MMKV_IO.cpp 39 KB

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  1. /*
  2. * Tencent is pleased to support the open source community by making
  3. * MMKV available.
  4. *
  5. * Copyright (C) 2020 THL A29 Limited, a Tencent company.
  6. * All rights reserved.
  7. *
  8. * Licensed under the BSD 3-Clause License (the "License"); you may not use
  9. * this file except in compliance with the License. You may obtain a copy of
  10. * the License at
  11. *
  12. * https://opensource.org/licenses/BSD-3-Clause
  13. *
  14. * Unless required by applicable law or agreed to in writing, software
  15. * distributed under the License is distributed on an "AS IS" BASIS,
  16. * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  17. * See the License for the specific language governing permissions and
  18. * limitations under the License.
  19. */
  20. #include "MMKV_IO.h"
  21. #include "CodedInputData.h"
  22. #include "CodedOutputData.h"
  23. #include "InterProcessLock.h"
  24. #include "MMBuffer.h"
  25. #include "MMKVLog.h"
  26. #include "MMKVMetaInfo.hpp"
  27. #include "MemoryFile.h"
  28. #include "MiniPBCoder.h"
  29. #include "PBUtility.h"
  30. #include "ScopedLock.hpp"
  31. #include "ThreadLock.h"
  32. #include "aes/AESCrypt.h"
  33. #include "aes/openssl/openssl_aes.h"
  34. #include "aes/openssl/openssl_md5.h"
  35. #include "crc32/Checksum.h"
  36. #include <algorithm>
  37. #include <cassert>
  38. #include <cstring>
  39. #ifdef MMKV_IOS
  40. # include "MMKV_OSX.h"
  41. #endif
  42. #ifdef MMKV_APPLE
  43. # if __has_feature(objc_arc)
  44. # error This file must be compiled with MRC. Use -fno-objc-arc flag.
  45. # endif
  46. #endif // MMKV_APPLE
  47. using namespace std;
  48. using namespace mmkv;
  49. using KVHolderRet_t = std::pair<bool, KeyValueHolder>;
  50. constexpr uint32_t Fixed32Size = pbFixed32Size();
  51. MMKV_NAMESPACE_BEGIN
  52. void MMKV::loadFromFile() {
  53. if (m_metaFile->isFileValid()) {
  54. m_metaInfo->read(m_metaFile->getMemory());
  55. }
  56. #ifndef MMKV_DISABLE_CRYPT
  57. if (m_crypter) {
  58. if (m_metaInfo->m_version >= MMKVVersionRandomIV) {
  59. m_crypter->resetIV(m_metaInfo->m_vector, sizeof(m_metaInfo->m_vector));
  60. }
  61. }
  62. #endif
  63. if (!m_file->isFileValid()) {
  64. m_file->reloadFromFile();
  65. }
  66. if (!m_file->isFileValid()) {
  67. MMKVError("file [%s] not valid", m_path.c_str());
  68. } else {
  69. // error checking
  70. bool loadFromFile = false, needFullWriteback = false;
  71. checkDataValid(loadFromFile, needFullWriteback);
  72. MMKVInfo("loading [%s] with %zu actual size, file size %zu, InterProcess %d, meta info "
  73. "version:%u",
  74. m_mmapID.c_str(), m_actualSize, m_file->getFileSize(), m_isInterProcess, m_metaInfo->m_version);
  75. auto ptr = (uint8_t *) m_file->getMemory();
  76. // loading
  77. if (loadFromFile && m_actualSize > 0) {
  78. MMKVInfo("loading [%s] with crc %u sequence %u version %u", m_mmapID.c_str(), m_metaInfo->m_crcDigest,
  79. m_metaInfo->m_sequence, m_metaInfo->m_version);
  80. MMBuffer inputBuffer(ptr + Fixed32Size, m_actualSize, MMBufferNoCopy);
  81. if (m_crypter) {
  82. clearDictionary(m_dicCrypt);
  83. } else {
  84. clearDictionary(m_dic);
  85. }
  86. if (needFullWriteback) {
  87. #ifndef MMKV_DISABLE_CRYPT
  88. if (m_crypter) {
  89. MiniPBCoder::greedyDecodeMap(*m_dicCrypt, inputBuffer, m_crypter);
  90. } else
  91. #endif
  92. {
  93. MiniPBCoder::greedyDecodeMap(*m_dic, inputBuffer);
  94. }
  95. } else {
  96. #ifndef MMKV_DISABLE_CRYPT
  97. if (m_crypter) {
  98. MiniPBCoder::decodeMap(*m_dicCrypt, inputBuffer, m_crypter);
  99. } else
  100. #endif
  101. {
  102. MiniPBCoder::decodeMap(*m_dic, inputBuffer);
  103. }
  104. }
  105. m_output = new CodedOutputData(ptr + Fixed32Size, m_file->getFileSize() - Fixed32Size);
  106. m_output->seek(m_actualSize);
  107. if (needFullWriteback) {
  108. fullWriteback();
  109. }
  110. } else {
  111. // file not valid or empty, discard everything
  112. SCOPED_LOCK(m_exclusiveProcessLock);
  113. m_output = new CodedOutputData(ptr + Fixed32Size, m_file->getFileSize() - Fixed32Size);
  114. if (m_actualSize > 0) {
  115. writeActualSize(0, 0, nullptr, IncreaseSequence);
  116. sync(MMKV_SYNC);
  117. } else {
  118. writeActualSize(0, 0, nullptr, KeepSequence);
  119. }
  120. }
  121. auto count = m_crypter ? m_dicCrypt->size() : m_dic->size();
  122. MMKVInfo("loaded [%s] with %zu key-values", m_mmapID.c_str(), count);
  123. }
  124. m_needLoadFromFile = false;
  125. }
  126. // read from last m_position
  127. void MMKV::partialLoadFromFile() {
  128. m_metaInfo->read(m_metaFile->getMemory());
  129. size_t oldActualSize = m_actualSize;
  130. m_actualSize = readActualSize();
  131. auto fileSize = m_file->getFileSize();
  132. MMKVDebug("loading [%s] with file size %zu, oldActualSize %zu, newActualSize %zu", m_mmapID.c_str(), fileSize,
  133. oldActualSize, m_actualSize);
  134. if (m_actualSize > 0) {
  135. if (m_actualSize < fileSize && m_actualSize + Fixed32Size <= fileSize) {
  136. if (m_actualSize > oldActualSize) {
  137. auto position = oldActualSize;
  138. size_t addedSize = m_actualSize - position;
  139. auto basePtr = (uint8_t *) m_file->getMemory() + Fixed32Size;
  140. // incremental update crc digest
  141. m_crcDigest = (uint32_t) CRC32(m_crcDigest, basePtr + position, addedSize);
  142. if (m_crcDigest == m_metaInfo->m_crcDigest) {
  143. MMBuffer inputBuffer(basePtr, m_actualSize, MMBufferNoCopy);
  144. #ifndef MMKV_DISABLE_CRYPT
  145. if (m_crypter) {
  146. MiniPBCoder::greedyDecodeMap(*m_dicCrypt, inputBuffer, m_crypter, position);
  147. } else
  148. #endif
  149. {
  150. MiniPBCoder::greedyDecodeMap(*m_dic, inputBuffer, position);
  151. }
  152. m_output->seek(addedSize);
  153. m_hasFullWriteback = false;
  154. auto count = m_crypter ? m_dicCrypt->size() : m_dic->size();
  155. MMKVDebug("partial loaded [%s] with %zu values", m_mmapID.c_str(), count);
  156. return;
  157. } else {
  158. MMKVError("m_crcDigest[%u] != m_metaInfo->m_crcDigest[%u]", m_crcDigest, m_metaInfo->m_crcDigest);
  159. }
  160. }
  161. }
  162. }
  163. // something is wrong, do a full load
  164. clearMemoryCache();
  165. loadFromFile();
  166. }
  167. void MMKV::checkDataValid(bool &loadFromFile, bool &needFullWriteback) {
  168. // try auto recover from last confirmed location
  169. auto fileSize = m_file->getFileSize();
  170. auto checkLastConfirmedInfo = [&] {
  171. if (m_metaInfo->m_version >= MMKVVersionActualSize) {
  172. // downgrade & upgrade support
  173. uint32_t oldStyleActualSize = 0;
  174. memcpy(&oldStyleActualSize, m_file->getMemory(), Fixed32Size);
  175. if (oldStyleActualSize != m_actualSize) {
  176. MMKVWarning("oldStyleActualSize %u not equal to meta actual size %lu", oldStyleActualSize,
  177. m_actualSize);
  178. if (oldStyleActualSize < fileSize && (oldStyleActualSize + Fixed32Size) <= fileSize) {
  179. if (checkFileCRCValid(oldStyleActualSize, m_metaInfo->m_crcDigest)) {
  180. MMKVInfo("looks like [%s] been downgrade & upgrade again", m_mmapID.c_str());
  181. loadFromFile = true;
  182. writeActualSize(oldStyleActualSize, m_metaInfo->m_crcDigest, nullptr, KeepSequence);
  183. return;
  184. }
  185. } else {
  186. MMKVWarning("oldStyleActualSize %u greater than file size %lu", oldStyleActualSize, fileSize);
  187. }
  188. }
  189. auto lastActualSize = m_metaInfo->m_lastConfirmedMetaInfo.lastActualSize;
  190. if (lastActualSize < fileSize && (lastActualSize + Fixed32Size) <= fileSize) {
  191. auto lastCRCDigest = m_metaInfo->m_lastConfirmedMetaInfo.lastCRCDigest;
  192. if (checkFileCRCValid(lastActualSize, lastCRCDigest)) {
  193. loadFromFile = true;
  194. writeActualSize(lastActualSize, lastCRCDigest, nullptr, KeepSequence);
  195. } else {
  196. MMKVError("check [%s] error: lastActualSize %u, lastActualCRC %u", m_mmapID.c_str(), lastActualSize,
  197. lastCRCDigest);
  198. }
  199. } else {
  200. MMKVError("check [%s] error: lastActualSize %u, file size is %u", m_mmapID.c_str(), lastActualSize,
  201. fileSize);
  202. }
  203. }
  204. };
  205. m_actualSize = readActualSize();
  206. if (m_actualSize < fileSize && (m_actualSize + Fixed32Size) <= fileSize) {
  207. if (checkFileCRCValid(m_actualSize, m_metaInfo->m_crcDigest)) {
  208. loadFromFile = true;
  209. } else {
  210. checkLastConfirmedInfo();
  211. if (!loadFromFile) {
  212. auto strategic = onMMKVCRCCheckFail(m_mmapID);
  213. if (strategic == OnErrorRecover) {
  214. loadFromFile = true;
  215. needFullWriteback = true;
  216. }
  217. MMKVInfo("recover strategic for [%s] is %d", m_mmapID.c_str(), strategic);
  218. }
  219. }
  220. } else {
  221. MMKVError("check [%s] error: %zu size in total, file size is %zu", m_mmapID.c_str(), m_actualSize, fileSize);
  222. checkLastConfirmedInfo();
  223. if (!loadFromFile) {
  224. auto strategic = onMMKVFileLengthError(m_mmapID);
  225. if (strategic == OnErrorRecover) {
  226. // make sure we don't over read the file
  227. m_actualSize = fileSize - Fixed32Size;
  228. loadFromFile = true;
  229. needFullWriteback = true;
  230. }
  231. MMKVInfo("recover strategic for [%s] is %d", m_mmapID.c_str(), strategic);
  232. }
  233. }
  234. }
  235. void MMKV::checkLoadData() {
  236. if (m_needLoadFromFile) {
  237. SCOPED_LOCK(m_sharedProcessLock);
  238. m_needLoadFromFile = false;
  239. loadFromFile();
  240. return;
  241. }
  242. if (!m_isInterProcess) {
  243. return;
  244. }
  245. if (!m_metaFile->isFileValid()) {
  246. return;
  247. }
  248. SCOPED_LOCK(m_sharedProcessLock);
  249. MMKVMetaInfo metaInfo;
  250. metaInfo.read(m_metaFile->getMemory());
  251. if (m_metaInfo->m_sequence != metaInfo.m_sequence) {
  252. MMKVInfo("[%s] oldSeq %u, newSeq %u", m_mmapID.c_str(), m_metaInfo->m_sequence, metaInfo.m_sequence);
  253. SCOPED_LOCK(m_sharedProcessLock);
  254. clearMemoryCache();
  255. loadFromFile();
  256. notifyContentChanged();
  257. } else if (m_metaInfo->m_crcDigest != metaInfo.m_crcDigest) {
  258. MMKVDebug("[%s] oldCrc %u, newCrc %u, new actualSize %u", m_mmapID.c_str(), m_metaInfo->m_crcDigest,
  259. metaInfo.m_crcDigest, metaInfo.m_actualSize);
  260. SCOPED_LOCK(m_sharedProcessLock);
  261. size_t fileSize = m_file->getActualFileSize();
  262. if (m_file->getFileSize() != fileSize) {
  263. MMKVInfo("file size has changed [%s] from %zu to %zu", m_mmapID.c_str(), m_file->getFileSize(), fileSize);
  264. clearMemoryCache();
  265. loadFromFile();
  266. } else {
  267. partialLoadFromFile();
  268. }
  269. notifyContentChanged();
  270. }
  271. }
  272. constexpr uint32_t ItemSizeHolder = 0x00ffffff;
  273. constexpr uint32_t ItemSizeHolderSize = 4;
  274. static pair<MMBuffer, size_t> prepareEncode(const MMKVMap &dic) {
  275. // make some room for placeholder
  276. size_t totalSize = ItemSizeHolderSize;
  277. for (auto &itr : dic) {
  278. auto &kvHolder = itr.second;
  279. totalSize += kvHolder.computedKVSize + kvHolder.valueSize;
  280. }
  281. return make_pair(MMBuffer(), totalSize);
  282. }
  283. #ifndef MMKV_DISABLE_CRYPT
  284. static pair<MMBuffer, size_t> prepareEncode(const MMKVMapCrypt &dic) {
  285. MMKVVector vec;
  286. size_t totalSize = 0;
  287. // make some room for placeholder
  288. uint32_t smallestOffet = 5 + 1; // 5 is the largest size needed to encode varint32
  289. for (auto &itr : dic) {
  290. auto &kvHolder = itr.second;
  291. if (kvHolder.type == KeyValueHolderType_Offset) {
  292. totalSize += kvHolder.pbKeyValueSize + kvHolder.keySize + kvHolder.valueSize;
  293. smallestOffet = min(smallestOffet, kvHolder.offset);
  294. } else {
  295. vec.emplace_back(itr.first, kvHolder.toMMBuffer(nullptr, nullptr));
  296. }
  297. }
  298. if (smallestOffet > 5) {
  299. smallestOffet = ItemSizeHolderSize;
  300. }
  301. totalSize += smallestOffet;
  302. if (vec.empty()) {
  303. return make_pair(MMBuffer(), totalSize);
  304. }
  305. auto buffer = MiniPBCoder::encodeDataWithObject(vec);
  306. // skip the pb size of buffer
  307. auto sizeOfMap = CodedInputData(buffer.getPtr(), buffer.length()).readUInt32();
  308. totalSize += sizeOfMap;
  309. return make_pair(move(buffer), totalSize);
  310. }
  311. #endif
  312. // since we use append mode, when -[setData: forKey:] many times, space may not be enough
  313. // try a full rewrite to make space
  314. bool MMKV::ensureMemorySize(size_t newSize) {
  315. if (!isFileValid()) {
  316. MMKVWarning("[%s] file not valid", m_mmapID.c_str());
  317. return false;
  318. }
  319. if (newSize >= m_output->spaceLeft() || (m_crypter ? m_dicCrypt->empty() : m_dic->empty())) {
  320. // try a full rewrite to make space
  321. auto fileSize = m_file->getFileSize();
  322. auto preparedData = m_crypter ? prepareEncode(*m_dicCrypt) : prepareEncode(*m_dic);
  323. auto sizeOfDic = preparedData.second;
  324. size_t lenNeeded = sizeOfDic + Fixed32Size + newSize;
  325. size_t dicCount = m_crypter ? m_dicCrypt->size() : m_dic->size();
  326. size_t avgItemSize = lenNeeded / std::max<size_t>(1, dicCount);
  327. size_t futureUsage = avgItemSize * std::max<size_t>(8, (dicCount + 1) / 2);
  328. // 1. no space for a full rewrite, double it
  329. // 2. or space is not large enough for future usage, double it to avoid frequently full rewrite
  330. if (lenNeeded >= fileSize || (lenNeeded + futureUsage) >= fileSize) {
  331. size_t oldSize = fileSize;
  332. do {
  333. fileSize *= 2;
  334. } while (lenNeeded + futureUsage >= fileSize);
  335. MMKVInfo("extending [%s] file size from %zu to %zu, incoming size:%zu, future usage:%zu", m_mmapID.c_str(),
  336. oldSize, fileSize, newSize, futureUsage);
  337. // if we can't extend size, rollback to old state
  338. if (!m_file->truncate(fileSize)) {
  339. return false;
  340. }
  341. // check if we fail to make more space
  342. if (!isFileValid()) {
  343. MMKVWarning("[%s] file not valid", m_mmapID.c_str());
  344. return false;
  345. }
  346. }
  347. return doFullWriteBack(move(preparedData), nullptr);
  348. }
  349. return true;
  350. }
  351. size_t MMKV::readActualSize() {
  352. MMKV_ASSERT(m_file->getMemory());
  353. MMKV_ASSERT(m_metaFile->isFileValid());
  354. uint32_t actualSize = 0;
  355. memcpy(&actualSize, m_file->getMemory(), Fixed32Size);
  356. if (m_metaInfo->m_version >= MMKVVersionActualSize) {
  357. if (m_metaInfo->m_actualSize != actualSize) {
  358. MMKVWarning("[%s] actual size %u, meta actual size %u", m_mmapID.c_str(), actualSize,
  359. m_metaInfo->m_actualSize);
  360. }
  361. return m_metaInfo->m_actualSize;
  362. } else {
  363. return actualSize;
  364. }
  365. }
  366. void MMKV::oldStyleWriteActualSize(size_t actualSize) {
  367. MMKV_ASSERT(m_file->getMemory());
  368. m_actualSize = actualSize;
  369. #ifdef MMKV_IOS
  370. auto ret = guardForBackgroundWriting(m_file->getMemory(), Fixed32Size);
  371. if (!ret.first) {
  372. return;
  373. }
  374. #endif
  375. memcpy(m_file->getMemory(), &actualSize, Fixed32Size);
  376. }
  377. bool MMKV::writeActualSize(size_t size, uint32_t crcDigest, const void *iv, bool increaseSequence) {
  378. // backward compatibility
  379. oldStyleWriteActualSize(size);
  380. if (!m_metaFile->isFileValid()) {
  381. return false;
  382. }
  383. bool needsFullWrite = false;
  384. m_actualSize = size;
  385. m_metaInfo->m_actualSize = static_cast<uint32_t>(size);
  386. m_crcDigest = crcDigest;
  387. m_metaInfo->m_crcDigest = crcDigest;
  388. if (m_metaInfo->m_version < MMKVVersionSequence) {
  389. m_metaInfo->m_version = MMKVVersionSequence;
  390. needsFullWrite = true;
  391. }
  392. #ifndef MMKV_DISABLE_CRYPT
  393. if (unlikely(iv)) {
  394. memcpy(m_metaInfo->m_vector, iv, sizeof(m_metaInfo->m_vector));
  395. if (m_metaInfo->m_version < MMKVVersionRandomIV) {
  396. m_metaInfo->m_version = MMKVVersionRandomIV;
  397. }
  398. needsFullWrite = true;
  399. }
  400. #endif
  401. if (unlikely(increaseSequence)) {
  402. m_metaInfo->m_sequence++;
  403. m_metaInfo->m_lastConfirmedMetaInfo.lastActualSize = static_cast<uint32_t>(size);
  404. m_metaInfo->m_lastConfirmedMetaInfo.lastCRCDigest = crcDigest;
  405. if (m_metaInfo->m_version < MMKVVersionActualSize) {
  406. m_metaInfo->m_version = MMKVVersionActualSize;
  407. }
  408. needsFullWrite = true;
  409. MMKVInfo("[%s] increase sequence to %u, crc %u, actualSize %u", m_mmapID.c_str(), m_metaInfo->m_sequence,
  410. m_metaInfo->m_crcDigest, m_metaInfo->m_actualSize);
  411. }
  412. #ifdef MMKV_IOS
  413. auto ret = guardForBackgroundWriting(m_metaFile->getMemory(), sizeof(MMKVMetaInfo));
  414. if (!ret.first) {
  415. return false;
  416. }
  417. #endif
  418. if (unlikely(needsFullWrite)) {
  419. m_metaInfo->write(m_metaFile->getMemory());
  420. } else {
  421. m_metaInfo->writeCRCAndActualSizeOnly(m_metaFile->getMemory());
  422. }
  423. return true;
  424. }
  425. MMBuffer MMKV::getDataForKey(MMKVKey_t key) {
  426. checkLoadData();
  427. #ifndef MMKV_DISABLE_CRYPT
  428. if (m_crypter) {
  429. auto itr = m_dicCrypt->find(key);
  430. if (itr != m_dicCrypt->end()) {
  431. auto basePtr = (uint8_t *) (m_file->getMemory()) + Fixed32Size;
  432. return itr->second.toMMBuffer(basePtr, m_crypter);
  433. }
  434. } else
  435. #endif
  436. {
  437. auto itr = m_dic->find(key);
  438. if (itr != m_dic->end()) {
  439. auto basePtr = (uint8_t *) (m_file->getMemory()) + Fixed32Size;
  440. return itr->second.toMMBuffer(basePtr);
  441. }
  442. }
  443. MMBuffer nan;
  444. return nan;
  445. }
  446. #ifndef MMKV_DISABLE_CRYPT
  447. // for Apple watch simulator
  448. # if defined(TARGET_OS_SIMULATOR) && defined(TARGET_CPU_X86)
  449. static AESCryptStatus t_status;
  450. # else
  451. thread_local AESCryptStatus t_status;
  452. # endif
  453. #endif // MMKV_DISABLE_CRYPT
  454. bool MMKV::setDataForKey(MMBuffer &&data, MMKVKey_t key, bool isDataHolder) {
  455. if ((!isDataHolder && data.length() == 0) || isKeyEmpty(key)) {
  456. return false;
  457. }
  458. SCOPED_LOCK(m_lock);
  459. SCOPED_LOCK(m_exclusiveProcessLock);
  460. checkLoadData();
  461. #ifndef MMKV_DISABLE_CRYPT
  462. if (m_crypter) {
  463. if (isDataHolder) {
  464. auto sizeNeededForData = pbRawVarint32Size((uint32_t) data.length()) + data.length();
  465. if (!KeyValueHolderCrypt::isValueStoredAsOffset(sizeNeededForData)) {
  466. data = MiniPBCoder::encodeDataWithObject(data);
  467. isDataHolder = false;
  468. }
  469. }
  470. auto itr = m_dicCrypt->find(key);
  471. if (itr != m_dicCrypt->end()) {
  472. # ifdef MMKV_APPLE
  473. auto ret = appendDataWithKey(data, key, itr->second, isDataHolder);
  474. # else
  475. auto ret = appendDataWithKey(data, key, isDataHolder);
  476. # endif
  477. if (!ret.first) {
  478. return false;
  479. }
  480. if (KeyValueHolderCrypt::isValueStoredAsOffset(ret.second.valueSize)) {
  481. KeyValueHolderCrypt kvHolder(ret.second.keySize, ret.second.valueSize, ret.second.offset);
  482. memcpy(&kvHolder.cryptStatus, &t_status, sizeof(t_status));
  483. itr->second = move(kvHolder);
  484. } else {
  485. itr->second = KeyValueHolderCrypt(move(data));
  486. }
  487. } else {
  488. auto ret = appendDataWithKey(data, key, isDataHolder);
  489. if (!ret.first) {
  490. return false;
  491. }
  492. if (KeyValueHolderCrypt::isValueStoredAsOffset(ret.second.valueSize)) {
  493. auto r = m_dicCrypt->emplace(
  494. key, KeyValueHolderCrypt(ret.second.keySize, ret.second.valueSize, ret.second.offset));
  495. if (r.second) {
  496. memcpy(&(r.first->second.cryptStatus), &t_status, sizeof(t_status));
  497. }
  498. } else {
  499. m_dicCrypt->emplace(key, KeyValueHolderCrypt(move(data)));
  500. }
  501. }
  502. } else
  503. #endif // MMKV_DISABLE_CRYPT
  504. {
  505. auto itr = m_dic->find(key);
  506. if (itr != m_dic->end()) {
  507. auto ret = appendDataWithKey(data, itr->second, isDataHolder);
  508. if (!ret.first) {
  509. return false;
  510. }
  511. itr->second = std::move(ret.second);
  512. } else {
  513. auto ret = appendDataWithKey(data, key, isDataHolder);
  514. if (!ret.first) {
  515. return false;
  516. }
  517. m_dic->emplace(key, std::move(ret.second));
  518. }
  519. }
  520. m_hasFullWriteback = false;
  521. #ifdef MMKV_APPLE
  522. [key retain];
  523. #endif
  524. return true;
  525. }
  526. bool MMKV::removeDataForKey(MMKVKey_t key) {
  527. if (isKeyEmpty(key)) {
  528. return false;
  529. }
  530. #ifndef MMKV_DISABLE_CRYPT
  531. if (m_crypter) {
  532. auto itr = m_dicCrypt->find(key);
  533. if (itr != m_dicCrypt->end()) {
  534. m_hasFullWriteback = false;
  535. static MMBuffer nan;
  536. # ifdef MMKV_APPLE
  537. auto ret = appendDataWithKey(nan, key, itr->second);
  538. if (ret.first) {
  539. auto oldKey = itr->first;
  540. m_dicCrypt->erase(itr);
  541. [oldKey release];
  542. }
  543. # else
  544. auto ret = appendDataWithKey(nan, key);
  545. if (ret.first) {
  546. m_dicCrypt->erase(itr);
  547. }
  548. # endif
  549. return ret.first;
  550. }
  551. } else
  552. #endif // MMKV_DISABLE_CRYPT
  553. {
  554. auto itr = m_dic->find(key);
  555. if (itr != m_dic->end()) {
  556. m_hasFullWriteback = false;
  557. static MMBuffer nan;
  558. auto ret = appendDataWithKey(nan, itr->second);
  559. if (ret.first) {
  560. #ifdef MMKV_APPLE
  561. auto oldKey = itr->first;
  562. m_dic->erase(itr);
  563. [oldKey release];
  564. #else
  565. m_dic->erase(itr);
  566. #endif
  567. }
  568. return ret.first;
  569. }
  570. }
  571. return false;
  572. }
  573. KVHolderRet_t
  574. MMKV::doAppendDataWithKey(const MMBuffer &data, const MMBuffer &keyData, bool isDataHolder, uint32_t originKeyLength) {
  575. auto isKeyEncoded = (originKeyLength < keyData.length());
  576. auto keyLength = static_cast<uint32_t>(keyData.length());
  577. auto valueLength = static_cast<uint32_t>(data.length());
  578. if (isDataHolder) {
  579. valueLength += pbRawVarint32Size(valueLength);
  580. }
  581. // size needed to encode the key
  582. size_t size = isKeyEncoded ? keyLength : (keyLength + pbRawVarint32Size(keyLength));
  583. // size needed to encode the value
  584. size += valueLength + pbRawVarint32Size(valueLength);
  585. SCOPED_LOCK(m_exclusiveProcessLock);
  586. bool hasEnoughSize = ensureMemorySize(size);
  587. if (!hasEnoughSize || !isFileValid()) {
  588. return make_pair(false, KeyValueHolder());
  589. }
  590. #ifdef MMKV_IOS
  591. auto ret = guardForBackgroundWriting(m_output->curWritePointer(), size);
  592. if (!ret.first) {
  593. return make_pair(false, KeyValueHolder());
  594. }
  595. #endif
  596. #ifndef MMKV_DISABLE_CRYPT
  597. if (m_crypter) {
  598. if (KeyValueHolderCrypt::isValueStoredAsOffset(valueLength)) {
  599. m_crypter->getCurStatus(t_status);
  600. }
  601. }
  602. #endif
  603. try {
  604. if (isKeyEncoded) {
  605. m_output->writeRawData(keyData);
  606. } else {
  607. m_output->writeData(keyData);
  608. }
  609. if (isDataHolder) {
  610. m_output->writeRawVarint32((int32_t) valueLength);
  611. }
  612. m_output->writeData(data); // note: write size of data
  613. } catch (std::exception &e) {
  614. MMKVError("%s", e.what());
  615. return make_pair(false, KeyValueHolder());
  616. }
  617. auto offset = static_cast<uint32_t>(m_actualSize);
  618. auto ptr = (uint8_t *) m_file->getMemory() + Fixed32Size + m_actualSize;
  619. #ifndef MMKV_DISABLE_CRYPT
  620. if (m_crypter) {
  621. m_crypter->encrypt(ptr, ptr, size);
  622. }
  623. #endif
  624. m_actualSize += size;
  625. updateCRCDigest(ptr, size);
  626. return make_pair(true, KeyValueHolder(originKeyLength, valueLength, offset));
  627. }
  628. KVHolderRet_t MMKV::appendDataWithKey(const MMBuffer &data, MMKVKey_t key, bool isDataHolder) {
  629. #ifdef MMKV_APPLE
  630. auto oData = [key dataUsingEncoding:NSUTF8StringEncoding];
  631. auto keyData = MMBuffer(oData, MMBufferNoCopy);
  632. #else
  633. auto keyData = MMBuffer((void *) key.data(), key.size(), MMBufferNoCopy);
  634. #endif
  635. return doAppendDataWithKey(data, keyData, isDataHolder, static_cast<uint32_t>(keyData.length()));
  636. }
  637. KVHolderRet_t MMKV::appendDataWithKey(const MMBuffer &data, const KeyValueHolder &kvHolder, bool isDataHolder) {
  638. SCOPED_LOCK(m_exclusiveProcessLock);
  639. uint32_t keyLength = kvHolder.keySize;
  640. // size needed to encode the key
  641. size_t rawKeySize = keyLength + pbRawVarint32Size(keyLength);
  642. // ensureMemorySize() might change kvHolder.offset, so have to do it early
  643. {
  644. auto valueLength = static_cast<uint32_t>(data.length());
  645. if (isDataHolder) {
  646. valueLength += pbRawVarint32Size(valueLength);
  647. }
  648. auto size = rawKeySize + valueLength + pbRawVarint32Size(valueLength);
  649. bool hasEnoughSize = ensureMemorySize(size);
  650. if (!hasEnoughSize) {
  651. return make_pair(false, KeyValueHolder());
  652. }
  653. }
  654. auto basePtr = (uint8_t *) m_file->getMemory() + Fixed32Size;
  655. MMBuffer keyData(basePtr + kvHolder.offset, rawKeySize, MMBufferNoCopy);
  656. return doAppendDataWithKey(data, keyData, isDataHolder, keyLength);
  657. }
  658. bool MMKV::fullWriteback(AESCrypt *newCrypter) {
  659. if (m_hasFullWriteback) {
  660. return true;
  661. }
  662. if (m_needLoadFromFile) {
  663. return true;
  664. }
  665. if (!isFileValid()) {
  666. MMKVWarning("[%s] file not valid", m_mmapID.c_str());
  667. return false;
  668. }
  669. if (m_crypter ? m_dicCrypt->empty() : m_dic->empty()) {
  670. clearAll();
  671. return true;
  672. }
  673. auto preparedData = m_crypter ? prepareEncode(*m_dicCrypt) : prepareEncode(*m_dic);
  674. auto sizeOfDic = preparedData.second;
  675. SCOPED_LOCK(m_exclusiveProcessLock);
  676. if (sizeOfDic > 0) {
  677. auto fileSize = m_file->getFileSize();
  678. if (sizeOfDic + Fixed32Size <= fileSize) {
  679. return doFullWriteBack(move(preparedData), newCrypter);
  680. } else {
  681. assert(0);
  682. assert(newCrypter == nullptr);
  683. // ensureMemorySize will extend file & full rewrite, no need to write back again
  684. return ensureMemorySize(sizeOfDic + Fixed32Size - fileSize);
  685. }
  686. }
  687. return false;
  688. }
  689. // we don't need to really serialize the dictionary, just reuse what's already in the file
  690. static void
  691. memmoveDictionary(MMKVMap &dic, CodedOutputData *output, uint8_t *ptr, AESCrypt *encrypter, size_t totalSize) {
  692. auto originOutputPtr = output->curWritePointer();
  693. // make space to hold the fake size of dictionary's serialization result
  694. auto writePtr = originOutputPtr + ItemSizeHolderSize;
  695. // reuse what's already in the file
  696. if (!dic.empty()) {
  697. // sort by offset
  698. vector<KeyValueHolder *> vec;
  699. vec.reserve(dic.size());
  700. for (auto &itr : dic) {
  701. vec.push_back(&itr.second);
  702. }
  703. sort(vec.begin(), vec.end(), [](const auto &left, const auto &right) { return left->offset < right->offset; });
  704. // merge nearby items to make memmove quicker
  705. vector<pair<uint32_t, uint32_t>> dataSections; // pair(offset, size)
  706. dataSections.emplace_back(vec.front()->offset, vec.front()->computedKVSize + vec.front()->valueSize);
  707. for (size_t index = 1, total = vec.size(); index < total; index++) {
  708. auto kvHolder = vec[index];
  709. auto &lastSection = dataSections.back();
  710. if (kvHolder->offset == lastSection.first + lastSection.second) {
  711. lastSection.second += kvHolder->computedKVSize + kvHolder->valueSize;
  712. } else {
  713. dataSections.emplace_back(kvHolder->offset, kvHolder->computedKVSize + kvHolder->valueSize);
  714. }
  715. }
  716. // do the move
  717. auto basePtr = ptr + Fixed32Size;
  718. for (auto &section : dataSections) {
  719. // memmove() should handle this well: src == dst
  720. memmove(writePtr, basePtr + section.first, section.second);
  721. writePtr += section.second;
  722. }
  723. // update offset
  724. if (!encrypter) {
  725. auto offset = ItemSizeHolderSize;
  726. for (auto kvHolder : vec) {
  727. kvHolder->offset = offset;
  728. offset += kvHolder->computedKVSize + kvHolder->valueSize;
  729. }
  730. }
  731. }
  732. // hold the fake size of dictionary's serialization result
  733. output->writeRawVarint32(ItemSizeHolder);
  734. auto writtenSize = static_cast<size_t>(writePtr - originOutputPtr);
  735. #ifndef MMKV_DISABLE_CRYPT
  736. if (encrypter) {
  737. encrypter->encrypt(originOutputPtr, originOutputPtr, writtenSize);
  738. }
  739. #endif
  740. assert(writtenSize == totalSize);
  741. output->seek(writtenSize - ItemSizeHolderSize);
  742. }
  743. #ifndef MMKV_DISABLE_CRYPT
  744. static void memmoveDictionary(MMKVMapCrypt &dic,
  745. CodedOutputData *output,
  746. uint8_t *ptr,
  747. AESCrypt *decrypter,
  748. AESCrypt *encrypter,
  749. pair<MMBuffer, size_t> &preparedData) {
  750. // reuse what's already in the file
  751. vector<KeyValueHolderCrypt *> vec;
  752. if (!dic.empty()) {
  753. // sort by offset
  754. vec.reserve(dic.size());
  755. for (auto &itr : dic) {
  756. if (itr.second.type == KeyValueHolderType_Offset) {
  757. vec.push_back(&itr.second);
  758. }
  759. }
  760. sort(vec.begin(), vec.end(), [](auto left, auto right) { return left->offset < right->offset; });
  761. }
  762. auto sizeHolder = ItemSizeHolder, sizeHolderSize = ItemSizeHolderSize;
  763. if (!vec.empty()) {
  764. auto smallestOffset = vec.front()->offset;
  765. if (smallestOffset != ItemSizeHolderSize && smallestOffset <= 5) {
  766. sizeHolderSize = smallestOffset;
  767. assert(sizeHolderSize != 0);
  768. static const uint32_t ItemSizeHolders[] = {0, 0x0f, 0xff, 0xffff, 0xffffff, 0xffffffff};
  769. sizeHolder = ItemSizeHolders[sizeHolderSize];
  770. }
  771. }
  772. output->writeRawVarint32(static_cast<int32_t>(sizeHolder));
  773. auto writePtr = output->curWritePointer();
  774. if (encrypter) {
  775. encrypter->encrypt(writePtr - sizeHolderSize, writePtr - sizeHolderSize, sizeHolderSize);
  776. }
  777. if (!vec.empty()) {
  778. // merge nearby items to make memmove quicker
  779. vector<tuple<uint32_t, uint32_t, AESCryptStatus *>> dataSections; // pair(offset, size)
  780. dataSections.push_back(vec.front()->toTuple());
  781. for (size_t index = 1, total = vec.size(); index < total; index++) {
  782. auto kvHolder = vec[index];
  783. auto &lastSection = dataSections.back();
  784. if (kvHolder->offset == get<0>(lastSection) + get<1>(lastSection)) {
  785. get<1>(lastSection) += kvHolder->pbKeyValueSize + kvHolder->keySize + kvHolder->valueSize;
  786. } else {
  787. dataSections.push_back(kvHolder->toTuple());
  788. }
  789. }
  790. // do the move
  791. auto basePtr = ptr + Fixed32Size;
  792. for (auto &section : dataSections) {
  793. auto crypter = decrypter->cloneWithStatus(*get<2>(section));
  794. crypter.decrypt(basePtr + get<0>(section), writePtr, get<1>(section));
  795. writePtr += get<1>(section);
  796. }
  797. // update offset & AESCryptStatus
  798. if (encrypter) {
  799. auto offset = sizeHolderSize;
  800. for (auto kvHolder : vec) {
  801. kvHolder->offset = offset;
  802. auto size = kvHolder->pbKeyValueSize + kvHolder->keySize + kvHolder->valueSize;
  803. encrypter->getCurStatus(kvHolder->cryptStatus);
  804. encrypter->encrypt(basePtr + offset, basePtr + offset, size);
  805. offset += size;
  806. }
  807. }
  808. }
  809. auto &data = preparedData.first;
  810. if (data.length() > 0) {
  811. auto dataSize = CodedInputData(data.getPtr(), data.length()).readUInt32();
  812. if (dataSize > 0) {
  813. auto dataPtr = (uint8_t *) data.getPtr() + pbRawVarint32Size(dataSize);
  814. if (encrypter) {
  815. encrypter->encrypt(dataPtr, writePtr, dataSize);
  816. } else {
  817. memcpy(writePtr, dataPtr, dataSize);
  818. }
  819. writePtr += dataSize;
  820. }
  821. }
  822. auto writtenSize = static_cast<size_t>(writePtr - output->curWritePointer());
  823. assert(writtenSize + sizeHolderSize == preparedData.second);
  824. output->seek(writtenSize);
  825. }
  826. # define InvalidCryptPtr ((AESCrypt *) (void *) (1))
  827. #endif // MMKV_DISABLE_CRYPT
  828. bool MMKV::doFullWriteBack(pair<MMBuffer, size_t> preparedData, AESCrypt *newCrypter) {
  829. auto ptr = (uint8_t *) m_file->getMemory();
  830. auto totalSize = preparedData.second;
  831. #ifdef MMKV_IOS
  832. auto ret = guardForBackgroundWriting(ptr + Fixed32Size, totalSize);
  833. if (!ret.first) {
  834. return false;
  835. }
  836. #endif
  837. #ifndef MMKV_DISABLE_CRYPT
  838. uint8_t newIV[AES_KEY_LEN];
  839. auto decrypter = m_crypter;
  840. auto encrypter = (newCrypter == InvalidCryptPtr) ? nullptr : (newCrypter ? newCrypter : m_crypter);
  841. if (encrypter) {
  842. AESCrypt::fillRandomIV(newIV);
  843. encrypter->resetIV(newIV, sizeof(newIV));
  844. }
  845. #endif
  846. delete m_output;
  847. m_output = new CodedOutputData(ptr + Fixed32Size, m_file->getFileSize() - Fixed32Size);
  848. #ifndef MMKV_DISABLE_CRYPT
  849. if (m_crypter) {
  850. memmoveDictionary(*m_dicCrypt, m_output, ptr, decrypter, encrypter, preparedData);
  851. } else {
  852. #else
  853. {
  854. auto encrypter = m_crypter;
  855. #endif
  856. memmoveDictionary(*m_dic, m_output, ptr, encrypter, totalSize);
  857. }
  858. m_actualSize = totalSize;
  859. #ifndef MMKV_DISABLE_CRYPT
  860. if (encrypter) {
  861. recaculateCRCDigestWithIV(newIV);
  862. } else
  863. #endif
  864. {
  865. recaculateCRCDigestWithIV(nullptr);
  866. }
  867. m_hasFullWriteback = true;
  868. // make sure lastConfirmedMetaInfo is saved
  869. sync(MMKV_SYNC);
  870. return true;
  871. }
  872. #ifndef MMKV_DISABLE_CRYPT
  873. bool MMKV::reKey(const string &cryptKey) {
  874. SCOPED_LOCK(m_lock);
  875. checkLoadData();
  876. bool ret = false;
  877. if (m_crypter) {
  878. if (cryptKey.length() > 0) {
  879. string oldKey = this->cryptKey();
  880. if (cryptKey == oldKey) {
  881. return true;
  882. } else {
  883. // change encryption key
  884. MMKVInfo("reKey with new aes key");
  885. auto newCrypt = new AESCrypt(cryptKey.data(), cryptKey.length());
  886. m_hasFullWriteback = false;
  887. ret = fullWriteback(newCrypt);
  888. if (ret) {
  889. delete m_crypter;
  890. m_crypter = newCrypt;
  891. } else {
  892. delete newCrypt;
  893. }
  894. }
  895. } else {
  896. // decryption to plain text
  897. MMKVInfo("reKey to no aes key");
  898. m_hasFullWriteback = false;
  899. ret = fullWriteback(InvalidCryptPtr);
  900. if (ret) {
  901. delete m_crypter;
  902. m_crypter = nullptr;
  903. if (!m_dic) {
  904. m_dic = new MMKVMap();
  905. }
  906. }
  907. }
  908. } else {
  909. if (cryptKey.length() > 0) {
  910. // transform plain text to encrypted text
  911. MMKVInfo("reKey to a aes key");
  912. m_hasFullWriteback = false;
  913. auto newCrypt = new AESCrypt(cryptKey.data(), cryptKey.length());
  914. ret = fullWriteback(newCrypt);
  915. if (ret) {
  916. m_crypter = newCrypt;
  917. if (!m_dicCrypt) {
  918. m_dicCrypt = new MMKVMapCrypt();
  919. }
  920. } else {
  921. delete newCrypt;
  922. }
  923. } else {
  924. return true;
  925. }
  926. }
  927. // m_dic or m_dicCrypt is not valid after reKey
  928. if (ret) {
  929. clearMemoryCache();
  930. }
  931. return ret;
  932. }
  933. #endif
  934. void MMKV::trim() {
  935. SCOPED_LOCK(m_lock);
  936. MMKVInfo("prepare to trim %s", m_mmapID.c_str());
  937. checkLoadData();
  938. if (m_actualSize == 0) {
  939. clearAll();
  940. return;
  941. } else if (m_file->getFileSize() <= DEFAULT_MMAP_SIZE) {
  942. return;
  943. }
  944. SCOPED_LOCK(m_exclusiveProcessLock);
  945. fullWriteback();
  946. auto oldSize = m_file->getFileSize();
  947. auto fileSize = oldSize;
  948. while (fileSize > (m_actualSize + Fixed32Size) * 2) {
  949. fileSize /= 2;
  950. }
  951. fileSize = std::max<size_t>(fileSize, DEFAULT_MMAP_SIZE);
  952. if (oldSize == fileSize) {
  953. MMKVInfo("there's no need to trim %s with size %zu, actualSize %zu", m_mmapID.c_str(), fileSize, m_actualSize);
  954. return;
  955. }
  956. MMKVInfo("trimming %s from %zu to %zu, actualSize %zu", m_mmapID.c_str(), oldSize, fileSize, m_actualSize);
  957. if (!m_file->truncate(fileSize)) {
  958. return;
  959. }
  960. fileSize = m_file->getFileSize();
  961. auto ptr = (uint8_t *) m_file->getMemory();
  962. delete m_output;
  963. m_output = new CodedOutputData(ptr + pbFixed32Size(), fileSize - Fixed32Size);
  964. m_output->seek(m_actualSize);
  965. MMKVInfo("finish trim %s from %zu to %zu", m_mmapID.c_str(), oldSize, fileSize);
  966. }
  967. void MMKV::clearAll() {
  968. MMKVInfo("cleaning all key-values from [%s]", m_mmapID.c_str());
  969. SCOPED_LOCK(m_lock);
  970. SCOPED_LOCK(m_exclusiveProcessLock);
  971. checkLoadData();
  972. if (m_file->getFileSize() == DEFAULT_MMAP_SIZE && m_actualSize == 0) {
  973. MMKVInfo("nothing to clear for [%s]", m_mmapID.c_str());
  974. return;
  975. }
  976. m_file->truncate(DEFAULT_MMAP_SIZE);
  977. #ifndef MMKV_DISABLE_CRYPT
  978. uint8_t newIV[AES_KEY_LEN];
  979. AESCrypt::fillRandomIV(newIV);
  980. if (m_crypter) {
  981. m_crypter->resetIV(newIV, sizeof(newIV));
  982. }
  983. writeActualSize(0, 0, newIV, IncreaseSequence);
  984. #else
  985. writeActualSize(0, 0, nullptr, IncreaseSequence);
  986. #endif
  987. m_metaFile->msync(MMKV_SYNC);
  988. clearMemoryCache();
  989. loadFromFile();
  990. }
  991. bool MMKV::isFileValid(const string &mmapID, MMKVPath_t *relatePath) {
  992. MMKVPath_t kvPath = mappedKVPathWithID(mmapID, MMKV_SINGLE_PROCESS, relatePath);
  993. if (!isFileExist(kvPath)) {
  994. return true;
  995. }
  996. MMKVPath_t crcPath = crcPathWithID(mmapID, MMKV_SINGLE_PROCESS, relatePath);
  997. if (!isFileExist(crcPath)) {
  998. return false;
  999. }
  1000. uint32_t crcFile = 0;
  1001. MMBuffer *data = readWholeFile(crcPath);
  1002. if (data) {
  1003. if (data->getPtr()) {
  1004. MMKVMetaInfo metaInfo;
  1005. metaInfo.read(data->getPtr());
  1006. crcFile = metaInfo.m_crcDigest;
  1007. }
  1008. delete data;
  1009. } else {
  1010. return false;
  1011. }
  1012. uint32_t crcDigest = 0;
  1013. MMBuffer *fileData = readWholeFile(kvPath);
  1014. if (fileData) {
  1015. if (fileData->getPtr() && (fileData->length() >= Fixed32Size)) {
  1016. uint32_t actualSize = 0;
  1017. memcpy(&actualSize, fileData->getPtr(), Fixed32Size);
  1018. if (actualSize > (fileData->length() - Fixed32Size)) {
  1019. delete fileData;
  1020. return false;
  1021. }
  1022. crcDigest = (uint32_t) CRC32(0, (const uint8_t *) fileData->getPtr() + Fixed32Size, (uint32_t) actualSize);
  1023. }
  1024. delete fileData;
  1025. return crcFile == crcDigest;
  1026. } else {
  1027. return false;
  1028. }
  1029. }
  1030. MMKV_NAMESPACE_END