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tx_payload_test.go
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tx_payload_test.go
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// +build unit
package wavelet
import (
"fmt"
"testing"
"github.com/perlin-network/noise/skademlia"
"github.com/perlin-network/wavelet/sys"
"github.com/stretchr/testify/assert"
)
func TestParseTransfer(t *testing.T) {
tf := validTransfer(t)
payload, err := tf.Marshal()
if !assert.NoError(t, err) {
return
}
tf2, err := ParseTransfer(payload)
assert.NoError(t, err)
assert.Equal(t, tf, tf2)
// FuncParams is optional
tfNoFuncParams, err := ParseTransfer(payload[:SizeAccountID+8+8+8+4+len(tf.FuncName)])
assert.NoError(t, err)
tf.FuncParams = nil
assert.Equal(t, tf, tfNoFuncParams)
// FuncName is optional
tfNoFuncName, err := ParseTransfer(payload[:SizeAccountID+8+8+8])
assert.NoError(t, err)
tf.FuncName = nil
assert.Equal(t, tf, tfNoFuncName)
// GasDeposit is optional
tfNoGasDeposit, err := ParseTransfer(payload[:SizeAccountID+8+8])
assert.NoError(t, err)
tf.GasDeposit = 0
assert.Equal(t, tf, tfNoGasDeposit)
// GasLimit is optional
tfNoGasLimit, err := ParseTransfer(payload[:SizeAccountID+8])
assert.NoError(t, err)
tf.GasLimit = 0
assert.Equal(t, tf, tfNoGasLimit)
}
func TestParseTransfer_Errors(t *testing.T) {
tests := []struct {
Err string
Payload func(tf Transfer) []byte
}{
{
"failed to decode recipient",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID-1]
},
},
{
"failed to decode amount of PERLs to send",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+7]
},
},
{
"failed to decode gas limit",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+8+7]
},
},
{
"failed to decode gas deposit",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+8+8+7]
},
},
{
"failed to decode size of smart contract function name to invoke",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+8+8+8+3]
},
},
{
"gas limit for invoking smart contract function must be greater than zero",
func(tf Transfer) []byte {
tf.GasLimit = 0
payload, _ := tf.Marshal()
return payload
},
},
{
"smart contract function name exceeds 1024 characters",
func(tf Transfer) []byte {
tf.FuncName = make([]byte, 1025)
payload, _ := tf.Marshal()
return payload
},
},
{
"failed to decode smart contract function name to invoke",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+8+8+8+4+len(tf.FuncName)-1]
},
},
{
"not allowed to call init function for smart contract",
func(tf Transfer) []byte {
tf.FuncName = []byte("init")
payload, _ := tf.Marshal()
return payload
},
},
{
"failed to decode number of smart contract function invocation parameters",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+8+8+8+4+len(tf.FuncName)+3]
},
},
{
"smart contract payload exceeds 1MB",
func(tf Transfer) []byte {
tf.FuncParams = make([]byte, (1024*1024)+1)
payload, _ := tf.Marshal()
return payload
},
},
{
"failed to decode smart contract function invocation parameters",
func(tf Transfer) []byte {
payload, _ := tf.Marshal()
return payload[:SizeAccountID+8+8+8+4+len(tf.FuncName)+4+len(tf.FuncParams)-1]
},
},
}
for _, tt := range tests {
tt := tt
t.Run(tt.Err, func(t *testing.T) {
_, err := ParseTransfer(tt.Payload(validTransfer(t)))
if err == nil {
t.Fatal("expecting an error, got nil instead")
}
assert.Contains(t, err.Error(), fmt.Sprintf("transfer: %s", tt.Err))
})
}
}
func TestParseStake(t *testing.T) {
stake := validStake(sys.WithdrawStake)
payload, err := stake.Marshal()
if !assert.NoError(t, err) {
return
}
stake2, err := ParseStake(payload)
assert.NoError(t, err)
assert.Equal(t, stake, stake2)
// PlaceStake and WithdrawStake don't have minimum stake amount
stake.Amount = 1
stake.Opcode = sys.PlaceStake
payload, err = stake.Marshal()
if !assert.NoError(t, err) {
return
}
stakePlace, err := ParseStake(payload)
assert.NoError(t, err)
assert.Equal(t, stake, stakePlace)
stake.Opcode = sys.WithdrawStake
payload, err = stake.Marshal()
if !assert.NoError(t, err) {
return
}
stakeWithdraw, err := ParseStake(payload)
assert.NoError(t, err)
assert.Equal(t, stake, stakeWithdraw)
}
func TestParseStake_Errors(t *testing.T) {
tests := []struct {
Err string
Payload func() []byte
}{
{
"payload must be exactly 9 bytes",
func() []byte {
payload, _ := validStake(sys.WithdrawReward).Marshal()
return payload[:len(payload)-1]
},
},
{
"opcode must be 0, 1, or 2",
func() []byte {
payload, _ := validStake(sys.WithdrawReward + 1).Marshal()
return payload
},
},
{
"amount must be greater than zero",
func() []byte {
stake := validStake(sys.WithdrawReward)
stake.Amount = 0
payload, _ := stake.Marshal()
return payload
},
},
{
"must withdraw a reward of a minimum of 100 PERLs, but requested to withdraw 1 PERLs",
func() []byte {
stake := validStake(sys.WithdrawReward)
stake.Amount = 1
payload, _ := stake.Marshal()
return payload
},
},
}
for _, tt := range tests {
tt := tt
t.Run(tt.Err, func(t *testing.T) {
_, err := ParseStake(tt.Payload())
if err == nil {
t.Fatal("expecting an error, got nil instead")
}
assert.Contains(t, err.Error(), fmt.Sprintf("stake: %s", tt.Err))
})
}
}
func TestParseContract(t *testing.T) {
contract := validContract()
payload, err := contract.Marshal()
if !assert.NoError(t, err) {
return
}
contract2, err := ParseContract(payload)
assert.NoError(t, err)
assert.Equal(t, contract, contract2)
}
func TestParseContract_Errors(t *testing.T) {
tests := []struct {
Err string
Payload func() []byte
}{
{
"failed to decode gas limit",
func() []byte {
payload, _ := validContract().Marshal()
return payload[:7]
},
},
{
"failed to decode gas deposit",
func() []byte {
payload, _ := validContract().Marshal()
return payload[:8+7]
},
},
{
"failed to decode number of smart contract init parameters",
func() []byte {
payload, _ := validContract().Marshal()
return payload[:8+8+3]
},
},
{
"smart contract payload exceeds 1MB",
func() []byte {
contract := validContract()
contract.Params = make([]byte, (1024*1024)+1)
payload, _ := contract.Marshal()
return payload
},
},
{
"gas limit for invoking smart contract function must be greater than zero",
func() []byte {
contract := validContract()
contract.GasLimit = 0
payload, _ := contract.Marshal()
return payload
},
},
{
"failed to decode smart contract init parameters",
func() []byte {
contract := validContract()
payload, _ := contract.Marshal()
return payload[:8+8+4+len(contract.Params)-1]
},
},
{
"smart contract must have code of length greater than zero",
func() []byte {
contract := validContract()
contract.Code = []byte{}
payload, _ := contract.Marshal()
return payload
},
},
}
for _, tt := range tests {
tt := tt
t.Run(tt.Err, func(t *testing.T) {
_, err := ParseContract(tt.Payload())
if err == nil {
t.Fatal("expecting an error, got nil instead")
}
assert.Contains(t, err.Error(), fmt.Sprintf("contract: %s", tt.Err))
})
}
}
func TestParseBatch(t *testing.T) {
batch := validBatch(t)
payload, err := batch.Marshal()
if !assert.NoError(t, err) {
return
}
batch2, err := ParseBatch(payload)
assert.NoError(t, err)
assert.Equal(t, batch, batch2)
}
func TestParseBatch_Errors(t *testing.T) {
tests := []struct {
Err string
Payload func() []byte
}{
{
"failed to decode number of transactions in batch",
func() []byte {
return []byte{}
},
},
{
"size must be greater than zero",
func() []byte {
marshaled, _ := (Batch{}).Marshal()
return marshaled
},
},
{
"could not read tag",
func() []byte {
payload, _ := validBatch(t).Marshal()
return payload[:1]
},
},
{
"entries inside batch cannot be batch transactions themselves",
func() []byte {
batch := validBatch(t)
batch.Tags[0] = uint8(sys.TagBatch)
batch.Payloads[0], _ = batch.Marshal()
marshaled, _ := batch.Marshal()
return marshaled
},
},
{
"could not read payload size",
func() []byte {
payload, _ := validBatch(t).Marshal()
return payload[:1+1+3]
},
},
{
"payload size exceeds 2MB",
func() []byte {
batch := validBatch(t)
batch.Payloads[0] = make([]byte, 2*1024*1024+1)
marshaled, _ := batch.Marshal()
return marshaled
},
},
{
"could not read payload",
func() []byte {
payload, _ := validBatch(t).Marshal()
return payload[:1+1+4+1]
},
},
}
for _, tt := range tests {
tt := tt
t.Run(tt.Err, func(t *testing.T) {
_, err := ParseBatch(tt.Payload())
if err == nil {
t.Fatal("expecting an error, got nil instead")
}
assert.Contains(t, err.Error(), fmt.Sprintf("batch: %s", tt.Err))
})
}
}
func validTransfer(t *testing.T) Transfer {
keys, err := skademlia.NewKeys(sys.SKademliaC1, sys.SKademliaC2)
if err != nil {
t.Fatal(err)
}
return Transfer{
Recipient: keys.PublicKey(),
Amount: 1337,
GasLimit: 42,
GasDeposit: 10,
FuncName: []byte("helloworld"),
FuncParams: []byte("foobar"),
}
}
func validStake(opcode byte) Stake {
return Stake{
Opcode: opcode,
Amount: uint64(1337),
}
}
func validContract() Contract {
return Contract{
GasLimit: 42,
GasDeposit: 10,
Params: []byte("foobar"),
Code: []byte("loremipsumdolorsitamet"),
}
}
func validBatch(t *testing.T) Batch {
var batch Batch
assert.NoError(t, batch.AddTransfer(validTransfer(t)))
assert.NoError(t, batch.AddStake(validStake(sys.PlaceStake)))
assert.NoError(t, batch.AddContract(validContract()))
return batch
}