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Improvements to the test random library. (#1029)
Signed-off-by: Cody Littley <[email protected]>
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Original file line number | Diff line number | Diff line change |
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@@ -1,27 +1,104 @@ | ||
package random | ||
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import ( | ||
"github.com/ethereum/go-ethereum/crypto" | ||
"github.com/stretchr/testify/assert" | ||
"github.com/stretchr/testify/require" | ||
"math/rand" | ||
"testing" | ||
) | ||
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// Tests that random seeding produces random results, and that consistent seeding produces consistent results | ||
func TestSetup(t *testing.T) { | ||
testRandom1 := NewTestRandom() | ||
testRandom1 := NewTestRandom(t) | ||
x := testRandom1.Int() | ||
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testRandom2 := NewTestRandom() | ||
testRandom2 := NewTestRandom(t) | ||
y := testRandom2.Int() | ||
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assert.NotEqual(t, x, y) | ||
require.NotEqual(t, x, y) | ||
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seed := rand.Int63() | ||
testRandom3 := NewTestRandom(seed) | ||
testRandom3 := NewTestRandom(t, seed) | ||
a := testRandom3.Int() | ||
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testRandom4 := NewTestRandom(seed) | ||
testRandom4 := NewTestRandom(t, seed) | ||
b := testRandom4.Int() | ||
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assert.Equal(t, a, b) | ||
require.Equal(t, a, b) | ||
} | ||
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func TestReset(t *testing.T) { | ||
random := NewTestRandom(t) | ||
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a := random.Uint64() | ||
b := random.Uint64() | ||
c := random.Uint64() | ||
d := random.Uint64() | ||
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random.Reset() | ||
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require.Equal(t, a, random.Uint64()) | ||
require.Equal(t, b, random.Uint64()) | ||
require.Equal(t, c, random.Uint64()) | ||
require.Equal(t, d, random.Uint64()) | ||
} | ||
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func TestECDSAKeyGeneration(t *testing.T) { | ||
random := NewTestRandom(t) | ||
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// We should not get the same key pair twice in a row | ||
public1, private1 := random.ECDSA() | ||
public2, private2 := random.ECDSA() | ||
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assert.NotEqual(t, &public1, &public2) | ||
assert.NotEqual(t, &private1, &private2) | ||
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// Getting keys should result in deterministic generator state. | ||
generatorState := random.Uint64() | ||
random.Reset() | ||
random.ECDSA() | ||
random.ECDSA() | ||
require.Equal(t, generatorState, random.Uint64()) | ||
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// Keypair should be valid. | ||
data := random.Bytes(32) | ||
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signature, err := crypto.Sign(data, private1) | ||
require.NoError(t, err) | ||
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signingPublicKey, err := crypto.SigToPub(data, signature) | ||
require.NoError(t, err) | ||
require.Equal(t, &public1, &signingPublicKey) | ||
} | ||
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func TestBLSKeyGeneration(t *testing.T) { | ||
random := NewTestRandom(t) | ||
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// We should not get the same key pair twice in a row | ||
keypair1 := random.BLS() | ||
keypair2 := random.BLS() | ||
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require.False(t, keypair1.PrivKey.Equal(keypair2.PrivKey)) | ||
require.False(t, keypair1.PubKey.Equal(keypair2.PubKey.G1Affine)) | ||
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// Getting keys should result in deterministic generator state. | ||
generatorState := random.Uint64() | ||
random.Reset() | ||
random.BLS() | ||
random.BLS() | ||
require.Equal(t, generatorState, random.Uint64()) | ||
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// Keys should be deterministic. | ||
random.Reset() | ||
keypair3 := random.BLS() | ||
require.True(t, keypair1.PrivKey.Equal(keypair3.PrivKey)) | ||
require.True(t, keypair1.PubKey.Equal(keypair3.PubKey.G1Affine)) | ||
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// Keypair should be valid. | ||
data := random.Bytes(32) | ||
signature := keypair1.SignMessage(([32]byte)(data)) | ||
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isValid := signature.Verify(keypair1.GetPubKeyG2(), ([32]byte)(data)) | ||
require.True(t, isValid) | ||
} |