forked from cerc-io/plugeth
graphql, internal/ethapi: support overriding accounts in eth_call (#19917)
* graphql, internal/ethapi: extend eth_call This PR offers the third option parameter for eth_call API. Caller can specify a batch of contracts for overriding the original account metadata(nonce, balance, code, state). It has a few advantages: * It's friendly for debugging * It's can make on-chain contract lighter for getting rid of state access functions * core, internal: address comments
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081642ed25
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@ -81,6 +81,7 @@ type stateObject struct {
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originStorage Storage // Storage cache of original entries to dedup rewrites
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originStorage Storage // Storage cache of original entries to dedup rewrites
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dirtyStorage Storage // Storage entries that need to be flushed to disk
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dirtyStorage Storage // Storage entries that need to be flushed to disk
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fakeStorage Storage // Fake storage which constructed by caller for debugging purpose.
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// Cache flags.
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// Cache flags.
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// When an object is marked suicided it will be delete from the trie
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// When an object is marked suicided it will be delete from the trie
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@ -163,6 +164,10 @@ func (s *stateObject) getTrie(db Database) Trie {
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// GetState retrieves a value from the account storage trie.
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// GetState retrieves a value from the account storage trie.
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func (s *stateObject) GetState(db Database, key common.Hash) common.Hash {
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func (s *stateObject) GetState(db Database, key common.Hash) common.Hash {
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// If the fake storage is set, only lookup the state here(in the debugging mode)
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if s.fakeStorage != nil {
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return s.fakeStorage[key]
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}
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// If we have a dirty value for this state entry, return it
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// If we have a dirty value for this state entry, return it
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value, dirty := s.dirtyStorage[key]
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value, dirty := s.dirtyStorage[key]
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if dirty {
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if dirty {
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@ -174,12 +179,16 @@ func (s *stateObject) GetState(db Database, key common.Hash) common.Hash {
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// GetCommittedState retrieves a value from the committed account storage trie.
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// GetCommittedState retrieves a value from the committed account storage trie.
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func (s *stateObject) GetCommittedState(db Database, key common.Hash) common.Hash {
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func (s *stateObject) GetCommittedState(db Database, key common.Hash) common.Hash {
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// If the fake storage is set, only lookup the state here(in the debugging mode)
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if s.fakeStorage != nil {
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return s.fakeStorage[key]
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}
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// If we have the original value cached, return that
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// If we have the original value cached, return that
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value, cached := s.originStorage[key]
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value, cached := s.originStorage[key]
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if cached {
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if cached {
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return value
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return value
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}
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}
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// Track the amount of time wasted on reading the storge trie
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// Track the amount of time wasted on reading the storage trie
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if metrics.EnabledExpensive {
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if metrics.EnabledExpensive {
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defer func(start time.Time) { s.db.StorageReads += time.Since(start) }(time.Now())
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defer func(start time.Time) { s.db.StorageReads += time.Since(start) }(time.Now())
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}
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}
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@ -202,6 +211,11 @@ func (s *stateObject) GetCommittedState(db Database, key common.Hash) common.Has
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// SetState updates a value in account storage.
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// SetState updates a value in account storage.
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func (s *stateObject) SetState(db Database, key, value common.Hash) {
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func (s *stateObject) SetState(db Database, key, value common.Hash) {
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// If the fake storage is set, put the temporary state update here.
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if s.fakeStorage != nil {
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s.fakeStorage[key] = value
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return
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}
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// If the new value is the same as old, don't set
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// If the new value is the same as old, don't set
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prev := s.GetState(db, key)
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prev := s.GetState(db, key)
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if prev == value {
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if prev == value {
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@ -216,6 +230,24 @@ func (s *stateObject) SetState(db Database, key, value common.Hash) {
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s.setState(key, value)
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s.setState(key, value)
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}
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}
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// SetStorage replaces the entire state storage with the given one.
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//
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// After this function is called, all original state will be ignored and state
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// lookup only happens in the fake state storage.
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//
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// Note this function should only be used for debugging purpose.
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func (s *stateObject) SetStorage(storage map[common.Hash]common.Hash) {
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// Allocate fake storage if it's nil.
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if s.fakeStorage == nil {
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s.fakeStorage = make(Storage)
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}
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for key, value := range storage {
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s.fakeStorage[key] = value
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}
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// Don't bother journal since this function should only be used for
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// debugging and the `fake` storage won't be committed to database.
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}
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func (s *stateObject) setState(key, value common.Hash) {
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func (s *stateObject) setState(key, value common.Hash) {
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s.dirtyStorage[key] = value
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s.dirtyStorage[key] = value
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}
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}
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@ -386,6 +386,15 @@ func (self *StateDB) SetState(addr common.Address, key, value common.Hash) {
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}
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}
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}
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}
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// SetStorage replaces the entire storage for the specified account with given
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// storage. This function should only be used for debugging.
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func (self *StateDB) SetStorage(addr common.Address, storage map[common.Hash]common.Hash) {
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stateObject := self.GetOrNewStateObject(addr)
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if stateObject != nil {
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stateObject.SetStorage(storage)
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}
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}
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// Suicide marks the given account as suicided.
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// Suicide marks the given account as suicided.
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// This clears the account balance.
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// This clears the account balance.
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//
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//
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@ -817,7 +817,7 @@ func (b *Block) Call(ctx context.Context, args struct {
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return nil, err
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return nil, err
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}
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}
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}
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}
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result, gas, failed, err := ethapi.DoCall(ctx, b.backend, args.Data, *b.num, vm.Config{}, 5*time.Second, b.backend.RPCGasCap())
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result, gas, failed, err := ethapi.DoCall(ctx, b.backend, args.Data, *b.num, nil, vm.Config{}, 5*time.Second, b.backend.RPCGasCap())
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status := hexutil.Uint64(1)
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status := hexutil.Uint64(1)
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if failed {
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if failed {
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status = 0
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status = 0
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@ -885,7 +885,7 @@ func (p *Pending) Account(ctx context.Context, args struct {
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func (p *Pending) Call(ctx context.Context, args struct {
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func (p *Pending) Call(ctx context.Context, args struct {
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Data ethapi.CallArgs
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Data ethapi.CallArgs
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}) (*CallResult, error) {
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}) (*CallResult, error) {
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result, gas, failed, err := ethapi.DoCall(ctx, p.backend, args.Data, rpc.PendingBlockNumber, vm.Config{}, 5*time.Second, p.backend.RPCGasCap())
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result, gas, failed, err := ethapi.DoCall(ctx, p.backend, args.Data, rpc.PendingBlockNumber, nil, vm.Config{}, 5*time.Second, p.backend.RPCGasCap())
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status := hexutil.Uint64(1)
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status := hexutil.Uint64(1)
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if failed {
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if failed {
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status = 0
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status = 0
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@ -743,7 +743,21 @@ type CallArgs struct {
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Data *hexutil.Bytes `json:"data"`
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Data *hexutil.Bytes `json:"data"`
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}
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}
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func DoCall(ctx context.Context, b Backend, args CallArgs, blockNr rpc.BlockNumber, vmCfg vm.Config, timeout time.Duration, globalGasCap *big.Int) ([]byte, uint64, bool, error) {
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// account indicates the overriding fields of account during the execution of
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// a message call.
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// Note, state and stateDiff can't be specified at the same time. If state is
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// set, message execution will only use the data in the given state. Otherwise
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// if statDiff is set, all diff will be applied first and then execute the call
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// message.
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type account struct {
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Nonce *hexutil.Uint64 `json:"nonce"`
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Code *hexutil.Bytes `json:"code"`
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Balance **hexutil.Big `json:"balance"`
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State *map[common.Hash]common.Hash `json:"state"`
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StateDiff *map[common.Hash]common.Hash `json:"stateDiff"`
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}
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func DoCall(ctx context.Context, b Backend, args CallArgs, blockNr rpc.BlockNumber, overrides map[common.Address]account, vmCfg vm.Config, timeout time.Duration, globalGasCap *big.Int) ([]byte, uint64, bool, error) {
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defer func(start time.Time) { log.Debug("Executing EVM call finished", "runtime", time.Since(start)) }(time.Now())
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defer func(start time.Time) { log.Debug("Executing EVM call finished", "runtime", time.Since(start)) }(time.Now())
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state, header, err := b.StateAndHeaderByNumber(ctx, blockNr)
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state, header, err := b.StateAndHeaderByNumber(ctx, blockNr)
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@ -761,6 +775,34 @@ func DoCall(ctx context.Context, b Backend, args CallArgs, blockNr rpc.BlockNumb
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} else {
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} else {
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addr = *args.From
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addr = *args.From
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}
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}
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// Override the fields of specified contracts before execution.
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for addr, account := range overrides {
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// Override account nonce.
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if account.Nonce != nil {
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state.SetNonce(addr, uint64(*account.Nonce))
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}
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// Override account(contract) code.
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if account.Code != nil {
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state.SetCode(addr, *account.Code)
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}
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// Override account balance.
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if account.Balance != nil {
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state.SetBalance(addr, (*big.Int)(*account.Balance))
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}
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if account.State != nil && account.StateDiff != nil {
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return nil, 0, false, fmt.Errorf("account %s has both 'state' and 'stateDiff'", addr.Hex())
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}
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// Replace entire state if caller requires.
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if account.State != nil {
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state.SetStorage(addr, *account.State)
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}
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// Apply state diff into specified accounts.
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if account.StateDiff != nil {
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for key, value := range *account.StateDiff {
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state.SetState(addr, key, value)
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}
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}
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}
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// Set default gas & gas price if none were set
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// Set default gas & gas price if none were set
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gas := uint64(math.MaxUint64 / 2)
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gas := uint64(math.MaxUint64 / 2)
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if args.Gas != nil {
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if args.Gas != nil {
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@ -827,9 +869,17 @@ func DoCall(ctx context.Context, b Backend, args CallArgs, blockNr rpc.BlockNumb
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}
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}
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// Call executes the given transaction on the state for the given block number.
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// Call executes the given transaction on the state for the given block number.
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// It doesn't make and changes in the state/blockchain and is useful to execute and retrieve values.
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//
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func (s *PublicBlockChainAPI) Call(ctx context.Context, args CallArgs, blockNr rpc.BlockNumber) (hexutil.Bytes, error) {
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// Additionally, the caller can specify a batch of contract for fields overriding.
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result, _, _, err := DoCall(ctx, s.b, args, blockNr, vm.Config{}, 5*time.Second, s.b.RPCGasCap())
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//
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// Note, this function doesn't make and changes in the state/blockchain and is
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// useful to execute and retrieve values.
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func (s *PublicBlockChainAPI) Call(ctx context.Context, args CallArgs, blockNr rpc.BlockNumber, overrides *map[common.Address]account) (hexutil.Bytes, error) {
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var accounts map[common.Address]account
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if overrides != nil {
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accounts = *overrides
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}
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result, _, _, err := DoCall(ctx, s.b, args, blockNr, accounts, vm.Config{}, 5*time.Second, s.b.RPCGasCap())
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return (hexutil.Bytes)(result), err
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return (hexutil.Bytes)(result), err
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}
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}
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@ -860,7 +910,7 @@ func DoEstimateGas(ctx context.Context, b Backend, args CallArgs, blockNr rpc.Bl
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executable := func(gas uint64) bool {
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executable := func(gas uint64) bool {
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args.Gas = (*hexutil.Uint64)(&gas)
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args.Gas = (*hexutil.Uint64)(&gas)
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_, _, failed, err := DoCall(ctx, b, args, rpc.PendingBlockNumber, vm.Config{}, 0, gasCap)
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_, _, failed, err := DoCall(ctx, b, args, rpc.PendingBlockNumber, nil, vm.Config{}, 0, gasCap)
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if err != nil || failed {
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if err != nil || failed {
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return false
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return false
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}
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}
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