graphql.go 33.1 KB
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// Copyright 2019 The go-ethereum Authors
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// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.

// Package graphql provides a GraphQL interface to Ethereum node data.
package graphql

import (
	"context"
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	"errors"
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	"fmt"
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	"math/big"
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	"strconv"
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	"time"

	"github.com/ethereum/go-ethereum"
	"github.com/ethereum/go-ethereum/common"
	"github.com/ethereum/go-ethereum/common/hexutil"
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	"github.com/ethereum/go-ethereum/common/math"
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	"github.com/ethereum/go-ethereum/core/rawdb"
	"github.com/ethereum/go-ethereum/core/state"
	"github.com/ethereum/go-ethereum/core/types"
	"github.com/ethereum/go-ethereum/eth/filters"
	"github.com/ethereum/go-ethereum/internal/ethapi"
	"github.com/ethereum/go-ethereum/rpc"
)

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var (
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	errBlockInvariant = errors.New("block objects must be instantiated with at least one of num or hash")
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)
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type Long int64

// ImplementsGraphQLType returns true if Long implements the provided GraphQL type.
func (b Long) ImplementsGraphQLType(name string) bool { return name == "Long" }

// UnmarshalGraphQL unmarshals the provided GraphQL query data.
func (b *Long) UnmarshalGraphQL(input interface{}) error {
	var err error
	switch input := input.(type) {
	case string:
		// uncomment to support hex values
		//if strings.HasPrefix(input, "0x") {
		//	// apply leniency and support hex representations of longs.
		//	value, err := hexutil.DecodeUint64(input)
		//	*b = Long(value)
		//	return err
		//} else {
		value, err := strconv.ParseInt(input, 10, 64)
		*b = Long(value)
		return err
		//}
	case int32:
		*b = Long(input)
	case int64:
		*b = Long(input)
	default:
		err = fmt.Errorf("unexpected type %T for Long", input)
	}
	return err
}

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// Account represents an Ethereum account at a particular block.
type Account struct {
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	backend       ethapi.Backend
	address       common.Address
	blockNrOrHash rpc.BlockNumberOrHash
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}

// getState fetches the StateDB object for an account.
func (a *Account) getState(ctx context.Context) (*state.StateDB, error) {
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	state, _, err := a.backend.StateAndHeaderByNumberOrHash(ctx, a.blockNrOrHash)
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	return state, err
}

func (a *Account) Address(ctx context.Context) (common.Address, error) {
	return a.address, nil
}

func (a *Account) Balance(ctx context.Context) (hexutil.Big, error) {
	state, err := a.getState(ctx)
	if err != nil {
		return hexutil.Big{}, err
	}
	return hexutil.Big(*state.GetBalance(a.address)), nil
}

func (a *Account) TransactionCount(ctx context.Context) (hexutil.Uint64, error) {
	state, err := a.getState(ctx)
	if err != nil {
		return 0, err
	}
	return hexutil.Uint64(state.GetNonce(a.address)), nil
}

func (a *Account) Code(ctx context.Context) (hexutil.Bytes, error) {
	state, err := a.getState(ctx)
	if err != nil {
		return hexutil.Bytes{}, err
	}
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	return state.GetCode(a.address), nil
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}

func (a *Account) Storage(ctx context.Context, args struct{ Slot common.Hash }) (common.Hash, error) {
	state, err := a.getState(ctx)
	if err != nil {
		return common.Hash{}, err
	}
	return state.GetState(a.address, args.Slot), nil
}

// Log represents an individual log message. All arguments are mandatory.
type Log struct {
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	backend     ethapi.Backend
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	transaction *Transaction
	log         *types.Log
}

func (l *Log) Transaction(ctx context.Context) *Transaction {
	return l.transaction
}

func (l *Log) Account(ctx context.Context, args BlockNumberArgs) *Account {
	return &Account{
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		backend:       l.backend,
		address:       l.log.Address,
		blockNrOrHash: args.NumberOrLatest(),
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	}
}

func (l *Log) Index(ctx context.Context) int32 {
	return int32(l.log.Index)
}

func (l *Log) Topics(ctx context.Context) []common.Hash {
	return l.log.Topics
}

func (l *Log) Data(ctx context.Context) hexutil.Bytes {
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	return l.log.Data
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}

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// AccessTuple represents EIP-2930
type AccessTuple struct {
	address     common.Address
	storageKeys *[]common.Hash
}

func (at *AccessTuple) Address(ctx context.Context) common.Address {
	return at.address
}

func (at *AccessTuple) StorageKeys(ctx context.Context) *[]common.Hash {
	return at.storageKeys
}

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// Transaction represents an Ethereum transaction.
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// backend and hash are mandatory; all others will be fetched when required.
type Transaction struct {
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	backend ethapi.Backend
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	hash    common.Hash
	tx      *types.Transaction
	block   *Block
	index   uint64
}

// resolve returns the internal transaction object, fetching it if needed.
func (t *Transaction) resolve(ctx context.Context) (*types.Transaction, error) {
	if t.tx == nil {
		tx, blockHash, _, index := rawdb.ReadTransaction(t.backend.ChainDb(), t.hash)
		if tx != nil {
			t.tx = tx
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			blockNrOrHash := rpc.BlockNumberOrHashWithHash(blockHash, false)
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			t.block = &Block{
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				backend:      t.backend,
				numberOrHash: &blockNrOrHash,
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			}
			t.index = index
		} else {
			t.tx = t.backend.GetPoolTransaction(t.hash)
		}
	}
	return t.tx, nil
}

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func (t *Transaction) Hash(ctx context.Context) common.Hash {
	return t.hash
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}

func (t *Transaction) InputData(ctx context.Context) (hexutil.Bytes, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return hexutil.Bytes{}, err
	}
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	return tx.Data(), nil
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}

func (t *Transaction) Gas(ctx context.Context) (hexutil.Uint64, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return 0, err
	}
	return hexutil.Uint64(tx.Gas()), nil
}

func (t *Transaction) GasPrice(ctx context.Context) (hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return hexutil.Big{}, err
	}
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	switch tx.Type() {
	case types.AccessListTxType:
		return hexutil.Big(*tx.GasPrice()), nil
	case types.DynamicFeeTxType:
		if t.block != nil {
			if baseFee, _ := t.block.BaseFeePerGas(ctx); baseFee != nil {
				// price = min(tip, gasFeeCap - baseFee) + baseFee
				return (hexutil.Big)(*math.BigMin(new(big.Int).Add(tx.GasTipCap(), baseFee.ToInt()), tx.GasFeeCap())), nil
			}
		}
		return hexutil.Big(*tx.GasPrice()), nil
	default:
		return hexutil.Big(*tx.GasPrice()), nil
	}
}

func (t *Transaction) MaxFeePerGas(ctx context.Context) (*hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return nil, err
	}
	switch tx.Type() {
	case types.AccessListTxType:
		return nil, nil
	case types.DynamicFeeTxType:
		return (*hexutil.Big)(tx.GasFeeCap()), nil
	default:
		return nil, nil
	}
}

func (t *Transaction) MaxPriorityFeePerGas(ctx context.Context) (*hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return nil, err
	}
	switch tx.Type() {
	case types.AccessListTxType:
		return nil, nil
	case types.DynamicFeeTxType:
		return (*hexutil.Big)(tx.GasTipCap()), nil
	default:
		return nil, nil
	}
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}

func (t *Transaction) Value(ctx context.Context) (hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return hexutil.Big{}, err
	}
	return hexutil.Big(*tx.Value()), nil
}

func (t *Transaction) Nonce(ctx context.Context) (hexutil.Uint64, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return 0, err
	}
	return hexutil.Uint64(tx.Nonce()), nil
}

func (t *Transaction) To(ctx context.Context, args BlockNumberArgs) (*Account, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return nil, err
	}
	to := tx.To()
	if to == nil {
		return nil, nil
	}
	return &Account{
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		backend:       t.backend,
		address:       *to,
		blockNrOrHash: args.NumberOrLatest(),
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	}, nil
}

func (t *Transaction) From(ctx context.Context, args BlockNumberArgs) (*Account, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return nil, err
	}
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	signer := types.LatestSigner(t.backend.ChainConfig())
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	from, _ := types.Sender(signer, tx)
	return &Account{
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		backend:       t.backend,
		address:       from,
		blockNrOrHash: args.NumberOrLatest(),
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	}, nil
}

func (t *Transaction) Block(ctx context.Context) (*Block, error) {
	if _, err := t.resolve(ctx); err != nil {
		return nil, err
	}
	return t.block, nil
}

func (t *Transaction) Index(ctx context.Context) (*int32, error) {
	if _, err := t.resolve(ctx); err != nil {
		return nil, err
	}
	if t.block == nil {
		return nil, nil
	}
	index := int32(t.index)
	return &index, nil
}

// getReceipt returns the receipt associated with this transaction, if any.
func (t *Transaction) getReceipt(ctx context.Context) (*types.Receipt, error) {
	if _, err := t.resolve(ctx); err != nil {
		return nil, err
	}
	if t.block == nil {
		return nil, nil
	}
	receipts, err := t.block.resolveReceipts(ctx)
	if err != nil {
		return nil, err
	}
	return receipts[t.index], nil
}

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func (t *Transaction) Status(ctx context.Context) (*Long, error) {
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	receipt, err := t.getReceipt(ctx)
	if err != nil || receipt == nil {
		return nil, err
	}
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	ret := Long(receipt.Status)
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	return &ret, nil
}

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func (t *Transaction) GasUsed(ctx context.Context) (*Long, error) {
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	receipt, err := t.getReceipt(ctx)
	if err != nil || receipt == nil {
		return nil, err
	}
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	ret := Long(receipt.GasUsed)
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	return &ret, nil
}

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func (t *Transaction) CumulativeGasUsed(ctx context.Context) (*Long, error) {
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	receipt, err := t.getReceipt(ctx)
	if err != nil || receipt == nil {
		return nil, err
	}
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	ret := Long(receipt.CumulativeGasUsed)
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	return &ret, nil
}

func (t *Transaction) CreatedContract(ctx context.Context, args BlockNumberArgs) (*Account, error) {
	receipt, err := t.getReceipt(ctx)
	if err != nil || receipt == nil || receipt.ContractAddress == (common.Address{}) {
		return nil, err
	}
	return &Account{
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		backend:       t.backend,
		address:       receipt.ContractAddress,
		blockNrOrHash: args.NumberOrLatest(),
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	}, nil
}

func (t *Transaction) Logs(ctx context.Context) (*[]*Log, error) {
	receipt, err := t.getReceipt(ctx)
	if err != nil || receipt == nil {
		return nil, err
	}
	ret := make([]*Log, 0, len(receipt.Logs))
	for _, log := range receipt.Logs {
		ret = append(ret, &Log{
			backend:     t.backend,
			transaction: t,
			log:         log,
		})
	}
	return &ret, nil
}

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func (t *Transaction) Type(ctx context.Context) (*int32, error) {
	tx, err := t.resolve(ctx)
	if err != nil {
		return nil, err
	}
	txType := int32(tx.Type())
	return &txType, nil
}

func (t *Transaction) AccessList(ctx context.Context) (*[]*AccessTuple, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return nil, err
	}
	accessList := tx.AccessList()
	ret := make([]*AccessTuple, 0, len(accessList))
	for _, al := range accessList {
		ret = append(ret, &AccessTuple{
			address:     al.Address,
			storageKeys: &al.StorageKeys,
		})
	}
	return &ret, nil
}

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func (t *Transaction) R(ctx context.Context) (hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return hexutil.Big{}, err
	}
	_, r, _ := tx.RawSignatureValues()
	return hexutil.Big(*r), nil
}

func (t *Transaction) S(ctx context.Context) (hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return hexutil.Big{}, err
	}
	_, _, s := tx.RawSignatureValues()
	return hexutil.Big(*s), nil
}

func (t *Transaction) V(ctx context.Context) (hexutil.Big, error) {
	tx, err := t.resolve(ctx)
	if err != nil || tx == nil {
		return hexutil.Big{}, err
	}
	v, _, _ := tx.RawSignatureValues()
	return hexutil.Big(*v), nil
}

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type BlockType int

// Block represents an Ethereum block.
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// backend, and numberOrHash are mandatory. All other fields are lazily fetched
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// when required.
type Block struct {
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	backend      ethapi.Backend
	numberOrHash *rpc.BlockNumberOrHash
	hash         common.Hash
	header       *types.Header
	block        *types.Block
	receipts     []*types.Receipt
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}

// resolve returns the internal Block object representing this block, fetching
// it if necessary.
func (b *Block) resolve(ctx context.Context) (*types.Block, error) {
	if b.block != nil {
		return b.block, nil
	}
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	if b.numberOrHash == nil {
		latest := rpc.BlockNumberOrHashWithNumber(rpc.LatestBlockNumber)
		b.numberOrHash = &latest
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	}
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	var err error
	b.block, err = b.backend.BlockByNumberOrHash(ctx, *b.numberOrHash)
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	if b.block != nil && b.header == nil {
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		b.header = b.block.Header()
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		if hash, ok := b.numberOrHash.Hash(); ok {
			b.hash = hash
		}
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	}
	return b.block, err
}

// resolveHeader returns the internal Header object for this block, fetching it
// if necessary. Call this function instead of `resolve` unless you need the
// additional data (transactions and uncles).
func (b *Block) resolveHeader(ctx context.Context) (*types.Header, error) {
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	if b.numberOrHash == nil && b.hash == (common.Hash{}) {
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		return nil, errBlockInvariant
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	}
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	var err error
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	if b.header == nil {
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		if b.hash != (common.Hash{}) {
			b.header, err = b.backend.HeaderByHash(ctx, b.hash)
		} else {
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			b.header, err = b.backend.HeaderByNumberOrHash(ctx, *b.numberOrHash)
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		}
	}
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	return b.header, err
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}

// resolveReceipts returns the list of receipts for this block, fetching them
// if necessary.
func (b *Block) resolveReceipts(ctx context.Context) ([]*types.Receipt, error) {
	if b.receipts == nil {
		hash := b.hash
		if hash == (common.Hash{}) {
			header, err := b.resolveHeader(ctx)
			if err != nil {
				return nil, err
			}
			hash = header.Hash()
		}
		receipts, err := b.backend.GetReceipts(ctx, hash)
		if err != nil {
			return nil, err
		}
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		b.receipts = receipts
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	}
	return b.receipts, nil
}

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func (b *Block) Number(ctx context.Context) (Long, error) {
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	header, err := b.resolveHeader(ctx)
	if err != nil {
		return 0, err
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	}
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	return Long(header.Number.Uint64()), nil
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}

func (b *Block) Hash(ctx context.Context) (common.Hash, error) {
	if b.hash == (common.Hash{}) {
		header, err := b.resolveHeader(ctx)
		if err != nil {
			return common.Hash{}, err
		}
		b.hash = header.Hash()
	}
	return b.hash, nil
}

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func (b *Block) GasLimit(ctx context.Context) (Long, error) {
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	header, err := b.resolveHeader(ctx)
	if err != nil {
		return 0, err
	}
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	return Long(header.GasLimit), nil
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}

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func (b *Block) GasUsed(ctx context.Context) (Long, error) {
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	header, err := b.resolveHeader(ctx)
	if err != nil {
		return 0, err
	}
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	return Long(header.GasUsed), nil
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}

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func (b *Block) BaseFeePerGas(ctx context.Context) (*hexutil.Big, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return nil, err
	}
	if header.BaseFee == nil {
		return nil, nil
	}
	return (*hexutil.Big)(header.BaseFee), nil
}

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func (b *Block) Parent(ctx context.Context) (*Block, error) {
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	// If the block header hasn't been fetched, and we'll need it, fetch it.
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	if b.numberOrHash == nil && b.header == nil {
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		if _, err := b.resolveHeader(ctx); err != nil {
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			return nil, err
		}
	}
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	if b.header != nil && b.header.Number.Uint64() > 0 {
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		num := rpc.BlockNumberOrHashWithNumber(rpc.BlockNumber(b.header.Number.Uint64() - 1))
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		return &Block{
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			backend:      b.backend,
			numberOrHash: &num,
			hash:         b.header.ParentHash,
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		}, nil
	}
	return nil, nil
}

func (b *Block) Difficulty(ctx context.Context) (hexutil.Big, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return hexutil.Big{}, err
	}
	return hexutil.Big(*header.Difficulty), nil
}

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func (b *Block) Timestamp(ctx context.Context) (hexutil.Uint64, error) {
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	header, err := b.resolveHeader(ctx)
	if err != nil {
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		return 0, err
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	}
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	return hexutil.Uint64(header.Time), nil
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}

func (b *Block) Nonce(ctx context.Context) (hexutil.Bytes, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return hexutil.Bytes{}, err
	}
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	return header.Nonce[:], nil
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}

func (b *Block) MixHash(ctx context.Context) (common.Hash, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return common.Hash{}, err
	}
	return header.MixDigest, nil
}

func (b *Block) TransactionsRoot(ctx context.Context) (common.Hash, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return common.Hash{}, err
	}
	return header.TxHash, nil
}

func (b *Block) StateRoot(ctx context.Context) (common.Hash, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return common.Hash{}, err
	}
	return header.Root, nil
}

func (b *Block) ReceiptsRoot(ctx context.Context) (common.Hash, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return common.Hash{}, err
	}
	return header.ReceiptHash, nil
}

func (b *Block) OmmerHash(ctx context.Context) (common.Hash, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return common.Hash{}, err
	}
	return header.UncleHash, nil
}

func (b *Block) OmmerCount(ctx context.Context) (*int32, error) {
	block, err := b.resolve(ctx)
	if err != nil || block == nil {
		return nil, err
	}
	count := int32(len(block.Uncles()))
	return &count, err
}

func (b *Block) Ommers(ctx context.Context) (*[]*Block, error) {
	block, err := b.resolve(ctx)
	if err != nil || block == nil {
		return nil, err
	}
	ret := make([]*Block, 0, len(block.Uncles()))
	for _, uncle := range block.Uncles() {
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		blockNumberOrHash := rpc.BlockNumberOrHashWithHash(uncle.Hash(), false)
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		ret = append(ret, &Block{
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			backend:      b.backend,
			numberOrHash: &blockNumberOrHash,
			header:       uncle,
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		})
	}
	return &ret, nil
}

func (b *Block) ExtraData(ctx context.Context) (hexutil.Bytes, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return hexutil.Bytes{}, err
	}
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	return header.Extra, nil
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}

func (b *Block) LogsBloom(ctx context.Context) (hexutil.Bytes, error) {
	header, err := b.resolveHeader(ctx)
	if err != nil {
		return hexutil.Bytes{}, err
	}
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	return header.Bloom.Bytes(), nil
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}

func (b *Block) TotalDifficulty(ctx context.Context) (hexutil.Big, error) {
	h := b.hash
	if h == (common.Hash{}) {
		header, err := b.resolveHeader(ctx)
		if err != nil {
			return hexutil.Big{}, err
		}
		h = header.Hash()
	}
709
	return hexutil.Big(*b.backend.GetTd(ctx, h)), nil
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}

// BlockNumberArgs encapsulates arguments to accessors that specify a block number.
type BlockNumberArgs struct {
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	// TODO: Ideally we could use input unions to allow the query to specify the
	// block parameter by hash, block number, or tag but input unions aren't part of the
	// standard GraphQL schema SDL yet, see: https://github.com/graphql/graphql-spec/issues/488
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	Block *hexutil.Uint64
}

720
// NumberOr returns the provided block number argument, or the "current" block number or hash if none
721
// was provided.
722
func (a BlockNumberArgs) NumberOr(current rpc.BlockNumberOrHash) rpc.BlockNumberOrHash {
723
	if a.Block != nil {
724 725
		blockNr := rpc.BlockNumber(*a.Block)
		return rpc.BlockNumberOrHashWithNumber(blockNr)
726
	}
727 728 729 730 731 732 733
	return current
}

// NumberOrLatest returns the provided block number argument, or the "latest" block number if none
// was provided.
func (a BlockNumberArgs) NumberOrLatest() rpc.BlockNumberOrHash {
	return a.NumberOr(rpc.BlockNumberOrHashWithNumber(rpc.LatestBlockNumber))
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}

func (b *Block) Miner(ctx context.Context, args BlockNumberArgs) (*Account, error) {
737
	header, err := b.resolveHeader(ctx)
738 739 740 741
	if err != nil {
		return nil, err
	}
	return &Account{
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		backend:       b.backend,
		address:       header.Coinbase,
		blockNrOrHash: args.NumberOrLatest(),
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	}, nil
}

func (b *Block) TransactionCount(ctx context.Context) (*int32, error) {
	block, err := b.resolve(ctx)
	if err != nil || block == nil {
		return nil, err
	}
	count := int32(len(block.Transactions()))
	return &count, err
}

func (b *Block) Transactions(ctx context.Context) (*[]*Transaction, error) {
	block, err := b.resolve(ctx)
	if err != nil || block == nil {
		return nil, err
	}
	ret := make([]*Transaction, 0, len(block.Transactions()))
	for i, tx := range block.Transactions() {
		ret = append(ret, &Transaction{
			backend: b.backend,
			hash:    tx.Hash(),
			tx:      tx,
			block:   b,
			index:   uint64(i),
		})
	}
	return &ret, nil
}

func (b *Block) TransactionAt(ctx context.Context, args struct{ Index int32 }) (*Transaction, error) {
	block, err := b.resolve(ctx)
	if err != nil || block == nil {
		return nil, err
	}
780 781
	txs := block.Transactions()
	if args.Index < 0 || int(args.Index) >= len(txs) {
782 783
		return nil, nil
	}
784
	tx := txs[args.Index]
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	return &Transaction{
		backend: b.backend,
		hash:    tx.Hash(),
		tx:      tx,
		block:   b,
		index:   uint64(args.Index),
	}, nil
}

func (b *Block) OmmerAt(ctx context.Context, args struct{ Index int32 }) (*Block, error) {
	block, err := b.resolve(ctx)
	if err != nil || block == nil {
		return nil, err
	}
	uncles := block.Uncles()
	if args.Index < 0 || int(args.Index) >= len(uncles) {
		return nil, nil
	}
	uncle := uncles[args.Index]
804
	blockNumberOrHash := rpc.BlockNumberOrHashWithHash(uncle.Hash(), false)
805
	return &Block{
806 807 808
		backend:      b.backend,
		numberOrHash: &blockNumberOrHash,
		header:       uncle,
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	}, nil
}

// BlockFilterCriteria encapsulates criteria passed to a `logs` accessor inside
// a block.
type BlockFilterCriteria struct {
	Addresses *[]common.Address // restricts matches to events created by specific contracts

	// The Topic list restricts matches to particular event topics. Each event has a list
	// of topics. Topics matches a prefix of that list. An empty element slice matches any
	// topic. Non-empty elements represent an alternative that matches any of the
	// contained topics.
	//
	// Examples:
	// {} or nil          matches any topic list
	// {{A}}              matches topic A in first position
	// {{}, {B}}          matches any topic in first position, B in second position
	// {{A}, {B}}         matches topic A in first position, B in second position
	// {{A, B}}, {C, D}}  matches topic (A OR B) in first position, (C OR D) in second position
	Topics *[][]common.Hash
}

// runFilter accepts a filter and executes it, returning all its results as
// `Log` objects.
833
func runFilter(ctx context.Context, be ethapi.Backend, filter *filters.Filter) ([]*Log, error) {
834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859
	logs, err := filter.Logs(ctx)
	if err != nil || logs == nil {
		return nil, err
	}
	ret := make([]*Log, 0, len(logs))
	for _, log := range logs {
		ret = append(ret, &Log{
			backend:     be,
			transaction: &Transaction{backend: be, hash: log.TxHash},
			log:         log,
		})
	}
	return ret, nil
}

func (b *Block) Logs(ctx context.Context, args struct{ Filter BlockFilterCriteria }) ([]*Log, error) {
	var addresses []common.Address
	if args.Filter.Addresses != nil {
		addresses = *args.Filter.Addresses
	}
	var topics [][]common.Hash
	if args.Filter.Topics != nil {
		topics = *args.Filter.Topics
	}
	hash := b.hash
	if hash == (common.Hash{}) {
860
		header, err := b.resolveHeader(ctx)
861 862 863
		if err != nil {
			return nil, err
		}
864
		hash = header.Hash()
865 866 867 868 869 870 871 872
	}
	// Construct the range filter
	filter := filters.NewBlockFilter(b.backend, hash, addresses, topics)

	// Run the filter and return all the logs
	return runFilter(ctx, b.backend, filter)
}

873 874 875
func (b *Block) Account(ctx context.Context, args struct {
	Address common.Address
}) (*Account, error) {
876
	if b.numberOrHash == nil {
877 878 879 880 881 882
		_, err := b.resolveHeader(ctx)
		if err != nil {
			return nil, err
		}
	}
	return &Account{
883 884 885
		backend:       b.backend,
		address:       args.Address,
		blockNrOrHash: *b.numberOrHash,
886 887 888 889 890 891
	}, nil
}

// CallData encapsulates arguments to `call` or `estimateGas`.
// All arguments are optional.
type CallData struct {
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	From                 *common.Address // The Ethereum address the call is from.
	To                   *common.Address // The Ethereum address the call is to.
	Gas                  *hexutil.Uint64 // The amount of gas provided for the call.
	GasPrice             *hexutil.Big    // The price of each unit of gas, in wei.
	MaxFeePerGas         *hexutil.Big    // The max price of each unit of gas, in wei (1559).
	MaxPriorityFeePerGas *hexutil.Big    // The max tip of each unit of gas, in wei (1559).
	Value                *hexutil.Big    // The value sent along with the call.
	Data                 *hexutil.Bytes  // Any data sent with the call.
900 901 902 903
}

// CallResult encapsulates the result of an invocation of the `call` accessor.
type CallResult struct {
904 905 906
	data    hexutil.Bytes // The return data from the call
	gasUsed Long          // The amount of gas used
	status  Long          // The return status of the call - 0 for failure or 1 for success.
907 908 909 910 911 912
}

func (c *CallResult) Data() hexutil.Bytes {
	return c.data
}

913
func (c *CallResult) GasUsed() Long {
914 915 916
	return c.gasUsed
}

917
func (c *CallResult) Status() Long {
918 919 920 921
	return c.status
}

func (b *Block) Call(ctx context.Context, args struct {
922
	Data ethapi.TransactionArgs
923
}) (*CallResult, error) {
924 925
	if b.numberOrHash == nil {
		_, err := b.resolve(ctx)
926 927 928 929
		if err != nil {
			return nil, err
		}
	}
930
	result, err := ethapi.DoCall(ctx, b.backend, args.Data, *b.numberOrHash, nil, 5*time.Second, b.backend.RPCGasCap())
931 932 933
	if err != nil {
		return nil, err
	}
934
	status := Long(1)
935
	if result.Failed() {
936 937
		status = 0
	}
938

939
	return &CallResult{
940
		data:    result.ReturnData,
941
		gasUsed: Long(result.UsedGas),
942
		status:  status,
943
	}, nil
944 945 946
}

func (b *Block) EstimateGas(ctx context.Context, args struct {
947
	Data ethapi.TransactionArgs
948
}) (Long, error) {
949
	if b.numberOrHash == nil {
950 951
		_, err := b.resolveHeader(ctx)
		if err != nil {
952
			return 0, err
953 954
		}
	}
955
	gas, err := ethapi.DoEstimateGas(ctx, b.backend, args.Data, *b.numberOrHash, b.backend.RPCGasCap())
956
	return Long(gas), err
957 958 959
}

type Pending struct {
960
	backend ethapi.Backend
961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987
}

func (p *Pending) TransactionCount(ctx context.Context) (int32, error) {
	txs, err := p.backend.GetPoolTransactions()
	return int32(len(txs)), err
}

func (p *Pending) Transactions(ctx context.Context) (*[]*Transaction, error) {
	txs, err := p.backend.GetPoolTransactions()
	if err != nil {
		return nil, err
	}
	ret := make([]*Transaction, 0, len(txs))
	for i, tx := range txs {
		ret = append(ret, &Transaction{
			backend: p.backend,
			hash:    tx.Hash(),
			tx:      tx,
			index:   uint64(i),
		})
	}
	return &ret, nil
}

func (p *Pending) Account(ctx context.Context, args struct {
	Address common.Address
}) *Account {
988
	pendingBlockNr := rpc.BlockNumberOrHashWithNumber(rpc.PendingBlockNumber)
989
	return &Account{
990 991 992
		backend:       p.backend,
		address:       args.Address,
		blockNrOrHash: pendingBlockNr,
993 994 995 996
	}
}

func (p *Pending) Call(ctx context.Context, args struct {
997
	Data ethapi.TransactionArgs
998
}) (*CallResult, error) {
999
	pendingBlockNr := rpc.BlockNumberOrHashWithNumber(rpc.PendingBlockNumber)
1000
	result, err := ethapi.DoCall(ctx, p.backend, args.Data, pendingBlockNr, nil, 5*time.Second, p.backend.RPCGasCap())
1001 1002 1003
	if err != nil {
		return nil, err
	}
1004
	status := Long(1)
1005
	if result.Failed() {
1006 1007
		status = 0
	}
1008

1009
	return &CallResult{
1010
		data:    result.ReturnData,
1011
		gasUsed: Long(result.UsedGas),
1012
		status:  status,
1013
	}, nil
1014 1015 1016
}

func (p *Pending) EstimateGas(ctx context.Context, args struct {
1017
	Data ethapi.TransactionArgs
1018
}) (Long, error) {
1019
	pendingBlockNr := rpc.BlockNumberOrHashWithNumber(rpc.PendingBlockNumber)
1020 1021
	gas, err := ethapi.DoEstimateGas(ctx, p.backend, args.Data, pendingBlockNr, p.backend.RPCGasCap())
	return Long(gas), err
1022 1023
}

1024 1025
// Resolver is the top-level object in the GraphQL hierarchy.
type Resolver struct {
1026
	backend ethapi.Backend
1027 1028 1029
}

func (r *Resolver) Block(ctx context.Context, args struct {
1030
	Number *Long
1031 1032 1033 1034
	Hash   *common.Hash
}) (*Block, error) {
	var block *Block
	if args.Number != nil {
1035 1036 1037
		if *args.Number < 0 {
			return nil, nil
		}
1038
		number := rpc.BlockNumber(*args.Number)
1039
		numberOrHash := rpc.BlockNumberOrHashWithNumber(number)
1040
		block = &Block{
1041 1042
			backend:      r.backend,
			numberOrHash: &numberOrHash,
1043 1044
		}
	} else if args.Hash != nil {
1045
		numberOrHash := rpc.BlockNumberOrHashWithHash(*args.Hash, false)
1046
		block = &Block{
1047 1048
			backend:      r.backend,
			numberOrHash: &numberOrHash,
1049 1050
		}
	} else {
1051
		numberOrHash := rpc.BlockNumberOrHashWithNumber(rpc.LatestBlockNumber)
1052
		block = &Block{
1053 1054
			backend:      r.backend,
			numberOrHash: &numberOrHash,
1055 1056
		}
	}
1057 1058 1059 1060
	// Resolve the header, return nil if it doesn't exist.
	// Note we don't resolve block directly here since it will require an
	// additional network request for light client.
	h, err := block.resolveHeader(ctx)
1061 1062
	if err != nil {
		return nil, err
1063
	} else if h == nil {
1064 1065 1066 1067 1068 1069
		return nil, nil
	}
	return block, nil
}

func (r *Resolver) Blocks(ctx context.Context, args struct {
1070 1071
	From *Long
	To   *Long
1072
}) ([]*Block, error) {
1073
	from := rpc.BlockNumber(*args.From)
1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085

	var to rpc.BlockNumber
	if args.To != nil {
		to = rpc.BlockNumber(*args.To)
	} else {
		to = rpc.BlockNumber(r.backend.CurrentBlock().Number().Int64())
	}
	if to < from {
		return []*Block{}, nil
	}
	ret := make([]*Block, 0, to-from+1)
	for i := from; i <= to; i++ {
1086
		numberOrHash := rpc.BlockNumberOrHashWithNumber(i)
1087
		ret = append(ret, &Block{
1088 1089
			backend:      r.backend,
			numberOrHash: &numberOrHash,
1090 1091 1092 1093 1094
		})
	}
	return ret, nil
}

1095 1096
func (r *Resolver) Pending(ctx context.Context) *Pending {
	return &Pending{r.backend}
1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115
}

func (r *Resolver) Transaction(ctx context.Context, args struct{ Hash common.Hash }) (*Transaction, error) {
	tx := &Transaction{
		backend: r.backend,
		hash:    args.Hash,
	}
	// Resolve the transaction; if it doesn't exist, return nil.
	t, err := tx.resolve(ctx)
	if err != nil {
		return nil, err
	} else if t == nil {
		return nil, nil
	}
	return tx, nil
}

func (r *Resolver) SendRawTransaction(ctx context.Context, args struct{ Data hexutil.Bytes }) (common.Hash, error) {
	tx := new(types.Transaction)
1116
	if err := tx.UnmarshalBinary(args.Data); err != nil {
1117 1118 1119 1120 1121 1122
		return common.Hash{}, err
	}
	hash, err := ethapi.SubmitTransaction(ctx, r.backend, tx)
	return hash, err
}

1123
// FilterCriteria encapsulates the arguments to `logs` on the root resolver object.
1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166
type FilterCriteria struct {
	FromBlock *hexutil.Uint64   // beginning of the queried range, nil means genesis block
	ToBlock   *hexutil.Uint64   // end of the range, nil means latest block
	Addresses *[]common.Address // restricts matches to events created by specific contracts

	// The Topic list restricts matches to particular event topics. Each event has a list
	// of topics. Topics matches a prefix of that list. An empty element slice matches any
	// topic. Non-empty elements represent an alternative that matches any of the
	// contained topics.
	//
	// Examples:
	// {} or nil          matches any topic list
	// {{A}}              matches topic A in first position
	// {{}, {B}}          matches any topic in first position, B in second position
	// {{A}, {B}}         matches topic A in first position, B in second position
	// {{A, B}}, {C, D}}  matches topic (A OR B) in first position, (C OR D) in second position
	Topics *[][]common.Hash
}

func (r *Resolver) Logs(ctx context.Context, args struct{ Filter FilterCriteria }) ([]*Log, error) {
	// Convert the RPC block numbers into internal representations
	begin := rpc.LatestBlockNumber.Int64()
	if args.Filter.FromBlock != nil {
		begin = int64(*args.Filter.FromBlock)
	}
	end := rpc.LatestBlockNumber.Int64()
	if args.Filter.ToBlock != nil {
		end = int64(*args.Filter.ToBlock)
	}
	var addresses []common.Address
	if args.Filter.Addresses != nil {
		addresses = *args.Filter.Addresses
	}
	var topics [][]common.Hash
	if args.Filter.Topics != nil {
		topics = *args.Filter.Topics
	}
	// Construct the range filter
	filter := filters.NewRangeFilter(filters.Backend(r.backend), begin, end, addresses, topics)
	return runFilter(ctx, r.backend, filter)
}

func (r *Resolver) GasPrice(ctx context.Context) (hexutil.Big, error) {
1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182
	tipcap, err := r.backend.SuggestGasTipCap(ctx)
	if err != nil {
		return hexutil.Big{}, err
	}
	if head := r.backend.CurrentHeader(); head.BaseFee != nil {
		tipcap.Add(tipcap, head.BaseFee)
	}
	return (hexutil.Big)(*tipcap), nil
}

func (r *Resolver) MaxPriorityFeePerGas(ctx context.Context) (hexutil.Big, error) {
	tipcap, err := r.backend.SuggestGasTipCap(ctx)
	if err != nil {
		return hexutil.Big{}, err
	}
	return (hexutil.Big)(*tipcap), nil
1183 1184
}

1185 1186 1187 1188
func (r *Resolver) ChainID(ctx context.Context) (hexutil.Big, error) {
	return hexutil.Big(*r.backend.ChainConfig().ChainID), nil
}

1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232
// SyncState represents the synchronisation status returned from the `syncing` accessor.
type SyncState struct {
	progress ethereum.SyncProgress
}

func (s *SyncState) StartingBlock() hexutil.Uint64 {
	return hexutil.Uint64(s.progress.StartingBlock)
}

func (s *SyncState) CurrentBlock() hexutil.Uint64 {
	return hexutil.Uint64(s.progress.CurrentBlock)
}

func (s *SyncState) HighestBlock() hexutil.Uint64 {
	return hexutil.Uint64(s.progress.HighestBlock)
}

func (s *SyncState) PulledStates() *hexutil.Uint64 {
	ret := hexutil.Uint64(s.progress.PulledStates)
	return &ret
}

func (s *SyncState) KnownStates() *hexutil.Uint64 {
	ret := hexutil.Uint64(s.progress.KnownStates)
	return &ret
}

// Syncing returns false in case the node is currently not syncing with the network. It can be up to date or has not
// yet received the latest block headers from its pears. In case it is synchronizing:
// - startingBlock: block number this node started to synchronise from
// - currentBlock:  block number this node is currently importing
// - highestBlock:  block number of the highest block header this node has received from peers
// - pulledStates:  number of state entries processed until now
// - knownStates:   number of known state entries that still need to be pulled
func (r *Resolver) Syncing() (*SyncState, error) {
	progress := r.backend.Downloader().Progress()

	// Return not syncing if the synchronisation already completed
	if progress.CurrentBlock >= progress.HighestBlock {
		return nil, nil
	}
	// Otherwise gather the block sync stats
	return &SyncState{progress}, nil
}