2023-06-14 12:43:34 +00:00
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// VulcanizeDB
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// Copyright © 2022 Vulcanize
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Affero General Public License for more details.
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package test
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import (
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"bytes"
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"testing"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ipfs/go-cid"
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"github.com/multiformats/go-multihash"
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2023-06-23 12:42:55 +00:00
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"github.com/cerc-io/plugeth-statediff/indexer/ipld"
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"github.com/cerc-io/plugeth-statediff/indexer/mocks"
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"github.com/cerc-io/plugeth-statediff/indexer/models"
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"github.com/cerc-io/plugeth-statediff/indexer/shared"
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)
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var (
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err error
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ipfsPgGet = `SELECT data FROM ipld.blocks
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WHERE key = $1 AND block_number = $2`
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watchedAddressesPgGet = `SELECT *
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FROM eth_meta.watched_addresses`
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encodedTxs, encodedRcts [][]byte
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wd1, wd2 []byte
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nonCanonicalBlockRct1, nonCanonicalBlockRct2 []byte
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nonCanonicalBlock2Rct1, nonCanonicalBlock2Rct2 []byte
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mockBlock, mockNonCanonicalBlock, mockNonCanonicalBlock2 *types.Block
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headerCID, mockNonCanonicalHeaderCID, mockNonCanonicalHeader2CID cid.Cid
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txCIDs, rctCIDs []cid.Cid
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wd1CID, wd2CID cid.Cid
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nonCanonicalBlockRct1CID, nonCanonicalBlockRct2CID cid.Cid
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nonCanonicalBlock2Rct1CID, nonCanonicalBlock2Rct2CID cid.Cid
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state1CID, state2CID, storageCID cid.Cid
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)
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func init() {
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// canonical block at LondonBlock height
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mockBlock = mocks.MockBlock
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txs, rcts := mocks.MockBlock.Transactions(), mocks.MockReceipts
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// non-canonical block at LondonBlock height
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mockNonCanonicalBlock = mocks.MockNonCanonicalBlock
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nonCanonicalBlockRcts := mocks.MockNonCanonicalBlockReceipts
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// non-canonical block at LondonBlock height + 1
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mockNonCanonicalBlock2 = mocks.MockNonCanonicalBlock2
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nonCanonicalBlock2Rcts := mocks.MockNonCanonicalBlock2Receipts
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// encode mock txs and receipts
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buf := new(bytes.Buffer)
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encodedTxs = make([][]byte, len(txs))
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encodedRcts = make([][]byte, len(rcts))
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for i := 0; i < len(txs); i++ {
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txs.EncodeIndex(i, buf)
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tx := make([]byte, buf.Len())
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copy(tx, buf.Bytes())
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buf.Reset()
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encodedTxs[i] = tx
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}
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for i := 0; i < len(rcts); i++ {
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rcts.EncodeIndex(i, buf)
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rct := make([]byte, buf.Len())
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copy(rct, buf.Bytes())
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buf.Reset()
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encodedRcts[i] = rct
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}
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2024-06-28 09:44:58 +00:00
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// encode mock withdrawals
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mocks.MockWithdrawals.EncodeIndex(0, buf)
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wd1 = make([]byte, buf.Len())
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copy(wd1, buf.Bytes())
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buf.Reset()
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mocks.MockWithdrawals.EncodeIndex(1, buf)
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wd2 = make([]byte, buf.Len())
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copy(wd2, buf.Bytes())
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buf.Reset()
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// encode mock receipts for non-canonical blocks
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nonCanonicalBlockRcts.EncodeIndex(0, buf)
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nonCanonicalBlockRct1 = make([]byte, buf.Len())
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copy(nonCanonicalBlockRct1, buf.Bytes())
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buf.Reset()
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nonCanonicalBlockRcts.EncodeIndex(1, buf)
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nonCanonicalBlockRct2 = make([]byte, buf.Len())
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copy(nonCanonicalBlockRct2, buf.Bytes())
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buf.Reset()
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nonCanonicalBlock2Rcts.EncodeIndex(0, buf)
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nonCanonicalBlock2Rct1 = make([]byte, buf.Len())
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copy(nonCanonicalBlock2Rct1, buf.Bytes())
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buf.Reset()
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nonCanonicalBlock2Rcts.EncodeIndex(1, buf)
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nonCanonicalBlock2Rct2 = make([]byte, buf.Len())
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copy(nonCanonicalBlock2Rct2, buf.Bytes())
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buf.Reset()
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headerCID, _ = ipld.RawdataToCid(ipld.MEthHeader, mocks.MockHeaderRlp, multihash.KECCAK_256)
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mockNonCanonicalHeaderCID, _ = ipld.RawdataToCid(ipld.MEthHeader, mocks.MockNonCanonicalHeaderRlp, multihash.KECCAK_256)
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mockNonCanonicalHeader2CID, _ = ipld.RawdataToCid(ipld.MEthHeader, mocks.MockNonCanonicalHeader2Rlp, multihash.KECCAK_256)
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for i := 0; i < len(txs); i++ {
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tx, _ := ipld.RawdataToCid(ipld.MEthTx, encodedTxs[i], multihash.KECCAK_256)
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txCIDs = append(txCIDs, tx)
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}
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state1CID, _ = ipld.RawdataToCid(ipld.MEthStateTrie, mocks.ContractLeafNode, multihash.KECCAK_256)
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state2CID, _ = ipld.RawdataToCid(ipld.MEthStateTrie, mocks.AccountLeafNode, multihash.KECCAK_256)
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storageCID, _ = ipld.RawdataToCid(ipld.MEthStorageTrie, mocks.StorageLeafNode, multihash.KECCAK_256)
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for i := 0; i < len(rcts); i++ {
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rct, _ := ipld.RawdataToCid(ipld.MEthTxReceipt, encodedRcts[i], multihash.KECCAK_256)
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rctCIDs = append(rctCIDs, rct)
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}
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wd1CID, _ = ipld.RawdataToCid(ipld.MEthWithdrawal, wd1, multihash.KECCAK_256)
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wd2CID, _ = ipld.RawdataToCid(ipld.MEthWithdrawal, wd2, multihash.KECCAK_256)
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// create raw receipts for non-canonical blocks
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nonCanonicalBlockRct1CID, _ = ipld.RawdataToCid(ipld.MEthTxReceipt, nonCanonicalBlockRct1, multihash.KECCAK_256)
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nonCanonicalBlockRct2CID, _ = ipld.RawdataToCid(ipld.MEthTxReceipt, nonCanonicalBlockRct2, multihash.KECCAK_256)
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nonCanonicalBlock2Rct1CID, _ = ipld.RawdataToCid(ipld.MEthTxReceipt, nonCanonicalBlock2Rct1, multihash.KECCAK_256)
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nonCanonicalBlock2Rct2CID, _ = ipld.RawdataToCid(ipld.MEthTxReceipt, nonCanonicalBlock2Rct2, multihash.KECCAK_256)
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}
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// createRctModel creates a models.ReceiptModel object from a given ethereum receipt
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func createRctModel(rct *types.Receipt, cid cid.Cid, blockNumber string) models.ReceiptModel {
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rctModel := models.ReceiptModel{
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BlockNumber: blockNumber,
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HeaderID: rct.BlockHash.String(),
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TxID: rct.TxHash.String(),
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CID: cid.String(),
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}
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contract := shared.HandleZeroAddr(rct.ContractAddress)
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rctModel.Contract = contract
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if len(rct.PostState) == 0 {
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rctModel.PostStatus = rct.Status
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} else {
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rctModel.PostState = common.BytesToHash(rct.PostState).String()
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}
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return rctModel
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}
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func expectTrue(t *testing.T, value bool) {
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if !value {
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t.Fatalf("Assertion failed")
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}
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}
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