Address comments.
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885d934c90
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77d28264f7
@ -321,7 +321,7 @@ func (ecr *CIDRetriever) RetrieveFilteredGQLLogs(tx *sqlx.Tx, rctFilter ReceiptF
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WHERE eth.log_cids.receipt_id = receipt_cids.id
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AND receipt_cids.tx_id = transaction_cids.id
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AND transaction_cids.header_id = header_cids.id
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AND receipt_cids.leaf_mh_key = blocks.key AND header_cids.block_hash = $1`
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AND log_cids.leaf_mh_key = blocks.key AND header_cids.block_hash = $1`
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args = append(args, blockHash.String())
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id++
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@ -165,7 +165,11 @@ func checkTransactionAddrs(wantedSrc, wantedDst []string, actualSrc, actualDst s
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func (s *ResponseFilterer) filerReceipts(receiptFilter ReceiptFilter, response *IPLDs, payload ConvertedPayload, trxHashes []common.Hash) error {
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if !receiptFilter.Off {
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response.Receipts = make([]ipfs.BlockModel, 0, len(payload.Receipts))
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rctLeafCID, rctIPLDData := FetchRctLeafNodeData(payload.Receipts)
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rctLeafCID, rctIPLDData, err := GetRctLeafNodeData(payload.Receipts)
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if err != nil {
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return err
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}
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for idx, receipt := range payload.Receipts {
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// topics is always length 4
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topics := make([][]string, 4)
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@ -323,27 +327,23 @@ func checkNodeKeys(wantedKeys []common.Hash, actualKey []byte) bool {
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return false
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}
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// FetchRctLeafNodeData fetches receipt leaf node IPLD data and CIDs
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func FetchRctLeafNodeData(rcts types.Receipts) ([]cid.Cid, [][]byte) {
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// GetRctLeafNodeData converts the receipts to receipt trie and returns the receipt leaf node IPLD data and
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// corresponding CIDs
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func GetRctLeafNodeData(rcts types.Receipts) ([]cid.Cid, [][]byte, error) {
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receiptTrie := ipld.NewRctTrie()
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for idx, rct := range rcts {
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ethRct, err := ipld.NewReceipt(rct)
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if err != nil {
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return nil, nil
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return nil, nil, err
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}
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if err = receiptTrie.Add(idx, ethRct.RawData()); err != nil {
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return nil, nil
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return nil, nil, err
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}
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}
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_, err := receiptTrie.GetNodes()
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if err != nil {
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return nil, nil
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}
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rctLeafNodes, keys, err := receiptTrie.GetLeafNodes()
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if err != nil {
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return nil, nil
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return nil, nil, err
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}
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ethRctleafNodeCids := make([]cid.Cid, len(rctLeafNodes))
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@ -354,12 +354,12 @@ func FetchRctLeafNodeData(rcts types.Receipts) ([]cid.Cid, [][]byte) {
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r := bytes.NewReader(keys[i].TrieKey)
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err = rlp.Decode(r, &idx)
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if err != nil {
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return nil, nil
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return nil, nil, err
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}
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ethRctleafNodeCids[idx] = rln.Cid()
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ethRctleafNodeData[idx] = rln.RawData()
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}
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return ethRctleafNodeCids, ethRctleafNodeData
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return ethRctleafNodeCids, ethRctleafNodeData, nil
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}
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@ -361,12 +361,12 @@ func (r *IPLDRetriever) RetrieveReceiptsByTxHashes(hashes []common.Hash) ([]stri
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return nil, nil, err
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}
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rcts[i] = nodeVal
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//rcts[i] = res.Data
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}
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return cids, rcts, nil
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}
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// RetrieveReceiptsByBlockHash returns the cids and rlp bytes for the receipts corresponding to the provided block hash
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// RetrieveReceiptsByBlockHash returns the cids and rlp bytes for the receipts corresponding to the provided block hash.
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// cid returned corresponds to the leaf node data which contains the receipt.
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func (r *IPLDRetriever) RetrieveReceiptsByBlockHash(hash common.Hash) ([]string, [][]byte, []common.Hash, error) {
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rctResults := make([]rctIpldResult, 0)
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if err := r.db.Select(&rctResults, RetrieveReceiptsByBlockHashPgStr, hash.Hex()); err != nil {
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@ -383,14 +383,14 @@ func (r *IPLDRetriever) RetrieveReceiptsByBlockHash(hash common.Hash) ([]string,
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return nil, nil, nil, err
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}
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rcts[i] = nodeVal
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//rcts[i] = res.Data
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txs[i] = common.HexToHash(res.TxHash)
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}
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return cids, rcts, txs, nil
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}
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// RetrieveReceiptsByBlockNumber returns the cids and rlp bytes for the receipts corresponding to the provided block hash
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// RetrieveReceiptsByBlockNumber returns the cids and rlp bytes for the receipts corresponding to the provided block hash.
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// cid returned corresponds to the leaf node data which contains the receipt.
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func (r *IPLDRetriever) RetrieveReceiptsByBlockNumber(number uint64) ([]string, [][]byte, error) {
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rctResults := make([]rctIpldResult, 0)
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if err := r.db.Select(&rctResults, RetrieveReceiptsByBlockNumberPgStr, number); err != nil {
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@ -405,15 +405,23 @@ func (r *IPLDRetriever) RetrieveReceiptsByBlockNumber(number uint64) ([]string,
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return nil, nil, err
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}
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rcts[i] = nodeVal
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//rcts[i] = res.Data
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}
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return cids, rcts, nil
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}
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// RetrieveReceiptByHash returns the cid and rlp bytes for the receipt corresponding to the provided tx hash
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// RetrieveReceiptByHash returns the cid and rlp bytes for the receipt corresponding to the provided tx hash.
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// cid returned corresponds to the leaf node data which contains the receipt.
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func (r *IPLDRetriever) RetrieveReceiptByHash(hash common.Hash) (string, []byte, error) {
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rctResult := new(rctIpldResult)
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return rctResult.LeafCID, rctResult.Data, r.db.Get(rctResult, RetrieveReceiptByTxHashPgStr, hash.Hex())
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if err := r.db.Select(&rctResult, RetrieveReceiptByTxHashPgStr, hash.Hex()); err != nil {
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return "", nil, err
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}
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nodeVal, err := DecodeLeafNode(rctResult.Data)
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if err != nil {
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return "", nil, err
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}
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return rctResult.LeafCID, nodeVal, nil
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}
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type nodeInfo struct {
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@ -56,7 +56,7 @@ func TxModelsContainsCID(txs []models.TxModel, cid string) bool {
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return false
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}
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// ListContainsBytes used to check if a list of byte arrays contains a particular byte array
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// ReceiptModelsContainsCID used to check if a list of ReceiptModel contains a specific cid string
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func ReceiptModelsContainsCID(rcts []models.ReceiptModel, cid string) bool {
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for _, rct := range rcts {
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if rct.LeafCID == cid {
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@ -167,36 +167,36 @@ var (
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Tx3 = GetTxnRlp(2, MockTransactions)
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Tx4 = GetTxnRlp(3, MockTransactions)
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rctCIDs, rctIPLDData = eth.FetchRctLeafNodeData(MockReceipts)
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HeaderCID, _ = ipld.RawdataToCid(ipld.MEthHeader, MockHeaderRlp, multihash.KECCAK_256)
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HeaderMhKey = shared.MultihashKeyFromCID(HeaderCID)
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Trx1CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx1, multihash.KECCAK_256)
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Trx1MhKey = shared.MultihashKeyFromCID(Trx1CID)
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Trx2CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx2, multihash.KECCAK_256)
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Trx2MhKey = shared.MultihashKeyFromCID(Trx2CID)
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Trx3CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx3, multihash.KECCAK_256)
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Trx3MhKey = shared.MultihashKeyFromCID(Trx3CID)
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Trx4CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx4, multihash.KECCAK_256)
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Trx4MhKey = shared.MultihashKeyFromCID(Trx4CID)
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Rct1CID = rctCIDs[0]
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Rct1MhKey = shared.MultihashKeyFromCID(Rct1CID)
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Rct2CID = rctCIDs[1]
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Rct2MhKey = shared.MultihashKeyFromCID(Rct2CID)
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Rct3CID = rctCIDs[2]
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Rct3MhKey = shared.MultihashKeyFromCID(Rct3CID)
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Rct4CID = rctCIDs[3]
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Rct4MhKey = shared.MultihashKeyFromCID(Rct4CID)
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State1CID, _ = ipld.RawdataToCid(ipld.MEthStateTrie, ContractLeafNode, multihash.KECCAK_256)
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State1MhKey = shared.MultihashKeyFromCID(State1CID)
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State2CID, _ = ipld.RawdataToCid(ipld.MEthStateTrie, AccountLeafNode, multihash.KECCAK_256)
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State2MhKey = shared.MultihashKeyFromCID(State2CID)
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StorageCID, _ = ipld.RawdataToCid(ipld.MEthStorageTrie, StorageLeafNode, multihash.KECCAK_256)
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StorageMhKey = shared.MultihashKeyFromCID(StorageCID)
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Rct1IPLD = rctIPLDData[0]
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Rct2IPLD = rctIPLDData[1]
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Rct3IPLD = rctIPLDData[2]
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Rct4IPLD = rctIPLDData[3]
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MockTrxMeta = []models.TxModel{
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rctCIDs, rctIPLDData, _ = eth.GetRctLeafNodeData(MockReceipts)
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HeaderCID, _ = ipld.RawdataToCid(ipld.MEthHeader, MockHeaderRlp, multihash.KECCAK_256)
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HeaderMhKey = shared.MultihashKeyFromCID(HeaderCID)
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Trx1CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx1, multihash.KECCAK_256)
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Trx1MhKey = shared.MultihashKeyFromCID(Trx1CID)
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Trx2CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx2, multihash.KECCAK_256)
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Trx2MhKey = shared.MultihashKeyFromCID(Trx2CID)
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Trx3CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx3, multihash.KECCAK_256)
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Trx3MhKey = shared.MultihashKeyFromCID(Trx3CID)
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Trx4CID, _ = ipld.RawdataToCid(ipld.MEthTx, Tx4, multihash.KECCAK_256)
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Trx4MhKey = shared.MultihashKeyFromCID(Trx4CID)
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Rct1CID = rctCIDs[0]
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Rct1MhKey = shared.MultihashKeyFromCID(Rct1CID)
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Rct2CID = rctCIDs[1]
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Rct2MhKey = shared.MultihashKeyFromCID(Rct2CID)
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Rct3CID = rctCIDs[2]
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Rct3MhKey = shared.MultihashKeyFromCID(Rct3CID)
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Rct4CID = rctCIDs[3]
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Rct4MhKey = shared.MultihashKeyFromCID(Rct4CID)
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State1CID, _ = ipld.RawdataToCid(ipld.MEthStateTrie, ContractLeafNode, multihash.KECCAK_256)
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State1MhKey = shared.MultihashKeyFromCID(State1CID)
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State2CID, _ = ipld.RawdataToCid(ipld.MEthStateTrie, AccountLeafNode, multihash.KECCAK_256)
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State2MhKey = shared.MultihashKeyFromCID(State2CID)
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StorageCID, _ = ipld.RawdataToCid(ipld.MEthStorageTrie, StorageLeafNode, multihash.KECCAK_256)
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StorageMhKey = shared.MultihashKeyFromCID(StorageCID)
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Rct1IPLD = rctIPLDData[0]
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Rct2IPLD = rctIPLDData[1]
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Rct3IPLD = rctIPLDData[2]
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Rct4IPLD = rctIPLDData[3]
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MockTrxMeta = []models.TxModel{
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{
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CID: "", // This is empty until we go to publish to ipfs
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MhKey: "",
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