forked from cerc-io/plugeth
615 lines
17 KiB
Go
615 lines
17 KiB
Go
package wrappers
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import (
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"context"
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"encoding/json"
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"fmt"
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"math/big"
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"reflect"
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"sync"
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"time"
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"github.com/ethereum/go-ethereum"
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"github.com/ethereum/go-ethereum/common"
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gcore "github.com/ethereum/go-ethereum/core"
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"github.com/ethereum/go-ethereum/core/state"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/core/vm"
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"github.com/ethereum/go-ethereum/eth/downloader"
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"github.com/ethereum/go-ethereum/event"
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"github.com/ethereum/go-ethereum/log"
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"github.com/ethereum/go-ethereum/node"
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"github.com/ethereum/go-ethereum/plugins/interfaces"
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"github.com/ethereum/go-ethereum/rlp"
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"github.com/ethereum/go-ethereum/rpc"
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"github.com/openrelayxyz/plugeth-utils/core"
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"github.com/openrelayxyz/plugeth-utils/restricted"
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"github.com/openrelayxyz/plugeth-utils/restricted/params"
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)
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type WrappedScopeContext struct {
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s *vm.ScopeContext
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}
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func NewWrappedScopeContext(s *vm.ScopeContext) *WrappedScopeContext {
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return &WrappedScopeContext{s}
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}
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func (w *WrappedScopeContext) Memory() core.Memory {
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return w.s.Memory
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}
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func (w *WrappedScopeContext) Stack() core.Stack {
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return w.s.Stack
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}
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func (w *WrappedScopeContext) Contract() core.Contract {
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return &WrappedContract{w.s.Contract}
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}
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type WrappedContract struct {
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c *vm.Contract
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}
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func (w *WrappedContract) AsDelegate() core.Contract {
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return &WrappedContract{w.c.AsDelegate()}
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}
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func (w *WrappedContract) GetOp(n uint64) core.OpCode {
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return core.OpCode(w.c.GetOp(n))
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}
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func (w *WrappedContract) GetByte(n uint64) byte {
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return w.c.GetByte(n)
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}
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func (w *WrappedContract) Caller() core.Address {
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return core.Address(w.c.Caller())
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}
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func (w *WrappedContract) Address() core.Address {
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return core.Address(w.c.Address())
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}
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func (w *WrappedContract) Value() *big.Int {
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return w.c.Value()
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}
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// added UseGas bc compiler compained without it. Should investigate if the false return with effect performance.
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// take this out of core.interface
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func (w *WrappedContract) UseGas(gas uint64) (ok bool) {
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return false
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}
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type WrappedTracer struct {
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r core.TracerResult
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}
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func NewWrappedTracer(r core.TracerResult) *WrappedTracer {
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return &WrappedTracer{r}
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}
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func (w WrappedTracer) CaptureStart(env *vm.EVM, from common.Address, to common.Address, create bool, input []byte, gas uint64, value *big.Int) {
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w.r.CaptureStart(core.Address(from), core.Address(to), create, input, gas, value)
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}
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func (w WrappedTracer) CaptureState(env *vm.EVM, pc uint64, op vm.OpCode, gas, cost uint64, scope *vm.ScopeContext, rData []byte, depth int, err error) {
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w.r.CaptureState(pc, core.OpCode(op), gas, cost, &WrappedScopeContext{scope}, rData, depth, err)
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}
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func (w WrappedTracer) CaptureFault(env *vm.EVM, pc uint64, op vm.OpCode, gas, cost uint64, scope *vm.ScopeContext, depth int, err error) {
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w.r.CaptureFault(pc, core.OpCode(op), gas, cost, &WrappedScopeContext{scope}, depth, err)
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}
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func (w WrappedTracer) CaptureEnd(output []byte, gasUsed uint64, t time.Duration, err error) {
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w.r.CaptureEnd(output, gasUsed, t, err)
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}
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func (w WrappedTracer) CaptureEnter(typ vm.OpCode, from common.Address, to common.Address, input []byte, gas uint64, value *big.Int) {
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w.r.CaptureEnter(core.OpCode(typ), core.Address(from), core.Address(to), input, gas, value)
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}
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func (w WrappedTracer) CaptureExit(output []byte, gasUsed uint64, err error) {
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w.r.CaptureExit(output, gasUsed, err)
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}
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func (w WrappedTracer) GetResult() (interface{}, error) {
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return w.r.Result()
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}
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type WrappedStateDB struct {
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s *state.StateDB
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}
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func NewWrappedStateDB(d *state.StateDB) *WrappedStateDB {
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return &WrappedStateDB{d}
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}
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// GetBalance(Address) *big.Int
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func (w *WrappedStateDB) GetBalance(addr core.Address) *big.Int {
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return w.s.GetBalance(common.Address(addr))
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}
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// GetNonce(Address) uint64
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func (w *WrappedStateDB) GetNonce(addr core.Address) uint64 {
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return w.s.GetNonce(common.Address(addr))
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}
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// GetCodeHash(Address) Hash
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func (w *WrappedStateDB) GetCodeHash(addr core.Address) core.Hash {
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return core.Hash(w.s.GetCodeHash(common.Address(addr)))
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} // sort this out
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// GetCode(Address) []byte
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func (w *WrappedStateDB) GetCode(addr core.Address) []byte {
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return w.s.GetCode(common.Address(addr))
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}
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// GetCodeSize(Address) int
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func (w *WrappedStateDB) GetCodeSize(addr core.Address) int {
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return w.s.GetCodeSize(common.Address(addr))
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}
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//GetRefund() uint64
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func (w *WrappedStateDB) GetRefund() uint64 { //are we sure we want to include this? getting a refund seems like changing state
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return w.s.GetRefund()
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}
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// GetCommittedState(Address, Hash) Hash
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func (w *WrappedStateDB) GetCommittedState(addr core.Address, hsh core.Hash) core.Hash {
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return core.Hash(w.s.GetCommittedState(common.Address(addr), common.Hash(hsh)))
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}
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// GetState(Address, Hash) Hash
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func (w *WrappedStateDB) GetState(addr core.Address, hsh core.Hash) core.Hash {
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return core.Hash(w.s.GetState(common.Address(addr), common.Hash(hsh)))
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}
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// HasSuicided(Address) bool
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func (w *WrappedStateDB) HasSuicided(addr core.Address) bool { // I figured we'd skip some of the future labor and update the name now
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return w.s.HasSuicided(common.Address(addr))
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}
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// // Exist reports whether the given account exists in state.
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// // Notably this should also return true for suicided accounts.
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// Exist(Address) bool
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func (w *WrappedStateDB) Exist(addr core.Address) bool {
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return w.s.Exist(common.Address(addr))
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}
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// // Empty returns whether the given account is empty. Empty
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// // is defined according to EIP161 (balance = nonce = code = 0).
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// Empty(Address) bool
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func (w *WrappedStateDB) Empty(addr core.Address) bool {
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return w.s.Empty(common.Address(addr))
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}
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// AddressInAccessList(addr Address) bool
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func (w *WrappedStateDB) AddressInAccessList(addr core.Address) bool {
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return w.s.AddressInAccessList(common.Address(addr))
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}
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// SlotInAccessList(addr Address, slot Hash) (addressOk bool, slotOk bool)
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func (w *WrappedStateDB) SlotInAccessList(addr core.Address, slot core.Hash) (addressOK, slotOk bool) {
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return w.s.SlotInAccessList(common.Address(addr), common.Hash(slot))
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}
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type Node struct {
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n *node.Node
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}
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func NewNode(n *node.Node) *Node {
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return &Node{n}
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}
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func (n *Node) Server() core.Server {
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return n.n.Server()
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}
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func (n *Node) DataDir() string {
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return n.n.DataDir()
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}
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func (n *Node) InstanceDir() string {
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return n.n.InstanceDir()
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}
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func (n *Node) IPCEndpoint() string {
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return n.n.IPCEndpoint()
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}
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func (n *Node) HTTPEndpoint() string {
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return n.n.HTTPEndpoint()
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}
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func (n *Node) WSEndpoint() string {
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return n.n.WSEndpoint()
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}
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func (n *Node) ResolvePath(x string) string {
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return n.n.ResolvePath(x)
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}
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func (n *Node) Attach() (core.Client, error) {
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return n.n.Attach()
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}
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type Backend struct {
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b interfaces.Backend
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newTxsFeed event.Feed
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newTxsOnce sync.Once
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chainFeed event.Feed
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chainOnce sync.Once
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chainHeadFeed event.Feed
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chainHeadOnce sync.Once
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chainSideFeed event.Feed
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chainSideOnce sync.Once
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logsFeed event.Feed
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logsOnce sync.Once
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pendingLogsFeed event.Feed
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pendingLogsOnce sync.Once
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removedLogsFeed event.Feed
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removedLogsOnce sync.Once
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chainConfig *params.ChainConfig
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}
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func NewBackend(b interfaces.Backend) *Backend {
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return &Backend{b: b}
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}
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func (b *Backend) SuggestGasTipCap(ctx context.Context) (*big.Int, error) {
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return b.b.SuggestGasTipCap(ctx)
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}
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func (b *Backend) ChainDb() restricted.Database {
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return &dbWrapper{b.b.ChainDb()}
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}
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func (b *Backend) ExtRPCEnabled() bool {
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return b.b.ExtRPCEnabled()
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}
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func (b *Backend) RPCGasCap() uint64 {
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return b.b.RPCGasCap()
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}
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func (b *Backend) RPCTxFeeCap() float64 {
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return b.b.RPCTxFeeCap()
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}
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func (b *Backend) UnprotectedAllowed() bool {
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return b.b.UnprotectedAllowed()
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}
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func (b *Backend) SetHead(number uint64) {
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b.b.SetHead(number)
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}
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func (b *Backend) HeaderByNumber(ctx context.Context, number int64) ([]byte, error) {
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header, err := b.b.HeaderByNumber(ctx, rpc.BlockNumber(number))
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if err != nil {
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return nil, err
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}
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return rlp.EncodeToBytes(header)
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}
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func (b *Backend) HeaderByHash(ctx context.Context, hash core.Hash) ([]byte, error) {
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header, err := b.b.HeaderByHash(ctx, common.Hash(hash))
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if err != nil {
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return nil, err
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}
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return rlp.EncodeToBytes(header)
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}
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func (b *Backend) CurrentHeader() []byte {
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ret, _ := rlp.EncodeToBytes(b.b.CurrentHeader())
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return ret
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}
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func (b *Backend) CurrentBlock() []byte {
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ret, _ := rlp.EncodeToBytes(b.b.CurrentBlock())
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return ret
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}
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func (b *Backend) BlockByNumber(ctx context.Context, number int64) ([]byte, error) {
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block, err := b.b.BlockByNumber(ctx, rpc.BlockNumber(number))
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if err != nil {
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return nil, err
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}
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return rlp.EncodeToBytes(block)
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}
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func (b *Backend) BlockByHash(ctx context.Context, hash core.Hash) ([]byte, error) {
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block, err := b.b.BlockByHash(ctx, common.Hash(hash))
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if err != nil {
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return nil, err
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}
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return rlp.EncodeToBytes(block)
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}
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func (b *Backend) GetReceipts(ctx context.Context, hash core.Hash) ([]byte, error) {
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receipts, err := b.b.GetReceipts(ctx, common.Hash(hash))
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if err != nil {
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return nil, err
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}
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return json.Marshal(receipts)
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}
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func (b *Backend) GetTd(ctx context.Context, hash core.Hash) *big.Int {
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return b.b.GetTd(ctx, common.Hash(hash))
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}
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func (b *Backend) SendTx(ctx context.Context, signedTx []byte) error {
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tx := new(types.Transaction)
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if err := tx.UnmarshalBinary(signedTx); err != nil {
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return err
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}
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return b.b.SendTx(ctx, tx)
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}
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func (b *Backend) GetTransaction(ctx context.Context, txHash core.Hash) ([]byte, core.Hash, uint64, uint64, error) { // RLP Encoded transaction {
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tx, blockHash, blockNumber, index, err := b.b.GetTransaction(ctx, common.Hash(txHash))
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if err != nil {
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return nil, core.Hash(blockHash), blockNumber, index, err
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}
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enc, err := tx.MarshalBinary()
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return enc, core.Hash(blockHash), blockNumber, index, err
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}
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func (b *Backend) GetPoolTransactions() ([][]byte, error) {
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txs, err := b.b.GetPoolTransactions()
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if err != nil {
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return nil, err
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}
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results := make([][]byte, len(txs))
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for i, tx := range txs {
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results[i], _ = rlp.EncodeToBytes(tx)
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}
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return results, nil
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}
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func (b *Backend) GetPoolTransaction(txHash core.Hash) []byte {
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tx := b.b.GetPoolTransaction(common.Hash(txHash))
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if tx == nil {
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return []byte{}
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}
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enc, _ := rlp.EncodeToBytes(tx)
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return enc
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}
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func (b *Backend) GetPoolNonce(ctx context.Context, addr core.Address) (uint64, error) {
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return b.b.GetPoolNonce(ctx, common.Address(addr))
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}
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func (b *Backend) Stats() (pending int, queued int) {
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return b.b.Stats()
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}
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func (b *Backend) TxPoolContent() (map[core.Address][][]byte, map[core.Address][][]byte) {
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pending, queued := b.b.TxPoolContent()
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trpending, trqueued := make(map[core.Address][][]byte), make(map[core.Address][][]byte)
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for k, v := range pending {
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trpending[core.Address(k)] = make([][]byte, len(v))
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for i, tx := range v {
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trpending[core.Address(k)][i], _ = tx.MarshalBinary()
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}
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}
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for k, v := range queued {
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trqueued[core.Address(k)] = make([][]byte, len(v))
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for i, tx := range v {
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trpending[core.Address(k)][i], _ = tx.MarshalBinary()
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}
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}
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return trpending, trqueued
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} // RLP encoded transactions
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func (b *Backend) BloomStatus() (uint64, uint64) {
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return b.b.BloomStatus()
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}
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func (b *Backend) GetLogs(ctx context.Context, blockHash core.Hash) ([][]byte, error) {
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logs, err := b.b.GetLogs(ctx, common.Hash(blockHash))
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if err != nil {
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return nil, err
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}
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encLogs := make([][]byte, len(logs))
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for i, log := range logs {
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encLogs[i], _ = rlp.EncodeToBytes(log)
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}
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return encLogs, nil
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} // []RLP encoded logs
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type dl struct {
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dl *downloader.Downloader
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}
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type progress struct {
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p ethereum.SyncProgress
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}
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func (p *progress) StartingBlock() uint64 {
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return p.p.StartingBlock
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}
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func (p *progress) CurrentBlock() uint64 {
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return p.p.CurrentBlock
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}
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func (p *progress) HighestBlock() uint64 {
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return p.p.HighestBlock
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}
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func (p *progress) PulledStates() uint64 {
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return p.p.PulledStates
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}
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func (p *progress) KnownStates() uint64 {
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return p.p.KnownStates
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}
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func (d *dl) Progress() core.Progress {
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return &progress{d.dl.Progress()}
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}
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func (b *Backend) Downloader() core.Downloader {
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return &dl{b.b.Downloader()}
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}
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func (b *Backend) SubscribeNewTxsEvent(ch chan<- core.NewTxsEvent) core.Subscription {
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var sub event.Subscription
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b.newTxsOnce.Do(func() {
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bch := make(chan gcore.NewTxsEvent, 100)
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sub = b.b.SubscribeNewTxsEvent(bch)
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go func() {
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for {
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select {
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case item := <-bch:
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txe := core.NewTxsEvent{
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Txs: make([][]byte, len(item.Txs)),
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}
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for i, tx := range item.Txs {
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txe.Txs[i], _ = tx.MarshalBinary()
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}
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b.newTxsFeed.Send(txe)
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case err := <-sub.Err():
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log.Warn("Subscription error for NewTxs", "err", err)
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return
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}
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}
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}()
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})
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return b.newTxsFeed.Subscribe(ch)
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}
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func (b *Backend) SubscribeChainEvent(ch chan<- core.ChainEvent) core.Subscription {
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var sub event.Subscription
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b.chainOnce.Do(func() {
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bch := make(chan gcore.ChainEvent, 100)
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sub = b.b.SubscribeChainEvent(bch)
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go func() {
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for {
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select {
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case item := <-bch:
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ce := core.ChainEvent{
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Hash: core.Hash(item.Hash),
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}
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ce.Block, _ = rlp.EncodeToBytes(item.Block)
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ce.Logs, _ = rlp.EncodeToBytes(item.Logs)
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b.chainFeed.Send(ce)
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case err := <-sub.Err():
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log.Warn("Subscription error for Chain", "err", err)
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return
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}
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}
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}()
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})
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return b.chainFeed.Subscribe(ch)
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}
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func (b *Backend) SubscribeChainHeadEvent(ch chan<- core.ChainHeadEvent) core.Subscription {
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var sub event.Subscription
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b.chainHeadOnce.Do(func() {
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bch := make(chan gcore.ChainHeadEvent, 100)
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sub = b.b.SubscribeChainHeadEvent(bch)
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go func() {
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for {
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select {
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case item := <-bch:
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che := core.ChainHeadEvent{}
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che.Block, _ = rlp.EncodeToBytes(item.Block)
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b.chainHeadFeed.Send(che)
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case err := <-sub.Err():
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|
log.Warn("Subscription error for ChainHead", "err", err)
|
|
return
|
|
}
|
|
}
|
|
}()
|
|
})
|
|
return b.chainHeadFeed.Subscribe(ch)
|
|
}
|
|
func (b *Backend) SubscribeChainSideEvent(ch chan<- core.ChainSideEvent) core.Subscription {
|
|
var sub event.Subscription
|
|
b.chainSideOnce.Do(func() {
|
|
bch := make(chan gcore.ChainSideEvent, 100)
|
|
sub = b.b.SubscribeChainSideEvent(bch)
|
|
go func() {
|
|
for {
|
|
select {
|
|
case item := <-bch:
|
|
cse := core.ChainSideEvent{}
|
|
cse.Block, _ = rlp.EncodeToBytes(item.Block)
|
|
b.chainSideFeed.Send(cse)
|
|
case err := <-sub.Err():
|
|
log.Warn("Subscription error for ChainSide", "err", err)
|
|
return
|
|
}
|
|
}
|
|
}()
|
|
})
|
|
return b.chainSideFeed.Subscribe(ch)
|
|
}
|
|
func (b *Backend) SubscribeLogsEvent(ch chan<- [][]byte) core.Subscription {
|
|
var sub event.Subscription
|
|
b.logsOnce.Do(func() {
|
|
bch := make(chan []*types.Log, 100)
|
|
sub = b.b.SubscribeLogsEvent(bch)
|
|
go func() {
|
|
for {
|
|
select {
|
|
case item := <-bch:
|
|
logs := make([][]byte, len(item))
|
|
for i, log := range item {
|
|
logs[i], _ = rlp.EncodeToBytes(log)
|
|
}
|
|
b.logsFeed.Send(logs)
|
|
case err := <-sub.Err():
|
|
log.Warn("Subscription error for Logs", "err", err)
|
|
return
|
|
}
|
|
}
|
|
}()
|
|
})
|
|
return b.logsFeed.Subscribe(ch)
|
|
} // []RLP encoded logs
|
|
func (b *Backend) SubscribePendingLogsEvent(ch chan<- [][]byte) core.Subscription {
|
|
var sub event.Subscription
|
|
b.pendingLogsOnce.Do(func() {
|
|
bch := make(chan []*types.Log, 100)
|
|
sub = b.b.SubscribePendingLogsEvent(bch)
|
|
go func() {
|
|
for {
|
|
select {
|
|
case item := <-bch:
|
|
logs := make([][]byte, len(item))
|
|
for i, log := range item {
|
|
logs[i], _ = rlp.EncodeToBytes(log)
|
|
}
|
|
b.pendingLogsFeed.Send(logs)
|
|
case err := <-sub.Err():
|
|
log.Warn("Subscription error for PendingLogs", "err", err)
|
|
return
|
|
}
|
|
}
|
|
}()
|
|
})
|
|
return b.pendingLogsFeed.Subscribe(ch)
|
|
} // RLP Encoded logs
|
|
func (b *Backend) SubscribeRemovedLogsEvent(ch chan<- []byte) core.Subscription {
|
|
var sub event.Subscription
|
|
b.removedLogsOnce.Do(func() {
|
|
bch := make(chan gcore.RemovedLogsEvent, 100)
|
|
sub = b.b.SubscribeRemovedLogsEvent(bch)
|
|
go func() {
|
|
for {
|
|
select {
|
|
case item := <-bch:
|
|
logs := make([][]byte, len(item.Logs))
|
|
for i, log := range item.Logs {
|
|
logs[i], _ = rlp.EncodeToBytes(log)
|
|
}
|
|
b.removedLogsFeed.Send(item)
|
|
case err := <-sub.Err():
|
|
log.Warn("Subscription error for RemovedLogs", "err", err)
|
|
return
|
|
}
|
|
}
|
|
}()
|
|
})
|
|
return b.removedLogsFeed.Subscribe(ch)
|
|
} // RLP encoded logs
|
|
|
|
func convertAndSet(a, b reflect.Value) (err error) {
|
|
defer func() {
|
|
if recover() != nil {
|
|
fmt.Errorf("error converting: %v", err.Error())
|
|
}
|
|
}()
|
|
a.Set(b.Convert(a.Type()))
|
|
return nil
|
|
}
|
|
|
|
func (b *Backend) ChainConfig() *params.ChainConfig {
|
|
// We're using the reflect library to copy data from params.ChainConfig to
|
|
// pparams.ChainConfig, so this function shouldn't need to be touched for
|
|
// simple changes to ChainConfig (though pparams.ChainConfig may need to be
|
|
// updated). Note that this probably won't carry over consensus engine data.
|
|
if b.chainConfig != nil {
|
|
return b.chainConfig
|
|
}
|
|
b.chainConfig = ¶ms.ChainConfig{}
|
|
nval := reflect.ValueOf(b.b.ChainConfig())
|
|
ntype := nval.Elem().Type()
|
|
lval := reflect.ValueOf(b.chainConfig)
|
|
for i := 0; i < nval.Elem().NumField(); i++ {
|
|
field := ntype.Field(i)
|
|
v := nval.Elem().FieldByName(field.Name)
|
|
lv := lval.Elem().FieldByName(field.Name)
|
|
if v.Type() == lv.Type() && lv.CanSet() {
|
|
lv.Set(v)
|
|
} else {
|
|
convertAndSet(lv, v)
|
|
}
|
|
}
|
|
return b.chainConfig
|
|
}
|