package blockchain
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import (
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"bytes"
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"fmt"
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"io/ioutil"
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"runtime/debug"
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"strings"
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"testing"
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"time"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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wire "github.com/tendermint/go-wire"
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"github.com/tendermint/tmlibs/db"
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"github.com/tendermint/tmlibs/log"
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"github.com/tendermint/tendermint/types"
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)
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func TestLoadBlockStoreStateJSON(t *testing.T) {
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db := db.NewMemDB()
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bsj := &BlockStoreStateJSON{Height: 1000}
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bsj.Save(db)
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retrBSJ := LoadBlockStoreStateJSON(db)
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assert.Equal(t, *bsj, retrBSJ, "expected the retrieved DBs to match")
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}
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func TestNewBlockStore(t *testing.T) {
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db := db.NewMemDB()
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db.Set(blockStoreKey, []byte(`{"height": 10000}`))
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bs := NewBlockStore(db)
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assert.Equal(t, bs.Height(), int64(10000), "failed to properly parse blockstore")
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panicCausers := []struct {
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data []byte
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wantErr string
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}{
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{[]byte("artful-doger"), "not unmarshal bytes"},
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{[]byte(" "), "unmarshal bytes"},
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}
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for i, tt := range panicCausers {
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// Expecting a panic here on trying to parse an invalid blockStore
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_, _, panicErr := doFn(func() (interface{}, error) {
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db.Set(blockStoreKey, tt.data)
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_ = NewBlockStore(db)
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return nil, nil
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})
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require.NotNil(t, panicErr, "#%d panicCauser: %q expected a panic", i, tt.data)
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assert.Contains(t, panicErr.Error(), tt.wantErr, "#%d data: %q", i, tt.data)
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}
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db.Set(blockStoreKey, nil)
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bs = NewBlockStore(db)
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assert.Equal(t, bs.Height(), int64(0), "expecting nil bytes to be unmarshaled alright")
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}
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func TestBlockStoreGetReader(t *testing.T) {
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db := db.NewMemDB()
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// Initial setup
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db.Set([]byte("Foo"), []byte("Bar"))
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db.Set([]byte("Foo1"), nil)
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bs := NewBlockStore(db)
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tests := [...]struct {
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key []byte
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want []byte
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}{
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0: {key: []byte("Foo"), want: []byte("Bar")},
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1: {key: []byte("KnoxNonExistent"), want: nil},
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2: {key: []byte("Foo1"), want: []byte{}},
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}
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for i, tt := range tests {
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r := bs.GetReader(tt.key)
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if r == nil {
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assert.Nil(t, tt.want, "#%d: expected a non-nil reader", i)
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continue
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}
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slurp, err := ioutil.ReadAll(r)
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if err != nil {
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t.Errorf("#%d: unexpected Read err: %v", i, err)
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} else {
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assert.Equal(t, slurp, tt.want, "#%d: mismatch", i)
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}
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}
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}
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func freshBlockStore() (*BlockStore, db.DB) {
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db := db.NewMemDB()
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return NewBlockStore(db), db
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}
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var (
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state, _ = makeStateAndBlockStore(log.NewTMLogger(new(bytes.Buffer)))
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block = makeBlock(1, state)
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partSet = block.MakePartSet(2)
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part1 = partSet.GetPart(0)
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part2 = partSet.GetPart(1)
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seenCommit1 = &types.Commit{Precommits: []*types.Vote{{Height: 10,
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Timestamp: time.Now().UTC()}}}
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)
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// TODO: This test should be simplified ...
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func TestBlockStoreSaveLoadBlock(t *testing.T) {
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state, bs := makeStateAndBlockStore(log.NewTMLogger(new(bytes.Buffer)))
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require.Equal(t, bs.Height(), int64(0), "initially the height should be zero")
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// check there are no blocks at various heights
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noBlockHeights := []int64{0, -1, 100, 1000, 2}
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for i, height := range noBlockHeights {
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if g := bs.LoadBlock(height); g != nil {
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t.Errorf("#%d: height(%d) got a block; want nil", i, height)
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}
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}
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// save a block
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block := makeBlock(bs.Height()+1, state)
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validPartSet := block.MakePartSet(2)
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seenCommit := &types.Commit{Precommits: []*types.Vote{{Height: 10,
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Timestamp: time.Now().UTC()}}}
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bs.SaveBlock(block, partSet, seenCommit)
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require.Equal(t, bs.Height(), block.Header.Height, "expecting the new height to be changed")
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incompletePartSet := types.NewPartSetFromHeader(types.PartSetHeader{Total: 2})
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uncontiguousPartSet := types.NewPartSetFromHeader(types.PartSetHeader{Total: 0})
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uncontiguousPartSet.AddPart(part2, false)
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header1 := types.Header{
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Height: 1,
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NumTxs: 100,
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ChainID: "block_test",
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Time: time.Now(),
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}
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header2 := header1
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header2.Height = 4
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// End of setup, test data
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commitAtH10 := &types.Commit{Precommits: []*types.Vote{{Height: 10,
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Timestamp: time.Now().UTC()}}}
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tuples := []struct {
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block *types.Block
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parts *types.PartSet
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seenCommit *types.Commit
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wantErr bool
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wantPanic string
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corruptBlockInDB bool
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corruptCommitInDB bool
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corruptSeenCommitInDB bool
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eraseCommitInDB bool
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eraseSeenCommitInDB bool
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}{
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{
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block: newBlock(&header1, commitAtH10),
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parts: validPartSet,
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seenCommit: seenCommit1,
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},
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{
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block: nil,
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wantPanic: "only save a non-nil block",
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},
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{
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block: newBlock(&header2, commitAtH10),
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parts: uncontiguousPartSet,
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wantPanic: "only save contiguous blocks", // and incomplete and uncontiguous parts
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},
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{
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block: newBlock(&header1, commitAtH10),
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parts: incompletePartSet,
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wantPanic: "only save complete block", // incomplete parts
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},
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{
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block: newBlock(&header1, commitAtH10),
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parts: validPartSet,
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seenCommit: seenCommit1,
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corruptCommitInDB: true, // Corrupt the DB's commit entry
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wantPanic: "rror reading commit",
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},
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{
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block: newBlock(&header1, commitAtH10),
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parts: validPartSet,
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seenCommit: seenCommit1,
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wantPanic: "rror reading block",
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corruptBlockInDB: true, // Corrupt the DB's block entry
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},
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{
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block: newBlock(&header1, commitAtH10),
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parts: validPartSet,
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seenCommit: seenCommit1,
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// Expecting no error and we want a nil back
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eraseSeenCommitInDB: true,
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},
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{
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block: newBlock(&header1, commitAtH10),
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parts: validPartSet,
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seenCommit: seenCommit1,
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corruptSeenCommitInDB: true,
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wantPanic: "rror reading commit",
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},
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{
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block: newBlock(&header1, commitAtH10),
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parts: validPartSet,
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seenCommit: seenCommit1,
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// Expecting no error and we want a nil back
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eraseCommitInDB: true,
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},
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}
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type quad struct {
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block *types.Block
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commit *types.Commit
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meta *types.BlockMeta
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seenCommit *types.Commit
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}
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for i, tuple := range tuples {
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bs, db := freshBlockStore()
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// SaveBlock
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res, err, panicErr := doFn(func() (interface{}, error) {
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bs.SaveBlock(tuple.block, tuple.parts, tuple.seenCommit)
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if tuple.block == nil {
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return nil, nil
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}
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if tuple.corruptBlockInDB {
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db.Set(calcBlockMetaKey(tuple.block.Height), []byte("block-bogus"))
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}
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bBlock := bs.LoadBlock(tuple.block.Height)
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bBlockMeta := bs.LoadBlockMeta(tuple.block.Height)
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if tuple.eraseSeenCommitInDB {
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db.Delete(calcSeenCommitKey(tuple.block.Height))
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}
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if tuple.corruptSeenCommitInDB {
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db.Set(calcSeenCommitKey(tuple.block.Height), []byte("bogus-seen-commit"))
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}
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bSeenCommit := bs.LoadSeenCommit(tuple.block.Height)
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commitHeight := tuple.block.Height - 1
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if tuple.eraseCommitInDB {
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db.Delete(calcBlockCommitKey(commitHeight))
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}
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if tuple.corruptCommitInDB {
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db.Set(calcBlockCommitKey(commitHeight), []byte("foo-bogus"))
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}
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bCommit := bs.LoadBlockCommit(commitHeight)
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return &quad{block: bBlock, seenCommit: bSeenCommit, commit: bCommit,
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meta: bBlockMeta}, nil
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})
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if subStr := tuple.wantPanic; subStr != "" {
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if panicErr == nil {
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t.Errorf("#%d: want a non-nil panic", i)
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} else if got := panicErr.Error(); !strings.Contains(got, subStr) {
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t.Errorf("#%d:\n\tgotErr: %q\nwant substring: %q", i, got, subStr)
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}
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continue
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}
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if tuple.wantErr {
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if err == nil {
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t.Errorf("#%d: got nil error", i)
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}
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continue
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}
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assert.Nil(t, panicErr, "#%d: unexpected panic", i)
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assert.Nil(t, err, "#%d: expecting a non-nil error", i)
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qua, ok := res.(*quad)
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if !ok || qua == nil {
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t.Errorf("#%d: got nil quad back; gotType=%T", i, res)
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continue
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}
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if tuple.eraseSeenCommitInDB {
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assert.Nil(t, qua.seenCommit,
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"erased the seenCommit in the DB hence we should get back a nil seenCommit")
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}
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if tuple.eraseCommitInDB {
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assert.Nil(t, qua.commit,
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"erased the commit in the DB hence we should get back a nil commit")
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}
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}
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}
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func binarySerializeIt(v interface{}) []byte {
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var n int
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var err error
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buf := new(bytes.Buffer)
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wire.WriteBinary(v, buf, &n, &err)
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return buf.Bytes()
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}
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func TestLoadBlockPart(t *testing.T) {
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bs, db := freshBlockStore()
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height, index := int64(10), 1
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loadPart := func() (interface{}, error) {
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part := bs.LoadBlockPart(height, index)
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return part, nil
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}
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// Initially no contents.
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// 1. Requesting for a non-existent block shouldn't fail
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res, _, panicErr := doFn(loadPart)
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require.Nil(t, panicErr, "a non-existent block part shouldn't cause a panic")
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require.Nil(t, res, "a non-existent block part should return nil")
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// 2. Next save a corrupted block then try to load it
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db.Set(calcBlockPartKey(height, index), []byte("Tendermint"))
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res, _, panicErr = doFn(loadPart)
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require.NotNil(t, panicErr, "expecting a non-nil panic")
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require.Contains(t, panicErr.Error(), "Error reading block part")
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// 3. A good block serialized and saved to the DB should be retrievable
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db.Set(calcBlockPartKey(height, index), binarySerializeIt(part1))
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gotPart, _, panicErr := doFn(loadPart)
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require.Nil(t, panicErr, "an existent and proper block should not panic")
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require.Nil(t, res, "a properly saved block should return a proper block")
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require.Equal(t, gotPart.(*types.Part).Hash(), part1.Hash(),
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"expecting successful retrieval of previously saved block")
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}
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func TestLoadBlockMeta(t *testing.T) {
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bs, db := freshBlockStore()
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height := int64(10)
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loadMeta := func() (interface{}, error) {
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meta := bs.LoadBlockMeta(height)
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return meta, nil
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}
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// Initially no contents.
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// 1. Requesting for a non-existent blockMeta shouldn't fail
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res, _, panicErr := doFn(loadMeta)
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require.Nil(t, panicErr, "a non-existent blockMeta shouldn't cause a panic")
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require.Nil(t, res, "a non-existent blockMeta should return nil")
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// 2. Next save a corrupted blockMeta then try to load it
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db.Set(calcBlockMetaKey(height), []byte("Tendermint-Meta"))
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res, _, panicErr = doFn(loadMeta)
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require.NotNil(t, panicErr, "expecting a non-nil panic")
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require.Contains(t, panicErr.Error(), "Error reading block meta")
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// 3. A good blockMeta serialized and saved to the DB should be retrievable
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meta := &types.BlockMeta{}
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db.Set(calcBlockMetaKey(height), binarySerializeIt(meta))
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gotMeta, _, panicErr := doFn(loadMeta)
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require.Nil(t, panicErr, "an existent and proper block should not panic")
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require.Nil(t, res, "a properly saved blockMeta should return a proper blocMeta ")
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require.Equal(t, binarySerializeIt(meta), binarySerializeIt(gotMeta),
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"expecting successful retrieval of previously saved blockMeta")
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}
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func TestBlockFetchAtHeight(t *testing.T) {
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state, bs := makeStateAndBlockStore(log.NewTMLogger(new(bytes.Buffer)))
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require.Equal(t, bs.Height(), int64(0), "initially the height should be zero")
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block := makeBlock(bs.Height()+1, state)
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partSet := block.MakePartSet(2)
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seenCommit := &types.Commit{Precommits: []*types.Vote{{Height: 10,
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Timestamp: time.Now().UTC()}}}
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bs.SaveBlock(block, partSet, seenCommit)
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require.Equal(t, bs.Height(), block.Header.Height, "expecting the new height to be changed")
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blockAtHeight := bs.LoadBlock(bs.Height())
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require.Equal(t, block.Hash(), blockAtHeight.Hash(),
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"expecting a successful load of the last saved block")
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blockAtHeightPlus1 := bs.LoadBlock(bs.Height() + 1)
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require.Nil(t, blockAtHeightPlus1, "expecting an unsuccessful load of Height()+1")
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blockAtHeightPlus2 := bs.LoadBlock(bs.Height() + 2)
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require.Nil(t, blockAtHeightPlus2, "expecting an unsuccessful load of Height()+2")
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}
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func doFn(fn func() (interface{}, error)) (res interface{}, err error, panicErr error) {
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defer func() {
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if r := recover(); r != nil {
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switch e := r.(type) {
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case error:
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panicErr = e
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case string:
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panicErr = fmt.Errorf("%s", e)
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default:
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if st, ok := r.(fmt.Stringer); ok {
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panicErr = fmt.Errorf("%s", st)
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} else {
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panicErr = fmt.Errorf("%s", debug.Stack())
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}
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}
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}
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}()
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res, err = fn()
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return res, err, panicErr
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}
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func newBlock(hdr *types.Header, lastCommit *types.Commit) *types.Block {
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return &types.Block{
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Header: hdr,
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LastCommit: lastCommit,
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}
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}
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