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7589733017
And include some node-specific configurations there with backwards compatibility. Note that in the future we'll remove Ledger's fields from the ProtocolConfiguration and it'll be possible to access them in Blockchain directly (not via .Ledger). The other option tried was using two configuration types separately, but that incurs more changes to the codebase, single structure that behaves almost like the old one is better for backwards compatibility. Fixes #2676.
294 lines
11 KiB
Go
294 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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//
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// Deprecated: please use the same setting in the ApplicationConfiguration, this field will be removed in future versions.
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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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//
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// Deprecated: please use the same setting in the ApplicationConfiguration, this field will be removed in future versions.
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KeepOnlyLatestState bool `yaml:"KeepOnlyLatestState"`
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// RemoveUntraceableBlocks specifies if old data should be removed.
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//
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// Deprecated: please use the same setting in the ApplicationConfiguration, this field will be removed in future versions.
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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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//
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// Deprecated: please use the same setting in the ApplicationConfiguration, this field will be removed in future versions.
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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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//
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// Deprecated: please use the same setting in the ApplicationConfiguration, this field will be removed in future versions.
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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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