forked from cerc-io/plugeth
internal/ethapi: add missing output fields
- returned headers didn't include mixHash - returned transactions didn't include signature fields - empty transaction input was returned as "", but should be "0x" - returned receipts didn't include the bloom filter - "root" in receipts was missing 0x prefix
This commit is contained in:
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704fde01e8
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b0d9f7372a
@ -588,24 +588,26 @@ func FormatLogs(structLogs []vm.StructLog) []StructLogRes {
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// returned. When fullTx is true the returned block contains full transaction details, otherwise it will only contain
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// returned. When fullTx is true the returned block contains full transaction details, otherwise it will only contain
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// transaction hashes.
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// transaction hashes.
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func (s *PublicBlockChainAPI) rpcOutputBlock(b *types.Block, inclTx bool, fullTx bool) (map[string]interface{}, error) {
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func (s *PublicBlockChainAPI) rpcOutputBlock(b *types.Block, inclTx bool, fullTx bool) (map[string]interface{}, error) {
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head := b.Header() // copies the header once
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fields := map[string]interface{}{
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fields := map[string]interface{}{
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"number": rpc.NewHexNumber(b.Number()),
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"number": rpc.NewHexNumber(head.Number),
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"hash": b.Hash(),
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"hash": b.Hash(),
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"parentHash": b.ParentHash(),
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"parentHash": head.ParentHash,
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"nonce": b.Header().Nonce,
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"nonce": head.Nonce,
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"sha3Uncles": b.UncleHash(),
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"mixHash": head.MixDigest,
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"logsBloom": b.Bloom(),
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"sha3Uncles": head.UncleHash,
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"stateRoot": b.Root(),
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"logsBloom": head.Bloom,
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"miner": b.Coinbase(),
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"stateRoot": head.Root,
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"difficulty": rpc.NewHexNumber(b.Difficulty()),
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"miner": head.Coinbase,
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"difficulty": rpc.NewHexNumber(head.Difficulty),
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"totalDifficulty": rpc.NewHexNumber(s.b.GetTd(b.Hash())),
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"totalDifficulty": rpc.NewHexNumber(s.b.GetTd(b.Hash())),
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"extraData": fmt.Sprintf("0x%x", b.Extra()),
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"extraData": rpc.HexBytes(head.Extra),
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"size": rpc.NewHexNumber(b.Size().Int64()),
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"size": rpc.NewHexNumber(b.Size().Int64()),
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"gasLimit": rpc.NewHexNumber(b.GasLimit()),
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"gasLimit": rpc.NewHexNumber(head.GasLimit),
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"gasUsed": rpc.NewHexNumber(b.GasUsed()),
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"gasUsed": rpc.NewHexNumber(head.GasUsed),
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"timestamp": rpc.NewHexNumber(b.Time()),
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"timestamp": rpc.NewHexNumber(head.Time),
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"transactionsRoot": b.TxHash(),
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"transactionsRoot": head.TxHash,
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"receiptRoot": b.ReceiptHash(),
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"receiptRoot": head.ReceiptHash,
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}
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}
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if inclTx {
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if inclTx {
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@ -648,26 +650,32 @@ type RPCTransaction struct {
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Gas *rpc.HexNumber `json:"gas"`
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Gas *rpc.HexNumber `json:"gas"`
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GasPrice *rpc.HexNumber `json:"gasPrice"`
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GasPrice *rpc.HexNumber `json:"gasPrice"`
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Hash common.Hash `json:"hash"`
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Hash common.Hash `json:"hash"`
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Input string `json:"input"`
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Input rpc.HexBytes `json:"input"`
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Nonce *rpc.HexNumber `json:"nonce"`
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Nonce *rpc.HexNumber `json:"nonce"`
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To *common.Address `json:"to"`
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To *common.Address `json:"to"`
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TransactionIndex *rpc.HexNumber `json:"transactionIndex"`
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TransactionIndex *rpc.HexNumber `json:"transactionIndex"`
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Value *rpc.HexNumber `json:"value"`
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Value *rpc.HexNumber `json:"value"`
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V *rpc.HexNumber `json:"v"`
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R *rpc.HexNumber `json:"r"`
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S *rpc.HexNumber `json:"s"`
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}
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}
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// newRPCPendingTransaction returns a pending transaction that will serialize to the RPC representation
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// newRPCPendingTransaction returns a pending transaction that will serialize to the RPC representation
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func newRPCPendingTransaction(tx *types.Transaction) *RPCTransaction {
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func newRPCPendingTransaction(tx *types.Transaction) *RPCTransaction {
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from, _ := tx.FromFrontier()
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from, _ := tx.FromFrontier()
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v, r, s := tx.SignatureValues()
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return &RPCTransaction{
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return &RPCTransaction{
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From: from,
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From: from,
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Gas: rpc.NewHexNumber(tx.Gas()),
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Gas: rpc.NewHexNumber(tx.Gas()),
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GasPrice: rpc.NewHexNumber(tx.GasPrice()),
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GasPrice: rpc.NewHexNumber(tx.GasPrice()),
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Hash: tx.Hash(),
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Hash: tx.Hash(),
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Input: fmt.Sprintf("0x%x", tx.Data()),
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Input: rpc.HexBytes(tx.Data()),
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Nonce: rpc.NewHexNumber(tx.Nonce()),
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Nonce: rpc.NewHexNumber(tx.Nonce()),
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To: tx.To(),
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To: tx.To(),
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Value: rpc.NewHexNumber(tx.Value()),
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Value: rpc.NewHexNumber(tx.Value()),
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V: rpc.NewHexNumber(v),
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R: rpc.NewHexNumber(r),
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S: rpc.NewHexNumber(s),
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}
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}
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}
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}
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@ -679,7 +687,7 @@ func newRPCTransactionFromBlockIndex(b *types.Block, txIndex int) (*RPCTransacti
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if err != nil {
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if err != nil {
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return nil, err
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return nil, err
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}
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}
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v, r, s := tx.SignatureValues()
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return &RPCTransaction{
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return &RPCTransaction{
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BlockHash: b.Hash(),
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BlockHash: b.Hash(),
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BlockNumber: rpc.NewHexNumber(b.Number()),
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BlockNumber: rpc.NewHexNumber(b.Number()),
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@ -687,11 +695,14 @@ func newRPCTransactionFromBlockIndex(b *types.Block, txIndex int) (*RPCTransacti
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Gas: rpc.NewHexNumber(tx.Gas()),
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Gas: rpc.NewHexNumber(tx.Gas()),
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GasPrice: rpc.NewHexNumber(tx.GasPrice()),
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GasPrice: rpc.NewHexNumber(tx.GasPrice()),
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Hash: tx.Hash(),
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Hash: tx.Hash(),
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Input: fmt.Sprintf("0x%x", tx.Data()),
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Input: rpc.HexBytes(tx.Data()),
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Nonce: rpc.NewHexNumber(tx.Nonce()),
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Nonce: rpc.NewHexNumber(tx.Nonce()),
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To: tx.To(),
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To: tx.To(),
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TransactionIndex: rpc.NewHexNumber(txIndex),
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TransactionIndex: rpc.NewHexNumber(txIndex),
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Value: rpc.NewHexNumber(tx.Value()),
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Value: rpc.NewHexNumber(tx.Value()),
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V: rpc.NewHexNumber(v),
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R: rpc.NewHexNumber(r),
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S: rpc.NewHexNumber(s),
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}, nil
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}, nil
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}
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}
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@ -861,7 +872,7 @@ func (s *PublicTransactionPoolAPI) GetTransactionReceipt(txHash common.Hash) (ma
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}
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}
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fields := map[string]interface{}{
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fields := map[string]interface{}{
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"root": common.Bytes2Hex(receipt.PostState),
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"root": rpc.HexBytes(receipt.PostState),
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"blockHash": txBlock,
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"blockHash": txBlock,
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"blockNumber": rpc.NewHexNumber(blockIndex),
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"blockNumber": rpc.NewHexNumber(blockIndex),
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"transactionHash": txHash,
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"transactionHash": txHash,
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@ -872,17 +883,15 @@ func (s *PublicTransactionPoolAPI) GetTransactionReceipt(txHash common.Hash) (ma
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"cumulativeGasUsed": rpc.NewHexNumber(receipt.CumulativeGasUsed),
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"cumulativeGasUsed": rpc.NewHexNumber(receipt.CumulativeGasUsed),
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"contractAddress": nil,
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"contractAddress": nil,
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"logs": receipt.Logs,
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"logs": receipt.Logs,
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"logsBloom": receipt.Bloom,
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}
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}
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if receipt.Logs == nil {
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if receipt.Logs == nil {
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fields["logs"] = []vm.Logs{}
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fields["logs"] = []vm.Logs{}
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}
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}
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// If the ContractAddress is 20 0x0 bytes, assume it is not a contract creation
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// If the ContractAddress is 20 0x0 bytes, assume it is not a contract creation
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if bytes.Compare(receipt.ContractAddress.Bytes(), bytes.Repeat([]byte{0}, 20)) != 0 {
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if receipt.ContractAddress != (common.Address{}) {
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fields["contractAddress"] = receipt.ContractAddress
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fields["contractAddress"] = receipt.ContractAddress
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}
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}
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return fields, nil
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return fields, nil
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}
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}
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30
rpc/types.go
30
rpc/types.go
@ -17,6 +17,8 @@
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package rpc
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package rpc
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import (
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import (
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"bytes"
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"encoding/hex"
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"fmt"
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"fmt"
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"math"
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"math"
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"math/big"
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"math/big"
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@ -272,3 +274,31 @@ func (bn *BlockNumber) UnmarshalJSON(data []byte) error {
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func (bn BlockNumber) Int64() int64 {
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func (bn BlockNumber) Int64() int64 {
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return (int64)(bn)
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return (int64)(bn)
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}
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}
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// HexBytes JSON-encodes as hex with 0x prefix.
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type HexBytes []byte
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func (b HexBytes) MarshalJSON() ([]byte, error) {
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result := make([]byte, len(b)*2+4)
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copy(result, `"0x`)
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hex.Encode(result[3:], b)
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result[len(result)-1] = '"'
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return result, nil
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}
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func (b *HexBytes) UnmarshalJSON(input []byte) error {
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if len(input) >= 2 && input[0] == '"' && input[len(input)-1] == '"' {
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input = input[1 : len(input)-1]
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}
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if !bytes.HasPrefix(input, []byte("0x")) {
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return fmt.Errorf("missing 0x prefix for hex byte array")
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}
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input = input[2:]
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if len(input) == 0 {
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*b = nil
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return nil
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}
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*b = make([]byte, len(input)/2)
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_, err := hex.Decode(*b, input)
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return err
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}
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@ -71,3 +71,25 @@ func TestHexNumberMarshalJSON(t *testing.T) {
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t.Fatalf("Invalid json.Marshal, expected '%s', got '%s'", exp, got)
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t.Fatalf("Invalid json.Marshal, expected '%s', got '%s'", exp, got)
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}
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}
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}
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}
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var hexBytesTests = []struct{ in, out []byte }{
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{in: []byte(`"0x"`), out: []byte{}},
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{in: []byte(`"0x00"`), out: []byte{0}},
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{in: []byte(`"0x01ff"`), out: []byte{0x01, 0xFF}},
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}
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func TestHexBytes(t *testing.T) {
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for i, test := range hexBytesTests {
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var dec HexBytes
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if err := json.Unmarshal(test.in, &dec); err != nil {
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t.Fatalf("test %d: can't decode: %v", i, err)
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}
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enc, _ := json.Marshal(HexBytes(test.out))
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if !bytes.Equal(dec, test.out) {
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t.Errorf("test %d: wrong decoded value 0x%x", i, dec)
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}
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if !bytes.Equal(enc, test.in) {
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t.Errorf("test %d: wrong encoded value %#q", i, enc)
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}
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}
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}
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