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native: fix Policy's IsBlocked behaviour
Account is blocked when it's in the Policy's storage, not when it's
missing from the Policy storage. Introduced in
bbbc6805a8
.
This bug leads to the fact that during native Neo cache initialization
at the last block in the dBFT epoch, all candidates accounts are
"blocked", and thus, stand-by committee and validators are used in the
subsequent new epoch. Close #3424.
This bug may lead to the consequences described in #3273, but it needs
to be confirmed.
Signed-off-by: Anna Shaleva <shaleva.ann@nspcc.ru>
This commit is contained in:
parent
2d4993a837
commit
c43cfae24c
2 changed files with 88 additions and 1 deletions
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@ -6,6 +6,7 @@ import (
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"fmt"
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"math/big"
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"path/filepath"
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"sort"
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"strings"
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"testing"
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"time"
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@ -316,6 +317,92 @@ func TestBlockchain_InitializeNeoCache_Bug3181(t *testing.T) {
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})
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}
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// TestBlockchain_InitializeNeoCache_Bug3424 ensures that Neo cache (new epoch
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// committee and stand by validators) is properly initialized after node restart
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// at the dBFT epoch boundary.
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func TestBlockchain_InitializeNeoCache_Bug3424(t *testing.T) {
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ps, path := newLevelDBForTestingWithPath(t, "")
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bc, validators, committee, err := chain.NewMultiWithCustomConfigAndStoreNoCheck(t, nil, ps)
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require.NoError(t, err)
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go bc.Run()
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e := neotest.NewExecutor(t, bc, validators, committee)
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cfg := e.Chain.GetConfig()
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committeeSize := cfg.GetCommitteeSize(0)
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validatorsCount := cfg.GetNumOfCNs(0)
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// Stand by committee drives the chain.
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standBySorted, err := keys.NewPublicKeysFromStrings(e.Chain.GetConfig().StandbyCommittee)
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require.NoError(t, err)
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standBySorted = standBySorted[:validatorsCount]
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sort.Sort(standBySorted)
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pubs := e.Chain.ComputeNextBlockValidators()
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require.Equal(t, standBySorted, keys.PublicKeys(pubs))
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// Move from stand by committee to the elected nodes.
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e.ValidatorInvoker(e.NativeHash(t, nativenames.Gas)).Invoke(t, true, "transfer", e.Validator.ScriptHash(), e.CommitteeHash, 100_0000_0000, nil)
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neoCommitteeInvoker := e.CommitteeInvoker(e.NativeHash(t, nativenames.Neo))
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neoValidatorsInvoker := neoCommitteeInvoker.WithSigners(neoCommitteeInvoker.Validator)
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policyInvoker := neoCommitteeInvoker.CommitteeInvoker(neoCommitteeInvoker.NativeHash(t, nativenames.Policy))
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advanceChain := func(t *testing.T) {
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for int(e.Chain.BlockHeight())%committeeSize != 0 {
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neoCommitteeInvoker.AddNewBlock(t)
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}
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}
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advanceChainToEpochBoundary := func(t *testing.T) {
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for int(e.Chain.BlockHeight()+1)%committeeSize != 0 {
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neoCommitteeInvoker.AddNewBlock(t)
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}
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}
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// voters vote for candidates.
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voters := make([]neotest.Signer, committeeSize+1)
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candidates := make([]neotest.Signer, committeeSize+1)
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for i := 0; i < committeeSize+1; i++ {
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voters[i] = e.NewAccount(t, 10_0000_0000)
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candidates[i] = e.NewAccount(t, 2000_0000_0000) // enough for one registration
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}
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txes := make([]*transaction.Transaction, 0, committeeSize*3)
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for i := 0; i < committeeSize+1; i++ {
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transferTx := neoValidatorsInvoker.PrepareInvoke(t, "transfer", e.Validator.ScriptHash(), voters[i].(neotest.SingleSigner).Account().PrivateKey().GetScriptHash(), int64(committeeSize+1-i)*1000000, nil)
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txes = append(txes, transferTx)
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registerTx := neoValidatorsInvoker.WithSigners(candidates[i]).PrepareInvoke(t, "registerCandidate", candidates[i].(neotest.SingleSigner).Account().PublicKey().Bytes())
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txes = append(txes, registerTx)
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voteTx := neoValidatorsInvoker.WithSigners(voters[i]).PrepareInvoke(t, "vote", voters[i].(neotest.SingleSigner).Account().PrivateKey().GetScriptHash(), candidates[i].(neotest.SingleSigner).Account().PublicKey().Bytes())
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txes = append(txes, voteTx)
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}
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txes = append(txes, policyInvoker.PrepareInvoke(t, "blockAccount", candidates[len(candidates)-1].(neotest.SingleSigner).Account().ScriptHash()))
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neoValidatorsInvoker.AddNewBlock(t, txes...)
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for _, tx := range txes {
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e.CheckHalt(t, tx.Hash(), stackitem.Make(true)) // luckily, both `transfer`, `registerCandidate` and `vote` return boolean values
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}
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// Ensure validators are properly updated.
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advanceChain(t)
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pubs = e.Chain.ComputeNextBlockValidators()
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sortedCandidates := make(keys.PublicKeys, validatorsCount)
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for i := range candidates[:validatorsCount] {
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sortedCandidates[i] = candidates[i].(neotest.SingleSigner).Account().PublicKey()
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}
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sort.Sort(sortedCandidates)
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require.EqualValues(t, sortedCandidates, keys.PublicKeys(pubs))
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// Move to the last block in the epoch and restart the node.
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advanceChainToEpochBoundary(t)
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bc.Close() // Ensure persist is done and persistent store is properly closed.
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ps, _ = newLevelDBForTestingWithPath(t, path)
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t.Cleanup(func() { require.NoError(t, ps.Close()) })
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// Start chain from the existing database that should trigger an update of native
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// Neo newEpoch* cached values during initializaition. This update requires candidates
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// list recalculation and caldidates policies checks.
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bc, _, _, err = chain.NewMultiWithCustomConfigAndStoreNoCheck(t, nil, ps)
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require.NoError(t, err)
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pubs = bc.ComputeNextBlockValidators()
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require.EqualValues(t, sortedCandidates, keys.PublicKeys(pubs))
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}
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// This test enables Notary native contract at non-zero height and checks that no
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// Notary cache initialization is performed before that height on node restart.
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/*
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@ -319,7 +319,7 @@ func (p *Policy) IsBlocked(dao *dao.Simple, hash util.Uint160) bool {
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cache := dao.GetROCache(p.ID)
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if cache == nil {
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key := append([]byte{blockedAccountPrefix}, hash.BytesBE()...)
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return dao.GetStorageItem(p.ID, key) == nil
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return dao.GetStorageItem(p.ID, key) != nil
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}
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_, isBlocked := p.isBlockedInternal(cache.(*PolicyCache), hash)
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return isBlocked
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