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https://gitlab.com/pulsechaincom/erigon-pulse.git
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e328049353
* save * save * save * save * save * save
139 lines
4.1 KiB
Go
139 lines
4.1 KiB
Go
package lightclient
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import (
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"bytes"
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"fmt"
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iavl2 "github.com/ledgerwatch/erigon/core/vm/lightclient/iavl"
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"github.com/tendermint/tendermint/crypto/merkle"
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cmn "github.com/tendermint/tendermint/libs/common"
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)
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// MultiStoreProof defines a collection of store proofs in a multi-store
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type MultiStoreProof struct {
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StoreInfos []StoreInfo
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}
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func NewMultiStoreProof(storeInfos []StoreInfo) *MultiStoreProof {
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return &MultiStoreProof{StoreInfos: storeInfos}
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}
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// ComputeRootHash returns the root hash for a given multi-store proof.
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func (proof *MultiStoreProof) ComputeRootHash() []byte {
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ci := CommitInfo{
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Version: -1, // TODO: Not needed; improve code.
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StoreInfos: proof.StoreInfos,
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}
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return ci.Hash()
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}
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// RequireProof return whether proof is require for the subpath
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func RequireProof(subpath string) bool {
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// XXX: create a better convention.
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// Currently, only when query subpath is "/store" or "/key", will proof be included in response.
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// If there are some changes about proof building in iavlstore.go, we must change code here to keep consistency with iavlstore.go:212
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if subpath == "/store" || subpath == "/key" {
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return true
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}
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return false
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}
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//-----------------------------------------------------------------------------
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var _ merkle.ProofOperator = MultiStoreProofOp{}
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// the multi-store proof operation constant value
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const ProofOpMultiStore = "multistore"
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// TODO: document
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type MultiStoreProofOp struct {
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// Encoded in ProofOp.Key
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key []byte
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// To encode in ProofOp.Data.
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Proof *MultiStoreProof `json:"proof"`
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}
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func NewMultiStoreProofOp(key []byte, proof *MultiStoreProof) MultiStoreProofOp {
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return MultiStoreProofOp{
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key: key,
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Proof: proof,
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}
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}
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// MultiStoreProofOpDecoder returns a multi-store merkle proof operator from a
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// given proof operation.
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func MultiStoreProofOpDecoder(pop merkle.ProofOp) (merkle.ProofOperator, error) {
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if pop.Type != ProofOpMultiStore {
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return nil, cmn.NewError("unexpected ProofOp.Type; got %v, want %v", pop.Type, ProofOpMultiStore)
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}
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// XXX: a bit strange as we'll discard this, but it works
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var op MultiStoreProofOp
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err := Cdc.UnmarshalBinaryLengthPrefixed(pop.Data, &op)
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if err != nil {
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return nil, cmn.ErrorWrap(err, "decoding ProofOp.Data into MultiStoreProofOp")
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}
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return NewMultiStoreProofOp(pop.Key, op.Proof), nil
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}
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// ProofOp return a merkle proof operation from a given multi-store proof
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// operation.
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func (op MultiStoreProofOp) ProofOp() merkle.ProofOp {
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bz := Cdc.MustMarshalBinaryLengthPrefixed(op)
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return merkle.ProofOp{
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Type: ProofOpMultiStore,
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Key: op.key,
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Data: bz,
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}
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}
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// String implements the Stringer interface for a mult-store proof operation.
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func (op MultiStoreProofOp) String() string {
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return fmt.Sprintf("MultiStoreProofOp{%v}", op.GetKey())
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}
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// GetKey returns the key for a multi-store proof operation.
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func (op MultiStoreProofOp) GetKey() []byte {
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return op.key
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}
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// Run executes a multi-store proof operation for a given value. It returns
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// the root hash if the value matches all the store's commitID's hash or an
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// error otherwise.
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func (op MultiStoreProofOp) Run(args [][]byte) ([][]byte, error) {
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if len(args) != 1 {
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return nil, cmn.NewError("Value size is not 1")
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}
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value := args[0]
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root := op.Proof.ComputeRootHash()
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for _, si := range op.Proof.StoreInfos {
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if si.Name == string(op.key) {
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if bytes.Equal(value, si.Core.CommitID.Hash) {
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return [][]byte{root}, nil
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}
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return nil, cmn.NewError("hash mismatch for substore %v: %X vs %X", si.Name, si.Core.CommitID.Hash, value)
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}
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}
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return nil, cmn.NewError("key %v not found in multistore proof", op.key)
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}
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//-----------------------------------------------------------------------------
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// XXX: This should be managed by the rootMultiStore which may want to register
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// more proof ops?
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func DefaultProofRuntime() (prt *merkle.ProofRuntime) {
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prt = merkle.NewProofRuntime()
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prt.RegisterOpDecoder(merkle.ProofOpSimpleValue, merkle.SimpleValueOpDecoder)
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prt.RegisterOpDecoder(iavl2.ProofOpIAVLValue, iavl2.IAVLValueOpDecoder)
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prt.RegisterOpDecoder(iavl2.ProofOpIAVLAbsence, iavl2.IAVLAbsenceOpDecoder)
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prt.RegisterOpDecoder(ProofOpMultiStore, MultiStoreProofOpDecoder)
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return
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}
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