mirror of
https://github.com/Luzifer/cloudkeys-go.git
synced 2024-11-10 07:00:08 +00:00
Knut Ahlers
a1df72edc5
commitf0db1ff1f8
Author: Knut Ahlers <knut@ahlers.me> Date: Sun Dec 24 12:19:56 2017 +0100 Mark option as deprecated Signed-off-by: Knut Ahlers <knut@ahlers.me> commit9891df2a16
Author: Knut Ahlers <knut@ahlers.me> Date: Sun Dec 24 12:11:56 2017 +0100 Fix: Typo Signed-off-by: Knut Ahlers <knut@ahlers.me> commit836006de64
Author: Knut Ahlers <knut@ahlers.me> Date: Sun Dec 24 12:04:20 2017 +0100 Add new dependencies Signed-off-by: Knut Ahlers <knut@ahlers.me> commitd64fee60c8
Author: Knut Ahlers <knut@ahlers.me> Date: Sun Dec 24 11:55:52 2017 +0100 Replace insecure password hashing Prior this commit passwords were hashed with a static salt and using the SHA1 hashing function. This could lead to passwords being attackable in case someone gets access to the raw data stored inside the database. This commit introduces password hashing using bcrypt hashing function which addresses this issue. Old passwords are not automatically re-hashed as they are unknown. Replacing the old password scheme is not that easy and needs #10 to be solved. Therefore the old hashing scheme is kept for compatibility reason. Signed-off-by: Knut Ahlers <knut@ahlers.me> Signed-off-by: Knut Ahlers <knut@ahlers.me> closes #14 closes #15
273 lines
6.7 KiB
Go
273 lines
6.7 KiB
Go
// Copyright 2011 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package openpgp
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import (
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"bytes"
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"io"
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"io/ioutil"
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"testing"
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"time"
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"golang.org/x/crypto/openpgp/packet"
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)
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func TestSignDetached(t *testing.T) {
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kring, _ := ReadKeyRing(readerFromHex(testKeys1And2PrivateHex))
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out := bytes.NewBuffer(nil)
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message := bytes.NewBufferString(signedInput)
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err := DetachSign(out, kring[0], message, nil)
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if err != nil {
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t.Error(err)
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}
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testDetachedSignature(t, kring, out, signedInput, "check", testKey1KeyId)
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}
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func TestSignTextDetached(t *testing.T) {
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kring, _ := ReadKeyRing(readerFromHex(testKeys1And2PrivateHex))
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out := bytes.NewBuffer(nil)
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message := bytes.NewBufferString(signedInput)
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err := DetachSignText(out, kring[0], message, nil)
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if err != nil {
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t.Error(err)
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}
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testDetachedSignature(t, kring, out, signedInput, "check", testKey1KeyId)
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}
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func TestSignDetachedDSA(t *testing.T) {
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kring, _ := ReadKeyRing(readerFromHex(dsaTestKeyPrivateHex))
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out := bytes.NewBuffer(nil)
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message := bytes.NewBufferString(signedInput)
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err := DetachSign(out, kring[0], message, nil)
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if err != nil {
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t.Error(err)
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}
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testDetachedSignature(t, kring, out, signedInput, "check", testKey3KeyId)
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}
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func TestSignDetachedP256(t *testing.T) {
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kring, _ := ReadKeyRing(readerFromHex(p256TestKeyPrivateHex))
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kring[0].PrivateKey.Decrypt([]byte("passphrase"))
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out := bytes.NewBuffer(nil)
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message := bytes.NewBufferString(signedInput)
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err := DetachSign(out, kring[0], message, nil)
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if err != nil {
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t.Error(err)
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}
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testDetachedSignature(t, kring, out, signedInput, "check", testKeyP256KeyId)
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}
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func TestNewEntity(t *testing.T) {
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if testing.Short() {
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return
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}
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// Check bit-length with no config.
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e, err := NewEntity("Test User", "test", "test@example.com", nil)
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if err != nil {
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t.Errorf("failed to create entity: %s", err)
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return
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}
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bl, err := e.PrimaryKey.BitLength()
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if err != nil {
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t.Errorf("failed to find bit length: %s", err)
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}
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if int(bl) != defaultRSAKeyBits {
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t.Errorf("BitLength %v, expected %v", int(bl), defaultRSAKeyBits)
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}
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// Check bit-length with a config.
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cfg := &packet.Config{RSABits: 1024}
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e, err = NewEntity("Test User", "test", "test@example.com", cfg)
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if err != nil {
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t.Errorf("failed to create entity: %s", err)
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return
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}
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bl, err = e.PrimaryKey.BitLength()
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if err != nil {
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t.Errorf("failed to find bit length: %s", err)
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}
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if int(bl) != cfg.RSABits {
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t.Errorf("BitLength %v, expected %v", bl, cfg.RSABits)
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}
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w := bytes.NewBuffer(nil)
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if err := e.SerializePrivate(w, nil); err != nil {
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t.Errorf("failed to serialize entity: %s", err)
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return
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}
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serialized := w.Bytes()
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el, err := ReadKeyRing(w)
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if err != nil {
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t.Errorf("failed to reparse entity: %s", err)
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return
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}
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if len(el) != 1 {
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t.Errorf("wrong number of entities found, got %d, want 1", len(el))
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}
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w = bytes.NewBuffer(nil)
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if err := e.SerializePrivate(w, nil); err != nil {
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t.Errorf("failed to serialize entity second time: %s", err)
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return
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}
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if !bytes.Equal(w.Bytes(), serialized) {
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t.Errorf("results differed")
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}
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}
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func TestSymmetricEncryption(t *testing.T) {
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buf := new(bytes.Buffer)
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plaintext, err := SymmetricallyEncrypt(buf, []byte("testing"), nil, nil)
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if err != nil {
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t.Errorf("error writing headers: %s", err)
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return
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}
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message := []byte("hello world\n")
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_, err = plaintext.Write(message)
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if err != nil {
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t.Errorf("error writing to plaintext writer: %s", err)
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}
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err = plaintext.Close()
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if err != nil {
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t.Errorf("error closing plaintext writer: %s", err)
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}
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md, err := ReadMessage(buf, nil, func(keys []Key, symmetric bool) ([]byte, error) {
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return []byte("testing"), nil
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}, nil)
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if err != nil {
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t.Errorf("error rereading message: %s", err)
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}
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messageBuf := bytes.NewBuffer(nil)
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_, err = io.Copy(messageBuf, md.UnverifiedBody)
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if err != nil {
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t.Errorf("error rereading message: %s", err)
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}
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if !bytes.Equal(message, messageBuf.Bytes()) {
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t.Errorf("recovered message incorrect got '%s', want '%s'", messageBuf.Bytes(), message)
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}
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}
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var testEncryptionTests = []struct {
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keyRingHex string
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isSigned bool
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}{
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{
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testKeys1And2PrivateHex,
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false,
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},
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{
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testKeys1And2PrivateHex,
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true,
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},
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{
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dsaElGamalTestKeysHex,
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false,
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},
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{
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dsaElGamalTestKeysHex,
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true,
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},
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}
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func TestEncryption(t *testing.T) {
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for i, test := range testEncryptionTests {
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kring, _ := ReadKeyRing(readerFromHex(test.keyRingHex))
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passphrase := []byte("passphrase")
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for _, entity := range kring {
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if entity.PrivateKey != nil && entity.PrivateKey.Encrypted {
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err := entity.PrivateKey.Decrypt(passphrase)
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if err != nil {
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t.Errorf("#%d: failed to decrypt key", i)
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}
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}
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for _, subkey := range entity.Subkeys {
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if subkey.PrivateKey != nil && subkey.PrivateKey.Encrypted {
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err := subkey.PrivateKey.Decrypt(passphrase)
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if err != nil {
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t.Errorf("#%d: failed to decrypt subkey", i)
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}
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}
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}
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}
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var signed *Entity
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if test.isSigned {
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signed = kring[0]
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}
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buf := new(bytes.Buffer)
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w, err := Encrypt(buf, kring[:1], signed, nil /* no hints */, nil)
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if err != nil {
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t.Errorf("#%d: error in Encrypt: %s", i, err)
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continue
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}
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const message = "testing"
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_, err = w.Write([]byte(message))
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if err != nil {
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t.Errorf("#%d: error writing plaintext: %s", i, err)
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continue
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}
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err = w.Close()
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if err != nil {
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t.Errorf("#%d: error closing WriteCloser: %s", i, err)
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continue
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}
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md, err := ReadMessage(buf, kring, nil /* no prompt */, nil)
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if err != nil {
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t.Errorf("#%d: error reading message: %s", i, err)
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continue
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}
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testTime, _ := time.Parse("2006-01-02", "2013-07-01")
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if test.isSigned {
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signKey, _ := kring[0].signingKey(testTime)
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expectedKeyId := signKey.PublicKey.KeyId
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if md.SignedByKeyId != expectedKeyId {
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t.Errorf("#%d: message signed by wrong key id, got: %v, want: %v", i, *md.SignedBy, expectedKeyId)
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}
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if md.SignedBy == nil {
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t.Errorf("#%d: failed to find the signing Entity", i)
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}
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}
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plaintext, err := ioutil.ReadAll(md.UnverifiedBody)
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if err != nil {
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t.Errorf("#%d: error reading encrypted contents: %s", i, err)
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continue
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}
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encryptKey, _ := kring[0].encryptionKey(testTime)
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expectedKeyId := encryptKey.PublicKey.KeyId
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if len(md.EncryptedToKeyIds) != 1 || md.EncryptedToKeyIds[0] != expectedKeyId {
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t.Errorf("#%d: expected message to be encrypted to %v, but got %#v", i, expectedKeyId, md.EncryptedToKeyIds)
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}
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if string(plaintext) != message {
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t.Errorf("#%d: got: %s, want: %s", i, string(plaintext), message)
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}
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if test.isSigned {
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if md.SignatureError != nil {
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t.Errorf("#%d: signature error: %s", i, md.SignatureError)
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}
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if md.Signature == nil {
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t.Error("signature missing")
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}
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}
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}
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}
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