189 lines
5.3 KiB
Go
189 lines
5.3 KiB
Go
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package blockcache
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import (
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"errors"
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"fmt"
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"sync"
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"testing"
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"github.com/btcsuite/btcd/chaincfg/chainhash"
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"github.com/btcsuite/btcd/wire"
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"github.com/btcsuite/btcutil"
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"github.com/lightninglabs/neutrino/cache"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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type mockChainBackend struct {
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blocks map[chainhash.Hash]*wire.MsgBlock
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chainCallCount int
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sync.RWMutex
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}
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func (m *mockChainBackend) addBlock(block *wire.MsgBlock, nonce uint32) {
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m.Lock()
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defer m.Unlock()
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block.Header.Nonce = nonce
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hash := block.Header.BlockHash()
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m.blocks[hash] = block
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}
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func (m *mockChainBackend) GetBlock(blockHash *chainhash.Hash) (*wire.MsgBlock, error) {
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m.RLock()
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defer m.RUnlock()
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m.chainCallCount++
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block, ok := m.blocks[*blockHash]
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if !ok {
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return nil, fmt.Errorf("block not found")
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}
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return block, nil
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}
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func newMockChain() *mockChainBackend {
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return &mockChainBackend{
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blocks: make(map[chainhash.Hash]*wire.MsgBlock),
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}
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}
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func (m *mockChainBackend) resetChainCallCount() {
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m.RLock()
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defer m.RUnlock()
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m.chainCallCount = 0
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}
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// TestBlockCacheGetBlock tests that the block Cache works correctly as a LFU block
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// Cache for the given max capacity.
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func TestBlockCacheGetBlock(t *testing.T) {
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mc := newMockChain()
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getBlockImpl := mc.GetBlock
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block1 := &wire.MsgBlock{Header: wire.BlockHeader{Nonce: 1}}
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block2 := &wire.MsgBlock{Header: wire.BlockHeader{Nonce: 2}}
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block3 := &wire.MsgBlock{Header: wire.BlockHeader{Nonce: 3}}
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blockhash1 := block1.BlockHash()
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blockhash2 := block2.BlockHash()
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blockhash3 := block3.BlockHash()
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inv1 := wire.NewInvVect(wire.InvTypeWitnessBlock, &blockhash1)
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inv2 := wire.NewInvVect(wire.InvTypeWitnessBlock, &blockhash2)
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inv3 := wire.NewInvVect(wire.InvTypeWitnessBlock, &blockhash3)
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// Determine the size of one of the blocks.
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sz, _ := (&cache.CacheableBlock{Block: btcutil.NewBlock(block1)}).Size()
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// A new Cache is set up with a capacity of 2 blocks
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bc := NewBlockCache(2 * sz)
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mc.addBlock(&wire.MsgBlock{}, 1)
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mc.addBlock(&wire.MsgBlock{}, 2)
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mc.addBlock(&wire.MsgBlock{}, 3)
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// We expect the initial Cache to be empty
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require.Equal(t, 0, bc.Cache.Len())
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// After calling getBlock for block1, it is expected that the Cache
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// will have a size of 1 and will contain block1. One chain backends
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// call is expected to fetch the block.
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_, err := bc.GetBlock(&blockhash1, getBlockImpl)
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require.NoError(t, err)
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require.Equal(t, 1, bc.Cache.Len())
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require.Equal(t, 1, mc.chainCallCount)
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mc.resetChainCallCount()
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_, err = bc.Cache.Get(*inv1)
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require.NoError(t, err)
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// After calling getBlock for block2, it is expected that the Cache
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// will have a size of 2 and will contain both block1 and block2.
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// One chain backends call is expected to fetch the block.
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_, err = bc.GetBlock(&blockhash2, getBlockImpl)
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require.NoError(t, err)
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require.Equal(t, 2, bc.Cache.Len())
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require.Equal(t, 1, mc.chainCallCount)
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mc.resetChainCallCount()
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_, err = bc.Cache.Get(*inv1)
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require.NoError(t, err)
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_, err = bc.Cache.Get(*inv2)
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require.NoError(t, err)
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// getBlock is called again for block1 to make block2 the LFU block.
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// No call to the chain backend is expected since block 1 is already
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// in the Cache.
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_, err = bc.GetBlock(&blockhash1, getBlockImpl)
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require.NoError(t, err)
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require.Equal(t, 2, bc.Cache.Len())
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require.Equal(t, 0, mc.chainCallCount)
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mc.resetChainCallCount()
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// Since the Cache is now at its max capacity, it is expected that when
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// getBlock is called for a new block then the LFU block will be
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// evicted. It is expected that block2 will be evicted. After calling
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// Getblock for block3, it is expected that the Cache will have a
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// length of 2 and will contain block 1 and 3.
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_, err = bc.GetBlock(&blockhash3, getBlockImpl)
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require.NoError(t, err)
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require.Equal(t, 2, bc.Cache.Len())
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require.Equal(t, 1, mc.chainCallCount)
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mc.resetChainCallCount()
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_, err = bc.Cache.Get(*inv1)
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require.NoError(t, err)
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_, err = bc.Cache.Get(*inv2)
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require.True(t, errors.Is(err, cache.ErrElementNotFound))
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_, err = bc.Cache.Get(*inv3)
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require.NoError(t, err)
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}
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// TestBlockCacheMutexes is used to test that concurrent calls to GetBlock with
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// the same block hash does not result in multiple calls to the chain backend.
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// In other words this tests the HashMutex.
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func TestBlockCacheMutexes(t *testing.T) {
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mc := newMockChain()
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getBlockImpl := mc.GetBlock
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block1 := &wire.MsgBlock{Header: wire.BlockHeader{Nonce: 1}}
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block2 := &wire.MsgBlock{Header: wire.BlockHeader{Nonce: 2}}
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blockhash1 := block1.BlockHash()
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blockhash2 := block2.BlockHash()
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// Determine the size of the block.
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sz, _ := (&cache.CacheableBlock{Block: btcutil.NewBlock(block1)}).Size()
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// A new Cache is set up with a capacity of 2 blocks
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bc := NewBlockCache(2 * sz)
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mc.addBlock(&wire.MsgBlock{}, 1)
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mc.addBlock(&wire.MsgBlock{}, 2)
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// Spin off multiple go routines and ensure that concurrent calls to the
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// GetBlock method does not result in multiple calls to the chain
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// backend.
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var wg sync.WaitGroup
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for i := 0; i < 100; i++ {
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wg.Add(1)
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go func(e int) {
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if e%2 == 0 {
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_, err := bc.GetBlock(&blockhash1, getBlockImpl)
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assert.NoError(t, err)
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} else {
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_, err := bc.GetBlock(&blockhash2, getBlockImpl)
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assert.NoError(t, err)
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}
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wg.Done()
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}(i)
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}
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wg.Wait()
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require.Equal(t, 2, mc.chainCallCount)
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}
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