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package state
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import (
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"bytes"
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"fmt"
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"testing"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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abci "github.com/tendermint/abci/types"
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"github.com/tendermint/go-crypto"
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cmn "github.com/tendermint/tmlibs/common"
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dbm "github.com/tendermint/tmlibs/db"
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cfg "github.com/tendermint/tendermint/config"
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"github.com/tendermint/tendermint/types"
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)
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// setupTestCase does setup common to all test cases
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func setupTestCase(t *testing.T) (func(t *testing.T), dbm.DB, State) {
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config := cfg.ResetTestRoot("state_")
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dbType := dbm.DBBackendType(config.DBBackend)
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stateDB := dbm.NewDB("state", dbType, config.DBDir())
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state, err := LoadStateFromDBOrGenesisFile(stateDB, config.GenesisFile())
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assert.NoError(t, err, "expected no error on LoadStateFromDBOrGenesisFile")
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tearDown := func(t *testing.T) {}
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return tearDown, stateDB, state
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}
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// TestStateCopy tests the correct copying behaviour of State.
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func TestStateCopy(t *testing.T) {
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tearDown, _, state := setupTestCase(t)
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defer tearDown(t)
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// nolint: vetshadow
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assert := assert.New(t)
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stateCopy := state.Copy()
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assert.True(state.Equals(stateCopy),
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cmn.Fmt("expected state and its copy to be identical.\ngot: %v\nexpected: %v\n",
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stateCopy, state))
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stateCopy.LastBlockHeight++
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assert.False(state.Equals(stateCopy), cmn.Fmt(`expected states to be different. got same
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%v`, state))
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}
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// TestStateSaveLoad tests saving and loading State from a db.
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func TestStateSaveLoad(t *testing.T) {
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tearDown, stateDB, state := setupTestCase(t)
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defer tearDown(t)
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// nolint: vetshadow
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assert := assert.New(t)
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state.LastBlockHeight++
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SaveState(stateDB, state)
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loadedState := LoadState(stateDB)
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assert.True(state.Equals(loadedState),
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cmn.Fmt("expected state and its copy to be identical.\ngot: %v\nexpected: %v\n",
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loadedState, state))
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}
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// TestABCIResponsesSaveLoad tests saving and loading ABCIResponses.
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func TestABCIResponsesSaveLoad1(t *testing.T) {
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tearDown, stateDB, state := setupTestCase(t)
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defer tearDown(t)
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// nolint: vetshadow
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assert := assert.New(t)
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state.LastBlockHeight++
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// build mock responses
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block := makeBlock(state, 2)
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abciResponses := NewABCIResponses(block)
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abciResponses.DeliverTx[0] = &abci.ResponseDeliverTx{Data: []byte("foo"), Tags: nil}
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abciResponses.DeliverTx[1] = &abci.ResponseDeliverTx{Data: []byte("bar"), Log: "ok", Tags: nil}
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abciResponses.EndBlock = &abci.ResponseEndBlock{ValidatorUpdates: []abci.Validator{
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{
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PubKey: crypto.GenPrivKeyEd25519().PubKey().Bytes(),
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Power: 10,
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},
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}}
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saveABCIResponses(stateDB, block.Height, abciResponses)
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loadedABCIResponses, err := LoadABCIResponses(stateDB, block.Height)
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assert.Nil(err)
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assert.Equal(abciResponses, loadedABCIResponses,
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cmn.Fmt("ABCIResponses don't match:\ngot: %v\nexpected: %v\n",
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loadedABCIResponses, abciResponses))
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}
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// TestResultsSaveLoad tests saving and loading abci results.
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func TestABCIResponsesSaveLoad2(t *testing.T) {
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tearDown, stateDB, _ := setupTestCase(t)
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defer tearDown(t)
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// nolint: vetshadow
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assert := assert.New(t)
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cases := [...]struct {
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// height is implied index+2
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// as block 1 is created from genesis
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added []*abci.ResponseDeliverTx
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expected types.ABCIResults
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}{
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0: {
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nil,
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nil,
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},
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1: {
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[]*abci.ResponseDeliverTx{
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{Code: 32, Data: []byte("Hello"), Log: "Huh?"},
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},
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types.ABCIResults{
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{32, []byte("Hello")},
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}},
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2: {
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[]*abci.ResponseDeliverTx{
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{Code: 383},
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{Data: []byte("Gotcha!"),
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Tags: []cmn.KVPair{
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cmn.KVPair{[]byte("a"), []byte{1}},
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cmn.KVPair{[]byte("build"), []byte("stuff")},
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}},
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},
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types.ABCIResults{
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{383, nil},
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{0, []byte("Gotcha!")},
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}},
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3: {
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nil,
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nil,
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},
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}
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// query all before, should return error
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for i := range cases {
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h := int64(i + 1)
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res, err := LoadABCIResponses(stateDB, h)
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assert.Error(err, "%d: %#v", i, res)
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}
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// add all cases
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for i, tc := range cases {
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h := int64(i + 1) // last block height, one below what we save
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responses := &ABCIResponses{
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DeliverTx: tc.added,
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EndBlock: &abci.ResponseEndBlock{},
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}
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saveABCIResponses(stateDB, h, responses)
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}
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// query all before, should return expected value
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for i, tc := range cases {
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h := int64(i + 1)
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res, err := LoadABCIResponses(stateDB, h)
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assert.NoError(err, "%d", i)
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assert.Equal(tc.expected.Hash(), res.ResultsHash(), "%d", i)
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}
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}
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// TestValidatorSimpleSaveLoad tests saving and loading validators.
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func TestValidatorSimpleSaveLoad(t *testing.T) {
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tearDown, stateDB, state := setupTestCase(t)
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defer tearDown(t)
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// nolint: vetshadow
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assert := assert.New(t)
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// can't load anything for height 0
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v, err := LoadValidators(stateDB, 0)
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assert.IsType(ErrNoValSetForHeight{}, err, "expected err at height 0")
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// should be able to load for height 1
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v, err = LoadValidators(stateDB, 1)
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assert.Nil(err, "expected no err at height 1")
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assert.Equal(v.Hash(), state.Validators.Hash(), "expected validator hashes to match")
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// increment height, save; should be able to load for next height
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state.LastBlockHeight++
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nextHeight := state.LastBlockHeight + 1
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saveValidatorsInfo(stateDB, nextHeight, state.LastHeightValidatorsChanged, state.Validators)
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v, err = LoadValidators(stateDB, nextHeight)
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assert.Nil(err, "expected no err")
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assert.Equal(v.Hash(), state.Validators.Hash(), "expected validator hashes to match")
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// increment height, save; should be able to load for next height
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state.LastBlockHeight += 10
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nextHeight = state.LastBlockHeight + 1
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saveValidatorsInfo(stateDB, nextHeight, state.LastHeightValidatorsChanged, state.Validators)
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v, err = LoadValidators(stateDB, nextHeight)
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assert.Nil(err, "expected no err")
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assert.Equal(v.Hash(), state.Validators.Hash(), "expected validator hashes to match")
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// should be able to load for next next height
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_, err = LoadValidators(stateDB, state.LastBlockHeight+2)
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assert.IsType(ErrNoValSetForHeight{}, err, "expected err at unknown height")
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}
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// TestValidatorChangesSaveLoad tests saving and loading a validator set with changes.
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func TestOneValidatorChangesSaveLoad(t *testing.T) {
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tearDown, stateDB, state := setupTestCase(t)
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defer tearDown(t)
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// change vals at these heights
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changeHeights := []int64{1, 2, 4, 5, 10, 15, 16, 17, 20}
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N := len(changeHeights)
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// build the validator history by running updateState
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// with the right validator set for each height
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highestHeight := changeHeights[N-1] + 5
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changeIndex := 0
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_, val := state.Validators.GetByIndex(0)
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power := val.VotingPower
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var err error
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for i := int64(1); i < highestHeight; i++ {
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// when we get to a change height,
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// use the next pubkey
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if changeIndex < len(changeHeights) && i == changeHeights[changeIndex] {
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changeIndex++
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power++
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}
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header, blockID, responses := makeHeaderPartsResponsesValPowerChange(state, i, power)
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state, err = updateState(state, blockID, header, responses)
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assert.Nil(t, err)
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nextHeight := state.LastBlockHeight + 1
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saveValidatorsInfo(stateDB, nextHeight, state.LastHeightValidatorsChanged, state.Validators)
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}
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// on each change height, increment the power by one.
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testCases := make([]int64, highestHeight)
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changeIndex = 0
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power = val.VotingPower
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for i := int64(1); i < highestHeight+1; i++ {
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// we we get to the height after a change height
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// use the next pubkey (note our counter starts at 0 this time)
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if changeIndex < len(changeHeights) && i == changeHeights[changeIndex]+1 {
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changeIndex++
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power++
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}
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testCases[i-1] = power
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}
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for i, power := range testCases {
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v, err := LoadValidators(stateDB, int64(i+1))
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assert.Nil(t, err, fmt.Sprintf("expected no err at height %d", i))
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assert.Equal(t, v.Size(), 1, "validator set size is greater than 1: %d", v.Size())
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_, val := v.GetByIndex(0)
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assert.Equal(t, val.VotingPower, power, fmt.Sprintf(`unexpected powerat
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height %d`, i))
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}
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}
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// TestValidatorChangesSaveLoad tests saving and loading a validator set with
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// changes.
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func TestManyValidatorChangesSaveLoad(t *testing.T) {
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const valSetSize = 7
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tearDown, stateDB, state := setupTestCase(t)
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state.Validators = genValSet(valSetSize)
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SaveState(stateDB, state)
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defer tearDown(t)
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const height = 1
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pubkey := crypto.GenPrivKeyEd25519().PubKey()
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// swap the first validator with a new one ^^^ (validator set size stays the same)
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header, blockID, responses := makeHeaderPartsResponsesValPubKeyChange(state, height, pubkey)
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var err error
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state, err = updateState(state, blockID, header, responses)
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require.Nil(t, err)
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nextHeight := state.LastBlockHeight + 1
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saveValidatorsInfo(stateDB, nextHeight, state.LastHeightValidatorsChanged, state.Validators)
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v, err := LoadValidators(stateDB, height+1)
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assert.Nil(t, err)
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assert.Equal(t, valSetSize, v.Size())
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index, val := v.GetByAddress(pubkey.Address())
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assert.NotNil(t, val)
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if index < 0 {
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t.Fatal("expected to find newly added validator")
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}
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}
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func genValSet(size int) *types.ValidatorSet {
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vals := make([]*types.Validator, size)
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for i := 0; i < size; i++ {
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vals[i] = types.NewValidator(crypto.GenPrivKeyEd25519().PubKey(), 10)
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}
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return types.NewValidatorSet(vals)
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}
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// TestConsensusParamsChangesSaveLoad tests saving and loading consensus params
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// with changes.
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func TestConsensusParamsChangesSaveLoad(t *testing.T) {
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tearDown, stateDB, state := setupTestCase(t)
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defer tearDown(t)
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// change vals at these heights
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changeHeights := []int64{1, 2, 4, 5, 10, 15, 16, 17, 20}
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N := len(changeHeights)
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// each valset is just one validator
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// create list of them
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params := make([]types.ConsensusParams, N+1)
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params[0] = state.ConsensusParams
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for i := 1; i < N+1; i++ {
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params[i] = *types.DefaultConsensusParams()
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params[i].BlockSize.MaxBytes += i
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}
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// build the params history by running updateState
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// with the right params set for each height
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highestHeight := changeHeights[N-1] + 5
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changeIndex := 0
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cp := params[changeIndex]
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var err error
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for i := int64(1); i < highestHeight; i++ {
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// when we get to a change height,
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// use the next params
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if changeIndex < len(changeHeights) && i == changeHeights[changeIndex] {
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changeIndex++
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cp = params[changeIndex]
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}
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header, blockID, responses := makeHeaderPartsResponsesParams(state, i, cp)
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state, err = updateState(state, blockID, header, responses)
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require.Nil(t, err)
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nextHeight := state.LastBlockHeight + 1
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saveConsensusParamsInfo(stateDB, nextHeight, state.LastHeightConsensusParamsChanged, state.ConsensusParams)
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}
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// make all the test cases by using the same params until after the change
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testCases := make([]paramsChangeTestCase, highestHeight)
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changeIndex = 0
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cp = params[changeIndex]
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for i := int64(1); i < highestHeight+1; i++ {
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// we we get to the height after a change height
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// use the next pubkey (note our counter starts at 0 this time)
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if changeIndex < len(changeHeights) && i == changeHeights[changeIndex]+1 {
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changeIndex++
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cp = params[changeIndex]
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}
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testCases[i-1] = paramsChangeTestCase{i, cp}
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}
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for _, testCase := range testCases {
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p, err := LoadConsensusParams(stateDB, testCase.height)
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assert.Nil(t, err, fmt.Sprintf("expected no err at height %d", testCase.height))
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assert.Equal(t, testCase.params, p, fmt.Sprintf(`unexpected consensus params at
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height %d`, testCase.height))
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}
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}
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func makeParams(blockBytes, blockTx, blockGas, txBytes,
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txGas, partSize int) types.ConsensusParams {
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return types.ConsensusParams{
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BlockSize: types.BlockSize{
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MaxBytes: blockBytes,
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MaxTxs: blockTx,
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MaxGas: int64(blockGas),
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},
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TxSize: types.TxSize{
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MaxBytes: txBytes,
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MaxGas: int64(txGas),
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},
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BlockGossip: types.BlockGossip{
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BlockPartSizeBytes: partSize,
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},
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}
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}
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func pk() []byte {
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return crypto.GenPrivKeyEd25519().PubKey().Bytes()
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}
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func TestApplyUpdates(t *testing.T) {
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initParams := makeParams(1, 2, 3, 4, 5, 6)
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cases := [...]struct {
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init types.ConsensusParams
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updates abci.ConsensusParams
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expected types.ConsensusParams
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}{
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0: {initParams, abci.ConsensusParams{}, initParams},
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1: {initParams, abci.ConsensusParams{}, initParams},
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2: {initParams,
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abci.ConsensusParams{
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TxSize: &abci.TxSize{
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MaxBytes: 123,
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},
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},
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makeParams(1, 2, 3, 123, 5, 6)},
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3: {initParams,
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abci.ConsensusParams{
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BlockSize: &abci.BlockSize{
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MaxTxs: 44,
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MaxGas: 55,
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},
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},
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makeParams(1, 44, 55, 4, 5, 6)},
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4: {initParams,
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abci.ConsensusParams{
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BlockSize: &abci.BlockSize{
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MaxTxs: 789,
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},
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TxSize: &abci.TxSize{
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MaxGas: 888,
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},
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BlockGossip: &abci.BlockGossip{
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BlockPartSizeBytes: 2002,
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},
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},
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makeParams(1, 789, 3, 4, 888, 2002)},
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}
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for i, tc := range cases {
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res := tc.init.Update(&(tc.updates))
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assert.Equal(t, tc.expected, res, "case %d", i)
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}
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}
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func makeHeaderPartsResponsesValPubKeyChange(state State, height int64,
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pubkey crypto.PubKey) (*types.Header, types.BlockID, *ABCIResponses) {
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block := makeBlock(state, height)
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abciResponses := &ABCIResponses{
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EndBlock: &abci.ResponseEndBlock{ValidatorUpdates: nil},
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}
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|
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// if the pubkey is new, remove the old and add the new
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_, val := state.Validators.GetByIndex(0)
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if !bytes.Equal(pubkey.Bytes(), val.PubKey.Bytes()) {
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abciResponses.EndBlock = &abci.ResponseEndBlock{
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ValidatorUpdates: []abci.Validator{
|
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{val.PubKey.Bytes(), 0},
|
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{pubkey.Bytes(), 10},
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},
|
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}
|
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}
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|
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return block.Header, types.BlockID{block.Hash(), types.PartSetHeader{}}, abciResponses
|
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}
|
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|
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func makeHeaderPartsResponsesValPowerChange(state State, height int64,
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power int64) (*types.Header, types.BlockID, *ABCIResponses) {
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|
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block := makeBlock(state, height)
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abciResponses := &ABCIResponses{
|
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EndBlock: &abci.ResponseEndBlock{ValidatorUpdates: nil},
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}
|
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|
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// if the pubkey is new, remove the old and add the new
|
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_, val := state.Validators.GetByIndex(0)
|
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if val.VotingPower != power {
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abciResponses.EndBlock = &abci.ResponseEndBlock{
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ValidatorUpdates: []abci.Validator{
|
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{val.PubKey.Bytes(), power},
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},
|
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}
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}
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|
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return block.Header, types.BlockID{block.Hash(), types.PartSetHeader{}}, abciResponses
|
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}
|
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|
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func makeHeaderPartsResponsesParams(state State, height int64,
|
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params types.ConsensusParams) (*types.Header, types.BlockID, *ABCIResponses) {
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|
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block := makeBlock(state, height)
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abciResponses := &ABCIResponses{
|
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EndBlock: &abci.ResponseEndBlock{ConsensusParamUpdates: types.TM2PB.ConsensusParams(¶ms)},
|
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}
|
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return block.Header, types.BlockID{block.Hash(), types.PartSetHeader{}}, abciResponses
|
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}
|
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|
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type paramsChangeTestCase struct {
|
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height int64
|
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params types.ConsensusParams
|
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}
|
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|
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func makeHeaderPartsResults(state State, height int64,
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results []*abci.ResponseDeliverTx) (*types.Header, types.BlockID, *ABCIResponses) {
|
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|
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block := makeBlock(state, height)
|
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abciResponses := &ABCIResponses{
|
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DeliverTx: results,
|
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EndBlock: &abci.ResponseEndBlock{},
|
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}
|
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return block.Header, types.BlockID{block.Hash(), types.PartSetHeader{}}, abciResponses
|
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}
|