.Exchange {

    return []p2ptest.Exchange{
        {
            Expects: []p2ptest.Expect{
                {
                    Code: 0,
                    Msg:  lhs,
                    Peer: id,
                },
            },
        },
        {
            Triggers: []p2ptest.Trigger{
                {
                    Code: 0,
                    Msg:  rhs,
                    Peer: id,
                },
            },
        },
    }
}

func newBzzBaseTester(t *testing.T, n int, addr *BzzAddr, spec *protocols.Spec, run func(*BzzPeer) error) *bzzTester {
    cs := make(map[string]chan bool)

    srv := func(p *BzzPeer) error {
        defer func() {
            if cs[p.ID().String()] != nil {
                close(cs[p.ID().String()])
            }
        }()
        return run(p)
    }

    protocol := func(p *p2p.Peer, rw p2p.MsgReadWriter) error {
        return srv(&BzzPeer{
            Peer:      protocols.NewPeer(p, rw, spec),
            localAddr: addr,
            BzzAddr:   NewAddrFromNodeID(p.ID()),
        })
    }

    s := p2ptest.NewProtocolTester(t, NewNodeIDFromAddr(addr), n, protocol)

    for _, id := range s.IDs {
        cs[id.String()] = make(chan bool)
    }

    return &bzzTester{
        addr:           addr,
        ProtocolTester: s,
        cs:             cs,
    }
}

type bzzTester struct {
    *p2ptest.ProtocolTester
    addr *BzzAddr
    cs   map[string]chan bool
}

func newBzzHandshakeTester(t *testing.T, n int, addr *BzzAddr) *bzzTester {
    config := &BzzConfig{
        OverlayAddr:  addr.Over(),
        UnderlayAddr: addr.Under(),
        HiveParams:   NewHiveParams(),
        NetworkID:    DefaultNetworkID,
    }
    kad := NewKademlia(addr.OAddr, NewKadParams())
    bzz := NewBzz(config, kad, nil, nil, nil)

    s := p2ptest.NewProtocolTester(t, NewNodeIDFromAddr(addr), 1, bzz.runBzz)

    return &bzzTester{
        addr:           addr,
        ProtocolTester: s,
    }
}

// should test handshakes in one exchange? parallelisation
func (s *bzzTester) testHandshake(lhs, rhs *HandshakeMsg, disconnects ...*p2ptest.Disconnect) error {
    var peers []discover.NodeID
    id := NewNodeIDFromAddr(rhs.Addr)
    if len(disconnects) > 0 {
        for _, d := range disconnects {
            peers = append(peers, d.Peer)
        }
    } else {
        peers = []discover.NodeID{id}
    }

    if err := s.TestExchanges(HandshakeMsgExchange(lhs, rhs, id)...); err != nil {
        return err
    }

    if len(disconnects) > 0 {
        return s.TestDisconnected(disconnects...)
    }

    // If we don't expect disconnect, ensure peers remain connected
    err := s.TestDisconnected(&p2ptest.Disconnect{
        Peer:  s.IDs[0],
        Error: nil,
    })

    if err == nil {
        return fmt.Errorf("Unexpected peer disconnect")
    }

    if err.Error() != "timed out waiting for peers to disconnect" {
        return err
    }

    return nil
}

func correctBzzHandshake(addr *BzzAddr) *HandshakeMsg {
    return &HandshakeMsg{
        Version:   5,
        NetworkID: DefaultNetworkID,
        Addr:      addr,
    }
}

func TestBzzHandshakeNetworkIDMismatch(t *testing.T) {
    addr := RandomAddr()
    s := newBzzHandshakeTester(t, 1, addr)
    id := s.IDs[0]

    err := s.testHandshake(
        correctBzzHandshake(addr),
        &HandshakeMsg{Version: 5, NetworkID: 321, Addr: NewAddrFromNodeID(id)},
        &p2ptest.Disconnect{Peer: id, Error: fmt.Errorf("Handshake error: Message handler error: (msg code 0): network id mismatch 321 (!= 3)")},
    )

    if err != nil {
        t.Fatal(err)
    }
}

func TestBzzHandshakeVersionMismatch(t *testing.T) {
    addr := RandomAddr()
    s := newBzzHandshakeTester(t, 1, addr)
    id := s.IDs[0]

    err := s.testHandshake(
        correctBzzHandshake(addr),
        &HandshakeMsg{Version: 0, NetworkID: 3, Addr: NewAddrFromNodeID(id)},
        &p2ptest.Disconnect{Peer: id, Error: fmt.Errorf("Handshake error: Message handler error: (msg code 0): version mismatch 0 (!= 5)")},
    )

    if err != nil {
        t.Fatal(err)
    }
}

func TestBzzHandshakeSuccess(t *testing.T) {
    addr := RandomAddr()
    s := newBzzHandshakeTester(t, 1, addr)
    id := s.IDs[0]

    err := s.testHandshake(
        correctBzzHandshake(addr),
        &HandshakeMsg{Version: 5, NetworkID: 3, Addr: NewAddrFromNodeID(id)},
    )

    if err != nil {
        t.Fatal(err)
    }
}