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506 lines
17 KiB
506 lines
17 KiB
// Copyright 2017 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package clique
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import (
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"bytes"
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"crypto/ecdsa"
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"math/big"
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"sort"
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"testing"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core"
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"github.com/ethereum/go-ethereum/core/rawdb"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/core/vm"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/params"
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)
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// testerAccountPool is a pool to maintain currently active tester accounts,
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// mapped from textual names used in the tests below to actual Ethereum private
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// keys capable of signing transactions.
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type testerAccountPool struct {
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accounts map[string]*ecdsa.PrivateKey
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}
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func newTesterAccountPool() *testerAccountPool {
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return &testerAccountPool{
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accounts: make(map[string]*ecdsa.PrivateKey),
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}
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}
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// checkpoint creates a Clique checkpoint signer section from the provided list
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// of authorized signers and embeds it into the provided header.
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func (ap *testerAccountPool) checkpoint(header *types.Header, signers []string) {
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auths := make([]common.Address, len(signers))
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for i, signer := range signers {
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auths[i] = ap.address(signer)
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}
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sort.Sort(signersAscending(auths))
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for i, auth := range auths {
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copy(header.Extra[extraVanity+i*common.AddressLength:], auth.Bytes())
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}
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}
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// address retrieves the Ethereum address of a tester account by label, creating
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// a new account if no previous one exists yet.
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func (ap *testerAccountPool) address(account string) common.Address {
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// Return the zero account for non-addresses
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if account == "" {
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return common.Address{}
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}
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// Ensure we have a persistent key for the account
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if ap.accounts[account] == nil {
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ap.accounts[account], _ = crypto.GenerateKey()
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}
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// Resolve and return the Ethereum address
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return crypto.PubkeyToAddress(ap.accounts[account].PublicKey)
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}
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// sign calculates a Clique digital signature for the given block and embeds it
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// back into the header.
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func (ap *testerAccountPool) sign(header *types.Header, signer string) {
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// Ensure we have a persistent key for the signer
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if ap.accounts[signer] == nil {
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ap.accounts[signer], _ = crypto.GenerateKey()
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}
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// Sign the header and embed the signature in extra data
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sig, _ := crypto.Sign(SealHash(header).Bytes(), ap.accounts[signer])
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copy(header.Extra[len(header.Extra)-extraSeal:], sig)
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}
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// testerVote represents a single block signed by a parcitular account, where
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// the account may or may not have cast a Clique vote.
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type testerVote struct {
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signer string
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voted string
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auth bool
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checkpoint []string
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newbatch bool
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}
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// Tests that Clique signer voting is evaluated correctly for various simple and
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// complex scenarios, as well as that a few special corner cases fail correctly.
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func TestClique(t *testing.T) {
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// Define the various voting scenarios to test
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tests := []struct {
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epoch uint64
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signers []string
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votes []testerVote
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results []string
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failure error
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}{
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{
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// Single signer, no votes cast
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signers: []string{"A"},
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votes: []testerVote{{signer: "A"}},
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results: []string{"A"},
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}, {
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// Single signer, voting to add two others (only accept first, second needs 2 votes)
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signers: []string{"A"},
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votes: []testerVote{
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{signer: "A", voted: "B", auth: true},
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{signer: "B"},
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{signer: "A", voted: "C", auth: true},
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},
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results: []string{"A", "B"},
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}, {
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// Two signers, voting to add three others (only accept first two, third needs 3 votes already)
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: true},
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{signer: "B", voted: "C", auth: true},
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{signer: "A", voted: "D", auth: true},
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{signer: "B", voted: "D", auth: true},
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{signer: "C"},
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{signer: "A", voted: "E", auth: true},
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{signer: "B", voted: "E", auth: true},
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},
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results: []string{"A", "B", "C", "D"},
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}, {
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// Single signer, dropping itself (weird, but one less cornercase by explicitly allowing this)
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signers: []string{"A"},
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votes: []testerVote{
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{signer: "A", voted: "A", auth: false},
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},
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results: []string{},
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}, {
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// Two signers, actually needing mutual consent to drop either of them (not fulfilled)
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "B", auth: false},
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},
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results: []string{"A", "B"},
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}, {
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// Two signers, actually needing mutual consent to drop either of them (fulfilled)
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "B", auth: false},
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{signer: "B", voted: "B", auth: false},
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},
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results: []string{"A"},
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}, {
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// Three signers, two of them deciding to drop the third
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signers: []string{"A", "B", "C"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: false},
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{signer: "B", voted: "C", auth: false},
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},
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results: []string{"A", "B"},
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}, {
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// Four signers, consensus of two not being enough to drop anyone
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signers: []string{"A", "B", "C", "D"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: false},
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{signer: "B", voted: "C", auth: false},
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},
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results: []string{"A", "B", "C", "D"},
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}, {
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// Four signers, consensus of three already being enough to drop someone
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signers: []string{"A", "B", "C", "D"},
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votes: []testerVote{
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{signer: "A", voted: "D", auth: false},
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{signer: "B", voted: "D", auth: false},
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{signer: "C", voted: "D", auth: false},
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},
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results: []string{"A", "B", "C"},
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}, {
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// Authorizations are counted once per signer per target
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: true},
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{signer: "B"},
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{signer: "A", voted: "C", auth: true},
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{signer: "B"},
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{signer: "A", voted: "C", auth: true},
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},
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results: []string{"A", "B"},
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}, {
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// Authorizing multiple accounts concurrently is permitted
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: true},
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{signer: "B"},
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{signer: "A", voted: "D", auth: true},
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{signer: "B"},
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{signer: "A"},
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{signer: "B", voted: "D", auth: true},
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{signer: "A"},
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{signer: "B", voted: "C", auth: true},
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},
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results: []string{"A", "B", "C", "D"},
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}, {
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// Deauthorizations are counted once per signer per target
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "B", auth: false},
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{signer: "B"},
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{signer: "A", voted: "B", auth: false},
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{signer: "B"},
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{signer: "A", voted: "B", auth: false},
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},
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results: []string{"A", "B"},
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}, {
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// Deauthorizing multiple accounts concurrently is permitted
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signers: []string{"A", "B", "C", "D"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: false},
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{signer: "B"},
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{signer: "C"},
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{signer: "A", voted: "D", auth: false},
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{signer: "B"},
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{signer: "C"},
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{signer: "A"},
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{signer: "B", voted: "D", auth: false},
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{signer: "C", voted: "D", auth: false},
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{signer: "A"},
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{signer: "B", voted: "C", auth: false},
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},
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results: []string{"A", "B"},
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}, {
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// Votes from deauthorized signers are discarded immediately (deauth votes)
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signers: []string{"A", "B", "C"},
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votes: []testerVote{
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{signer: "C", voted: "B", auth: false},
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{signer: "A", voted: "C", auth: false},
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{signer: "B", voted: "C", auth: false},
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{signer: "A", voted: "B", auth: false},
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},
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results: []string{"A", "B"},
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}, {
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// Votes from deauthorized signers are discarded immediately (auth votes)
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signers: []string{"A", "B", "C"},
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votes: []testerVote{
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{signer: "C", voted: "D", auth: true},
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{signer: "A", voted: "C", auth: false},
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{signer: "B", voted: "C", auth: false},
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{signer: "A", voted: "D", auth: true},
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},
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results: []string{"A", "B"},
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}, {
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// Cascading changes are not allowed, only the account being voted on may change
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signers: []string{"A", "B", "C", "D"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: false},
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{signer: "B"},
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{signer: "C"},
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{signer: "A", voted: "D", auth: false},
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{signer: "B", voted: "C", auth: false},
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{signer: "C"},
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{signer: "A"},
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{signer: "B", voted: "D", auth: false},
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{signer: "C", voted: "D", auth: false},
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},
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results: []string{"A", "B", "C"},
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}, {
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// Changes reaching consensus out of bounds (via a deauth) execute on touch
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signers: []string{"A", "B", "C", "D"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: false},
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{signer: "B"},
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{signer: "C"},
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{signer: "A", voted: "D", auth: false},
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{signer: "B", voted: "C", auth: false},
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{signer: "C"},
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{signer: "A"},
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{signer: "B", voted: "D", auth: false},
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{signer: "C", voted: "D", auth: false},
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{signer: "A"},
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{signer: "C", voted: "C", auth: true},
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},
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results: []string{"A", "B"},
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}, {
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// Changes reaching consensus out of bounds (via a deauth) may go out of consensus on first touch
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signers: []string{"A", "B", "C", "D"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: false},
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{signer: "B"},
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{signer: "C"},
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{signer: "A", voted: "D", auth: false},
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{signer: "B", voted: "C", auth: false},
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{signer: "C"},
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{signer: "A"},
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{signer: "B", voted: "D", auth: false},
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{signer: "C", voted: "D", auth: false},
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{signer: "A"},
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{signer: "B", voted: "C", auth: true},
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},
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results: []string{"A", "B", "C"},
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}, {
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// Ensure that pending votes don't survive authorization status changes. This
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// corner case can only appear if a signer is quickly added, removed and then
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// readded (or the inverse), while one of the original voters dropped. If a
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// past vote is left cached in the system somewhere, this will interfere with
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// the final signer outcome.
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signers: []string{"A", "B", "C", "D", "E"},
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votes: []testerVote{
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{signer: "A", voted: "F", auth: true}, // Authorize F, 3 votes needed
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{signer: "B", voted: "F", auth: true},
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{signer: "C", voted: "F", auth: true},
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{signer: "D", voted: "F", auth: false}, // Deauthorize F, 4 votes needed (leave A's previous vote "unchanged")
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{signer: "E", voted: "F", auth: false},
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{signer: "B", voted: "F", auth: false},
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{signer: "C", voted: "F", auth: false},
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{signer: "D", voted: "F", auth: true}, // Almost authorize F, 2/3 votes needed
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{signer: "E", voted: "F", auth: true},
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{signer: "B", voted: "A", auth: false}, // Deauthorize A, 3 votes needed
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{signer: "C", voted: "A", auth: false},
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{signer: "D", voted: "A", auth: false},
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{signer: "B", voted: "F", auth: true}, // Finish authorizing F, 3/3 votes needed
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},
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results: []string{"B", "C", "D", "E", "F"},
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}, {
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// Epoch transitions reset all votes to allow chain checkpointing
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epoch: 3,
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A", voted: "C", auth: true},
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{signer: "B"},
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{signer: "A", checkpoint: []string{"A", "B"}},
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{signer: "B", voted: "C", auth: true},
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},
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results: []string{"A", "B"},
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}, {
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// An unauthorized signer should not be able to sign blocks
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signers: []string{"A"},
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votes: []testerVote{
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{signer: "B"},
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},
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failure: errUnauthorizedSigner,
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}, {
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// An authorized signer that signed recenty should not be able to sign again
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signers: []string{"A", "B"},
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votes: []testerVote{
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{signer: "A"},
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{signer: "A"},
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},
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failure: errRecentlySigned,
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}, {
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// Recent signatures should not reset on checkpoint blocks imported in a batch
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epoch: 3,
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signers: []string{"A", "B", "C"},
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votes: []testerVote{
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{signer: "A"},
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{signer: "B"},
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{signer: "A", checkpoint: []string{"A", "B", "C"}},
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{signer: "A"},
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},
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failure: errRecentlySigned,
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}, {
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// Recent signatures should not reset on checkpoint blocks imported in a new
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// batch (https://github.com/ethereum/go-ethereum/issues/17593). Whilst this
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// seems overly specific and weird, it was a Rinkeby consensus split.
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epoch: 3,
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signers: []string{"A", "B", "C"},
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votes: []testerVote{
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{signer: "A"},
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{signer: "B"},
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{signer: "A", checkpoint: []string{"A", "B", "C"}},
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{signer: "A", newbatch: true},
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},
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failure: errRecentlySigned,
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},
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}
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// Run through the scenarios and test them
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for i, tt := range tests {
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// Create the account pool and generate the initial set of signers
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accounts := newTesterAccountPool()
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signers := make([]common.Address, len(tt.signers))
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for j, signer := range tt.signers {
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signers[j] = accounts.address(signer)
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}
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for j := 0; j < len(signers); j++ {
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for k := j + 1; k < len(signers); k++ {
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if bytes.Compare(signers[j][:], signers[k][:]) > 0 {
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signers[j], signers[k] = signers[k], signers[j]
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}
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}
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}
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// Create the genesis block with the initial set of signers
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genesis := &core.Genesis{
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ExtraData: make([]byte, extraVanity+common.AddressLength*len(signers)+extraSeal),
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BaseFee: big.NewInt(params.InitialBaseFee),
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}
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for j, signer := range signers {
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copy(genesis.ExtraData[extraVanity+j*common.AddressLength:], signer[:])
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}
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// Create a pristine blockchain with the genesis injected
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db := rawdb.NewMemoryDatabase()
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genesisBlock := genesis.MustCommit(db)
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// Assemble a chain of headers from the cast votes
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config := *params.TestChainConfig
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config.Clique = ¶ms.CliqueConfig{
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Period: 1,
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Epoch: tt.epoch,
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}
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engine := New(config.Clique, db)
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engine.fakeDiff = true
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blocks, _ := core.GenerateChain(&config, genesisBlock, engine, db, len(tt.votes), func(j int, gen *core.BlockGen) {
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// Cast the vote contained in this block
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gen.SetCoinbase(accounts.address(tt.votes[j].voted))
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if tt.votes[j].auth {
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var nonce types.BlockNonce
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copy(nonce[:], nonceAuthVote)
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gen.SetNonce(nonce)
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}
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})
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// Iterate through the blocks and seal them individually
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for j, block := range blocks {
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// Get the header and prepare it for signing
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header := block.Header()
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if j > 0 {
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header.ParentHash = blocks[j-1].Hash()
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}
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header.Extra = make([]byte, extraVanity+extraSeal)
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if auths := tt.votes[j].checkpoint; auths != nil {
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header.Extra = make([]byte, extraVanity+len(auths)*common.AddressLength+extraSeal)
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accounts.checkpoint(header, auths)
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}
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header.Difficulty = diffInTurn // Ignored, we just need a valid number
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// Generate the signature, embed it into the header and the block
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accounts.sign(header, tt.votes[j].signer)
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blocks[j] = block.WithSeal(header)
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}
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// Split the blocks up into individual import batches (cornercase testing)
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batches := [][]*types.Block{nil}
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for j, block := range blocks {
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if tt.votes[j].newbatch {
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batches = append(batches, nil)
|
|
}
|
|
batches[len(batches)-1] = append(batches[len(batches)-1], block)
|
|
}
|
|
// Pass all the headers through clique and ensure tallying succeeds
|
|
chain, err := core.NewBlockChain(db, nil, &config, engine, vm.Config{}, nil, nil)
|
|
if err != nil {
|
|
t.Errorf("test %d: failed to create test chain: %v", i, err)
|
|
continue
|
|
}
|
|
failed := false
|
|
for j := 0; j < len(batches)-1; j++ {
|
|
if k, err := chain.InsertChain(batches[j]); err != nil {
|
|
t.Errorf("test %d: failed to import batch %d, block %d: %v", i, j, k, err)
|
|
failed = true
|
|
break
|
|
}
|
|
}
|
|
if failed {
|
|
continue
|
|
}
|
|
if _, err = chain.InsertChain(batches[len(batches)-1]); err != tt.failure {
|
|
t.Errorf("test %d: failure mismatch: have %v, want %v", i, err, tt.failure)
|
|
}
|
|
if tt.failure != nil {
|
|
continue
|
|
}
|
|
// No failure was produced or requested, generate the final voting snapshot
|
|
head := blocks[len(blocks)-1]
|
|
|
|
snap, err := engine.snapshot(chain, head.NumberU64(), head.Hash(), nil)
|
|
if err != nil {
|
|
t.Errorf("test %d: failed to retrieve voting snapshot: %v", i, err)
|
|
continue
|
|
}
|
|
// Verify the final list of signers against the expected ones
|
|
signers = make([]common.Address, len(tt.results))
|
|
for j, signer := range tt.results {
|
|
signers[j] = accounts.address(signer)
|
|
}
|
|
for j := 0; j < len(signers); j++ {
|
|
for k := j + 1; k < len(signers); k++ {
|
|
if bytes.Compare(signers[j][:], signers[k][:]) > 0 {
|
|
signers[j], signers[k] = signers[k], signers[j]
|
|
}
|
|
}
|
|
}
|
|
result := snap.signers()
|
|
if len(result) != len(signers) {
|
|
t.Errorf("test %d: signers mismatch: have %x, want %x", i, result, signers)
|
|
continue
|
|
}
|
|
for j := 0; j < len(result); j++ {
|
|
if !bytes.Equal(result[j][:], signers[j][:]) {
|
|
t.Errorf("test %d, signer %d: signer mismatch: have %x, want %x", i, j, result[j], signers[j])
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|