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| 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2013 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "net/disk_cache/backend_impl.h" | |
| 6 | |
| 7 #include "base/bind.h" | |
| 8 #include "base/bind_helpers.h" | |
| 9 #include "base/file_util.h" | 5 #include "base/file_util.h" |
| 10 #include "base/files/file_path.h" | |
| 11 #include "base/hash.h" | |
| 12 #include "base/message_loop.h" | |
| 13 #include "base/metrics/field_trial.h" | 6 #include "base/metrics/field_trial.h" |
| 14 #include "base/metrics/histogram.h" | |
| 15 #include "base/metrics/stats_counters.h" | |
| 16 #include "base/rand_util.h" | |
| 17 #include "base/string_util.h" | 7 #include "base/string_util.h" |
| 18 #include "base/stringprintf.h" | 8 #include "base/stringprintf.h" |
| 19 #include "base/sys_info.h" | |
| 20 #include "base/threading/thread_restrictions.h" | 9 #include "base/threading/thread_restrictions.h" |
| 21 #include "base/threading/worker_pool.h" | 10 #include "base/threading/worker_pool.h" |
| 22 #include "base/time.h" | |
| 23 #include "base/timer.h" | |
| 24 #include "net/base/net_errors.h" | 11 #include "net/base/net_errors.h" |
| 12 #include "net/disk_cache/backend_impl.h" | |
| 25 #include "net/disk_cache/cache_util.h" | 13 #include "net/disk_cache/cache_util.h" |
| 26 #include "net/disk_cache/entry_impl.h" | 14 #include "net/disk_cache/disk_cache.h" |
| 27 #include "net/disk_cache/errors.h" | |
| 28 #include "net/disk_cache/experiments.h" | |
| 29 #include "net/disk_cache/file.h" | |
| 30 #include "net/disk_cache/mem_backend_impl.h" | 15 #include "net/disk_cache/mem_backend_impl.h" |
| 31 #include "net/disk_cache/simple/simple_backend_impl.h" | 16 #include "net/disk_cache/simple/simple_backend_impl.h" |
| 32 | 17 |
| 33 // This has to be defined before including histogram_macros.h from this file. | |
| 34 #define NET_DISK_CACHE_BACKEND_IMPL_CC_ | |
| 35 #include "net/disk_cache/histogram_macros.h" | |
| 36 | |
| 37 using base::Time; | |
| 38 using base::TimeDelta; | |
| 39 using base::TimeTicks; | |
| 40 | |
| 41 namespace { | 18 namespace { |
| 42 | 19 |
| 43 const char* kIndexName = "index"; | |
| 44 const int kMaxOldFolders = 100; | 20 const int kMaxOldFolders = 100; |
| 45 | 21 |
| 46 // Seems like ~240 MB correspond to less than 50k entries for 99% of the people. | |
| 47 // Note that the actual target is to keep the index table load factor under 55% | |
| 48 // for most users. | |
| 49 const int k64kEntriesStore = 240 * 1000 * 1000; | |
| 50 const int kBaseTableLen = 64 * 1024; | |
| 51 const int kDefaultCacheSize = 80 * 1024 * 1024; | |
| 52 | |
| 53 // Avoid trimming the cache for the first 5 minutes (10 timer ticks). | |
| 54 const int kTrimDelay = 10; | |
| 55 | |
| 56 int DesiredIndexTableLen(int32 storage_size) { | |
| 57 if (storage_size <= k64kEntriesStore) | |
| 58 return kBaseTableLen; | |
| 59 if (storage_size <= k64kEntriesStore * 2) | |
| 60 return kBaseTableLen * 2; | |
| 61 if (storage_size <= k64kEntriesStore * 4) | |
| 62 return kBaseTableLen * 4; | |
| 63 if (storage_size <= k64kEntriesStore * 8) | |
| 64 return kBaseTableLen * 8; | |
| 65 | |
| 66 // The biggest storage_size for int32 requires a 4 MB table. | |
| 67 return kBaseTableLen * 16; | |
| 68 } | |
| 69 | |
| 70 int MaxStorageSizeForTable(int table_len) { | |
| 71 return table_len * (k64kEntriesStore / kBaseTableLen); | |
| 72 } | |
| 73 | |
| 74 size_t GetIndexSize(int table_len) { | |
| 75 size_t table_size = sizeof(disk_cache::CacheAddr) * table_len; | |
| 76 return sizeof(disk_cache::IndexHeader) + table_size; | |
| 77 } | |
| 78 | |
| 79 // ------------------------------------------------------------------------ | |
| 80 | |
| 81 // Returns a fully qualified name from path and name, using a given name prefix | 22 // Returns a fully qualified name from path and name, using a given name prefix |
| 82 // and index number. For instance, if the arguments are "/foo", "bar" and 5, it | 23 // and index number. For instance, if the arguments are "/foo", "bar" and 5, it |
| 83 // will return "/foo/old_bar_005". | 24 // will return "/foo/old_bar_005". |
| 84 base::FilePath GetPrefixedName(const base::FilePath& path, | 25 base::FilePath GetPrefixedName(const base::FilePath& path, |
| 85 const std::string& name, | 26 const std::string& name, |
| 86 int index) { | 27 int index) { |
| 87 std::string tmp = base::StringPrintf("%s%s_%03d", "old_", | 28 std::string tmp = base::StringPrintf("%s%s_%03d", "old_", |
| 88 name.c_str(), index); | 29 name.c_str(), index); |
| 89 return path.AppendASCII(tmp); | 30 return path.AppendASCII(tmp); |
| 90 } | 31 } |
| (...skipping 12 matching lines...) Expand all Loading... | |
| 103 const std::string& name) { | 44 const std::string& name) { |
| 104 // We'll attempt to have up to kMaxOldFolders folders for deletion. | 45 // We'll attempt to have up to kMaxOldFolders folders for deletion. |
| 105 for (int i = 0; i < kMaxOldFolders; i++) { | 46 for (int i = 0; i < kMaxOldFolders; i++) { |
| 106 base::FilePath to_delete = GetPrefixedName(path, name, i); | 47 base::FilePath to_delete = GetPrefixedName(path, name, i); |
| 107 if (!file_util::PathExists(to_delete)) | 48 if (!file_util::PathExists(to_delete)) |
| 108 return to_delete; | 49 return to_delete; |
| 109 } | 50 } |
| 110 return base::FilePath(); | 51 return base::FilePath(); |
| 111 } | 52 } |
| 112 | 53 |
| 113 // Moves the cache files to a new folder and creates a task to delete them. | 54 } // namespace |
|
pasko-google - do not use
2013/03/18 15:47:08
I made this jumpy anonymous/disk_cache/anonymous/d
| |
| 55 | |
| 56 namespace disk_cache { | |
| 57 | |
| 58 // In order to process a potentially large number of files, we'll rename the | |
| 59 // cache directory to old_ + original_name + number, (located on the same parent | |
| 60 // directory), and spawn a worker thread to delete all the files on all the | |
| 61 // stale cache directories. The whole process can still fail if we are not able | |
| 62 // to rename the cache directory (for instance due to a sharing violation), and | |
| 63 // in that case a cache for this profile (on the desired path) cannot be | |
| 64 // created. | |
| 114 bool DelayedCacheCleanup(const base::FilePath& full_path) { | 65 bool DelayedCacheCleanup(const base::FilePath& full_path) { |
| 115 // GetTempCacheName() and MoveCache() use synchronous file | 66 // GetTempCacheName() and MoveCache() use synchronous file |
| 116 // operations. | 67 // operations. |
| 117 base::ThreadRestrictions::ScopedAllowIO allow_io; | 68 base::ThreadRestrictions::ScopedAllowIO allow_io; |
| 118 | 69 |
| 119 base::FilePath current_path = full_path.StripTrailingSeparators(); | 70 base::FilePath current_path = full_path.StripTrailingSeparators(); |
| 120 | 71 |
| 121 base::FilePath path = current_path.DirName(); | 72 base::FilePath path = current_path.DirName(); |
| 122 base::FilePath name = current_path.BaseName(); | 73 base::FilePath name = current_path.BaseName(); |
| 123 #if defined(OS_POSIX) | 74 #if defined(OS_POSIX) |
| (...skipping 13 matching lines...) Expand all Loading... | |
| 137 LOG(ERROR) << "Unable to move cache folder " << full_path.value() << " to " | 88 LOG(ERROR) << "Unable to move cache folder " << full_path.value() << " to " |
| 138 << to_delete.value(); | 89 << to_delete.value(); |
| 139 return false; | 90 return false; |
| 140 } | 91 } |
| 141 | 92 |
| 142 base::WorkerPool::PostTask( | 93 base::WorkerPool::PostTask( |
| 143 FROM_HERE, base::Bind(&CleanupCallback, path, name_str), true); | 94 FROM_HERE, base::Bind(&CleanupCallback, path, name_str), true); |
| 144 return true; | 95 return true; |
| 145 } | 96 } |
| 146 | 97 |
| 147 // Sets group for the current experiment. Returns false if the files should be | 98 } // namespace disk_cache |
| 148 // discarded. | |
| 149 bool InitExperiment(disk_cache::IndexHeader* header) { | |
| 150 if (header->experiment == disk_cache::EXPERIMENT_OLD_FILE1 || | |
| 151 header->experiment == disk_cache::EXPERIMENT_OLD_FILE2) { | |
| 152 // Discard current cache. | |
| 153 return false; | |
| 154 } | |
| 155 | 99 |
| 156 header->experiment = disk_cache::NO_EXPERIMENT; | 100 namespace { |
| 157 return true; | |
| 158 } | |
| 159 | 101 |
| 160 // ------------------------------------------------------------------------ | 102 // Builds an instance of the backend depending on command-line option. Takes |
| 161 | 103 // care of the retry state. This object will self-destroy when finished. |
| 162 // This class takes care of building an instance of the backend. | |
| 163 class CacheCreator { | 104 class CacheCreator { |
| 164 public: | 105 public: |
| 165 CacheCreator(const base::FilePath& path, bool force, int max_bytes, | 106 CacheCreator(const base::FilePath& path, bool force, int max_bytes, |
| 166 net::CacheType type, uint32 flags, | 107 net::CacheType type, uint32 flags, |
| 167 base::MessageLoopProxy* thread, net::NetLog* net_log, | 108 base::MessageLoopProxy* thread, net::NetLog* net_log, |
| 168 disk_cache::Backend** backend, | 109 disk_cache::Backend** backend, |
| 169 const net::CompletionCallback& callback) | 110 const net::CompletionCallback& callback); |
| 170 : path_(path), | |
| 171 force_(force), | |
| 172 retry_(false), | |
| 173 max_bytes_(max_bytes), | |
| 174 type_(type), | |
| 175 flags_(flags), | |
| 176 thread_(thread), | |
| 177 backend_(backend), | |
| 178 callback_(callback), | |
| 179 cache_(NULL), | |
| 180 net_log_(net_log) { | |
| 181 } | |
| 182 ~CacheCreator() {} | |
| 183 | 111 |
| 184 // Creates the backend. | 112 // Creates the backend. |
| 185 int Run(); | 113 int Run(); |
| 186 | 114 |
| 187 private: | 115 private: |
| 116 ~CacheCreator(); | |
| 117 | |
| 188 void DoCallback(int result); | 118 void DoCallback(int result); |
| 189 | 119 |
| 190 // Callback implementation. | 120 // Callback implementation. |
| 191 void OnIOComplete(int result); | 121 void OnIOComplete(int result); |
| 192 | 122 |
| 193 const base::FilePath& path_; | 123 const base::FilePath& path_; |
| 194 bool force_; | 124 bool force_; |
| 195 bool retry_; | 125 bool retry_; |
| 196 int max_bytes_; | 126 int max_bytes_; |
| 197 net::CacheType type_; | 127 net::CacheType type_; |
| 198 uint32 flags_; | 128 uint32 flags_; |
| 199 scoped_refptr<base::MessageLoopProxy> thread_; | 129 scoped_refptr<base::MessageLoopProxy> thread_; |
| 200 disk_cache::Backend** backend_; | 130 disk_cache::Backend** backend_; |
| 201 net::CompletionCallback callback_; | 131 net::CompletionCallback callback_; |
| 202 disk_cache::BackendImpl* cache_; | 132 disk_cache::Backend* created_cache_; |
| 203 net::NetLog* net_log_; | 133 net::NetLog* net_log_; |
| 204 | 134 |
| 205 DISALLOW_COPY_AND_ASSIGN(CacheCreator); | 135 DISALLOW_COPY_AND_ASSIGN(CacheCreator); |
| 206 }; | 136 }; |
| 207 | 137 |
| 138 CacheCreator::CacheCreator( | |
| 139 const base::FilePath& path, bool force, int max_bytes, | |
| 140 net::CacheType type, uint32 flags, | |
| 141 base::MessageLoopProxy* thread, net::NetLog* net_log, | |
| 142 disk_cache::Backend** backend, | |
| 143 const net::CompletionCallback& callback) | |
| 144 : path_(path), | |
| 145 force_(force), | |
| 146 retry_(false), | |
| 147 max_bytes_(max_bytes), | |
| 148 type_(type), | |
| 149 flags_(flags), | |
| 150 thread_(thread), | |
| 151 backend_(backend), | |
| 152 callback_(callback), | |
| 153 created_cache_(NULL), | |
| 154 net_log_(net_log) { | |
| 155 } | |
| 156 | |
| 157 CacheCreator::~CacheCreator() { | |
| 158 } | |
| 159 | |
| 208 int CacheCreator::Run() { | 160 int CacheCreator::Run() { |
| 209 cache_ = new disk_cache::BackendImpl(path_, thread_, net_log_); | 161 if (type_ == net::MEMORY_CACHE) { |
| 210 cache_->SetMaxSize(max_bytes_); | 162 *backend_ = disk_cache::MemBackendImpl::CreateBackend(max_bytes_, net_log_); |
| 211 cache_->SetType(type_); | 163 return *backend_ ? net::OK : net::ERR_FAILED; |
| 212 cache_->SetFlags(flags_); | 164 } |
| 213 int rv = cache_->Init( | 165 // TODO(pasko): The two caches should never coexist. Set up cache cleanup in |
| 166 // two cases: (1) the other version of the cache exists, (2) we are in the | |
| 167 // "Control" group of the experiment. | |
| 168 if (base::FieldTrialList::FindFullName("SimpleCacheTrial") == "Yes") { | |
| 169 // TODO(gavinp,pasko): While simple backend development proceeds, we're only | |
| 170 // testing it against net::DISK_CACHE. Turn it on for more cache types as | |
| 171 // appropriate. | |
| 172 if (type_ == net::DISK_CACHE) { | |
| 173 VLOG(1) << "Using the Simple Cache Backend."; | |
| 174 return disk_cache::SimpleBackendImpl::CreateBackend(path_, max_bytes_, | |
| 175 type_, disk_cache::kNone, thread_, net_log_, backend_, | |
| 176 base::Bind(&CacheCreator::OnIOComplete, base::Unretained(this))); | |
| 177 } | |
| 178 } | |
| 179 disk_cache::BackendImpl* new_cache = new disk_cache::BackendImpl( | |
| 180 path_, thread_, net_log_); | |
| 181 created_cache_ = new_cache; | |
| 182 new_cache->SetMaxSize(max_bytes_); | |
| 183 new_cache->SetType(type_); | |
| 184 new_cache->SetFlags(flags_); | |
| 185 int rv = new_cache->Init( | |
| 214 base::Bind(&CacheCreator::OnIOComplete, base::Unretained(this))); | 186 base::Bind(&CacheCreator::OnIOComplete, base::Unretained(this))); |
| 215 DCHECK_EQ(net::ERR_IO_PENDING, rv); | 187 DCHECK_EQ(net::ERR_IO_PENDING, rv); |
| 216 return rv; | 188 return rv; |
| 217 } | 189 } |
| 218 | 190 |
| 219 void CacheCreator::DoCallback(int result) { | 191 void CacheCreator::DoCallback(int result) { |
| 220 DCHECK_NE(net::ERR_IO_PENDING, result); | 192 DCHECK_NE(net::ERR_IO_PENDING, result); |
| 221 if (result == net::OK) { | 193 if (result == net::OK) { |
| 222 *backend_ = cache_; | 194 *backend_ = created_cache_; |
| 223 } else { | 195 } else { |
| 224 LOG(ERROR) << "Unable to create cache"; | 196 LOG(ERROR) << "Unable to create cache"; |
| 225 *backend_ = NULL; | 197 *backend_ = NULL; |
| 226 delete cache_; | 198 delete created_cache_; |
| 227 } | 199 } |
| 228 callback_.Run(result); | 200 callback_.Run(result); |
| 229 delete this; | 201 delete this; |
| 230 } | 202 } |
| 231 | 203 |
| 204 // If the initialization of the cache fails, and |force| is true, we will | |
| 205 // discard the whole cache and create a new one. | |
| 232 void CacheCreator::OnIOComplete(int result) { | 206 void CacheCreator::OnIOComplete(int result) { |
| 233 if (result == net::OK || !force_ || retry_) | 207 if (result == net::OK || !force_ || retry_) |
| 234 return DoCallback(result); | 208 return DoCallback(result); |
| 235 | 209 |
| 236 // This is a failure and we are supposed to try again, so delete the object, | 210 // This is a failure and we are supposed to try again, so delete the object, |
| 237 // delete all the files, and try again. | 211 // delete all the files, and try again. |
| 238 retry_ = true; | 212 retry_ = true; |
| 239 delete cache_; | 213 delete created_cache_; |
| 240 cache_ = NULL; | 214 created_cache_ = NULL; |
| 241 if (!DelayedCacheCleanup(path_)) | 215 if (!disk_cache::DelayedCacheCleanup(path_)) |
| 242 return DoCallback(result); | 216 return DoCallback(result); |
| 243 | 217 |
| 244 // The worker thread will start deleting files soon, but the original folder | 218 // The worker thread will start deleting files soon, but the original folder |
| 245 // is not there anymore... let's create a new set of files. | 219 // is not there anymore... let's create a new set of files. |
| 246 int rv = Run(); | 220 int rv = Run(); |
| 247 DCHECK_EQ(net::ERR_IO_PENDING, rv); | 221 DCHECK_EQ(net::ERR_IO_PENDING, rv); |
| 248 } | 222 } |
| 249 | 223 |
| 250 // A callback to perform final cleanup on the background thread. | |
| 251 void FinalCleanupCallback(disk_cache::BackendImpl* backend) { | |
| 252 backend->CleanupCache(); | |
| 253 } | |
| 254 | |
| 255 } // namespace | 224 } // namespace |
| 256 | 225 |
| 257 // ------------------------------------------------------------------------ | |
| 258 | |
| 259 namespace disk_cache { | 226 namespace disk_cache { |
| 260 | 227 |
| 261 int CreateCacheBackend(net::CacheType type, const base::FilePath& path, | 228 int CreateCacheBackendWithFlags(net::CacheType type, const base::FilePath& path, |
| 262 int max_bytes, | 229 int max_bytes, bool force, uint32 flags, base::MessageLoopProxy* thread, |
| 263 bool force, base::MessageLoopProxy* thread, | 230 net::NetLog* net_log, Backend** backend, |
| 264 net::NetLog* net_log, Backend** backend, | 231 const net::CompletionCallback& callback) { |
| 265 const net::CompletionCallback& callback) { | |
| 266 // TODO(pasko): Separate out cache creation when landing cache tracer. | |
| 267 DCHECK(!callback.is_null()); | 232 DCHECK(!callback.is_null()); |
| 268 if (type == net::MEMORY_CACHE) { | 233 DCHECK(thread || type == net::MEMORY_CACHE); |
| 269 *backend = MemBackendImpl::CreateBackend(max_bytes, net_log); | 234 CacheCreator* creator = new CacheCreator(path, force, max_bytes, type, flags, |
| 270 return *backend ? net::OK : net::ERR_FAILED; | 235 thread, net_log, backend, callback); |
| 271 } | |
| 272 DCHECK(thread); | |
| 273 | |
| 274 #if defined(USE_SIMPLE_CACHE_BACKEND) | |
| 275 // TODO(gavinp,pasko): While simple backend development proceeds, we're only | |
| 276 // testing it against net::DISK_CACHE. Turn it on for more cache types as | |
| 277 // appropriate. | |
| 278 if (type == net::DISK_CACHE) { | |
| 279 return SimpleBackendImpl::CreateBackend(path, force, max_bytes, type, kNone, | |
| 280 thread, net_log, backend, callback); | |
| 281 } | |
| 282 #endif | |
| 283 return BackendImpl::CreateBackend(path, force, max_bytes, type, kNone, | |
| 284 thread, net_log, backend, callback); | |
| 285 } | |
| 286 | |
| 287 // Returns the preferred maximum number of bytes for the cache given the | |
| 288 // number of available bytes. | |
| 289 int PreferedCacheSize(int64 available) { | |
| 290 // Return 80% of the available space if there is not enough space to use | |
| 291 // kDefaultCacheSize. | |
| 292 if (available < kDefaultCacheSize * 10 / 8) | |
| 293 return static_cast<int32>(available * 8 / 10); | |
| 294 | |
| 295 // Return kDefaultCacheSize if it uses 80% to 10% of the available space. | |
| 296 if (available < kDefaultCacheSize * 10) | |
| 297 return kDefaultCacheSize; | |
| 298 | |
| 299 // Return 10% of the available space if the target size | |
| 300 // (2.5 * kDefaultCacheSize) is more than 10%. | |
| 301 if (available < static_cast<int64>(kDefaultCacheSize) * 25) | |
| 302 return static_cast<int32>(available / 10); | |
| 303 | |
| 304 // Return the target size (2.5 * kDefaultCacheSize) if it uses 10% to 1% | |
| 305 // of the available space. | |
| 306 if (available < static_cast<int64>(kDefaultCacheSize) * 250) | |
| 307 return kDefaultCacheSize * 5 / 2; | |
| 308 | |
| 309 // Return 1% of the available space if it does not exceed kint32max. | |
| 310 if (available < static_cast<int64>(kint32max) * 100) | |
| 311 return static_cast<int32>(available / 100); | |
| 312 | |
| 313 return kint32max; | |
| 314 } | |
| 315 | |
| 316 // ------------------------------------------------------------------------ | |
| 317 | |
| 318 BackendImpl::BackendImpl(const base::FilePath& path, | |
| 319 base::MessageLoopProxy* cache_thread, | |
| 320 net::NetLog* net_log) | |
| 321 : ALLOW_THIS_IN_INITIALIZER_LIST(background_queue_(this, cache_thread)), | |
| 322 path_(path), | |
| 323 block_files_(path), | |
| 324 mask_(0), | |
| 325 max_size_(0), | |
| 326 up_ticks_(0), | |
| 327 cache_type_(net::DISK_CACHE), | |
| 328 uma_report_(0), | |
| 329 user_flags_(0), | |
| 330 init_(false), | |
| 331 restarted_(false), | |
| 332 unit_test_(false), | |
| 333 read_only_(false), | |
| 334 disabled_(false), | |
| 335 new_eviction_(false), | |
| 336 first_timer_(true), | |
| 337 user_load_(false), | |
| 338 net_log_(net_log), | |
| 339 done_(true, false), | |
| 340 ALLOW_THIS_IN_INITIALIZER_LIST(ptr_factory_(this)) { | |
| 341 } | |
| 342 | |
| 343 BackendImpl::BackendImpl(const base::FilePath& path, | |
| 344 uint32 mask, | |
| 345 base::MessageLoopProxy* cache_thread, | |
| 346 net::NetLog* net_log) | |
| 347 : ALLOW_THIS_IN_INITIALIZER_LIST(background_queue_(this, cache_thread)), | |
| 348 path_(path), | |
| 349 block_files_(path), | |
| 350 mask_(mask), | |
| 351 max_size_(0), | |
| 352 up_ticks_(0), | |
| 353 cache_type_(net::DISK_CACHE), | |
| 354 uma_report_(0), | |
| 355 user_flags_(kMask), | |
| 356 init_(false), | |
| 357 restarted_(false), | |
| 358 unit_test_(false), | |
| 359 read_only_(false), | |
| 360 disabled_(false), | |
| 361 new_eviction_(false), | |
| 362 first_timer_(true), | |
| 363 user_load_(false), | |
| 364 net_log_(net_log), | |
| 365 done_(true, false), | |
| 366 ALLOW_THIS_IN_INITIALIZER_LIST(ptr_factory_(this)) { | |
| 367 } | |
| 368 | |
| 369 BackendImpl::~BackendImpl() { | |
| 370 if (user_flags_ & kNoRandom) { | |
| 371 // This is a unit test, so we want to be strict about not leaking entries | |
| 372 // and completing all the work. | |
| 373 background_queue_.WaitForPendingIO(); | |
| 374 } else { | |
| 375 // This is most likely not a test, so we want to do as little work as | |
| 376 // possible at this time, at the price of leaving dirty entries behind. | |
| 377 background_queue_.DropPendingIO(); | |
| 378 } | |
| 379 | |
| 380 if (background_queue_.BackgroundIsCurrentThread()) { | |
| 381 // Unit tests may use the same thread for everything. | |
| 382 CleanupCache(); | |
| 383 } else { | |
| 384 background_queue_.background_thread()->PostTask( | |
| 385 FROM_HERE, base::Bind(&FinalCleanupCallback, base::Unretained(this))); | |
| 386 // http://crbug.com/74623 | |
| 387 base::ThreadRestrictions::ScopedAllowWait allow_wait; | |
| 388 done_.Wait(); | |
| 389 } | |
| 390 } | |
| 391 | |
| 392 // If the initialization of the cache fails, and force is true, we will discard | |
| 393 // the whole cache and create a new one. In order to process a potentially large | |
| 394 // number of files, we'll rename the cache folder to old_ + original_name + | |
| 395 // number, (located on the same parent folder), and spawn a worker thread to | |
| 396 // delete all the files on all the stale cache folders. The whole process can | |
| 397 // still fail if we are not able to rename the cache folder (for instance due to | |
| 398 // a sharing violation), and in that case a cache for this profile (on the | |
| 399 // desired path) cannot be created. | |
| 400 // | |
| 401 // Static. | |
| 402 int BackendImpl::CreateBackend(const base::FilePath& full_path, bool force, | |
| 403 int max_bytes, net::CacheType type, | |
| 404 uint32 flags, base::MessageLoopProxy* thread, | |
| 405 net::NetLog* net_log, Backend** backend, | |
| 406 const CompletionCallback& callback) { | |
| 407 DCHECK(!callback.is_null()); | |
| 408 CacheCreator* creator = | |
| 409 new CacheCreator(full_path, force, max_bytes, type, flags, thread, | |
| 410 net_log, backend, callback); | |
| 411 // This object will self-destroy when finished. | |
| 412 return creator->Run(); | 236 return creator->Run(); |
| 413 } | 237 } |
| 414 | 238 |
| 415 int BackendImpl::Init(const CompletionCallback& callback) { | 239 int CreateCacheBackend(net::CacheType type, const base::FilePath& path, |
| 416 background_queue_.Init(callback); | 240 int max_bytes, bool force, base::MessageLoopProxy* thread, |
| 417 return net::ERR_IO_PENDING; | 241 net::NetLog* net_log, Backend** backend, |
| 242 const net::CompletionCallback& callback) { | |
| 243 return CreateCacheBackendWithFlags(type, path, max_bytes, force, kNone, | |
| 244 thread, net_log, backend, callback); | |
| 418 } | 245 } |
| 419 | 246 |
| 420 int BackendImpl::SyncInit() { | |
| 421 #if defined(NET_BUILD_STRESS_CACHE) | |
| 422 // Start evictions right away. | |
| 423 up_ticks_ = kTrimDelay * 2; | |
| 424 #endif | |
| 425 DCHECK(!init_); | |
| 426 if (init_) | |
| 427 return net::ERR_FAILED; | |
| 428 | |
| 429 bool create_files = false; | |
| 430 if (!InitBackingStore(&create_files)) { | |
| 431 ReportError(ERR_STORAGE_ERROR); | |
| 432 return net::ERR_FAILED; | |
| 433 } | |
| 434 | |
| 435 num_refs_ = num_pending_io_ = max_refs_ = 0; | |
| 436 entry_count_ = byte_count_ = 0; | |
| 437 | |
| 438 if (!restarted_) { | |
| 439 buffer_bytes_ = 0; | |
| 440 trace_object_ = TraceObject::GetTraceObject(); | |
| 441 // Create a recurrent timer of 30 secs. | |
| 442 int timer_delay = unit_test_ ? 1000 : 30000; | |
| 443 timer_.reset(new base::RepeatingTimer<BackendImpl>()); | |
| 444 timer_->Start(FROM_HERE, TimeDelta::FromMilliseconds(timer_delay), this, | |
| 445 &BackendImpl::OnStatsTimer); | |
| 446 } | |
| 447 | |
| 448 init_ = true; | |
| 449 Trace("Init"); | |
| 450 | |
| 451 if (data_->header.experiment != NO_EXPERIMENT && | |
| 452 cache_type_ != net::DISK_CACHE) { | |
| 453 // No experiment for other caches. | |
| 454 return net::ERR_FAILED; | |
| 455 } | |
| 456 | |
| 457 if (!(user_flags_ & kNoRandom)) { | |
| 458 // The unit test controls directly what to test. | |
| 459 new_eviction_ = (cache_type_ == net::DISK_CACHE); | |
| 460 } | |
| 461 | |
| 462 if (!CheckIndex()) { | |
| 463 ReportError(ERR_INIT_FAILED); | |
| 464 return net::ERR_FAILED; | |
| 465 } | |
| 466 | |
| 467 if (!restarted_ && (create_files || !data_->header.num_entries)) | |
| 468 ReportError(ERR_CACHE_CREATED); | |
| 469 | |
| 470 if (!(user_flags_ & kNoRandom) && | |
| 471 cache_type_ == net::DISK_CACHE && !InitExperiment(&data_->header)) | |
| 472 return net::ERR_FAILED; | |
| 473 | |
| 474 // We don't care if the value overflows. The only thing we care about is that | |
| 475 // the id cannot be zero, because that value is used as "not dirty". | |
| 476 // Increasing the value once per second gives us many years before we start | |
| 477 // having collisions. | |
| 478 data_->header.this_id++; | |
| 479 if (!data_->header.this_id) | |
| 480 data_->header.this_id++; | |
| 481 | |
| 482 bool previous_crash = (data_->header.crash != 0); | |
| 483 data_->header.crash = 1; | |
| 484 | |
| 485 if (!block_files_.Init(create_files)) | |
| 486 return net::ERR_FAILED; | |
| 487 | |
| 488 // We want to minimize the changes to cache for an AppCache. | |
| 489 if (cache_type() == net::APP_CACHE) { | |
| 490 DCHECK(!new_eviction_); | |
| 491 read_only_ = true; | |
| 492 } else if (cache_type() == net::SHADER_CACHE) { | |
| 493 DCHECK(!new_eviction_); | |
| 494 } | |
| 495 | |
| 496 eviction_.Init(this); | |
| 497 | |
| 498 // stats_ and rankings_ may end up calling back to us so we better be enabled. | |
| 499 disabled_ = false; | |
| 500 if (!stats_.Init(this, &data_->header.stats)) | |
| 501 return net::ERR_FAILED; | |
| 502 | |
| 503 disabled_ = !rankings_.Init(this, new_eviction_); | |
| 504 | |
| 505 #if defined(STRESS_CACHE_EXTENDED_VALIDATION) | |
| 506 trace_object_->EnableTracing(false); | |
| 507 int sc = SelfCheck(); | |
| 508 if (sc < 0 && sc != ERR_NUM_ENTRIES_MISMATCH) | |
| 509 NOTREACHED(); | |
| 510 trace_object_->EnableTracing(true); | |
| 511 #endif | |
| 512 | |
| 513 if (previous_crash) { | |
| 514 ReportError(ERR_PREVIOUS_CRASH); | |
| 515 } else if (!restarted_) { | |
| 516 ReportError(ERR_NO_ERROR); | |
| 517 } | |
| 518 | |
| 519 FlushIndex(); | |
| 520 | |
| 521 return disabled_ ? net::ERR_FAILED : net::OK; | |
| 522 } | |
| 523 | |
| 524 void BackendImpl::CleanupCache() { | |
| 525 Trace("Backend Cleanup"); | |
| 526 eviction_.Stop(); | |
| 527 timer_.reset(); | |
| 528 | |
| 529 if (init_) { | |
| 530 stats_.Store(); | |
| 531 if (data_) | |
| 532 data_->header.crash = 0; | |
| 533 | |
| 534 if (user_flags_ & kNoRandom) { | |
| 535 // This is a net_unittest, verify that we are not 'leaking' entries. | |
| 536 File::WaitForPendingIO(&num_pending_io_); | |
| 537 DCHECK(!num_refs_); | |
| 538 } else { | |
| 539 File::DropPendingIO(); | |
| 540 } | |
| 541 } | |
| 542 block_files_.CloseFiles(); | |
| 543 FlushIndex(); | |
| 544 index_ = NULL; | |
| 545 ptr_factory_.InvalidateWeakPtrs(); | |
| 546 done_.Signal(); | |
| 547 } | |
| 548 | |
| 549 // ------------------------------------------------------------------------ | |
| 550 | |
| 551 int BackendImpl::OpenPrevEntry(void** iter, Entry** prev_entry, | |
| 552 const CompletionCallback& callback) { | |
| 553 DCHECK(!callback.is_null()); | |
| 554 background_queue_.OpenPrevEntry(iter, prev_entry, callback); | |
| 555 return net::ERR_IO_PENDING; | |
| 556 } | |
| 557 | |
| 558 int BackendImpl::SyncOpenEntry(const std::string& key, Entry** entry) { | |
| 559 DCHECK(entry); | |
| 560 *entry = OpenEntryImpl(key); | |
| 561 return (*entry) ? net::OK : net::ERR_FAILED; | |
| 562 } | |
| 563 | |
| 564 int BackendImpl::SyncCreateEntry(const std::string& key, Entry** entry) { | |
| 565 DCHECK(entry); | |
| 566 *entry = CreateEntryImpl(key); | |
| 567 return (*entry) ? net::OK : net::ERR_FAILED; | |
| 568 } | |
| 569 | |
| 570 int BackendImpl::SyncDoomEntry(const std::string& key) { | |
| 571 if (disabled_) | |
| 572 return net::ERR_FAILED; | |
| 573 | |
| 574 EntryImpl* entry = OpenEntryImpl(key); | |
| 575 if (!entry) | |
| 576 return net::ERR_FAILED; | |
| 577 | |
| 578 entry->DoomImpl(); | |
| 579 entry->Release(); | |
| 580 return net::OK; | |
| 581 } | |
| 582 | |
| 583 int BackendImpl::SyncDoomAllEntries() { | |
| 584 // This is not really an error, but it is an interesting condition. | |
| 585 ReportError(ERR_CACHE_DOOMED); | |
| 586 stats_.OnEvent(Stats::DOOM_CACHE); | |
| 587 if (!num_refs_) { | |
| 588 RestartCache(false); | |
| 589 return disabled_ ? net::ERR_FAILED : net::OK; | |
| 590 } else { | |
| 591 if (disabled_) | |
| 592 return net::ERR_FAILED; | |
| 593 | |
| 594 eviction_.TrimCache(true); | |
| 595 return net::OK; | |
| 596 } | |
| 597 } | |
| 598 | |
| 599 int BackendImpl::SyncDoomEntriesBetween(const base::Time initial_time, | |
| 600 const base::Time end_time) { | |
| 601 DCHECK_NE(net::APP_CACHE, cache_type_); | |
| 602 if (end_time.is_null()) | |
| 603 return SyncDoomEntriesSince(initial_time); | |
| 604 | |
| 605 DCHECK(end_time >= initial_time); | |
| 606 | |
| 607 if (disabled_) | |
| 608 return net::ERR_FAILED; | |
| 609 | |
| 610 EntryImpl* node; | |
| 611 void* iter = NULL; | |
| 612 EntryImpl* next = OpenNextEntryImpl(&iter); | |
| 613 if (!next) | |
| 614 return net::OK; | |
| 615 | |
| 616 while (next) { | |
| 617 node = next; | |
| 618 next = OpenNextEntryImpl(&iter); | |
| 619 | |
| 620 if (node->GetLastUsed() >= initial_time && | |
| 621 node->GetLastUsed() < end_time) { | |
| 622 node->DoomImpl(); | |
| 623 } else if (node->GetLastUsed() < initial_time) { | |
| 624 if (next) | |
| 625 next->Release(); | |
| 626 next = NULL; | |
| 627 SyncEndEnumeration(iter); | |
| 628 } | |
| 629 | |
| 630 node->Release(); | |
| 631 } | |
| 632 | |
| 633 return net::OK; | |
| 634 } | |
| 635 | |
| 636 // We use OpenNextEntryImpl to retrieve elements from the cache, until we get | |
| 637 // entries that are too old. | |
| 638 int BackendImpl::SyncDoomEntriesSince(const base::Time initial_time) { | |
| 639 DCHECK_NE(net::APP_CACHE, cache_type_); | |
| 640 if (disabled_) | |
| 641 return net::ERR_FAILED; | |
| 642 | |
| 643 stats_.OnEvent(Stats::DOOM_RECENT); | |
| 644 for (;;) { | |
| 645 void* iter = NULL; | |
| 646 EntryImpl* entry = OpenNextEntryImpl(&iter); | |
| 647 if (!entry) | |
| 648 return net::OK; | |
| 649 | |
| 650 if (initial_time > entry->GetLastUsed()) { | |
| 651 entry->Release(); | |
| 652 SyncEndEnumeration(iter); | |
| 653 return net::OK; | |
| 654 } | |
| 655 | |
| 656 entry->DoomImpl(); | |
| 657 entry->Release(); | |
| 658 SyncEndEnumeration(iter); // Dooming the entry invalidates the iterator. | |
| 659 } | |
| 660 } | |
| 661 | |
| 662 int BackendImpl::SyncOpenNextEntry(void** iter, Entry** next_entry) { | |
| 663 *next_entry = OpenNextEntryImpl(iter); | |
| 664 return (*next_entry) ? net::OK : net::ERR_FAILED; | |
| 665 } | |
| 666 | |
| 667 int BackendImpl::SyncOpenPrevEntry(void** iter, Entry** prev_entry) { | |
| 668 *prev_entry = OpenPrevEntryImpl(iter); | |
| 669 return (*prev_entry) ? net::OK : net::ERR_FAILED; | |
| 670 } | |
| 671 | |
| 672 void BackendImpl::SyncEndEnumeration(void* iter) { | |
| 673 scoped_ptr<Rankings::Iterator> iterator( | |
| 674 reinterpret_cast<Rankings::Iterator*>(iter)); | |
| 675 } | |
| 676 | |
| 677 void BackendImpl::SyncOnExternalCacheHit(const std::string& key) { | |
| 678 if (disabled_) | |
| 679 return; | |
| 680 | |
| 681 uint32 hash = base::Hash(key); | |
| 682 bool error; | |
| 683 EntryImpl* cache_entry = MatchEntry(key, hash, false, Addr(), &error); | |
| 684 if (cache_entry) { | |
| 685 if (ENTRY_NORMAL == cache_entry->entry()->Data()->state) { | |
| 686 UpdateRank(cache_entry, cache_type() == net::SHADER_CACHE); | |
| 687 } | |
| 688 cache_entry->Release(); | |
| 689 } | |
| 690 } | |
| 691 | |
| 692 EntryImpl* BackendImpl::OpenEntryImpl(const std::string& key) { | |
| 693 if (disabled_) | |
| 694 return NULL; | |
| 695 | |
| 696 TimeTicks start = TimeTicks::Now(); | |
| 697 uint32 hash = base::Hash(key); | |
| 698 Trace("Open hash 0x%x", hash); | |
| 699 | |
| 700 bool error; | |
| 701 EntryImpl* cache_entry = MatchEntry(key, hash, false, Addr(), &error); | |
| 702 if (cache_entry && ENTRY_NORMAL != cache_entry->entry()->Data()->state) { | |
| 703 // The entry was already evicted. | |
| 704 cache_entry->Release(); | |
| 705 cache_entry = NULL; | |
| 706 } | |
| 707 | |
| 708 int current_size = data_->header.num_bytes / (1024 * 1024); | |
| 709 int64 total_hours = stats_.GetCounter(Stats::TIMER) / 120; | |
| 710 int64 no_use_hours = stats_.GetCounter(Stats::LAST_REPORT_TIMER) / 120; | |
| 711 int64 use_hours = total_hours - no_use_hours; | |
| 712 | |
| 713 if (!cache_entry) { | |
| 714 CACHE_UMA(AGE_MS, "OpenTime.Miss", 0, start); | |
| 715 CACHE_UMA(COUNTS_10000, "AllOpenBySize.Miss", 0, current_size); | |
| 716 CACHE_UMA(HOURS, "AllOpenByTotalHours.Miss", 0, total_hours); | |
| 717 CACHE_UMA(HOURS, "AllOpenByUseHours.Miss", 0, use_hours); | |
| 718 stats_.OnEvent(Stats::OPEN_MISS); | |
| 719 return NULL; | |
| 720 } | |
| 721 | |
| 722 eviction_.OnOpenEntry(cache_entry); | |
| 723 entry_count_++; | |
| 724 | |
| 725 Trace("Open hash 0x%x end: 0x%x", hash, | |
| 726 cache_entry->entry()->address().value()); | |
| 727 CACHE_UMA(AGE_MS, "OpenTime", 0, start); | |
| 728 CACHE_UMA(COUNTS_10000, "AllOpenBySize.Hit", 0, current_size); | |
| 729 CACHE_UMA(HOURS, "AllOpenByTotalHours.Hit", 0, total_hours); | |
| 730 CACHE_UMA(HOURS, "AllOpenByUseHours.Hit", 0, use_hours); | |
| 731 stats_.OnEvent(Stats::OPEN_HIT); | |
| 732 SIMPLE_STATS_COUNTER("disk_cache.hit"); | |
| 733 return cache_entry; | |
| 734 } | |
| 735 | |
| 736 EntryImpl* BackendImpl::CreateEntryImpl(const std::string& key) { | |
| 737 if (disabled_ || key.empty()) | |
| 738 return NULL; | |
| 739 | |
| 740 TimeTicks start = TimeTicks::Now(); | |
| 741 uint32 hash = base::Hash(key); | |
| 742 Trace("Create hash 0x%x", hash); | |
| 743 | |
| 744 scoped_refptr<EntryImpl> parent; | |
| 745 Addr entry_address(data_->table[hash & mask_]); | |
| 746 if (entry_address.is_initialized()) { | |
| 747 // We have an entry already. It could be the one we are looking for, or just | |
| 748 // a hash conflict. | |
| 749 bool error; | |
| 750 EntryImpl* old_entry = MatchEntry(key, hash, false, Addr(), &error); | |
| 751 if (old_entry) | |
| 752 return ResurrectEntry(old_entry); | |
| 753 | |
| 754 EntryImpl* parent_entry = MatchEntry(key, hash, true, Addr(), &error); | |
| 755 DCHECK(!error); | |
| 756 if (parent_entry) { | |
| 757 parent.swap(&parent_entry); | |
| 758 } else if (data_->table[hash & mask_]) { | |
| 759 // We should have corrected the problem. | |
| 760 NOTREACHED(); | |
| 761 return NULL; | |
| 762 } | |
| 763 } | |
| 764 | |
| 765 // The general flow is to allocate disk space and initialize the entry data, | |
| 766 // followed by saving that to disk, then linking the entry though the index | |
| 767 // and finally through the lists. If there is a crash in this process, we may | |
| 768 // end up with: | |
| 769 // a. Used, unreferenced empty blocks on disk (basically just garbage). | |
| 770 // b. Used, unreferenced but meaningful data on disk (more garbage). | |
| 771 // c. A fully formed entry, reachable only through the index. | |
| 772 // d. A fully formed entry, also reachable through the lists, but still dirty. | |
| 773 // | |
| 774 // Anything after (b) can be automatically cleaned up. We may consider saving | |
| 775 // the current operation (as we do while manipulating the lists) so that we | |
| 776 // can detect and cleanup (a) and (b). | |
| 777 | |
| 778 int num_blocks = EntryImpl::NumBlocksForEntry(key.size()); | |
| 779 if (!block_files_.CreateBlock(BLOCK_256, num_blocks, &entry_address)) { | |
| 780 LOG(ERROR) << "Create entry failed " << key.c_str(); | |
| 781 stats_.OnEvent(Stats::CREATE_ERROR); | |
| 782 return NULL; | |
| 783 } | |
| 784 | |
| 785 Addr node_address(0); | |
| 786 if (!block_files_.CreateBlock(RANKINGS, 1, &node_address)) { | |
| 787 block_files_.DeleteBlock(entry_address, false); | |
| 788 LOG(ERROR) << "Create entry failed " << key.c_str(); | |
| 789 stats_.OnEvent(Stats::CREATE_ERROR); | |
| 790 return NULL; | |
| 791 } | |
| 792 | |
| 793 scoped_refptr<EntryImpl> cache_entry( | |
| 794 new EntryImpl(this, entry_address, false)); | |
| 795 IncreaseNumRefs(); | |
| 796 | |
| 797 if (!cache_entry->CreateEntry(node_address, key, hash)) { | |
| 798 block_files_.DeleteBlock(entry_address, false); | |
| 799 block_files_.DeleteBlock(node_address, false); | |
| 800 LOG(ERROR) << "Create entry failed " << key.c_str(); | |
| 801 stats_.OnEvent(Stats::CREATE_ERROR); | |
| 802 return NULL; | |
| 803 } | |
| 804 | |
| 805 cache_entry->BeginLogging(net_log_, true); | |
| 806 | |
| 807 // We are not failing the operation; let's add this to the map. | |
| 808 open_entries_[entry_address.value()] = cache_entry; | |
| 809 | |
| 810 // Save the entry. | |
| 811 cache_entry->entry()->Store(); | |
| 812 cache_entry->rankings()->Store(); | |
| 813 IncreaseNumEntries(); | |
| 814 entry_count_++; | |
| 815 | |
| 816 // Link this entry through the index. | |
| 817 if (parent.get()) { | |
| 818 parent->SetNextAddress(entry_address); | |
| 819 } else { | |
| 820 data_->table[hash & mask_] = entry_address.value(); | |
| 821 } | |
| 822 | |
| 823 // Link this entry through the lists. | |
| 824 eviction_.OnCreateEntry(cache_entry); | |
| 825 | |
| 826 CACHE_UMA(AGE_MS, "CreateTime", 0, start); | |
| 827 stats_.OnEvent(Stats::CREATE_HIT); | |
| 828 SIMPLE_STATS_COUNTER("disk_cache.miss"); | |
| 829 Trace("create entry hit "); | |
| 830 FlushIndex(); | |
| 831 cache_entry->AddRef(); | |
| 832 return cache_entry.get(); | |
| 833 } | |
| 834 | |
| 835 EntryImpl* BackendImpl::OpenNextEntryImpl(void** iter) { | |
| 836 return OpenFollowingEntry(true, iter); | |
| 837 } | |
| 838 | |
| 839 EntryImpl* BackendImpl::OpenPrevEntryImpl(void** iter) { | |
| 840 return OpenFollowingEntry(false, iter); | |
| 841 } | |
| 842 | |
| 843 bool BackendImpl::SetMaxSize(int max_bytes) { | |
| 844 COMPILE_ASSERT(sizeof(max_bytes) == sizeof(max_size_), unsupported_int_model); | |
| 845 if (max_bytes < 0) | |
| 846 return false; | |
| 847 | |
| 848 // Zero size means use the default. | |
| 849 if (!max_bytes) | |
| 850 return true; | |
| 851 | |
| 852 // Avoid a DCHECK later on. | |
| 853 if (max_bytes >= kint32max - kint32max / 10) | |
| 854 max_bytes = kint32max - kint32max / 10 - 1; | |
| 855 | |
| 856 user_flags_ |= kMaxSize; | |
| 857 max_size_ = max_bytes; | |
| 858 return true; | |
| 859 } | |
| 860 | |
| 861 void BackendImpl::SetType(net::CacheType type) { | |
| 862 DCHECK_NE(net::MEMORY_CACHE, type); | |
| 863 cache_type_ = type; | |
| 864 } | |
| 865 | |
| 866 base::FilePath BackendImpl::GetFileName(Addr address) const { | |
| 867 if (!address.is_separate_file() || !address.is_initialized()) { | |
| 868 NOTREACHED(); | |
| 869 return base::FilePath(); | |
| 870 } | |
| 871 | |
| 872 std::string tmp = base::StringPrintf("f_%06x", address.FileNumber()); | |
| 873 return path_.AppendASCII(tmp); | |
| 874 } | |
| 875 | |
| 876 MappedFile* BackendImpl::File(Addr address) { | |
| 877 if (disabled_) | |
| 878 return NULL; | |
| 879 return block_files_.GetFile(address); | |
| 880 } | |
| 881 | |
| 882 base::WeakPtr<InFlightBackendIO> BackendImpl::GetBackgroundQueue() { | |
| 883 return background_queue_.GetWeakPtr(); | |
| 884 } | |
| 885 | |
| 886 bool BackendImpl::CreateExternalFile(Addr* address) { | |
| 887 int file_number = data_->header.last_file + 1; | |
| 888 Addr file_address(0); | |
| 889 bool success = false; | |
| 890 for (int i = 0; i < 0x0fffffff; i++, file_number++) { | |
| 891 if (!file_address.SetFileNumber(file_number)) { | |
| 892 file_number = 1; | |
| 893 continue; | |
| 894 } | |
| 895 base::FilePath name = GetFileName(file_address); | |
| 896 int flags = base::PLATFORM_FILE_READ | | |
| 897 base::PLATFORM_FILE_WRITE | | |
| 898 base::PLATFORM_FILE_CREATE | | |
| 899 base::PLATFORM_FILE_EXCLUSIVE_WRITE; | |
| 900 base::PlatformFileError error; | |
| 901 scoped_refptr<disk_cache::File> file(new disk_cache::File( | |
| 902 base::CreatePlatformFile(name, flags, NULL, &error))); | |
| 903 if (!file->IsValid()) { | |
| 904 if (error != base::PLATFORM_FILE_ERROR_EXISTS) { | |
| 905 LOG(ERROR) << "Unable to create file: " << error; | |
| 906 return false; | |
| 907 } | |
| 908 continue; | |
| 909 } | |
| 910 | |
| 911 success = true; | |
| 912 break; | |
| 913 } | |
| 914 | |
| 915 DCHECK(success); | |
| 916 if (!success) | |
| 917 return false; | |
| 918 | |
| 919 data_->header.last_file = file_number; | |
| 920 address->set_value(file_address.value()); | |
| 921 return true; | |
| 922 } | |
| 923 | |
| 924 bool BackendImpl::CreateBlock(FileType block_type, int block_count, | |
| 925 Addr* block_address) { | |
| 926 return block_files_.CreateBlock(block_type, block_count, block_address); | |
| 927 } | |
| 928 | |
| 929 void BackendImpl::DeleteBlock(Addr block_address, bool deep) { | |
| 930 block_files_.DeleteBlock(block_address, deep); | |
| 931 } | |
| 932 | |
| 933 LruData* BackendImpl::GetLruData() { | |
| 934 return &data_->header.lru; | |
| 935 } | |
| 936 | |
| 937 void BackendImpl::UpdateRank(EntryImpl* entry, bool modified) { | |
| 938 if (read_only_ || (!modified && cache_type() == net::SHADER_CACHE)) | |
| 939 return; | |
| 940 eviction_.UpdateRank(entry, modified); | |
| 941 } | |
| 942 | |
| 943 void BackendImpl::RecoveredEntry(CacheRankingsBlock* rankings) { | |
| 944 Addr address(rankings->Data()->contents); | |
| 945 EntryImpl* cache_entry = NULL; | |
| 946 if (NewEntry(address, &cache_entry)) { | |
| 947 STRESS_NOTREACHED(); | |
| 948 return; | |
| 949 } | |
| 950 | |
| 951 uint32 hash = cache_entry->GetHash(); | |
| 952 cache_entry->Release(); | |
| 953 | |
| 954 // Anything on the table means that this entry is there. | |
| 955 if (data_->table[hash & mask_]) | |
| 956 return; | |
| 957 | |
| 958 data_->table[hash & mask_] = address.value(); | |
| 959 FlushIndex(); | |
| 960 } | |
| 961 | |
| 962 void BackendImpl::InternalDoomEntry(EntryImpl* entry) { | |
| 963 uint32 hash = entry->GetHash(); | |
| 964 std::string key = entry->GetKey(); | |
| 965 Addr entry_addr = entry->entry()->address(); | |
| 966 bool error; | |
| 967 EntryImpl* parent_entry = MatchEntry(key, hash, true, entry_addr, &error); | |
| 968 CacheAddr child(entry->GetNextAddress()); | |
| 969 | |
| 970 Trace("Doom entry 0x%p", entry); | |
| 971 | |
| 972 if (!entry->doomed()) { | |
| 973 // We may have doomed this entry from within MatchEntry. | |
| 974 eviction_.OnDoomEntry(entry); | |
| 975 entry->InternalDoom(); | |
| 976 if (!new_eviction_) { | |
| 977 DecreaseNumEntries(); | |
| 978 } | |
| 979 stats_.OnEvent(Stats::DOOM_ENTRY); | |
| 980 } | |
| 981 | |
| 982 if (parent_entry) { | |
| 983 parent_entry->SetNextAddress(Addr(child)); | |
| 984 parent_entry->Release(); | |
| 985 } else if (!error) { | |
| 986 data_->table[hash & mask_] = child; | |
| 987 } | |
| 988 | |
| 989 FlushIndex(); | |
| 990 } | |
| 991 | |
| 992 #if defined(NET_BUILD_STRESS_CACHE) | |
| 993 | |
| 994 CacheAddr BackendImpl::GetNextAddr(Addr address) { | |
| 995 EntriesMap::iterator it = open_entries_.find(address.value()); | |
| 996 if (it != open_entries_.end()) { | |
| 997 EntryImpl* this_entry = it->second; | |
| 998 return this_entry->GetNextAddress(); | |
| 999 } | |
| 1000 DCHECK(block_files_.IsValid(address)); | |
| 1001 DCHECK(!address.is_separate_file() && address.file_type() == BLOCK_256); | |
| 1002 | |
| 1003 CacheEntryBlock entry(File(address), address); | |
| 1004 CHECK(entry.Load()); | |
| 1005 return entry.Data()->next; | |
| 1006 } | |
| 1007 | |
| 1008 void BackendImpl::NotLinked(EntryImpl* entry) { | |
| 1009 Addr entry_addr = entry->entry()->address(); | |
| 1010 uint32 i = entry->GetHash() & mask_; | |
| 1011 Addr address(data_->table[i]); | |
| 1012 if (!address.is_initialized()) | |
| 1013 return; | |
| 1014 | |
| 1015 for (;;) { | |
| 1016 DCHECK(entry_addr.value() != address.value()); | |
| 1017 address.set_value(GetNextAddr(address)); | |
| 1018 if (!address.is_initialized()) | |
| 1019 break; | |
| 1020 } | |
| 1021 } | |
| 1022 #endif // NET_BUILD_STRESS_CACHE | |
| 1023 | |
| 1024 // An entry may be linked on the DELETED list for a while after being doomed. | |
| 1025 // This function is called when we want to remove it. | |
| 1026 void BackendImpl::RemoveEntry(EntryImpl* entry) { | |
| 1027 #if defined(NET_BUILD_STRESS_CACHE) | |
| 1028 NotLinked(entry); | |
| 1029 #endif | |
| 1030 if (!new_eviction_) | |
| 1031 return; | |
| 1032 | |
| 1033 DCHECK_NE(ENTRY_NORMAL, entry->entry()->Data()->state); | |
| 1034 | |
| 1035 Trace("Remove entry 0x%p", entry); | |
| 1036 eviction_.OnDestroyEntry(entry); | |
| 1037 DecreaseNumEntries(); | |
| 1038 } | |
| 1039 | |
| 1040 void BackendImpl::OnEntryDestroyBegin(Addr address) { | |
| 1041 EntriesMap::iterator it = open_entries_.find(address.value()); | |
| 1042 if (it != open_entries_.end()) | |
| 1043 open_entries_.erase(it); | |
| 1044 } | |
| 1045 | |
| 1046 void BackendImpl::OnEntryDestroyEnd() { | |
| 1047 DecreaseNumRefs(); | |
| 1048 if (data_->header.num_bytes > max_size_ && !read_only_ && | |
| 1049 (up_ticks_ > kTrimDelay || user_flags_ & kNoRandom)) | |
| 1050 eviction_.TrimCache(false); | |
| 1051 } | |
| 1052 | |
| 1053 EntryImpl* BackendImpl::GetOpenEntry(CacheRankingsBlock* rankings) const { | |
| 1054 DCHECK(rankings->HasData()); | |
| 1055 EntriesMap::const_iterator it = | |
| 1056 open_entries_.find(rankings->Data()->contents); | |
| 1057 if (it != open_entries_.end()) { | |
| 1058 // We have this entry in memory. | |
| 1059 return it->second; | |
| 1060 } | |
| 1061 | |
| 1062 return NULL; | |
| 1063 } | |
| 1064 | |
| 1065 int32 BackendImpl::GetCurrentEntryId() const { | |
| 1066 return data_->header.this_id; | |
| 1067 } | |
| 1068 | |
| 1069 int BackendImpl::MaxFileSize() const { | |
| 1070 return max_size_ / 8; | |
| 1071 } | |
| 1072 | |
| 1073 void BackendImpl::ModifyStorageSize(int32 old_size, int32 new_size) { | |
| 1074 if (disabled_ || old_size == new_size) | |
| 1075 return; | |
| 1076 if (old_size > new_size) | |
| 1077 SubstractStorageSize(old_size - new_size); | |
| 1078 else | |
| 1079 AddStorageSize(new_size - old_size); | |
| 1080 | |
| 1081 FlushIndex(); | |
| 1082 | |
| 1083 // Update the usage statistics. | |
| 1084 stats_.ModifyStorageStats(old_size, new_size); | |
| 1085 } | |
| 1086 | |
| 1087 void BackendImpl::TooMuchStorageRequested(int32 size) { | |
| 1088 stats_.ModifyStorageStats(0, size); | |
| 1089 } | |
| 1090 | |
| 1091 bool BackendImpl::IsAllocAllowed(int current_size, int new_size) { | |
| 1092 DCHECK_GT(new_size, current_size); | |
| 1093 if (user_flags_ & kNoBuffering) | |
| 1094 return false; | |
| 1095 | |
| 1096 int to_add = new_size - current_size; | |
| 1097 if (buffer_bytes_ + to_add > MaxBuffersSize()) | |
| 1098 return false; | |
| 1099 | |
| 1100 buffer_bytes_ += to_add; | |
| 1101 CACHE_UMA(COUNTS_50000, "BufferBytes", 0, buffer_bytes_ / 1024); | |
| 1102 return true; | |
| 1103 } | |
| 1104 | |
| 1105 void BackendImpl::BufferDeleted(int size) { | |
| 1106 buffer_bytes_ -= size; | |
| 1107 DCHECK_GE(size, 0); | |
| 1108 } | |
| 1109 | |
| 1110 bool BackendImpl::IsLoaded() const { | |
| 1111 CACHE_UMA(COUNTS, "PendingIO", 0, num_pending_io_); | |
| 1112 if (user_flags_ & kNoLoadProtection) | |
| 1113 return false; | |
| 1114 | |
| 1115 return (num_pending_io_ > 5 || user_load_); | |
| 1116 } | |
| 1117 | |
| 1118 std::string BackendImpl::HistogramName(const char* name, int experiment) const { | |
| 1119 if (!experiment) | |
| 1120 return base::StringPrintf("DiskCache.%d.%s", cache_type_, name); | |
| 1121 return base::StringPrintf("DiskCache.%d.%s_%d", cache_type_, | |
| 1122 name, experiment); | |
| 1123 } | |
| 1124 | |
| 1125 base::WeakPtr<BackendImpl> BackendImpl::GetWeakPtr() { | |
| 1126 return ptr_factory_.GetWeakPtr(); | |
| 1127 } | |
| 1128 | |
| 1129 // We want to remove biases from some histograms so we only send data once per | |
| 1130 // week. | |
| 1131 bool BackendImpl::ShouldReportAgain() { | |
| 1132 if (uma_report_) | |
| 1133 return uma_report_ == 2; | |
| 1134 | |
| 1135 uma_report_++; | |
| 1136 int64 last_report = stats_.GetCounter(Stats::LAST_REPORT); | |
| 1137 Time last_time = Time::FromInternalValue(last_report); | |
| 1138 if (!last_report || (Time::Now() - last_time).InDays() >= 7) { | |
| 1139 stats_.SetCounter(Stats::LAST_REPORT, Time::Now().ToInternalValue()); | |
| 1140 uma_report_++; | |
| 1141 return true; | |
| 1142 } | |
| 1143 return false; | |
| 1144 } | |
| 1145 | |
| 1146 void BackendImpl::FirstEviction() { | |
| 1147 DCHECK(data_->header.create_time); | |
| 1148 if (!GetEntryCount()) | |
| 1149 return; // This is just for unit tests. | |
| 1150 | |
| 1151 Time create_time = Time::FromInternalValue(data_->header.create_time); | |
| 1152 CACHE_UMA(AGE, "FillupAge", 0, create_time); | |
| 1153 | |
| 1154 int64 use_time = stats_.GetCounter(Stats::TIMER); | |
| 1155 CACHE_UMA(HOURS, "FillupTime", 0, static_cast<int>(use_time / 120)); | |
| 1156 CACHE_UMA(PERCENTAGE, "FirstHitRatio", 0, stats_.GetHitRatio()); | |
| 1157 | |
| 1158 if (!use_time) | |
| 1159 use_time = 1; | |
| 1160 CACHE_UMA(COUNTS_10000, "FirstEntryAccessRate", 0, | |
| 1161 static_cast<int>(data_->header.num_entries / use_time)); | |
| 1162 CACHE_UMA(COUNTS, "FirstByteIORate", 0, | |
| 1163 static_cast<int>((data_->header.num_bytes / 1024) / use_time)); | |
| 1164 | |
| 1165 int avg_size = data_->header.num_bytes / GetEntryCount(); | |
| 1166 CACHE_UMA(COUNTS, "FirstEntrySize", 0, avg_size); | |
| 1167 | |
| 1168 int large_entries_bytes = stats_.GetLargeEntriesSize(); | |
| 1169 int large_ratio = large_entries_bytes * 100 / data_->header.num_bytes; | |
| 1170 CACHE_UMA(PERCENTAGE, "FirstLargeEntriesRatio", 0, large_ratio); | |
| 1171 | |
| 1172 if (new_eviction_) { | |
| 1173 CACHE_UMA(PERCENTAGE, "FirstResurrectRatio", 0, stats_.GetResurrectRatio()); | |
| 1174 CACHE_UMA(PERCENTAGE, "FirstNoUseRatio", 0, | |
| 1175 data_->header.lru.sizes[0] * 100 / data_->header.num_entries); | |
| 1176 CACHE_UMA(PERCENTAGE, "FirstLowUseRatio", 0, | |
| 1177 data_->header.lru.sizes[1] * 100 / data_->header.num_entries); | |
| 1178 CACHE_UMA(PERCENTAGE, "FirstHighUseRatio", 0, | |
| 1179 data_->header.lru.sizes[2] * 100 / data_->header.num_entries); | |
| 1180 } | |
| 1181 | |
| 1182 stats_.ResetRatios(); | |
| 1183 } | |
| 1184 | |
| 1185 void BackendImpl::CriticalError(int error) { | |
| 1186 STRESS_NOTREACHED(); | |
| 1187 LOG(ERROR) << "Critical error found " << error; | |
| 1188 if (disabled_) | |
| 1189 return; | |
| 1190 | |
| 1191 stats_.OnEvent(Stats::FATAL_ERROR); | |
| 1192 LogStats(); | |
| 1193 ReportError(error); | |
| 1194 | |
| 1195 // Setting the index table length to an invalid value will force re-creation | |
| 1196 // of the cache files. | |
| 1197 data_->header.table_len = 1; | |
| 1198 disabled_ = true; | |
| 1199 | |
| 1200 if (!num_refs_) | |
| 1201 MessageLoop::current()->PostTask(FROM_HERE, | |
| 1202 base::Bind(&BackendImpl::RestartCache, GetWeakPtr(), true)); | |
| 1203 } | |
| 1204 | |
| 1205 void BackendImpl::ReportError(int error) { | |
| 1206 STRESS_DCHECK(!error || error == ERR_PREVIOUS_CRASH || | |
| 1207 error == ERR_CACHE_CREATED); | |
| 1208 | |
| 1209 // We transmit positive numbers, instead of direct error codes. | |
| 1210 DCHECK_LE(error, 0); | |
| 1211 CACHE_UMA(CACHE_ERROR, "Error", 0, error * -1); | |
| 1212 } | |
| 1213 | |
| 1214 void BackendImpl::OnEvent(Stats::Counters an_event) { | |
| 1215 stats_.OnEvent(an_event); | |
| 1216 } | |
| 1217 | |
| 1218 void BackendImpl::OnRead(int32 bytes) { | |
| 1219 DCHECK_GE(bytes, 0); | |
| 1220 byte_count_ += bytes; | |
| 1221 if (byte_count_ < 0) | |
| 1222 byte_count_ = kint32max; | |
| 1223 } | |
| 1224 | |
| 1225 void BackendImpl::OnWrite(int32 bytes) { | |
| 1226 // We use the same implementation as OnRead... just log the number of bytes. | |
| 1227 OnRead(bytes); | |
| 1228 } | |
| 1229 | |
| 1230 void BackendImpl::OnStatsTimer() { | |
| 1231 stats_.OnEvent(Stats::TIMER); | |
| 1232 int64 time = stats_.GetCounter(Stats::TIMER); | |
| 1233 int64 current = stats_.GetCounter(Stats::OPEN_ENTRIES); | |
| 1234 | |
| 1235 // OPEN_ENTRIES is a sampled average of the number of open entries, avoiding | |
| 1236 // the bias towards 0. | |
| 1237 if (num_refs_ && (current != num_refs_)) { | |
| 1238 int64 diff = (num_refs_ - current) / 50; | |
| 1239 if (!diff) | |
| 1240 diff = num_refs_ > current ? 1 : -1; | |
| 1241 current = current + diff; | |
| 1242 stats_.SetCounter(Stats::OPEN_ENTRIES, current); | |
| 1243 stats_.SetCounter(Stats::MAX_ENTRIES, max_refs_); | |
| 1244 } | |
| 1245 | |
| 1246 CACHE_UMA(COUNTS, "NumberOfReferences", 0, num_refs_); | |
| 1247 | |
| 1248 CACHE_UMA(COUNTS_10000, "EntryAccessRate", 0, entry_count_); | |
| 1249 CACHE_UMA(COUNTS, "ByteIORate", 0, byte_count_ / 1024); | |
| 1250 | |
| 1251 // These values cover about 99.5% of the population (Oct 2011). | |
| 1252 user_load_ = (entry_count_ > 300 || byte_count_ > 7 * 1024 * 1024); | |
| 1253 entry_count_ = 0; | |
| 1254 byte_count_ = 0; | |
| 1255 up_ticks_++; | |
| 1256 | |
| 1257 if (!data_) | |
| 1258 first_timer_ = false; | |
| 1259 if (first_timer_) { | |
| 1260 first_timer_ = false; | |
| 1261 if (ShouldReportAgain()) | |
| 1262 ReportStats(); | |
| 1263 } | |
| 1264 | |
| 1265 // Save stats to disk at 5 min intervals. | |
| 1266 if (time % 10 == 0) | |
| 1267 stats_.Store(); | |
| 1268 } | |
| 1269 | |
| 1270 void BackendImpl::IncrementIoCount() { | |
| 1271 num_pending_io_++; | |
| 1272 } | |
| 1273 | |
| 1274 void BackendImpl::DecrementIoCount() { | |
| 1275 num_pending_io_--; | |
| 1276 } | |
| 1277 | |
| 1278 void BackendImpl::SetUnitTestMode() { | |
| 1279 user_flags_ |= kUnitTestMode; | |
| 1280 unit_test_ = true; | |
| 1281 } | |
| 1282 | |
| 1283 void BackendImpl::SetUpgradeMode() { | |
| 1284 user_flags_ |= kUpgradeMode; | |
| 1285 read_only_ = true; | |
| 1286 } | |
| 1287 | |
| 1288 void BackendImpl::SetNewEviction() { | |
| 1289 user_flags_ |= kNewEviction; | |
| 1290 new_eviction_ = true; | |
| 1291 } | |
| 1292 | |
| 1293 void BackendImpl::SetFlags(uint32 flags) { | |
| 1294 user_flags_ |= flags; | |
| 1295 } | |
| 1296 | |
| 1297 void BackendImpl::ClearRefCountForTest() { | |
| 1298 num_refs_ = 0; | |
| 1299 } | |
| 1300 | |
| 1301 int BackendImpl::FlushQueueForTest(const CompletionCallback& callback) { | |
| 1302 background_queue_.FlushQueue(callback); | |
| 1303 return net::ERR_IO_PENDING; | |
| 1304 } | |
| 1305 | |
| 1306 int BackendImpl::RunTaskForTest(const base::Closure& task, | |
| 1307 const CompletionCallback& callback) { | |
| 1308 background_queue_.RunTask(task, callback); | |
| 1309 return net::ERR_IO_PENDING; | |
| 1310 } | |
| 1311 | |
| 1312 void BackendImpl::TrimForTest(bool empty) { | |
| 1313 eviction_.SetTestMode(); | |
| 1314 eviction_.TrimCache(empty); | |
| 1315 } | |
| 1316 | |
| 1317 void BackendImpl::TrimDeletedListForTest(bool empty) { | |
| 1318 eviction_.SetTestMode(); | |
| 1319 eviction_.TrimDeletedList(empty); | |
| 1320 } | |
| 1321 | |
| 1322 int BackendImpl::SelfCheck() { | |
| 1323 if (!init_) { | |
| 1324 LOG(ERROR) << "Init failed"; | |
| 1325 return ERR_INIT_FAILED; | |
| 1326 } | |
| 1327 | |
| 1328 int num_entries = rankings_.SelfCheck(); | |
| 1329 if (num_entries < 0) { | |
| 1330 LOG(ERROR) << "Invalid rankings list, error " << num_entries; | |
| 1331 #if !defined(NET_BUILD_STRESS_CACHE) | |
| 1332 return num_entries; | |
| 1333 #endif | |
| 1334 } | |
| 1335 | |
| 1336 if (num_entries != data_->header.num_entries) { | |
| 1337 LOG(ERROR) << "Number of entries mismatch"; | |
| 1338 #if !defined(NET_BUILD_STRESS_CACHE) | |
| 1339 return ERR_NUM_ENTRIES_MISMATCH; | |
| 1340 #endif | |
| 1341 } | |
| 1342 | |
| 1343 return CheckAllEntries(); | |
| 1344 } | |
| 1345 | |
| 1346 void BackendImpl::FlushIndex() { | |
| 1347 if (index_ && !disabled_) | |
| 1348 index_->Flush(); | |
| 1349 } | |
| 1350 | |
| 1351 // ------------------------------------------------------------------------ | |
| 1352 | |
| 1353 net::CacheType BackendImpl::GetCacheType() const { | |
| 1354 return cache_type_; | |
| 1355 } | |
| 1356 | |
| 1357 int32 BackendImpl::GetEntryCount() const { | |
| 1358 if (!index_ || disabled_) | |
| 1359 return 0; | |
| 1360 // num_entries includes entries already evicted. | |
| 1361 int32 not_deleted = data_->header.num_entries - | |
| 1362 data_->header.lru.sizes[Rankings::DELETED]; | |
| 1363 | |
| 1364 if (not_deleted < 0) { | |
| 1365 NOTREACHED(); | |
| 1366 not_deleted = 0; | |
| 1367 } | |
| 1368 | |
| 1369 return not_deleted; | |
| 1370 } | |
| 1371 | |
| 1372 int BackendImpl::OpenEntry(const std::string& key, Entry** entry, | |
| 1373 const CompletionCallback& callback) { | |
| 1374 DCHECK(!callback.is_null()); | |
| 1375 background_queue_.OpenEntry(key, entry, callback); | |
| 1376 return net::ERR_IO_PENDING; | |
| 1377 } | |
| 1378 | |
| 1379 int BackendImpl::CreateEntry(const std::string& key, Entry** entry, | |
| 1380 const CompletionCallback& callback) { | |
| 1381 DCHECK(!callback.is_null()); | |
| 1382 background_queue_.CreateEntry(key, entry, callback); | |
| 1383 return net::ERR_IO_PENDING; | |
| 1384 } | |
| 1385 | |
| 1386 int BackendImpl::DoomEntry(const std::string& key, | |
| 1387 const CompletionCallback& callback) { | |
| 1388 DCHECK(!callback.is_null()); | |
| 1389 background_queue_.DoomEntry(key, callback); | |
| 1390 return net::ERR_IO_PENDING; | |
| 1391 } | |
| 1392 | |
| 1393 int BackendImpl::DoomAllEntries(const CompletionCallback& callback) { | |
| 1394 DCHECK(!callback.is_null()); | |
| 1395 background_queue_.DoomAllEntries(callback); | |
| 1396 return net::ERR_IO_PENDING; | |
| 1397 } | |
| 1398 | |
| 1399 int BackendImpl::DoomEntriesBetween(const base::Time initial_time, | |
| 1400 const base::Time end_time, | |
| 1401 const CompletionCallback& callback) { | |
| 1402 DCHECK(!callback.is_null()); | |
| 1403 background_queue_.DoomEntriesBetween(initial_time, end_time, callback); | |
| 1404 return net::ERR_IO_PENDING; | |
| 1405 } | |
| 1406 | |
| 1407 int BackendImpl::DoomEntriesSince(const base::Time initial_time, | |
| 1408 const CompletionCallback& callback) { | |
| 1409 DCHECK(!callback.is_null()); | |
| 1410 background_queue_.DoomEntriesSince(initial_time, callback); | |
| 1411 return net::ERR_IO_PENDING; | |
| 1412 } | |
| 1413 | |
| 1414 int BackendImpl::OpenNextEntry(void** iter, Entry** next_entry, | |
| 1415 const CompletionCallback& callback) { | |
| 1416 DCHECK(!callback.is_null()); | |
| 1417 background_queue_.OpenNextEntry(iter, next_entry, callback); | |
| 1418 return net::ERR_IO_PENDING; | |
| 1419 } | |
| 1420 | |
| 1421 void BackendImpl::EndEnumeration(void** iter) { | |
| 1422 background_queue_.EndEnumeration(*iter); | |
| 1423 *iter = NULL; | |
| 1424 } | |
| 1425 | |
| 1426 void BackendImpl::GetStats(StatsItems* stats) { | |
| 1427 if (disabled_) | |
| 1428 return; | |
| 1429 | |
| 1430 std::pair<std::string, std::string> item; | |
| 1431 | |
| 1432 item.first = "Entries"; | |
| 1433 item.second = base::StringPrintf("%d", data_->header.num_entries); | |
| 1434 stats->push_back(item); | |
| 1435 | |
| 1436 item.first = "Pending IO"; | |
| 1437 item.second = base::StringPrintf("%d", num_pending_io_); | |
| 1438 stats->push_back(item); | |
| 1439 | |
| 1440 item.first = "Max size"; | |
| 1441 item.second = base::StringPrintf("%d", max_size_); | |
| 1442 stats->push_back(item); | |
| 1443 | |
| 1444 item.first = "Current size"; | |
| 1445 item.second = base::StringPrintf("%d", data_->header.num_bytes); | |
| 1446 stats->push_back(item); | |
| 1447 | |
| 1448 stats_.GetItems(stats); | |
| 1449 } | |
| 1450 | |
| 1451 void BackendImpl::OnExternalCacheHit(const std::string& key) { | |
| 1452 background_queue_.OnExternalCacheHit(key); | |
| 1453 } | |
| 1454 | |
| 1455 // ------------------------------------------------------------------------ | |
| 1456 | |
| 1457 // We just created a new file so we're going to write the header and set the | |
| 1458 // file length to include the hash table (zero filled). | |
| 1459 bool BackendImpl::CreateBackingStore(disk_cache::File* file) { | |
| 1460 AdjustMaxCacheSize(0); | |
| 1461 | |
| 1462 IndexHeader header; | |
| 1463 header.table_len = DesiredIndexTableLen(max_size_); | |
| 1464 | |
| 1465 // We need file version 2.1 for the new eviction algorithm. | |
| 1466 if (new_eviction_) | |
| 1467 header.version = 0x20001; | |
| 1468 | |
| 1469 header.create_time = Time::Now().ToInternalValue(); | |
| 1470 | |
| 1471 if (!file->Write(&header, sizeof(header), 0)) | |
| 1472 return false; | |
| 1473 | |
| 1474 return file->SetLength(GetIndexSize(header.table_len)); | |
| 1475 } | |
| 1476 | |
| 1477 bool BackendImpl::InitBackingStore(bool* file_created) { | |
| 1478 if (!file_util::CreateDirectory(path_)) | |
| 1479 return false; | |
| 1480 | |
| 1481 base::FilePath index_name = path_.AppendASCII(kIndexName); | |
| 1482 | |
| 1483 int flags = base::PLATFORM_FILE_READ | | |
| 1484 base::PLATFORM_FILE_WRITE | | |
| 1485 base::PLATFORM_FILE_OPEN_ALWAYS | | |
| 1486 base::PLATFORM_FILE_EXCLUSIVE_WRITE; | |
| 1487 scoped_refptr<disk_cache::File> file(new disk_cache::File( | |
| 1488 base::CreatePlatformFile(index_name, flags, file_created, NULL))); | |
| 1489 | |
| 1490 if (!file->IsValid()) | |
| 1491 return false; | |
| 1492 | |
| 1493 bool ret = true; | |
| 1494 if (*file_created) | |
| 1495 ret = CreateBackingStore(file); | |
| 1496 | |
| 1497 file = NULL; | |
| 1498 if (!ret) | |
| 1499 return false; | |
| 1500 | |
| 1501 index_ = new MappedFile(); | |
| 1502 data_ = reinterpret_cast<Index*>(index_->Init(index_name, 0)); | |
| 1503 if (!data_) { | |
| 1504 LOG(ERROR) << "Unable to map Index file"; | |
| 1505 return false; | |
| 1506 } | |
| 1507 | |
| 1508 if (index_->GetLength() < sizeof(Index)) { | |
| 1509 // We verify this again on CheckIndex() but it's easier to make sure now | |
| 1510 // that the header is there. | |
| 1511 LOG(ERROR) << "Corrupt Index file"; | |
| 1512 return false; | |
| 1513 } | |
| 1514 | |
| 1515 return true; | |
| 1516 } | |
| 1517 | |
| 1518 // The maximum cache size will be either set explicitly by the caller, or | |
| 1519 // calculated by this code. | |
| 1520 void BackendImpl::AdjustMaxCacheSize(int table_len) { | |
| 1521 if (max_size_) | |
| 1522 return; | |
| 1523 | |
| 1524 // If table_len is provided, the index file exists. | |
| 1525 DCHECK(!table_len || data_->header.magic); | |
| 1526 | |
| 1527 // The user is not setting the size, let's figure it out. | |
| 1528 int64 available = base::SysInfo::AmountOfFreeDiskSpace(path_); | |
| 1529 if (available < 0) { | |
| 1530 max_size_ = kDefaultCacheSize; | |
| 1531 return; | |
| 1532 } | |
| 1533 | |
| 1534 if (table_len) | |
| 1535 available += data_->header.num_bytes; | |
| 1536 | |
| 1537 max_size_ = PreferedCacheSize(available); | |
| 1538 | |
| 1539 // Let's not use more than the default size while we tune-up the performance | |
| 1540 // of bigger caches. TODO(rvargas): remove this limit. | |
| 1541 if (max_size_ > kDefaultCacheSize * 4) | |
| 1542 max_size_ = kDefaultCacheSize * 4; | |
| 1543 | |
| 1544 if (!table_len) | |
| 1545 return; | |
| 1546 | |
| 1547 // If we already have a table, adjust the size to it. | |
| 1548 int current_max_size = MaxStorageSizeForTable(table_len); | |
| 1549 if (max_size_ > current_max_size) | |
| 1550 max_size_= current_max_size; | |
| 1551 } | |
| 1552 | |
| 1553 void BackendImpl::RestartCache(bool failure) { | |
| 1554 int64 errors = stats_.GetCounter(Stats::FATAL_ERROR); | |
| 1555 int64 full_dooms = stats_.GetCounter(Stats::DOOM_CACHE); | |
| 1556 int64 partial_dooms = stats_.GetCounter(Stats::DOOM_RECENT); | |
| 1557 int64 ga_evictions = stats_.GetCounter(Stats::GAJS_EVICTED); | |
| 1558 int64 last_report = stats_.GetCounter(Stats::LAST_REPORT); | |
| 1559 | |
| 1560 PrepareForRestart(); | |
| 1561 if (failure) { | |
| 1562 DCHECK(!num_refs_); | |
| 1563 DCHECK(!open_entries_.size()); | |
| 1564 DelayedCacheCleanup(path_); | |
| 1565 } else { | |
| 1566 DeleteCache(path_, false); | |
| 1567 } | |
| 1568 | |
| 1569 // Don't call Init() if directed by the unit test: we are simulating a failure | |
| 1570 // trying to re-enable the cache. | |
| 1571 if (unit_test_) | |
| 1572 init_ = true; // Let the destructor do proper cleanup. | |
| 1573 else if (SyncInit() == net::OK) { | |
| 1574 stats_.SetCounter(Stats::FATAL_ERROR, errors); | |
| 1575 stats_.SetCounter(Stats::DOOM_CACHE, full_dooms); | |
| 1576 stats_.SetCounter(Stats::DOOM_RECENT, partial_dooms); | |
| 1577 stats_.SetCounter(Stats::GAJS_EVICTED, ga_evictions); | |
| 1578 stats_.SetCounter(Stats::LAST_REPORT, last_report); | |
| 1579 } | |
| 1580 } | |
| 1581 | |
| 1582 void BackendImpl::PrepareForRestart() { | |
| 1583 // Reset the mask_ if it was not given by the user. | |
| 1584 if (!(user_flags_ & kMask)) | |
| 1585 mask_ = 0; | |
| 1586 | |
| 1587 if (!(user_flags_ & kNewEviction)) | |
| 1588 new_eviction_ = false; | |
| 1589 | |
| 1590 disabled_ = true; | |
| 1591 data_->header.crash = 0; | |
| 1592 index_->Flush(); | |
| 1593 index_ = NULL; | |
| 1594 data_ = NULL; | |
| 1595 block_files_.CloseFiles(); | |
| 1596 rankings_.Reset(); | |
| 1597 init_ = false; | |
| 1598 restarted_ = true; | |
| 1599 } | |
| 1600 | |
| 1601 int BackendImpl::NewEntry(Addr address, EntryImpl** entry) { | |
| 1602 EntriesMap::iterator it = open_entries_.find(address.value()); | |
| 1603 if (it != open_entries_.end()) { | |
| 1604 // Easy job. This entry is already in memory. | |
| 1605 EntryImpl* this_entry = it->second; | |
| 1606 this_entry->AddRef(); | |
| 1607 *entry = this_entry; | |
| 1608 return 0; | |
| 1609 } | |
| 1610 | |
| 1611 STRESS_DCHECK(block_files_.IsValid(address)); | |
| 1612 | |
| 1613 if (!address.SanityCheckForEntry()) { | |
| 1614 LOG(WARNING) << "Wrong entry address."; | |
| 1615 STRESS_NOTREACHED(); | |
| 1616 return ERR_INVALID_ADDRESS; | |
| 1617 } | |
| 1618 | |
| 1619 scoped_refptr<EntryImpl> cache_entry( | |
| 1620 new EntryImpl(this, address, read_only_)); | |
| 1621 IncreaseNumRefs(); | |
| 1622 *entry = NULL; | |
| 1623 | |
| 1624 TimeTicks start = TimeTicks::Now(); | |
| 1625 if (!cache_entry->entry()->Load()) | |
| 1626 return ERR_READ_FAILURE; | |
| 1627 | |
| 1628 if (IsLoaded()) { | |
| 1629 CACHE_UMA(AGE_MS, "LoadTime", 0, start); | |
| 1630 } | |
| 1631 | |
| 1632 if (!cache_entry->SanityCheck()) { | |
| 1633 LOG(WARNING) << "Messed up entry found."; | |
| 1634 STRESS_NOTREACHED(); | |
| 1635 return ERR_INVALID_ENTRY; | |
| 1636 } | |
| 1637 | |
| 1638 STRESS_DCHECK(block_files_.IsValid( | |
| 1639 Addr(cache_entry->entry()->Data()->rankings_node))); | |
| 1640 | |
| 1641 if (!cache_entry->LoadNodeAddress()) | |
| 1642 return ERR_READ_FAILURE; | |
| 1643 | |
| 1644 if (!rankings_.SanityCheck(cache_entry->rankings(), false)) { | |
| 1645 STRESS_NOTREACHED(); | |
| 1646 cache_entry->SetDirtyFlag(0); | |
| 1647 // Don't remove this from the list (it is not linked properly). Instead, | |
| 1648 // break the link back to the entry because it is going away, and leave the | |
| 1649 // rankings node to be deleted if we find it through a list. | |
| 1650 rankings_.SetContents(cache_entry->rankings(), 0); | |
| 1651 } else if (!rankings_.DataSanityCheck(cache_entry->rankings(), false)) { | |
| 1652 STRESS_NOTREACHED(); | |
| 1653 cache_entry->SetDirtyFlag(0); | |
| 1654 rankings_.SetContents(cache_entry->rankings(), address.value()); | |
| 1655 } | |
| 1656 | |
| 1657 if (!cache_entry->DataSanityCheck()) { | |
| 1658 LOG(WARNING) << "Messed up entry found."; | |
| 1659 cache_entry->SetDirtyFlag(0); | |
| 1660 cache_entry->FixForDelete(); | |
| 1661 } | |
| 1662 | |
| 1663 // Prevent overwriting the dirty flag on the destructor. | |
| 1664 cache_entry->SetDirtyFlag(GetCurrentEntryId()); | |
| 1665 | |
| 1666 if (cache_entry->dirty()) { | |
| 1667 Trace("Dirty entry 0x%p 0x%x", reinterpret_cast<void*>(cache_entry.get()), | |
| 1668 address.value()); | |
| 1669 } | |
| 1670 | |
| 1671 open_entries_[address.value()] = cache_entry; | |
| 1672 | |
| 1673 cache_entry->BeginLogging(net_log_, false); | |
| 1674 cache_entry.swap(entry); | |
| 1675 return 0; | |
| 1676 } | |
| 1677 | |
| 1678 EntryImpl* BackendImpl::MatchEntry(const std::string& key, uint32 hash, | |
| 1679 bool find_parent, Addr entry_addr, | |
| 1680 bool* match_error) { | |
| 1681 Addr address(data_->table[hash & mask_]); | |
| 1682 scoped_refptr<EntryImpl> cache_entry, parent_entry; | |
| 1683 EntryImpl* tmp = NULL; | |
| 1684 bool found = false; | |
| 1685 std::set<CacheAddr> visited; | |
| 1686 *match_error = false; | |
| 1687 | |
| 1688 for (;;) { | |
| 1689 if (disabled_) | |
| 1690 break; | |
| 1691 | |
| 1692 if (visited.find(address.value()) != visited.end()) { | |
| 1693 // It's possible for a buggy version of the code to write a loop. Just | |
| 1694 // break it. | |
| 1695 Trace("Hash collision loop 0x%x", address.value()); | |
| 1696 address.set_value(0); | |
| 1697 parent_entry->SetNextAddress(address); | |
| 1698 } | |
| 1699 visited.insert(address.value()); | |
| 1700 | |
| 1701 if (!address.is_initialized()) { | |
| 1702 if (find_parent) | |
| 1703 found = true; | |
| 1704 break; | |
| 1705 } | |
| 1706 | |
| 1707 int error = NewEntry(address, &tmp); | |
| 1708 cache_entry.swap(&tmp); | |
| 1709 | |
| 1710 if (error || cache_entry->dirty()) { | |
| 1711 // This entry is dirty on disk (it was not properly closed): we cannot | |
| 1712 // trust it. | |
| 1713 Addr child(0); | |
| 1714 if (!error) | |
| 1715 child.set_value(cache_entry->GetNextAddress()); | |
| 1716 | |
| 1717 if (parent_entry) { | |
| 1718 parent_entry->SetNextAddress(child); | |
| 1719 parent_entry = NULL; | |
| 1720 } else { | |
| 1721 data_->table[hash & mask_] = child.value(); | |
| 1722 } | |
| 1723 | |
| 1724 Trace("MatchEntry dirty %d 0x%x 0x%x", find_parent, entry_addr.value(), | |
| 1725 address.value()); | |
| 1726 | |
| 1727 if (!error) { | |
| 1728 // It is important to call DestroyInvalidEntry after removing this | |
| 1729 // entry from the table. | |
| 1730 DestroyInvalidEntry(cache_entry); | |
| 1731 cache_entry = NULL; | |
| 1732 } else { | |
| 1733 Trace("NewEntry failed on MatchEntry 0x%x", address.value()); | |
| 1734 } | |
| 1735 | |
| 1736 // Restart the search. | |
| 1737 address.set_value(data_->table[hash & mask_]); | |
| 1738 visited.clear(); | |
| 1739 continue; | |
| 1740 } | |
| 1741 | |
| 1742 DCHECK_EQ(hash & mask_, cache_entry->entry()->Data()->hash & mask_); | |
| 1743 if (cache_entry->IsSameEntry(key, hash)) { | |
| 1744 if (!cache_entry->Update()) | |
| 1745 cache_entry = NULL; | |
| 1746 found = true; | |
| 1747 if (find_parent && entry_addr.value() != address.value()) { | |
| 1748 Trace("Entry not on the index 0x%x", address.value()); | |
| 1749 *match_error = true; | |
| 1750 parent_entry = NULL; | |
| 1751 } | |
| 1752 break; | |
| 1753 } | |
| 1754 if (!cache_entry->Update()) | |
| 1755 cache_entry = NULL; | |
| 1756 parent_entry = cache_entry; | |
| 1757 cache_entry = NULL; | |
| 1758 if (!parent_entry) | |
| 1759 break; | |
| 1760 | |
| 1761 address.set_value(parent_entry->GetNextAddress()); | |
| 1762 } | |
| 1763 | |
| 1764 if (parent_entry && (!find_parent || !found)) | |
| 1765 parent_entry = NULL; | |
| 1766 | |
| 1767 if (find_parent && entry_addr.is_initialized() && !cache_entry) { | |
| 1768 *match_error = true; | |
| 1769 parent_entry = NULL; | |
| 1770 } | |
| 1771 | |
| 1772 if (cache_entry && (find_parent || !found)) | |
| 1773 cache_entry = NULL; | |
| 1774 | |
| 1775 find_parent ? parent_entry.swap(&tmp) : cache_entry.swap(&tmp); | |
| 1776 FlushIndex(); | |
| 1777 return tmp; | |
| 1778 } | |
| 1779 | |
| 1780 // This is the actual implementation for OpenNextEntry and OpenPrevEntry. | |
| 1781 EntryImpl* BackendImpl::OpenFollowingEntry(bool forward, void** iter) { | |
| 1782 if (disabled_) | |
| 1783 return NULL; | |
| 1784 | |
| 1785 DCHECK(iter); | |
| 1786 | |
| 1787 const int kListsToSearch = 3; | |
| 1788 scoped_refptr<EntryImpl> entries[kListsToSearch]; | |
| 1789 scoped_ptr<Rankings::Iterator> iterator( | |
| 1790 reinterpret_cast<Rankings::Iterator*>(*iter)); | |
| 1791 *iter = NULL; | |
| 1792 | |
| 1793 if (!iterator.get()) { | |
| 1794 iterator.reset(new Rankings::Iterator(&rankings_)); | |
| 1795 bool ret = false; | |
| 1796 | |
| 1797 // Get an entry from each list. | |
| 1798 for (int i = 0; i < kListsToSearch; i++) { | |
| 1799 EntryImpl* temp = NULL; | |
| 1800 ret |= OpenFollowingEntryFromList(forward, static_cast<Rankings::List>(i), | |
| 1801 &iterator->nodes[i], &temp); | |
| 1802 entries[i].swap(&temp); // The entry was already addref'd. | |
| 1803 } | |
| 1804 if (!ret) | |
| 1805 return NULL; | |
| 1806 } else { | |
| 1807 // Get the next entry from the last list, and the actual entries for the | |
| 1808 // elements on the other lists. | |
| 1809 for (int i = 0; i < kListsToSearch; i++) { | |
| 1810 EntryImpl* temp = NULL; | |
| 1811 if (iterator->list == i) { | |
| 1812 OpenFollowingEntryFromList(forward, iterator->list, | |
| 1813 &iterator->nodes[i], &temp); | |
| 1814 } else { | |
| 1815 temp = GetEnumeratedEntry(iterator->nodes[i], | |
| 1816 static_cast<Rankings::List>(i)); | |
| 1817 } | |
| 1818 | |
| 1819 entries[i].swap(&temp); // The entry was already addref'd. | |
| 1820 } | |
| 1821 } | |
| 1822 | |
| 1823 int newest = -1; | |
| 1824 int oldest = -1; | |
| 1825 Time access_times[kListsToSearch]; | |
| 1826 for (int i = 0; i < kListsToSearch; i++) { | |
| 1827 if (entries[i].get()) { | |
| 1828 access_times[i] = entries[i]->GetLastUsed(); | |
| 1829 if (newest < 0) { | |
| 1830 DCHECK_LT(oldest, 0); | |
| 1831 newest = oldest = i; | |
| 1832 continue; | |
| 1833 } | |
| 1834 if (access_times[i] > access_times[newest]) | |
| 1835 newest = i; | |
| 1836 if (access_times[i] < access_times[oldest]) | |
| 1837 oldest = i; | |
| 1838 } | |
| 1839 } | |
| 1840 | |
| 1841 if (newest < 0 || oldest < 0) | |
| 1842 return NULL; | |
| 1843 | |
| 1844 EntryImpl* next_entry; | |
| 1845 if (forward) { | |
| 1846 next_entry = entries[newest].get(); | |
| 1847 iterator->list = static_cast<Rankings::List>(newest); | |
| 1848 } else { | |
| 1849 next_entry = entries[oldest].get(); | |
| 1850 iterator->list = static_cast<Rankings::List>(oldest); | |
| 1851 } | |
| 1852 | |
| 1853 *iter = iterator.release(); | |
| 1854 next_entry->AddRef(); | |
| 1855 return next_entry; | |
| 1856 } | |
| 1857 | |
| 1858 bool BackendImpl::OpenFollowingEntryFromList(bool forward, Rankings::List list, | |
| 1859 CacheRankingsBlock** from_entry, | |
| 1860 EntryImpl** next_entry) { | |
| 1861 if (disabled_) | |
| 1862 return false; | |
| 1863 | |
| 1864 if (!new_eviction_ && Rankings::NO_USE != list) | |
| 1865 return false; | |
| 1866 | |
| 1867 Rankings::ScopedRankingsBlock rankings(&rankings_, *from_entry); | |
| 1868 CacheRankingsBlock* next_block = forward ? | |
| 1869 rankings_.GetNext(rankings.get(), list) : | |
| 1870 rankings_.GetPrev(rankings.get(), list); | |
| 1871 Rankings::ScopedRankingsBlock next(&rankings_, next_block); | |
| 1872 *from_entry = NULL; | |
| 1873 | |
| 1874 *next_entry = GetEnumeratedEntry(next.get(), list); | |
| 1875 if (!*next_entry) | |
| 1876 return false; | |
| 1877 | |
| 1878 *from_entry = next.release(); | |
| 1879 return true; | |
| 1880 } | |
| 1881 | |
| 1882 EntryImpl* BackendImpl::GetEnumeratedEntry(CacheRankingsBlock* next, | |
| 1883 Rankings::List list) { | |
| 1884 if (!next || disabled_) | |
| 1885 return NULL; | |
| 1886 | |
| 1887 EntryImpl* entry; | |
| 1888 int rv = NewEntry(Addr(next->Data()->contents), &entry); | |
| 1889 if (rv) { | |
| 1890 STRESS_NOTREACHED(); | |
| 1891 rankings_.Remove(next, list, false); | |
| 1892 if (rv == ERR_INVALID_ADDRESS) { | |
| 1893 // There is nothing linked from the index. Delete the rankings node. | |
| 1894 DeleteBlock(next->address(), true); | |
| 1895 } | |
| 1896 return NULL; | |
| 1897 } | |
| 1898 | |
| 1899 if (entry->dirty()) { | |
| 1900 // We cannot trust this entry. | |
| 1901 InternalDoomEntry(entry); | |
| 1902 entry->Release(); | |
| 1903 return NULL; | |
| 1904 } | |
| 1905 | |
| 1906 if (!entry->Update()) { | |
| 1907 STRESS_NOTREACHED(); | |
| 1908 entry->Release(); | |
| 1909 return NULL; | |
| 1910 } | |
| 1911 | |
| 1912 // Note that it is unfortunate (but possible) for this entry to be clean, but | |
| 1913 // not actually the real entry. In other words, we could have lost this entry | |
| 1914 // from the index, and it could have been replaced with a newer one. It's not | |
| 1915 // worth checking that this entry is "the real one", so we just return it and | |
| 1916 // let the enumeration continue; this entry will be evicted at some point, and | |
| 1917 // the regular path will work with the real entry. With time, this problem | |
| 1918 // will disasappear because this scenario is just a bug. | |
| 1919 | |
| 1920 // Make sure that we save the key for later. | |
| 1921 entry->GetKey(); | |
| 1922 | |
| 1923 return entry; | |
| 1924 } | |
| 1925 | |
| 1926 EntryImpl* BackendImpl::ResurrectEntry(EntryImpl* deleted_entry) { | |
| 1927 if (ENTRY_NORMAL == deleted_entry->entry()->Data()->state) { | |
| 1928 deleted_entry->Release(); | |
| 1929 stats_.OnEvent(Stats::CREATE_MISS); | |
| 1930 Trace("create entry miss "); | |
| 1931 return NULL; | |
| 1932 } | |
| 1933 | |
| 1934 // We are attempting to create an entry and found out that the entry was | |
| 1935 // previously deleted. | |
| 1936 | |
| 1937 eviction_.OnCreateEntry(deleted_entry); | |
| 1938 entry_count_++; | |
| 1939 | |
| 1940 stats_.OnEvent(Stats::RESURRECT_HIT); | |
| 1941 Trace("Resurrect entry hit "); | |
| 1942 return deleted_entry; | |
| 1943 } | |
| 1944 | |
| 1945 void BackendImpl::DestroyInvalidEntry(EntryImpl* entry) { | |
| 1946 LOG(WARNING) << "Destroying invalid entry."; | |
| 1947 Trace("Destroying invalid entry 0x%p", entry); | |
| 1948 | |
| 1949 entry->SetPointerForInvalidEntry(GetCurrentEntryId()); | |
| 1950 | |
| 1951 eviction_.OnDoomEntry(entry); | |
| 1952 entry->InternalDoom(); | |
| 1953 | |
| 1954 if (!new_eviction_) | |
| 1955 DecreaseNumEntries(); | |
| 1956 stats_.OnEvent(Stats::INVALID_ENTRY); | |
| 1957 } | |
| 1958 | |
| 1959 void BackendImpl::AddStorageSize(int32 bytes) { | |
| 1960 data_->header.num_bytes += bytes; | |
| 1961 DCHECK_GE(data_->header.num_bytes, 0); | |
| 1962 } | |
| 1963 | |
| 1964 void BackendImpl::SubstractStorageSize(int32 bytes) { | |
| 1965 data_->header.num_bytes -= bytes; | |
| 1966 DCHECK_GE(data_->header.num_bytes, 0); | |
| 1967 } | |
| 1968 | |
| 1969 void BackendImpl::IncreaseNumRefs() { | |
| 1970 num_refs_++; | |
| 1971 if (max_refs_ < num_refs_) | |
| 1972 max_refs_ = num_refs_; | |
| 1973 } | |
| 1974 | |
| 1975 void BackendImpl::DecreaseNumRefs() { | |
| 1976 DCHECK(num_refs_); | |
| 1977 num_refs_--; | |
| 1978 | |
| 1979 if (!num_refs_ && disabled_) | |
| 1980 MessageLoop::current()->PostTask(FROM_HERE, | |
| 1981 base::Bind(&BackendImpl::RestartCache, GetWeakPtr(), true)); | |
| 1982 } | |
| 1983 | |
| 1984 void BackendImpl::IncreaseNumEntries() { | |
| 1985 data_->header.num_entries++; | |
| 1986 DCHECK_GT(data_->header.num_entries, 0); | |
| 1987 } | |
| 1988 | |
| 1989 void BackendImpl::DecreaseNumEntries() { | |
| 1990 data_->header.num_entries--; | |
| 1991 if (data_->header.num_entries < 0) { | |
| 1992 NOTREACHED(); | |
| 1993 data_->header.num_entries = 0; | |
| 1994 } | |
| 1995 } | |
| 1996 | |
| 1997 void BackendImpl::LogStats() { | |
| 1998 StatsItems stats; | |
| 1999 GetStats(&stats); | |
| 2000 | |
| 2001 for (size_t index = 0; index < stats.size(); index++) | |
| 2002 VLOG(1) << stats[index].first << ": " << stats[index].second; | |
| 2003 } | |
| 2004 | |
| 2005 void BackendImpl::ReportStats() { | |
| 2006 CACHE_UMA(COUNTS, "Entries", 0, data_->header.num_entries); | |
| 2007 | |
| 2008 int current_size = data_->header.num_bytes / (1024 * 1024); | |
| 2009 int max_size = max_size_ / (1024 * 1024); | |
| 2010 int hit_ratio_as_percentage = stats_.GetHitRatio(); | |
| 2011 | |
| 2012 CACHE_UMA(COUNTS_10000, "Size2", 0, current_size); | |
| 2013 // For any bin in HitRatioBySize2, the hit ratio of caches of that size is the | |
| 2014 // ratio of that bin's total count to the count in the same bin in the Size2 | |
| 2015 // histogram. | |
| 2016 if (base::RandInt(0, 99) < hit_ratio_as_percentage) | |
| 2017 CACHE_UMA(COUNTS_10000, "HitRatioBySize2", 0, current_size); | |
| 2018 CACHE_UMA(COUNTS_10000, "MaxSize2", 0, max_size); | |
| 2019 if (!max_size) | |
| 2020 max_size++; | |
| 2021 CACHE_UMA(PERCENTAGE, "UsedSpace", 0, current_size * 100 / max_size); | |
| 2022 | |
| 2023 CACHE_UMA(COUNTS_10000, "AverageOpenEntries2", 0, | |
| 2024 static_cast<int>(stats_.GetCounter(Stats::OPEN_ENTRIES))); | |
| 2025 CACHE_UMA(COUNTS_10000, "MaxOpenEntries2", 0, | |
| 2026 static_cast<int>(stats_.GetCounter(Stats::MAX_ENTRIES))); | |
| 2027 stats_.SetCounter(Stats::MAX_ENTRIES, 0); | |
| 2028 | |
| 2029 CACHE_UMA(COUNTS_10000, "TotalFatalErrors", 0, | |
| 2030 static_cast<int>(stats_.GetCounter(Stats::FATAL_ERROR))); | |
| 2031 CACHE_UMA(COUNTS_10000, "TotalDoomCache", 0, | |
| 2032 static_cast<int>(stats_.GetCounter(Stats::DOOM_CACHE))); | |
| 2033 CACHE_UMA(COUNTS_10000, "TotalDoomRecentEntries", 0, | |
| 2034 static_cast<int>(stats_.GetCounter(Stats::DOOM_RECENT))); | |
| 2035 CACHE_UMA(COUNTS_10000, "TotalEvictionsGaJs", 0, | |
| 2036 static_cast<int>(stats_.GetCounter(Stats::GAJS_EVICTED))); | |
| 2037 stats_.SetCounter(Stats::FATAL_ERROR, 0); | |
| 2038 stats_.SetCounter(Stats::DOOM_CACHE, 0); | |
| 2039 stats_.SetCounter(Stats::DOOM_RECENT, 0); | |
| 2040 stats_.SetCounter(Stats::GAJS_EVICTED, 0); | |
| 2041 | |
| 2042 int64 total_hours = stats_.GetCounter(Stats::TIMER) / 120; | |
| 2043 if (!data_->header.create_time || !data_->header.lru.filled) { | |
| 2044 int cause = data_->header.create_time ? 0 : 1; | |
| 2045 if (!data_->header.lru.filled) | |
| 2046 cause |= 2; | |
| 2047 CACHE_UMA(CACHE_ERROR, "ShortReport", 0, cause); | |
| 2048 CACHE_UMA(HOURS, "TotalTimeNotFull", 0, static_cast<int>(total_hours)); | |
| 2049 return; | |
| 2050 } | |
| 2051 | |
| 2052 // This is an up to date client that will report FirstEviction() data. After | |
| 2053 // that event, start reporting this: | |
| 2054 | |
| 2055 CACHE_UMA(HOURS, "TotalTime", 0, static_cast<int>(total_hours)); | |
| 2056 // For any bin in HitRatioByTotalTime, the hit ratio of caches of that total | |
| 2057 // time is the ratio of that bin's total count to the count in the same bin in | |
| 2058 // the TotalTime histogram. | |
| 2059 if (base::RandInt(0, 99) < hit_ratio_as_percentage) | |
| 2060 CACHE_UMA(HOURS, "HitRatioByTotalTime", 0, implicit_cast<int>(total_hours)); | |
| 2061 | |
| 2062 int64 use_hours = stats_.GetCounter(Stats::LAST_REPORT_TIMER) / 120; | |
| 2063 stats_.SetCounter(Stats::LAST_REPORT_TIMER, stats_.GetCounter(Stats::TIMER)); | |
| 2064 | |
| 2065 // We may see users with no use_hours at this point if this is the first time | |
| 2066 // we are running this code. | |
| 2067 if (use_hours) | |
| 2068 use_hours = total_hours - use_hours; | |
| 2069 | |
| 2070 if (!use_hours || !GetEntryCount() || !data_->header.num_bytes) | |
| 2071 return; | |
| 2072 | |
| 2073 CACHE_UMA(HOURS, "UseTime", 0, static_cast<int>(use_hours)); | |
| 2074 // For any bin in HitRatioByUseTime, the hit ratio of caches of that use time | |
| 2075 // is the ratio of that bin's total count to the count in the same bin in the | |
| 2076 // UseTime histogram. | |
| 2077 if (base::RandInt(0, 99) < hit_ratio_as_percentage) | |
| 2078 CACHE_UMA(HOURS, "HitRatioByUseTime", 0, implicit_cast<int>(use_hours)); | |
| 2079 CACHE_UMA(PERCENTAGE, "HitRatio", 0, hit_ratio_as_percentage); | |
| 2080 | |
| 2081 int64 trim_rate = stats_.GetCounter(Stats::TRIM_ENTRY) / use_hours; | |
| 2082 CACHE_UMA(COUNTS, "TrimRate", 0, static_cast<int>(trim_rate)); | |
| 2083 | |
| 2084 int avg_size = data_->header.num_bytes / GetEntryCount(); | |
| 2085 CACHE_UMA(COUNTS, "EntrySize", 0, avg_size); | |
| 2086 CACHE_UMA(COUNTS, "EntriesFull", 0, data_->header.num_entries); | |
| 2087 | |
| 2088 CACHE_UMA(PERCENTAGE, "IndexLoad", 0, | |
| 2089 data_->header.num_entries * 100 / (mask_ + 1)); | |
| 2090 | |
| 2091 int large_entries_bytes = stats_.GetLargeEntriesSize(); | |
| 2092 int large_ratio = large_entries_bytes * 100 / data_->header.num_bytes; | |
| 2093 CACHE_UMA(PERCENTAGE, "LargeEntriesRatio", 0, large_ratio); | |
| 2094 | |
| 2095 if (new_eviction_) { | |
| 2096 CACHE_UMA(PERCENTAGE, "ResurrectRatio", 0, stats_.GetResurrectRatio()); | |
| 2097 CACHE_UMA(PERCENTAGE, "NoUseRatio", 0, | |
| 2098 data_->header.lru.sizes[0] * 100 / data_->header.num_entries); | |
| 2099 CACHE_UMA(PERCENTAGE, "LowUseRatio", 0, | |
| 2100 data_->header.lru.sizes[1] * 100 / data_->header.num_entries); | |
| 2101 CACHE_UMA(PERCENTAGE, "HighUseRatio", 0, | |
| 2102 data_->header.lru.sizes[2] * 100 / data_->header.num_entries); | |
| 2103 CACHE_UMA(PERCENTAGE, "DeletedRatio", 0, | |
| 2104 data_->header.lru.sizes[4] * 100 / data_->header.num_entries); | |
| 2105 } | |
| 2106 | |
| 2107 stats_.ResetRatios(); | |
| 2108 stats_.SetCounter(Stats::TRIM_ENTRY, 0); | |
| 2109 | |
| 2110 if (cache_type_ == net::DISK_CACHE) | |
| 2111 block_files_.ReportStats(); | |
| 2112 } | |
| 2113 | |
| 2114 void BackendImpl::UpgradeTo2_1() { | |
| 2115 // 2.1 is basically the same as 2.0, except that new fields are actually | |
| 2116 // updated by the new eviction algorithm. | |
| 2117 DCHECK(0x20000 == data_->header.version); | |
| 2118 data_->header.version = 0x20001; | |
| 2119 data_->header.lru.sizes[Rankings::NO_USE] = data_->header.num_entries; | |
| 2120 } | |
| 2121 | |
| 2122 bool BackendImpl::CheckIndex() { | |
| 2123 DCHECK(data_); | |
| 2124 | |
| 2125 size_t current_size = index_->GetLength(); | |
| 2126 if (current_size < sizeof(Index)) { | |
| 2127 LOG(ERROR) << "Corrupt Index file"; | |
| 2128 return false; | |
| 2129 } | |
| 2130 | |
| 2131 if (new_eviction_) { | |
| 2132 // We support versions 2.0 and 2.1, upgrading 2.0 to 2.1. | |
| 2133 if (kIndexMagic != data_->header.magic || | |
| 2134 kCurrentVersion >> 16 != data_->header.version >> 16) { | |
| 2135 LOG(ERROR) << "Invalid file version or magic"; | |
| 2136 return false; | |
| 2137 } | |
| 2138 if (kCurrentVersion == data_->header.version) { | |
| 2139 // We need file version 2.1 for the new eviction algorithm. | |
| 2140 UpgradeTo2_1(); | |
| 2141 } | |
| 2142 } else { | |
| 2143 if (kIndexMagic != data_->header.magic || | |
| 2144 kCurrentVersion != data_->header.version) { | |
| 2145 LOG(ERROR) << "Invalid file version or magic"; | |
| 2146 return false; | |
| 2147 } | |
| 2148 } | |
| 2149 | |
| 2150 if (!data_->header.table_len) { | |
| 2151 LOG(ERROR) << "Invalid table size"; | |
| 2152 return false; | |
| 2153 } | |
| 2154 | |
| 2155 if (current_size < GetIndexSize(data_->header.table_len) || | |
| 2156 data_->header.table_len & (kBaseTableLen - 1)) { | |
| 2157 LOG(ERROR) << "Corrupt Index file"; | |
| 2158 return false; | |
| 2159 } | |
| 2160 | |
| 2161 AdjustMaxCacheSize(data_->header.table_len); | |
| 2162 | |
| 2163 #if !defined(NET_BUILD_STRESS_CACHE) | |
| 2164 if (data_->header.num_bytes < 0 || | |
| 2165 (max_size_ < kint32max - kDefaultCacheSize && | |
| 2166 data_->header.num_bytes > max_size_ + kDefaultCacheSize)) { | |
| 2167 LOG(ERROR) << "Invalid cache (current) size"; | |
| 2168 return false; | |
| 2169 } | |
| 2170 #endif | |
| 2171 | |
| 2172 if (data_->header.num_entries < 0) { | |
| 2173 LOG(ERROR) << "Invalid number of entries"; | |
| 2174 return false; | |
| 2175 } | |
| 2176 | |
| 2177 if (!mask_) | |
| 2178 mask_ = data_->header.table_len - 1; | |
| 2179 | |
| 2180 // Load the table into memory with a single read. | |
| 2181 scoped_array<char> buf(new char[current_size]); | |
| 2182 return index_->Read(buf.get(), current_size, 0); | |
| 2183 } | |
| 2184 | |
| 2185 int BackendImpl::CheckAllEntries() { | |
| 2186 int num_dirty = 0; | |
| 2187 int num_entries = 0; | |
| 2188 DCHECK(mask_ < kuint32max); | |
| 2189 for (unsigned int i = 0; i <= mask_; i++) { | |
| 2190 Addr address(data_->table[i]); | |
| 2191 if (!address.is_initialized()) | |
| 2192 continue; | |
| 2193 for (;;) { | |
| 2194 EntryImpl* tmp; | |
| 2195 int ret = NewEntry(address, &tmp); | |
| 2196 if (ret) { | |
| 2197 STRESS_NOTREACHED(); | |
| 2198 return ret; | |
| 2199 } | |
| 2200 scoped_refptr<EntryImpl> cache_entry; | |
| 2201 cache_entry.swap(&tmp); | |
| 2202 | |
| 2203 if (cache_entry->dirty()) | |
| 2204 num_dirty++; | |
| 2205 else if (CheckEntry(cache_entry.get())) | |
| 2206 num_entries++; | |
| 2207 else | |
| 2208 return ERR_INVALID_ENTRY; | |
| 2209 | |
| 2210 DCHECK_EQ(i, cache_entry->entry()->Data()->hash & mask_); | |
| 2211 address.set_value(cache_entry->GetNextAddress()); | |
| 2212 if (!address.is_initialized()) | |
| 2213 break; | |
| 2214 } | |
| 2215 } | |
| 2216 | |
| 2217 Trace("CheckAllEntries End"); | |
| 2218 if (num_entries + num_dirty != data_->header.num_entries) { | |
| 2219 LOG(ERROR) << "Number of entries " << num_entries << " " << num_dirty << | |
| 2220 " " << data_->header.num_entries; | |
| 2221 DCHECK_LT(num_entries, data_->header.num_entries); | |
| 2222 return ERR_NUM_ENTRIES_MISMATCH; | |
| 2223 } | |
| 2224 | |
| 2225 return num_dirty; | |
| 2226 } | |
| 2227 | |
| 2228 bool BackendImpl::CheckEntry(EntryImpl* cache_entry) { | |
| 2229 bool ok = block_files_.IsValid(cache_entry->entry()->address()); | |
| 2230 ok = ok && block_files_.IsValid(cache_entry->rankings()->address()); | |
| 2231 EntryStore* data = cache_entry->entry()->Data(); | |
| 2232 for (size_t i = 0; i < arraysize(data->data_addr); i++) { | |
| 2233 if (data->data_addr[i]) { | |
| 2234 Addr address(data->data_addr[i]); | |
| 2235 if (address.is_block_file()) | |
| 2236 ok = ok && block_files_.IsValid(address); | |
| 2237 } | |
| 2238 } | |
| 2239 | |
| 2240 return ok && cache_entry->rankings()->VerifyHash(); | |
| 2241 } | |
| 2242 | |
| 2243 int BackendImpl::MaxBuffersSize() { | |
| 2244 static int64 total_memory = base::SysInfo::AmountOfPhysicalMemory(); | |
| 2245 static bool done = false; | |
| 2246 | |
| 2247 if (!done) { | |
| 2248 const int kMaxBuffersSize = 30 * 1024 * 1024; | |
| 2249 | |
| 2250 // We want to use up to 2% of the computer's memory. | |
| 2251 total_memory = total_memory * 2 / 100; | |
| 2252 if (total_memory > kMaxBuffersSize || total_memory <= 0) | |
| 2253 total_memory = kMaxBuffersSize; | |
| 2254 | |
| 2255 done = true; | |
| 2256 } | |
| 2257 | |
| 2258 return static_cast<int>(total_memory); | |
| 2259 } | |
| 2260 | 247 |
| 2261 } // namespace disk_cache | 248 } // namespace disk_cache |
| OLD | NEW |