tendermint/blocks/block_test.go

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package blocks
import (
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"bytes"
. "github.com/tendermint/tendermint/binary"
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. "github.com/tendermint/tendermint/common"
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"testing"
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)
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func randSig() Signature {
return Signature{RandUInt64Exp(), RandBytes(32)}
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}
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func randBaseTx() BaseTx {
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return BaseTx{0, RandUInt64Exp(), randSig()}
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}
func randBlock() *Block {
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// Account Txs
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sendTx := &SendTx{
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BaseTx: randBaseTx(),
To: RandUInt64Exp(),
Amount: RandUInt64Exp(),
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}
nameTx := &NameTx{
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BaseTx: randBaseTx(),
Name: string(RandBytes(12)),
PubKey: RandBytes(32),
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}
// Validation Txs
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bondTx := &BondTx{
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BaseTx: randBaseTx(),
//UnbondTo: RandUInt64Exp(),
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}
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unbondTx := &UnbondTx{
BaseTx: randBaseTx(),
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}
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dupeoutTx := &DupeoutTx{
VoteA: Vote{
Height: RandUInt32Exp(),
Round: RandUInt16Exp(),
Type: VoteTypeBare,
BlockHash: RandBytes(32),
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Signature: randSig(),
},
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VoteB: Vote{
Height: RandUInt32Exp(),
Round: RandUInt16Exp(),
Type: VoteTypeBare,
BlockHash: RandBytes(32),
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Signature: randSig(),
},
}
// Block
block := &Block{
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Header: Header{
Network: "Tendermint",
Height: RandUInt32Exp(),
Fees: RandUInt64Exp(),
Time: RandTime(),
LastBlockHash: RandBytes(32),
StateHash: RandBytes(32),
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},
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Validation: Validation{
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Signatures: []Signature{randSig(), randSig()},
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},
Data: Data{
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Txs: []Tx{sendTx, nameTx, bondTx, unbondTx, dupeoutTx},
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},
}
return block
}
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func TestBlock(t *testing.T) {
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block := randBlock()
// Mutate the block and ensure that the hash changed.
lastHash := block.Hash()
expectChange := func(mutateFn func(b *Block), message string) {
// mutate block
mutateFn(block)
// nuke hashes
block.hash = nil
block.Header.hash = nil
block.Validation.hash = nil
block.Data.hash = nil
// compare
if bytes.Equal(lastHash, block.Hash()) {
t.Error(message)
} else {
lastHash = block.Hash()
}
}
expectChange(func(b *Block) { b.Header.Network = "blah" }, "Expected hash to depend on Network")
expectChange(func(b *Block) { b.Header.Height += 1 }, "Expected hash to depend on Height")
expectChange(func(b *Block) { b.Header.Fees += 1 }, "Expected hash to depend on Fees")
expectChange(func(b *Block) { b.Header.Time = RandTime() }, "Expected hash to depend on Time")
expectChange(func(b *Block) { b.Header.LastBlockHash = RandBytes(32) }, "Expected hash to depend on LastBlockHash")
expectChange(func(b *Block) { b.Header.StateHash = RandBytes(32) }, "Expected hash to depend on StateHash")
expectChange(func(b *Block) { b.Validation.Signatures[0].SignerId += 1 }, "Expected hash to depend on Validation Signature")
expectChange(func(b *Block) { b.Validation.Signatures[0].Bytes = RandBytes(32) }, "Expected hash to depend on Validation Signature")
expectChange(func(b *Block) { b.Data.Txs[0].(*SendTx).SignerId += 1 }, "Expected hash to depend on tx Signature")
expectChange(func(b *Block) { b.Data.Txs[0].(*SendTx).Amount += 1 }, "Expected hash to depend on send tx Amount")
// Write the block, read it in again, check hash.
block1 := randBlock()
block1Bytes := BinaryBytes(block1)
var n int64
var err error
block2 := ReadBlock(bytes.NewReader(block1Bytes), &n, &err)
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if err != nil {
t.Errorf("Reading block failed: %v", err)
}
if !bytes.Equal(block1.Hash(), block2.Hash()) {
t.Errorf("Expected write/read to preserve original hash")
t.Logf("\nBlock1:\n%v", block1)
t.Logf("\nBlock2:\n%v", block2)
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}
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}