516 lines
15 KiB
Go
516 lines
15 KiB
Go
package tests
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import (
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"bytes"
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"encoding/hex"
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"encoding/json"
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"fmt"
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"io/ioutil"
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"math/big"
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"path/filepath"
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"runtime"
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"strconv"
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"strings"
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"testing"
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"time"
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"github.com/ethereum/go-ethereum/accounts"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core"
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"github.com/ethereum/go-ethereum/core/state"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/eth"
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/rlp"
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)
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// Block Test JSON Format
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type BlockTest struct {
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Genesis *types.Block
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Json *btJSON
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preAccounts map[string]btAccount
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}
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type btJSON struct {
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Blocks []btBlock
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GenesisBlockHeader btHeader
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Pre map[string]btAccount
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PostState map[string]btAccount
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}
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type btBlock struct {
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BlockHeader *btHeader
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Rlp string
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Transactions []btTransaction
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UncleHeaders []*btHeader
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}
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type btAccount struct {
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Balance string
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Code string
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Nonce string
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Storage map[string]string
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PrivateKey string
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}
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type btHeader struct {
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Bloom string
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Coinbase string
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MixHash string
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Nonce string
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Number string
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ParentHash string
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ReceiptTrie string
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SeedHash string
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StateRoot string
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TransactionsTrie string
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UncleHash string
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ExtraData string
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Difficulty string
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GasLimit string
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GasUsed string
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Timestamp string
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}
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type btTransaction struct {
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Data string
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GasLimit string
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GasPrice string
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Nonce string
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R string
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S string
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To string
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V string
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Value string
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}
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func runBlockTestsInFile(filepath string, snafus []string, t *testing.T) {
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bt, err := LoadBlockTests(filepath)
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if err != nil {
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t.Fatal(err)
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}
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notWorking := make(map[string]bool, 100)
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for _, name := range snafus {
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notWorking[name] = true
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}
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for name, test := range bt {
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if !notWorking[name] {
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runBlockTest(name, test, t)
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}
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}
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}
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func runBlockTest(name string, test *BlockTest, t *testing.T) {
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cfg := testEthConfig()
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ethereum, err := eth.New(cfg)
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if err != nil {
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t.Fatalf("%v", err)
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}
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err = ethereum.Start()
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if err != nil {
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t.Fatalf("%v", err)
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}
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// import the genesis block
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ethereum.ResetWithGenesisBlock(test.Genesis)
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// import pre accounts
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statedb, err := test.InsertPreState(ethereum)
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if err != nil {
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t.Fatalf("InsertPreState: %v", err)
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}
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err = test.TryBlocksInsert(ethereum.ChainManager())
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if err != nil {
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t.Fatal(err)
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}
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if err = test.ValidatePostState(statedb); err != nil {
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t.Fatal("post state validation failed: %v", err)
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}
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t.Log("Test passed: ", name)
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}
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func testEthConfig() *eth.Config {
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ks := crypto.NewKeyStorePassphrase(filepath.Join(common.DefaultDataDir(), "keystore"))
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return ð.Config{
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DataDir: common.DefaultDataDir(),
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Verbosity: 5,
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Etherbase: "primary",
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AccountManager: accounts.NewManager(ks),
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NewDB: func(path string) (common.Database, error) { return ethdb.NewMemDatabase() },
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}
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}
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// LoadBlockTests loads a block test JSON file.
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func LoadBlockTests(file string) (map[string]*BlockTest, error) {
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bt := make(map[string]*btJSON)
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if err := LoadJSON(file, &bt); err != nil {
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return nil, err
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}
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out := make(map[string]*BlockTest)
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for name, in := range bt {
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var err error
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if out[name], err = convertTest(in); err != nil {
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return out, fmt.Errorf("bad test %q: %v", name, err)
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}
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}
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return out, nil
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}
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// InsertPreState populates the given database with the genesis
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// accounts defined by the test.
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func (t *BlockTest) InsertPreState(ethereum *eth.Ethereum) (*state.StateDB, error) {
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db := ethereum.StateDb()
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statedb := state.New(common.Hash{}, db)
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for addrString, acct := range t.preAccounts {
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addr, _ := hex.DecodeString(addrString)
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code, _ := hex.DecodeString(strings.TrimPrefix(acct.Code, "0x"))
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balance, _ := new(big.Int).SetString(acct.Balance, 0)
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nonce, _ := strconv.ParseUint(acct.Nonce, 16, 64)
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if acct.PrivateKey != "" {
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privkey, err := hex.DecodeString(strings.TrimPrefix(acct.PrivateKey, "0x"))
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err = crypto.ImportBlockTestKey(privkey)
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err = ethereum.AccountManager().TimedUnlock(common.BytesToAddress(addr), "", 999999*time.Second)
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if err != nil {
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return nil, err
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}
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}
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obj := statedb.CreateAccount(common.HexToAddress(addrString))
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obj.SetCode(code)
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obj.SetBalance(balance)
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obj.SetNonce(nonce)
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for k, v := range acct.Storage {
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statedb.SetState(common.HexToAddress(addrString), common.HexToHash(k), common.HexToHash(v))
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}
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}
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// sync objects to trie
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statedb.Update()
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// sync trie to disk
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statedb.Sync()
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if !bytes.Equal(t.Genesis.Root().Bytes(), statedb.Root().Bytes()) {
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return nil, fmt.Errorf("computed state root does not match genesis block %x %x", t.Genesis.Root().Bytes()[:4], statedb.Root().Bytes()[:4])
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}
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return statedb, nil
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}
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/* See https://github.com/ethereum/tests/wiki/Blockchain-Tests-II
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Whether a block is valid or not is a bit subtle, it's defined by presence of
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blockHeader, transactions and uncleHeaders fields. If they are missing, the block is
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invalid and we must verify that we do not accept it.
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Since some tests mix valid and invalid blocks we need to check this for every block.
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If a block is invalid it does not necessarily fail the test, if it's invalidness is
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expected we are expected to ignore it and continue processing and then validate the
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post state.
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*/
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func (t *BlockTest) TryBlocksInsert(chainManager *core.ChainManager) error {
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// insert the test blocks, which will execute all transactions
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for _, b := range t.Json.Blocks {
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cb, err := mustConvertBlock(b)
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if err != nil {
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if b.BlockHeader == nil {
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continue // OK - block is supposed to be invalid, continue with next block
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} else {
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return fmt.Errorf("Block RLP decoding failed when expected to succeed: ", err)
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}
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}
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// RLP decoding worked, try to insert into chain:
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_, err = chainManager.InsertChain(types.Blocks{cb})
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if err != nil {
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if b.BlockHeader == nil {
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continue // OK - block is supposed to be invalid, continue with next block
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} else {
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return fmt.Errorf("Block insertion into chain failed: ", err)
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}
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}
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if b.BlockHeader == nil {
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return fmt.Errorf("Block insertion should have failed")
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}
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err = validateBlockHeader(b.BlockHeader, cb.Header())
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if err != nil {
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return fmt.Errorf("Block header validation failed: ", err)
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}
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}
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return nil
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}
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func validateBlockHeader(h *btHeader, h2 *types.Header) error {
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expectedBloom := mustConvertBytes(h.Bloom)
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if !bytes.Equal(expectedBloom, h2.Bloom.Bytes()) {
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return fmt.Errorf("Bloom: expected: %v, decoded: %v", expectedBloom, h2.Bloom.Bytes())
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}
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expectedCoinbase := mustConvertBytes(h.Coinbase)
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if !bytes.Equal(expectedCoinbase, h2.Coinbase.Bytes()) {
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return fmt.Errorf("Coinbase: expected: %v, decoded: %v", expectedCoinbase, h2.Coinbase.Bytes())
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}
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expectedMixHashBytes := mustConvertBytes(h.MixHash)
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if !bytes.Equal(expectedMixHashBytes, h2.MixDigest.Bytes()) {
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return fmt.Errorf("MixHash: expected: %v, decoded: %v", expectedMixHashBytes, h2.MixDigest.Bytes())
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}
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expectedNonce := mustConvertBytes(h.Nonce)
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if !bytes.Equal(expectedNonce, h2.Nonce[:]) {
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return fmt.Errorf("Nonce: expected: %v, decoded: %v", expectedNonce, h2.Nonce[:])
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}
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expectedNumber := mustConvertBigInt(h.Number, 16)
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if expectedNumber.Cmp(h2.Number) != 0 {
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return fmt.Errorf("Number: expected: %v, decoded: %v", expectedNumber, h2.Number)
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}
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expectedParentHash := mustConvertBytes(h.ParentHash)
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if !bytes.Equal(expectedParentHash, h2.ParentHash.Bytes()) {
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return fmt.Errorf("Parent hash: expected: %v, decoded: %v", expectedParentHash, h2.ParentHash.Bytes())
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}
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expectedReceiptHash := mustConvertBytes(h.ReceiptTrie)
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if !bytes.Equal(expectedReceiptHash, h2.ReceiptHash.Bytes()) {
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return fmt.Errorf("Receipt hash: expected: %v, decoded: %v", expectedReceiptHash, h2.ReceiptHash.Bytes())
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}
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expectedTxHash := mustConvertBytes(h.TransactionsTrie)
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if !bytes.Equal(expectedTxHash, h2.TxHash.Bytes()) {
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return fmt.Errorf("Tx hash: expected: %v, decoded: %v", expectedTxHash, h2.TxHash.Bytes())
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}
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expectedStateHash := mustConvertBytes(h.StateRoot)
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if !bytes.Equal(expectedStateHash, h2.Root.Bytes()) {
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return fmt.Errorf("State hash: expected: %v, decoded: %v", expectedStateHash, h2.Root.Bytes())
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}
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expectedUncleHash := mustConvertBytes(h.UncleHash)
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if !bytes.Equal(expectedUncleHash, h2.UncleHash.Bytes()) {
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return fmt.Errorf("Uncle hash: expected: %v, decoded: %v", expectedUncleHash, h2.UncleHash.Bytes())
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}
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expectedExtraData := mustConvertBytes(h.ExtraData)
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if !bytes.Equal(expectedExtraData, h2.Extra) {
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return fmt.Errorf("Extra data: expected: %v, decoded: %v", expectedExtraData, h2.Extra)
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}
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expectedDifficulty := mustConvertBigInt(h.Difficulty, 16)
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if expectedDifficulty.Cmp(h2.Difficulty) != 0 {
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return fmt.Errorf("Difficulty: expected: %v, decoded: %v", expectedDifficulty, h2.Difficulty)
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}
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expectedGasLimit := mustConvertBigInt(h.GasLimit, 16)
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if expectedGasLimit.Cmp(h2.GasLimit) != 0 {
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return fmt.Errorf("GasLimit: expected: %v, decoded: %v", expectedGasLimit, h2.GasLimit)
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}
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expectedGasUsed := mustConvertBigInt(h.GasUsed, 16)
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if expectedGasUsed.Cmp(h2.GasUsed) != 0 {
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return fmt.Errorf("GasUsed: expected: %v, decoded: %v", expectedGasUsed, h2.GasUsed)
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}
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expectedTimestamp := mustConvertUint(h.Timestamp, 16)
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if expectedTimestamp != h2.Time {
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return fmt.Errorf("Timestamp: expected: %v, decoded: %v", expectedTimestamp, h2.Time)
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}
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return nil
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}
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func (t *BlockTest) ValidatePostState(statedb *state.StateDB) error {
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for addrString, acct := range t.preAccounts {
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// XXX: is is worth it checking for errors here?
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addr, _ := hex.DecodeString(addrString)
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code, _ := hex.DecodeString(strings.TrimPrefix(acct.Code, "0x"))
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balance, _ := new(big.Int).SetString(acct.Balance, 0)
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nonce, _ := strconv.ParseUint(acct.Nonce, 16, 64)
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// address is indirectly verified by the other fields, as it's the db key
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code2 := statedb.GetCode(common.BytesToAddress(addr))
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balance2 := statedb.GetBalance(common.BytesToAddress(addr))
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nonce2 := statedb.GetNonce(common.BytesToAddress(addr))
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if !bytes.Equal(code2, code) {
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return fmt.Errorf("account code mismatch, addr, found, expected: ", addrString, hex.EncodeToString(code2), hex.EncodeToString(code))
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}
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if balance2.Cmp(balance) != 0 {
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return fmt.Errorf("account balance mismatch, addr, found, expected: ", addrString, balance2, balance)
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}
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if nonce2 != nonce {
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return fmt.Errorf("account nonce mismatch, addr, found, expected: ", addrString, nonce2, nonce)
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}
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}
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return nil
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}
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func convertTest(in *btJSON) (out *BlockTest, err error) {
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// the conversion handles errors by catching panics.
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// you might consider this ugly, but the alternative (passing errors)
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// would be much harder to read.
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defer func() {
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if recovered := recover(); recovered != nil {
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buf := make([]byte, 64<<10)
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buf = buf[:runtime.Stack(buf, false)]
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err = fmt.Errorf("%v\n%s", recovered, buf)
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}
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}()
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out = &BlockTest{preAccounts: in.Pre, Json: in}
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out.Genesis = mustConvertGenesis(in.GenesisBlockHeader)
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return out, err
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}
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func mustConvertGenesis(testGenesis btHeader) *types.Block {
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hdr := mustConvertHeader(testGenesis)
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hdr.Number = big.NewInt(0)
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b := types.NewBlockWithHeader(hdr)
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b.Td = new(big.Int)
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return b
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}
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func mustConvertHeader(in btHeader) *types.Header {
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// hex decode these fields
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header := &types.Header{
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//SeedHash: mustConvertBytes(in.SeedHash),
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MixDigest: mustConvertHash(in.MixHash),
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Bloom: mustConvertBloom(in.Bloom),
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ReceiptHash: mustConvertHash(in.ReceiptTrie),
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TxHash: mustConvertHash(in.TransactionsTrie),
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Root: mustConvertHash(in.StateRoot),
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Coinbase: mustConvertAddress(in.Coinbase),
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UncleHash: mustConvertHash(in.UncleHash),
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ParentHash: mustConvertHash(in.ParentHash),
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Extra: mustConvertBytes(in.ExtraData),
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GasUsed: mustConvertBigInt(in.GasUsed, 16),
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GasLimit: mustConvertBigInt(in.GasLimit, 16),
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Difficulty: mustConvertBigInt(in.Difficulty, 16),
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Time: mustConvertUint(in.Timestamp, 16),
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}
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// XXX cheats? :-)
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header.SetNonce(mustConvertUint(in.Nonce, 16))
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return header
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}
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func mustConvertBlock(testBlock btBlock) (*types.Block, error) {
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var b types.Block
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r := bytes.NewReader(mustConvertBytes(testBlock.Rlp))
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err := rlp.Decode(r, &b)
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return &b, err
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}
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func mustConvertBytes(in string) []byte {
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if in == "0x" {
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return []byte{}
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}
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h := unfuckFuckedHex(strings.TrimPrefix(in, "0x"))
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out, err := hex.DecodeString(h)
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if err != nil {
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panic(fmt.Errorf("invalid hex: %q: ", h, err))
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}
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return out
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}
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func mustConvertHash(in string) common.Hash {
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out, err := hex.DecodeString(strings.TrimPrefix(in, "0x"))
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if err != nil {
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panic(fmt.Errorf("invalid hex: %q", in))
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}
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return common.BytesToHash(out)
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}
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func mustConvertAddress(in string) common.Address {
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out, err := hex.DecodeString(strings.TrimPrefix(in, "0x"))
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if err != nil {
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panic(fmt.Errorf("invalid hex: %q", in))
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}
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return common.BytesToAddress(out)
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}
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func mustConvertBloom(in string) types.Bloom {
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out, err := hex.DecodeString(strings.TrimPrefix(in, "0x"))
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if err != nil {
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panic(fmt.Errorf("invalid hex: %q", in))
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}
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return types.BytesToBloom(out)
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}
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func mustConvertBigInt(in string, base int) *big.Int {
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in = prepInt(base, in)
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out, ok := new(big.Int).SetString(in, base)
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if !ok {
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panic(fmt.Errorf("invalid integer: %q", in))
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}
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return out
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}
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func mustConvertUint(in string, base int) uint64 {
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in = prepInt(base, in)
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out, err := strconv.ParseUint(in, base, 64)
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if err != nil {
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panic(fmt.Errorf("invalid integer: %q", in))
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}
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return out
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}
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// LoadJSON reads the given file and unmarshals its content.
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func LoadJSON(file string, val interface{}) error {
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content, err := ioutil.ReadFile(file)
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if err != nil {
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return err
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}
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if err := json.Unmarshal(content, val); err != nil {
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if syntaxerr, ok := err.(*json.SyntaxError); ok {
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line := findLine(content, syntaxerr.Offset)
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return fmt.Errorf("JSON syntax error at %v:%v: %v", file, line, err)
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}
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return fmt.Errorf("JSON unmarshal error in %v: %v", file, err)
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}
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return nil
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}
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// findLine returns the line number for the given offset into data.
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func findLine(data []byte, offset int64) (line int) {
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line = 1
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for i, r := range string(data) {
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if int64(i) >= offset {
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return
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}
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if r == '\n' {
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line++
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}
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}
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return
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}
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// Nothing to see here, please move along...
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func prepInt(base int, s string) string {
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if base == 16 {
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if strings.HasPrefix(s, "0x") {
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s = s[2:]
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}
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if len(s) == 0 {
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s = "00"
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}
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s = nibbleFix(s)
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}
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return s
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}
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// don't ask
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func unfuckFuckedHex(almostHex string) string {
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return nibbleFix(strings.Replace(almostHex, "v", "", -1))
|
|
}
|
|
|
|
func nibbleFix(s string) string {
|
|
if len(s)%2 != 0 {
|
|
s = "0" + s
|
|
}
|
|
return s
|
|
}
|