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danielk197739281b42008-10-17 19:13:04 +00001/*
drh27c3bd72008-10-28 18:12:36 +00002** 2008 October 7
danielk197739281b42008-10-17 19:13:04 +00003**
4** The author disclaims copyright to this source code. In place of
5** a legal notice, here is a blessing:
6**
7** May you do good and not evil.
8** May you find forgiveness for yourself and forgive others.
9** May you share freely, never taking more than you give.
10**
11*************************************************************************
12**
drh27c3bd72008-10-28 18:12:36 +000013** This file contains code use to implement an in-memory rollback journal.
14** The in-memory rollback journal is used to journal transactions for
15** ":memory:" databases and when the journal_mode=MEMORY pragma is used.
drh70b8d6b2016-04-12 11:58:18 +000016**
17** Update: The in-memory journal is also used to temporarily cache
18** smaller journals that are not critical for power-loss recovery.
19** For example, statement journals that are not too big will be held
20** entirely in memory, thus reducing the number of file I/O calls, and
21** more importantly, reducing temporary file creation events. If these
22** journals become too large for memory, they are spilled to disk. But
23** in the common case, they are usually small and no file I/O needs to
24** occur.
danielk197739281b42008-10-17 19:13:04 +000025*/
danielk197739281b42008-10-17 19:13:04 +000026#include "sqliteInt.h"
27
drh27c3bd72008-10-28 18:12:36 +000028/* Forward references to internal structures */
danielk197739281b42008-10-17 19:13:04 +000029typedef struct MemJournal MemJournal;
30typedef struct FilePoint FilePoint;
31typedef struct FileChunk FileChunk;
32
drh27c3bd72008-10-28 18:12:36 +000033/*
34** The rollback journal is composed of a linked list of these structures.
dan2491de22016-02-27 20:14:55 +000035**
36** The zChunk array is always at least 8 bytes in size - usually much more.
37** Its actual size is stored in the MemJournal.nChunkSize variable.
drh27c3bd72008-10-28 18:12:36 +000038*/
danielk197739281b42008-10-17 19:13:04 +000039struct FileChunk {
drh27c3bd72008-10-28 18:12:36 +000040 FileChunk *pNext; /* Next chunk in the journal */
dan2491de22016-02-27 20:14:55 +000041 u8 zChunk[8]; /* Content of this chunk */
danielk197739281b42008-10-17 19:13:04 +000042};
43
drh27c3bd72008-10-28 18:12:36 +000044/*
dan2491de22016-02-27 20:14:55 +000045** By default, allocate this many bytes of memory for each FileChunk object.
46*/
47#define MEMJOURNAL_DFLT_FILECHUNKSIZE 1024
48
49/*
50** For chunk size nChunkSize, return the number of bytes that should
51** be allocated for each FileChunk structure.
52*/
53#define fileChunkSize(nChunkSize) (sizeof(FileChunk) + ((nChunkSize)-8))
54
55/*
drh27c3bd72008-10-28 18:12:36 +000056** An instance of this object serves as a cursor into the rollback journal.
57** The cursor can be either for reading or writing.
58*/
danielk197739281b42008-10-17 19:13:04 +000059struct FilePoint {
drh27c3bd72008-10-28 18:12:36 +000060 sqlite3_int64 iOffset; /* Offset from the beginning of the file */
61 FileChunk *pChunk; /* Specific chunk into which cursor points */
danielk197739281b42008-10-17 19:13:04 +000062};
63
drh27c3bd72008-10-28 18:12:36 +000064/*
dan2491de22016-02-27 20:14:55 +000065** This structure is a subclass of sqlite3_file. Each open memory-journal
drh27c3bd72008-10-28 18:12:36 +000066** is an instance of this class.
67*/
danielk197739281b42008-10-17 19:13:04 +000068struct MemJournal {
dan2491de22016-02-27 20:14:55 +000069 const sqlite3_io_methods *pMethod; /* Parent class. MUST BE FIRST */
70 int nChunkSize; /* In-memory chunk-size */
71
drhc2f18ad2016-03-05 15:35:09 +000072 int nSpill; /* Bytes of data before flushing */
dan2491de22016-02-27 20:14:55 +000073 int nSize; /* Bytes of data currently in memory */
danielk197739281b42008-10-17 19:13:04 +000074 FileChunk *pFirst; /* Head of in-memory chunk-list */
75 FilePoint endpoint; /* Pointer to the end of the file */
76 FilePoint readpoint; /* Pointer to the end of the last xRead() */
dan2491de22016-02-27 20:14:55 +000077
78 int flags; /* xOpen flags */
79 sqlite3_vfs *pVfs; /* The "real" underlying VFS */
80 const char *zJournal; /* Name of the journal file */
danielk197739281b42008-10-17 19:13:04 +000081};
82
83/*
drh2206a2b2009-04-01 23:09:43 +000084** Read data from the in-memory journal file. This is the implementation
85** of the sqlite3_vfs.xRead method.
danielk197739281b42008-10-17 19:13:04 +000086*/
87static int memjrnlRead(
88 sqlite3_file *pJfd, /* The journal file from which to read */
89 void *zBuf, /* Put the results here */
90 int iAmt, /* Number of bytes to read */
91 sqlite_int64 iOfst /* Begin reading at this offset */
92){
93 MemJournal *p = (MemJournal *)pJfd;
drhd93b2b82016-03-09 04:17:17 +000094 u8 *zOut = zBuf;
95 int nRead = iAmt;
96 int iChunkOffset;
97 FileChunk *pChunk;
98
dan7ed40202016-03-08 17:44:08 +000099 if( (iAmt+iOfst)>p->endpoint.iOffset ){
dan2491de22016-02-27 20:14:55 +0000100 return SQLITE_IOERR_SHORT_READ;
dan2491de22016-02-27 20:14:55 +0000101 }
drh38b3dde2016-04-07 18:42:23 +0000102 assert( p->readpoint.iOffset==0 || p->readpoint.pChunk!=0 );
drhd93b2b82016-03-09 04:17:17 +0000103 if( p->readpoint.iOffset!=iOfst || iOfst==0 ){
104 sqlite3_int64 iOff = 0;
105 for(pChunk=p->pFirst;
106 ALWAYS(pChunk) && (iOff+p->nChunkSize)<=iOfst;
107 pChunk=pChunk->pNext
108 ){
109 iOff += p->nChunkSize;
110 }
111 }else{
112 pChunk = p->readpoint.pChunk;
drh38b3dde2016-04-07 18:42:23 +0000113 assert( pChunk!=0 );
drhd93b2b82016-03-09 04:17:17 +0000114 }
115
116 iChunkOffset = (int)(iOfst%p->nChunkSize);
117 do {
118 int iSpace = p->nChunkSize - iChunkOffset;
119 int nCopy = MIN(nRead, (p->nChunkSize - iChunkOffset));
120 memcpy(zOut, (u8*)pChunk->zChunk + iChunkOffset, nCopy);
121 zOut += nCopy;
122 nRead -= iSpace;
123 iChunkOffset = 0;
124 } while( nRead>=0 && (pChunk=pChunk->pNext)!=0 && nRead>0 );
drh38b3dde2016-04-07 18:42:23 +0000125 p->readpoint.iOffset = pChunk ? iOfst+iAmt : 0;
drhd93b2b82016-03-09 04:17:17 +0000126 p->readpoint.pChunk = pChunk;
danielk197739281b42008-10-17 19:13:04 +0000127
128 return SQLITE_OK;
129}
130
131/*
dan2491de22016-02-27 20:14:55 +0000132** Free the list of FileChunk structures headed at MemJournal.pFirst.
133*/
134static void memjrnlFreeChunks(MemJournal *p){
135 FileChunk *pIter;
136 FileChunk *pNext;
137 for(pIter=p->pFirst; pIter; pIter=pNext){
138 pNext = pIter->pNext;
139 sqlite3_free(pIter);
140 }
141 p->pFirst = 0;
142}
143
144/*
145** Flush the contents of memory to a real file on disk.
146*/
drhc2f18ad2016-03-05 15:35:09 +0000147static int memjrnlCreateFile(MemJournal *p){
dan7ed40202016-03-08 17:44:08 +0000148 int rc;
149 sqlite3_file *pReal = (sqlite3_file*)p;
150 MemJournal copy = *p;
151
152 memset(p, 0, sizeof(MemJournal));
153 rc = sqlite3OsOpen(copy.pVfs, copy.zJournal, pReal, copy.flags, 0);
154 if( rc==SQLITE_OK ){
155 int nChunk = copy.nChunkSize;
156 i64 iOff = 0;
157 FileChunk *pIter;
drh769b4c92016-03-09 03:44:32 +0000158 for(pIter=copy.pFirst; pIter; pIter=pIter->pNext){
drhd93b2b82016-03-09 04:17:17 +0000159 if( iOff + nChunk > copy.endpoint.iOffset ){
160 nChunk = copy.endpoint.iOffset - iOff;
dan2491de22016-02-27 20:14:55 +0000161 }
drhd93b2b82016-03-09 04:17:17 +0000162 rc = sqlite3OsWrite(pReal, (u8*)pIter->zChunk, nChunk, iOff);
drh769b4c92016-03-09 03:44:32 +0000163 if( rc ) break;
drhd93b2b82016-03-09 04:17:17 +0000164 iOff += nChunk;
dan2491de22016-02-27 20:14:55 +0000165 }
dan7ed40202016-03-08 17:44:08 +0000166 if( rc==SQLITE_OK ){
167 /* No error has occurred. Free the in-memory buffers. */
168 memjrnlFreeChunks(&copy);
169 }
170 }
171 if( rc!=SQLITE_OK ){
172 /* If an error occurred while creating or writing to the file, restore
173 ** the original before returning. This way, SQLite uses the in-memory
174 ** journal data to roll back changes made to the internal page-cache
175 ** before this function was called. */
176 sqlite3OsClose(pReal);
177 *p = copy;
dan2491de22016-02-27 20:14:55 +0000178 }
179 return rc;
180}
181
182
183/*
danielk197739281b42008-10-17 19:13:04 +0000184** Write data to the file.
185*/
186static int memjrnlWrite(
187 sqlite3_file *pJfd, /* The journal file into which to write */
188 const void *zBuf, /* Take data to be written from here */
189 int iAmt, /* Number of bytes to write */
190 sqlite_int64 iOfst /* Begin writing at this offset into the file */
191){
192 MemJournal *p = (MemJournal *)pJfd;
193 int nWrite = iAmt;
194 u8 *zWrite = (u8 *)zBuf;
195
dan7ed40202016-03-08 17:44:08 +0000196 /* If the file should be created now, create it and write the new data
197 ** into the file on disk. */
198 if( p->nSpill>0 && (iAmt+iOfst)>p->nSpill ){
drhc2f18ad2016-03-05 15:35:09 +0000199 int rc = memjrnlCreateFile(p);
dan2491de22016-02-27 20:14:55 +0000200 if( rc==SQLITE_OK ){
dan7ed40202016-03-08 17:44:08 +0000201 rc = sqlite3OsWrite(pJfd, zBuf, iAmt, iOfst);
danielk197739281b42008-10-17 19:13:04 +0000202 }
dan2491de22016-02-27 20:14:55 +0000203 return rc;
204 }
danielk197739281b42008-10-17 19:13:04 +0000205
dan2491de22016-02-27 20:14:55 +0000206 /* If the contents of this write should be stored in memory */
207 else{
208 /* An in-memory journal file should only ever be appended to. Random
209 ** access writes are not required. The only exception to this is when
210 ** the in-memory journal is being used by a connection using the
211 ** atomic-write optimization. In this case the first 28 bytes of the
212 ** journal file may be written as part of committing the transaction. */
213 assert( iOfst==p->endpoint.iOffset || iOfst==0 );
drh94e32ac2017-07-20 21:01:53 +0000214#if defined(SQLITE_ENABLE_ATOMIC_WRITE) \
dand67a9772017-07-20 21:00:03 +0000215 || defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
dan2491de22016-02-27 20:14:55 +0000216 if( iOfst==0 && p->pFirst ){
217 assert( p->nChunkSize>iAmt );
drh65a7e762016-03-05 15:03:31 +0000218 memcpy((u8*)p->pFirst->zChunk, zBuf, iAmt);
drh273021d2016-03-09 02:03:03 +0000219 }else
220#else
221 assert( iOfst>0 || p->pFirst==0 );
222#endif
223 {
dan2491de22016-02-27 20:14:55 +0000224 while( nWrite>0 ){
225 FileChunk *pChunk = p->endpoint.pChunk;
226 int iChunkOffset = (int)(p->endpoint.iOffset%p->nChunkSize);
227 int iSpace = MIN(nWrite, p->nChunkSize - iChunkOffset);
228
229 if( iChunkOffset==0 ){
230 /* New chunk is required to extend the file. */
231 FileChunk *pNew = sqlite3_malloc(fileChunkSize(p->nChunkSize));
232 if( !pNew ){
233 return SQLITE_IOERR_NOMEM_BKPT;
234 }
235 pNew->pNext = 0;
236 if( pChunk ){
237 assert( p->pFirst );
238 pChunk->pNext = pNew;
239 }else{
240 assert( !p->pFirst );
241 p->pFirst = pNew;
242 }
243 p->endpoint.pChunk = pNew;
244 }
245
drh65a7e762016-03-05 15:03:31 +0000246 memcpy((u8*)p->endpoint.pChunk->zChunk + iChunkOffset, zWrite, iSpace);
dan2491de22016-02-27 20:14:55 +0000247 zWrite += iSpace;
248 nWrite -= iSpace;
249 p->endpoint.iOffset += iSpace;
250 }
251 p->nSize = iAmt + iOfst;
252 }
danielk197739281b42008-10-17 19:13:04 +0000253 }
254
255 return SQLITE_OK;
256}
257
258/*
259** Truncate the file.
dan5f37ed52016-02-29 20:00:13 +0000260**
261** If the journal file is already on disk, truncate it there. Or, if it
262** is still in main memory but is being truncated to zero bytes in size,
263** ignore
danielk197739281b42008-10-17 19:13:04 +0000264*/
265static int memjrnlTruncate(sqlite3_file *pJfd, sqlite_int64 size){
266 MemJournal *p = (MemJournal *)pJfd;
drh273021d2016-03-09 02:03:03 +0000267 if( ALWAYS(size==0) ){
dan2491de22016-02-27 20:14:55 +0000268 memjrnlFreeChunks(p);
269 p->nSize = 0;
270 p->endpoint.pChunk = 0;
271 p->endpoint.iOffset = 0;
272 p->readpoint.pChunk = 0;
273 p->readpoint.iOffset = 0;
danielk197739281b42008-10-17 19:13:04 +0000274 }
danielk197739281b42008-10-17 19:13:04 +0000275 return SQLITE_OK;
276}
277
278/*
279** Close the file.
280*/
281static int memjrnlClose(sqlite3_file *pJfd){
dan2491de22016-02-27 20:14:55 +0000282 MemJournal *p = (MemJournal *)pJfd;
283 memjrnlFreeChunks(p);
danielk197739281b42008-10-17 19:13:04 +0000284 return SQLITE_OK;
285}
286
danielk197739281b42008-10-17 19:13:04 +0000287/*
288** Sync the file.
drh2206a2b2009-04-01 23:09:43 +0000289**
dan2491de22016-02-27 20:14:55 +0000290** If the real file has been created, call its xSync method. Otherwise,
291** syncing an in-memory journal is a no-op.
danielk197739281b42008-10-17 19:13:04 +0000292*/
dan2491de22016-02-27 20:14:55 +0000293static int memjrnlSync(sqlite3_file *pJfd, int flags){
dan7ed40202016-03-08 17:44:08 +0000294 UNUSED_PARAMETER2(pJfd, flags);
drh09c0f6d2010-04-12 19:44:22 +0000295 return SQLITE_OK;
296}
danielk197739281b42008-10-17 19:13:04 +0000297
298/*
299** Query the size of the file in bytes.
300*/
301static int memjrnlFileSize(sqlite3_file *pJfd, sqlite_int64 *pSize){
302 MemJournal *p = (MemJournal *)pJfd;
303 *pSize = (sqlite_int64) p->endpoint.iOffset;
304 return SQLITE_OK;
305}
306
307/*
308** Table of methods for MemJournal sqlite3_file object.
309*/
drhf83dc1e2010-06-03 12:09:52 +0000310static const struct sqlite3_io_methods MemJournalMethods = {
danielk197739281b42008-10-17 19:13:04 +0000311 1, /* iVersion */
312 memjrnlClose, /* xClose */
313 memjrnlRead, /* xRead */
314 memjrnlWrite, /* xWrite */
315 memjrnlTruncate, /* xTruncate */
316 memjrnlSync, /* xSync */
317 memjrnlFileSize, /* xFileSize */
318 0, /* xLock */
319 0, /* xUnlock */
320 0, /* xCheckReservedLock */
321 0, /* xFileControl */
322 0, /* xSectorSize */
drhff828942010-06-26 21:34:06 +0000323 0, /* xDeviceCharacteristics */
drhff828942010-06-26 21:34:06 +0000324 0, /* xShmMap */
drh6e1f4822010-07-13 23:41:40 +0000325 0, /* xShmLock */
drhff828942010-06-26 21:34:06 +0000326 0, /* xShmBarrier */
drhda8caa02013-04-22 23:38:50 +0000327 0, /* xShmUnmap */
328 0, /* xFetch */
329 0 /* xUnfetch */
danielk197739281b42008-10-17 19:13:04 +0000330};
331
332/*
dan2491de22016-02-27 20:14:55 +0000333** Open a journal file.
334**
335** The behaviour of the journal file depends on the value of parameter
drhc2f18ad2016-03-05 15:35:09 +0000336** nSpill. If nSpill is 0, then the journal file is always create and
337** accessed using the underlying VFS. If nSpill is less than zero, then
338** all content is always stored in main-memory. Finally, if nSpill is a
dan2491de22016-02-27 20:14:55 +0000339** positive value, then the journal file is initially created in-memory
340** but may be flushed to disk later on. In this case the journal file is
drhc2f18ad2016-03-05 15:35:09 +0000341** flushed to disk either when it grows larger than nSpill bytes in size,
dan2491de22016-02-27 20:14:55 +0000342** or when sqlite3JournalCreate() is called.
danielk197739281b42008-10-17 19:13:04 +0000343*/
dan2491de22016-02-27 20:14:55 +0000344int sqlite3JournalOpen(
345 sqlite3_vfs *pVfs, /* The VFS to use for actual file I/O */
346 const char *zName, /* Name of the journal file */
347 sqlite3_file *pJfd, /* Preallocated, blank file handle */
348 int flags, /* Opening flags */
drhc2f18ad2016-03-05 15:35:09 +0000349 int nSpill /* Bytes buffered before opening the file */
dan2491de22016-02-27 20:14:55 +0000350){
351 MemJournal *p = (MemJournal*)pJfd;
352
drhc2f18ad2016-03-05 15:35:09 +0000353 /* Zero the file-handle object. If nSpill was passed zero, initialize
dan2491de22016-02-27 20:14:55 +0000354 ** it using the sqlite3OsOpen() function of the underlying VFS. In this
355 ** case none of the code in this module is executed as a result of calls
356 ** made on the journal file-handle. */
dan7ed40202016-03-08 17:44:08 +0000357 memset(p, 0, sizeof(MemJournal));
drhc2f18ad2016-03-05 15:35:09 +0000358 if( nSpill==0 ){
dan2491de22016-02-27 20:14:55 +0000359 return sqlite3OsOpen(pVfs, zName, pJfd, flags, 0);
360 }
361
drhc2f18ad2016-03-05 15:35:09 +0000362 if( nSpill>0 ){
363 p->nChunkSize = nSpill;
dan2491de22016-02-27 20:14:55 +0000364 }else{
365 p->nChunkSize = 8 + MEMJOURNAL_DFLT_FILECHUNKSIZE - sizeof(FileChunk);
366 assert( MEMJOURNAL_DFLT_FILECHUNKSIZE==fileChunkSize(p->nChunkSize) );
367 }
368
369 p->pMethod = (const sqlite3_io_methods*)&MemJournalMethods;
drhc2f18ad2016-03-05 15:35:09 +0000370 p->nSpill = nSpill;
dan2491de22016-02-27 20:14:55 +0000371 p->flags = flags;
372 p->zJournal = zName;
373 p->pVfs = pVfs;
374 return SQLITE_OK;
danielk197739281b42008-10-17 19:13:04 +0000375}
376
377/*
dan2491de22016-02-27 20:14:55 +0000378** Open an in-memory journal file.
379*/
380void sqlite3MemJournalOpen(sqlite3_file *pJfd){
381 sqlite3JournalOpen(0, 0, pJfd, 0, -1);
382}
383
dand67a9772017-07-20 21:00:03 +0000384#if defined(SQLITE_ENABLE_ATOMIC_WRITE) \
385 || defined(SQLITE_ENABLE_BATCH_ATOMIC_WRITE)
dan2491de22016-02-27 20:14:55 +0000386/*
dan2491de22016-02-27 20:14:55 +0000387** If the argument p points to a MemJournal structure that is not an
dan5f37ed52016-02-29 20:00:13 +0000388** in-memory-only journal file (i.e. is one that was opened with a +ve
danefe16972017-07-20 19:49:14 +0000389** nSpill parameter or as SQLITE_OPEN_MAIN_JOURNAL), and the underlying
390** file has not yet been created, create it now.
dan2491de22016-02-27 20:14:55 +0000391*/
danefe16972017-07-20 19:49:14 +0000392int sqlite3JournalCreate(sqlite3_file *pJfd){
dan2491de22016-02-27 20:14:55 +0000393 int rc = SQLITE_OK;
danefe16972017-07-20 19:49:14 +0000394 MemJournal *p = (MemJournal*)pJfd;
drh9e611042017-07-28 18:16:14 +0000395 if( p->pMethod==&MemJournalMethods && (
396#ifdef SQLITE_ENABLE_ATOMIC_WRITE
397 p->nSpill>0
398#else
399 /* While this appears to not be possible without ATOMIC_WRITE, the
400 ** paths are complex, so it seems prudent to leave the test in as
401 ** a NEVER(), in case our analysis is subtly flawed. */
402 NEVER(p->nSpill>0)
403#endif
dand67a9772017-07-20 21:00:03 +0000404#ifdef SQLITE_ENABLE_BATCH_ATOMIC_WRITE
405 || (p->flags & SQLITE_OPEN_MAIN_JOURNAL)
406#endif
407 )){
danefe16972017-07-20 19:49:14 +0000408 rc = memjrnlCreateFile(p);
dan2491de22016-02-27 20:14:55 +0000409 }
410 return rc;
411}
drhff6b8262016-03-04 00:13:29 +0000412#endif
dan2491de22016-02-27 20:14:55 +0000413
414/*
dan5f37ed52016-02-29 20:00:13 +0000415** The file-handle passed as the only argument is open on a journal file.
416** Return true if this "journal file" is currently stored in heap memory,
dan2491de22016-02-27 20:14:55 +0000417** or false otherwise.
418*/
419int sqlite3JournalIsInMemory(sqlite3_file *p){
dan7ed40202016-03-08 17:44:08 +0000420 return p->pMethods==&MemJournalMethods;
danielk197739281b42008-10-17 19:13:04 +0000421}
422
423/*
dan2491de22016-02-27 20:14:55 +0000424** Return the number of bytes required to store a JournalFile that uses vfs
425** pVfs to create the underlying on-disk files.
danielk197739281b42008-10-17 19:13:04 +0000426*/
dan2491de22016-02-27 20:14:55 +0000427int sqlite3JournalSize(sqlite3_vfs *pVfs){
drh13969f52016-03-21 22:28:51 +0000428 return MAX(pVfs->szOsFile, (int)sizeof(MemJournal));
danielk197739281b42008-10-17 19:13:04 +0000429}