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https://github.com/nspcc-dev/neo-go.git
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c2adbf768b
It's more generic and convenient than MillisecondsPerBlock. This setting is made in backwards-compatible fashion, but it'll override SecondsPerBlock if both are used. Configurations are specifically not changed here, it's important to check compatibility. Fixes #2675.
284 lines
11 KiB
Go
284 lines
11 KiB
Go
package config
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import (
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"errors"
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"fmt"
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"sort"
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"time"
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"github.com/nspcc-dev/neo-go/pkg/config/netmode"
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"github.com/nspcc-dev/neo-go/pkg/core/native/nativenames"
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"github.com/nspcc-dev/neo-go/pkg/encoding/fixedn"
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)
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// ProtocolConfiguration represents the protocol config.
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type (
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ProtocolConfiguration struct {
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// CommitteeHistory stores committee size change history (height: size).
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CommitteeHistory map[uint32]int `yaml:"CommitteeHistory"`
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// GarbageCollectionPeriod sets the number of blocks to wait before
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// starting the next MPT garbage collection cycle when RemoveUntraceableBlocks
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// option is used.
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GarbageCollectionPeriod uint32 `yaml:"GarbageCollectionPeriod"`
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Magic netmode.Magic `yaml:"Magic"`
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MemPoolSize int `yaml:"MemPoolSize"`
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// Hardforks is a map of hardfork names that enables version-specific application
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// logic dependent on the specified height.
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Hardforks map[string]uint32 `yaml:"Hardforks"`
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// InitialGASSupply is the amount of GAS generated in the genesis block.
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InitialGASSupply fixedn.Fixed8 `yaml:"InitialGASSupply"`
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// P2PNotaryRequestPayloadPoolSize specifies the memory pool size for P2PNotaryRequestPayloads.
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// It is valid only if P2PSigExtensions are enabled.
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P2PNotaryRequestPayloadPoolSize int `yaml:"P2PNotaryRequestPayloadPoolSize"`
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// KeepOnlyLatestState specifies if MPT should only store the latest state.
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// If true, DB size will be smaller, but older roots won't be accessible.
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// This value should remain the same for the same database.
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KeepOnlyLatestState bool `yaml:"KeepOnlyLatestState"`
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// RemoveUntraceableBlocks specifies if old data should be removed.
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RemoveUntraceableBlocks bool `yaml:"RemoveUntraceableBlocks"`
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// MaxBlockSize is the maximum block size in bytes.
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MaxBlockSize uint32 `yaml:"MaxBlockSize"`
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// MaxBlockSystemFee is the maximum overall system fee per block.
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MaxBlockSystemFee int64 `yaml:"MaxBlockSystemFee"`
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// MaxTraceableBlocks is the length of the chain accessible to smart contracts.
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MaxTraceableBlocks uint32 `yaml:"MaxTraceableBlocks"`
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// MaxTransactionsPerBlock is the maximum amount of transactions per block.
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MaxTransactionsPerBlock uint16 `yaml:"MaxTransactionsPerBlock"`
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// MaxValidUntilBlockIncrement is the upper increment size of blockchain height in blocks
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// exceeding that a transaction should fail validation. It is set to estimated daily number
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// of blocks with 15s interval.
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MaxValidUntilBlockIncrement uint32 `yaml:"MaxValidUntilBlockIncrement"`
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// NativeUpdateHistories is a list of histories of native contracts updates.
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NativeUpdateHistories map[string][]uint32 `yaml:"NativeActivations"`
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// P2PSigExtensions enables additional signature-related logic.
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P2PSigExtensions bool `yaml:"P2PSigExtensions"`
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// P2PStateExchangeExtensions enables additional P2P MPT state data exchange logic.
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P2PStateExchangeExtensions bool `yaml:"P2PStateExchangeExtensions"`
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// ReservedAttributes allows to have reserved attributes range for experimental or private purposes.
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ReservedAttributes bool `yaml:"ReservedAttributes"`
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// SaveStorageBatch enables storage batch saving before every persist.
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SaveStorageBatch bool `yaml:"SaveStorageBatch"`
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// SecondsPerBlock is the time interval (in seconds) between blocks that consensus nodes work with.
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//
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// Deprecated: replaced by TimePerBlock, to be removed in future versions.
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SecondsPerBlock int `yaml:"SecondsPerBlock"`
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SeedList []string `yaml:"SeedList"`
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StandbyCommittee []string `yaml:"StandbyCommittee"`
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// StateRooInHeader enables storing state root in block header.
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StateRootInHeader bool `yaml:"StateRootInHeader"`
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// StateSyncInterval is the number of blocks between state heights available for MPT state data synchronization.
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// It is valid only if P2PStateExchangeExtensions are enabled.
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StateSyncInterval int `yaml:"StateSyncInterval"`
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// TimePerBlock is the time interval between blocks that consensus nodes work with.
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// It must be an integer number of milliseconds.
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TimePerBlock time.Duration `yaml:"TimePerBlock"`
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ValidatorsCount int `yaml:"ValidatorsCount"`
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// Validators stores history of changes to consensus node number (height: number).
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ValidatorsHistory map[uint32]int `yaml:"ValidatorsHistory"`
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// Whether to verify received blocks.
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VerifyBlocks bool `yaml:"VerifyBlocks"`
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// Whether to verify transactions in the received blocks.
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VerifyTransactions bool `yaml:"VerifyTransactions"`
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}
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)
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// heightNumber is an auxiliary structure for configuration checks.
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type heightNumber struct {
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h uint32
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n int
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}
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// Validate checks ProtocolConfiguration for internal consistency and returns
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// an error if anything inappropriate found. Other methods can rely on protocol
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// validity after this.
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func (p *ProtocolConfiguration) Validate() error {
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var err error
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if p.P2PStateExchangeExtensions && p.KeepOnlyLatestState && !p.RemoveUntraceableBlocks {
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return fmt.Errorf("P2PStateExchangeExtensions can be enabled either on MPT-complete node (KeepOnlyLatestState=false) or on light GC-enabled node (RemoveUntraceableBlocks=true)")
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}
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if p.TimePerBlock%time.Millisecond != 0 {
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return errors.New("TimePerBlock must be an integer number of milliseconds")
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}
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for name := range p.NativeUpdateHistories {
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if !nativenames.IsValid(name) {
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return fmt.Errorf("NativeActivations configuration section contains unexpected native contract name: %s", name)
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}
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}
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for name := range p.Hardforks {
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if !IsHardforkValid(name) {
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return fmt.Errorf("Hardforks configuration section contains unexpected hardfork: %s", name)
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}
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}
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if p.ValidatorsCount != 0 && len(p.ValidatorsHistory) != 0 {
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return errors.New("configuration should either have ValidatorsCount or ValidatorsHistory, not both")
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}
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if len(p.StandbyCommittee) < p.ValidatorsCount {
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return errors.New("validators count can't exceed the size of StandbyCommittee")
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}
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var arr = make([]heightNumber, 0, len(p.CommitteeHistory))
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for h, n := range p.CommitteeHistory {
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if int(n) > len(p.StandbyCommittee) {
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return fmt.Errorf("too small StandbyCommittee for required number of committee members at %d", h)
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}
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arr = append(arr, heightNumber{h, n})
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}
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if len(arr) != 0 {
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err = sortCheckZero(arr, "CommitteeHistory")
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if err != nil {
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return err
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}
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for i, hn := range arr[1:] {
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if int64(hn.h)%int64(hn.n) != 0 || int64(hn.h)%int64(arr[i].n) != 0 {
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return fmt.Errorf("invalid CommitteeHistory: bad %d height for %d and %d committee", hn.h, hn.n, arr[i].n)
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}
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}
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}
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arr = arr[:0]
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for h, n := range p.ValidatorsHistory {
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if int(n) > len(p.StandbyCommittee) {
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return fmt.Errorf("too small StandbyCommittee for required number of validators at %d", h)
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}
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arr = append(arr, heightNumber{h, n})
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}
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if len(arr) != 0 {
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err = sortCheckZero(arr, "ValidatorsHistory")
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if err != nil {
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return err
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}
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for _, hn := range arr {
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if int64(hn.n) > int64(p.GetCommitteeSize(hn.h)) {
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return fmt.Errorf("requested number of validators is too big: %d at %d", hn.n, hn.h)
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}
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if int64(hn.h)%int64(p.GetCommitteeSize(hn.h)) != 0 {
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return fmt.Errorf("validators number change is not aligned with committee change at %d", hn.h)
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}
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}
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}
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return nil
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}
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// sortCheckZero sorts heightNumber array and checks for zero height presence.
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func sortCheckZero(arr []heightNumber, field string) error {
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sort.Slice(arr, func(i, j int) bool {
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return arr[i].h < arr[j].h
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})
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if arr[0].h != 0 {
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return fmt.Errorf("invalid %s: no height 0 specified", field)
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}
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return nil
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}
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// GetCommitteeSize returns the committee size for the given height. It implies
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// valid configuration file.
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func (p *ProtocolConfiguration) GetCommitteeSize(height uint32) int {
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if len(p.CommitteeHistory) == 0 {
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return len(p.StandbyCommittee)
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}
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return getBestFromMap(p.CommitteeHistory, height)
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}
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func getBestFromMap(dict map[uint32]int, height uint32) int {
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var res int
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var bestH = uint32(0)
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for h, n := range dict {
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if h >= bestH && h <= height {
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res = n
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bestH = h
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}
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}
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return res
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}
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// GetNumOfCNs returns the number of validators for the given height.
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// It implies valid configuration file.
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func (p *ProtocolConfiguration) GetNumOfCNs(height uint32) int {
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if len(p.ValidatorsHistory) == 0 {
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return p.ValidatorsCount
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}
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return getBestFromMap(p.ValidatorsHistory, height)
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}
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// ShouldUpdateCommitteeAt answers the question of whether the committee
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// should be updated at the given height.
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func (p *ProtocolConfiguration) ShouldUpdateCommitteeAt(height uint32) bool {
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return height%uint32(p.GetCommitteeSize(height)) == 0
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}
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// Equals allows to compare two ProtocolConfiguration instances, returns true if
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// they're equal.
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func (p *ProtocolConfiguration) Equals(o *ProtocolConfiguration) bool {
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if p.GarbageCollectionPeriod != o.GarbageCollectionPeriod ||
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p.InitialGASSupply != o.InitialGASSupply ||
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p.KeepOnlyLatestState != o.KeepOnlyLatestState ||
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p.Magic != o.Magic ||
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p.MaxBlockSize != o.MaxBlockSize ||
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p.MaxBlockSystemFee != o.MaxBlockSystemFee ||
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p.MaxTraceableBlocks != o.MaxTraceableBlocks ||
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p.MaxTransactionsPerBlock != o.MaxTransactionsPerBlock ||
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p.MaxValidUntilBlockIncrement != o.MaxValidUntilBlockIncrement ||
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p.MemPoolSize != o.MemPoolSize ||
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p.P2PNotaryRequestPayloadPoolSize != o.P2PNotaryRequestPayloadPoolSize ||
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p.P2PSigExtensions != o.P2PSigExtensions ||
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p.P2PStateExchangeExtensions != o.P2PStateExchangeExtensions ||
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p.RemoveUntraceableBlocks != o.RemoveUntraceableBlocks ||
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p.ReservedAttributes != o.ReservedAttributes ||
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p.SaveStorageBatch != o.SaveStorageBatch ||
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p.SecondsPerBlock != o.SecondsPerBlock ||
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p.StateRootInHeader != o.StateRootInHeader ||
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p.StateSyncInterval != o.StateSyncInterval ||
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p.TimePerBlock != o.TimePerBlock ||
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p.ValidatorsCount != o.ValidatorsCount ||
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p.VerifyBlocks != o.VerifyBlocks ||
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p.VerifyTransactions != o.VerifyTransactions ||
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len(p.CommitteeHistory) != len(o.CommitteeHistory) ||
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len(p.Hardforks) != len(o.Hardforks) ||
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len(p.NativeUpdateHistories) != len(o.NativeUpdateHistories) ||
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len(p.SeedList) != len(o.SeedList) ||
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len(p.StandbyCommittee) != len(o.StandbyCommittee) ||
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len(p.ValidatorsHistory) != len(o.ValidatorsHistory) {
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return false
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}
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for k, v := range p.CommitteeHistory {
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vo, ok := o.CommitteeHistory[k]
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if !ok || v != vo {
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return false
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}
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}
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for k, v := range p.Hardforks {
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vo, ok := o.Hardforks[k]
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if !ok || v != vo {
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return false
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}
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}
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for k, v := range p.NativeUpdateHistories {
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vo := o.NativeUpdateHistories[k]
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if len(v) != len(vo) {
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return false
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}
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for i := range v {
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if v[i] != vo[i] {
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return false
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}
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}
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}
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for i := range p.SeedList {
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if p.SeedList[i] != o.SeedList[i] {
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return false
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}
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}
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for i := range p.StandbyCommittee {
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if p.StandbyCommittee[i] != o.StandbyCommittee[i] {
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return false
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}
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}
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for k, v := range p.ValidatorsHistory {
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vo, ok := o.ValidatorsHistory[k]
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if !ok || v != vo {
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return false
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}
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}
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return true
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}
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