Make USB permissions work in the new permission message system
[chromium-blink-merge.git] / net / extras / sqlite / sqlite_persistent_cookie_store_unittest.cc
blobfd140eabf127583bd95234192f8c48c13f1cea58
1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
5 #include "net/extras/sqlite/sqlite_persistent_cookie_store.h"
7 #include <map>
8 #include <set>
10 #include "base/bind.h"
11 #include "base/callback.h"
12 #include "base/files/file_util.h"
13 #include "base/files/scoped_temp_dir.h"
14 #include "base/location.h"
15 #include "base/memory/ref_counted.h"
16 #include "base/sequenced_task_runner.h"
17 #include "base/stl_util.h"
18 #include "base/synchronization/waitable_event.h"
19 #include "base/test/sequenced_worker_pool_owner.h"
20 #include "base/threading/sequenced_worker_pool.h"
21 #include "base/time/time.h"
22 #include "crypto/encryptor.h"
23 #include "crypto/symmetric_key.h"
24 #include "net/cookies/canonical_cookie.h"
25 #include "net/cookies/cookie_constants.h"
26 #include "net/extras/sqlite/cookie_crypto_delegate.h"
27 #include "sql/connection.h"
28 #include "sql/meta_table.h"
29 #include "sql/statement.h"
30 #include "testing/gtest/include/gtest/gtest.h"
31 #include "url/gurl.h"
33 namespace net {
35 namespace {
37 const base::FilePath::CharType kCookieFilename[] = FILE_PATH_LITERAL("Cookies");
39 class CookieCryptor : public CookieCryptoDelegate {
40 public:
41 CookieCryptor();
42 bool ShouldEncrypt() override;
43 bool EncryptString(const std::string& plaintext,
44 std::string* ciphertext) override;
45 bool DecryptString(const std::string& ciphertext,
46 std::string* plaintext) override;
48 bool should_encrypt_;
50 private:
51 scoped_ptr<crypto::SymmetricKey> key_;
52 crypto::Encryptor encryptor_;
55 CookieCryptor::CookieCryptor()
56 : should_encrypt_(true),
57 key_(
58 crypto::SymmetricKey::DeriveKeyFromPassword(crypto::SymmetricKey::AES,
59 "password",
60 "saltiest",
61 1000,
62 256)) {
63 std::string iv("the iv: 16 bytes");
64 encryptor_.Init(key_.get(), crypto::Encryptor::CBC, iv);
67 bool CookieCryptor::ShouldEncrypt() {
68 return should_encrypt_;
71 bool CookieCryptor::EncryptString(const std::string& plaintext,
72 std::string* ciphertext) {
73 return encryptor_.Encrypt(plaintext, ciphertext);
76 bool CookieCryptor::DecryptString(const std::string& ciphertext,
77 std::string* plaintext) {
78 return encryptor_.Decrypt(ciphertext, plaintext);
81 } // namespace
83 typedef std::vector<CanonicalCookie*> CanonicalCookieVector;
85 class SQLitePersistentCookieStoreTest : public testing::Test {
86 public:
87 SQLitePersistentCookieStoreTest()
88 : pool_owner_(new base::SequencedWorkerPoolOwner(3, "Background Pool")),
89 loaded_event_(false, false),
90 key_loaded_event_(false, false),
91 db_thread_event_(false, false) {}
93 void OnLoaded(const CanonicalCookieVector& cookies) {
94 cookies_ = cookies;
95 loaded_event_.Signal();
98 void OnKeyLoaded(const CanonicalCookieVector& cookies) {
99 cookies_ = cookies;
100 key_loaded_event_.Signal();
103 void Load(CanonicalCookieVector* cookies) {
104 EXPECT_FALSE(loaded_event_.IsSignaled());
105 store_->Load(base::Bind(&SQLitePersistentCookieStoreTest::OnLoaded,
106 base::Unretained(this)));
107 loaded_event_.Wait();
108 *cookies = cookies_;
111 void Flush() {
112 base::WaitableEvent event(false, false);
113 store_->Flush(
114 base::Bind(&base::WaitableEvent::Signal, base::Unretained(&event)));
115 event.Wait();
118 scoped_refptr<base::SequencedTaskRunner> background_task_runner() {
119 return pool_owner_->pool()->GetSequencedTaskRunner(
120 pool_owner_->pool()->GetNamedSequenceToken("background"));
123 scoped_refptr<base::SequencedTaskRunner> client_task_runner() {
124 return pool_owner_->pool()->GetSequencedTaskRunner(
125 pool_owner_->pool()->GetNamedSequenceToken("client"));
128 void DestroyStore() {
129 store_ = nullptr;
130 // Make sure we wait until the destructor has run by shutting down the pool
131 // resetting the owner (whose destructor blocks on the pool completion).
132 pool_owner_->pool()->Shutdown();
133 // Create a new pool for the few tests that create multiple stores. In other
134 // cases this is wasted but harmless.
135 pool_owner_.reset(new base::SequencedWorkerPoolOwner(3, "Background Pool"));
138 void Create(bool crypt_cookies, bool restore_old_session_cookies) {
139 if (crypt_cookies)
140 cookie_crypto_delegate_.reset(new CookieCryptor());
142 store_ = new SQLitePersistentCookieStore(
143 temp_dir_.path().Append(kCookieFilename), client_task_runner(),
144 background_task_runner(), restore_old_session_cookies,
145 cookie_crypto_delegate_.get());
148 void CreateAndLoad(bool crypt_cookies,
149 bool restore_old_session_cookies,
150 CanonicalCookieVector* cookies) {
151 Create(crypt_cookies, restore_old_session_cookies);
152 Load(cookies);
155 void InitializeStore(bool crypt, bool restore_old_session_cookies) {
156 CanonicalCookieVector cookies;
157 CreateAndLoad(crypt, restore_old_session_cookies, &cookies);
158 EXPECT_EQ(0U, cookies.size());
161 // We have to create this method to wrap WaitableEvent::Wait, since we cannot
162 // bind a non-void returning method as a Closure.
163 void WaitOnDBEvent() { db_thread_event_.Wait(); }
165 // Adds a persistent cookie to store_.
166 void AddCookie(const std::string& name,
167 const std::string& value,
168 const std::string& domain,
169 const std::string& path,
170 const base::Time& creation) {
171 store_->AddCookie(CanonicalCookie(GURL(), name, value, domain, path,
172 creation, creation, creation, false,
173 false, false, COOKIE_PRIORITY_DEFAULT));
176 void AddCookieWithExpiration(const std::string& name,
177 const std::string& value,
178 const std::string& domain,
179 const std::string& path,
180 const base::Time& creation,
181 const base::Time& expiration) {
182 store_->AddCookie(CanonicalCookie(GURL(), name, value, domain, path,
183 creation, expiration, creation, false,
184 false, false, COOKIE_PRIORITY_DEFAULT));
187 std::string ReadRawDBContents() {
188 std::string contents;
189 if (!base::ReadFileToString(temp_dir_.path().Append(kCookieFilename),
190 &contents))
191 return std::string();
192 return contents;
195 void SetUp() override { ASSERT_TRUE(temp_dir_.CreateUniqueTempDir()); }
197 void TearDown() override {
198 DestroyStore();
199 pool_owner_->pool()->Shutdown();
202 protected:
203 scoped_ptr<base::SequencedWorkerPoolOwner> pool_owner_;
204 base::WaitableEvent loaded_event_;
205 base::WaitableEvent key_loaded_event_;
206 base::WaitableEvent db_thread_event_;
207 CanonicalCookieVector cookies_;
208 base::ScopedTempDir temp_dir_;
209 scoped_refptr<SQLitePersistentCookieStore> store_;
210 scoped_ptr<CookieCryptor> cookie_crypto_delegate_;
213 TEST_F(SQLitePersistentCookieStoreTest, TestInvalidMetaTableRecovery) {
214 InitializeStore(false, false);
215 AddCookie("A", "B", "foo.bar", "/", base::Time::Now());
216 DestroyStore();
218 // Load up the store and verify that it has good data in it.
219 CanonicalCookieVector cookies;
220 CreateAndLoad(false, false, &cookies);
221 ASSERT_EQ(1U, cookies.size());
222 ASSERT_STREQ("foo.bar", cookies[0]->Domain().c_str());
223 ASSERT_STREQ("A", cookies[0]->Name().c_str());
224 ASSERT_STREQ("B", cookies[0]->Value().c_str());
225 DestroyStore();
226 STLDeleteElements(&cookies);
228 // Now corrupt the meta table.
230 sql::Connection db;
231 ASSERT_TRUE(db.Open(temp_dir_.path().Append(kCookieFilename)));
232 sql::MetaTable meta_table_;
233 meta_table_.Init(&db, 1, 1);
234 ASSERT_TRUE(db.Execute("DELETE FROM meta"));
235 db.Close();
238 // Upon loading, the database should be reset to a good, blank state.
239 CreateAndLoad(false, false, &cookies);
240 ASSERT_EQ(0U, cookies.size());
242 // Verify that, after, recovery, the database persists properly.
243 AddCookie("X", "Y", "foo.bar", "/", base::Time::Now());
244 DestroyStore();
245 CreateAndLoad(false, false, &cookies);
246 ASSERT_EQ(1U, cookies.size());
247 ASSERT_STREQ("foo.bar", cookies[0]->Domain().c_str());
248 ASSERT_STREQ("X", cookies[0]->Name().c_str());
249 ASSERT_STREQ("Y", cookies[0]->Value().c_str());
250 STLDeleteElements(&cookies);
253 // Test if data is stored as expected in the SQLite database.
254 TEST_F(SQLitePersistentCookieStoreTest, TestPersistance) {
255 InitializeStore(false, false);
256 AddCookie("A", "B", "foo.bar", "/", base::Time::Now());
257 // Replace the store effectively destroying the current one and forcing it
258 // to write its data to disk. Then we can see if after loading it again it
259 // is still there.
260 DestroyStore();
261 // Reload and test for persistence
262 CanonicalCookieVector cookies;
263 CreateAndLoad(false, false, &cookies);
264 ASSERT_EQ(1U, cookies.size());
265 ASSERT_STREQ("foo.bar", cookies[0]->Domain().c_str());
266 ASSERT_STREQ("A", cookies[0]->Name().c_str());
267 ASSERT_STREQ("B", cookies[0]->Value().c_str());
269 // Now delete the cookie and check persistence again.
270 store_->DeleteCookie(*cookies[0]);
271 DestroyStore();
272 STLDeleteElements(&cookies);
274 // Reload and check if the cookie has been removed.
275 CreateAndLoad(false, false, &cookies);
276 ASSERT_EQ(0U, cookies.size());
279 TEST_F(SQLitePersistentCookieStoreTest, TestSessionCookiesDeletedOnStartup) {
280 // Initialize the cookie store with 3 persistent cookies, 5 transient
281 // cookies.
282 InitializeStore(false, false);
284 // Add persistent cookies.
285 base::Time t = base::Time::Now();
286 AddCookie("A", "B", "a1.com", "/", t);
287 t += base::TimeDelta::FromInternalValue(10);
288 AddCookie("A", "B", "a2.com", "/", t);
289 t += base::TimeDelta::FromInternalValue(10);
290 AddCookie("A", "B", "a3.com", "/", t);
292 // Add transient cookies.
293 t += base::TimeDelta::FromInternalValue(10);
294 AddCookieWithExpiration("A", "B", "b1.com", "/", t, base::Time());
295 t += base::TimeDelta::FromInternalValue(10);
296 AddCookieWithExpiration("A", "B", "b2.com", "/", t, base::Time());
297 t += base::TimeDelta::FromInternalValue(10);
298 AddCookieWithExpiration("A", "B", "b3.com", "/", t, base::Time());
299 t += base::TimeDelta::FromInternalValue(10);
300 AddCookieWithExpiration("A", "B", "b4.com", "/", t, base::Time());
301 t += base::TimeDelta::FromInternalValue(10);
302 AddCookieWithExpiration("A", "B", "b5.com", "/", t, base::Time());
303 DestroyStore();
305 // Load the store a second time. Before the store finishes loading, add a
306 // transient cookie and flush it to disk.
307 store_ = new SQLitePersistentCookieStore(
308 temp_dir_.path().Append(kCookieFilename), client_task_runner(),
309 background_task_runner(), false, nullptr);
311 // Posting a blocking task to db_thread_ makes sure that the DB thread waits
312 // until both Load and Flush have been posted to its task queue.
313 background_task_runner()->PostTask(
314 FROM_HERE, base::Bind(&SQLitePersistentCookieStoreTest::WaitOnDBEvent,
315 base::Unretained(this)));
316 store_->Load(base::Bind(&SQLitePersistentCookieStoreTest::OnLoaded,
317 base::Unretained(this)));
318 t += base::TimeDelta::FromInternalValue(10);
319 AddCookieWithExpiration("A", "B", "c.com", "/", t, base::Time());
320 base::WaitableEvent event(false, false);
321 store_->Flush(
322 base::Bind(&base::WaitableEvent::Signal, base::Unretained(&event)));
324 // Now the DB-thread queue contains:
325 // (active:)
326 // 1. Wait (on db_event)
327 // (pending:)
328 // 2. "Init And Chain-Load First Domain"
329 // 3. Add Cookie (c.com)
330 // 4. Flush Cookie (c.com)
331 db_thread_event_.Signal();
332 event.Wait();
333 loaded_event_.Wait();
334 STLDeleteElements(&cookies_);
335 DestroyStore();
337 // Load the store a third time, this time restoring session cookies. The
338 // store should contain exactly 4 cookies: the 3 persistent, and "c.com",
339 // which was added during the second cookie store load.
340 store_ = new SQLitePersistentCookieStore(
341 temp_dir_.path().Append(kCookieFilename), client_task_runner(),
342 background_task_runner(), true, nullptr);
343 store_->Load(base::Bind(&SQLitePersistentCookieStoreTest::OnLoaded,
344 base::Unretained(this)));
345 loaded_event_.Wait();
346 ASSERT_EQ(4u, cookies_.size());
347 STLDeleteElements(&cookies_);
350 // Test that priority load of cookies for a specfic domain key could be
351 // completed before the entire store is loaded
352 TEST_F(SQLitePersistentCookieStoreTest, TestLoadCookiesForKey) {
353 InitializeStore(false, false);
354 base::Time t = base::Time::Now();
355 AddCookie("A", "B", "foo.bar", "/", t);
356 t += base::TimeDelta::FromInternalValue(10);
357 AddCookie("A", "B", "www.aaa.com", "/", t);
358 t += base::TimeDelta::FromInternalValue(10);
359 AddCookie("A", "B", "travel.aaa.com", "/", t);
360 t += base::TimeDelta::FromInternalValue(10);
361 AddCookie("A", "B", "www.bbb.com", "/", t);
362 DestroyStore();
364 store_ = new SQLitePersistentCookieStore(
365 temp_dir_.path().Append(kCookieFilename), client_task_runner(),
366 background_task_runner(), false, nullptr);
368 // Posting a blocking task to db_thread_ makes sure that the DB thread waits
369 // until both Load and LoadCookiesForKey have been posted to its task queue.
370 background_task_runner()->PostTask(
371 FROM_HERE, base::Bind(&SQLitePersistentCookieStoreTest::WaitOnDBEvent,
372 base::Unretained(this)));
373 store_->Load(base::Bind(&SQLitePersistentCookieStoreTest::OnLoaded,
374 base::Unretained(this)));
375 store_->LoadCookiesForKey(
376 "aaa.com", base::Bind(&SQLitePersistentCookieStoreTest::OnKeyLoaded,
377 base::Unretained(this)));
378 background_task_runner()->PostTask(
379 FROM_HERE, base::Bind(&SQLitePersistentCookieStoreTest::WaitOnDBEvent,
380 base::Unretained(this)));
382 // Now the DB-thread queue contains:
383 // (active:)
384 // 1. Wait (on db_event)
385 // (pending:)
386 // 2. "Init And Chain-Load First Domain"
387 // 3. Priority Load (aaa.com)
388 // 4. Wait (on db_event)
389 db_thread_event_.Signal();
390 key_loaded_event_.Wait();
391 ASSERT_EQ(loaded_event_.IsSignaled(), false);
392 std::set<std::string> cookies_loaded;
393 for (CanonicalCookieVector::const_iterator it = cookies_.begin();
394 it != cookies_.end(); ++it) {
395 cookies_loaded.insert((*it)->Domain().c_str());
397 STLDeleteElements(&cookies_);
398 ASSERT_GT(4U, cookies_loaded.size());
399 ASSERT_EQ(true, cookies_loaded.find("www.aaa.com") != cookies_loaded.end());
400 ASSERT_EQ(true,
401 cookies_loaded.find("travel.aaa.com") != cookies_loaded.end());
403 db_thread_event_.Signal();
404 loaded_event_.Wait();
405 for (CanonicalCookieVector::const_iterator it = cookies_.begin();
406 it != cookies_.end(); ++it) {
407 cookies_loaded.insert((*it)->Domain().c_str());
409 ASSERT_EQ(4U, cookies_loaded.size());
410 ASSERT_EQ(cookies_loaded.find("foo.bar") != cookies_loaded.end(), true);
411 ASSERT_EQ(cookies_loaded.find("www.bbb.com") != cookies_loaded.end(), true);
412 STLDeleteElements(&cookies_);
415 // Test that we can force the database to be written by calling Flush().
416 TEST_F(SQLitePersistentCookieStoreTest, TestFlush) {
417 InitializeStore(false, false);
418 // File timestamps don't work well on all platforms, so we'll determine
419 // whether the DB file has been modified by checking its size.
420 base::FilePath path = temp_dir_.path().Append(kCookieFilename);
421 base::File::Info info;
422 ASSERT_TRUE(base::GetFileInfo(path, &info));
423 int64 base_size = info.size;
425 // Write some large cookies, so the DB will have to expand by several KB.
426 for (char c = 'a'; c < 'z'; ++c) {
427 // Each cookie needs a unique timestamp for creation_utc (see DB schema).
428 base::Time t = base::Time::Now() + base::TimeDelta::FromMicroseconds(c);
429 std::string name(1, c);
430 std::string value(1000, c);
431 AddCookie(name, value, "foo.bar", "/", t);
434 Flush();
436 // We forced a write, so now the file will be bigger.
437 ASSERT_TRUE(base::GetFileInfo(path, &info));
438 ASSERT_GT(info.size, base_size);
441 // Test loading old session cookies from the disk.
442 TEST_F(SQLitePersistentCookieStoreTest, TestLoadOldSessionCookies) {
443 InitializeStore(false, true);
445 // Add a session cookie.
446 store_->AddCookie(CanonicalCookie(GURL(), "C", "D", "sessioncookie.com", "/",
447 base::Time::Now(), base::Time(),
448 base::Time::Now(), false, false, false,
449 COOKIE_PRIORITY_DEFAULT));
451 // Force the store to write its data to the disk.
452 DestroyStore();
454 // Create a store that loads session cookies and test that the session cookie
455 // was loaded.
456 CanonicalCookieVector cookies;
457 CreateAndLoad(false, true, &cookies);
459 ASSERT_EQ(1U, cookies.size());
460 ASSERT_STREQ("sessioncookie.com", cookies[0]->Domain().c_str());
461 ASSERT_STREQ("C", cookies[0]->Name().c_str());
462 ASSERT_STREQ("D", cookies[0]->Value().c_str());
463 ASSERT_EQ(COOKIE_PRIORITY_DEFAULT, cookies[0]->Priority());
465 STLDeleteElements(&cookies);
468 // Test loading old session cookies from the disk.
469 TEST_F(SQLitePersistentCookieStoreTest, TestDontLoadOldSessionCookies) {
470 InitializeStore(false, true);
472 // Add a session cookie.
473 store_->AddCookie(CanonicalCookie(GURL(), "C", "D", "sessioncookie.com", "/",
474 base::Time::Now(), base::Time(),
475 base::Time::Now(), false, false, false,
476 COOKIE_PRIORITY_DEFAULT));
478 // Force the store to write its data to the disk.
479 DestroyStore();
481 // Create a store that doesn't load old session cookies and test that the
482 // session cookie was not loaded.
483 CanonicalCookieVector cookies;
484 CreateAndLoad(false, false, &cookies);
485 ASSERT_EQ(0U, cookies.size());
487 // The store should also delete the session cookie. Wait until that has been
488 // done.
489 DestroyStore();
491 // Create a store that loads old session cookies and test that the session
492 // cookie is gone.
493 CreateAndLoad(false, true, &cookies);
494 ASSERT_EQ(0U, cookies.size());
497 TEST_F(SQLitePersistentCookieStoreTest, PersistIsPersistent) {
498 InitializeStore(false, true);
499 static const char kSessionName[] = "session";
500 static const char kPersistentName[] = "persistent";
502 // Add a session cookie.
503 store_->AddCookie(CanonicalCookie(GURL(), kSessionName, "val",
504 "sessioncookie.com", "/", base::Time::Now(),
505 base::Time(), base::Time::Now(), false,
506 false, false, COOKIE_PRIORITY_DEFAULT));
507 // Add a persistent cookie.
508 store_->AddCookie(CanonicalCookie(
509 GURL(), kPersistentName, "val", "sessioncookie.com", "/",
510 base::Time::Now() - base::TimeDelta::FromDays(1),
511 base::Time::Now() + base::TimeDelta::FromDays(1), base::Time::Now(),
512 false, false, false, COOKIE_PRIORITY_DEFAULT));
514 // Force the store to write its data to the disk.
515 DestroyStore();
517 // Create a store that loads session cookie and test that the IsPersistent
518 // attribute is restored.
519 CanonicalCookieVector cookies;
520 CreateAndLoad(false, true, &cookies);
521 ASSERT_EQ(2U, cookies.size());
523 std::map<std::string, CanonicalCookie*> cookie_map;
524 for (CanonicalCookieVector::const_iterator it = cookies.begin();
525 it != cookies.end(); ++it) {
526 cookie_map[(*it)->Name()] = *it;
529 std::map<std::string, CanonicalCookie*>::const_iterator it =
530 cookie_map.find(kSessionName);
531 ASSERT_TRUE(it != cookie_map.end());
532 EXPECT_FALSE(cookie_map[kSessionName]->IsPersistent());
534 it = cookie_map.find(kPersistentName);
535 ASSERT_TRUE(it != cookie_map.end());
536 EXPECT_TRUE(cookie_map[kPersistentName]->IsPersistent());
538 STLDeleteElements(&cookies);
541 TEST_F(SQLitePersistentCookieStoreTest, PriorityIsPersistent) {
542 static const char kLowName[] = "low";
543 static const char kMediumName[] = "medium";
544 static const char kHighName[] = "high";
545 static const char kCookieDomain[] = "sessioncookie.com";
546 static const char kCookieValue[] = "value";
547 static const char kCookiePath[] = "/";
549 InitializeStore(false, true);
551 // Add a low-priority persistent cookie.
552 store_->AddCookie(CanonicalCookie(
553 GURL(), kLowName, kCookieValue, kCookieDomain, kCookiePath,
554 base::Time::Now() - base::TimeDelta::FromMinutes(1),
555 base::Time::Now() + base::TimeDelta::FromDays(1), base::Time::Now(),
556 false, false, false, COOKIE_PRIORITY_LOW));
558 // Add a medium-priority persistent cookie.
559 store_->AddCookie(CanonicalCookie(
560 GURL(), kMediumName, kCookieValue, kCookieDomain, kCookiePath,
561 base::Time::Now() - base::TimeDelta::FromMinutes(2),
562 base::Time::Now() + base::TimeDelta::FromDays(1), base::Time::Now(),
563 false, false, false, COOKIE_PRIORITY_MEDIUM));
565 // Add a high-priority peristent cookie.
566 store_->AddCookie(CanonicalCookie(
567 GURL(), kHighName, kCookieValue, kCookieDomain, kCookiePath,
568 base::Time::Now() - base::TimeDelta::FromMinutes(3),
569 base::Time::Now() + base::TimeDelta::FromDays(1), base::Time::Now(),
570 false, false, false, COOKIE_PRIORITY_HIGH));
572 // Force the store to write its data to the disk.
573 DestroyStore();
575 // Create a store that loads session cookie and test that the priority
576 // attribute values are restored.
577 CanonicalCookieVector cookies;
578 CreateAndLoad(false, true, &cookies);
579 ASSERT_EQ(3U, cookies.size());
581 // Put the cookies into a map, by name, so we can easily find them.
582 std::map<std::string, CanonicalCookie*> cookie_map;
583 for (CanonicalCookieVector::const_iterator it = cookies.begin();
584 it != cookies.end(); ++it) {
585 cookie_map[(*it)->Name()] = *it;
588 // Validate that each cookie has the correct priority.
589 std::map<std::string, CanonicalCookie*>::const_iterator it =
590 cookie_map.find(kLowName);
591 ASSERT_TRUE(it != cookie_map.end());
592 EXPECT_EQ(COOKIE_PRIORITY_LOW, cookie_map[kLowName]->Priority());
594 it = cookie_map.find(kMediumName);
595 ASSERT_TRUE(it != cookie_map.end());
596 EXPECT_EQ(COOKIE_PRIORITY_MEDIUM, cookie_map[kMediumName]->Priority());
598 it = cookie_map.find(kHighName);
599 ASSERT_TRUE(it != cookie_map.end());
600 EXPECT_EQ(COOKIE_PRIORITY_HIGH, cookie_map[kHighName]->Priority());
602 STLDeleteElements(&cookies);
605 TEST_F(SQLitePersistentCookieStoreTest, UpdateToEncryption) {
606 CanonicalCookieVector cookies;
608 // Create unencrypted cookie store and write something to it.
609 InitializeStore(false, false);
610 AddCookie("name", "value123XYZ", "foo.bar", "/", base::Time::Now());
611 DestroyStore();
613 // Verify that "value" is visible in the file. This is necessary in order to
614 // have confidence in a later test that "encrypted_value" is not visible.
615 std::string contents = ReadRawDBContents();
616 EXPECT_NE(0U, contents.length());
617 EXPECT_NE(contents.find("value123XYZ"), std::string::npos);
619 // Create encrypted cookie store and ensure old cookie still reads.
620 STLDeleteElements(&cookies_);
621 EXPECT_EQ(0U, cookies_.size());
622 CreateAndLoad(true, false, &cookies);
623 EXPECT_EQ(1U, cookies_.size());
624 EXPECT_EQ("name", cookies_[0]->Name());
625 EXPECT_EQ("value123XYZ", cookies_[0]->Value());
627 // Make sure we can update existing cookie and add new cookie as encrypted.
628 store_->DeleteCookie(*(cookies_[0]));
629 AddCookie("name", "encrypted_value123XYZ", "foo.bar", "/", base::Time::Now());
630 AddCookie("other", "something456ABC", "foo.bar", "/",
631 base::Time::Now() + base::TimeDelta::FromInternalValue(10));
632 DestroyStore();
633 STLDeleteElements(&cookies_);
634 CreateAndLoad(true, false, &cookies);
635 EXPECT_EQ(2U, cookies_.size());
636 CanonicalCookie* cookie_name = nullptr;
637 CanonicalCookie* cookie_other = nullptr;
638 if (cookies_[0]->Name() == "name") {
639 cookie_name = cookies_[0];
640 cookie_other = cookies_[1];
641 } else {
642 cookie_name = cookies_[1];
643 cookie_other = cookies_[0];
645 EXPECT_EQ("encrypted_value123XYZ", cookie_name->Value());
646 EXPECT_EQ("something456ABC", cookie_other->Value());
647 DestroyStore();
648 STLDeleteElements(&cookies_);
650 // Examine the real record to make sure plaintext version doesn't exist.
651 sql::Connection db;
652 sql::Statement smt;
653 int resultcount = 0;
654 ASSERT_TRUE(db.Open(temp_dir_.path().Append(kCookieFilename)));
655 smt.Assign(db.GetCachedStatement(SQL_FROM_HERE,
656 "SELECT * "
657 "FROM cookies "
658 "WHERE host_key = 'foo.bar'"));
659 while (smt.Step()) {
660 resultcount++;
661 for (int i = 0; i < smt.ColumnCount(); i++) {
662 EXPECT_EQ(smt.ColumnString(i).find("value"), std::string::npos);
663 EXPECT_EQ(smt.ColumnString(i).find("something"), std::string::npos);
666 EXPECT_EQ(2, resultcount);
668 // Verify that "encrypted_value" is NOT visible in the file.
669 contents = ReadRawDBContents();
670 EXPECT_NE(0U, contents.length());
671 EXPECT_EQ(contents.find("encrypted_value123XYZ"), std::string::npos);
672 EXPECT_EQ(contents.find("something456ABC"), std::string::npos);
675 TEST_F(SQLitePersistentCookieStoreTest, UpdateFromEncryption) {
676 CanonicalCookieVector cookies;
678 // Create unencrypted cookie store and write something to it.
679 InitializeStore(true, false);
680 AddCookie("name", "value123XYZ", "foo.bar", "/", base::Time::Now());
681 DestroyStore();
683 // Verify that "value" is not visible in the file.
684 std::string contents = ReadRawDBContents();
685 EXPECT_NE(0U, contents.length());
686 EXPECT_EQ(contents.find("value123XYZ"), std::string::npos);
688 // Create encrypted cookie store and ensure old cookie still reads.
689 STLDeleteElements(&cookies_);
690 EXPECT_EQ(0U, cookies_.size());
691 CreateAndLoad(true, false, &cookies);
692 EXPECT_EQ(1U, cookies_.size());
693 EXPECT_EQ("name", cookies_[0]->Name());
694 EXPECT_EQ("value123XYZ", cookies_[0]->Value());
696 // Make sure we can update existing cookie and it writes unencrypted.
697 cookie_crypto_delegate_->should_encrypt_ = false;
698 store_->DeleteCookie(*(cookies_[0]));
699 AddCookie("name", "plaintext_value123XYZ", "foo.bar", "/", base::Time::Now());
700 AddCookie("other", "something456ABC", "foo.bar", "/",
701 base::Time::Now() + base::TimeDelta::FromInternalValue(10));
702 DestroyStore();
703 STLDeleteElements(&cookies_);
704 CreateAndLoad(true, false, &cookies);
705 EXPECT_EQ(2U, cookies_.size());
706 CanonicalCookie* cookie_name = nullptr;
707 CanonicalCookie* cookie_other = nullptr;
708 if (cookies_[0]->Name() == "name") {
709 cookie_name = cookies_[0];
710 cookie_other = cookies_[1];
711 } else {
712 cookie_name = cookies_[1];
713 cookie_other = cookies_[0];
715 EXPECT_EQ("plaintext_value123XYZ", cookie_name->Value());
716 EXPECT_EQ("something456ABC", cookie_other->Value());
717 DestroyStore();
718 STLDeleteElements(&cookies_);
720 // Verify that "value" is now visible in the file.
721 contents = ReadRawDBContents();
722 EXPECT_NE(0U, contents.length());
723 EXPECT_NE(contents.find("value123XYZ"), std::string::npos);
726 namespace {
727 void WasCalledWithNoCookies(bool* was_called_with_no_cookies,
728 const std::vector<CanonicalCookie*>& cookies) {
729 *was_called_with_no_cookies = cookies.empty();
733 TEST_F(SQLitePersistentCookieStoreTest, EmptyLoadAfterClose) {
734 // Create unencrypted cookie store and write something to it.
735 InitializeStore(false, false);
736 AddCookie("name", "value123XYZ", "foo.bar", "/", base::Time::Now());
737 DestroyStore();
739 // Create the cookie store, but immediately close it.
740 Create(false, false);
741 store_->Close(base::Closure());
743 // Expect any attempt to call Load() to synchronously respond with an empty
744 // vector of cookies after we've Close()d the database.
745 bool was_called_with_no_cookies = false;
746 store_->Load(base::Bind(WasCalledWithNoCookies, &was_called_with_no_cookies));
747 EXPECT_TRUE(was_called_with_no_cookies);
749 // Same with trying to load a specific cookie.
750 was_called_with_no_cookies = false;
751 store_->LoadCookiesForKey("foo.bar", base::Bind(WasCalledWithNoCookies,
752 &was_called_with_no_cookies));
753 EXPECT_TRUE(was_called_with_no_cookies);
756 } // namespace net