204 lines
5.9 KiB
Go
204 lines
5.9 KiB
Go
package dao
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import (
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"errors"
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"github.com/nspcc-dev/neo-go/pkg/core/state"
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"github.com/nspcc-dev/neo-go/pkg/io"
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"github.com/nspcc-dev/neo-go/pkg/util"
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)
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// Cached is a data access object that mimics DAO, but has a write cache
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// for accounts and read cache for contracts. These are the most frequently used
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// objects in the storeBlock().
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type Cached struct {
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DAO
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accounts map[util.Uint160]*state.Account
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contracts map[util.Uint160]*state.Contract
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unspents map[util.Uint256]*state.UnspentCoin
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balances map[util.Uint160]*state.NEP5Balances
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transfers map[util.Uint160]map[uint32]*state.NEP5TransferLog
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}
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// NewCached returns new Cached wrapping around given backing store.
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func NewCached(d DAO) *Cached {
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accs := make(map[util.Uint160]*state.Account)
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ctrs := make(map[util.Uint160]*state.Contract)
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unspents := make(map[util.Uint256]*state.UnspentCoin)
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balances := make(map[util.Uint160]*state.NEP5Balances)
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transfers := make(map[util.Uint160]map[uint32]*state.NEP5TransferLog)
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return &Cached{d.GetWrapped(), accs, ctrs, unspents, balances, transfers}
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}
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// GetAccountStateOrNew retrieves Account from cache or underlying store
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// or creates a new one if it doesn't exist.
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func (cd *Cached) GetAccountStateOrNew(hash util.Uint160) (*state.Account, error) {
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if cd.accounts[hash] != nil {
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return cd.accounts[hash], nil
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}
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return cd.DAO.GetAccountStateOrNew(hash)
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}
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// GetAccountState retrieves Account from cache or underlying store.
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func (cd *Cached) GetAccountState(hash util.Uint160) (*state.Account, error) {
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if cd.accounts[hash] != nil {
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return cd.accounts[hash], nil
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}
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return cd.DAO.GetAccountState(hash)
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}
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// PutAccountState saves given Account in the cache.
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func (cd *Cached) PutAccountState(as *state.Account) error {
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cd.accounts[as.ScriptHash] = as
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return nil
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}
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// GetContractState returns contract state from cache or underlying store.
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func (cd *Cached) GetContractState(hash util.Uint160) (*state.Contract, error) {
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if cd.contracts[hash] != nil {
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return cd.contracts[hash], nil
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}
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cs, err := cd.DAO.GetContractState(hash)
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if err == nil {
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cd.contracts[hash] = cs
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}
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return cs, err
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}
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// PutContractState puts given contract state into the given store.
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func (cd *Cached) PutContractState(cs *state.Contract) error {
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cd.contracts[cs.ScriptHash()] = cs
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return cd.DAO.PutContractState(cs)
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}
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// DeleteContractState deletes given contract state in cache and backing store.
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func (cd *Cached) DeleteContractState(hash util.Uint160) error {
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cd.contracts[hash] = nil
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return cd.DAO.DeleteContractState(hash)
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}
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// GetUnspentCoinState retrieves UnspentCoin from cache or underlying store.
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func (cd *Cached) GetUnspentCoinState(hash util.Uint256) (*state.UnspentCoin, error) {
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if cd.unspents[hash] != nil {
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return cd.unspents[hash], nil
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}
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return cd.DAO.GetUnspentCoinState(hash)
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}
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// PutUnspentCoinState saves given UnspentCoin in the cache.
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func (cd *Cached) PutUnspentCoinState(hash util.Uint256, ucs *state.UnspentCoin) error {
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cd.unspents[hash] = ucs
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return nil
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}
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// GetNEP5Balances retrieves NEP5Balances for the acc.
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func (cd *Cached) GetNEP5Balances(acc util.Uint160) (*state.NEP5Balances, error) {
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if bs := cd.balances[acc]; bs != nil {
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return bs, nil
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}
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return cd.DAO.GetNEP5Balances(acc)
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}
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// PutNEP5Balances saves NEP5Balances for the acc.
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func (cd *Cached) PutNEP5Balances(acc util.Uint160, bs *state.NEP5Balances) error {
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cd.balances[acc] = bs
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return nil
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}
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// GetNEP5TransferLog retrieves NEP5TransferLog for the acc.
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func (cd *Cached) GetNEP5TransferLog(acc util.Uint160, index uint32) (*state.NEP5TransferLog, error) {
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ts := cd.transfers[acc]
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if ts != nil && ts[index] != nil {
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return ts[index], nil
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}
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return cd.DAO.GetNEP5TransferLog(acc, index)
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}
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// PutNEP5TransferLog saves NEP5TransferLog for the acc.
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func (cd *Cached) PutNEP5TransferLog(acc util.Uint160, index uint32, bs *state.NEP5TransferLog) error {
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ts := cd.transfers[acc]
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if ts == nil {
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ts = make(map[uint32]*state.NEP5TransferLog, 2)
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cd.transfers[acc] = ts
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}
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ts[index] = bs
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return nil
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}
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// AppendNEP5Transfer appends new transfer to a transfer event log.
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func (cd *Cached) AppendNEP5Transfer(acc util.Uint160, index uint32, tr *state.NEP5Transfer) (bool, error) {
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lg, err := cd.GetNEP5TransferLog(acc, index)
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if err != nil {
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return false, err
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}
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if err := lg.Append(tr); err != nil {
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return false, err
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}
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return lg.Size() >= nep5TransferBatchSize, cd.PutNEP5TransferLog(acc, index, lg)
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}
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// Persist flushes all the changes made into the (supposedly) persistent
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// underlying store.
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func (cd *Cached) Persist() (int, error) {
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lowerCache, ok := cd.DAO.(*Cached)
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// If the lower DAO is Cached, we only need to flush the MemCached DB.
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// This actually breaks DAO interface incapsulation, but for our current
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// usage scenario it should be good enough if cd doesn't modify object
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// caches (accounts/contracts/etc) in any way.
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if ok {
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var simpleCache *Simple
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for simpleCache == nil {
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simpleCache, ok = lowerCache.DAO.(*Simple)
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if !ok {
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lowerCache, ok = cd.DAO.(*Cached)
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if !ok {
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return 0, errors.New("unsupported lower DAO")
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}
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}
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}
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return simpleCache.Persist()
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}
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buf := io.NewBufBinWriter()
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for sc := range cd.accounts {
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err := cd.DAO.putAccountState(cd.accounts[sc], buf)
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if err != nil {
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return 0, err
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}
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buf.Reset()
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}
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for hash := range cd.unspents {
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err := cd.DAO.putUnspentCoinState(hash, cd.unspents[hash], buf)
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if err != nil {
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return 0, err
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}
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buf.Reset()
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}
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for acc, bs := range cd.balances {
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err := cd.DAO.putNEP5Balances(acc, bs, buf)
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if err != nil {
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return 0, err
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}
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buf.Reset()
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}
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for acc, ts := range cd.transfers {
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for ind, lg := range ts {
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err := cd.DAO.PutNEP5TransferLog(acc, ind, lg)
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if err != nil {
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return 0, err
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}
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}
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}
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return cd.DAO.Persist()
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}
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// GetWrapped implements DAO interface.
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func (cd *Cached) GetWrapped() DAO {
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return &Cached{cd.DAO.GetWrapped(),
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cd.accounts,
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cd.contracts,
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cd.unspents,
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cd.balances,
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cd.transfers,
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}
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}
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