forked from cerc-io/plugeth
2def62b99b
Logs stored on disk have minimal information. Contextual information such as block number, index of log in block, index of transaction in block are filled in upon request. We can fill in all these fields only having the block header and list of receipts. But determining the transaction hash of a log requires the block body. The goal of this PR is postponing this retrieval until we are sure we the transaction hash. It happens often that the header bloom filter signals there might be matches in a block, but after actually checking them reveals the logs do not match. We want to avoid fetching the body in this case. Note that this changes the semantics of Backend.GetLogs. Downstream callers of GetLogs now assume log context fields have not been derived, and need to call DeriveFields on the logs if necessary.
294 lines
11 KiB
Go
294 lines
11 KiB
Go
// Copyright 2016 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser 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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//
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// The go-ethereum library 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 Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package light
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import (
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"bytes"
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"context"
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"errors"
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"math/big"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/rawdb"
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"github.com/ethereum/go-ethereum/core/txpool"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/rlp"
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)
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// errNonCanonicalHash is returned if the requested chain data doesn't belong
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// to the canonical chain. ODR can only retrieve the canonical chain data covered
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// by the CHT or Bloom trie for verification.
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var errNonCanonicalHash = errors.New("hash is not currently canonical")
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// GetHeaderByNumber retrieves the canonical block header corresponding to the
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// given number. The returned header is proven by local CHT.
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func GetHeaderByNumber(ctx context.Context, odr OdrBackend, number uint64) (*types.Header, error) {
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// Try to find it in the local database first.
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db := odr.Database()
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hash := rawdb.ReadCanonicalHash(db, number)
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// If there is a canonical hash, there should have a header too.
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// But if it's pruned, re-fetch from network again.
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if (hash != common.Hash{}) {
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if header := rawdb.ReadHeader(db, hash, number); header != nil {
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return header, nil
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}
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}
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// Retrieve the header via ODR, ensure the requested header is covered
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// by local trusted CHT.
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chts, _, chtHead := odr.ChtIndexer().Sections()
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if number >= chts*odr.IndexerConfig().ChtSize {
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return nil, errNoTrustedCht
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}
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r := &ChtRequest{
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ChtRoot: GetChtRoot(db, chts-1, chtHead),
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ChtNum: chts - 1,
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BlockNum: number,
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Config: odr.IndexerConfig(),
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}
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if err := odr.Retrieve(ctx, r); err != nil {
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return nil, err
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}
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return r.Header, nil
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}
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// GetCanonicalHash retrieves the canonical block hash corresponding to the number.
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func GetCanonicalHash(ctx context.Context, odr OdrBackend, number uint64) (common.Hash, error) {
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hash := rawdb.ReadCanonicalHash(odr.Database(), number)
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if hash != (common.Hash{}) {
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return hash, nil
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}
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header, err := GetHeaderByNumber(ctx, odr, number)
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if err != nil {
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return common.Hash{}, err
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}
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// number -> canonical mapping already be stored in db, get it.
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return header.Hash(), nil
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}
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// GetTd retrieves the total difficulty corresponding to the number and hash.
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func GetTd(ctx context.Context, odr OdrBackend, hash common.Hash, number uint64) (*big.Int, error) {
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td := rawdb.ReadTd(odr.Database(), hash, number)
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if td != nil {
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return td, nil
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}
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header, err := GetHeaderByNumber(ctx, odr, number)
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if err != nil {
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return nil, err
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}
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if header.Hash() != hash {
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return nil, errNonCanonicalHash
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}
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// <hash, number> -> td mapping already be stored in db, get it.
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return rawdb.ReadTd(odr.Database(), hash, number), nil
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}
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// GetBodyRLP retrieves the block body (transactions and uncles) in RLP encoding.
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func GetBodyRLP(ctx context.Context, odr OdrBackend, hash common.Hash, number uint64) (rlp.RawValue, error) {
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if data := rawdb.ReadBodyRLP(odr.Database(), hash, number); data != nil {
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return data, nil
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}
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// Retrieve the block header first and pass it for verification.
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header, err := GetHeaderByNumber(ctx, odr, number)
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if err != nil {
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return nil, errNoHeader
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}
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if header.Hash() != hash {
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return nil, errNonCanonicalHash
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}
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r := &BlockRequest{Hash: hash, Number: number, Header: header}
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if err := odr.Retrieve(ctx, r); err != nil {
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return nil, err
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}
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return r.Rlp, nil
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}
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// GetBody retrieves the block body (transactions, uncles) corresponding to the
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// hash.
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func GetBody(ctx context.Context, odr OdrBackend, hash common.Hash, number uint64) (*types.Body, error) {
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data, err := GetBodyRLP(ctx, odr, hash, number)
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if err != nil {
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return nil, err
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}
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body := new(types.Body)
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if err := rlp.Decode(bytes.NewReader(data), body); err != nil {
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return nil, err
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}
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return body, nil
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}
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// GetBlock retrieves an entire block corresponding to the hash, assembling it
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// back from the stored header and body.
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func GetBlock(ctx context.Context, odr OdrBackend, hash common.Hash, number uint64) (*types.Block, error) {
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// Retrieve the block header and body contents
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header, err := GetHeaderByNumber(ctx, odr, number)
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if err != nil {
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return nil, errNoHeader
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}
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body, err := GetBody(ctx, odr, hash, number)
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if err != nil {
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return nil, err
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}
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// Reassemble the block and return
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return types.NewBlockWithHeader(header).WithBody(body.Transactions, body.Uncles), nil
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}
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// GetBlockReceipts retrieves the receipts generated by the transactions included
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// in a block given by its hash. Receipts will be filled in with context data.
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func GetBlockReceipts(ctx context.Context, odr OdrBackend, hash common.Hash, number uint64) (types.Receipts, error) {
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// Assume receipts are already stored locally and attempt to retrieve.
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receipts := rawdb.ReadRawReceipts(odr.Database(), hash, number)
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if receipts == nil {
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header, err := GetHeaderByNumber(ctx, odr, number)
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if err != nil {
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return nil, errNoHeader
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}
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if header.Hash() != hash {
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return nil, errNonCanonicalHash
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}
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r := &ReceiptsRequest{Hash: hash, Number: number, Header: header}
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if err := odr.Retrieve(ctx, r); err != nil {
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return nil, err
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}
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receipts = r.Receipts
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}
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// If the receipts are incomplete, fill the derived fields
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if len(receipts) > 0 && receipts[0].TxHash == (common.Hash{}) {
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block, err := GetBlock(ctx, odr, hash, number)
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if err != nil {
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return nil, err
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}
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genesis := rawdb.ReadCanonicalHash(odr.Database(), 0)
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config := rawdb.ReadChainConfig(odr.Database(), genesis)
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if err := receipts.DeriveFields(config, block.Hash(), block.NumberU64(), block.Transactions()); err != nil {
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return nil, err
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}
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rawdb.WriteReceipts(odr.Database(), hash, number, receipts)
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}
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return receipts, nil
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}
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// GetBlockLogs retrieves the logs generated by the transactions included in a
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// block given by its hash. Logs will be filled in with context data.
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func GetBlockLogs(ctx context.Context, odr OdrBackend, hash common.Hash, number uint64) ([][]*types.Log, error) {
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receipts, err := GetBlockReceipts(ctx, odr, hash, number)
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if err != nil {
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return nil, err
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}
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logs := make([][]*types.Log, len(receipts))
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for i, receipt := range receipts {
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logs[i] = receipt.Logs
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}
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return logs, nil
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}
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// GetUntrustedBlockLogs retrieves the logs generated by the transactions included in a
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// block. The retrieved logs are regarded as untrusted and will not be stored in the
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// database. This function should only be used in light client checkpoint syncing.
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func GetUntrustedBlockLogs(ctx context.Context, odr OdrBackend, header *types.Header) ([][]*types.Log, error) {
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// Retrieve the potentially incomplete receipts from disk or network
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hash, number := header.Hash(), header.Number.Uint64()
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receipts := rawdb.ReadRawReceipts(odr.Database(), hash, number)
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if receipts == nil {
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r := &ReceiptsRequest{Hash: hash, Number: number, Header: header, Untrusted: true}
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if err := odr.Retrieve(ctx, r); err != nil {
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return nil, err
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}
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receipts = r.Receipts
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// Untrusted receipts won't be stored in the database. Therefore
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// derived fields computation is unnecessary.
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}
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// Return the logs without deriving any computed fields on the receipts
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logs := make([][]*types.Log, len(receipts))
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for i, receipt := range receipts {
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logs[i] = receipt.Logs
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}
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return logs, nil
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}
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// GetBloomBits retrieves a batch of compressed bloomBits vectors belonging to
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// the given bit index and section indexes.
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func GetBloomBits(ctx context.Context, odr OdrBackend, bit uint, sections []uint64) ([][]byte, error) {
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var (
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reqIndex []int
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reqSections []uint64
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db = odr.Database()
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result = make([][]byte, len(sections))
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)
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blooms, _, sectionHead := odr.BloomTrieIndexer().Sections()
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for i, section := range sections {
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sectionHead := rawdb.ReadCanonicalHash(db, (section+1)*odr.IndexerConfig().BloomSize-1)
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// If we don't have the canonical hash stored for this section head number,
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// we'll still look for an entry with a zero sectionHead (we store it with
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// zero section head too if we don't know it at the time of the retrieval)
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if bloomBits, _ := rawdb.ReadBloomBits(db, bit, section, sectionHead); len(bloomBits) != 0 {
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result[i] = bloomBits
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continue
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}
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// TODO(rjl493456442) Convert sectionIndex to BloomTrie relative index
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if section >= blooms {
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return nil, errNoTrustedBloomTrie
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}
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reqSections = append(reqSections, section)
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reqIndex = append(reqIndex, i)
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}
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// Find all bloombits in database, nothing to query via odr, return.
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if reqSections == nil {
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return result, nil
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}
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// Send odr request to retrieve missing bloombits.
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r := &BloomRequest{
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BloomTrieRoot: GetBloomTrieRoot(db, blooms-1, sectionHead),
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BloomTrieNum: blooms - 1,
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BitIdx: bit,
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SectionIndexList: reqSections,
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Config: odr.IndexerConfig(),
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}
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if err := odr.Retrieve(ctx, r); err != nil {
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return nil, err
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}
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for i, idx := range reqIndex {
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result[idx] = r.BloomBits[i]
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}
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return result, nil
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}
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// GetTransaction retrieves a canonical transaction by hash and also returns
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// its position in the chain. There is no guarantee in the LES protocol that
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// the mined transaction will be retrieved back for sure because of different
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// reasons(the transaction is unindexed, the malicious server doesn't reply it
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// deliberately, etc). Therefore, unretrieved transactions will receive a certain
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// number of retries, thus giving a weak guarantee.
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func GetTransaction(ctx context.Context, odr OdrBackend, txHash common.Hash) (*types.Transaction, common.Hash, uint64, uint64, error) {
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r := &TxStatusRequest{Hashes: []common.Hash{txHash}}
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if err := odr.RetrieveTxStatus(ctx, r); err != nil || r.Status[0].Status != txpool.TxStatusIncluded {
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return nil, common.Hash{}, 0, 0, err
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}
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pos := r.Status[0].Lookup
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// first ensure that we have the header, otherwise block body retrieval will fail
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// also verify if this is a canonical block by getting the header by number and checking its hash
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if header, err := GetHeaderByNumber(ctx, odr, pos.BlockIndex); err != nil || header.Hash() != pos.BlockHash {
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return nil, common.Hash{}, 0, 0, err
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}
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body, err := GetBody(ctx, odr, pos.BlockHash, pos.BlockIndex)
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if err != nil || uint64(len(body.Transactions)) <= pos.Index || body.Transactions[pos.Index].Hash() != txHash {
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return nil, common.Hash{}, 0, 0, err
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}
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return body.Transactions[pos.Index], pos.BlockHash, pos.BlockIndex, pos.Index, nil
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}
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