Index: components/user_prefs/tracked/pref_hash_store_impl_unittest.cc |
diff --git a/components/user_prefs/tracked/pref_hash_store_impl_unittest.cc b/components/user_prefs/tracked/pref_hash_store_impl_unittest.cc |
index 10867e66d4510dc12500d0b526becc70392073be..9afdef8943e708e40da9d0ee3f9ebac3b8496c21 100644 |
--- a/components/user_prefs/tracked/pref_hash_store_impl_unittest.cc |
+++ b/components/user_prefs/tracked/pref_hash_store_impl_unittest.cc |
@@ -15,13 +15,16 @@ |
#include "testing/gtest/include/gtest/gtest.h" |
class PrefHashStoreImplTest : public testing::Test { |
- protected: |
- std::unique_ptr<HashStoreContents> CreateHashStoreContents() { |
- return std::unique_ptr<HashStoreContents>( |
- new DictionaryHashStoreContents(&pref_store_contents_)); |
+ public: |
+ void SetUp() override { |
+ contents_.reset(new DictionaryHashStoreContents(&pref_store_contents_)); |
gab
2016/09/01 20:31:50
A chromium-dev discussion just concluded in favor
proberge
2016/09/06 19:24:10
Done.
|
} |
+ protected: |
+ HashStoreContents* GetHashStoreContents() { return contents_.get(); } |
+ |
private: |
+ std::unique_ptr<HashStoreContents> contents_; |
gab
2016/09/01 20:31:50
Needs to be after |pref_store_contents_| as member
proberge
2016/09/06 19:24:10
Done.
|
base::DictionaryValue pref_store_contents_; |
}; |
gab
2016/09/01 20:31:50
DISALLOW_COPY_AND_ASSIGN(PrefHashStoreImplTest);
proberge
2016/09/06 19:24:10
Done.
|
@@ -33,7 +36,7 @@ TEST_F(PrefHashStoreImplTest, AtomicHashStoreAndCheck) { |
// 32 NULL bytes is the seed that was used to generate the legacy hash. |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
// Only NULL should be trusted in the absence of a hash. |
EXPECT_EQ(PrefHashStoreTransaction::UNTRUSTED_UNKNOWN_VALUE, |
@@ -63,14 +66,14 @@ TEST_F(PrefHashStoreImplTest, AtomicHashStoreAndCheck) { |
transaction->CheckValue("path1", &dict)); |
} |
- ASSERT_FALSE(CreateHashStoreContents()->GetSuperMac().empty()); |
+ ASSERT_FALSE(GetHashStoreContents()->GetSuperMac().empty()); |
{ |
// |pref_hash_store2| should trust its initial hashes dictionary and thus |
// trust new unknown values. |
PrefHashStoreImpl pref_hash_store2(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store2.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store2.BeginTransaction(GetHashStoreContents())); |
EXPECT_EQ(PrefHashStoreTransaction::TRUSTED_UNKNOWN_VALUE, |
transaction->CheckValue("new_path", &string_1)); |
EXPECT_EQ(PrefHashStoreTransaction::TRUSTED_UNKNOWN_VALUE, |
@@ -80,14 +83,14 @@ TEST_F(PrefHashStoreImplTest, AtomicHashStoreAndCheck) { |
} |
// Manually corrupt the super MAC. |
- CreateHashStoreContents()->SetSuperMac(std::string(64, 'A')); |
+ GetHashStoreContents()->SetSuperMac(std::string(64, 'A')); |
{ |
// |pref_hash_store3| should no longer trust its initial hashes dictionary |
// and thus shouldn't trust non-NULL unknown values. |
PrefHashStoreImpl pref_hash_store3(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store3.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store3.BeginTransaction(GetHashStoreContents())); |
EXPECT_EQ(PrefHashStoreTransaction::UNTRUSTED_UNKNOWN_VALUE, |
transaction->CheckValue("new_path", &string_1)); |
EXPECT_EQ(PrefHashStoreTransaction::UNTRUSTED_UNKNOWN_VALUE, |
@@ -105,7 +108,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_FALSE(transaction->IsSuperMACValid()); |
ASSERT_FALSE(transaction->HasHash("path1")); |
@@ -122,7 +125,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
// Make a copy of the stored hash for future use. |
const base::Value* hash = NULL; |
- ASSERT_TRUE(CreateHashStoreContents()->GetContents()->Get("path1", &hash)); |
+ ASSERT_TRUE(GetHashStoreContents()->GetContents()->Get("path1", &hash)); |
std::unique_ptr<base::Value> path_1_string_1_hash_copy(hash->DeepCopy()); |
hash = NULL; |
@@ -130,7 +133,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_TRUE(transaction->IsSuperMACValid()); |
ASSERT_TRUE(transaction->HasHash("path1")); |
@@ -149,18 +152,18 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_TRUE(transaction->IsSuperMACValid()); |
ASSERT_FALSE(transaction->HasHash("path1")); |
} |
// Invalidate the super MAC. |
- CreateHashStoreContents()->SetSuperMac(std::string()); |
+ GetHashStoreContents()->SetSuperMac(std::string()); |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_FALSE(transaction->IsSuperMACValid()); |
ASSERT_FALSE(transaction->HasHash("path1")); |
@@ -178,7 +181,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_FALSE(transaction->IsSuperMACValid()); |
ASSERT_TRUE(transaction->HasHash("path1")); |
EXPECT_EQ(PrefHashStoreTransaction::UNCHANGED, |
@@ -196,7 +199,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_FALSE(transaction->IsSuperMACValid()); |
// Test StampSuperMac. |
@@ -207,7 +210,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_TRUE(transaction->IsSuperMACValid()); |
// Store the hash of a different value to test an "over-import". |
@@ -221,7 +224,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_TRUE(transaction->IsSuperMACValid()); |
// "Over-import". An import should preserve validity. |
@@ -236,7 +239,7 @@ TEST_F(PrefHashStoreImplTest, ImportExportOperations) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
ASSERT_TRUE(transaction->IsSuperMACValid()); |
EXPECT_EQ(PrefHashStoreTransaction::UNCHANGED, |
transaction->CheckValue("path1", &string_1)); |
@@ -253,19 +256,19 @@ TEST_F(PrefHashStoreImplTest, SuperMACDisabled) { |
// Pass |use_super_mac| => false. |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", false); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
transaction->StoreHash("path1", &string_2); |
EXPECT_EQ(PrefHashStoreTransaction::UNCHANGED, |
transaction->CheckValue("path1", &string_2)); |
} |
- ASSERT_TRUE(CreateHashStoreContents()->GetSuperMac().empty()); |
+ ASSERT_TRUE(GetHashStoreContents()->GetSuperMac().empty()); |
{ |
PrefHashStoreImpl pref_hash_store2(std::string(32, 0), "device_id", false); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store2.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store2.BeginTransaction(GetHashStoreContents())); |
EXPECT_EQ(PrefHashStoreTransaction::UNTRUSTED_UNKNOWN_VALUE, |
transaction->CheckValue("new_path", &string_1)); |
} |
@@ -289,7 +292,7 @@ TEST_F(PrefHashStoreImplTest, SplitHashStoreAndCheck) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
// No hashes stored yet and hashes dictionary is empty (and thus not |
// trusted). |
@@ -359,21 +362,21 @@ TEST_F(PrefHashStoreImplTest, SplitHashStoreAndCheck) { |
// trust new unknown values. |
PrefHashStoreImpl pref_hash_store2(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store2.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store2.BeginTransaction(GetHashStoreContents())); |
EXPECT_EQ(PrefHashStoreTransaction::TRUSTED_UNKNOWN_VALUE, |
transaction->CheckSplitValue("new_path", &dict, &invalid_keys)); |
EXPECT_TRUE(invalid_keys.empty()); |
} |
// Manually corrupt the super MAC. |
- CreateHashStoreContents()->SetSuperMac(std::string(64, 'A')); |
+ GetHashStoreContents()->SetSuperMac(std::string(64, 'A')); |
{ |
// |pref_hash_store3| should no longer trust its initial hashes dictionary |
// and thus shouldn't trust unknown values. |
PrefHashStoreImpl pref_hash_store3(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store3.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store3.BeginTransaction(GetHashStoreContents())); |
EXPECT_EQ(PrefHashStoreTransaction::UNTRUSTED_UNKNOWN_VALUE, |
transaction->CheckSplitValue("new_path", &dict, &invalid_keys)); |
EXPECT_TRUE(invalid_keys.empty()); |
@@ -388,7 +391,7 @@ TEST_F(PrefHashStoreImplTest, EmptyAndNULLSplitDict) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
// Store hashes for a random dict to be overwritten below. |
base::DictionaryValue initial_dict; |
@@ -424,7 +427,7 @@ TEST_F(PrefHashStoreImplTest, EmptyAndNULLSplitDict) { |
// update the stored hash of hashes). |
PrefHashStoreImpl pref_hash_store2(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store2.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store2.BeginTransaction(GetHashStoreContents())); |
base::DictionaryValue tested_dict; |
tested_dict.Set("a", new base::StringValue("foo")); |
@@ -454,7 +457,7 @@ TEST_F(PrefHashStoreImplTest, TrustedUnknownSplitValueFromExistingAtomic) { |
{ |
PrefHashStoreImpl pref_hash_store(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store.BeginTransaction(GetHashStoreContents())); |
transaction->StoreHash("path1", &string); |
EXPECT_EQ(PrefHashStoreTransaction::UNCHANGED, |
@@ -465,7 +468,7 @@ TEST_F(PrefHashStoreImplTest, TrustedUnknownSplitValueFromExistingAtomic) { |
// Load a new |pref_hash_store2| in which the hashes dictionary is trusted. |
PrefHashStoreImpl pref_hash_store2(std::string(32, 0), "device_id", true); |
std::unique_ptr<PrefHashStoreTransaction> transaction( |
- pref_hash_store2.BeginTransaction(CreateHashStoreContents())); |
+ pref_hash_store2.BeginTransaction(GetHashStoreContents())); |
std::vector<std::string> invalid_keys; |
EXPECT_EQ(PrefHashStoreTransaction::TRUSTED_UNKNOWN_VALUE, |
transaction->CheckSplitValue("path1", &dict, &invalid_keys)); |