526 lines
17 KiB
Go
526 lines
17 KiB
Go
package simapp
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import (
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"bytes"
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"context"
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"encoding/hex"
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"encoding/json"
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"fmt"
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"strconv"
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"testing"
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"time"
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"github.com/stretchr/testify/require"
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abci "github.com/tendermint/tendermint/abci/types"
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tmjson "github.com/tendermint/tendermint/libs/json"
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"github.com/tendermint/tendermint/libs/log"
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tmproto "github.com/tendermint/tendermint/proto/tendermint/types"
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tmtypes "github.com/tendermint/tendermint/types"
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dbm "github.com/tendermint/tm-db"
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bam "github.com/cosmos/cosmos-sdk/baseapp"
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"github.com/cosmos/cosmos-sdk/client"
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codectypes "github.com/cosmos/cosmos-sdk/codec/types"
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cryptocodec "github.com/cosmos/cosmos-sdk/crypto/codec"
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"github.com/cosmos/cosmos-sdk/crypto/keys/ed25519"
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"github.com/cosmos/cosmos-sdk/crypto/keys/secp256k1"
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cryptotypes "github.com/cosmos/cosmos-sdk/crypto/types"
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"github.com/cosmos/cosmos-sdk/server/types"
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"github.com/cosmos/cosmos-sdk/simapp/helpers"
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"github.com/cosmos/cosmos-sdk/simapp/params"
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"github.com/cosmos/cosmos-sdk/testutil/mock"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/cosmos/cosmos-sdk/types/errors"
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authtypes "github.com/cosmos/cosmos-sdk/x/auth/types"
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banktypes "github.com/cosmos/cosmos-sdk/x/bank/types"
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minttypes "github.com/cosmos/cosmos-sdk/x/mint/types"
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stakingtypes "github.com/cosmos/cosmos-sdk/x/staking/types"
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)
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// DefaultConsensusParams defines the default Tendermint consensus params used in
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// SimApp testing.
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var DefaultConsensusParams = &tmproto.ConsensusParams{
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Block: &tmproto.BlockParams{
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MaxBytes: 200000,
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MaxGas: 2000000,
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},
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Evidence: &tmproto.EvidenceParams{
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MaxAgeNumBlocks: 302400,
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MaxAgeDuration: 504 * time.Hour, // 3 weeks is the max duration
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MaxBytes: 10000,
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},
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Validator: &tmproto.ValidatorParams{
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PubKeyTypes: []string{
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tmtypes.ABCIPubKeyTypeEd25519,
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},
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},
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}
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// SetupOptions defines arguments that are passed into `Simapp` constructor.
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type SetupOptions struct {
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Logger log.Logger
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DB *dbm.MemDB
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InvCheckPeriod uint
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HomePath string
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SkipUpgradeHeights map[int64]bool
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EncConfig params.EncodingConfig
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AppOpts types.AppOptions
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}
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func setup(withGenesis bool, invCheckPeriod uint) (*SimApp, GenesisState) {
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db := dbm.NewMemDB()
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encCdc := MakeTestEncodingConfig()
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app := NewSimApp(log.NewNopLogger(), db, nil, true, map[int64]bool{}, DefaultNodeHome, invCheckPeriod, encCdc, EmptyAppOptions{})
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if withGenesis {
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return app, NewDefaultGenesisState(encCdc.Codec)
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}
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return app, GenesisState{}
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}
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// NewSimappWithCustomOptions initializes a new SimApp with custom options.
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func NewSimappWithCustomOptions(t *testing.T, isCheckTx bool, options SetupOptions) *SimApp {
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t.Helper()
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privVal := mock.NewPV()
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pubKey, err := privVal.GetPubKey(context.TODO())
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require.NoError(t, err)
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// create validator set with single validator
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validator := tmtypes.NewValidator(pubKey, 1)
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valSet := tmtypes.NewValidatorSet([]*tmtypes.Validator{validator})
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// generate genesis account
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senderPrivKey := secp256k1.GenPrivKey()
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acc := authtypes.NewBaseAccount(senderPrivKey.PubKey().Address().Bytes(), senderPrivKey.PubKey(), 0, 0)
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balance := banktypes.Balance{
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Address: acc.GetAddress().String(),
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Coins: sdk.NewCoins(sdk.NewCoin(sdk.DefaultBondDenom, sdk.NewInt(100000000000000))),
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}
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app := NewSimApp(options.Logger, options.DB, nil, true, options.SkipUpgradeHeights, options.HomePath, options.InvCheckPeriod, options.EncConfig, options.AppOpts)
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genesisState := NewDefaultGenesisState(app.appCodec)
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genesisState = genesisStateWithValSet(t, app, genesisState, valSet, []authtypes.GenesisAccount{acc}, balance)
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if !isCheckTx {
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// init chain must be called to stop deliverState from being nil
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stateBytes, err := tmjson.MarshalIndent(genesisState, "", " ")
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require.NoError(t, err)
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// Initialize the chain
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app.InitChain(
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abci.RequestInitChain{
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Validators: []abci.ValidatorUpdate{},
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ConsensusParams: DefaultConsensusParams,
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AppStateBytes: stateBytes,
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},
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)
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}
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return app
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}
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// Setup initializes a new SimApp. A Nop logger is set in SimApp.
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func Setup(t *testing.T, isCheckTx bool) *SimApp {
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t.Helper()
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privVal := mock.NewPV()
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pubKey, err := privVal.GetPubKey(context.TODO())
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require.NoError(t, err)
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// create validator set with single validator
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validator := tmtypes.NewValidator(pubKey, 1)
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valSet := tmtypes.NewValidatorSet([]*tmtypes.Validator{validator})
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// generate genesis account
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senderPrivKey := secp256k1.GenPrivKey()
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acc := authtypes.NewBaseAccount(senderPrivKey.PubKey().Address().Bytes(), senderPrivKey.PubKey(), 0, 0)
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balance := banktypes.Balance{
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Address: acc.GetAddress().String(),
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Coins: sdk.NewCoins(sdk.NewCoin(sdk.DefaultBondDenom, sdk.NewInt(100000000000000))),
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}
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app := SetupWithGenesisValSet(t, valSet, []authtypes.GenesisAccount{acc}, balance)
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return app
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}
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func genesisStateWithValSet(t *testing.T,
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app *SimApp, genesisState GenesisState,
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valSet *tmtypes.ValidatorSet, genAccs []authtypes.GenesisAccount,
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balances ...banktypes.Balance) GenesisState {
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// set genesis accounts
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authGenesis := authtypes.NewGenesisState(authtypes.DefaultParams(), genAccs)
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genesisState[authtypes.ModuleName] = app.AppCodec().MustMarshalJSON(authGenesis)
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validators := make([]stakingtypes.Validator, 0, len(valSet.Validators))
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delegations := make([]stakingtypes.Delegation, 0, len(valSet.Validators))
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bondAmt := sdk.DefaultPowerReduction
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for _, val := range valSet.Validators {
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pk, err := cryptocodec.FromTmPubKeyInterface(val.PubKey)
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require.NoError(t, err)
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pkAny, err := codectypes.NewAnyWithValue(pk)
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require.NoError(t, err)
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validator := stakingtypes.Validator{
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OperatorAddress: sdk.ValAddress(val.Address).String(),
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ConsensusPubkey: pkAny,
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Jailed: false,
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Status: stakingtypes.Bonded,
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Tokens: bondAmt,
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DelegatorShares: sdk.OneDec(),
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Description: stakingtypes.Description{},
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UnbondingHeight: int64(0),
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UnbondingTime: time.Unix(0, 0).UTC(),
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Commission: stakingtypes.NewCommission(sdk.ZeroDec(), sdk.ZeroDec(), sdk.ZeroDec()),
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MinSelfDelegation: sdk.ZeroInt(),
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}
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validators = append(validators, validator)
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delegations = append(delegations, stakingtypes.NewDelegation(genAccs[0].GetAddress(), val.Address.Bytes(), sdk.OneDec()))
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}
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// set validators and delegations
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stakingGenesis := stakingtypes.NewGenesisState(stakingtypes.DefaultParams(), validators, delegations)
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genesisState[stakingtypes.ModuleName] = app.AppCodec().MustMarshalJSON(stakingGenesis)
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totalSupply := sdk.NewCoins()
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for _, b := range balances {
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// add genesis acc tokens to total supply
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totalSupply = totalSupply.Add(b.Coins...)
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}
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for range delegations {
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// add delegated tokens to total supply
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totalSupply = totalSupply.Add(sdk.NewCoin(sdk.DefaultBondDenom, bondAmt))
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}
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// add bonded amount to bonded pool module account
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balances = append(balances, banktypes.Balance{
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Address: authtypes.NewModuleAddress(stakingtypes.BondedPoolName).String(),
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Coins: sdk.Coins{sdk.NewCoin(sdk.DefaultBondDenom, bondAmt)},
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})
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// update total supply
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bankGenesis := banktypes.NewGenesisState(banktypes.DefaultGenesisState().Params, balances, totalSupply, []banktypes.Metadata{})
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genesisState[banktypes.ModuleName] = app.AppCodec().MustMarshalJSON(bankGenesis)
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return genesisState
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}
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// SetupWithGenesisValSet initializes a new SimApp with a validator set and genesis accounts
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// that also act as delegators. For simplicity, each validator is bonded with a delegation
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// of one consensus engine unit in the default token of the simapp from first genesis
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// account. A Nop logger is set in SimApp.
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func SetupWithGenesisValSet(t *testing.T, valSet *tmtypes.ValidatorSet, genAccs []authtypes.GenesisAccount, balances ...banktypes.Balance) *SimApp {
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t.Helper()
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app, genesisState := setup(true, 5)
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genesisState = genesisStateWithValSet(t, app, genesisState, valSet, genAccs, balances...)
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stateBytes, err := json.MarshalIndent(genesisState, "", " ")
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require.NoError(t, err)
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// init chain will set the validator set and initialize the genesis accounts
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app.InitChain(
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abci.RequestInitChain{
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Validators: []abci.ValidatorUpdate{},
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ConsensusParams: DefaultConsensusParams,
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AppStateBytes: stateBytes,
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},
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)
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// commit genesis changes
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app.Commit()
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app.BeginBlock(abci.RequestBeginBlock{Header: tmproto.Header{
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Height: app.LastBlockHeight() + 1,
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AppHash: app.LastCommitID().Hash,
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ValidatorsHash: valSet.Hash(),
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NextValidatorsHash: valSet.Hash(),
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}})
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return app
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}
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// SetupWithGenesisAccounts initializes a new SimApp with the provided genesis
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// accounts and possible balances.
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func SetupWithGenesisAccounts(t *testing.T, genAccs []authtypes.GenesisAccount, balances ...banktypes.Balance) *SimApp {
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t.Helper()
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privVal := mock.NewPV()
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pubKey, err := privVal.GetPubKey(context.TODO())
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require.NoError(t, err)
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// create validator set with single validator
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validator := tmtypes.NewValidator(pubKey, 1)
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valSet := tmtypes.NewValidatorSet([]*tmtypes.Validator{validator})
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return SetupWithGenesisValSet(t, valSet, genAccs, balances...)
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}
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// SetupWithGenesisValSet initializes GenesisState with a single validator and genesis accounts
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// that also act as delegators.
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func GenesisStateWithSingleValidator(t *testing.T, app *SimApp) GenesisState {
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t.Helper()
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privVal := mock.NewPV()
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pubKey, err := privVal.GetPubKey(context.TODO())
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require.NoError(t, err)
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// create validator set with single validator
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validator := tmtypes.NewValidator(pubKey, 1)
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valSet := tmtypes.NewValidatorSet([]*tmtypes.Validator{validator})
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// generate genesis account
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senderPrivKey := secp256k1.GenPrivKey()
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acc := authtypes.NewBaseAccount(senderPrivKey.PubKey().Address().Bytes(), senderPrivKey.PubKey(), 0, 0)
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balances := []banktypes.Balance{
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{
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Address: acc.GetAddress().String(),
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Coins: sdk.NewCoins(sdk.NewCoin(sdk.DefaultBondDenom, sdk.NewInt(100000000000000))),
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},
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}
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genesisState := NewDefaultGenesisState(app.appCodec)
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genesisState = genesisStateWithValSet(t, app, genesisState, valSet, []authtypes.GenesisAccount{acc}, balances...)
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return genesisState
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}
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type GenerateAccountStrategy func(int) []sdk.AccAddress
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// createRandomAccounts is a strategy used by addTestAddrs() in order to generated addresses in random order.
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func createRandomAccounts(accNum int) []sdk.AccAddress {
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testAddrs := make([]sdk.AccAddress, accNum)
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for i := 0; i < accNum; i++ {
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pk := ed25519.GenPrivKey().PubKey()
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testAddrs[i] = sdk.AccAddress(pk.Address())
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}
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return testAddrs
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}
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// createIncrementalAccounts is a strategy used by addTestAddrs() in order to generated addresses in ascending order.
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func createIncrementalAccounts(accNum int) []sdk.AccAddress {
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var addresses []sdk.AccAddress
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var buffer bytes.Buffer
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// start at 100 so we can make up to 999 test addresses with valid test addresses
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for i := 100; i < (accNum + 100); i++ {
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numString := strconv.Itoa(i)
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buffer.WriteString("A58856F0FD53BF058B4909A21AEC019107BA6") // base address string
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buffer.WriteString(numString) // adding on final two digits to make addresses unique
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res, _ := sdk.AccAddressFromHex(buffer.String())
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bech := res.String()
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addr, _ := TestAddr(buffer.String(), bech)
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addresses = append(addresses, addr)
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buffer.Reset()
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}
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return addresses
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}
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// AddTestAddrsFromPubKeys adds the addresses into the SimApp providing only the public keys.
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func AddTestAddrsFromPubKeys(app *SimApp, ctx sdk.Context, pubKeys []cryptotypes.PubKey, accAmt sdk.Int) {
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initCoins := sdk.NewCoins(sdk.NewCoin(app.StakingKeeper.BondDenom(ctx), accAmt))
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for _, pk := range pubKeys {
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initAccountWithCoins(app, ctx, sdk.AccAddress(pk.Address()), initCoins)
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}
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}
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// AddTestAddrs constructs and returns accNum amount of accounts with an
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// initial balance of accAmt in random order
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func AddTestAddrs(app *SimApp, ctx sdk.Context, accNum int, accAmt sdk.Int) []sdk.AccAddress {
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return addTestAddrs(app, ctx, accNum, accAmt, createRandomAccounts)
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}
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// AddTestAddrs constructs and returns accNum amount of accounts with an
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// initial balance of accAmt in random order
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func AddTestAddrsIncremental(app *SimApp, ctx sdk.Context, accNum int, accAmt sdk.Int) []sdk.AccAddress {
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return addTestAddrs(app, ctx, accNum, accAmt, createIncrementalAccounts)
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}
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func addTestAddrs(app *SimApp, ctx sdk.Context, accNum int, accAmt sdk.Int, strategy GenerateAccountStrategy) []sdk.AccAddress {
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testAddrs := strategy(accNum)
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initCoins := sdk.NewCoins(sdk.NewCoin(app.StakingKeeper.BondDenom(ctx), accAmt))
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for _, addr := range testAddrs {
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initAccountWithCoins(app, ctx, addr, initCoins)
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}
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return testAddrs
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}
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func initAccountWithCoins(app *SimApp, ctx sdk.Context, addr sdk.AccAddress, coins sdk.Coins) {
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err := app.BankKeeper.MintCoins(ctx, minttypes.ModuleName, coins)
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if err != nil {
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panic(err)
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}
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err = app.BankKeeper.SendCoinsFromModuleToAccount(ctx, minttypes.ModuleName, addr, coins)
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if err != nil {
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panic(err)
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}
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}
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// ConvertAddrsToValAddrs converts the provided addresses to ValAddress.
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func ConvertAddrsToValAddrs(addrs []sdk.AccAddress) []sdk.ValAddress {
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valAddrs := make([]sdk.ValAddress, len(addrs))
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for i, addr := range addrs {
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valAddrs[i] = sdk.ValAddress(addr)
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}
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return valAddrs
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}
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func TestAddr(addr string, bech string) (sdk.AccAddress, error) {
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res, err := sdk.AccAddressFromHex(addr)
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if err != nil {
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return nil, err
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}
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bechexpected := res.String()
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if bech != bechexpected {
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return nil, fmt.Errorf("bech encoding doesn't match reference")
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}
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bechres, err := sdk.AccAddressFromBech32(bech)
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if err != nil {
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return nil, err
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}
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if !bytes.Equal(bechres, res) {
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return nil, err
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}
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return res, nil
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}
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// CheckBalance checks the balance of an account.
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func CheckBalance(t *testing.T, app *SimApp, addr sdk.AccAddress, balances sdk.Coins) {
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ctxCheck := app.BaseApp.NewContext(true, tmproto.Header{})
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require.True(t, balances.IsEqual(app.BankKeeper.GetAllBalances(ctxCheck, addr)))
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}
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// SignCheckDeliver checks a generated signed transaction and simulates a
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// block commitment with the given transaction. A test assertion is made using
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// the parameter 'expPass' against the result. A corresponding result is
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// returned.
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func SignCheckDeliver(
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t *testing.T, txCfg client.TxConfig, app *bam.BaseApp, header tmproto.Header, msgs []sdk.Msg,
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chainID string, accNums, accSeqs []uint64, expSimPass, expPass bool, priv ...cryptotypes.PrivKey,
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) (sdk.GasInfo, *sdk.Result, error) {
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tx, err := helpers.GenTx(
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txCfg,
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msgs,
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sdk.Coins{sdk.NewInt64Coin(sdk.DefaultBondDenom, 0)},
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helpers.DefaultGenTxGas,
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chainID,
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accNums,
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accSeqs,
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priv...,
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)
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require.NoError(t, err)
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txBytes, err := txCfg.TxEncoder()(tx)
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require.Nil(t, err)
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// Must simulate now as CheckTx doesn't run Msgs anymore
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_, res, err := app.Simulate(txBytes)
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if expSimPass {
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require.NoError(t, err)
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require.NotNil(t, res)
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} else {
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require.Error(t, err)
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require.Nil(t, res)
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}
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// Simulate a sending a transaction and committing a block
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app.BeginBlock(abci.RequestBeginBlock{Header: header})
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gInfo, res, err := app.SimDeliver(txCfg.TxEncoder(), tx)
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if expPass {
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require.NoError(t, err)
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require.NotNil(t, res)
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} else {
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require.Error(t, err)
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require.Nil(t, res)
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}
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app.EndBlock(abci.RequestEndBlock{})
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app.Commit()
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return gInfo, res, err
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}
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// GenSequenceOfTxs generates a set of signed transactions of messages, such
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// that they differ only by having the sequence numbers incremented between
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// every transaction.
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func GenSequenceOfTxs(txGen client.TxConfig, msgs []sdk.Msg, accNums []uint64, initSeqNums []uint64, numToGenerate int, priv ...cryptotypes.PrivKey) ([]sdk.Tx, error) {
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txs := make([]sdk.Tx, numToGenerate)
|
|
var err error
|
|
for i := 0; i < numToGenerate; i++ {
|
|
txs[i], err = helpers.GenTx(
|
|
txGen,
|
|
msgs,
|
|
sdk.Coins{sdk.NewInt64Coin(sdk.DefaultBondDenom, 0)},
|
|
helpers.DefaultGenTxGas,
|
|
"",
|
|
accNums,
|
|
initSeqNums,
|
|
priv...,
|
|
)
|
|
if err != nil {
|
|
break
|
|
}
|
|
incrementAllSequenceNumbers(initSeqNums)
|
|
}
|
|
|
|
return txs, err
|
|
}
|
|
|
|
func incrementAllSequenceNumbers(initSeqNums []uint64) {
|
|
for i := 0; i < len(initSeqNums); i++ {
|
|
initSeqNums[i]++
|
|
}
|
|
}
|
|
|
|
// CreateTestPubKeys returns a total of numPubKeys public keys in ascending order.
|
|
func CreateTestPubKeys(numPubKeys int) []cryptotypes.PubKey {
|
|
var publicKeys []cryptotypes.PubKey
|
|
var buffer bytes.Buffer
|
|
|
|
// start at 10 to avoid changing 1 to 01, 2 to 02, etc
|
|
for i := 100; i < (numPubKeys + 100); i++ {
|
|
numString := strconv.Itoa(i)
|
|
buffer.WriteString("0B485CFC0EECC619440448436F8FC9DF40566F2369E72400281454CB552AF") // base pubkey string
|
|
buffer.WriteString(numString) // adding on final two digits to make pubkeys unique
|
|
publicKeys = append(publicKeys, NewPubKeyFromHex(buffer.String()))
|
|
buffer.Reset()
|
|
}
|
|
|
|
return publicKeys
|
|
}
|
|
|
|
// NewPubKeyFromHex returns a PubKey from a hex string.
|
|
func NewPubKeyFromHex(pk string) (res cryptotypes.PubKey) {
|
|
pkBytes, err := hex.DecodeString(pk)
|
|
if err != nil {
|
|
panic(err)
|
|
}
|
|
if len(pkBytes) != ed25519.PubKeySize {
|
|
panic(errors.Wrap(errors.ErrInvalidPubKey, "invalid pubkey size"))
|
|
}
|
|
return &ed25519.PubKey{Key: pkBytes}
|
|
}
|
|
|
|
// EmptyAppOptions is a stub implementing AppOptions
|
|
type EmptyAppOptions struct{}
|
|
|
|
// Get implements AppOptions
|
|
func (ao EmptyAppOptions) Get(o string) interface{} {
|
|
return nil
|
|
}
|