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package light_test
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import (
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"testing"
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"time"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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dbm "github.com/tendermint/tm-db"
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"github.com/tendermint/tendermint/libs/log"
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"github.com/tendermint/tendermint/light"
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"github.com/tendermint/tendermint/light/provider"
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mockp "github.com/tendermint/tendermint/light/provider/mock"
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dbs "github.com/tendermint/tendermint/light/store/db"
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"github.com/tendermint/tendermint/types"
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)
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func TestLightClientAttackEvidence_Lunatic(t *testing.T) {
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// primary performs a lunatic attack
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var (
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latestHeight = int64(10)
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valSize = 5
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divergenceHeight = int64(6)
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primaryHeaders = make(map[int64]*types.SignedHeader, latestHeight)
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primaryValidators = make(map[int64]*types.ValidatorSet, latestHeight)
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)
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witnessHeaders, witnessValidators, chainKeys := genMockNodeWithKeys(chainID, latestHeight, valSize, 2, bTime)
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witness := mockp.New(chainID, witnessHeaders, witnessValidators)
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forgedKeys := chainKeys[divergenceHeight-1].ChangeKeys(3) // we change 3 out of the 5 validators (still 2/5 remain)
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forgedVals := forgedKeys.ToValidators(2, 0)
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for height := int64(1); height <= latestHeight; height++ {
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if height < divergenceHeight {
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primaryHeaders[height] = witnessHeaders[height]
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primaryValidators[height] = witnessValidators[height]
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continue
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}
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primaryHeaders[height] = forgedKeys.GenSignedHeader(chainID, height, bTime.Add(time.Duration(height)*time.Minute),
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nil, forgedVals, forgedVals, hash("app_hash"), hash("cons_hash"), hash("results_hash"), 0, len(forgedKeys))
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primaryValidators[height] = forgedVals
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}
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primary := mockp.New(chainID, primaryHeaders, primaryValidators)
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c, err := light.NewClient(
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ctx,
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chainID,
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light.TrustOptions{
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Period: 4 * time.Hour,
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Height: 1,
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Hash: primaryHeaders[1].Hash(),
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},
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primary,
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[]provider.Provider{witness},
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dbs.New(dbm.NewMemDB(), chainID),
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light.Logger(log.TestingLogger()),
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light.MaxRetryAttempts(1),
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)
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require.NoError(t, err)
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// Check verification returns an error.
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_, err = c.VerifyLightBlockAtHeight(ctx, 10, bTime.Add(1*time.Hour))
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if assert.Error(t, err) {
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assert.Equal(t, light.ErrLightClientAttack, err)
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}
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// Check evidence was sent to both full nodes.
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evAgainstPrimary := &types.LightClientAttackEvidence{
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// after the divergence height the valset doesn't change so we expect the evidence to be for height 10
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ConflictingBlock: &types.LightBlock{
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SignedHeader: primaryHeaders[10],
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ValidatorSet: primaryValidators[10],
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},
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CommonHeight: 4,
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}
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assert.True(t, witness.HasEvidence(evAgainstPrimary))
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evAgainstWitness := &types.LightClientAttackEvidence{
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// when forming evidence against witness we learn that the canonical chain continued to change validator sets
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// hence the conflicting block is at 7
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ConflictingBlock: &types.LightBlock{
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SignedHeader: witnessHeaders[7],
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ValidatorSet: witnessValidators[7],
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},
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CommonHeight: 4,
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}
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assert.True(t, primary.HasEvidence(evAgainstWitness))
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}
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func TestLightClientAttackEvidence_Equivocation(t *testing.T) {
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verificationOptions := map[string]light.Option{
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"sequential": light.SequentialVerification(),
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"skipping": light.SkippingVerification(light.DefaultTrustLevel),
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}
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for s, verificationOption := range verificationOptions {
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t.Log("==> verification", s)
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// primary performs an equivocation attack
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var (
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latestHeight = int64(10)
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valSize = 5
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divergenceHeight = int64(6)
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primaryHeaders = make(map[int64]*types.SignedHeader, latestHeight)
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primaryValidators = make(map[int64]*types.ValidatorSet, latestHeight)
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)
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// validators don't change in this network (however we still use a map just for convenience)
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witnessHeaders, witnessValidators, chainKeys := genMockNodeWithKeys(chainID, latestHeight+2, valSize, 2, bTime)
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witness := mockp.New(chainID, witnessHeaders, witnessValidators)
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for height := int64(1); height <= latestHeight; height++ {
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if height < divergenceHeight {
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primaryHeaders[height] = witnessHeaders[height]
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primaryValidators[height] = witnessValidators[height]
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continue
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}
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// we don't have a network partition so we will make 4/5 (greater than 2/3) malicious and vote again for
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// a different block (which we do by adding txs)
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primaryHeaders[height] = chainKeys[height].GenSignedHeader(chainID, height,
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bTime.Add(time.Duration(height)*time.Minute), []types.Tx{[]byte("abcd")},
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witnessValidators[height], witnessValidators[height+1], hash("app_hash"),
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hash("cons_hash"), hash("results_hash"), 0, len(chainKeys[height])-1)
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primaryValidators[height] = witnessValidators[height]
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}
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primary := mockp.New(chainID, primaryHeaders, primaryValidators)
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c, err := light.NewClient(
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ctx,
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chainID,
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light.TrustOptions{
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Period: 4 * time.Hour,
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Height: 1,
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Hash: primaryHeaders[1].Hash(),
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},
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primary,
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[]provider.Provider{witness},
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dbs.New(dbm.NewMemDB(), chainID),
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light.Logger(log.TestingLogger()),
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light.MaxRetryAttempts(1),
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verificationOption,
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)
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require.NoError(t, err)
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// Check verification returns an error.
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_, err = c.VerifyLightBlockAtHeight(ctx, 10, bTime.Add(1*time.Hour))
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if assert.Error(t, err) {
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assert.Equal(t, light.ErrLightClientAttack, err)
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}
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// Check evidence was sent to both full nodes.
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// Common height should be set to the height of the divergent header in the instance
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// of an equivocation attack and the validator sets are the same as what the witness has
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evAgainstPrimary := &types.LightClientAttackEvidence{
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ConflictingBlock: &types.LightBlock{
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SignedHeader: primaryHeaders[divergenceHeight],
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ValidatorSet: primaryValidators[divergenceHeight],
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},
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CommonHeight: divergenceHeight,
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}
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assert.True(t, witness.HasEvidence(evAgainstPrimary))
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evAgainstWitness := &types.LightClientAttackEvidence{
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ConflictingBlock: &types.LightBlock{
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SignedHeader: witnessHeaders[divergenceHeight],
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ValidatorSet: witnessValidators[divergenceHeight],
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},
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CommonHeight: divergenceHeight,
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}
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assert.True(t, primary.HasEvidence(evAgainstWitness))
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}
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}
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// 1. Different nodes therefore a divergent header is produced.
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// => light client returns an error upon creation because primary and witness
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// have a different view.
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func TestClientDivergentTraces1(t *testing.T) {
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primary := mockp.New(genMockNode(chainID, 10, 5, 2, bTime))
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firstBlock, err := primary.LightBlock(ctx, 1)
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require.NoError(t, err)
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witness := mockp.New(genMockNode(chainID, 10, 5, 2, bTime))
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_, err = light.NewClient(
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ctx,
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chainID,
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light.TrustOptions{
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Height: 1,
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Hash: firstBlock.Hash(),
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Period: 4 * time.Hour,
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},
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primary,
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[]provider.Provider{witness},
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dbs.New(dbm.NewMemDB(), chainID),
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light.Logger(log.TestingLogger()),
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light.MaxRetryAttempts(1),
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)
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require.Error(t, err)
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assert.Contains(t, err.Error(), "does not match primary")
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}
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// 2. Two out of three nodes don't respond but the third has a header that matches
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// => verification should be successful and all the witnesses should remain
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func TestClientDivergentTraces2(t *testing.T) {
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primary := mockp.New(genMockNode(chainID, 10, 5, 2, bTime))
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firstBlock, err := primary.LightBlock(ctx, 1)
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require.NoError(t, err)
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c, err := light.NewClient(
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ctx,
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chainID,
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light.TrustOptions{
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Height: 1,
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Hash: firstBlock.Hash(),
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Period: 4 * time.Hour,
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},
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primary,
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[]provider.Provider{deadNode, deadNode, primary},
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dbs.New(dbm.NewMemDB(), chainID),
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light.Logger(log.TestingLogger()),
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light.MaxRetryAttempts(1),
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)
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require.NoError(t, err)
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_, err = c.VerifyLightBlockAtHeight(ctx, 10, bTime.Add(1*time.Hour))
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assert.NoError(t, err)
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assert.Equal(t, 3, len(c.Witnesses()))
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}
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// 3. witness has the same first header, but different second header
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// => creation should succeed, but the verification should fail
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func TestClientDivergentTraces3(t *testing.T) {
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_, primaryHeaders, primaryVals := genMockNode(chainID, 10, 5, 2, bTime)
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primary := mockp.New(chainID, primaryHeaders, primaryVals)
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firstBlock, err := primary.LightBlock(ctx, 1)
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require.NoError(t, err)
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_, mockHeaders, mockVals := genMockNode(chainID, 10, 5, 2, bTime)
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mockHeaders[1] = primaryHeaders[1]
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mockVals[1] = primaryVals[1]
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witness := mockp.New(chainID, mockHeaders, mockVals)
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c, err := light.NewClient(
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ctx,
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chainID,
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light.TrustOptions{
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Height: 1,
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Hash: firstBlock.Hash(),
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Period: 4 * time.Hour,
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},
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primary,
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[]provider.Provider{witness},
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dbs.New(dbm.NewMemDB(), chainID),
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light.Logger(log.TestingLogger()),
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light.MaxRetryAttempts(1),
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)
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require.NoError(t, err)
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_, err = c.VerifyLightBlockAtHeight(ctx, 10, bTime.Add(1*time.Hour))
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assert.Error(t, err)
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assert.Equal(t, 0, len(c.Witnesses()))
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}
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