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drhed7c8552001-04-11 14:29:21 +00001/*
drhb19a2bc2001-09-16 00:13:26 +00002** 2001 September 15
drhed7c8552001-04-11 14:29:21 +00003**
drhb19a2bc2001-09-16 00:13:26 +00004** The author disclaims copyright to this source code. In place of
5** a legal notice, here is a blessing:
drhed7c8552001-04-11 14:29:21 +00006**
drhb19a2bc2001-09-16 00:13:26 +00007** 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.
drhed7c8552001-04-11 14:29:21 +000010**
11*************************************************************************
drhb19a2bc2001-09-16 00:13:26 +000012** This is the implementation of the page cache subsystem or "pager".
drhed7c8552001-04-11 14:29:21 +000013**
drhb19a2bc2001-09-16 00:13:26 +000014** The pager is used to access a database disk file. It implements
15** atomic commit and rollback through the use of a journal file that
16** is separate from the database file. The pager also implements file
17** locking to prevent two processes from writing the same database
18** file simultaneously, or one process from reading the database while
19** another is writing.
drhed7c8552001-04-11 14:29:21 +000020**
drh5e1fa032009-07-25 15:24:13 +000021** @(#) $Id: pager.c,v 1.623 2009/07/25 15:24:14 drh Exp $
drhed7c8552001-04-11 14:29:21 +000022*/
drh2e66f0b2005-04-28 17:18:48 +000023#ifndef SQLITE_OMIT_DISKIO
drhd9b02572001-04-15 00:37:09 +000024#include "sqliteInt.h"
drhed7c8552001-04-11 14:29:21 +000025
26/*
drhdb48ee02003-01-16 13:42:43 +000027** Macros for troubleshooting. Normally turned off
28*/
danielk1977466be562004-06-10 02:16:01 +000029#if 0
danielk1977f2c31ad2009-01-06 13:40:08 +000030int sqlite3PagerTrace=1; /* True to enable tracing */
drhd3627af2006-12-18 18:34:51 +000031#define sqlite3DebugPrintf printf
drh30d53702009-01-06 15:58:57 +000032#define PAGERTRACE(X) if( sqlite3PagerTrace ){ sqlite3DebugPrintf X; }
drhdb48ee02003-01-16 13:42:43 +000033#else
drh30d53702009-01-06 15:58:57 +000034#define PAGERTRACE(X)
drhdb48ee02003-01-16 13:42:43 +000035#endif
36
danielk1977599fcba2004-11-08 07:13:13 +000037/*
drh30d53702009-01-06 15:58:57 +000038** The following two macros are used within the PAGERTRACE() macros above
drhd86959f2005-11-26 03:51:18 +000039** to print out file-descriptors.
danielk1977599fcba2004-11-08 07:13:13 +000040**
drh85b623f2007-12-13 21:54:09 +000041** PAGERID() takes a pointer to a Pager struct as its argument. The
danielk197762079062007-08-15 17:08:46 +000042** associated file-descriptor is returned. FILEHANDLEID() takes an sqlite3_file
drh85b623f2007-12-13 21:54:09 +000043** struct as its argument.
danielk1977599fcba2004-11-08 07:13:13 +000044*/
drhc001c582006-03-06 18:23:16 +000045#define PAGERID(p) ((int)(p->fd))
46#define FILEHANDLEID(fd) ((int)fd)
drhdb48ee02003-01-16 13:42:43 +000047
48/*
drhed7c8552001-04-11 14:29:21 +000049** The page cache as a whole is always in one of the following
50** states:
51**
drha6abd042004-06-09 17:37:22 +000052** PAGER_UNLOCK The page cache is not currently reading or
drhed7c8552001-04-11 14:29:21 +000053** writing the database file. There is no
54** data held in memory. This is the initial
55** state.
56**
drha6abd042004-06-09 17:37:22 +000057** PAGER_SHARED The page cache is reading the database.
drhed7c8552001-04-11 14:29:21 +000058** Writing is not permitted. There can be
59** multiple readers accessing the same database
drh69688d52001-04-14 16:38:23 +000060** file at the same time.
drhed7c8552001-04-11 14:29:21 +000061**
drh726de592004-06-10 23:35:50 +000062** PAGER_RESERVED This process has reserved the database for writing
63** but has not yet made any changes. Only one process
64** at a time can reserve the database. The original
65** database file has not been modified so other
66** processes may still be reading the on-disk
drha6abd042004-06-09 17:37:22 +000067** database file.
68**
69** PAGER_EXCLUSIVE The page cache is writing the database.
drhed7c8552001-04-11 14:29:21 +000070** Access is exclusive. No other processes or
71** threads can be reading or writing while one
72** process is writing.
73**
danielk1977aa5ccdf2004-06-14 05:10:42 +000074** PAGER_SYNCED The pager moves to this state from PAGER_EXCLUSIVE
75** after all dirty pages have been written to the
76** database file and the file has been synced to
drh369339d2007-03-30 16:01:55 +000077** disk. All that remains to do is to remove or
78** truncate the journal file and the transaction
79** will be committed.
danielk1977aa5ccdf2004-06-14 05:10:42 +000080**
drha6abd042004-06-09 17:37:22 +000081** The page cache comes up in PAGER_UNLOCK. The first time a
danielk19773b8a05f2007-03-19 17:44:26 +000082** sqlite3PagerGet() occurs, the state transitions to PAGER_SHARED.
drhed7c8552001-04-11 14:29:21 +000083** After all pages have been released using sqlite_page_unref(),
drha6abd042004-06-09 17:37:22 +000084** the state transitions back to PAGER_UNLOCK. The first time
danielk19773b8a05f2007-03-19 17:44:26 +000085** that sqlite3PagerWrite() is called, the state transitions to
drh369339d2007-03-30 16:01:55 +000086** PAGER_RESERVED. (Note that sqlite3PagerWrite() can only be
drh306dc212001-05-21 13:45:10 +000087** called on an outstanding page which means that the pager must
drha6abd042004-06-09 17:37:22 +000088** be in PAGER_SHARED before it transitions to PAGER_RESERVED.)
drh369339d2007-03-30 16:01:55 +000089** PAGER_RESERVED means that there is an open rollback journal.
90** The transition to PAGER_EXCLUSIVE occurs before any changes
91** are made to the database file, though writes to the rollback
92** journal occurs with just PAGER_RESERVED. After an sqlite3PagerRollback()
93** or sqlite3PagerCommitPhaseTwo(), the state can go back to PAGER_SHARED,
94** or it can stay at PAGER_EXCLUSIVE if we are in exclusive access mode.
drhed7c8552001-04-11 14:29:21 +000095*/
drha6abd042004-06-09 17:37:22 +000096#define PAGER_UNLOCK 0
drh684917c2004-10-05 02:41:42 +000097#define PAGER_SHARED 1 /* same as SHARED_LOCK */
98#define PAGER_RESERVED 2 /* same as RESERVED_LOCK */
99#define PAGER_EXCLUSIVE 4 /* same as EXCLUSIVE_LOCK */
100#define PAGER_SYNCED 5
drhed7c8552001-04-11 14:29:21 +0000101
drh684917c2004-10-05 02:41:42 +0000102/*
drh9eb9e262004-02-11 02:18:05 +0000103** A macro used for invoking the codec if there is one
104*/
105#ifdef SQLITE_HAS_CODEC
drh85d2bd22009-06-11 00:47:20 +0000106# define CODEC1(P,D,N,X,E) \
drhfa9601a2009-06-18 17:22:39 +0000107 if( P->xCodec && P->xCodec(P->pCodec,D,N,X)==0 ){ E; }
drh85d2bd22009-06-11 00:47:20 +0000108# define CODEC2(P,D,N,X,E,O) \
109 if( P->xCodec==0 ){ O=(char*)D; }else \
drhfa9601a2009-06-18 17:22:39 +0000110 if( (O=(char*)(P->xCodec(P->pCodec,D,N,X)))==0 ){ E; }
drh9eb9e262004-02-11 02:18:05 +0000111#else
drh85d2bd22009-06-11 00:47:20 +0000112# define CODEC1(P,D,N,X,E) /* NO-OP */
113# define CODEC2(P,D,N,X,E,O) O=(char*)D
drh9eb9e262004-02-11 02:18:05 +0000114#endif
115
drhed7c8552001-04-11 14:29:21 +0000116/*
danielk19777cbd5892009-01-10 16:15:09 +0000117** The maximum allowed sector size. 16MB. If the xSectorsize() method
118** returns a value larger than this, then MAX_SECTOR_SIZE is used instead.
119** This could conceivably cause corruption following a power failure on
120** such a system. This is currently an undocumented limit.
121*/
122#define MAX_SECTOR_SIZE 0x0100000
123
124/*
danielk1977fd7f0452008-12-17 17:30:26 +0000125** An instance of the following structure is allocated for each active
126** savepoint and statement transaction in the system. All such structures
127** are stored in the Pager.aSavepoint[] array, which is allocated and
128** resized using sqlite3Realloc().
129**
130** When a savepoint is created, the PagerSavepoint.iHdrOffset field is
131** set to 0. If a journal-header is written into the main journal while
132** the savepoint is active, then iHdrOffset is set to the byte offset
133** immediately following the last journal record written into the main
134** journal before the journal-header. This is required during savepoint
135** rollback (see pagerPlaybackSavepoint()).
136*/
137typedef struct PagerSavepoint PagerSavepoint;
138struct PagerSavepoint {
139 i64 iOffset; /* Starting offset in main journal */
140 i64 iHdrOffset; /* See above */
141 Bitvec *pInSavepoint; /* Set of pages in this savepoint */
142 Pgno nOrig; /* Original number of pages in file */
143 Pgno iSubRec; /* Index of first record in sub-journal */
144};
145
146/*
drhed7c8552001-04-11 14:29:21 +0000147** A open page cache is an instance of the following structure.
danielk1977efaaf572006-01-16 11:29:19 +0000148**
danielk1977bea2a942009-01-20 17:06:27 +0000149** errCode
danielk19773460d192008-12-27 15:23:13 +0000150**
danielk1977bea2a942009-01-20 17:06:27 +0000151** Pager.errCode may be set to SQLITE_IOERR, SQLITE_CORRUPT, or
152** or SQLITE_FULL. Once one of the first three errors occurs, it persists
153** and is returned as the result of every major pager API call. The
154** SQLITE_FULL return code is slightly different. It persists only until the
155** next successful rollback is performed on the pager cache. Also,
156** SQLITE_FULL does not affect the sqlite3PagerGet() and sqlite3PagerLookup()
157** APIs, they may still be used successfully.
158**
159** dbSizeValid, dbSize, dbOrigSize, dbFileSize
160**
161** Managing the size of the database file in pages is a little complicated.
162** The variable Pager.dbSize contains the number of pages that the database
163** image currently contains. As the database image grows or shrinks this
164** variable is updated. The variable Pager.dbFileSize contains the number
165** of pages in the database file. This may be different from Pager.dbSize
166** if some pages have been appended to the database image but not yet written
167** out from the cache to the actual file on disk. Or if the image has been
168** truncated by an incremental-vacuum operation. The Pager.dbOrigSize variable
169** contains the number of pages in the database image when the current
170** transaction was opened. The contents of all three of these variables is
171** only guaranteed to be correct if the boolean Pager.dbSizeValid is true.
172**
173** TODO: Under what conditions is dbSizeValid set? Cleared?
174**
175** changeCountDone
176**
177** This boolean variable is used to make sure that the change-counter
178** (the 4-byte header field at byte offset 24 of the database file) is
179** not updated more often than necessary.
180**
181** It is set to true when the change-counter field is updated, which
182** can only happen if an exclusive lock is held on the database file.
183** It is cleared (set to false) whenever an exclusive lock is
184** relinquished on the database file. Each time a transaction is committed,
185** The changeCountDone flag is inspected. If it is true, the work of
186** updating the change-counter is omitted for the current transaction.
187**
188** This mechanism means that when running in exclusive mode, a connection
189** need only update the change-counter once, for the first transaction
190** committed.
191**
192** dbModified
193**
194** The dbModified flag is set whenever a database page is dirtied.
195** It is cleared at the end of each transaction.
196**
197** It is used when committing or otherwise ending a transaction. If
198** the dbModified flag is clear then less work has to be done.
199**
200** journalStarted
201**
202** This flag is set whenever the the main journal is synced.
203**
204** The point of this flag is that it must be set after the
205** first journal header in a journal file has been synced to disk.
206** After this has happened, new pages appended to the database
207** do not need the PGHDR_NEED_SYNC flag set, as they do not need
208** to wait for a journal sync before they can be written out to
209** the database file (see function pager_write()).
210**
211** setMaster
212**
213** This variable is used to ensure that the master journal file name
214** (if any) is only written into the journal file once.
215**
216** When committing a transaction, the master journal file name (if any)
217** may be written into the journal file while the pager is still in
218** PAGER_RESERVED state (see CommitPhaseOne() for the action). It
219** then attempts to upgrade to an exclusive lock. If this attempt
220** fails, then SQLITE_BUSY may be returned to the user and the user
221** may attempt to commit the transaction again later (calling
222** CommitPhaseOne() again). This flag is used to ensure that the
223** master journal name is only written to the journal file the first
224** time CommitPhaseOne() is called.
225**
226** doNotSync
227**
228** This variable is set and cleared by sqlite3PagerWrite().
229**
230** needSync
231**
232** TODO: It might be easier to set this variable in writeJournalHdr()
233** and writeMasterJournal() only. Change its meaning to "unsynced data
234** has been written to the journal".
danielk1977d8293352009-04-30 09:10:37 +0000235**
236** subjInMemory
237**
238** This is a boolean variable. If true, then any required sub-journal
239** is opened as an in-memory journal file. If false, then in-memory
240** sub-journals are only used for in-memory pager files.
drhed7c8552001-04-11 14:29:21 +0000241*/
242struct Pager {
danielk1977b4b47412007-08-17 15:53:36 +0000243 sqlite3_vfs *pVfs; /* OS functions to use for IO */
danielk1977bea2a942009-01-20 17:06:27 +0000244 u8 exclusiveMode; /* Boolean. True if locking_mode==EXCLUSIVE */
245 u8 journalMode; /* On of the PAGER_JOURNALMODE_* values */
drh34e79ce2004-02-08 06:05:46 +0000246 u8 useJournal; /* Use a rollback journal on this file */
drh7bec5052005-02-06 02:45:41 +0000247 u8 noReadlock; /* Do not bother to obtain readlocks */
drh603240c2002-03-05 01:11:12 +0000248 u8 noSync; /* Do not sync the journal if true */
drh968af522003-02-11 14:55:40 +0000249 u8 fullSync; /* Do extra syncs of the journal for robustness */
danielk1977f036aef2007-08-20 05:36:51 +0000250 u8 sync_flags; /* One of SYNC_NORMAL or SYNC_FULL */
drh603240c2002-03-05 01:11:12 +0000251 u8 tempFile; /* zFilename is a temporary file */
252 u8 readOnly; /* True for a read-only database */
danielk197745d68822009-01-16 16:23:38 +0000253 u8 memDb; /* True to inhibit all file I/O */
danielk1977bea2a942009-01-20 17:06:27 +0000254
255 /* The following block contains those class members that are dynamically
256 ** modified during normal operations. The other variables in this structure
257 ** are either constant throughout the lifetime of the pager, or else
258 ** used to store configuration parameters that affect the way the pager
259 ** operates.
260 **
261 ** The 'state' variable is described in more detail along with the
262 ** descriptions of the values it may take - PAGER_UNLOCK etc. Many of the
263 ** other variables in this block are described in the comment directly
264 ** above this class definition.
265 */
266 u8 state; /* PAGER_UNLOCK, _SHARED, _RESERVED, etc. */
267 u8 dbModified; /* True if there are any changes to the Db */
268 u8 needSync; /* True if an fsync() is needed on the journal */
269 u8 journalStarted; /* True if header of journal is synced */
270 u8 changeCountDone; /* Set after incrementing the change-counter */
drh6d156e42005-05-20 20:11:20 +0000271 u8 setMaster; /* True if a m-j name has been written to jrnl */
drh80e35f42007-03-30 14:06:34 +0000272 u8 doNotSync; /* Boolean. While true, do not spill the cache */
danielk1977d92db532008-11-17 04:56:24 +0000273 u8 dbSizeValid; /* Set when dbSize is correct */
danielk1977d8293352009-04-30 09:10:37 +0000274 u8 subjInMemory; /* True to use in-memory sub-journals */
danielk19773460d192008-12-27 15:23:13 +0000275 Pgno dbSize; /* Number of pages in the database */
276 Pgno dbOrigSize; /* dbSize before the current transaction */
277 Pgno dbFileSize; /* Number of pages in the database file */
danielk197745d68822009-01-16 16:23:38 +0000278 int errCode; /* One of several kinds of errors */
danielk1977bea2a942009-01-20 17:06:27 +0000279 int nRec; /* Pages journalled since last j-header written */
danielk197745d68822009-01-16 16:23:38 +0000280 u32 cksumInit; /* Quasi-random value added to every checksum */
danielk1977bea2a942009-01-20 17:06:27 +0000281 u32 nSubRec; /* Number of records written to sub-journal */
danielk197745d68822009-01-16 16:23:38 +0000282 Bitvec *pInJournal; /* One bit for each page in the database file */
danielk1977bea2a942009-01-20 17:06:27 +0000283 sqlite3_file *fd; /* File descriptor for database */
284 sqlite3_file *jfd; /* File descriptor for main journal */
285 sqlite3_file *sjfd; /* File descriptor for sub-journal */
286 i64 journalOff; /* Current write offset in the journal file */
287 i64 journalHdr; /* Byte offset to previous journal header */
288 PagerSavepoint *aSavepoint; /* Array of active savepoints */
289 int nSavepoint; /* Number of elements in aSavepoint[] */
290 char dbFileVers[16]; /* Changes whenever database file changes */
291 u32 sectorSize; /* Assumed sector size during rollback */
292
drhfa9601a2009-06-18 17:22:39 +0000293 u16 nExtra; /* Add this many bytes to each in-memory page */
294 i16 nReserve; /* Number of unused bytes at end of each page */
danielk1977bea2a942009-01-20 17:06:27 +0000295 u32 vfsFlags; /* Flags for sqlite3_vfs.xOpen() */
296 int pageSize; /* Number of bytes in a page */
297 Pgno mxPgno; /* Maximum allowed size of the database */
drhfcd35c72005-05-21 02:48:08 +0000298 char *zFilename; /* Name of the database file */
299 char *zJournal; /* Name of the journal file */
danielk19771ceedd32008-11-19 10:22:33 +0000300 int (*xBusyHandler)(void*); /* Function to call when busy */
301 void *pBusyHandlerArg; /* Context argument for xBusyHandler */
drhfcd35c72005-05-21 02:48:08 +0000302#ifdef SQLITE_TEST
drh7c4ac0c2007-04-05 11:25:58 +0000303 int nHit, nMiss; /* Cache hits and missing */
304 int nRead, nWrite; /* Database pages read/written */
drhfcd35c72005-05-21 02:48:08 +0000305#endif
danielk1977eaa06f62008-09-18 17:34:44 +0000306 void (*xReiniter)(DbPage*); /* Call this routine when reloading pages */
drh7c4ac0c2007-04-05 11:25:58 +0000307#ifdef SQLITE_HAS_CODEC
drhc001c582006-03-06 18:23:16 +0000308 void *(*xCodec)(void*,void*,Pgno,int); /* Routine for en/decoding data */
drhfa9601a2009-06-18 17:22:39 +0000309 void (*xCodecSizeChng)(void*,int,int); /* Notify of page size changes */
310 void (*xCodecFree)(void*); /* Destructor for the codec */
311 void *pCodec; /* First argument to xCodec... methods */
drh7c4ac0c2007-04-05 11:25:58 +0000312#endif
danielk19778186df82007-03-06 13:45:59 +0000313 char *pTmpSpace; /* Pager.pageSize bytes of space for tmp use */
danielk1977b53e4962008-06-04 06:45:59 +0000314 i64 journalSizeLimit; /* Size limit for persistent journal files */
danielk19778c0a7912008-08-20 14:49:23 +0000315 PCache *pPCache; /* Pointer to page cache object */
danielk197704103022009-02-03 16:51:24 +0000316 sqlite3_backup *pBackup; /* Pointer to list of ongoing backup processes */
drhd9b02572001-04-15 00:37:09 +0000317};
318
319/*
drh538f5702007-04-13 02:14:30 +0000320** The following global variables hold counters used for
321** testing purposes only. These variables do not exist in
322** a non-testing build. These variables are not thread-safe.
drhfcd35c72005-05-21 02:48:08 +0000323*/
324#ifdef SQLITE_TEST
drh538f5702007-04-13 02:14:30 +0000325int sqlite3_pager_readdb_count = 0; /* Number of full pages read from DB */
326int sqlite3_pager_writedb_count = 0; /* Number of full pages written to DB */
327int sqlite3_pager_writej_count = 0; /* Number of pages written to journal */
drh538f5702007-04-13 02:14:30 +0000328# define PAGER_INCR(v) v++
drhfcd35c72005-05-21 02:48:08 +0000329#else
drh538f5702007-04-13 02:14:30 +0000330# define PAGER_INCR(v)
drhfcd35c72005-05-21 02:48:08 +0000331#endif
332
drh538f5702007-04-13 02:14:30 +0000333
334
drhfcd35c72005-05-21 02:48:08 +0000335/*
drh5e00f6c2001-09-13 13:46:56 +0000336** Journal files begin with the following magic string. The data
337** was obtained from /dev/random. It is used only as a sanity check.
drh94f33312002-08-12 12:29:56 +0000338**
drhae2b40c2004-06-09 19:03:54 +0000339** Since version 2.8.0, the journal format contains additional sanity
drh30d53702009-01-06 15:58:57 +0000340** checking information. If the power fails while the journal is being
drhae2b40c2004-06-09 19:03:54 +0000341** written, semi-random garbage data might appear in the journal
342** file after power is restored. If an attempt is then made
drh968af522003-02-11 14:55:40 +0000343** to roll the journal back, the database could be corrupted. The additional
344** sanity checking data is an attempt to discover the garbage in the
345** journal and ignore it.
346**
drhae2b40c2004-06-09 19:03:54 +0000347** The sanity checking information for the new journal format consists
drh968af522003-02-11 14:55:40 +0000348** of a 32-bit checksum on each page of data. The checksum covers both
drh90f5ecb2004-07-22 01:19:35 +0000349** the page number and the pPager->pageSize bytes of data for the page.
drh968af522003-02-11 14:55:40 +0000350** This cksum is initialized to a 32-bit random value that appears in the
351** journal file right after the header. The random initializer is important,
352** because garbage data that appears at the end of a journal is likely
353** data that was once in other files that have now been deleted. If the
354** garbage data came from an obsolete journal file, the checksums might
355** be correct. But by initializing the checksum to random value which
356** is different for every journal, we minimize that risk.
drhd9b02572001-04-15 00:37:09 +0000357*/
drhae2b40c2004-06-09 19:03:54 +0000358static const unsigned char aJournalMagic[] = {
359 0xd9, 0xd5, 0x05, 0xf9, 0x20, 0xa1, 0x63, 0xd7,
drhed7c8552001-04-11 14:29:21 +0000360};
361
362/*
danielk1977bea2a942009-01-20 17:06:27 +0000363** The size of the of each page record in the journal is given by
364** the following macro.
drh968af522003-02-11 14:55:40 +0000365*/
drhae2b40c2004-06-09 19:03:54 +0000366#define JOURNAL_PG_SZ(pPager) ((pPager->pageSize) + 8)
drh968af522003-02-11 14:55:40 +0000367
danielk197776572402004-06-25 02:38:54 +0000368/*
danielk1977bea2a942009-01-20 17:06:27 +0000369** The journal header size for this pager. This is usually the same
370** size as a single disk sector. See also setSectorSize().
danielk197776572402004-06-25 02:38:54 +0000371*/
372#define JOURNAL_HDR_SZ(pPager) (pPager->sectorSize)
373
drhb7f91642004-10-31 02:22:47 +0000374/*
375** The macro MEMDB is true if we are dealing with an in-memory database.
376** We do this as a macro so that if the SQLITE_OMIT_MEMORYDB macro is set,
377** the value of MEMDB will be a constant and the compiler will optimize
378** out code that would never execute.
379*/
380#ifdef SQLITE_OMIT_MEMORYDB
381# define MEMDB 0
382#else
383# define MEMDB pPager->memDb
384#endif
385
386/*
danielk197726836652005-01-17 01:33:13 +0000387** The maximum legal page number is (2^31 - 1).
388*/
389#define PAGER_MAX_PGNO 2147483647
390
danielk1977bea2a942009-01-20 17:06:27 +0000391#ifndef NDEBUG
392/*
393** Usage:
394**
395** assert( assert_pager_state(pPager) );
396*/
397static int assert_pager_state(Pager *pPager){
398
399 /* A temp-file is always in PAGER_EXCLUSIVE or PAGER_SYNCED state. */
400 assert( pPager->tempFile==0 || pPager->state>=PAGER_EXCLUSIVE );
401
402 /* The changeCountDone flag is always set for temp-files */
403 assert( pPager->tempFile==0 || pPager->changeCountDone );
404
405 return 1;
406}
407#endif
408
danielk197726836652005-01-17 01:33:13 +0000409/*
danielk19773460d192008-12-27 15:23:13 +0000410** Return true if it is necessary to write page *pPg into the sub-journal.
411** A page needs to be written into the sub-journal if there exists one
412** or more open savepoints for which:
danielk1977fd7f0452008-12-17 17:30:26 +0000413**
danielk19773460d192008-12-27 15:23:13 +0000414** * The page-number is less than or equal to PagerSavepoint.nOrig, and
415** * The bit corresponding to the page-number is not set in
416** PagerSavepoint.pInSavepoint.
danielk1977f35843b2007-04-07 15:03:17 +0000417*/
danielk19773460d192008-12-27 15:23:13 +0000418static int subjRequiresPage(PgHdr *pPg){
419 Pgno pgno = pPg->pgno;
danielk1977f35843b2007-04-07 15:03:17 +0000420 Pager *pPager = pPg->pPager;
danielk19773460d192008-12-27 15:23:13 +0000421 int i;
422 for(i=0; i<pPager->nSavepoint; i++){
423 PagerSavepoint *p = &pPager->aSavepoint[i];
424 if( p->nOrig>=pgno && 0==sqlite3BitvecTest(p->pInSavepoint, pgno) ){
425 return 1;
426 }
danielk1977fd7f0452008-12-17 17:30:26 +0000427 }
danielk19773460d192008-12-27 15:23:13 +0000428 return 0;
danielk1977f35843b2007-04-07 15:03:17 +0000429}
drh8ca0c722006-05-07 17:49:38 +0000430
danielk19773460d192008-12-27 15:23:13 +0000431/*
432** Return true if the page is already in the journal file.
433*/
danielk1977bc2ca9e2008-11-13 14:28:28 +0000434static int pageInJournal(PgHdr *pPg){
435 return sqlite3BitvecTest(pPg->pPager->pInJournal, pPg->pgno);
436}
437
drh8ca0c722006-05-07 17:49:38 +0000438/*
drh34e79ce2004-02-08 06:05:46 +0000439** Read a 32-bit integer from the given file descriptor. Store the integer
440** that is read in *pRes. Return SQLITE_OK if everything worked, or an
441** error code is something goes wrong.
drh726de592004-06-10 23:35:50 +0000442**
443** All values are stored on disk as big-endian.
drh94f33312002-08-12 12:29:56 +0000444*/
danielk197762079062007-08-15 17:08:46 +0000445static int read32bits(sqlite3_file *fd, i64 offset, u32 *pRes){
drh3b59a5c2006-01-15 20:28:28 +0000446 unsigned char ac[4];
danielk197762079062007-08-15 17:08:46 +0000447 int rc = sqlite3OsRead(fd, ac, sizeof(ac), offset);
drhae2b40c2004-06-09 19:03:54 +0000448 if( rc==SQLITE_OK ){
drha3152892007-05-05 11:48:52 +0000449 *pRes = sqlite3Get4byte(ac);
drh94f33312002-08-12 12:29:56 +0000450 }
drh94f33312002-08-12 12:29:56 +0000451 return rc;
452}
453
454/*
drh97b57482006-01-10 20:32:32 +0000455** Write a 32-bit integer into a string buffer in big-endian byte order.
456*/
drha3152892007-05-05 11:48:52 +0000457#define put32bits(A,B) sqlite3Put4byte((u8*)A,B)
drh97b57482006-01-10 20:32:32 +0000458
459/*
drh34e79ce2004-02-08 06:05:46 +0000460** Write a 32-bit integer into the given file descriptor. Return SQLITE_OK
461** on success or an error code is something goes wrong.
drh94f33312002-08-12 12:29:56 +0000462*/
danielk197762079062007-08-15 17:08:46 +0000463static int write32bits(sqlite3_file *fd, i64 offset, u32 val){
danielk1977bab45c62006-01-16 15:14:27 +0000464 char ac[4];
drh97b57482006-01-10 20:32:32 +0000465 put32bits(ac, val);
danielk197762079062007-08-15 17:08:46 +0000466 return sqlite3OsWrite(fd, ac, 4, offset);
drh94f33312002-08-12 12:29:56 +0000467}
468
drh2554f8b2003-01-22 01:26:44 +0000469/*
danielk1977bea2a942009-01-20 17:06:27 +0000470** The argument to this macro is a file descriptor (type sqlite3_file*).
471** Return 0 if it is not open, or non-zero (but not 1) if it is.
472**
473** This is so that expressions can be written as:
474**
475** if( isOpen(pPager->jfd) ){ ...
476**
477** instead of
478**
479** if( pPager->jfd->pMethods ){ ...
480*/
481#define isOpen(pFd) ((pFd)->pMethods)
482
483/*
danielk19777a2b1ee2007-08-21 14:27:01 +0000484** If file pFd is open, call sqlite3OsUnlock() on it.
485*/
486static int osUnlock(sqlite3_file *pFd, int eLock){
danielk1977bea2a942009-01-20 17:06:27 +0000487 if( !isOpen(pFd) ){
danielk19777a2b1ee2007-08-21 14:27:01 +0000488 return SQLITE_OK;
489 }
490 return sqlite3OsUnlock(pFd, eLock);
491}
492
493/*
danielk1977c7b60172007-08-22 11:22:03 +0000494** This function determines whether or not the atomic-write optimization
495** can be used with this pager. The optimization can be used if:
496**
497** (a) the value returned by OsDeviceCharacteristics() indicates that
498** a database page may be written atomically, and
499** (b) the value returned by OsSectorSize() is less than or equal
500** to the page size.
501**
danielk1977bea2a942009-01-20 17:06:27 +0000502** The optimization is also always enabled for temporary files. It is
503** an error to call this function if pPager is opened on an in-memory
504** database.
505**
danielk1977c7b60172007-08-22 11:22:03 +0000506** If the optimization cannot be used, 0 is returned. If it can be used,
507** then the value returned is the size of the journal file when it
508** contains rollback data for exactly one page.
509*/
510#ifdef SQLITE_ENABLE_ATOMIC_WRITE
511static int jrnlBufferSize(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +0000512 assert( !MEMDB );
513 if( !pPager->tempFile ){
514 int dc; /* Device characteristics */
515 int nSector; /* Sector size */
516 int szPage; /* Page size */
danielk1977c7b60172007-08-22 11:22:03 +0000517
danielk1977bea2a942009-01-20 17:06:27 +0000518 assert( isOpen(pPager->fd) );
519 dc = sqlite3OsDeviceCharacteristics(pPager->fd);
danielk19777cbd5892009-01-10 16:15:09 +0000520 nSector = pPager->sectorSize;
drhfacf0302008-06-17 15:12:00 +0000521 szPage = pPager->pageSize;
danielk1977c7b60172007-08-22 11:22:03 +0000522
danielk1977bea2a942009-01-20 17:06:27 +0000523 assert(SQLITE_IOCAP_ATOMIC512==(512>>8));
524 assert(SQLITE_IOCAP_ATOMIC64K==(65536>>8));
525 if( 0==(dc&(SQLITE_IOCAP_ATOMIC|(szPage>>8)) || nSector>szPage) ){
526 return 0;
danielk1977ae72d982007-10-03 08:46:44 +0000527 }
danielk1977aef0bf62005-12-30 16:28:01 +0000528 }
danielk1977bea2a942009-01-20 17:06:27 +0000529
530 return JOURNAL_HDR_SZ(pPager) + JOURNAL_PG_SZ(pPager);
danielk1977aef0bf62005-12-30 16:28:01 +0000531}
danielk1977bea2a942009-01-20 17:06:27 +0000532#endif
danielk1977aef0bf62005-12-30 16:28:01 +0000533
drh477731b2007-06-16 03:06:27 +0000534/*
535** If SQLITE_CHECK_PAGES is defined then we do some sanity checking
536** on the cache using a hash function. This is used for testing
537** and debugging only.
538*/
danielk19773c407372005-02-15 02:54:14 +0000539#ifdef SQLITE_CHECK_PAGES
540/*
541** Return a 32-bit hash of the page data for pPage.
542*/
drh477731b2007-06-16 03:06:27 +0000543static u32 pager_datahash(int nByte, unsigned char *pData){
danielk19773c407372005-02-15 02:54:14 +0000544 u32 hash = 0;
545 int i;
drh477731b2007-06-16 03:06:27 +0000546 for(i=0; i<nByte; i++){
547 hash = (hash*1039) + pData[i];
danielk19773c407372005-02-15 02:54:14 +0000548 }
549 return hash;
550}
drh477731b2007-06-16 03:06:27 +0000551static u32 pager_pagehash(PgHdr *pPage){
danielk19778c0a7912008-08-20 14:49:23 +0000552 return pager_datahash(pPage->pPager->pageSize, (unsigned char *)pPage->pData);
553}
danielk1977bc2ca9e2008-11-13 14:28:28 +0000554static void pager_set_pagehash(PgHdr *pPage){
danielk19778c0a7912008-08-20 14:49:23 +0000555 pPage->pageHash = pager_pagehash(pPage);
drh477731b2007-06-16 03:06:27 +0000556}
danielk19773c407372005-02-15 02:54:14 +0000557
558/*
559** The CHECK_PAGE macro takes a PgHdr* as an argument. If SQLITE_CHECK_PAGES
560** is defined, and NDEBUG is not defined, an assert() statement checks
561** that the page is either dirty or still matches the calculated page-hash.
562*/
563#define CHECK_PAGE(x) checkPage(x)
564static void checkPage(PgHdr *pPg){
565 Pager *pPager = pPg->pPager;
danielk1977b3175382008-10-17 18:51:52 +0000566 assert( !pPg->pageHash || pPager->errCode
danielk19778c0a7912008-08-20 14:49:23 +0000567 || (pPg->flags&PGHDR_DIRTY) || pPg->pageHash==pager_pagehash(pPg) );
danielk19773c407372005-02-15 02:54:14 +0000568}
569
570#else
drh8ffa8172007-06-18 17:25:17 +0000571#define pager_datahash(X,Y) 0
drh477731b2007-06-16 03:06:27 +0000572#define pager_pagehash(X) 0
danielk19773c407372005-02-15 02:54:14 +0000573#define CHECK_PAGE(x)
drh41d30272008-08-20 21:47:45 +0000574#endif /* SQLITE_CHECK_PAGES */
danielk19773c407372005-02-15 02:54:14 +0000575
drhed7c8552001-04-11 14:29:21 +0000576/*
danielk197776572402004-06-25 02:38:54 +0000577** When this is called the journal file for pager pPager must be open.
danielk1977bea2a942009-01-20 17:06:27 +0000578** This function attempts to read a master journal file name from the
579** end of the file and, if successful, copies it into memory supplied
580** by the caller. See comments above writeMasterJournal() for the format
581** used to store a master journal file name at the end of a journal file.
danielk197776572402004-06-25 02:38:54 +0000582**
danielk197765839c62007-08-30 08:08:17 +0000583** zMaster must point to a buffer of at least nMaster bytes allocated by
584** the caller. This should be sqlite3_vfs.mxPathname+1 (to ensure there is
585** enough space to write the master journal name). If the master journal
586** name in the journal is longer than nMaster bytes (including a
587** nul-terminator), then this is handled as if no master journal name
588** were present in the journal.
589**
danielk1977bea2a942009-01-20 17:06:27 +0000590** If a master journal file name is present at the end of the journal
591** file, then it is copied into the buffer pointed to by zMaster. A
592** nul-terminator byte is appended to the buffer following the master
593** journal file name.
594**
595** If it is determined that no master journal file name is present
596** zMaster[0] is set to 0 and SQLITE_OK returned.
597**
598** If an error occurs while reading from the journal file, an SQLite
599** error code is returned.
danielk197776572402004-06-25 02:38:54 +0000600*/
danielk1977d92db532008-11-17 04:56:24 +0000601static int readMasterJournal(sqlite3_file *pJrnl, char *zMaster, u32 nMaster){
danielk1977bea2a942009-01-20 17:06:27 +0000602 int rc; /* Return code */
603 u32 len; /* Length in bytes of master journal name */
604 i64 szJ; /* Total size in bytes of journal file pJrnl */
605 u32 cksum; /* MJ checksum value read from journal */
606 u32 u; /* Unsigned loop counter */
607 unsigned char aMagic[8]; /* A buffer to hold the magic header */
danielk197765839c62007-08-30 08:08:17 +0000608 zMaster[0] = '\0';
danielk197776572402004-06-25 02:38:54 +0000609
danielk1977bea2a942009-01-20 17:06:27 +0000610 if( SQLITE_OK!=(rc = sqlite3OsFileSize(pJrnl, &szJ))
611 || szJ<16
612 || SQLITE_OK!=(rc = read32bits(pJrnl, szJ-16, &len))
613 || len>=nMaster
614 || SQLITE_OK!=(rc = read32bits(pJrnl, szJ-12, &cksum))
615 || SQLITE_OK!=(rc = sqlite3OsRead(pJrnl, aMagic, 8, szJ-8))
616 || memcmp(aMagic, aJournalMagic, 8)
617 || SQLITE_OK!=(rc = sqlite3OsRead(pJrnl, zMaster, len, szJ-16-len))
618 ){
danielk197776572402004-06-25 02:38:54 +0000619 return rc;
620 }
danielk1977cafadba2004-06-25 11:11:54 +0000621
622 /* See if the checksum matches the master journal name */
shane0b8d2762008-07-22 05:18:00 +0000623 for(u=0; u<len; u++){
624 cksum -= zMaster[u];
danielk1977bea2a942009-01-20 17:06:27 +0000625 }
danielk19778191bff2004-06-28 04:52:30 +0000626 if( cksum ){
627 /* If the checksum doesn't add up, then one or more of the disk sectors
628 ** containing the master journal filename is corrupted. This means
629 ** definitely roll back, so just return SQLITE_OK and report a (nul)
630 ** master-journal filename.
631 */
danielk1977bea2a942009-01-20 17:06:27 +0000632 len = 0;
danielk1977cafadba2004-06-25 11:11:54 +0000633 }
danielk1977bea2a942009-01-20 17:06:27 +0000634 zMaster[len] = '\0';
danielk197776572402004-06-25 02:38:54 +0000635
636 return SQLITE_OK;
637}
638
639/*
danielk1977bea2a942009-01-20 17:06:27 +0000640** Return the offset of the sector boundary at or immediately
641** following the value in pPager->journalOff, assuming a sector
642** size of pPager->sectorSize bytes.
danielk197776572402004-06-25 02:38:54 +0000643**
644** i.e for a sector size of 512:
645**
danielk1977bea2a942009-01-20 17:06:27 +0000646** Pager.journalOff Return value
647** ---------------------------------------
648** 0 0
649** 512 512
650** 100 512
651** 2000 2048
danielk197776572402004-06-25 02:38:54 +0000652**
653*/
danielk1977112f7522009-01-08 17:50:45 +0000654static i64 journalHdrOffset(Pager *pPager){
drheb206252004-10-01 02:00:31 +0000655 i64 offset = 0;
656 i64 c = pPager->journalOff;
danielk197776572402004-06-25 02:38:54 +0000657 if( c ){
658 offset = ((c-1)/JOURNAL_HDR_SZ(pPager) + 1) * JOURNAL_HDR_SZ(pPager);
659 }
660 assert( offset%JOURNAL_HDR_SZ(pPager)==0 );
661 assert( offset>=c );
662 assert( (offset-c)<JOURNAL_HDR_SZ(pPager) );
danielk1977112f7522009-01-08 17:50:45 +0000663 return offset;
664}
danielk197776572402004-06-25 02:38:54 +0000665
666/*
danielk1977bea2a942009-01-20 17:06:27 +0000667** The journal file must be open when this function is called.
668**
669** This function is a no-op if the journal file has not been written to
670** within the current transaction (i.e. if Pager.journalOff==0).
671**
672** If doTruncate is non-zero or the Pager.journalSizeLimit variable is
673** set to 0, then truncate the journal file to zero bytes in size. Otherwise,
674** zero the 28-byte header at the start of the journal file. In either case,
675** if the pager is not in no-sync mode, sync the journal file immediately
676** after writing or truncating it.
677**
678** If Pager.journalSizeLimit is set to a positive, non-zero value, and
679** following the truncation or zeroing described above the size of the
680** journal file in bytes is larger than this value, then truncate the
681** journal file to Pager.journalSizeLimit bytes. The journal file does
682** not need to be synced following this operation.
683**
684** If an IO error occurs, abandon processing and return the IO error code.
685** Otherwise, return SQLITE_OK.
drhf3a87622008-04-17 14:16:42 +0000686*/
danielk1977df2566a2008-05-07 19:11:03 +0000687static int zeroJournalHdr(Pager *pPager, int doTruncate){
danielk1977bea2a942009-01-20 17:06:27 +0000688 int rc = SQLITE_OK; /* Return code */
689 assert( isOpen(pPager->jfd) );
danielk1977df2566a2008-05-07 19:11:03 +0000690 if( pPager->journalOff ){
danielk1977bea2a942009-01-20 17:06:27 +0000691 const i64 iLimit = pPager->journalSizeLimit; /* Local cache of jsl */
danielk1977b53e4962008-06-04 06:45:59 +0000692
danielk1977df2566a2008-05-07 19:11:03 +0000693 IOTRACE(("JZEROHDR %p\n", pPager))
danielk1977b53e4962008-06-04 06:45:59 +0000694 if( doTruncate || iLimit==0 ){
danielk1977df2566a2008-05-07 19:11:03 +0000695 rc = sqlite3OsTruncate(pPager->jfd, 0);
696 }else{
danielk1977bea2a942009-01-20 17:06:27 +0000697 static const char zeroHdr[28] = {0};
danielk1977df2566a2008-05-07 19:11:03 +0000698 rc = sqlite3OsWrite(pPager->jfd, zeroHdr, sizeof(zeroHdr), 0);
699 }
danielk197781620542008-06-07 05:19:37 +0000700 if( rc==SQLITE_OK && !pPager->noSync ){
danielk1977df2566a2008-05-07 19:11:03 +0000701 rc = sqlite3OsSync(pPager->jfd, SQLITE_SYNC_DATAONLY|pPager->sync_flags);
702 }
danielk1977b53e4962008-06-04 06:45:59 +0000703
704 /* At this point the transaction is committed but the write lock
705 ** is still held on the file. If there is a size limit configured for
706 ** the persistent journal and the journal file currently consumes more
707 ** space than that limit allows for, truncate it now. There is no need
708 ** to sync the file following this operation.
709 */
710 if( rc==SQLITE_OK && iLimit>0 ){
711 i64 sz;
712 rc = sqlite3OsFileSize(pPager->jfd, &sz);
713 if( rc==SQLITE_OK && sz>iLimit ){
714 rc = sqlite3OsTruncate(pPager->jfd, iLimit);
715 }
716 }
drha06ecba2008-04-22 17:15:17 +0000717 }
drhf3a87622008-04-17 14:16:42 +0000718 return rc;
719}
720
721/*
danielk197776572402004-06-25 02:38:54 +0000722** The journal file must be open when this routine is called. A journal
723** header (JOURNAL_HDR_SZ bytes) is written into the journal file at the
724** current location.
725**
726** The format for the journal header is as follows:
727** - 8 bytes: Magic identifying journal format.
728** - 4 bytes: Number of records in journal, or -1 no-sync mode is on.
729** - 4 bytes: Random number used for page hash.
730** - 4 bytes: Initial database page count.
731** - 4 bytes: Sector size used by the process that wrote this journal.
danielk197767c007b2008-03-20 04:45:49 +0000732** - 4 bytes: Database page size.
danielk197776572402004-06-25 02:38:54 +0000733**
danielk197767c007b2008-03-20 04:45:49 +0000734** Followed by (JOURNAL_HDR_SZ - 28) bytes of unused space.
danielk197776572402004-06-25 02:38:54 +0000735*/
736static int writeJournalHdr(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +0000737 int rc = SQLITE_OK; /* Return code */
738 char *zHeader = pPager->pTmpSpace; /* Temporary space used to build header */
739 u32 nHeader = pPager->pageSize; /* Size of buffer pointed to by zHeader */
740 u32 nWrite; /* Bytes of header sector written */
741 int ii; /* Loop counter */
742
743 assert( isOpen(pPager->jfd) ); /* Journal file must be open. */
danielk1977a664f8e2008-04-22 14:31:48 +0000744
745 if( nHeader>JOURNAL_HDR_SZ(pPager) ){
746 nHeader = JOURNAL_HDR_SZ(pPager);
747 }
danielk197776572402004-06-25 02:38:54 +0000748
danielk1977bea2a942009-01-20 17:06:27 +0000749 /* If there are active savepoints and any of them were created
750 ** since the most recent journal header was written, update the
751 ** PagerSavepoint.iHdrOffset fields now.
danielk1977fd7f0452008-12-17 17:30:26 +0000752 */
753 for(ii=0; ii<pPager->nSavepoint; ii++){
754 if( pPager->aSavepoint[ii].iHdrOffset==0 ){
755 pPager->aSavepoint[ii].iHdrOffset = pPager->journalOff;
756 }
danielk19774099f6e2007-03-19 11:25:20 +0000757 }
758
danielk1977bea2a942009-01-20 17:06:27 +0000759 pPager->journalHdr = pPager->journalOff = journalHdrOffset(pPager);
danielk19774cd2cd52007-08-23 14:48:23 +0000760
761 /*
762 ** Write the nRec Field - the number of page records that follow this
763 ** journal header. Normally, zero is written to this value at this time.
764 ** After the records are added to the journal (and the journal synced,
765 ** if in full-sync mode), the zero is overwritten with the true number
766 ** of records (see syncJournal()).
767 **
768 ** A faster alternative is to write 0xFFFFFFFF to the nRec field. When
769 ** reading the journal this value tells SQLite to assume that the
770 ** rest of the journal file contains valid page records. This assumption
shanebe217792009-03-05 04:20:31 +0000771 ** is dangerous, as if a failure occurred whilst writing to the journal
danielk19774cd2cd52007-08-23 14:48:23 +0000772 ** file it may contain some garbage data. There are two scenarios
773 ** where this risk can be ignored:
774 **
775 ** * When the pager is in no-sync mode. Corruption can follow a
776 ** power failure in this case anyway.
777 **
778 ** * When the SQLITE_IOCAP_SAFE_APPEND flag is set. This guarantees
779 ** that garbage data is never appended to the journal file.
780 */
danielk1977bea2a942009-01-20 17:06:27 +0000781 assert( isOpen(pPager->fd) || pPager->noSync );
danielk1977b3175382008-10-17 18:51:52 +0000782 if( (pPager->noSync) || (pPager->journalMode==PAGER_JOURNALMODE_MEMORY)
danielk19774cd2cd52007-08-23 14:48:23 +0000783 || (sqlite3OsDeviceCharacteristics(pPager->fd)&SQLITE_IOCAP_SAFE_APPEND)
784 ){
danielk19776f4c73e2009-06-26 07:12:06 +0000785 memcpy(zHeader, aJournalMagic, sizeof(aJournalMagic));
danielk19774cd2cd52007-08-23 14:48:23 +0000786 put32bits(&zHeader[sizeof(aJournalMagic)], 0xffffffff);
787 }else{
danielk19776f4c73e2009-06-26 07:12:06 +0000788 zHeader[0] = '\0';
danielk19774cd2cd52007-08-23 14:48:23 +0000789 put32bits(&zHeader[sizeof(aJournalMagic)], 0);
790 }
791
drh97b57482006-01-10 20:32:32 +0000792 /* The random check-hash initialiser */
drh2fa18682008-03-19 14:15:34 +0000793 sqlite3_randomness(sizeof(pPager->cksumInit), &pPager->cksumInit);
drh97b57482006-01-10 20:32:32 +0000794 put32bits(&zHeader[sizeof(aJournalMagic)+4], pPager->cksumInit);
795 /* The initial database size */
danielk19773460d192008-12-27 15:23:13 +0000796 put32bits(&zHeader[sizeof(aJournalMagic)+8], pPager->dbOrigSize);
drh97b57482006-01-10 20:32:32 +0000797 /* The assumed sector size for this process */
798 put32bits(&zHeader[sizeof(aJournalMagic)+12], pPager->sectorSize);
drh08609ce2008-11-29 22:49:23 +0000799
danielk1977bea2a942009-01-20 17:06:27 +0000800 /* The page size */
801 put32bits(&zHeader[sizeof(aJournalMagic)+16], pPager->pageSize);
802
drh08609ce2008-11-29 22:49:23 +0000803 /* Initializing the tail of the buffer is not necessary. Everything
804 ** works find if the following memset() is omitted. But initializing
805 ** the memory prevents valgrind from complaining, so we are willing to
806 ** take the performance hit.
807 */
danielk1977bea2a942009-01-20 17:06:27 +0000808 memset(&zHeader[sizeof(aJournalMagic)+20], 0,
809 nHeader-(sizeof(aJournalMagic)+20));
drh08609ce2008-11-29 22:49:23 +0000810
danielk1977bea2a942009-01-20 17:06:27 +0000811 /* In theory, it is only necessary to write the 28 bytes that the
812 ** journal header consumes to the journal file here. Then increment the
813 ** Pager.journalOff variable by JOURNAL_HDR_SZ so that the next
814 ** record is written to the following sector (leaving a gap in the file
815 ** that will be implicitly filled in by the OS).
816 **
817 ** However it has been discovered that on some systems this pattern can
818 ** be significantly slower than contiguously writing data to the file,
819 ** even if that means explicitly writing data to the block of
820 ** (JOURNAL_HDR_SZ - 28) bytes that will not be used. So that is what
821 ** is done.
822 **
823 ** The loop is required here in case the sector-size is larger than the
824 ** database page size. Since the zHeader buffer is only Pager.pageSize
825 ** bytes in size, more than one call to sqlite3OsWrite() may be required
826 ** to populate the entire journal header sector.
827 */
danielk1977a664f8e2008-04-22 14:31:48 +0000828 for(nWrite=0; rc==SQLITE_OK&&nWrite<JOURNAL_HDR_SZ(pPager); nWrite+=nHeader){
829 IOTRACE(("JHDR %p %lld %d\n", pPager, pPager->journalHdr, nHeader))
830 rc = sqlite3OsWrite(pPager->jfd, zHeader, nHeader, pPager->journalOff);
831 pPager->journalOff += nHeader;
danielk197776572402004-06-25 02:38:54 +0000832 }
danielk1977a664f8e2008-04-22 14:31:48 +0000833
danielk197776572402004-06-25 02:38:54 +0000834 return rc;
835}
836
837/*
838** The journal file must be open when this is called. A journal header file
839** (JOURNAL_HDR_SZ bytes) is read from the current location in the journal
drhd6e5e092009-01-07 02:03:35 +0000840** file. The current location in the journal file is given by
danielk1977bea2a942009-01-20 17:06:27 +0000841** pPager->journalOff. See comments above function writeJournalHdr() for
drhd6e5e092009-01-07 02:03:35 +0000842** a description of the journal header format.
danielk197776572402004-06-25 02:38:54 +0000843**
danielk1977bea2a942009-01-20 17:06:27 +0000844** If the header is read successfully, *pNRec is set to the number of
845** page records following this header and *pDbSize is set to the size of the
danielk197776572402004-06-25 02:38:54 +0000846** database before the transaction began, in pages. Also, pPager->cksumInit
847** is set to the value read from the journal header. SQLITE_OK is returned
848** in this case.
849**
850** If the journal header file appears to be corrupted, SQLITE_DONE is
danielk1977bea2a942009-01-20 17:06:27 +0000851** returned and *pNRec and *PDbSize are undefined. If JOURNAL_HDR_SZ bytes
danielk197776572402004-06-25 02:38:54 +0000852** cannot be read from the journal file an error code is returned.
853*/
854static int readJournalHdr(
danielk1977bea2a942009-01-20 17:06:27 +0000855 Pager *pPager, /* Pager object */
danielk19776f4c73e2009-06-26 07:12:06 +0000856 int isHot,
danielk1977bea2a942009-01-20 17:06:27 +0000857 i64 journalSize, /* Size of the open journal file in bytes */
858 u32 *pNRec, /* OUT: Value read from the nRec field */
859 u32 *pDbSize /* OUT: Value of original database size field */
danielk197776572402004-06-25 02:38:54 +0000860){
danielk1977bea2a942009-01-20 17:06:27 +0000861 int rc; /* Return code */
862 unsigned char aMagic[8]; /* A buffer to hold the magic header */
863 i64 iHdrOff; /* Offset of journal header being read */
danielk197776572402004-06-25 02:38:54 +0000864
danielk1977bea2a942009-01-20 17:06:27 +0000865 assert( isOpen(pPager->jfd) ); /* Journal file must be open. */
866
867 /* Advance Pager.journalOff to the start of the next sector. If the
868 ** journal file is too small for there to be a header stored at this
869 ** point, return SQLITE_DONE.
870 */
871 pPager->journalOff = journalHdrOffset(pPager);
danielk197776572402004-06-25 02:38:54 +0000872 if( pPager->journalOff+JOURNAL_HDR_SZ(pPager) > journalSize ){
873 return SQLITE_DONE;
874 }
danielk1977bea2a942009-01-20 17:06:27 +0000875 iHdrOff = pPager->journalOff;
danielk197776572402004-06-25 02:38:54 +0000876
danielk1977bea2a942009-01-20 17:06:27 +0000877 /* Read in the first 8 bytes of the journal header. If they do not match
878 ** the magic string found at the start of each journal header, return
879 ** SQLITE_DONE. If an IO error occurs, return an error code. Otherwise,
880 ** proceed.
881 */
danielk19776f4c73e2009-06-26 07:12:06 +0000882 if( isHot || iHdrOff!=pPager->journalHdr ){
883 rc = sqlite3OsRead(pPager->jfd, aMagic, sizeof(aMagic), iHdrOff);
884 if( rc ){
885 return rc;
886 }
887 if( memcmp(aMagic, aJournalMagic, sizeof(aMagic))!=0 ){
888 return SQLITE_DONE;
889 }
danielk197776572402004-06-25 02:38:54 +0000890 }
891
danielk1977bea2a942009-01-20 17:06:27 +0000892 /* Read the first three 32-bit fields of the journal header: The nRec
893 ** field, the checksum-initializer and the database size at the start
894 ** of the transaction. Return an error code if anything goes wrong.
895 */
896 if( SQLITE_OK!=(rc = read32bits(pPager->jfd, iHdrOff+8, pNRec))
897 || SQLITE_OK!=(rc = read32bits(pPager->jfd, iHdrOff+12, &pPager->cksumInit))
898 || SQLITE_OK!=(rc = read32bits(pPager->jfd, iHdrOff+16, pDbSize))
899 ){
900 return rc;
901 }
danielk197776572402004-06-25 02:38:54 +0000902
danielk19777cbd5892009-01-10 16:15:09 +0000903 if( pPager->journalOff==0 ){
danielk1977bea2a942009-01-20 17:06:27 +0000904 u32 iPageSize; /* Page-size field of journal header */
905 u32 iSectorSize; /* Sector-size field of journal header */
906 u16 iPageSize16; /* Copy of iPageSize in 16-bit variable */
danielk197767c007b2008-03-20 04:45:49 +0000907
danielk1977bea2a942009-01-20 17:06:27 +0000908 /* Read the page-size and sector-size journal header fields. */
909 if( SQLITE_OK!=(rc = read32bits(pPager->jfd, iHdrOff+20, &iSectorSize))
910 || SQLITE_OK!=(rc = read32bits(pPager->jfd, iHdrOff+24, &iPageSize))
danielk19777cbd5892009-01-10 16:15:09 +0000911 ){
danielk1977bea2a942009-01-20 17:06:27 +0000912 return rc;
danielk1977443c0592009-01-16 15:21:05 +0000913 }
danielk1977bea2a942009-01-20 17:06:27 +0000914
915 /* Check that the values read from the page-size and sector-size fields
916 ** are within range. To be 'in range', both values need to be a power
917 ** of two greater than or equal to 512, and not greater than their
918 ** respective compile time maximum limits.
919 */
920 if( iPageSize<512 || iSectorSize<512
921 || iPageSize>SQLITE_MAX_PAGE_SIZE || iSectorSize>MAX_SECTOR_SIZE
922 || ((iPageSize-1)&iPageSize)!=0 || ((iSectorSize-1)&iSectorSize)!=0
923 ){
924 /* If the either the page-size or sector-size in the journal-header is
925 ** invalid, then the process that wrote the journal-header must have
926 ** crashed before the header was synced. In this case stop reading
927 ** the journal file here.
928 */
929 return SQLITE_DONE;
930 }
931
932 /* Update the page-size to match the value read from the journal.
933 ** Use a testcase() macro to make sure that malloc failure within
934 ** PagerSetPagesize() is tested.
935 */
936 iPageSize16 = (u16)iPageSize;
drhfa9601a2009-06-18 17:22:39 +0000937 rc = sqlite3PagerSetPagesize(pPager, &iPageSize16, -1);
danielk1977bea2a942009-01-20 17:06:27 +0000938 testcase( rc!=SQLITE_OK );
939 assert( rc!=SQLITE_OK || iPageSize16==(u16)iPageSize );
940
danielk19777cbd5892009-01-10 16:15:09 +0000941 /* Update the assumed sector-size to match the value used by
942 ** the process that created this journal. If this journal was
943 ** created by a process other than this one, then this routine
944 ** is being called from within pager_playback(). The local value
945 ** of Pager.sectorSize is restored at the end of that routine.
946 */
danielk19777cbd5892009-01-10 16:15:09 +0000947 pPager->sectorSize = iSectorSize;
drh98c58352008-11-07 00:24:53 +0000948 }
danielk197776572402004-06-25 02:38:54 +0000949
950 pPager->journalOff += JOURNAL_HDR_SZ(pPager);
danielk1977bea2a942009-01-20 17:06:27 +0000951 return rc;
danielk197776572402004-06-25 02:38:54 +0000952}
953
954
955/*
956** Write the supplied master journal name into the journal file for pager
danielk1977cafadba2004-06-25 11:11:54 +0000957** pPager at the current location. The master journal name must be the last
958** thing written to a journal file. If the pager is in full-sync mode, the
959** journal file descriptor is advanced to the next sector boundary before
960** anything is written. The format is:
961**
danielk1977bea2a942009-01-20 17:06:27 +0000962** + 4 bytes: PAGER_MJ_PGNO.
963** + N bytes: Master journal filename in utf-8.
964** + 4 bytes: N (length of master journal name in bytes, no nul-terminator).
965** + 4 bytes: Master journal name checksum.
966** + 8 bytes: aJournalMagic[].
danielk1977cafadba2004-06-25 11:11:54 +0000967**
968** The master journal page checksum is the sum of the bytes in the master
danielk1977bea2a942009-01-20 17:06:27 +0000969** journal name, where each byte is interpreted as a signed 8-bit integer.
danielk1977aef0bf62005-12-30 16:28:01 +0000970**
971** If zMaster is a NULL pointer (occurs for a single database transaction),
972** this call is a no-op.
danielk197776572402004-06-25 02:38:54 +0000973*/
974static int writeMasterJournal(Pager *pPager, const char *zMaster){
danielk1977bea2a942009-01-20 17:06:27 +0000975 int rc; /* Return code */
976 int nMaster; /* Length of string zMaster */
977 i64 iHdrOff; /* Offset of header in journal file */
978 i64 jrnlSize; /* Size of journal file on disk */
979 u32 cksum = 0; /* Checksum of string zMaster */
danielk197776572402004-06-25 02:38:54 +0000980
danielk1977bea2a942009-01-20 17:06:27 +0000981 if( !zMaster || pPager->setMaster
982 || pPager->journalMode==PAGER_JOURNALMODE_MEMORY
983 || pPager->journalMode==PAGER_JOURNALMODE_OFF
984 ){
985 return SQLITE_OK;
986 }
danielk197776572402004-06-25 02:38:54 +0000987 pPager->setMaster = 1;
danielk1977bea2a942009-01-20 17:06:27 +0000988 assert( isOpen(pPager->jfd) );
danielk197776572402004-06-25 02:38:54 +0000989
danielk1977bea2a942009-01-20 17:06:27 +0000990 /* Calculate the length in bytes and the checksum of zMaster */
991 for(nMaster=0; zMaster[nMaster]; nMaster++){
992 cksum += zMaster[nMaster];
danielk1977cafadba2004-06-25 11:11:54 +0000993 }
danielk197776572402004-06-25 02:38:54 +0000994
995 /* If in full-sync mode, advance to the next disk sector before writing
996 ** the master journal name. This is in case the previous page written to
997 ** the journal has already been synced.
998 */
999 if( pPager->fullSync ){
danielk1977bea2a942009-01-20 17:06:27 +00001000 pPager->journalOff = journalHdrOffset(pPager);
danielk197776572402004-06-25 02:38:54 +00001001 }
danielk1977bea2a942009-01-20 17:06:27 +00001002 iHdrOff = pPager->journalOff;
danielk197776572402004-06-25 02:38:54 +00001003
danielk1977bea2a942009-01-20 17:06:27 +00001004 /* Write the master journal data to the end of the journal file. If
1005 ** an error occurs, return the error code to the caller.
1006 */
shane63207ab2009-02-04 01:49:30 +00001007 if( (0 != (rc = write32bits(pPager->jfd, iHdrOff, PAGER_MJ_PGNO(pPager))))
1008 || (0 != (rc = sqlite3OsWrite(pPager->jfd, zMaster, nMaster, iHdrOff+4)))
1009 || (0 != (rc = write32bits(pPager->jfd, iHdrOff+4+nMaster, nMaster)))
1010 || (0 != (rc = write32bits(pPager->jfd, iHdrOff+4+nMaster+4, cksum)))
1011 || (0 != (rc = sqlite3OsWrite(pPager->jfd, aJournalMagic, 8, iHdrOff+4+nMaster+8)))
danielk1977bea2a942009-01-20 17:06:27 +00001012 ){
1013 return rc;
1014 }
1015 pPager->journalOff += (nMaster+20);
drh2c8997b2005-08-27 16:36:48 +00001016 pPager->needSync = !pPager->noSync;
danielk1977df2566a2008-05-07 19:11:03 +00001017
1018 /* If the pager is in peristent-journal mode, then the physical
1019 ** journal-file may extend past the end of the master-journal name
1020 ** and 8 bytes of magic data just written to the file. This is
1021 ** dangerous because the code to rollback a hot-journal file
1022 ** will not be able to find the master-journal name to determine
1023 ** whether or not the journal is hot.
1024 **
1025 ** Easiest thing to do in this scenario is to truncate the journal
1026 ** file to the required size.
1027 */
danielk1977bea2a942009-01-20 17:06:27 +00001028 if( SQLITE_OK==(rc = sqlite3OsFileSize(pPager->jfd, &jrnlSize))
1029 && jrnlSize>pPager->journalOff
danielk1977df2566a2008-05-07 19:11:03 +00001030 ){
danielk1977bea2a942009-01-20 17:06:27 +00001031 rc = sqlite3OsTruncate(pPager->jfd, pPager->journalOff);
danielk1977df2566a2008-05-07 19:11:03 +00001032 }
danielk197776572402004-06-25 02:38:54 +00001033 return rc;
1034}
1035
1036/*
danielk1977bea2a942009-01-20 17:06:27 +00001037** Find a page in the hash table given its page number. Return
1038** a pointer to the page or NULL if the requested page is not
1039** already in memory.
drhed7c8552001-04-11 14:29:21 +00001040*/
drhd9b02572001-04-15 00:37:09 +00001041static PgHdr *pager_lookup(Pager *pPager, Pgno pgno){
danielk1977bea2a942009-01-20 17:06:27 +00001042 PgHdr *p; /* Return value */
1043
1044 /* It is not possible for a call to PcacheFetch() with createFlag==0 to
1045 ** fail, since no attempt to allocate dynamic memory will be made.
1046 */
1047 (void)sqlite3PcacheFetch(pPager->pPCache, pgno, 0, &p);
drhed7c8552001-04-11 14:29:21 +00001048 return p;
1049}
1050
1051/*
danielk1977bea2a942009-01-20 17:06:27 +00001052** Unless the pager is in error-state, discard all in-memory pages. If
1053** the pager is in error-state, then this call is a no-op.
danielk197704103022009-02-03 16:51:24 +00001054**
1055** TODO: Why can we not reset the pager while in error state?
drhed7c8552001-04-11 14:29:21 +00001056*/
drhd9b02572001-04-15 00:37:09 +00001057static void pager_reset(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00001058 if( SQLITE_OK==pPager->errCode ){
danielk197704103022009-02-03 16:51:24 +00001059 sqlite3BackupRestart(pPager->pBackup);
danielk1977bea2a942009-01-20 17:06:27 +00001060 sqlite3PcacheClear(pPager->pPCache);
drh59813952009-04-20 11:34:26 +00001061 pPager->dbSizeValid = 0;
danielk1977bea2a942009-01-20 17:06:27 +00001062 }
danielk1977e277be02007-03-23 18:12:06 +00001063}
1064
danielk197734cf35d2008-12-18 18:31:38 +00001065/*
1066** Free all structures in the Pager.aSavepoint[] array and set both
1067** Pager.aSavepoint and Pager.nSavepoint to zero. Close the sub-journal
1068** if it is open and the pager is not in exclusive mode.
1069*/
danielk1977bea2a942009-01-20 17:06:27 +00001070static void releaseAllSavepoints(Pager *pPager){
1071 int ii; /* Iterator for looping through Pager.aSavepoint */
danielk1977fd7f0452008-12-17 17:30:26 +00001072 for(ii=0; ii<pPager->nSavepoint; ii++){
1073 sqlite3BitvecDestroy(pPager->aSavepoint[ii].pInSavepoint);
1074 }
danielk1977f9d1a212009-04-30 16:41:00 +00001075 if( !pPager->exclusiveMode || sqlite3IsMemJournal(pPager->sjfd) ){
danielk1977fd7f0452008-12-17 17:30:26 +00001076 sqlite3OsClose(pPager->sjfd);
1077 }
1078 sqlite3_free(pPager->aSavepoint);
1079 pPager->aSavepoint = 0;
1080 pPager->nSavepoint = 0;
danielk1977bea2a942009-01-20 17:06:27 +00001081 pPager->nSubRec = 0;
danielk1977fd7f0452008-12-17 17:30:26 +00001082}
1083
danielk197734cf35d2008-12-18 18:31:38 +00001084/*
danielk1977bea2a942009-01-20 17:06:27 +00001085** Set the bit number pgno in the PagerSavepoint.pInSavepoint
1086** bitvecs of all open savepoints. Return SQLITE_OK if successful
1087** or SQLITE_NOMEM if a malloc failure occurs.
danielk197734cf35d2008-12-18 18:31:38 +00001088*/
danielk1977fd7f0452008-12-17 17:30:26 +00001089static int addToSavepointBitvecs(Pager *pPager, Pgno pgno){
drh7539b6b2009-01-02 21:39:39 +00001090 int ii; /* Loop counter */
1091 int rc = SQLITE_OK; /* Result code */
1092
danielk1977fd7f0452008-12-17 17:30:26 +00001093 for(ii=0; ii<pPager->nSavepoint; ii++){
1094 PagerSavepoint *p = &pPager->aSavepoint[ii];
1095 if( pgno<=p->nOrig ){
drh7539b6b2009-01-02 21:39:39 +00001096 rc |= sqlite3BitvecSet(p->pInSavepoint, pgno);
danielk1977bea2a942009-01-20 17:06:27 +00001097 testcase( rc==SQLITE_NOMEM );
drh7539b6b2009-01-02 21:39:39 +00001098 assert( rc==SQLITE_OK || rc==SQLITE_NOMEM );
danielk1977fd7f0452008-12-17 17:30:26 +00001099 }
1100 }
drh7539b6b2009-01-02 21:39:39 +00001101 return rc;
danielk1977fd7f0452008-12-17 17:30:26 +00001102}
1103
danielk1977e277be02007-03-23 18:12:06 +00001104/*
danielk1977bea2a942009-01-20 17:06:27 +00001105** Unlock the database file. This function is a no-op if the pager
1106** is in exclusive mode.
danielk1977ae72d982007-10-03 08:46:44 +00001107**
1108** If the pager is currently in error state, discard the contents of
1109** the cache and reset the Pager structure internal state. If there is
1110** an open journal-file, then the next time a shared-lock is obtained
1111** on the pager file (by this or any other process), it will be
1112** treated as a hot-journal and rolled back.
1113*/
1114static void pager_unlock(Pager *pPager){
1115 if( !pPager->exclusiveMode ){
danielk1977bea2a942009-01-20 17:06:27 +00001116 int rc; /* Return code */
danielk1977ae72d982007-10-03 08:46:44 +00001117
danielk1977b3175382008-10-17 18:51:52 +00001118 /* Always close the journal file when dropping the database lock.
1119 ** Otherwise, another connection with journal_mode=delete might
1120 ** delete the file out from under us.
1121 */
danielk1977bea2a942009-01-20 17:06:27 +00001122 sqlite3OsClose(pPager->jfd);
1123 sqlite3BitvecDestroy(pPager->pInJournal);
1124 pPager->pInJournal = 0;
1125 releaseAllSavepoints(pPager);
1126
1127 /* If the file is unlocked, somebody else might change it. The
1128 ** values stored in Pager.dbSize etc. might become invalid if
1129 ** this happens. TODO: Really, this doesn't need to be cleared
danielk197789bc4bc2009-07-21 19:25:24 +00001130 ** until the change-counter check fails in PagerSharedLock().
danielk1977bea2a942009-01-20 17:06:27 +00001131 */
1132 pPager->dbSizeValid = 0;
danielk1977ae72d982007-10-03 08:46:44 +00001133
danielk19775f2d46b2009-01-13 16:03:44 +00001134 rc = osUnlock(pPager->fd, NO_LOCK);
danielk1977bea2a942009-01-20 17:06:27 +00001135 if( rc ){
1136 pPager->errCode = rc;
1137 }
danielk19775f2d46b2009-01-13 16:03:44 +00001138 IOTRACE(("UNLOCK %p\n", pPager))
1139
danielk1977b3175382008-10-17 18:51:52 +00001140 /* If Pager.errCode is set, the contents of the pager cache cannot be
1141 ** trusted. Now that the pager file is unlocked, the contents of the
1142 ** cache can be discarded and the error code safely cleared.
1143 */
1144 if( pPager->errCode ){
danielk1977bea2a942009-01-20 17:06:27 +00001145 if( rc==SQLITE_OK ){
1146 pPager->errCode = SQLITE_OK;
1147 }
danielk1977b3175382008-10-17 18:51:52 +00001148 pager_reset(pPager);
danielk1977ae72d982007-10-03 08:46:44 +00001149 }
danielk1977b3175382008-10-17 18:51:52 +00001150
danielk197745d68822009-01-16 16:23:38 +00001151 pPager->changeCountDone = 0;
danielk1977bea2a942009-01-20 17:06:27 +00001152 pPager->state = PAGER_UNLOCK;
danielk1977ae72d982007-10-03 08:46:44 +00001153 }
1154}
1155
1156/*
danielk1977bea2a942009-01-20 17:06:27 +00001157** This function should be called when an IOERR, CORRUPT or FULL error
shanebe217792009-03-05 04:20:31 +00001158** may have occurred. The first argument is a pointer to the pager
danielk1977bea2a942009-01-20 17:06:27 +00001159** structure, the second the error-code about to be returned by a pager
1160** API function. The value returned is a copy of the second argument
1161** to this function.
1162**
1163** If the second argument is SQLITE_IOERR, SQLITE_CORRUPT, or SQLITE_FULL
1164** the error becomes persistent. Until the persisten error is cleared,
1165** subsequent API calls on this Pager will immediately return the same
1166** error code.
1167**
1168** A persistent error indicates that the contents of the pager-cache
1169** cannot be trusted. This state can be cleared by completely discarding
1170** the contents of the pager-cache. If a transaction was active when
shanebe217792009-03-05 04:20:31 +00001171** the persistent error occurred, then the rollback journal may need
danielk1977bea2a942009-01-20 17:06:27 +00001172** to be replayed to restore the contents of the database file (as if
1173** it were a hot-journal).
1174*/
1175static int pager_error(Pager *pPager, int rc){
1176 int rc2 = rc & 0xff;
1177 assert(
1178 pPager->errCode==SQLITE_FULL ||
1179 pPager->errCode==SQLITE_OK ||
1180 (pPager->errCode & 0xff)==SQLITE_IOERR
1181 );
1182 if(
1183 rc2==SQLITE_FULL ||
1184 rc2==SQLITE_IOERR ||
1185 rc2==SQLITE_CORRUPT
1186 ){
1187 pPager->errCode = rc;
1188 if( pPager->state==PAGER_UNLOCK
1189 && sqlite3PcacheRefCount(pPager->pPCache)==0
1190 ){
1191 /* If the pager is already unlocked, call pager_unlock() now to
1192 ** clear the error state and ensure that the pager-cache is
1193 ** completely empty.
1194 */
1195 pager_unlock(pPager);
1196 }
1197 }
1198 return rc;
1199}
1200
1201/*
danielk1977ae72d982007-10-03 08:46:44 +00001202** Execute a rollback if a transaction is active and unlock the
danielk1977bea2a942009-01-20 17:06:27 +00001203** database file.
1204**
1205** If the pager has already entered the error state, do not attempt
1206** the rollback at this time. Instead, pager_unlock() is called. The
1207** call to pager_unlock() will discard all in-memory pages, unlock
1208** the database file and clear the error state. If this means that
1209** there is a hot-journal left in the file-system, the next connection
1210** to obtain a shared lock on the pager (which may be this one) will
1211** roll it back.
1212**
1213** If the pager has not already entered the error state, but an IO or
1214** malloc error occurs during a rollback, then this will itself cause
1215** the pager to enter the error state. Which will be cleared by the
1216** call to pager_unlock(), as described above.
danielk1977ae72d982007-10-03 08:46:44 +00001217*/
danielk1977bea2a942009-01-20 17:06:27 +00001218static void pagerUnlockAndRollback(Pager *pPager){
1219 if( pPager->errCode==SQLITE_OK && pPager->state>=PAGER_RESERVED ){
danielk19772d1d86f2008-06-20 14:59:51 +00001220 sqlite3BeginBenignMalloc();
danielk1977bea2a942009-01-20 17:06:27 +00001221 sqlite3PagerRollback(pPager);
danielk19772d1d86f2008-06-20 14:59:51 +00001222 sqlite3EndBenignMalloc();
danielk1977ae72d982007-10-03 08:46:44 +00001223 }
danielk1977bea2a942009-01-20 17:06:27 +00001224 pager_unlock(pPager);
danielk1977ae72d982007-10-03 08:46:44 +00001225}
1226
1227/*
danielk1977bea2a942009-01-20 17:06:27 +00001228** This routine ends a transaction. A transaction is usually ended by
1229** either a COMMIT or a ROLLBACK operation. This routine may be called
1230** after rollback of a hot-journal, or if an error occurs while opening
1231** the journal file or writing the very first journal-header of a
1232** database transaction.
1233**
1234** If the pager is in PAGER_SHARED or PAGER_UNLOCK state when this
1235** routine is called, it is a no-op (returns SQLITE_OK).
drh80e35f42007-03-30 14:06:34 +00001236**
danielk1977bea2a942009-01-20 17:06:27 +00001237** Otherwise, any active savepoints are released.
drh80e35f42007-03-30 14:06:34 +00001238**
danielk1977bea2a942009-01-20 17:06:27 +00001239** If the journal file is open, then it is "finalized". Once a journal
1240** file has been finalized it is not possible to use it to roll back a
1241** transaction. Nor will it be considered to be a hot-journal by this
1242** or any other database connection. Exactly how a journal is finalized
1243** depends on whether or not the pager is running in exclusive mode and
1244** the current journal-mode (Pager.journalMode value), as follows:
drh50457892003-09-06 01:10:47 +00001245**
danielk1977bea2a942009-01-20 17:06:27 +00001246** journalMode==MEMORY
1247** Journal file descriptor is simply closed. This destroys an
1248** in-memory journal.
1249**
1250** journalMode==TRUNCATE
1251** Journal file is truncated to zero bytes in size.
1252**
1253** journalMode==PERSIST
1254** The first 28 bytes of the journal file are zeroed. This invalidates
1255** the first journal header in the file, and hence the entire journal
1256** file. An invalid journal file cannot be rolled back.
1257**
1258** journalMode==DELETE
1259** The journal file is closed and deleted using sqlite3OsDelete().
1260**
1261** If the pager is running in exclusive mode, this method of finalizing
1262** the journal file is never used. Instead, if the journalMode is
1263** DELETE and the pager is in exclusive mode, the method described under
1264** journalMode==PERSIST is used instead.
1265**
1266** After the journal is finalized, if running in non-exclusive mode, the
1267** pager moves to PAGER_SHARED state (and downgrades the lock on the
1268** database file accordingly).
1269**
1270** If the pager is running in exclusive mode and is in PAGER_SYNCED state,
1271** it moves to PAGER_EXCLUSIVE. No locks are downgraded when running in
1272** exclusive mode.
1273**
1274** SQLITE_OK is returned if no error occurs. If an error occurs during
1275** any of the IO operations to finalize the journal file or unlock the
1276** database then the IO error code is returned to the user. If the
1277** operation to finalize the journal file fails, then the code still
1278** tries to unlock the database file if not in exclusive mode. If the
1279** unlock operation fails as well, then the first error code related
1280** to the first error encountered (the journal finalization one) is
1281** returned.
drhed7c8552001-04-11 14:29:21 +00001282*/
danielk1977df2566a2008-05-07 19:11:03 +00001283static int pager_end_transaction(Pager *pPager, int hasMaster){
danielk1977bea2a942009-01-20 17:06:27 +00001284 int rc = SQLITE_OK; /* Error code from journal finalization operation */
1285 int rc2 = SQLITE_OK; /* Error code from db file unlock operation */
1286
drha6abd042004-06-09 17:37:22 +00001287 if( pPager->state<PAGER_RESERVED ){
1288 return SQLITE_OK;
1289 }
danielk1977bea2a942009-01-20 17:06:27 +00001290 releaseAllSavepoints(pPager);
1291
1292 assert( isOpen(pPager->jfd) || pPager->pInJournal==0 );
1293 if( isOpen(pPager->jfd) ){
1294
1295 /* TODO: There's a problem here if a journal-file was opened in MEMORY
1296 ** mode and then the journal-mode is changed to TRUNCATE or PERSIST
1297 ** during the transaction. This code should be changed to assume
1298 ** that the journal mode has not changed since the transaction was
1299 ** started. And the sqlite3PagerJournalMode() function should be
1300 ** changed to make sure that this is the case too.
1301 */
1302
1303 /* Finalize the journal file. */
danielk1977b3175382008-10-17 18:51:52 +00001304 if( pPager->journalMode==PAGER_JOURNALMODE_MEMORY ){
drh5e1fa032009-07-25 15:24:13 +00001305 assert( sqlite3IsMemJournal(pPager->jfd) );
danielk1977b3175382008-10-17 18:51:52 +00001306 sqlite3OsClose(pPager->jfd);
drh9e7ba7c2009-02-04 19:16:23 +00001307 }else if( pPager->journalMode==PAGER_JOURNALMODE_TRUNCATE ){
drh59813952009-04-20 11:34:26 +00001308 if( pPager->journalOff==0 ){
1309 rc = SQLITE_OK;
1310 }else{
1311 rc = sqlite3OsTruncate(pPager->jfd, 0);
1312 }
drh04335882008-09-26 21:08:08 +00001313 pPager->journalOff = 0;
1314 pPager->journalStarted = 0;
1315 }else if( pPager->exclusiveMode
danielk197793f7af92008-05-09 16:57:50 +00001316 || pPager->journalMode==PAGER_JOURNALMODE_PERSIST
1317 ){
1318 rc = zeroJournalHdr(pPager, hasMaster);
1319 pager_error(pPager, rc);
danielk197741483462007-03-24 16:45:04 +00001320 pPager->journalOff = 0;
danielk1977334cdb62007-03-26 08:05:12 +00001321 pPager->journalStarted = 0;
danielk197741483462007-03-24 16:45:04 +00001322 }else{
drh4775ecd2009-07-24 19:01:19 +00001323 assert( pPager->journalMode==PAGER_JOURNALMODE_DELETE );
danielk1977b4b47412007-08-17 15:53:36 +00001324 sqlite3OsClose(pPager->jfd);
drh4775ecd2009-07-24 19:01:19 +00001325 if( !pPager->tempFile ){
danielk1977fee2d252007-08-18 10:59:19 +00001326 rc = sqlite3OsDelete(pPager->pVfs, pPager->zJournal, 0);
danielk19777152de82007-03-29 17:28:14 +00001327 }
danielk197741483462007-03-24 16:45:04 +00001328 }
danielk1977bea2a942009-01-20 17:06:27 +00001329
danielk19773c407372005-02-15 02:54:14 +00001330#ifdef SQLITE_CHECK_PAGES
danielk1977bc2ca9e2008-11-13 14:28:28 +00001331 sqlite3PcacheIterateDirty(pPager->pPCache, pager_set_pagehash);
danielk19773c407372005-02-15 02:54:14 +00001332#endif
danielk1977bea2a942009-01-20 17:06:27 +00001333
danielk1977bc2ca9e2008-11-13 14:28:28 +00001334 sqlite3PcacheCleanAll(pPager->pPCache);
danielk1977bea2a942009-01-20 17:06:27 +00001335 sqlite3BitvecDestroy(pPager->pInJournal);
1336 pPager->pInJournal = 0;
danielk1977ef317ab2004-06-23 10:43:10 +00001337 pPager->nRec = 0;
drhd9b02572001-04-15 00:37:09 +00001338 }
danielk1977979f38e2007-03-27 16:19:51 +00001339
danielk197741483462007-03-24 16:45:04 +00001340 if( !pPager->exclusiveMode ){
danielk19777a2b1ee2007-08-21 14:27:01 +00001341 rc2 = osUnlock(pPager->fd, SHARED_LOCK);
danielk197741483462007-03-24 16:45:04 +00001342 pPager->state = PAGER_SHARED;
danielk1977104f1fe2009-01-14 17:45:57 +00001343 pPager->changeCountDone = 0;
danielk1977334cdb62007-03-26 08:05:12 +00001344 }else if( pPager->state==PAGER_SYNCED ){
1345 pPager->state = PAGER_EXCLUSIVE;
danielk197741483462007-03-24 16:45:04 +00001346 }
danielk197776572402004-06-25 02:38:54 +00001347 pPager->setMaster = 0;
danielk1977c4da5b92006-01-21 12:08:54 +00001348 pPager->needSync = 0;
danielk1977bea2a942009-01-20 17:06:27 +00001349 pPager->dbModified = 0;
1350
1351 /* TODO: Is this optimal? Why is the db size invalidated here
1352 ** when the database file is not unlocked? */
1353 pPager->dbOrigSize = 0;
danielk1977f90b7262009-01-07 15:18:20 +00001354 sqlite3PcacheTruncate(pPager->pPCache, pPager->dbSize);
danielk1977b3175382008-10-17 18:51:52 +00001355 if( !MEMDB ){
danielk1977d92db532008-11-17 04:56:24 +00001356 pPager->dbSizeValid = 0;
danielk1977b3175382008-10-17 18:51:52 +00001357 }
danielk1977979f38e2007-03-27 16:19:51 +00001358
1359 return (rc==SQLITE_OK?rc2:rc);
drhed7c8552001-04-11 14:29:21 +00001360}
1361
drhed7c8552001-04-11 14:29:21 +00001362/*
danielk1977bea2a942009-01-20 17:06:27 +00001363** Parameter aData must point to a buffer of pPager->pageSize bytes
1364** of data. Compute and return a checksum based ont the contents of the
1365** page of data and the current value of pPager->cksumInit.
drh34e79ce2004-02-08 06:05:46 +00001366**
danielk1977bea2a942009-01-20 17:06:27 +00001367** This is not a real checksum. It is really just the sum of the
1368** random initial value (pPager->cksumInit) and every 200th byte
1369** of the page data, starting with byte offset (pPager->pageSize%200).
1370** Each byte is interpreted as an 8-bit unsigned integer.
drh726de592004-06-10 23:35:50 +00001371**
danielk1977bea2a942009-01-20 17:06:27 +00001372** Changing the formula used to compute this checksum results in an
1373** incompatible journal file format.
1374**
1375** If journal corruption occurs due to a power failure, the most likely
1376** scenario is that one end or the other of the record will be changed.
1377** It is much less likely that the two ends of the journal record will be
drh726de592004-06-10 23:35:50 +00001378** correct and the middle be corrupt. Thus, this "checksum" scheme,
1379** though fast and simple, catches the mostly likely kind of corruption.
drh968af522003-02-11 14:55:40 +00001380*/
drh74161702006-02-24 02:53:49 +00001381static u32 pager_cksum(Pager *pPager, const u8 *aData){
danielk1977bea2a942009-01-20 17:06:27 +00001382 u32 cksum = pPager->cksumInit; /* Checksum value to return */
1383 int i = pPager->pageSize-200; /* Loop counter */
danielk1977ef317ab2004-06-23 10:43:10 +00001384 while( i>0 ){
1385 cksum += aData[i];
1386 i -= 200;
1387 }
drh968af522003-02-11 14:55:40 +00001388 return cksum;
1389}
1390
1391/*
drhd6e5e092009-01-07 02:03:35 +00001392** Read a single page from either the journal file (if isMainJrnl==1) or
1393** from the sub-journal (if isMainJrnl==0) and playback that page.
danielk1977bea2a942009-01-20 17:06:27 +00001394** The page begins at offset *pOffset into the file. The *pOffset
drhd6e5e092009-01-07 02:03:35 +00001395** value is increased to the start of the next page in the journal.
drh968af522003-02-11 14:55:40 +00001396**
drhc13148f2008-08-27 18:03:20 +00001397** The isMainJrnl flag is true if this is the main rollback journal and
1398** false for the statement journal. The main rollback journal uses
1399** checksums - the statement journal does not.
drhd6e5e092009-01-07 02:03:35 +00001400**
danielk1977bea2a942009-01-20 17:06:27 +00001401** If the page number of the page record read from the (sub-)journal file
1402** is greater than the current value of Pager.dbSize, then playback is
1403** skipped and SQLITE_OK is returned.
1404**
drhd6e5e092009-01-07 02:03:35 +00001405** If pDone is not NULL, then it is a record of pages that have already
1406** been played back. If the page at *pOffset has already been played back
1407** (if the corresponding pDone bit is set) then skip the playback.
1408** Make sure the pDone bit corresponding to the *pOffset page is set
1409** prior to returning.
danielk1977bea2a942009-01-20 17:06:27 +00001410**
1411** If the page record is successfully read from the (sub-)journal file
1412** and played back, then SQLITE_OK is returned. If an IO error occurs
1413** while reading the record from the (sub-)journal file or while writing
1414** to the database file, then the IO error code is returned. If data
1415** is successfully read from the (sub-)journal file but appears to be
1416** corrupted, SQLITE_DONE is returned. Data is considered corrupted in
1417** two circumstances:
1418**
1419** * If the record page-number is illegal (0 or PAGER_MJ_PGNO), or
1420** * If the record is being rolled back from the main journal file
1421** and the checksum field does not match the record content.
1422**
1423** Neither of these two scenarios are possible during a savepoint rollback.
1424**
1425** If this is a savepoint rollback, then memory may have to be dynamically
1426** allocated by this function. If this is the case and an allocation fails,
1427** SQLITE_NOMEM is returned.
drhfa86c412002-02-02 15:01:15 +00001428*/
danielk197762079062007-08-15 17:08:46 +00001429static int pager_playback_one_page(
danielk1977fd7f0452008-12-17 17:30:26 +00001430 Pager *pPager, /* The pager being played back */
1431 int isMainJrnl, /* 1 -> main journal. 0 -> sub-journal. */
danielk1977f7f33fb2009-02-12 09:11:56 +00001432 int isUnsync, /* True if reading from unsynced main journal */
drhd6e5e092009-01-07 02:03:35 +00001433 i64 *pOffset, /* Offset of record to playback */
danielk1977ecfef982008-12-20 08:39:57 +00001434 int isSavepnt, /* True for a savepoint rollback */
danielk1977fd7f0452008-12-17 17:30:26 +00001435 Bitvec *pDone /* Bitvec of pages already played back */
danielk197762079062007-08-15 17:08:46 +00001436){
drhfa86c412002-02-02 15:01:15 +00001437 int rc;
drhae2b40c2004-06-09 19:03:54 +00001438 PgHdr *pPg; /* An existing page in the cache */
1439 Pgno pgno; /* The page number of a page in journal */
1440 u32 cksum; /* Checksum used for sanity checking */
drhd6e5e092009-01-07 02:03:35 +00001441 u8 *aData; /* Temporary storage for the page */
1442 sqlite3_file *jfd; /* The file descriptor for the journal file */
drhfa86c412002-02-02 15:01:15 +00001443
drhd6e5e092009-01-07 02:03:35 +00001444 assert( (isMainJrnl&~1)==0 ); /* isMainJrnl is 0 or 1 */
1445 assert( (isSavepnt&~1)==0 ); /* isSavepnt is 0 or 1 */
1446 assert( isMainJrnl || pDone ); /* pDone always used on sub-journals */
1447 assert( isSavepnt || pDone==0 ); /* pDone never used on non-savepoint */
drh96362842005-03-20 22:47:56 +00001448
drhd6e5e092009-01-07 02:03:35 +00001449 aData = (u8*)pPager->pTmpSpace;
1450 assert( aData ); /* Temp storage must have already been allocated */
1451
danielk1977bea2a942009-01-20 17:06:27 +00001452 /* Read the page number and page data from the journal or sub-journal
1453 ** file. Return an error code to the caller if an IO error occurs.
1454 */
drhd6e5e092009-01-07 02:03:35 +00001455 jfd = isMainJrnl ? pPager->jfd : pPager->sjfd;
drhd6e5e092009-01-07 02:03:35 +00001456 rc = read32bits(jfd, *pOffset, &pgno);
drh99ee3602003-02-16 19:13:36 +00001457 if( rc!=SQLITE_OK ) return rc;
drhd6e5e092009-01-07 02:03:35 +00001458 rc = sqlite3OsRead(jfd, aData, pPager->pageSize, (*pOffset)+4);
drh99ee3602003-02-16 19:13:36 +00001459 if( rc!=SQLITE_OK ) return rc;
drhd6e5e092009-01-07 02:03:35 +00001460 *pOffset += pPager->pageSize + 4 + isMainJrnl*4;
drhfa86c412002-02-02 15:01:15 +00001461
drh968af522003-02-11 14:55:40 +00001462 /* Sanity checking on the page. This is more important that I originally
1463 ** thought. If a power failure occurs while the journal is being written,
1464 ** it could cause invalid data to be written into the journal. We need to
1465 ** detect this invalid data (with high probability) and ignore it.
1466 */
danielk197775edc162004-06-26 01:48:18 +00001467 if( pgno==0 || pgno==PAGER_MJ_PGNO(pPager) ){
danielk1977bea2a942009-01-20 17:06:27 +00001468 assert( !isSavepnt );
drh968af522003-02-11 14:55:40 +00001469 return SQLITE_DONE;
1470 }
danielk1977fd7f0452008-12-17 17:30:26 +00001471 if( pgno>(Pgno)pPager->dbSize || sqlite3BitvecTest(pDone, pgno) ){
drh968af522003-02-11 14:55:40 +00001472 return SQLITE_OK;
1473 }
drhc13148f2008-08-27 18:03:20 +00001474 if( isMainJrnl ){
drhd6e5e092009-01-07 02:03:35 +00001475 rc = read32bits(jfd, (*pOffset)-4, &cksum);
drh99ee3602003-02-16 19:13:36 +00001476 if( rc ) return rc;
danielk1977ecfef982008-12-20 08:39:57 +00001477 if( !isSavepnt && pager_cksum(pPager, aData)!=cksum ){
drh968af522003-02-11 14:55:40 +00001478 return SQLITE_DONE;
1479 }
1480 }
danielk1977bea2a942009-01-20 17:06:27 +00001481
danielk1977859546c2009-01-22 17:12:39 +00001482 if( pDone && (rc = sqlite3BitvecSet(pDone, pgno))!=SQLITE_OK ){
danielk1977fd7f0452008-12-17 17:30:26 +00001483 return rc;
1484 }
drhfa86c412002-02-02 15:01:15 +00001485
danielk1977aa5ccdf2004-06-14 05:10:42 +00001486 assert( pPager->state==PAGER_RESERVED || pPager->state>=PAGER_EXCLUSIVE );
danielk1977a3f3a5f2004-06-10 04:32:16 +00001487
1488 /* If the pager is in RESERVED state, then there must be a copy of this
1489 ** page in the pager cache. In this case just update the pager cache,
danielk19770de0bb32004-06-10 05:59:24 +00001490 ** not the database file. The page is left marked dirty in this case.
1491 **
danielk19772df71c72007-05-24 07:22:42 +00001492 ** An exception to the above rule: If the database is in no-sync mode
1493 ** and a page is moved during an incremental vacuum then the page may
danielk1977369f3a02007-05-24 09:41:20 +00001494 ** not be in the pager cache. Later: if a malloc() or IO error occurs
1495 ** during a Movepage() call, then the page may not be in the cache
1496 ** either. So the condition described in the above paragraph is not
1497 ** assert()able.
danielk19772df71c72007-05-24 07:22:42 +00001498 **
danielk1977a3f3a5f2004-06-10 04:32:16 +00001499 ** If in EXCLUSIVE state, then we update the pager cache if it exists
1500 ** and the main file. The page is then marked not dirty.
drh96362842005-03-20 22:47:56 +00001501 **
1502 ** Ticket #1171: The statement journal might contain page content that is
1503 ** different from the page content at the start of the transaction.
1504 ** This occurs when a page is changed prior to the start of a statement
1505 ** then changed again within the statement. When rolling back such a
1506 ** statement we must not write to the original database unless we know
drh5e385312007-06-16 04:42:12 +00001507 ** for certain that original page contents are synced into the main rollback
1508 ** journal. Otherwise, a power loss might leave modified data in the
1509 ** database file without an entry in the rollback journal that can
1510 ** restore the database to its original form. Two conditions must be
1511 ** met before writing to the database files. (1) the database must be
1512 ** locked. (2) we know that the original page content is fully synced
1513 ** in the main journal either because the page is not in cache or else
1514 ** the page is marked as needSync==0.
drh4c02a232008-04-14 23:13:45 +00001515 **
1516 ** 2008-04-14: When attempting to vacuum a corrupt database file, it
1517 ** is possible to fail a statement on a database that does not yet exist.
1518 ** Do not attempt to write if database file has never been opened.
drhfa86c412002-02-02 15:01:15 +00001519 */
drhae2b40c2004-06-09 19:03:54 +00001520 pPg = pager_lookup(pPager, pgno);
drh86655a12009-03-31 02:54:40 +00001521 assert( pPg || !MEMDB );
drh30d53702009-01-06 15:58:57 +00001522 PAGERTRACE(("PLAYBACK %d page %d hash(%08x) %s\n",
danielk1977ecfef982008-12-20 08:39:57 +00001523 PAGERID(pPager), pgno, pager_datahash(pPager->pageSize, aData),
1524 (isMainJrnl?"main-journal":"sub-journal")
drh30d53702009-01-06 15:58:57 +00001525 ));
danielk19778c0a7912008-08-20 14:49:23 +00001526 if( (pPager->state>=PAGER_EXCLUSIVE)
1527 && (pPg==0 || 0==(pPg->flags&PGHDR_NEED_SYNC))
danielk1977bea2a942009-01-20 17:06:27 +00001528 && isOpen(pPager->fd)
danielk1977f7f33fb2009-02-12 09:11:56 +00001529 && !isUnsync
danielk19778c0a7912008-08-20 14:49:23 +00001530 ){
drh281b21d2008-08-22 12:57:08 +00001531 i64 ofst = (pgno-1)*(i64)pPager->pageSize;
1532 rc = sqlite3OsWrite(pPager->fd, aData, pPager->pageSize, ofst);
danielk19773460d192008-12-27 15:23:13 +00001533 if( pgno>pPager->dbFileSize ){
1534 pPager->dbFileSize = pgno;
1535 }
drh0719ee22009-06-18 20:52:47 +00001536 if( pPager->pBackup ){
drh0472b5a2009-06-19 02:25:48 +00001537 CODEC1(pPager, aData, pgno, 3, rc=SQLITE_NOMEM);
drh0719ee22009-06-18 20:52:47 +00001538 sqlite3BackupUpdate(pPager->pBackup, pgno, aData);
drh0472b5a2009-06-19 02:25:48 +00001539 CODEC1(pPager, aData, pgno, 0, rc=SQLITE_NOMEM);
drh0719ee22009-06-18 20:52:47 +00001540 }
danielk1977f2c31ad2009-01-06 13:40:08 +00001541 }else if( !isMainJrnl && pPg==0 ){
1542 /* If this is a rollback of a savepoint and data was not written to
1543 ** the database and the page is not in-memory, there is a potential
1544 ** problem. When the page is next fetched by the b-tree layer, it
1545 ** will be read from the database file, which may or may not be
1546 ** current.
1547 **
1548 ** There are a couple of different ways this can happen. All are quite
danielk1977401b65e2009-01-06 14:34:34 +00001549 ** obscure. When running in synchronous mode, this can only happen
danielk1977f2c31ad2009-01-06 13:40:08 +00001550 ** if the page is on the free-list at the start of the transaction, then
1551 ** populated, then moved using sqlite3PagerMovepage().
1552 **
1553 ** The solution is to add an in-memory page to the cache containing
1554 ** the data just read from the sub-journal. Mark the page as dirty
1555 ** and if the pager requires a journal-sync, then mark the page as
1556 ** requiring a journal-sync before it is written.
1557 */
1558 assert( isSavepnt );
danielk1977859546c2009-01-22 17:12:39 +00001559 if( (rc = sqlite3PagerAcquire(pPager, pgno, &pPg, 1))!=SQLITE_OK ){
danielk1977f2c31ad2009-01-06 13:40:08 +00001560 return rc;
1561 }
1562 pPg->flags &= ~PGHDR_NEED_READ;
1563 sqlite3PcacheMakeDirty(pPg);
danielk1977a3f3a5f2004-06-10 04:32:16 +00001564 }
drhfa86c412002-02-02 15:01:15 +00001565 if( pPg ){
danielk197728129562005-01-11 10:25:06 +00001566 /* No page should ever be explicitly rolled back that is in use, except
1567 ** for page 1 which is held in use in order to keep the lock on the
1568 ** database active. However such a page may be rolled back as a result
1569 ** of an internal error resulting in an automatic call to
danielk19773b8a05f2007-03-19 17:44:26 +00001570 ** sqlite3PagerRollback().
drhacf4ac92003-12-17 23:57:34 +00001571 */
drhb6f41482004-05-14 01:58:11 +00001572 void *pData;
danielk19778c0a7912008-08-20 14:49:23 +00001573 pData = pPg->pData;
drhae2b40c2004-06-09 19:03:54 +00001574 memcpy(pData, aData, pPager->pageSize);
drh4775ecd2009-07-24 19:01:19 +00001575 pPager->xReiniter(pPg);
danielk1977bea2a942009-01-20 17:06:27 +00001576 if( isMainJrnl && (!isSavepnt || *pOffset<=pPager->journalHdr) ){
danielk1977488af092008-12-19 16:31:11 +00001577 /* If the contents of this page were just restored from the main
1578 ** journal file, then its content must be as they were when the
1579 ** transaction was first opened. In this case we can mark the page
1580 ** as clean, since there will be no need to write it out to the.
1581 **
1582 ** There is one exception to this rule. If the page is being rolled
1583 ** back as part of a savepoint (or statement) rollback from an
1584 ** unsynced portion of the main journal file, then it is not safe
1585 ** to mark the page as clean. This is because marking the page as
1586 ** clean will clear the PGHDR_NEED_SYNC flag. Since the page is
1587 ** already in the journal file (recorded in Pager.pInJournal) and
1588 ** the PGHDR_NEED_SYNC flag is cleared, if the page is written to
1589 ** again within this transaction, it will be marked as dirty but
1590 ** the PGHDR_NEED_SYNC flag will not be set. It could then potentially
1591 ** be written out into the database file before its journal file
1592 ** segment is synced. If a crash occurs during or following this,
1593 ** database corruption may ensue.
1594 */
drhc047b9f2008-11-21 03:23:43 +00001595 sqlite3PcacheMakeClean(pPg);
1596 }
danielk19773c407372005-02-15 02:54:14 +00001597#ifdef SQLITE_CHECK_PAGES
drh96362842005-03-20 22:47:56 +00001598 pPg->pageHash = pager_pagehash(pPg);
danielk19773c407372005-02-15 02:54:14 +00001599#endif
drh86a88112007-04-16 15:02:19 +00001600 /* If this was page 1, then restore the value of Pager.dbFileVers.
1601 ** Do this before any decoding. */
danielk197741483462007-03-24 16:45:04 +00001602 if( pgno==1 ){
drh86a88112007-04-16 15:02:19 +00001603 memcpy(&pPager->dbFileVers, &((u8*)pData)[24],sizeof(pPager->dbFileVers));
danielk197741483462007-03-24 16:45:04 +00001604 }
drh86a88112007-04-16 15:02:19 +00001605
1606 /* Decode the page just read from disk */
drh85d2bd22009-06-11 00:47:20 +00001607 CODEC1(pPager, pData, pPg->pgno, 3, rc=SQLITE_NOMEM);
danielk19778c0a7912008-08-20 14:49:23 +00001608 sqlite3PcacheRelease(pPg);
drhfa86c412002-02-02 15:01:15 +00001609 }
1610 return rc;
1611}
1612
drhee03d622009-01-07 15:33:45 +00001613#if !defined(NDEBUG) || defined(SQLITE_COVERAGE_TEST)
drhd6e5e092009-01-07 02:03:35 +00001614/*
1615** This routine looks ahead into the main journal file and determines
1616** whether or not the next record (the record that begins at file
1617** offset pPager->journalOff) is a well-formed page record consisting
1618** of a valid page number, pPage->pageSize bytes of content, followed
1619** by a valid checksum.
1620**
1621** The pager never needs to know this in order to do its job. This
drh3c18eb62009-07-13 15:52:38 +00001622** routine is only used from within assert() and testcase() macros.
drhd6e5e092009-01-07 02:03:35 +00001623*/
1624static int pagerNextJournalPageIsValid(Pager *pPager){
1625 Pgno pgno; /* The page number of the page */
1626 u32 cksum; /* The page checksum */
1627 int rc; /* Return code from read operations */
1628 sqlite3_file *fd; /* The file descriptor from which we are reading */
1629 u8 *aData; /* Content of the page */
1630
1631 /* Read the page number header */
1632 fd = pPager->jfd;
1633 rc = read32bits(fd, pPager->journalOff, &pgno);
1634 if( rc!=SQLITE_OK ){ return 0; } /*NO_TEST*/
1635 if( pgno==0 || pgno==PAGER_MJ_PGNO(pPager) ){ return 0; } /*NO_TEST*/
1636 if( pgno>(Pgno)pPager->dbSize ){ return 0; } /*NO_TEST*/
1637
1638 /* Read the checksum */
1639 rc = read32bits(fd, pPager->journalOff+pPager->pageSize+4, &cksum);
1640 if( rc!=SQLITE_OK ){ return 0; } /*NO_TEST*/
1641
1642 /* Read the data and verify the checksum */
1643 aData = (u8*)pPager->pTmpSpace;
1644 rc = sqlite3OsRead(fd, aData, pPager->pageSize, pPager->journalOff+4);
1645 if( rc!=SQLITE_OK ){ return 0; } /*NO_TEST*/
1646 if( pager_cksum(pPager, aData)!=cksum ){ return 0; } /*NO_TEST*/
1647
1648 /* Reach this point only if the page is valid */
1649 return 1;
1650}
1651#endif /* !defined(NDEBUG) || defined(SQLITE_COVERAGE_TEST) */
1652
drhfa86c412002-02-02 15:01:15 +00001653/*
danielk197713adf8a2004-06-03 16:08:41 +00001654** Parameter zMaster is the name of a master journal file. A single journal
1655** file that referred to the master journal file has just been rolled back.
1656** This routine checks if it is possible to delete the master journal file,
1657** and does so if it is.
drh726de592004-06-10 23:35:50 +00001658**
danielk197765839c62007-08-30 08:08:17 +00001659** Argument zMaster may point to Pager.pTmpSpace. So that buffer is not
1660** available for use within this function.
1661**
danielk1977bea2a942009-01-20 17:06:27 +00001662** When a master journal file is created, it is populated with the names
1663** of all of its child journals, one after another, formatted as utf-8
1664** encoded text. The end of each child journal file is marked with a
1665** nul-terminator byte (0x00). i.e. the entire contents of a master journal
1666** file for a transaction involving two databases might be:
danielk197765839c62007-08-30 08:08:17 +00001667**
danielk1977bea2a942009-01-20 17:06:27 +00001668** "/home/bill/a.db-journal\x00/home/bill/b.db-journal\x00"
1669**
1670** A master journal file may only be deleted once all of its child
1671** journals have been rolled back.
1672**
1673** This function reads the contents of the master-journal file into
1674** memory and loops through each of the child journal names. For
1675** each child journal, it checks if:
1676**
1677** * if the child journal exists, and if so
1678** * if the child journal contains a reference to master journal
1679** file zMaster
1680**
1681** If a child journal can be found that matches both of the criteria
1682** above, this function returns without doing anything. Otherwise, if
1683** no such child journal can be found, file zMaster is deleted from
1684** the file-system using sqlite3OsDelete().
1685**
1686** If an IO error within this function, an error code is returned. This
1687** function allocates memory by calling sqlite3Malloc(). If an allocation
1688** fails, SQLITE_NOMEM is returned. Otherwise, if no IO or malloc errors
1689** occur, SQLITE_OK is returned.
1690**
1691** TODO: This function allocates a single block of memory to load
1692** the entire contents of the master journal file. This could be
1693** a couple of kilobytes or so - potentially larger than the page
1694** size.
danielk197713adf8a2004-06-03 16:08:41 +00001695*/
danielk1977b4b47412007-08-17 15:53:36 +00001696static int pager_delmaster(Pager *pPager, const char *zMaster){
1697 sqlite3_vfs *pVfs = pPager->pVfs;
danielk1977bea2a942009-01-20 17:06:27 +00001698 int rc; /* Return code */
1699 sqlite3_file *pMaster; /* Malloc'd master-journal file descriptor */
1700 sqlite3_file *pJournal; /* Malloc'd child-journal file descriptor */
danielk197713adf8a2004-06-03 16:08:41 +00001701 char *zMasterJournal = 0; /* Contents of master journal file */
drheb206252004-10-01 02:00:31 +00001702 i64 nMasterJournal; /* Size of master journal file */
danielk197713adf8a2004-06-03 16:08:41 +00001703
danielk1977bea2a942009-01-20 17:06:27 +00001704 /* Allocate space for both the pJournal and pMaster file descriptors.
1705 ** If successful, open the master journal file for reading.
danielk197713adf8a2004-06-03 16:08:41 +00001706 */
danielk1977bea2a942009-01-20 17:06:27 +00001707 pMaster = (sqlite3_file *)sqlite3MallocZero(pVfs->szOsFile * 2);
danielk1977fee2d252007-08-18 10:59:19 +00001708 pJournal = (sqlite3_file *)(((u8 *)pMaster) + pVfs->szOsFile);
danielk1977b4b47412007-08-17 15:53:36 +00001709 if( !pMaster ){
1710 rc = SQLITE_NOMEM;
1711 }else{
danielk1977bea2a942009-01-20 17:06:27 +00001712 const int flags = (SQLITE_OPEN_READONLY|SQLITE_OPEN_MASTER_JOURNAL);
danielk1977fee2d252007-08-18 10:59:19 +00001713 rc = sqlite3OsOpen(pVfs, zMaster, pMaster, flags, 0);
danielk1977b4b47412007-08-17 15:53:36 +00001714 }
danielk197713adf8a2004-06-03 16:08:41 +00001715 if( rc!=SQLITE_OK ) goto delmaster_out;
danielk1977b4b47412007-08-17 15:53:36 +00001716
1717 rc = sqlite3OsFileSize(pMaster, &nMasterJournal);
danielk197713adf8a2004-06-03 16:08:41 +00001718 if( rc!=SQLITE_OK ) goto delmaster_out;
1719
1720 if( nMasterJournal>0 ){
danielk19775865e3d2004-06-14 06:03:57 +00001721 char *zJournal;
danielk197776572402004-06-25 02:38:54 +00001722 char *zMasterPtr = 0;
danielk1977bea2a942009-01-20 17:06:27 +00001723 int nMasterPtr = pVfs->mxPathname+1;
danielk19775865e3d2004-06-14 06:03:57 +00001724
1725 /* Load the entire master journal file into space obtained from
drh17435752007-08-16 04:30:38 +00001726 ** sqlite3_malloc() and pointed to by zMasterJournal.
danielk19775865e3d2004-06-14 06:03:57 +00001727 */
drh0b0abe42009-07-25 14:18:57 +00001728 zMasterJournal = sqlite3Malloc((int)nMasterJournal + nMasterPtr + 1);
danielk197713adf8a2004-06-03 16:08:41 +00001729 if( !zMasterJournal ){
1730 rc = SQLITE_NOMEM;
1731 goto delmaster_out;
1732 }
drh0b0abe42009-07-25 14:18:57 +00001733 zMasterPtr = &zMasterJournal[nMasterJournal+1];
drh4f21c4a2008-12-10 22:15:00 +00001734 rc = sqlite3OsRead(pMaster, zMasterJournal, (int)nMasterJournal, 0);
danielk197713adf8a2004-06-03 16:08:41 +00001735 if( rc!=SQLITE_OK ) goto delmaster_out;
drh0b0abe42009-07-25 14:18:57 +00001736 zMasterJournal[nMasterJournal] = 0;
danielk197713adf8a2004-06-03 16:08:41 +00001737
danielk19775865e3d2004-06-14 06:03:57 +00001738 zJournal = zMasterJournal;
1739 while( (zJournal-zMasterJournal)<nMasterJournal ){
danielk1977861f7452008-06-05 11:39:11 +00001740 int exists;
1741 rc = sqlite3OsAccess(pVfs, zJournal, SQLITE_ACCESS_EXISTS, &exists);
1742 if( rc!=SQLITE_OK ){
drh19db9352008-03-27 22:42:51 +00001743 goto delmaster_out;
1744 }
danielk1977861f7452008-06-05 11:39:11 +00001745 if( exists ){
danielk197713adf8a2004-06-03 16:08:41 +00001746 /* One of the journals pointed to by the master journal exists.
1747 ** Open it and check if it points at the master journal. If
1748 ** so, return without deleting the master journal file.
1749 */
drh3b7b78b2004-11-24 01:16:43 +00001750 int c;
danielk1977fee2d252007-08-18 10:59:19 +00001751 int flags = (SQLITE_OPEN_READONLY|SQLITE_OPEN_MAIN_JOURNAL);
1752 rc = sqlite3OsOpen(pVfs, zJournal, pJournal, flags, 0);
danielk197713adf8a2004-06-03 16:08:41 +00001753 if( rc!=SQLITE_OK ){
danielk197713adf8a2004-06-03 16:08:41 +00001754 goto delmaster_out;
1755 }
danielk197713adf8a2004-06-03 16:08:41 +00001756
danielk197765839c62007-08-30 08:08:17 +00001757 rc = readMasterJournal(pJournal, zMasterPtr, nMasterPtr);
danielk1977b4b47412007-08-17 15:53:36 +00001758 sqlite3OsClose(pJournal);
danielk19779eed5052004-06-04 10:38:30 +00001759 if( rc!=SQLITE_OK ){
danielk19779eed5052004-06-04 10:38:30 +00001760 goto delmaster_out;
1761 }
danielk197776572402004-06-25 02:38:54 +00001762
danielk197765839c62007-08-30 08:08:17 +00001763 c = zMasterPtr[0]!=0 && strcmp(zMasterPtr, zMaster)==0;
drh3b7b78b2004-11-24 01:16:43 +00001764 if( c ){
danielk197776572402004-06-25 02:38:54 +00001765 /* We have a match. Do not delete the master journal file. */
1766 goto delmaster_out;
danielk197713adf8a2004-06-03 16:08:41 +00001767 }
1768 }
drhea678832008-12-10 19:26:22 +00001769 zJournal += (sqlite3Strlen30(zJournal)+1);
danielk197713adf8a2004-06-03 16:08:41 +00001770 }
1771 }
1772
danielk1977fee2d252007-08-18 10:59:19 +00001773 rc = sqlite3OsDelete(pVfs, zMaster, 0);
danielk197713adf8a2004-06-03 16:08:41 +00001774
1775delmaster_out:
1776 if( zMasterJournal ){
drh17435752007-08-16 04:30:38 +00001777 sqlite3_free(zMasterJournal);
danielk197713adf8a2004-06-03 16:08:41 +00001778 }
danielk1977bea2a942009-01-20 17:06:27 +00001779 if( pMaster ){
danielk1977b4b47412007-08-17 15:53:36 +00001780 sqlite3OsClose(pMaster);
danielk1977bea2a942009-01-20 17:06:27 +00001781 assert( !isOpen(pJournal) );
danielk197713adf8a2004-06-03 16:08:41 +00001782 }
danielk1977b4b47412007-08-17 15:53:36 +00001783 sqlite3_free(pMaster);
danielk197713adf8a2004-06-03 16:08:41 +00001784 return rc;
1785}
1786
drha6abd042004-06-09 17:37:22 +00001787
drha6abd042004-06-09 17:37:22 +00001788/*
danielk1977bea2a942009-01-20 17:06:27 +00001789** This function is used to change the actual size of the database
1790** file in the file-system. This only happens when committing a transaction,
1791** or rolling back a transaction (including rolling back a hot-journal).
drh7fe3f7e2007-11-29 18:44:27 +00001792**
danielk1977bea2a942009-01-20 17:06:27 +00001793** If the main database file is not open, or an exclusive lock is not
1794** held, this function is a no-op. Otherwise, the size of the file is
1795** changed to nPage pages (nPage*pPager->pageSize bytes). If the file
1796** on disk is currently larger than nPage pages, then use the VFS
1797** xTruncate() method to truncate it.
1798**
1799** Or, it might might be the case that the file on disk is smaller than
1800** nPage pages. Some operating system implementations can get confused if
1801** you try to truncate a file to some size that is larger than it
1802** currently is, so detect this case and write a single zero byte to
1803** the end of the new file instead.
1804**
1805** If successful, return SQLITE_OK. If an IO error occurs while modifying
1806** the database file, return the error code to the caller.
drhcb4c40b2004-08-18 19:09:43 +00001807*/
danielk1977d92db532008-11-17 04:56:24 +00001808static int pager_truncate(Pager *pPager, Pgno nPage){
danielk1977e180dd92007-04-05 17:15:52 +00001809 int rc = SQLITE_OK;
danielk1977bea2a942009-01-20 17:06:27 +00001810 if( pPager->state>=PAGER_EXCLUSIVE && isOpen(pPager->fd) ){
drh7fe3f7e2007-11-29 18:44:27 +00001811 i64 currentSize, newSize;
danielk1977bea2a942009-01-20 17:06:27 +00001812 /* TODO: Is it safe to use Pager.dbFileSize here? */
drh7fe3f7e2007-11-29 18:44:27 +00001813 rc = sqlite3OsFileSize(pPager->fd, &currentSize);
1814 newSize = pPager->pageSize*(i64)nPage;
danielk197706e11af2008-05-06 18:13:26 +00001815 if( rc==SQLITE_OK && currentSize!=newSize ){
1816 if( currentSize>newSize ){
1817 rc = sqlite3OsTruncate(pPager->fd, newSize);
1818 }else{
1819 rc = sqlite3OsWrite(pPager->fd, "", 1, newSize-1);
1820 }
danielk19773460d192008-12-27 15:23:13 +00001821 if( rc==SQLITE_OK ){
1822 pPager->dbFileSize = nPage;
1823 }
drh7fe3f7e2007-11-29 18:44:27 +00001824 }
danielk1977e180dd92007-04-05 17:15:52 +00001825 }
danielk1977e180dd92007-04-05 17:15:52 +00001826 return rc;
drhcb4c40b2004-08-18 19:09:43 +00001827}
1828
1829/*
danielk1977bea2a942009-01-20 17:06:27 +00001830** Set the value of the Pager.sectorSize variable for the given
1831** pager based on the value returned by the xSectorSize method
1832** of the open database file. The sector size will be used used
1833** to determine the size and alignment of journal header and
1834** master journal pointers within created journal files.
drhc80f0582007-05-01 16:59:48 +00001835**
danielk1977bea2a942009-01-20 17:06:27 +00001836** For temporary files the effective sector size is always 512 bytes.
1837**
1838** Otherwise, for non-temporary files, the effective sector size is
1839** the value returned by the xSectorSize() method rounded up to 512 if
1840** it is less than 512, or rounded down to MAX_SECTOR_SIZE if it
1841** is greater than MAX_SECTOR_SIZE.
drhc80f0582007-05-01 16:59:48 +00001842*/
1843static void setSectorSize(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00001844 assert( isOpen(pPager->fd) || pPager->tempFile );
1845
danielk19777a2b1ee2007-08-21 14:27:01 +00001846 if( !pPager->tempFile ){
1847 /* Sector size doesn't matter for temporary files. Also, the file
danielk1977bea2a942009-01-20 17:06:27 +00001848 ** may not have been opened yet, in which case the OsSectorSize()
danielk19777a2b1ee2007-08-21 14:27:01 +00001849 ** call will segfault.
1850 */
1851 pPager->sectorSize = sqlite3OsSectorSize(pPager->fd);
1852 }
drh334c80d2008-03-28 17:41:13 +00001853 if( pPager->sectorSize<512 ){
1854 pPager->sectorSize = 512;
drhc80f0582007-05-01 16:59:48 +00001855 }
danielk19777cbd5892009-01-10 16:15:09 +00001856 if( pPager->sectorSize>MAX_SECTOR_SIZE ){
danielk1977bea2a942009-01-20 17:06:27 +00001857 assert( MAX_SECTOR_SIZE>=512 );
danielk19777cbd5892009-01-10 16:15:09 +00001858 pPager->sectorSize = MAX_SECTOR_SIZE;
1859 }
drhc80f0582007-05-01 16:59:48 +00001860}
1861
1862/*
drhed7c8552001-04-11 14:29:21 +00001863** Playback the journal and thus restore the database file to
1864** the state it was in before we started making changes.
1865**
drh34e79ce2004-02-08 06:05:46 +00001866** The journal file format is as follows:
1867**
drhae2b40c2004-06-09 19:03:54 +00001868** (1) 8 byte prefix. A copy of aJournalMagic[].
1869** (2) 4 byte big-endian integer which is the number of valid page records
drh34e79ce2004-02-08 06:05:46 +00001870** in the journal. If this value is 0xffffffff, then compute the
drhae2b40c2004-06-09 19:03:54 +00001871** number of page records from the journal size.
1872** (3) 4 byte big-endian integer which is the initial value for the
1873** sanity checksum.
1874** (4) 4 byte integer which is the number of pages to truncate the
drh34e79ce2004-02-08 06:05:46 +00001875** database to during a rollback.
drh334c80d2008-03-28 17:41:13 +00001876** (5) 4 byte big-endian integer which is the sector size. The header
1877** is this many bytes in size.
1878** (6) 4 byte big-endian integer which is the page case.
1879** (7) 4 byte integer which is the number of bytes in the master journal
drhae2b40c2004-06-09 19:03:54 +00001880** name. The value may be zero (indicate that there is no master
1881** journal.)
drh334c80d2008-03-28 17:41:13 +00001882** (8) N bytes of the master journal name. The name will be nul-terminated
drhae2b40c2004-06-09 19:03:54 +00001883** and might be shorter than the value read from (5). If the first byte
1884** of the name is \000 then there is no master journal. The master
1885** journal name is stored in UTF-8.
drh334c80d2008-03-28 17:41:13 +00001886** (9) Zero or more pages instances, each as follows:
drh34e79ce2004-02-08 06:05:46 +00001887** + 4 byte page number.
drhae2b40c2004-06-09 19:03:54 +00001888** + pPager->pageSize bytes of data.
1889** + 4 byte checksum
drh34e79ce2004-02-08 06:05:46 +00001890**
drh334c80d2008-03-28 17:41:13 +00001891** When we speak of the journal header, we mean the first 8 items above.
1892** Each entry in the journal is an instance of the 9th item.
drh34e79ce2004-02-08 06:05:46 +00001893**
1894** Call the value from the second bullet "nRec". nRec is the number of
1895** valid page entries in the journal. In most cases, you can compute the
1896** value of nRec from the size of the journal file. But if a power
1897** failure occurred while the journal was being written, it could be the
1898** case that the size of the journal file had already been increased but
1899** the extra entries had not yet made it safely to disk. In such a case,
1900** the value of nRec computed from the file size would be too large. For
1901** that reason, we always use the nRec value in the header.
1902**
1903** If the nRec value is 0xffffffff it means that nRec should be computed
1904** from the file size. This value is used when the user selects the
1905** no-sync option for the journal. A power failure could lead to corruption
1906** in this case. But for things like temporary table (which will be
1907** deleted when the power is restored) we don't care.
1908**
drhd9b02572001-04-15 00:37:09 +00001909** If the file opened as the journal file is not a well-formed
danielk1977ece80f12004-06-23 01:05:26 +00001910** journal file then all pages up to the first corrupted page are rolled
1911** back (or no pages if the journal header is corrupted). The journal file
1912** is then deleted and SQLITE_OK returned, just as if no corruption had
1913** been encountered.
1914**
1915** If an I/O or malloc() error occurs, the journal-file is not deleted
1916** and an error code is returned.
drhd3a5c502009-02-03 22:51:06 +00001917**
1918** The isHot parameter indicates that we are trying to rollback a journal
1919** that might be a hot journal. Or, it could be that the journal is
1920** preserved because of JOURNALMODE_PERSIST or JOURNALMODE_TRUNCATE.
1921** If the journal really is hot, reset the pager cache prior rolling
1922** back any content. If the journal is merely persistent, no reset is
1923** needed.
drhed7c8552001-04-11 14:29:21 +00001924*/
danielk1977e277be02007-03-23 18:12:06 +00001925static int pager_playback(Pager *pPager, int isHot){
danielk1977b4b47412007-08-17 15:53:36 +00001926 sqlite3_vfs *pVfs = pPager->pVfs;
drheb206252004-10-01 02:00:31 +00001927 i64 szJ; /* Size of the journal file in bytes */
danielk1977c3e8f5e2004-06-28 01:16:46 +00001928 u32 nRec; /* Number of Records in the journal */
shane0b8d2762008-07-22 05:18:00 +00001929 u32 u; /* Unsigned loop counter */
drhd9b02572001-04-15 00:37:09 +00001930 Pgno mxPg = 0; /* Size of the original file in pages */
drhae2b40c2004-06-09 19:03:54 +00001931 int rc; /* Result code of a subroutine */
danielk1977861f7452008-06-05 11:39:11 +00001932 int res = 1; /* Value returned by sqlite3OsAccess() */
danielk197713adf8a2004-06-03 16:08:41 +00001933 char *zMaster = 0; /* Name of master journal file if any */
drhd3a5c502009-02-03 22:51:06 +00001934 int needPagerReset; /* True to reset page prior to first page rollback */
drhed7c8552001-04-11 14:29:21 +00001935
drhc3a64ba2001-11-22 00:01:27 +00001936 /* Figure out how many records are in the journal. Abort early if
1937 ** the journal is empty.
drhed7c8552001-04-11 14:29:21 +00001938 */
danielk1977bea2a942009-01-20 17:06:27 +00001939 assert( isOpen(pPager->jfd) );
drh054889e2005-11-30 03:20:31 +00001940 rc = sqlite3OsFileSize(pPager->jfd, &szJ);
danielk1977334cdb62007-03-26 08:05:12 +00001941 if( rc!=SQLITE_OK || szJ==0 ){
drhc3a64ba2001-11-22 00:01:27 +00001942 goto end_playback;
1943 }
drh240c5792004-02-08 00:40:52 +00001944
danielk197776572402004-06-25 02:38:54 +00001945 /* Read the master journal name from the journal, if it is present.
1946 ** If a master journal file name is specified, but the file is not
1947 ** present on disk, then the journal is not hot and does not need to be
1948 ** played back.
danielk1977bea2a942009-01-20 17:06:27 +00001949 **
1950 ** TODO: Technically the following is an error because it assumes that
1951 ** buffer Pager.pTmpSpace is (mxPathname+1) bytes or larger. i.e. that
1952 ** (pPager->pageSize >= pPager->pVfs->mxPathname+1). Using os_unix.c,
1953 ** mxPathname is 512, which is the same as the minimum allowable value
1954 ** for pageSize.
drh240c5792004-02-08 00:40:52 +00001955 */
danielk197765839c62007-08-30 08:08:17 +00001956 zMaster = pPager->pTmpSpace;
1957 rc = readMasterJournal(pPager->jfd, zMaster, pPager->pVfs->mxPathname+1);
danielk1977861f7452008-06-05 11:39:11 +00001958 if( rc==SQLITE_OK && zMaster[0] ){
1959 rc = sqlite3OsAccess(pVfs, zMaster, SQLITE_ACCESS_EXISTS, &res);
drhc3a64ba2001-11-22 00:01:27 +00001960 }
danielk197765839c62007-08-30 08:08:17 +00001961 zMaster = 0;
danielk1977861f7452008-06-05 11:39:11 +00001962 if( rc!=SQLITE_OK || !res ){
danielk1977ce98bba2008-04-03 10:13:01 +00001963 goto end_playback;
1964 }
1965 pPager->journalOff = 0;
drhd3a5c502009-02-03 22:51:06 +00001966 needPagerReset = isHot;
drhc3a64ba2001-11-22 00:01:27 +00001967
danielk1977bea2a942009-01-20 17:06:27 +00001968 /* This loop terminates either when a readJournalHdr() or
1969 ** pager_playback_one_page() call returns SQLITE_DONE or an IO error
1970 ** occurs.
1971 */
danielk197776572402004-06-25 02:38:54 +00001972 while( 1 ){
danielk1977f7f33fb2009-02-12 09:11:56 +00001973 int isUnsync = 0;
drhae2b40c2004-06-09 19:03:54 +00001974
danielk197776572402004-06-25 02:38:54 +00001975 /* Read the next journal header from the journal file. If there are
1976 ** not enough bytes left in the journal file for a complete header, or
1977 ** it is corrupted, then a process must of failed while writing it.
1978 ** This indicates nothing more needs to be rolled back.
1979 */
danielk19776f4c73e2009-06-26 07:12:06 +00001980 rc = readJournalHdr(pPager, isHot, szJ, &nRec, &mxPg);
danielk197776572402004-06-25 02:38:54 +00001981 if( rc!=SQLITE_OK ){
drh968af522003-02-11 14:55:40 +00001982 if( rc==SQLITE_DONE ){
drh968af522003-02-11 14:55:40 +00001983 rc = SQLITE_OK;
1984 }
danielk197776572402004-06-25 02:38:54 +00001985 goto end_playback;
1986 }
1987
1988 /* If nRec is 0xffffffff, then this journal was created by a process
1989 ** working in no-sync mode. This means that the rest of the journal
1990 ** file consists of pages, there are no more journal headers. Compute
1991 ** the value of nRec based on this assumption.
1992 */
1993 if( nRec==0xffffffff ){
1994 assert( pPager->journalOff==JOURNAL_HDR_SZ(pPager) );
drh4f21c4a2008-12-10 22:15:00 +00001995 nRec = (int)((szJ - JOURNAL_HDR_SZ(pPager))/JOURNAL_PG_SZ(pPager));
danielk197776572402004-06-25 02:38:54 +00001996 }
1997
danielk1977e277be02007-03-23 18:12:06 +00001998 /* If nRec is 0 and this rollback is of a transaction created by this
drh8940f4e2007-08-11 00:26:20 +00001999 ** process and if this is the final header in the journal, then it means
2000 ** that this part of the journal was being filled but has not yet been
2001 ** synced to disk. Compute the number of pages based on the remaining
2002 ** size of the file.
2003 **
2004 ** The third term of the test was added to fix ticket #2565.
drhd6e5e092009-01-07 02:03:35 +00002005 ** When rolling back a hot journal, nRec==0 always means that the next
2006 ** chunk of the journal contains zero pages to be rolled back. But
2007 ** when doing a ROLLBACK and the nRec==0 chunk is the last chunk in
2008 ** the journal, it means that the journal might contain additional
2009 ** pages that need to be rolled back and that the number of pages
drhee03d622009-01-07 15:33:45 +00002010 ** should be computed based on the journal file size.
danielk1977e277be02007-03-23 18:12:06 +00002011 */
drh4fd18c42009-01-08 15:24:01 +00002012 testcase( nRec==0 && !isHot
drhd6e5e092009-01-07 02:03:35 +00002013 && pPager->journalHdr+JOURNAL_HDR_SZ(pPager)!=pPager->journalOff
2014 && ((szJ - pPager->journalOff) / JOURNAL_PG_SZ(pPager))>0
drh4fd18c42009-01-08 15:24:01 +00002015 && pagerNextJournalPageIsValid(pPager)
drhd6e5e092009-01-07 02:03:35 +00002016 );
drh8940f4e2007-08-11 00:26:20 +00002017 if( nRec==0 && !isHot &&
2018 pPager->journalHdr+JOURNAL_HDR_SZ(pPager)==pPager->journalOff ){
drh4f21c4a2008-12-10 22:15:00 +00002019 nRec = (int)((szJ - pPager->journalOff) / JOURNAL_PG_SZ(pPager));
danielk1977f7f33fb2009-02-12 09:11:56 +00002020 isUnsync = 1;
danielk1977e277be02007-03-23 18:12:06 +00002021 }
2022
danielk197776572402004-06-25 02:38:54 +00002023 /* If this is the first header read from the journal, truncate the
drh85b623f2007-12-13 21:54:09 +00002024 ** database file back to its original size.
danielk197776572402004-06-25 02:38:54 +00002025 */
danielk1977e180dd92007-04-05 17:15:52 +00002026 if( pPager->journalOff==JOURNAL_HDR_SZ(pPager) ){
drhcb4c40b2004-08-18 19:09:43 +00002027 rc = pager_truncate(pPager, mxPg);
danielk197776572402004-06-25 02:38:54 +00002028 if( rc!=SQLITE_OK ){
2029 goto end_playback;
2030 }
danielk1977f90b7262009-01-07 15:18:20 +00002031 pPager->dbSize = mxPg;
danielk197776572402004-06-25 02:38:54 +00002032 }
2033
danielk1977bea2a942009-01-20 17:06:27 +00002034 /* Copy original pages out of the journal and back into the
2035 ** database file and/or page cache.
danielk197776572402004-06-25 02:38:54 +00002036 */
shane0b8d2762008-07-22 05:18:00 +00002037 for(u=0; u<nRec; u++){
drhd3a5c502009-02-03 22:51:06 +00002038 if( needPagerReset ){
2039 pager_reset(pPager);
2040 needPagerReset = 0;
2041 }
danielk1977f7f33fb2009-02-12 09:11:56 +00002042 rc = pager_playback_one_page(pPager,1,isUnsync,&pPager->journalOff,0,0);
danielk197776572402004-06-25 02:38:54 +00002043 if( rc!=SQLITE_OK ){
2044 if( rc==SQLITE_DONE ){
2045 rc = SQLITE_OK;
2046 pPager->journalOff = szJ;
2047 break;
2048 }else{
drh66fd2162009-04-11 16:27:49 +00002049 /* If we are unable to rollback, quit and return the error
2050 ** code. This will cause the pager to enter the error state
2051 ** so that no further harm will be done. Perhaps the next
2052 ** process to come along will be able to rollback the database.
drha9625ea2008-09-03 00:08:29 +00002053 */
danielk197776572402004-06-25 02:38:54 +00002054 goto end_playback;
2055 }
2056 }
drh968af522003-02-11 14:55:40 +00002057 }
drhed7c8552001-04-11 14:29:21 +00002058 }
drh580eeaf2006-02-24 03:09:37 +00002059 /*NOTREACHED*/
2060 assert( 0 );
drh4a0681e2003-02-13 01:58:20 +00002061
2062end_playback:
drh8f941bc2009-01-14 23:03:40 +00002063 /* Following a rollback, the database file should be back in its original
2064 ** state prior to the start of the transaction, so invoke the
2065 ** SQLITE_FCNTL_DB_UNCHANGED file-control method to disable the
2066 ** assertion that the transaction counter was modified.
2067 */
2068 assert(
2069 pPager->fd->pMethods==0 ||
2070 sqlite3OsFileControl(pPager->fd,SQLITE_FCNTL_DB_UNCHANGED,0)>=SQLITE_OK
2071 );
2072
danielk1977db340392009-01-16 16:40:14 +00002073 /* If this playback is happening automatically as a result of an IO or
shanebe217792009-03-05 04:20:31 +00002074 ** malloc error that occurred after the change-counter was updated but
danielk1977db340392009-01-16 16:40:14 +00002075 ** before the transaction was committed, then the change-counter
2076 ** modification may just have been reverted. If this happens in exclusive
2077 ** mode, then subsequent transactions performed by the connection will not
2078 ** update the change-counter at all. This may lead to cache inconsistency
2079 ** problems for other processes at some point in the future. So, just
2080 ** in case this has happened, clear the changeCountDone flag now.
2081 */
danielk1977bea2a942009-01-20 17:06:27 +00002082 pPager->changeCountDone = pPager->tempFile;
danielk1977db340392009-01-16 16:40:14 +00002083
danielk19778191bff2004-06-28 04:52:30 +00002084 if( rc==SQLITE_OK ){
danielk197765839c62007-08-30 08:08:17 +00002085 zMaster = pPager->pTmpSpace;
2086 rc = readMasterJournal(pPager->jfd, zMaster, pPager->pVfs->mxPathname+1);
danielk1977bea2a942009-01-20 17:06:27 +00002087 testcase( rc!=SQLITE_OK );
danielk197765839c62007-08-30 08:08:17 +00002088 }
2089 if( rc==SQLITE_OK ){
danielk1977df2566a2008-05-07 19:11:03 +00002090 rc = pager_end_transaction(pPager, zMaster[0]!='\0');
danielk1977bea2a942009-01-20 17:06:27 +00002091 testcase( rc!=SQLITE_OK );
danielk19778191bff2004-06-28 04:52:30 +00002092 }
danielk1977c56774e2008-10-07 11:51:20 +00002093 if( rc==SQLITE_OK && zMaster[0] && res ){
danielk1977979f38e2007-03-27 16:19:51 +00002094 /* If there was a master journal and this routine will return success,
danielk197732554c12005-01-22 03:39:39 +00002095 ** see if it is possible to delete the master journal.
danielk197713adf8a2004-06-03 16:08:41 +00002096 */
danielk197765839c62007-08-30 08:08:17 +00002097 rc = pager_delmaster(pPager, zMaster);
danielk1977bea2a942009-01-20 17:06:27 +00002098 testcase( rc!=SQLITE_OK );
danielk197713adf8a2004-06-03 16:08:41 +00002099 }
danielk197776572402004-06-25 02:38:54 +00002100
2101 /* The Pager.sectorSize variable may have been updated while rolling
drh3ceeb752007-03-29 18:19:52 +00002102 ** back a journal created by a process with a different sector size
danielk197776572402004-06-25 02:38:54 +00002103 ** value. Reset it to the correct value for this process.
2104 */
drhc80f0582007-05-01 16:59:48 +00002105 setSectorSize(pPager);
drhd9b02572001-04-15 00:37:09 +00002106 return rc;
drhed7c8552001-04-11 14:29:21 +00002107}
2108
2109/*
danielk1977bea2a942009-01-20 17:06:27 +00002110** Playback savepoint pSavepoint. Or, if pSavepoint==NULL, then playback
2111** the entire master journal file. The case pSavepoint==NULL occurs when
2112** a ROLLBACK TO command is invoked on a SAVEPOINT that is a transaction
2113** savepoint.
drhd6e5e092009-01-07 02:03:35 +00002114**
danielk1977bea2a942009-01-20 17:06:27 +00002115** When pSavepoint is not NULL (meaning a non-transaction savepoint is
2116** being rolled back), then the rollback consists of up to three stages,
2117** performed in the order specified:
2118**
2119** * Pages are played back from the main journal starting at byte
2120** offset PagerSavepoint.iOffset and continuing to
2121** PagerSavepoint.iHdrOffset, or to the end of the main journal
2122** file if PagerSavepoint.iHdrOffset is zero.
2123**
2124** * If PagerSavepoint.iHdrOffset is not zero, then pages are played
2125** back starting from the journal header immediately following
2126** PagerSavepoint.iHdrOffset to the end of the main journal file.
2127**
2128** * Pages are then played back from the sub-journal file, starting
2129** with the PagerSavepoint.iSubRec and continuing to the end of
2130** the journal file.
2131**
2132** Throughout the rollback process, each time a page is rolled back, the
2133** corresponding bit is set in a bitvec structure (variable pDone in the
2134** implementation below). This is used to ensure that a page is only
2135** rolled back the first time it is encountered in either journal.
2136**
2137** If pSavepoint is NULL, then pages are only played back from the main
2138** journal file. There is no need for a bitvec in this case.
2139**
2140** In either case, before playback commences the Pager.dbSize variable
2141** is reset to the value that it held at the start of the savepoint
2142** (or transaction). No page with a page-number greater than this value
2143** is played back. If one is encountered it is simply skipped.
drhfa86c412002-02-02 15:01:15 +00002144*/
danielk1977fd7f0452008-12-17 17:30:26 +00002145static int pagerPlaybackSavepoint(Pager *pPager, PagerSavepoint *pSavepoint){
drhd6e5e092009-01-07 02:03:35 +00002146 i64 szJ; /* Effective size of the main journal */
danielk1977fd7f0452008-12-17 17:30:26 +00002147 i64 iHdrOff; /* End of first segment of main-journal records */
danielk1977f2c31ad2009-01-06 13:40:08 +00002148 int rc = SQLITE_OK; /* Return code */
danielk1977fd7f0452008-12-17 17:30:26 +00002149 Bitvec *pDone = 0; /* Bitvec to ensure pages played back only once */
drhfa86c412002-02-02 15:01:15 +00002150
danielk1977bea2a942009-01-20 17:06:27 +00002151 assert( pPager->state>=PAGER_SHARED );
2152
danielk1977fd7f0452008-12-17 17:30:26 +00002153 /* Allocate a bitvec to use to store the set of pages rolled back */
2154 if( pSavepoint ){
2155 pDone = sqlite3BitvecCreate(pSavepoint->nOrig);
2156 if( !pDone ){
2157 return SQLITE_NOMEM;
2158 }
danielk197776572402004-06-25 02:38:54 +00002159 }
danielk1977fd7f0452008-12-17 17:30:26 +00002160
danielk1977bea2a942009-01-20 17:06:27 +00002161 /* Set the database size back to the value it was before the savepoint
2162 ** being reverted was opened.
drhfa86c412002-02-02 15:01:15 +00002163 */
drhd6e5e092009-01-07 02:03:35 +00002164 pPager->dbSize = pSavepoint ? pSavepoint->nOrig : pPager->dbOrigSize;
drhfa86c412002-02-02 15:01:15 +00002165
drhd6e5e092009-01-07 02:03:35 +00002166 /* Use pPager->journalOff as the effective size of the main rollback
2167 ** journal. The actual file might be larger than this in
2168 ** PAGER_JOURNALMODE_TRUNCATE or PAGER_JOURNALMODE_PERSIST. But anything
2169 ** past pPager->journalOff is off-limits to us.
drhfa86c412002-02-02 15:01:15 +00002170 */
danielk1977fd7f0452008-12-17 17:30:26 +00002171 szJ = pPager->journalOff;
drhd6e5e092009-01-07 02:03:35 +00002172
2173 /* Begin by rolling back records from the main journal starting at
2174 ** PagerSavepoint.iOffset and continuing to the next journal header.
2175 ** There might be records in the main journal that have a page number
2176 ** greater than the current database size (pPager->dbSize) but those
2177 ** will be skipped automatically. Pages are added to pDone as they
2178 ** are played back.
2179 */
danielk1977fd7f0452008-12-17 17:30:26 +00002180 if( pSavepoint ){
2181 iHdrOff = pSavepoint->iHdrOffset ? pSavepoint->iHdrOffset : szJ;
2182 pPager->journalOff = pSavepoint->iOffset;
2183 while( rc==SQLITE_OK && pPager->journalOff<iHdrOff ){
danielk1977f7f33fb2009-02-12 09:11:56 +00002184 rc = pager_playback_one_page(pPager, 1, 0, &pPager->journalOff, 1, pDone);
danielk1977fd7f0452008-12-17 17:30:26 +00002185 }
danielk1977bea2a942009-01-20 17:06:27 +00002186 assert( rc!=SQLITE_DONE );
danielk1977fd7f0452008-12-17 17:30:26 +00002187 }else{
2188 pPager->journalOff = 0;
drhfa86c412002-02-02 15:01:15 +00002189 }
drhd6e5e092009-01-07 02:03:35 +00002190
2191 /* Continue rolling back records out of the main journal starting at
2192 ** the first journal header seen and continuing until the effective end
2193 ** of the main journal file. Continue to skip out-of-range pages and
2194 ** continue adding pages rolled back to pDone.
2195 */
danielk1977fd7f0452008-12-17 17:30:26 +00002196 while( rc==SQLITE_OK && pPager->journalOff<szJ ){
danielk1977bea2a942009-01-20 17:06:27 +00002197 u32 ii; /* Loop counter */
danielk1977c81806f2009-01-01 15:20:37 +00002198 u32 nJRec = 0; /* Number of Journal Records */
danielk197776572402004-06-25 02:38:54 +00002199 u32 dummy;
danielk19776f4c73e2009-06-26 07:12:06 +00002200 rc = readJournalHdr(pPager, 0, szJ, &nJRec, &dummy);
danielk1977fd7f0452008-12-17 17:30:26 +00002201 assert( rc!=SQLITE_DONE );
drhd6e5e092009-01-07 02:03:35 +00002202
2203 /*
2204 ** The "pPager->journalHdr+JOURNAL_HDR_SZ(pPager)==pPager->journalOff"
2205 ** test is related to ticket #2565. See the discussion in the
2206 ** pager_playback() function for additional information.
2207 */
drhee03d622009-01-07 15:33:45 +00002208 assert( !(nJRec==0
drhd6e5e092009-01-07 02:03:35 +00002209 && pPager->journalHdr+JOURNAL_HDR_SZ(pPager)!=pPager->journalOff
2210 && ((szJ - pPager->journalOff) / JOURNAL_PG_SZ(pPager))>0
drhee03d622009-01-07 15:33:45 +00002211 && pagerNextJournalPageIsValid(pPager))
drhd6e5e092009-01-07 02:03:35 +00002212 );
2213 if( nJRec==0
2214 && pPager->journalHdr+JOURNAL_HDR_SZ(pPager)==pPager->journalOff
2215 ){
shaned87897d2009-01-30 05:40:27 +00002216 nJRec = (u32)((szJ - pPager->journalOff)/JOURNAL_PG_SZ(pPager));
danielk197775edc162004-06-26 01:48:18 +00002217 }
danielk197712dd5492008-12-18 15:45:07 +00002218 for(ii=0; rc==SQLITE_OK && ii<nJRec && pPager->journalOff<szJ; ii++){
danielk1977f7f33fb2009-02-12 09:11:56 +00002219 rc = pager_playback_one_page(pPager, 1, 0, &pPager->journalOff, 1, pDone);
danielk1977fd7f0452008-12-17 17:30:26 +00002220 }
danielk1977bea2a942009-01-20 17:06:27 +00002221 assert( rc!=SQLITE_DONE );
danielk1977fd7f0452008-12-17 17:30:26 +00002222 }
2223 assert( rc!=SQLITE_OK || pPager->journalOff==szJ );
2224
drhd6e5e092009-01-07 02:03:35 +00002225 /* Finally, rollback pages from the sub-journal. Page that were
2226 ** previously rolled back out of the main journal (and are hence in pDone)
2227 ** will be skipped. Out-of-range pages are also skipped.
2228 */
danielk1977fd7f0452008-12-17 17:30:26 +00002229 if( pSavepoint ){
danielk1977bea2a942009-01-20 17:06:27 +00002230 u32 ii; /* Loop counter */
drhd6e5e092009-01-07 02:03:35 +00002231 i64 offset = pSavepoint->iSubRec*(4+pPager->pageSize);
danielk1977bea2a942009-01-20 17:06:27 +00002232 for(ii=pSavepoint->iSubRec; rc==SQLITE_OK && ii<pPager->nSubRec; ii++){
2233 assert( offset==ii*(4+pPager->pageSize) );
danielk1977f7f33fb2009-02-12 09:11:56 +00002234 rc = pager_playback_one_page(pPager, 0, 0, &offset, 1, pDone);
danielk197776572402004-06-25 02:38:54 +00002235 }
danielk1977bea2a942009-01-20 17:06:27 +00002236 assert( rc!=SQLITE_DONE );
drhfa86c412002-02-02 15:01:15 +00002237 }
danielk197776572402004-06-25 02:38:54 +00002238
danielk1977fd7f0452008-12-17 17:30:26 +00002239 sqlite3BitvecDestroy(pDone);
2240 if( rc==SQLITE_OK ){
danielk197775edc162004-06-26 01:48:18 +00002241 pPager->journalOff = szJ;
drhfa86c412002-02-02 15:01:15 +00002242 }
2243 return rc;
2244}
2245
2246/*
drhf57b14a2001-09-14 18:54:08 +00002247** Change the maximum number of in-memory pages that are allowed.
2248*/
danielk19773b8a05f2007-03-19 17:44:26 +00002249void sqlite3PagerSetCachesize(Pager *pPager, int mxPage){
danielk19778c0a7912008-08-20 14:49:23 +00002250 sqlite3PcacheSetCachesize(pPager->pPCache, mxPage);
drhf57b14a2001-09-14 18:54:08 +00002251}
2252
2253/*
drh973b6e32003-02-12 14:09:42 +00002254** Adjust the robustness of the database to damage due to OS crashes
2255** or power failures by changing the number of syncs()s when writing
2256** the rollback journal. There are three levels:
2257**
drh054889e2005-11-30 03:20:31 +00002258** OFF sqlite3OsSync() is never called. This is the default
drh973b6e32003-02-12 14:09:42 +00002259** for temporary and transient files.
2260**
2261** NORMAL The journal is synced once before writes begin on the
2262** database. This is normally adequate protection, but
2263** it is theoretically possible, though very unlikely,
2264** that an inopertune power failure could leave the journal
2265** in a state which would cause damage to the database
2266** when it is rolled back.
2267**
2268** FULL The journal is synced twice before writes begin on the
drh34e79ce2004-02-08 06:05:46 +00002269** database (with some additional information - the nRec field
2270** of the journal header - being written in between the two
2271** syncs). If we assume that writing a
drh973b6e32003-02-12 14:09:42 +00002272** single disk sector is atomic, then this mode provides
2273** assurance that the journal will not be corrupted to the
2274** point of causing damage to the database during rollback.
2275**
2276** Numeric values associated with these states are OFF==1, NORMAL=2,
2277** and FULL=3.
2278*/
danielk197793758c82005-01-21 08:13:14 +00002279#ifndef SQLITE_OMIT_PAGER_PRAGMAS
drh281b21d2008-08-22 12:57:08 +00002280void sqlite3PagerSetSafetyLevel(Pager *pPager, int level, int bFullFsync){
drh4f21c4a2008-12-10 22:15:00 +00002281 pPager->noSync = (level==1 || pPager->tempFile) ?1:0;
2282 pPager->fullSync = (level==3 && !pPager->tempFile) ?1:0;
drh281b21d2008-08-22 12:57:08 +00002283 pPager->sync_flags = (bFullFsync?SQLITE_SYNC_FULL:SQLITE_SYNC_NORMAL);
danielk19771d850a72004-05-31 08:26:49 +00002284 if( pPager->noSync ) pPager->needSync = 0;
drh973b6e32003-02-12 14:09:42 +00002285}
danielk197793758c82005-01-21 08:13:14 +00002286#endif
drh973b6e32003-02-12 14:09:42 +00002287
2288/*
drhaf6df112005-06-07 02:12:30 +00002289** The following global variable is incremented whenever the library
2290** attempts to open a temporary file. This information is used for
2291** testing and analysis only.
2292*/
drh0f7eb612006-08-08 13:51:43 +00002293#ifdef SQLITE_TEST
drhaf6df112005-06-07 02:12:30 +00002294int sqlite3_opentemp_count = 0;
drh0f7eb612006-08-08 13:51:43 +00002295#endif
drhaf6df112005-06-07 02:12:30 +00002296
2297/*
danielk1977bea2a942009-01-20 17:06:27 +00002298** Open a temporary file.
drh3f56e6e2007-03-15 01:16:47 +00002299**
danielk1977bea2a942009-01-20 17:06:27 +00002300** Write the file descriptor into *pFile. Return SQLITE_OK on success
2301** or some other error code if we fail. The OS will automatically
2302** delete the temporary file when it is closed.
2303**
2304** The flags passed to the VFS layer xOpen() call are those specified
2305** by parameter vfsFlags ORed with the following:
2306**
2307** SQLITE_OPEN_READWRITE
2308** SQLITE_OPEN_CREATE
2309** SQLITE_OPEN_EXCLUSIVE
2310** SQLITE_OPEN_DELETEONCLOSE
drhfa86c412002-02-02 15:01:15 +00002311*/
danielk1977bea2a942009-01-20 17:06:27 +00002312static int pagerOpentemp(
danielk197717b90b52008-06-06 11:11:25 +00002313 Pager *pPager, /* The pager object */
drh33f4e022007-09-03 15:19:34 +00002314 sqlite3_file *pFile, /* Write the file descriptor here */
drh33f4e022007-09-03 15:19:34 +00002315 int vfsFlags /* Flags passed through to the VFS */
danielk1977b4b47412007-08-17 15:53:36 +00002316){
danielk1977bea2a942009-01-20 17:06:27 +00002317 int rc; /* Return code */
drh3f56e6e2007-03-15 01:16:47 +00002318
drh0f7eb612006-08-08 13:51:43 +00002319#ifdef SQLITE_TEST
drhaf6df112005-06-07 02:12:30 +00002320 sqlite3_opentemp_count++; /* Used for testing and analysis only */
drh0f7eb612006-08-08 13:51:43 +00002321#endif
danielk1977b4b47412007-08-17 15:53:36 +00002322
drh33f4e022007-09-03 15:19:34 +00002323 vfsFlags |= SQLITE_OPEN_READWRITE | SQLITE_OPEN_CREATE |
2324 SQLITE_OPEN_EXCLUSIVE | SQLITE_OPEN_DELETEONCLOSE;
danielk197717b90b52008-06-06 11:11:25 +00002325 rc = sqlite3OsOpen(pPager->pVfs, 0, pFile, vfsFlags, 0);
danielk1977bea2a942009-01-20 17:06:27 +00002326 assert( rc!=SQLITE_OK || isOpen(pFile) );
drhfa86c412002-02-02 15:01:15 +00002327 return rc;
2328}
2329
drhed7c8552001-04-11 14:29:21 +00002330/*
drh90f5ecb2004-07-22 01:19:35 +00002331** Set the busy handler function.
danielk1977bea2a942009-01-20 17:06:27 +00002332**
2333** The pager invokes the busy-handler if sqlite3OsLock() returns
2334** SQLITE_BUSY when trying to upgrade from no-lock to a SHARED lock,
2335** or when trying to upgrade from a RESERVED lock to an EXCLUSIVE
2336** lock. It does *not* invoke the busy handler when upgrading from
2337** SHARED to RESERVED, or when upgrading from SHARED to EXCLUSIVE
2338** (which occurs during hot-journal rollback). Summary:
2339**
2340** Transition | Invokes xBusyHandler
2341** --------------------------------------------------------
2342** NO_LOCK -> SHARED_LOCK | Yes
2343** SHARED_LOCK -> RESERVED_LOCK | No
2344** SHARED_LOCK -> EXCLUSIVE_LOCK | No
2345** RESERVED_LOCK -> EXCLUSIVE_LOCK | Yes
2346**
2347** If the busy-handler callback returns non-zero, the lock is
2348** retried. If it returns zero, then the SQLITE_BUSY error is
2349** returned to the caller of the pager API function.
drh90f5ecb2004-07-22 01:19:35 +00002350*/
danielk19771ceedd32008-11-19 10:22:33 +00002351void sqlite3PagerSetBusyhandler(
danielk1977bea2a942009-01-20 17:06:27 +00002352 Pager *pPager, /* Pager object */
2353 int (*xBusyHandler)(void *), /* Pointer to busy-handler function */
2354 void *pBusyHandlerArg /* Argument to pass to xBusyHandler */
danielk19771ceedd32008-11-19 10:22:33 +00002355){
2356 pPager->xBusyHandler = xBusyHandler;
2357 pPager->pBusyHandlerArg = pBusyHandlerArg;
drh90f5ecb2004-07-22 01:19:35 +00002358}
2359
2360/*
drhfa9601a2009-06-18 17:22:39 +00002361** Report the current page size and number of reserved bytes back
2362** to the codec.
2363*/
2364#ifdef SQLITE_HAS_CODEC
2365static void pagerReportSize(Pager *pPager){
2366 if( pPager->xCodecSizeChng ){
2367 pPager->xCodecSizeChng(pPager->pCodec, pPager->pageSize,
2368 (int)pPager->nReserve);
2369 }
2370}
2371#else
2372# define pagerReportSize(X) /* No-op if we do not support a codec */
2373#endif
2374
2375/*
danielk1977bea2a942009-01-20 17:06:27 +00002376** Change the page size used by the Pager object. The new page size
2377** is passed in *pPageSize.
2378**
2379** If the pager is in the error state when this function is called, it
2380** is a no-op. The value returned is the error state error code (i.e.
2381** one of SQLITE_IOERR, SQLITE_CORRUPT or SQLITE_FULL).
2382**
2383** Otherwise, if all of the following are true:
2384**
2385** * the new page size (value of *pPageSize) is valid (a power
2386** of two between 512 and SQLITE_MAX_PAGE_SIZE, inclusive), and
2387**
2388** * there are no outstanding page references, and
2389**
2390** * the database is either not an in-memory database or it is
2391** an in-memory database that currently consists of zero pages.
2392**
2393** then the pager object page size is set to *pPageSize.
2394**
2395** If the page size is changed, then this function uses sqlite3PagerMalloc()
2396** to obtain a new Pager.pTmpSpace buffer. If this allocation attempt
2397** fails, SQLITE_NOMEM is returned and the page size remains unchanged.
2398** In all other cases, SQLITE_OK is returned.
2399**
2400** If the page size is not changed, either because one of the enumerated
2401** conditions above is not true, the pager was in error state when this
2402** function was called, or because the memory allocation attempt failed,
2403** then *pPageSize is set to the old, retained page size before returning.
drh90f5ecb2004-07-22 01:19:35 +00002404*/
drhfa9601a2009-06-18 17:22:39 +00002405int sqlite3PagerSetPagesize(Pager *pPager, u16 *pPageSize, int nReserve){
danielk19771357d9f2008-09-16 05:12:24 +00002406 int rc = pPager->errCode;
drhd4e5cd02009-07-25 00:13:58 +00002407
danielk19771357d9f2008-09-16 05:12:24 +00002408 if( rc==SQLITE_OK ){
2409 u16 pageSize = *pPageSize;
2410 assert( pageSize==0 || (pageSize>=512 && pageSize<=SQLITE_MAX_PAGE_SIZE) );
drh8a938f92009-07-25 04:12:02 +00002411 if( (pPager->memDb==0 || pPager->dbSize==0)
danielk19771357d9f2008-09-16 05:12:24 +00002412 && sqlite3PcacheRefCount(pPager->pPCache)==0
drh8a938f92009-07-25 04:12:02 +00002413 && pageSize && pageSize!=pPager->pageSize
danielk19771357d9f2008-09-16 05:12:24 +00002414 ){
2415 char *pNew = (char *)sqlite3PageMalloc(pageSize);
2416 if( !pNew ){
2417 rc = SQLITE_NOMEM;
2418 }else{
2419 pager_reset(pPager);
2420 pPager->pageSize = pageSize;
danielk19771357d9f2008-09-16 05:12:24 +00002421 sqlite3PageFree(pPager->pTmpSpace);
2422 pPager->pTmpSpace = pNew;
2423 sqlite3PcacheSetPageSize(pPager->pPCache, pageSize);
2424 }
danielk1977a1644fd2007-08-29 12:31:25 +00002425 }
drh4f21c4a2008-12-10 22:15:00 +00002426 *pPageSize = (u16)pPager->pageSize;
drhfa9601a2009-06-18 17:22:39 +00002427 if( nReserve<0 ) nReserve = pPager->nReserve;
2428 assert( nReserve>=0 && nReserve<1000 );
2429 pPager->nReserve = (i16)nReserve;
2430 pagerReportSize(pPager);
drh1c7880e2005-05-20 20:01:55 +00002431 }
danielk1977a1644fd2007-08-29 12:31:25 +00002432 return rc;
drh90f5ecb2004-07-22 01:19:35 +00002433}
2434
2435/*
drh26b79942007-11-28 16:19:56 +00002436** Return a pointer to the "temporary page" buffer held internally
2437** by the pager. This is a buffer that is big enough to hold the
2438** entire content of a database page. This buffer is used internally
2439** during rollback and will be overwritten whenever a rollback
2440** occurs. But other modules are free to use it too, as long as
2441** no rollbacks are happening.
2442*/
2443void *sqlite3PagerTempSpace(Pager *pPager){
2444 return pPager->pTmpSpace;
2445}
2446
2447/*
drhf8e632b2007-05-08 14:51:36 +00002448** Attempt to set the maximum database page count if mxPage is positive.
2449** Make no changes if mxPage is zero or negative. And never reduce the
2450** maximum page count below the current size of the database.
2451**
2452** Regardless of mxPage, return the current maximum page count.
2453*/
2454int sqlite3PagerMaxPageCount(Pager *pPager, int mxPage){
2455 if( mxPage>0 ){
2456 pPager->mxPgno = mxPage;
2457 }
danielk1977ad0132d2008-06-07 08:58:22 +00002458 sqlite3PagerPagecount(pPager, 0);
drhf8e632b2007-05-08 14:51:36 +00002459 return pPager->mxPgno;
2460}
2461
2462/*
drhc9ac5ca2005-11-04 22:03:30 +00002463** The following set of routines are used to disable the simulated
2464** I/O error mechanism. These routines are used to avoid simulated
2465** errors in places where we do not care about errors.
2466**
2467** Unless -DSQLITE_TEST=1 is used, these routines are all no-ops
2468** and generate no code.
2469*/
2470#ifdef SQLITE_TEST
2471extern int sqlite3_io_error_pending;
2472extern int sqlite3_io_error_hit;
2473static int saved_cnt;
drhc9ac5ca2005-11-04 22:03:30 +00002474void disable_simulated_io_errors(void){
2475 saved_cnt = sqlite3_io_error_pending;
2476 sqlite3_io_error_pending = -1;
2477}
2478void enable_simulated_io_errors(void){
2479 sqlite3_io_error_pending = saved_cnt;
2480}
2481#else
drh152410f2005-11-05 15:11:22 +00002482# define disable_simulated_io_errors()
2483# define enable_simulated_io_errors()
drhc9ac5ca2005-11-04 22:03:30 +00002484#endif
2485
2486/*
drh90f5ecb2004-07-22 01:19:35 +00002487** Read the first N bytes from the beginning of the file into memory
danielk1977aef0bf62005-12-30 16:28:01 +00002488** that pDest points to.
2489**
danielk1977bea2a942009-01-20 17:06:27 +00002490** If the pager was opened on a transient file (zFilename==""), or
2491** opened on a file less than N bytes in size, the output buffer is
2492** zeroed and SQLITE_OK returned. The rationale for this is that this
2493** function is used to read database headers, and a new transient or
2494** zero sized database has a header than consists entirely of zeroes.
2495**
2496** If any IO error apart from SQLITE_IOERR_SHORT_READ is encountered,
2497** the error code is returned to the caller and the contents of the
2498** output buffer undefined.
drh90f5ecb2004-07-22 01:19:35 +00002499*/
danielk19773b8a05f2007-03-19 17:44:26 +00002500int sqlite3PagerReadFileheader(Pager *pPager, int N, unsigned char *pDest){
drh551b7732006-11-06 21:20:25 +00002501 int rc = SQLITE_OK;
drh90f5ecb2004-07-22 01:19:35 +00002502 memset(pDest, 0, N);
danielk1977bea2a942009-01-20 17:06:27 +00002503 assert( isOpen(pPager->fd) || pPager->tempFile );
2504 if( isOpen(pPager->fd) ){
drhb0603412007-02-28 04:47:26 +00002505 IOTRACE(("DBHDR %p 0 %d\n", pPager, N))
danielk197762079062007-08-15 17:08:46 +00002506 rc = sqlite3OsRead(pPager->fd, pDest, N, 0);
drh551b7732006-11-06 21:20:25 +00002507 if( rc==SQLITE_IOERR_SHORT_READ ){
2508 rc = SQLITE_OK;
2509 }
drh90f5ecb2004-07-22 01:19:35 +00002510 }
drh551b7732006-11-06 21:20:25 +00002511 return rc;
drh90f5ecb2004-07-22 01:19:35 +00002512}
2513
2514/*
danielk1977bea2a942009-01-20 17:06:27 +00002515** Return the total number of pages in the database file associated
2516** with pPager. Normally, this is calculated as (<db file size>/<page-size>).
2517** However, if the file is between 1 and <page-size> bytes in size, then
2518** this is considered a 1 page file.
danielk197715f411d2005-09-16 10:18:45 +00002519**
danielk1977bea2a942009-01-20 17:06:27 +00002520** If the pager is in error state when this function is called, then the
2521** error state error code is returned and *pnPage left unchanged. Or,
2522** if the file system has to be queried for the size of the file and
2523** the query attempt returns an IO error, the IO error code is returned
2524** and *pnPage is left unchanged.
2525**
2526** Otherwise, if everything is successful, then SQLITE_OK is returned
2527** and *pnPage is set to the number of pages in the database.
drhed7c8552001-04-11 14:29:21 +00002528*/
danielk1977ad0132d2008-06-07 08:58:22 +00002529int sqlite3PagerPagecount(Pager *pPager, int *pnPage){
danielk1977bea2a942009-01-20 17:06:27 +00002530 Pgno nPage; /* Value to return via *pnPage */
2531
2532 /* If the pager is already in the error state, return the error code. */
drha7aea3d2007-03-15 12:51:16 +00002533 if( pPager->errCode ){
danielk1977bea2a942009-01-20 17:06:27 +00002534 return pPager->errCode;
drha7aea3d2007-03-15 12:51:16 +00002535 }
danielk1977bea2a942009-01-20 17:06:27 +00002536
2537 /* Determine the number of pages in the file. Store this in nPage. */
danielk1977d92db532008-11-17 04:56:24 +00002538 if( pPager->dbSizeValid ){
danielk1977bea2a942009-01-20 17:06:27 +00002539 nPage = pPager->dbSize;
2540 }else{
2541 int rc; /* Error returned by OsFileSize() */
2542 i64 n = 0; /* File size in bytes returned by OsFileSize() */
2543
2544 assert( isOpen(pPager->fd) || pPager->tempFile );
shane63207ab2009-02-04 01:49:30 +00002545 if( isOpen(pPager->fd) && (0 != (rc = sqlite3OsFileSize(pPager->fd, &n))) ){
drhe49f9822006-09-15 12:29:16 +00002546 pager_error(pPager, rc);
danielk1977ad0132d2008-06-07 08:58:22 +00002547 return rc;
danielk197715f411d2005-09-16 10:18:45 +00002548 }
2549 if( n>0 && n<pPager->pageSize ){
danielk1977bea2a942009-01-20 17:06:27 +00002550 nPage = 1;
danielk197715f411d2005-09-16 10:18:45 +00002551 }else{
shaned87897d2009-01-30 05:40:27 +00002552 nPage = (Pgno)(n / pPager->pageSize);
danielk197715f411d2005-09-16 10:18:45 +00002553 }
2554 if( pPager->state!=PAGER_UNLOCK ){
shaned87897d2009-01-30 05:40:27 +00002555 pPager->dbSize = nPage;
2556 pPager->dbFileSize = nPage;
danielk1977d92db532008-11-17 04:56:24 +00002557 pPager->dbSizeValid = 1;
danielk197715f411d2005-09-16 10:18:45 +00002558 }
drhed7c8552001-04-11 14:29:21 +00002559 }
danielk1977bea2a942009-01-20 17:06:27 +00002560
2561 /* If the current number of pages in the file is greater than the
2562 ** configured maximum pager number, increase the allowed limit so
2563 ** that the file can be read.
2564 */
2565 if( nPage>pPager->mxPgno ){
2566 pPager->mxPgno = (Pgno)nPage;
drh1f595712004-06-15 01:40:29 +00002567 }
danielk1977bea2a942009-01-20 17:06:27 +00002568
2569 /* Set the output variable and return SQLITE_OK */
danielk1977ad0132d2008-06-07 08:58:22 +00002570 if( pnPage ){
danielk1977bea2a942009-01-20 17:06:27 +00002571 *pnPage = nPage;
danielk1977ad0132d2008-06-07 08:58:22 +00002572 }
2573 return SQLITE_OK;
drhed7c8552001-04-11 14:29:21 +00002574}
2575
drhac69b052004-05-12 13:30:07 +00002576
2577/*
danielk1977bea2a942009-01-20 17:06:27 +00002578** Try to obtain a lock of type locktype on the database file. If
2579** a similar or greater lock is already held, this function is a no-op
2580** (returning SQLITE_OK immediately).
2581**
2582** Otherwise, attempt to obtain the lock using sqlite3OsLock(). Invoke
2583** the busy callback if the lock is currently not available. Repeat
2584** until the busy callback returns false or until the attempt to
2585** obtain the lock succeeds.
danielk197717221812005-02-15 03:38:05 +00002586**
2587** Return SQLITE_OK on success and an error code if we cannot obtain
danielk1977bea2a942009-01-20 17:06:27 +00002588** the lock. If the lock is obtained successfully, set the Pager.state
2589** variable to locktype before returning.
danielk197717221812005-02-15 03:38:05 +00002590*/
2591static int pager_wait_on_lock(Pager *pPager, int locktype){
danielk1977bea2a942009-01-20 17:06:27 +00002592 int rc; /* Return code */
drh1aa2d8b2007-01-03 15:34:29 +00002593
2594 /* The OS lock values must be the same as the Pager lock values */
danielk197717221812005-02-15 03:38:05 +00002595 assert( PAGER_SHARED==SHARED_LOCK );
2596 assert( PAGER_RESERVED==RESERVED_LOCK );
2597 assert( PAGER_EXCLUSIVE==EXCLUSIVE_LOCK );
drh1aa2d8b2007-01-03 15:34:29 +00002598
2599 /* If the file is currently unlocked then the size must be unknown */
danielk1977d92db532008-11-17 04:56:24 +00002600 assert( pPager->state>=PAGER_SHARED || pPager->dbSizeValid==0 );
drh1aa2d8b2007-01-03 15:34:29 +00002601
danielk1977bea2a942009-01-20 17:06:27 +00002602 /* Check that this is either a no-op (because the requested lock is
2603 ** already held, or one of the transistions that the busy-handler
2604 ** may be invoked during, according to the comment above
2605 ** sqlite3PagerSetBusyhandler().
2606 */
2607 assert( (pPager->state>=locktype)
2608 || (pPager->state==PAGER_UNLOCK && locktype==PAGER_SHARED)
2609 || (pPager->state==PAGER_RESERVED && locktype==PAGER_EXCLUSIVE)
2610 );
2611
danielk197717221812005-02-15 03:38:05 +00002612 if( pPager->state>=locktype ){
2613 rc = SQLITE_OK;
2614 }else{
danielk197717221812005-02-15 03:38:05 +00002615 do {
drh054889e2005-11-30 03:20:31 +00002616 rc = sqlite3OsLock(pPager->fd, locktype);
danielk19771ceedd32008-11-19 10:22:33 +00002617 }while( rc==SQLITE_BUSY && pPager->xBusyHandler(pPager->pBusyHandlerArg) );
danielk197717221812005-02-15 03:38:05 +00002618 if( rc==SQLITE_OK ){
drh4f21c4a2008-12-10 22:15:00 +00002619 pPager->state = (u8)locktype;
drhb0603412007-02-28 04:47:26 +00002620 IOTRACE(("LOCK %p %d\n", pPager, locktype))
danielk197717221812005-02-15 03:38:05 +00002621 }
2622 }
2623 return rc;
2624}
2625
danielk19773460d192008-12-27 15:23:13 +00002626/*
danielk19779f0b6be2009-07-25 11:40:07 +00002627** Function assertTruncateConstraint(pPager) checks that one of the
2628** following is true for all dirty pages currently in the page-cache:
2629**
2630** a) The page number is less than or equal to the size of the
2631** current database image, in pages, OR
2632**
2633** b) if the page content were written at this time, it would not
2634** be necessary to write the current content out to the sub-journal
2635** (as determined by function subjRequiresPage()).
2636**
2637** If the condition asserted by this function were not true, and the
2638** dirty page were to be discarded from the cache via the pagerStress()
2639** routine, pagerStress() would not write the current page content to
2640** the database file. If a savepoint transaction were rolled back after
2641** this happened, the correct behaviour would be to restore the current
2642** content of the page. However, since this content is not present in either
2643** the database file or the portion of the rollback journal and
2644** sub-journal rolled back the content could not be restored and the
2645** database image would become corrupt. It is therefore fortunate that
2646** this circumstance cannot arise.
2647*/
2648#if defined(SQLITE_DEBUG)
2649static void assertTruncateConstraintCb(PgHdr *pPg){
2650 assert( pPg->flags&PGHDR_DIRTY );
2651 assert( !subjRequiresPage(pPg) || pPg->pgno<=pPg->pPager->dbSize );
2652}
2653static void assertTruncateConstraint(Pager *pPager){
2654 sqlite3PcacheIterateDirty(pPager->pPCache, assertTruncateConstraintCb);
2655}
2656#else
2657# define assertTruncateConstraint(pPager)
2658#endif
2659
2660/*
danielk1977f90b7262009-01-07 15:18:20 +00002661** Truncate the in-memory database file image to nPage pages. This
2662** function does not actually modify the database file on disk. It
2663** just sets the internal state of the pager object so that the
2664** truncation will be done when the current transaction is committed.
danielk19773460d192008-12-27 15:23:13 +00002665*/
2666void sqlite3PagerTruncateImage(Pager *pPager, Pgno nPage){
2667 assert( pPager->dbSizeValid );
2668 assert( pPager->dbSize>=nPage );
danielk1977bea2a942009-01-20 17:06:27 +00002669 assert( pPager->state>=PAGER_RESERVED );
danielk19773460d192008-12-27 15:23:13 +00002670 pPager->dbSize = nPage;
danielk19779f0b6be2009-07-25 11:40:07 +00002671 assertTruncateConstraint(pPager);
danielk19773460d192008-12-27 15:23:13 +00002672}
danielk19773460d192008-12-27 15:23:13 +00002673
drhf7c57532003-04-25 13:22:51 +00002674/*
drhed7c8552001-04-11 14:29:21 +00002675** Shutdown the page cache. Free all memory and close all files.
2676**
2677** If a transaction was in progress when this routine is called, that
2678** transaction is rolled back. All outstanding pages are invalidated
2679** and their memory is freed. Any attempt to use a page associated
2680** with this page cache after this function returns will likely
2681** result in a coredump.
danielk1977aef0bf62005-12-30 16:28:01 +00002682**
2683** This function always succeeds. If a transaction is active an attempt
2684** is made to roll it back. If an error occurs during the rollback
2685** a hot journal may be left in the filesystem but no error is returned
2686** to the caller.
drhed7c8552001-04-11 14:29:21 +00002687*/
danielk19773b8a05f2007-03-19 17:44:26 +00002688int sqlite3PagerClose(Pager *pPager){
drhbafda092007-01-03 23:36:22 +00002689 disable_simulated_io_errors();
danielk19772d1d86f2008-06-20 14:59:51 +00002690 sqlite3BeginBenignMalloc();
drhc2ee76c2007-01-04 14:58:14 +00002691 pPager->errCode = 0;
danielk197741483462007-03-24 16:45:04 +00002692 pPager->exclusiveMode = 0;
drhbafda092007-01-03 23:36:22 +00002693 pager_reset(pPager);
danielk1977bea2a942009-01-20 17:06:27 +00002694 if( MEMDB ){
2695 pager_unlock(pPager);
2696 }else{
danielk1977f2c31ad2009-01-06 13:40:08 +00002697 /* Set Pager.journalHdr to -1 for the benefit of the pager_playback()
2698 ** call which may be made from within pagerUnlockAndRollback(). If it
2699 ** is not -1, then the unsynced portion of an open journal file may
2700 ** be played back into the database. If a power failure occurs while
2701 ** this is happening, the database may become corrupt.
2702 */
2703 pPager->journalHdr = -1;
danielk1977b3175382008-10-17 18:51:52 +00002704 pagerUnlockAndRollback(pPager);
2705 }
danielk197745d68822009-01-16 16:23:38 +00002706 sqlite3EndBenignMalloc();
danielk1977bea2a942009-01-20 17:06:27 +00002707 enable_simulated_io_errors();
drh30d53702009-01-06 15:58:57 +00002708 PAGERTRACE(("CLOSE %d\n", PAGERID(pPager)));
drhb0603412007-02-28 04:47:26 +00002709 IOTRACE(("CLOSE %p\n", pPager))
danielk1977b4b47412007-08-17 15:53:36 +00002710 sqlite3OsClose(pPager->fd);
drhfacf0302008-06-17 15:12:00 +00002711 sqlite3PageFree(pPager->pTmpSpace);
danielk19778c0a7912008-08-20 14:49:23 +00002712 sqlite3PcacheClose(pPager->pPCache);
danielk1977bea2a942009-01-20 17:06:27 +00002713
drhfa9601a2009-06-18 17:22:39 +00002714#ifdef SQLITE_HAS_CODEC
2715 if( pPager->xCodecFree ) pPager->xCodecFree(pPager->pCodec);
2716#endif
2717
danielk1977bea2a942009-01-20 17:06:27 +00002718 assert( !pPager->aSavepoint && !pPager->pInJournal );
2719 assert( !isOpen(pPager->jfd) && !isOpen(pPager->sjfd) );
2720
drh17435752007-08-16 04:30:38 +00002721 sqlite3_free(pPager);
drhed7c8552001-04-11 14:29:21 +00002722 return SQLITE_OK;
2723}
2724
drh87cc3b32007-05-08 21:45:27 +00002725#if !defined(NDEBUG) || defined(SQLITE_TEST)
drhed7c8552001-04-11 14:29:21 +00002726/*
danielk1977bea2a942009-01-20 17:06:27 +00002727** Return the page number for page pPg.
drhed7c8552001-04-11 14:29:21 +00002728*/
danielk1977bea2a942009-01-20 17:06:27 +00002729Pgno sqlite3PagerPagenumber(DbPage *pPg){
2730 return pPg->pgno;
drhed7c8552001-04-11 14:29:21 +00002731}
drh87cc3b32007-05-08 21:45:27 +00002732#endif
drhed7c8552001-04-11 14:29:21 +00002733
2734/*
danielk1977bea2a942009-01-20 17:06:27 +00002735** Increment the reference count for page pPg.
drhdf0b3b02001-06-23 11:36:20 +00002736*/
danielk1977bea2a942009-01-20 17:06:27 +00002737void sqlite3PagerRef(DbPage *pPg){
danielk19778c0a7912008-08-20 14:49:23 +00002738 sqlite3PcacheRef(pPg);
drh7e3b0a02001-04-28 16:52:40 +00002739}
2740
2741/*
danielk1977bea2a942009-01-20 17:06:27 +00002742** Sync the journal. In other words, make sure all the pages that have
drh34e79ce2004-02-08 06:05:46 +00002743** been written to the journal have actually reached the surface of the
danielk1977bea2a942009-01-20 17:06:27 +00002744** disk and can be restored in the event of a hot-journal rollback.
drhb19a2bc2001-09-16 00:13:26 +00002745**
danielk1977bea2a942009-01-20 17:06:27 +00002746** If the Pager.needSync flag is not set, then this function is a
2747** no-op. Otherwise, the actions required depend on the journal-mode
2748** and the device characteristics of the the file-system, as follows:
danielk19774cd2cd52007-08-23 14:48:23 +00002749**
danielk1977bea2a942009-01-20 17:06:27 +00002750** * If the journal file is an in-memory journal file, no action need
2751** be taken.
drhfa86c412002-02-02 15:01:15 +00002752**
danielk1977bea2a942009-01-20 17:06:27 +00002753** * Otherwise, if the device does not support the SAFE_APPEND property,
2754** then the nRec field of the most recently written journal header
2755** is updated to contain the number of journal records that have
2756** been written following it. If the pager is operating in full-sync
2757** mode, then the journal file is synced before this field is updated.
2758**
2759** * If the device does not support the SEQUENTIAL property, then
2760** journal file is synced.
2761**
2762** Or, in pseudo-code:
2763**
2764** if( NOT <in-memory journal> ){
2765** if( NOT SAFE_APPEND ){
2766** if( <full-sync mode> ) xSync(<journal file>);
2767** <update nRec field>
2768** }
2769** if( NOT SEQUENTIAL ) xSync(<journal file>);
2770** }
2771**
2772** The Pager.needSync flag is never be set for temporary files, or any
2773** file operating in no-sync mode (Pager.noSync set to non-zero).
2774**
2775** If successful, this routine clears the PGHDR_NEED_SYNC flag of every
2776** page currently held in memory before returning SQLITE_OK. If an IO
2777** error is encountered, then the IO error code is returned to the caller.
drh50e5dad2001-09-15 00:57:28 +00002778*/
danielk197776572402004-06-25 02:38:54 +00002779static int syncJournal(Pager *pPager){
danielk197776572402004-06-25 02:38:54 +00002780 if( pPager->needSync ){
danielk1977b3175382008-10-17 18:51:52 +00002781 assert( !pPager->tempFile );
2782 if( pPager->journalMode!=PAGER_JOURNALMODE_MEMORY ){
danielk1977bea2a942009-01-20 17:06:27 +00002783 int rc; /* Return code */
2784 const int iDc = sqlite3OsDeviceCharacteristics(pPager->fd);
2785 assert( isOpen(pPager->jfd) );
danielk19774cd2cd52007-08-23 14:48:23 +00002786
danielk19774cd2cd52007-08-23 14:48:23 +00002787 if( 0==(iDc&SQLITE_IOCAP_SAFE_APPEND) ){
danielk1977112f7522009-01-08 17:50:45 +00002788 /* This block deals with an obscure problem. If the last connection
2789 ** that wrote to this database was operating in persistent-journal
2790 ** mode, then the journal file may at this point actually be larger
2791 ** than Pager.journalOff bytes. If the next thing in the journal
2792 ** file happens to be a journal-header (written as part of the
2793 ** previous connections transaction), and a crash or power-failure
2794 ** occurs after nRec is updated but before this connection writes
2795 ** anything else to the journal file (or commits/rolls back its
2796 ** transaction), then SQLite may become confused when doing the
2797 ** hot-journal rollback following recovery. It may roll back all
2798 ** of this connections data, then proceed to rolling back the old,
2799 ** out-of-date data that follows it. Database corruption.
2800 **
2801 ** To work around this, if the journal file does appear to contain
2802 ** a valid header following Pager.journalOff, then write a 0x00
2803 ** byte to the start of it to prevent it from being recognized.
danielk1977bea2a942009-01-20 17:06:27 +00002804 **
2805 ** Variable iNextHdrOffset is set to the offset at which this
2806 ** problematic header will occur, if it exists. aMagic is used
2807 ** as a temporary buffer to inspect the first couple of bytes of
2808 ** the potential journal header.
danielk1977112f7522009-01-08 17:50:45 +00002809 */
drh7b746032009-06-26 12:15:22 +00002810 i64 iNextHdrOffset;
danielk1977bea2a942009-01-20 17:06:27 +00002811 u8 aMagic[8];
drh7b746032009-06-26 12:15:22 +00002812 u8 zHeader[sizeof(aJournalMagic)+4];
2813
2814 memcpy(zHeader, aJournalMagic, sizeof(aJournalMagic));
2815 put32bits(&zHeader[sizeof(aJournalMagic)], pPager->nRec);
2816
2817 iNextHdrOffset = journalHdrOffset(pPager);
danielk1977bea2a942009-01-20 17:06:27 +00002818 rc = sqlite3OsRead(pPager->jfd, aMagic, 8, iNextHdrOffset);
2819 if( rc==SQLITE_OK && 0==memcmp(aMagic, aJournalMagic, 8) ){
danielk1977112f7522009-01-08 17:50:45 +00002820 static const u8 zerobyte = 0;
danielk1977bea2a942009-01-20 17:06:27 +00002821 rc = sqlite3OsWrite(pPager->jfd, &zerobyte, 1, iNextHdrOffset);
danielk1977112f7522009-01-08 17:50:45 +00002822 }
2823 if( rc!=SQLITE_OK && rc!=SQLITE_IOERR_SHORT_READ ){
2824 return rc;
2825 }
2826
danielk197776572402004-06-25 02:38:54 +00002827 /* Write the nRec value into the journal file header. If in
2828 ** full-synchronous mode, sync the journal first. This ensures that
2829 ** all data has really hit the disk before nRec is updated to mark
danielk19774cd2cd52007-08-23 14:48:23 +00002830 ** it as a candidate for rollback.
2831 **
2832 ** This is not required if the persistent media supports the
2833 ** SAFE_APPEND property. Because in this case it is not possible
2834 ** for garbage data to be appended to the file, the nRec field
2835 ** is populated with 0xFFFFFFFF when the journal header is written
2836 ** and never needs to be updated.
danielk197776572402004-06-25 02:38:54 +00002837 */
danielk19774cd2cd52007-08-23 14:48:23 +00002838 if( pPager->fullSync && 0==(iDc&SQLITE_IOCAP_SEQUENTIAL) ){
drh30d53702009-01-06 15:58:57 +00002839 PAGERTRACE(("SYNC journal of %d\n", PAGERID(pPager)));
drhb0603412007-02-28 04:47:26 +00002840 IOTRACE(("JSYNC %p\n", pPager))
danielk1977f036aef2007-08-20 05:36:51 +00002841 rc = sqlite3OsSync(pPager->jfd, pPager->sync_flags);
danielk1977bea2a942009-01-20 17:06:27 +00002842 if( rc!=SQLITE_OK ) return rc;
drhd8d66e82003-02-12 02:10:15 +00002843 }
drh7b746032009-06-26 12:15:22 +00002844 IOTRACE(("JHDR %p %lld\n", pPager, pPager->journalHdr));
danielk19776f4c73e2009-06-26 07:12:06 +00002845 rc = sqlite3OsWrite(
2846 pPager->jfd, zHeader, sizeof(zHeader), pPager->journalHdr
2847 );
danielk1977bea2a942009-01-20 17:06:27 +00002848 if( rc!=SQLITE_OK ) return rc;
drh968af522003-02-11 14:55:40 +00002849 }
danielk19774cd2cd52007-08-23 14:48:23 +00002850 if( 0==(iDc&SQLITE_IOCAP_SEQUENTIAL) ){
drh30d53702009-01-06 15:58:57 +00002851 PAGERTRACE(("SYNC journal of %d\n", PAGERID(pPager)));
danielk19774cd2cd52007-08-23 14:48:23 +00002852 IOTRACE(("JSYNC %p\n", pPager))
2853 rc = sqlite3OsSync(pPager->jfd, pPager->sync_flags|
2854 (pPager->sync_flags==SQLITE_SYNC_FULL?SQLITE_SYNC_DATAONLY:0)
2855 );
danielk1977bea2a942009-01-20 17:06:27 +00002856 if( rc!=SQLITE_OK ) return rc;
danielk19774cd2cd52007-08-23 14:48:23 +00002857 }
drhfa86c412002-02-02 15:01:15 +00002858 }
danielk197745d68822009-01-16 16:23:38 +00002859
danielk1977bea2a942009-01-20 17:06:27 +00002860 /* The journal file was just successfully synced. Set Pager.needSync
2861 ** to zero and clear the PGHDR_NEED_SYNC flag on all pagess.
danielk197745d68822009-01-16 16:23:38 +00002862 */
danielk1977bea2a942009-01-20 17:06:27 +00002863 pPager->needSync = 0;
2864 pPager->journalStarted = 1;
danielk1977bc2ca9e2008-11-13 14:28:28 +00002865 sqlite3PcacheClearSyncFlags(pPager->pPCache);
drh50e5dad2001-09-15 00:57:28 +00002866 }
drh03eb96a2002-11-10 23:32:56 +00002867
danielk1977bea2a942009-01-20 17:06:27 +00002868 return SQLITE_OK;
drh50e5dad2001-09-15 00:57:28 +00002869}
2870
2871/*
danielk1977bea2a942009-01-20 17:06:27 +00002872** The argument is the first in a linked list of dirty pages connected
2873** by the PgHdr.pDirty pointer. This function writes each one of the
2874** in-memory pages in the list to the database file. The argument may
2875** be NULL, representing an empty list. In this case this function is
2876** a no-op.
2877**
2878** The pager must hold at least a RESERVED lock when this function
2879** is called. Before writing anything to the database file, this lock
2880** is upgraded to an EXCLUSIVE lock. If the lock cannot be obtained,
2881** SQLITE_BUSY is returned and no data is written to the database file.
2882**
2883** If the pager is a temp-file pager and the actual file-system file
2884** is not yet open, it is created and opened before any data is
2885** written out.
2886**
2887** Once the lock has been upgraded and, if necessary, the file opened,
2888** the pages are written out to the database file in list order. Writing
2889** a page is skipped if it meets either of the following criteria:
2890**
2891** * The page number is greater than Pager.dbSize, or
2892** * The PGHDR_DONT_WRITE flag is set on the page.
2893**
2894** If writing out a page causes the database file to grow, Pager.dbFileSize
2895** is updated accordingly. If page 1 is written out, then the value cached
2896** in Pager.dbFileVers[] is updated to match the new value stored in
2897** the database file.
2898**
2899** If everything is successful, SQLITE_OK is returned. If an IO error
2900** occurs, an IO error code is returned. Or, if the EXCLUSIVE lock cannot
2901** be obtained, SQLITE_BUSY is returned.
drh2554f8b2003-01-22 01:26:44 +00002902*/
2903static int pager_write_pagelist(PgHdr *pList){
danielk1977bea2a942009-01-20 17:06:27 +00002904 Pager *pPager; /* Pager object */
2905 int rc; /* Return code */
drh2554f8b2003-01-22 01:26:44 +00002906
drhfe6212d2009-07-22 13:19:20 +00002907 if( NEVER(pList==0) ) return SQLITE_OK;
drh2554f8b2003-01-22 01:26:44 +00002908 pPager = pList->pPager;
danielk19779eed5052004-06-04 10:38:30 +00002909
2910 /* At this point there may be either a RESERVED or EXCLUSIVE lock on the
2911 ** database file. If there is already an EXCLUSIVE lock, the following
danielk1977bea2a942009-01-20 17:06:27 +00002912 ** call is a no-op.
danielk19779eed5052004-06-04 10:38:30 +00002913 **
drha6abd042004-06-09 17:37:22 +00002914 ** Moving the lock from RESERVED to EXCLUSIVE actually involves going
2915 ** through an intermediate state PENDING. A PENDING lock prevents new
2916 ** readers from attaching to the database but is unsufficient for us to
2917 ** write. The idea of a PENDING lock is to prevent new readers from
2918 ** coming in while we wait for existing readers to clear.
danielk19779eed5052004-06-04 10:38:30 +00002919 **
drha6abd042004-06-09 17:37:22 +00002920 ** While the pager is in the RESERVED state, the original database file
2921 ** is unchanged and we can rollback without having to playback the
2922 ** journal into the original database file. Once we transition to
2923 ** EXCLUSIVE, it means the database file has been changed and any rollback
2924 ** will require a journal playback.
danielk19779eed5052004-06-04 10:38:30 +00002925 */
danielk1977bea2a942009-01-20 17:06:27 +00002926 assert( pPager->state>=PAGER_RESERVED );
drh684917c2004-10-05 02:41:42 +00002927 rc = pager_wait_on_lock(pPager, EXCLUSIVE_LOCK);
danielk1977bea2a942009-01-20 17:06:27 +00002928
2929 /* If the file is a temp-file has not yet been opened, open it now. It
2930 ** is not possible for rc to be other than SQLITE_OK if this branch
2931 ** is taken, as pager_wait_on_lock() is a no-op for temp-files.
2932 */
2933 if( !isOpen(pPager->fd) ){
2934 assert( pPager->tempFile && rc==SQLITE_OK );
2935 rc = pagerOpentemp(pPager, pPager->fd, pPager->vfsFlags);
danielk19779eed5052004-06-04 10:38:30 +00002936 }
2937
danielk1977bea2a942009-01-20 17:06:27 +00002938 while( rc==SQLITE_OK && pList ){
2939 Pgno pgno = pList->pgno;
danielk19777a2b1ee2007-08-21 14:27:01 +00002940
danielk1977687566d2004-11-02 12:56:41 +00002941 /* If there are dirty pages in the page cache with page numbers greater
danielk1977f90b7262009-01-07 15:18:20 +00002942 ** than Pager.dbSize, this means sqlite3PagerTruncateImage() was called to
danielk1977687566d2004-11-02 12:56:41 +00002943 ** make the file smaller (presumably by auto-vacuum code). Do not write
2944 ** any such pages to the file.
danielk1977bea2a942009-01-20 17:06:27 +00002945 **
2946 ** Also, do not write out any page that has the PGHDR_DONT_WRITE flag
2947 ** set (set by sqlite3PagerDontWrite()).
danielk1977687566d2004-11-02 12:56:41 +00002948 */
danielk1977bea2a942009-01-20 17:06:27 +00002949 if( pgno<=pPager->dbSize && 0==(pList->flags&PGHDR_DONT_WRITE) ){
drh85d2bd22009-06-11 00:47:20 +00002950 i64 offset = (pgno-1)*(i64)pPager->pageSize; /* Offset to write */
2951 char *pData; /* Data to write */
2952
2953 /* Encode the database */
2954 CODEC2(pPager, pList->pData, pgno, 6, return SQLITE_NOMEM, pData);
danielk1977443c0592009-01-16 15:21:05 +00002955
danielk1977bea2a942009-01-20 17:06:27 +00002956 /* Write out the page data. */
danielk197745d68822009-01-16 16:23:38 +00002957 rc = sqlite3OsWrite(pPager->fd, pData, pPager->pageSize, offset);
danielk1977bea2a942009-01-20 17:06:27 +00002958
2959 /* If page 1 was just written, update Pager.dbFileVers to match
2960 ** the value now stored in the database file. If writing this
2961 ** page caused the database file to grow, update dbFileSize.
2962 */
2963 if( pgno==1 ){
danielk197745d68822009-01-16 16:23:38 +00002964 memcpy(&pPager->dbFileVers, &pData[24], sizeof(pPager->dbFileVers));
2965 }
danielk1977bea2a942009-01-20 17:06:27 +00002966 if( pgno>pPager->dbFileSize ){
2967 pPager->dbFileSize = pgno;
danielk197745d68822009-01-16 16:23:38 +00002968 }
danielk1977bea2a942009-01-20 17:06:27 +00002969
danielk197704103022009-02-03 16:51:24 +00002970 /* Update any backup objects copying the contents of this pager. */
drh0719ee22009-06-18 20:52:47 +00002971 sqlite3BackupUpdate(pPager->pBackup, pgno, (u8*)pList->pData);
danielk197704103022009-02-03 16:51:24 +00002972
danielk1977bea2a942009-01-20 17:06:27 +00002973 PAGERTRACE(("STORE %d page %d hash(%08x)\n",
2974 PAGERID(pPager), pgno, pager_pagehash(pList)));
2975 IOTRACE(("PGOUT %p %d\n", pPager, pgno));
2976 PAGER_INCR(sqlite3_pager_writedb_count);
2977 PAGER_INCR(pPager->nWrite);
2978 }else{
2979 PAGERTRACE(("NOSTORE %d page %d\n", PAGERID(pPager), pgno));
danielk1977687566d2004-11-02 12:56:41 +00002980 }
danielk19773c407372005-02-15 02:54:14 +00002981#ifdef SQLITE_CHECK_PAGES
2982 pList->pageHash = pager_pagehash(pList);
2983#endif
drh2554f8b2003-01-22 01:26:44 +00002984 pList = pList->pDirty;
2985 }
danielk19778c0a7912008-08-20 14:49:23 +00002986
danielk1977bea2a942009-01-20 17:06:27 +00002987 return rc;
drh2554f8b2003-01-22 01:26:44 +00002988}
2989
2990/*
danielk1977bea2a942009-01-20 17:06:27 +00002991** Append a record of the current state of page pPg to the sub-journal.
2992** It is the callers responsibility to use subjRequiresPage() to check
2993** that it is really required before calling this function.
2994**
2995** If successful, set the bit corresponding to pPg->pgno in the bitvecs
2996** for all open savepoints before returning.
2997**
2998** This function returns SQLITE_OK if everything is successful, an IO
2999** error code if the attempt to write to the sub-journal fails, or
3000** SQLITE_NOMEM if a malloc fails while setting a bit in a savepoint
3001** bitvec.
danielk1977f2c31ad2009-01-06 13:40:08 +00003002*/
3003static int subjournalPage(PgHdr *pPg){
danielk1977651a52f2009-02-04 10:09:04 +00003004 int rc = SQLITE_OK;
danielk1977f2c31ad2009-01-06 13:40:08 +00003005 Pager *pPager = pPg->pPager;
danielk1977651a52f2009-02-04 10:09:04 +00003006 if( isOpen(pPager->sjfd) ){
3007 void *pData = pPg->pData;
3008 i64 offset = pPager->nSubRec*(4+pPager->pageSize);
drh85d2bd22009-06-11 00:47:20 +00003009 char *pData2;
3010
3011 CODEC2(pPager, pData, pPg->pgno, 7, return SQLITE_NOMEM, pData2);
danielk1977651a52f2009-02-04 10:09:04 +00003012 PAGERTRACE(("STMT-JOURNAL %d page %d\n", PAGERID(pPager), pPg->pgno));
3013
3014 assert( pageInJournal(pPg) || pPg->pgno>pPager->dbOrigSize );
3015 rc = write32bits(pPager->sjfd, offset, pPg->pgno);
3016 if( rc==SQLITE_OK ){
3017 rc = sqlite3OsWrite(pPager->sjfd, pData2, pPager->pageSize, offset+4);
3018 }
danielk1977f2c31ad2009-01-06 13:40:08 +00003019 }
3020 if( rc==SQLITE_OK ){
danielk1977bea2a942009-01-20 17:06:27 +00003021 pPager->nSubRec++;
danielk1977f2c31ad2009-01-06 13:40:08 +00003022 assert( pPager->nSavepoint>0 );
3023 rc = addToSavepointBitvecs(pPager, pPg->pgno);
3024 }
3025 return rc;
3026}
3027
3028
3029/*
danielk19778c0a7912008-08-20 14:49:23 +00003030** This function is called by the pcache layer when it has reached some
danielk1977bea2a942009-01-20 17:06:27 +00003031** soft memory limit. The first argument is a pointer to a Pager object
3032** (cast as a void*). The pager is always 'purgeable' (not an in-memory
3033** database). The second argument is a reference to a page that is
3034** currently dirty but has no outstanding references. The page
3035** is always associated with the Pager object passed as the first
3036** argument.
3037**
3038** The job of this function is to make pPg clean by writing its contents
3039** out to the database file, if possible. This may involve syncing the
3040** journal file.
3041**
3042** If successful, sqlite3PcacheMakeClean() is called on the page and
3043** SQLITE_OK returned. If an IO error occurs while trying to make the
3044** page clean, the IO error code is returned. If the page cannot be
3045** made clean for some other reason, but no error occurs, then SQLITE_OK
3046** is returned by sqlite3PcacheMakeClean() is not called.
drh2554f8b2003-01-22 01:26:44 +00003047*/
danielk1977a858aa22008-08-22 16:22:17 +00003048static int pagerStress(void *p, PgHdr *pPg){
danielk19778c0a7912008-08-20 14:49:23 +00003049 Pager *pPager = (Pager *)p;
danielk19778c0a7912008-08-20 14:49:23 +00003050 int rc = SQLITE_OK;
drh8f2e9a12008-02-26 14:46:04 +00003051
danielk1977bea2a942009-01-20 17:06:27 +00003052 assert( pPg->pPager==pPager );
3053 assert( pPg->flags&PGHDR_DIRTY );
3054
3055 /* The doNotSync flag is set by the sqlite3PagerWrite() function while it
3056 ** is journalling a set of two or more database pages that are stored
3057 ** on the same disk sector. Syncing the journal is not allowed while
3058 ** this is happening as it is important that all members of such a
3059 ** set of pages are synced to disk together. So, if the page this function
3060 ** is trying to make clean will require a journal sync and the doNotSync
3061 ** flag is set, return without doing anything. The pcache layer will
3062 ** just have to go ahead and allocate a new page buffer instead of
3063 ** reusing pPg.
3064 **
3065 ** Similarly, if the pager has already entered the error state, do not
3066 ** try to write the contents of pPg to disk.
3067 */
3068 if( pPager->errCode || (pPager->doNotSync && pPg->flags&PGHDR_NEED_SYNC) ){
danielk19778c200142008-08-25 07:12:28 +00003069 return SQLITE_OK;
3070 }
3071
danielk1977bea2a942009-01-20 17:06:27 +00003072 /* Sync the journal file if required. */
3073 if( pPg->flags&PGHDR_NEED_SYNC ){
3074 rc = syncJournal(pPager);
3075 if( rc==SQLITE_OK && pPager->fullSync &&
3076 !(pPager->journalMode==PAGER_JOURNALMODE_MEMORY) &&
3077 !(sqlite3OsDeviceCharacteristics(pPager->fd)&SQLITE_IOCAP_SAFE_APPEND)
3078 ){
3079 pPager->nRec = 0;
3080 rc = writeJournalHdr(pPager);
danielk1977a858aa22008-08-22 16:22:17 +00003081 }
3082 }
3083
danielk1977bea2a942009-01-20 17:06:27 +00003084 /* If the page number of this page is larger than the current size of
3085 ** the database image, it may need to be written to the sub-journal.
3086 ** This is because the call to pager_write_pagelist() below will not
3087 ** actually write data to the file in this case.
3088 **
3089 ** Consider the following sequence of events:
3090 **
3091 ** BEGIN;
3092 ** <journal page X>
3093 ** <modify page X>
3094 ** SAVEPOINT sp;
3095 ** <shrink database file to Y pages>
3096 ** pagerStress(page X)
3097 ** ROLLBACK TO sp;
3098 **
3099 ** If (X>Y), then when pagerStress is called page X will not be written
3100 ** out to the database file, but will be dropped from the cache. Then,
3101 ** following the "ROLLBACK TO sp" statement, reading page X will read
3102 ** data from the database file. This will be the copy of page X as it
3103 ** was when the transaction started, not as it was when "SAVEPOINT sp"
3104 ** was executed.
3105 **
3106 ** The solution is to write the current data for page X into the
3107 ** sub-journal file now (if it is not already there), so that it will
3108 ** be restored to its current value when the "ROLLBACK TO sp" is
3109 ** executed.
3110 */
drh0b0abe42009-07-25 14:18:57 +00003111 if( NEVER(
3112 rc==SQLITE_OK && pPg->pgno>pPager->dbSize && subjRequiresPage(pPg)
3113 ) ){
danielk1977bea2a942009-01-20 17:06:27 +00003114 rc = subjournalPage(pPg);
3115 }
3116
3117 /* Write the contents of the page out to the database file. */
3118 if( rc==SQLITE_OK ){
3119 pPg->pDirty = 0;
3120 rc = pager_write_pagelist(pPg);
3121 }
3122
3123 /* Mark the page as clean. */
danielk1977a858aa22008-08-22 16:22:17 +00003124 if( rc==SQLITE_OK ){
drh30d53702009-01-06 15:58:57 +00003125 PAGERTRACE(("STRESS %d page %d\n", PAGERID(pPager), pPg->pgno));
danielk1977a858aa22008-08-22 16:22:17 +00003126 sqlite3PcacheMakeClean(pPg);
danielk19778c0a7912008-08-20 14:49:23 +00003127 }
danielk1977bea2a942009-01-20 17:06:27 +00003128
3129 return pager_error(pPager, rc);
drh2554f8b2003-01-22 01:26:44 +00003130}
3131
danielk19778c0a7912008-08-20 14:49:23 +00003132
drh2554f8b2003-01-22 01:26:44 +00003133/*
danielk1977bea2a942009-01-20 17:06:27 +00003134** Allocate and initialize a new Pager object and put a pointer to it
3135** in *ppPager. The pager should eventually be freed by passing it
3136** to sqlite3PagerClose().
3137**
3138** The zFilename argument is the path to the database file to open.
3139** If zFilename is NULL then a randomly-named temporary file is created
3140** and used as the file to be cached. Temporary files are be deleted
3141** automatically when they are closed. If zFilename is ":memory:" then
3142** all information is held in cache. It is never written to disk.
3143** This can be used to implement an in-memory database.
3144**
3145** The nExtra parameter specifies the number of bytes of space allocated
3146** along with each page reference. This space is available to the user
3147** via the sqlite3PagerGetExtra() API.
3148**
3149** The flags argument is used to specify properties that affect the
3150** operation of the pager. It should be passed some bitwise combination
3151** of the PAGER_OMIT_JOURNAL and PAGER_NO_READLOCK flags.
3152**
3153** The vfsFlags parameter is a bitmask to pass to the flags parameter
3154** of the xOpen() method of the supplied VFS when opening files.
3155**
3156** If the pager object is allocated and the specified file opened
3157** successfully, SQLITE_OK is returned and *ppPager set to point to
3158** the new pager object. If an error occurs, *ppPager is set to NULL
3159** and error code returned. This function may return SQLITE_NOMEM
3160** (sqlite3Malloc() is used to allocate memory), SQLITE_CANTOPEN or
3161** various SQLITE_IO_XXX errors.
3162*/
3163int sqlite3PagerOpen(
3164 sqlite3_vfs *pVfs, /* The virtual file system to use */
3165 Pager **ppPager, /* OUT: Return the Pager structure here */
3166 const char *zFilename, /* Name of the database file to open */
3167 int nExtra, /* Extra bytes append to each in-memory page */
3168 int flags, /* flags controlling this file */
drh4775ecd2009-07-24 19:01:19 +00003169 int vfsFlags, /* flags passed through to sqlite3_vfs.xOpen() */
3170 void (*xReinit)(DbPage*) /* Function to reinitialize pages */
danielk1977bea2a942009-01-20 17:06:27 +00003171){
3172 u8 *pPtr;
3173 Pager *pPager = 0; /* Pager object to allocate and return */
3174 int rc = SQLITE_OK; /* Return code */
3175 int tempFile = 0; /* True for temp files (incl. in-memory files) */
3176 int memDb = 0; /* True if this is an in-memory file */
3177 int readOnly = 0; /* True if this is a read-only file */
3178 int journalFileSize; /* Bytes to allocate for each journal fd */
3179 char *zPathname = 0; /* Full path to database file */
3180 int nPathname = 0; /* Number of bytes in zPathname */
3181 int useJournal = (flags & PAGER_OMIT_JOURNAL)==0; /* False to omit journal */
3182 int noReadlock = (flags & PAGER_NO_READLOCK)!=0; /* True to omit read-lock */
3183 int pcacheSize = sqlite3PcacheSize(); /* Bytes to allocate for PCache */
3184 u16 szPageDflt = SQLITE_DEFAULT_PAGE_SIZE; /* Default page size */
3185
3186 /* Figure out how much space is required for each journal file-handle
3187 ** (there are two of them, the main journal and the sub-journal). This
3188 ** is the maximum space required for an in-memory journal file handle
3189 ** and a regular journal file-handle. Note that a "regular journal-handle"
3190 ** may be a wrapper capable of caching the first portion of the journal
3191 ** file in memory to implement the atomic-write optimization (see
3192 ** source file journal.c).
3193 */
3194 if( sqlite3JournalSize(pVfs)>sqlite3MemJournalSize() ){
drhea598cb2009-04-05 12:22:08 +00003195 journalFileSize = ROUND8(sqlite3JournalSize(pVfs));
danielk1977bea2a942009-01-20 17:06:27 +00003196 }else{
drhea598cb2009-04-05 12:22:08 +00003197 journalFileSize = ROUND8(sqlite3MemJournalSize());
danielk1977bea2a942009-01-20 17:06:27 +00003198 }
3199
3200 /* Set the output variable to NULL in case an error occurs. */
3201 *ppPager = 0;
3202
3203 /* Compute and store the full pathname in an allocated buffer pointed
3204 ** to by zPathname, length nPathname. Or, if this is a temporary file,
3205 ** leave both nPathname and zPathname set to 0.
3206 */
3207 if( zFilename && zFilename[0] ){
3208 nPathname = pVfs->mxPathname+1;
3209 zPathname = sqlite3Malloc(nPathname*2);
3210 if( zPathname==0 ){
3211 return SQLITE_NOMEM;
3212 }
3213#ifndef SQLITE_OMIT_MEMORYDB
3214 if( strcmp(zFilename,":memory:")==0 ){
3215 memDb = 1;
3216 zPathname[0] = 0;
3217 }else
3218#endif
3219 {
drhe8df8002009-02-17 16:17:01 +00003220 zPathname[0] = 0; /* Make sure initialized even if FullPathname() fails */
danielk1977bea2a942009-01-20 17:06:27 +00003221 rc = sqlite3OsFullPathname(pVfs, zFilename, nPathname, zPathname);
3222 }
3223
3224 nPathname = sqlite3Strlen30(zPathname);
3225 if( rc==SQLITE_OK && nPathname+8>pVfs->mxPathname ){
3226 /* This branch is taken when the journal path required by
3227 ** the database being opened will be more than pVfs->mxPathname
3228 ** bytes in length. This means the database cannot be opened,
3229 ** as it will not be possible to open the journal file or even
3230 ** check for a hot-journal before reading.
3231 */
3232 rc = SQLITE_CANTOPEN;
3233 }
3234 if( rc!=SQLITE_OK ){
3235 sqlite3_free(zPathname);
3236 return rc;
3237 }
3238 }
3239
3240 /* Allocate memory for the Pager structure, PCache object, the
3241 ** three file descriptors, the database file name and the journal
3242 ** file name. The layout in memory is as follows:
3243 **
3244 ** Pager object (sizeof(Pager) bytes)
3245 ** PCache object (sqlite3PcacheSize() bytes)
3246 ** Database file handle (pVfs->szOsFile bytes)
3247 ** Sub-journal file handle (journalFileSize bytes)
3248 ** Main journal file handle (journalFileSize bytes)
3249 ** Database file name (nPathname+1 bytes)
3250 ** Journal file name (nPathname+8+1 bytes)
3251 */
3252 pPtr = (u8 *)sqlite3MallocZero(
drhea598cb2009-04-05 12:22:08 +00003253 ROUND8(sizeof(*pPager)) + /* Pager structure */
3254 ROUND8(pcacheSize) + /* PCache object */
3255 ROUND8(pVfs->szOsFile) + /* The main db file */
3256 journalFileSize * 2 + /* The two journal files */
3257 nPathname + 1 + /* zFilename */
3258 nPathname + 8 + 1 /* zJournal */
danielk1977bea2a942009-01-20 17:06:27 +00003259 );
shane60a4b532009-05-06 18:57:09 +00003260 assert( EIGHT_BYTE_ALIGNMENT(SQLITE_INT_TO_PTR(journalFileSize)) );
danielk1977bea2a942009-01-20 17:06:27 +00003261 if( !pPtr ){
3262 sqlite3_free(zPathname);
3263 return SQLITE_NOMEM;
3264 }
3265 pPager = (Pager*)(pPtr);
drhea598cb2009-04-05 12:22:08 +00003266 pPager->pPCache = (PCache*)(pPtr += ROUND8(sizeof(*pPager)));
3267 pPager->fd = (sqlite3_file*)(pPtr += ROUND8(pcacheSize));
3268 pPager->sjfd = (sqlite3_file*)(pPtr += ROUND8(pVfs->szOsFile));
danielk1977bea2a942009-01-20 17:06:27 +00003269 pPager->jfd = (sqlite3_file*)(pPtr += journalFileSize);
3270 pPager->zFilename = (char*)(pPtr += journalFileSize);
drhea598cb2009-04-05 12:22:08 +00003271 assert( EIGHT_BYTE_ALIGNMENT(pPager->jfd) );
danielk1977bea2a942009-01-20 17:06:27 +00003272
3273 /* Fill in the Pager.zFilename and Pager.zJournal buffers, if required. */
3274 if( zPathname ){
3275 pPager->zJournal = (char*)(pPtr += nPathname + 1);
3276 memcpy(pPager->zFilename, zPathname, nPathname);
3277 memcpy(pPager->zJournal, zPathname, nPathname);
3278 memcpy(&pPager->zJournal[nPathname], "-journal", 8);
drhd5bc7252009-07-06 21:54:40 +00003279 if( pPager->zFilename[0]==0 ) pPager->zJournal[0] = 0;
danielk1977bea2a942009-01-20 17:06:27 +00003280 sqlite3_free(zPathname);
3281 }
3282 pPager->pVfs = pVfs;
3283 pPager->vfsFlags = vfsFlags;
3284
3285 /* Open the pager file.
3286 */
3287 if( zFilename && zFilename[0] && !memDb ){
3288 int fout = 0; /* VFS flags returned by xOpen() */
3289 rc = sqlite3OsOpen(pVfs, pPager->zFilename, pPager->fd, vfsFlags, &fout);
3290 readOnly = (fout&SQLITE_OPEN_READONLY);
3291
3292 /* If the file was successfully opened for read/write access,
3293 ** choose a default page size in case we have to create the
3294 ** database file. The default page size is the maximum of:
3295 **
3296 ** + SQLITE_DEFAULT_PAGE_SIZE,
3297 ** + The value returned by sqlite3OsSectorSize()
3298 ** + The largest page size that can be written atomically.
3299 */
3300 if( rc==SQLITE_OK && !readOnly ){
3301 setSectorSize(pPager);
shaned87897d2009-01-30 05:40:27 +00003302 assert(SQLITE_DEFAULT_PAGE_SIZE<=SQLITE_MAX_DEFAULT_PAGE_SIZE);
danielk1977bea2a942009-01-20 17:06:27 +00003303 if( szPageDflt<pPager->sectorSize ){
shaned87897d2009-01-30 05:40:27 +00003304 if( pPager->sectorSize>SQLITE_MAX_DEFAULT_PAGE_SIZE ){
3305 szPageDflt = SQLITE_MAX_DEFAULT_PAGE_SIZE;
3306 }else{
3307 szPageDflt = (u16)pPager->sectorSize;
3308 }
danielk1977bea2a942009-01-20 17:06:27 +00003309 }
3310#ifdef SQLITE_ENABLE_ATOMIC_WRITE
3311 {
3312 int iDc = sqlite3OsDeviceCharacteristics(pPager->fd);
3313 int ii;
3314 assert(SQLITE_IOCAP_ATOMIC512==(512>>8));
3315 assert(SQLITE_IOCAP_ATOMIC64K==(65536>>8));
3316 assert(SQLITE_MAX_DEFAULT_PAGE_SIZE<=65536);
3317 for(ii=szPageDflt; ii<=SQLITE_MAX_DEFAULT_PAGE_SIZE; ii=ii*2){
3318 if( iDc&(SQLITE_IOCAP_ATOMIC|(ii>>8)) ){
3319 szPageDflt = ii;
3320 }
3321 }
3322 }
3323#endif
danielk1977bea2a942009-01-20 17:06:27 +00003324 }
3325 }else{
3326 /* If a temporary file is requested, it is not opened immediately.
3327 ** In this case we accept the default page size and delay actually
3328 ** opening the file until the first call to OsWrite().
3329 **
3330 ** This branch is also run for an in-memory database. An in-memory
3331 ** database is the same as a temp-file that is never written out to
3332 ** disk and uses an in-memory rollback journal.
3333 */
3334 tempFile = 1;
3335 pPager->state = PAGER_EXCLUSIVE;
drhaed24602009-06-11 17:32:45 +00003336 readOnly = (vfsFlags&SQLITE_OPEN_READONLY);
danielk1977bea2a942009-01-20 17:06:27 +00003337 }
3338
3339 /* The following call to PagerSetPagesize() serves to set the value of
3340 ** Pager.pageSize and to allocate the Pager.pTmpSpace buffer.
3341 */
3342 if( rc==SQLITE_OK ){
3343 assert( pPager->memDb==0 );
drhfa9601a2009-06-18 17:22:39 +00003344 rc = sqlite3PagerSetPagesize(pPager, &szPageDflt, -1);
danielk1977bea2a942009-01-20 17:06:27 +00003345 testcase( rc!=SQLITE_OK );
3346 }
3347
shanebe217792009-03-05 04:20:31 +00003348 /* If an error occurred in either of the blocks above, free the
danielk1977bea2a942009-01-20 17:06:27 +00003349 ** Pager structure and close the file.
3350 */
3351 if( rc!=SQLITE_OK ){
3352 assert( !pPager->pTmpSpace );
3353 sqlite3OsClose(pPager->fd);
3354 sqlite3_free(pPager);
3355 return rc;
3356 }
3357
3358 /* Initialize the PCache object. */
drhfa9601a2009-06-18 17:22:39 +00003359 assert( nExtra<1000 );
danielk1977bc739712009-03-23 04:33:32 +00003360 nExtra = ROUND8(nExtra);
danielk1977bea2a942009-01-20 17:06:27 +00003361 sqlite3PcacheOpen(szPageDflt, nExtra, !memDb,
3362 !memDb?pagerStress:0, (void *)pPager, pPager->pPCache);
3363
3364 PAGERTRACE(("OPEN %d %s\n", FILEHANDLEID(pPager->fd), pPager->zFilename));
3365 IOTRACE(("OPEN %p %s\n", pPager, pPager->zFilename))
3366
3367 pPager->useJournal = (u8)useJournal;
3368 pPager->noReadlock = (noReadlock && readOnly) ?1:0;
3369 /* pPager->stmtOpen = 0; */
3370 /* pPager->stmtInUse = 0; */
3371 /* pPager->nRef = 0; */
3372 pPager->dbSizeValid = (u8)memDb;
3373 /* pPager->stmtSize = 0; */
3374 /* pPager->stmtJSize = 0; */
3375 /* pPager->nPage = 0; */
3376 pPager->mxPgno = SQLITE_MAX_PAGE_COUNT;
3377 /* pPager->state = PAGER_UNLOCK; */
3378 assert( pPager->state == (tempFile ? PAGER_EXCLUSIVE : PAGER_UNLOCK) );
3379 /* pPager->errMask = 0; */
3380 pPager->tempFile = (u8)tempFile;
3381 assert( tempFile==PAGER_LOCKINGMODE_NORMAL
3382 || tempFile==PAGER_LOCKINGMODE_EXCLUSIVE );
3383 assert( PAGER_LOCKINGMODE_EXCLUSIVE==1 );
3384 pPager->exclusiveMode = (u8)tempFile;
3385 pPager->changeCountDone = pPager->tempFile;
3386 pPager->memDb = (u8)memDb;
3387 pPager->readOnly = (u8)readOnly;
3388 /* pPager->needSync = 0; */
drh4775ecd2009-07-24 19:01:19 +00003389 assert( useJournal || pPager->tempFile );
3390 pPager->noSync = pPager->tempFile;
danielk1977bea2a942009-01-20 17:06:27 +00003391 pPager->fullSync = pPager->noSync ?0:1;
3392 pPager->sync_flags = SQLITE_SYNC_NORMAL;
3393 /* pPager->pFirst = 0; */
3394 /* pPager->pFirstSynced = 0; */
3395 /* pPager->pLast = 0; */
drhfa9601a2009-06-18 17:22:39 +00003396 pPager->nExtra = (u16)nExtra;
danielk1977bea2a942009-01-20 17:06:27 +00003397 pPager->journalSizeLimit = SQLITE_DEFAULT_JOURNAL_SIZE_LIMIT;
3398 assert( isOpen(pPager->fd) || tempFile );
3399 setSectorSize(pPager);
drh4775ecd2009-07-24 19:01:19 +00003400 if( !useJournal ){
3401 pPager->journalMode = PAGER_JOURNALMODE_OFF;
3402 }else if( memDb ){
danielk1977bea2a942009-01-20 17:06:27 +00003403 pPager->journalMode = PAGER_JOURNALMODE_MEMORY;
3404 }
3405 /* pPager->xBusyHandler = 0; */
3406 /* pPager->pBusyHandlerArg = 0; */
drh4775ecd2009-07-24 19:01:19 +00003407 pPager->xReiniter = xReinit;
danielk1977bea2a942009-01-20 17:06:27 +00003408 /* memset(pPager->aHash, 0, sizeof(pPager->aHash)); */
3409 *ppPager = pPager;
3410 return SQLITE_OK;
3411}
3412
3413
3414
3415/*
3416** This function is called after transitioning from PAGER_UNLOCK to
3417** PAGER_SHARED state. It tests if there is a hot journal present in
3418** the file-system for the given pager. A hot journal is one that
3419** needs to be played back. According to this function, a hot-journal
danielk1977ee8b7992009-03-26 17:13:06 +00003420** file exists if the following criteria are met:
danielk1977bea2a942009-01-20 17:06:27 +00003421**
3422** * The journal file exists in the file system, and
3423** * No process holds a RESERVED or greater lock on the database file, and
danielk1977ee8b7992009-03-26 17:13:06 +00003424** * The database file itself is greater than 0 bytes in size, and
3425** * The first byte of the journal file exists and is not 0x00.
drh165ffe92005-03-15 17:09:30 +00003426**
3427** If the current size of the database file is 0 but a journal file
3428** exists, that is probably an old journal left over from a prior
danielk1977bea2a942009-01-20 17:06:27 +00003429** database with the same name. In this case the journal file is
3430** just deleted using OsDelete, *pExists is set to 0 and SQLITE_OK
3431** is returned.
drh82ed1e52008-04-25 12:25:42 +00003432**
danielk1977ee8b7992009-03-26 17:13:06 +00003433** This routine does not check if there is a master journal filename
3434** at the end of the file. If there is, and that master journal file
3435** does not exist, then the journal file is not really hot. In this
3436** case this routine will return a false-positive. The pager_playback()
3437** routine will discover that the journal file is not really hot and
3438** will not roll it back.
danielk1977bea2a942009-01-20 17:06:27 +00003439**
3440** If a hot-journal file is found to exist, *pExists is set to 1 and
3441** SQLITE_OK returned. If no hot-journal file is present, *pExists is
3442** set to 0 and SQLITE_OK returned. If an IO error occurs while trying
3443** to determine whether or not a hot-journal file exists, the IO error
3444** code is returned and the value of *pExists is undefined.
drh165ffe92005-03-15 17:09:30 +00003445*/
danielk1977d300b8a2008-08-01 10:50:23 +00003446static int hasHotJournal(Pager *pPager, int *pExists){
danielk1977bea2a942009-01-20 17:06:27 +00003447 sqlite3_vfs * const pVfs = pPager->pVfs;
3448 int rc; /* Return code */
danielk1977ee8b7992009-03-26 17:13:06 +00003449 int exists; /* True if a journal file is present */
danielk1977bea2a942009-01-20 17:06:27 +00003450
drh0a846f92008-08-25 17:23:29 +00003451 assert( pPager!=0 );
drhd05c2232009-07-24 21:23:15 +00003452 assert( pPager->useJournal );
danielk1977bea2a942009-01-20 17:06:27 +00003453 assert( isOpen(pPager->fd) );
danielk1977ee8b7992009-03-26 17:13:06 +00003454 assert( !isOpen(pPager->jfd) );
drh8a938f92009-07-25 04:12:02 +00003455 assert( pPager->state <= PAGER_SHARED );
danielk1977bea2a942009-01-20 17:06:27 +00003456
danielk1977d300b8a2008-08-01 10:50:23 +00003457 *pExists = 0;
drh0a846f92008-08-25 17:23:29 +00003458 rc = sqlite3OsAccess(pVfs, pPager->zJournal, SQLITE_ACCESS_EXISTS, &exists);
3459 if( rc==SQLITE_OK && exists ){
danielk1977ee8b7992009-03-26 17:13:06 +00003460 int locked; /* True if some process holds a RESERVED lock */
drhf0039ad2009-05-29 00:30:30 +00003461
3462 /* Race condition here: Another process might have been holding the
3463 ** the RESERVED lock and have a journal open at the sqlite3OsAccess()
3464 ** call above, but then delete the journal and drop the lock before
3465 ** we get to the following sqlite3OsCheckReservedLock() call. If that
3466 ** is the case, this routine might think there is a hot journal when
3467 ** in fact there is none. This results in a false-positive which will
drh9fe769f2009-05-29 11:57:38 +00003468 ** be dealt with by the playback routine. Ticket #3883.
drhf0039ad2009-05-29 00:30:30 +00003469 */
drh0a846f92008-08-25 17:23:29 +00003470 rc = sqlite3OsCheckReservedLock(pPager->fd, &locked);
danielk1977bea2a942009-01-20 17:06:27 +00003471 if( rc==SQLITE_OK && !locked ){
3472 int nPage;
danielk1977ee8b7992009-03-26 17:13:06 +00003473
3474 /* Check the size of the database file. If it consists of 0 pages,
3475 ** then delete the journal file. See the header comment above for
drhf0039ad2009-05-29 00:30:30 +00003476 ** the reasoning here. Delete the obsolete journal file under
drh9fe769f2009-05-29 11:57:38 +00003477 ** a RESERVED lock to avoid race conditions and to avoid violating
3478 ** [H33020].
danielk1977ee8b7992009-03-26 17:13:06 +00003479 */
danielk1977bea2a942009-01-20 17:06:27 +00003480 rc = sqlite3PagerPagecount(pPager, &nPage);
3481 if( rc==SQLITE_OK ){
danielk1977ee8b7992009-03-26 17:13:06 +00003482 if( nPage==0 ){
drhcc0acb22009-05-29 10:55:29 +00003483 sqlite3BeginBenignMalloc();
drh8a938f92009-07-25 04:12:02 +00003484 if( sqlite3OsLock(pPager->fd, RESERVED_LOCK)==SQLITE_OK ){
drhf0039ad2009-05-29 00:30:30 +00003485 sqlite3OsDelete(pVfs, pPager->zJournal, 0);
drh8a938f92009-07-25 04:12:02 +00003486 sqlite3OsUnlock(pPager->fd, SHARED_LOCK);
drhf0039ad2009-05-29 00:30:30 +00003487 }
drhcc0acb22009-05-29 10:55:29 +00003488 sqlite3EndBenignMalloc();
danielk1977bea2a942009-01-20 17:06:27 +00003489 }else{
danielk1977ee8b7992009-03-26 17:13:06 +00003490 /* The journal file exists and no other connection has a reserved
3491 ** or greater lock on the database file. Now check that there is
3492 ** at least one non-zero bytes at the start of the journal file.
3493 ** If there is, then we consider this journal to be hot. If not,
3494 ** it can be ignored.
3495 */
3496 int f = SQLITE_OPEN_READONLY|SQLITE_OPEN_MAIN_JOURNAL;
3497 rc = sqlite3OsOpen(pVfs, pPager->zJournal, pPager->jfd, f, &f);
3498 if( rc==SQLITE_OK ){
3499 u8 first = 0;
3500 rc = sqlite3OsRead(pPager->jfd, (void *)&first, 1, 0);
3501 if( rc==SQLITE_IOERR_SHORT_READ ){
3502 rc = SQLITE_OK;
3503 }
3504 sqlite3OsClose(pPager->jfd);
3505 *pExists = (first!=0);
drhcc0acb22009-05-29 10:55:29 +00003506 }else if( rc==SQLITE_CANTOPEN ){
drhf0039ad2009-05-29 00:30:30 +00003507 /* If we cannot open the rollback journal file in order to see if
3508 ** its has a zero header, that might be due to an I/O error, or
3509 ** it might be due to the race condition described above and in
3510 ** ticket #3883. Either way, assume that the journal is hot.
3511 ** This might be a false positive. But if it is, then the
3512 ** automatic journal playback and recovery mechanism will deal
3513 ** with it under an EXCLUSIVE lock where we do not need to
3514 ** worry so much with race conditions.
3515 */
3516 *pExists = 1;
3517 rc = SQLITE_OK;
danielk1977ee8b7992009-03-26 17:13:06 +00003518 }
danielk1977bea2a942009-01-20 17:06:27 +00003519 }
danielk1977861f7452008-06-05 11:39:11 +00003520 }
3521 }
drhbb5f18d2007-04-06 18:23:17 +00003522 }
danielk1977ee8b7992009-03-26 17:13:06 +00003523
danielk1977d300b8a2008-08-01 10:50:23 +00003524 return rc;
drh165ffe92005-03-15 17:09:30 +00003525}
3526
3527/*
danielk1977bea2a942009-01-20 17:06:27 +00003528** Read the content for page pPg out of the database file and into
3529** pPg->pData. A shared lock or greater must be held on the database
3530** file before this function is called.
3531**
3532** If page 1 is read, then the value of Pager.dbFileVers[] is set to
3533** the value read from the database file.
3534**
3535** If an IO error occurs, then the IO error is returned to the caller.
3536** Otherwise, SQLITE_OK is returned.
danielk1977e180dd92007-04-05 17:15:52 +00003537*/
danielk1977bea2a942009-01-20 17:06:27 +00003538static int readDbPage(PgHdr *pPg){
3539 Pager *pPager = pPg->pPager; /* Pager object associated with page pPg */
3540 Pgno pgno = pPg->pgno; /* Page number to read */
3541 int rc; /* Return code */
3542 i64 iOffset; /* Byte offset of file to read from */
3543
3544 assert( pPager->state>=PAGER_SHARED && !MEMDB );
drh4775ecd2009-07-24 19:01:19 +00003545 assert( isOpen(pPager->fd) );
danielk1977bea2a942009-01-20 17:06:27 +00003546
drhd05c2232009-07-24 21:23:15 +00003547 if( NEVER(!isOpen(pPager->fd)) ){
danielk1977bea2a942009-01-20 17:06:27 +00003548 assert( pPager->tempFile );
danielk1977f37adcb2009-02-17 17:56:30 +00003549 memset(pPg->pData, 0, pPager->pageSize);
danielk1977546820e2009-03-28 06:59:41 +00003550 return SQLITE_OK;
danielk19777a2b1ee2007-08-21 14:27:01 +00003551 }
danielk1977bea2a942009-01-20 17:06:27 +00003552 iOffset = (pgno-1)*(i64)pPager->pageSize;
3553 rc = sqlite3OsRead(pPager->fd, pPg->pData, pPager->pageSize, iOffset);
danielk1977546820e2009-03-28 06:59:41 +00003554 if( rc==SQLITE_IOERR_SHORT_READ ){
danielk1977546820e2009-03-28 06:59:41 +00003555 rc = SQLITE_OK;
3556 }
danielk1977bea2a942009-01-20 17:06:27 +00003557 if( pgno==1 ){
3558 u8 *dbFileVers = &((u8*)pPg->pData)[24];
3559 memcpy(&pPager->dbFileVers, dbFileVers, sizeof(pPager->dbFileVers));
3560 }
drh85d2bd22009-06-11 00:47:20 +00003561 CODEC1(pPager, pPg->pData, pgno, 3, rc = SQLITE_NOMEM);
danielk1977bea2a942009-01-20 17:06:27 +00003562
drh538f5702007-04-13 02:14:30 +00003563 PAGER_INCR(sqlite3_pager_readdb_count);
3564 PAGER_INCR(pPager->nRead);
3565 IOTRACE(("PGIN %p %d\n", pPager, pgno));
drh30d53702009-01-06 15:58:57 +00003566 PAGERTRACE(("FETCH %d page %d hash(%08x)\n",
danielk1977bea2a942009-01-20 17:06:27 +00003567 PAGERID(pPager), pgno, pager_pagehash(pPg)));
3568
danielk1977e180dd92007-04-05 17:15:52 +00003569 return rc;
3570}
3571
danielk1977e180dd92007-04-05 17:15:52 +00003572/*
danielk197789bc4bc2009-07-21 19:25:24 +00003573** This function is called to obtain a shared lock on the database file.
3574** It is illegal to call sqlite3PagerAcquire() until after this function
3575** has been successfully called. If a shared-lock is already held when
3576** this function is called, it is a no-op.
3577**
3578** The following operations are also performed by this function.
danielk1977393f0682007-03-31 10:00:48 +00003579**
danielk1977bea2a942009-01-20 17:06:27 +00003580** 1) If the pager is currently in PAGER_UNLOCK state (no lock held
3581** on the database file), then an attempt is made to obtain a
3582** SHARED lock on the database file. Immediately after obtaining
3583** the SHARED lock, the file-system is checked for a hot-journal,
3584** which is played back if present. Following any hot-journal
3585** rollback, the contents of the cache are validated by checking
3586** the 'change-counter' field of the database file header and
3587** discarded if they are found to be invalid.
3588**
3589** 2) If the pager is running in exclusive-mode, and there are currently
3590** no outstanding references to any pages, and is in the error state,
3591** then an attempt is made to clear the error state by discarding
3592** the contents of the page cache and rolling back any open journal
3593** file.
3594**
3595** If the operation described by (2) above is not attempted, and if the
3596** pager is in an error state other than SQLITE_FULL when this is called,
3597** the error state error code is returned. It is permitted to read the
3598** database when in SQLITE_FULL error state.
3599**
3600** Otherwise, if everything is successful, SQLITE_OK is returned. If an
3601** IO error occurs while locking the database, checking for a hot-journal
3602** file or rolling back a journal file, the IO error code is returned.
danielk1977e277be02007-03-23 18:12:06 +00003603*/
danielk197789bc4bc2009-07-21 19:25:24 +00003604int sqlite3PagerSharedLock(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00003605 int rc = SQLITE_OK; /* Return code */
3606 int isErrorReset = 0; /* True if recovering from error state */
danielk1977e277be02007-03-23 18:12:06 +00003607
drh8a938f92009-07-25 04:12:02 +00003608 /* This routine is only called from b-tree and only when there are no
3609 ** outstanding pages */
3610 assert( sqlite3PcacheRefCount(pPager->pPCache)==0 );
3611
3612 /* If this database is in an error-state, now is a chance to clear
3613 ** the error. Discard the contents of the pager-cache and rollback
3614 ** any hot journal in the file-system.
danielk1977ae72d982007-10-03 08:46:44 +00003615 */
drh8a938f92009-07-25 04:12:02 +00003616 if( !MEMDB && pPager->errCode ){
danielk19773a1bf712009-06-20 18:52:49 +00003617 if( isOpen(pPager->jfd) || pPager->zJournal ){
3618 isErrorReset = 1;
3619 }
danielk1977ae72d982007-10-03 08:46:44 +00003620 pPager->errCode = SQLITE_OK;
danielk197793f7af92008-05-09 16:57:50 +00003621 pager_reset(pPager);
danielk1977ae72d982007-10-03 08:46:44 +00003622 }
3623
3624 /* If the pager is still in an error state, do not proceed. The error
3625 ** state will be cleared at some point in the future when all page
3626 ** references are dropped and the cache can be discarded.
3627 */
3628 if( pPager->errCode && pPager->errCode!=SQLITE_FULL ){
3629 return pPager->errCode;
3630 }
3631
danielk1977d300b8a2008-08-01 10:50:23 +00003632 if( pPager->state==PAGER_UNLOCK || isErrorReset ){
danielk1977bea2a942009-01-20 17:06:27 +00003633 sqlite3_vfs * const pVfs = pPager->pVfs;
drh4f21c4a2008-12-10 22:15:00 +00003634 int isHotJournal = 0;
shane049fc212008-10-22 16:26:47 +00003635 assert( !MEMDB );
danielk1977b3175382008-10-17 18:51:52 +00003636 assert( sqlite3PcacheRefCount(pPager->pPCache)==0 );
3637 if( !pPager->noReadlock ){
3638 rc = pager_wait_on_lock(pPager, SHARED_LOCK);
3639 if( rc!=SQLITE_OK ){
3640 assert( pPager->state==PAGER_UNLOCK );
3641 return pager_error(pPager, rc);
danielk1977e277be02007-03-23 18:12:06 +00003642 }
danielk19770371f1b2009-01-09 17:11:04 +00003643 }else if( pPager->state==PAGER_UNLOCK ){
3644 pPager->state = PAGER_SHARED;
danielk1977b3175382008-10-17 18:51:52 +00003645 }
danielk19770371f1b2009-01-09 17:11:04 +00003646 assert( pPager->state>=SHARED_LOCK );
danielk1977b3175382008-10-17 18:51:52 +00003647
3648 /* If a journal file exists, and there is no RESERVED lock on the
3649 ** database file, then it either needs to be played back or deleted.
3650 */
3651 if( !isErrorReset ){
drh8a938f92009-07-25 04:12:02 +00003652 assert( pPager->state <= PAGER_SHARED );
danielk1977b3175382008-10-17 18:51:52 +00003653 rc = hasHotJournal(pPager, &isHotJournal);
3654 if( rc!=SQLITE_OK ){
3655 goto failed;
3656 }
3657 }
3658 if( isErrorReset || isHotJournal ){
3659 /* Get an EXCLUSIVE lock on the database file. At this point it is
3660 ** important that a RESERVED lock is not obtained on the way to the
3661 ** EXCLUSIVE lock. If it were, another process might open the
3662 ** database file, detect the RESERVED lock, and conclude that the
danielk1977bea2a942009-01-20 17:06:27 +00003663 ** database is safe to read while this process is still rolling the
3664 ** hot-journal back.
danielk1977b3175382008-10-17 18:51:52 +00003665 **
danielk1977bea2a942009-01-20 17:06:27 +00003666 ** Because the intermediate RESERVED lock is not requested, any
3667 ** other process attempting to access the database file will get to
3668 ** this point in the code and fail to obtain its own EXCLUSIVE lock
3669 ** on the database file.
danielk1977e277be02007-03-23 18:12:06 +00003670 */
danielk1977b3175382008-10-17 18:51:52 +00003671 if( pPager->state<EXCLUSIVE_LOCK ){
3672 rc = sqlite3OsLock(pPager->fd, EXCLUSIVE_LOCK);
danielk1977e277be02007-03-23 18:12:06 +00003673 if( rc!=SQLITE_OK ){
danielk197752b472a2008-05-05 16:23:55 +00003674 rc = pager_error(pPager, rc);
3675 goto failed;
danielk1977e277be02007-03-23 18:12:06 +00003676 }
danielk1977b3175382008-10-17 18:51:52 +00003677 pPager->state = PAGER_EXCLUSIVE;
3678 }
3679
3680 /* Open the journal for read/write access. This is because in
3681 ** exclusive-access mode the file descriptor will be kept open and
3682 ** possibly used for a transaction later on. On some systems, the
3683 ** OsTruncate() call used in exclusive-access mode also requires
3684 ** a read/write file handle.
3685 */
danielk1977bea2a942009-01-20 17:06:27 +00003686 if( !isOpen(pPager->jfd) ){
danielk1977b3175382008-10-17 18:51:52 +00003687 int res;
3688 rc = sqlite3OsAccess(pVfs,pPager->zJournal,SQLITE_ACCESS_EXISTS,&res);
3689 if( rc==SQLITE_OK ){
3690 if( res ){
3691 int fout = 0;
3692 int f = SQLITE_OPEN_READWRITE|SQLITE_OPEN_MAIN_JOURNAL;
3693 assert( !pPager->tempFile );
3694 rc = sqlite3OsOpen(pVfs, pPager->zJournal, pPager->jfd, f, &fout);
danielk1977bea2a942009-01-20 17:06:27 +00003695 assert( rc!=SQLITE_OK || isOpen(pPager->jfd) );
danielk1977281d8bd2008-10-29 07:01:56 +00003696 if( rc==SQLITE_OK && fout&SQLITE_OPEN_READONLY ){
3697 rc = SQLITE_CANTOPEN;
danielk1977b3175382008-10-17 18:51:52 +00003698 sqlite3OsClose(pPager->jfd);
3699 }
3700 }else{
danielk1977641a0bd2009-06-20 11:54:39 +00003701 /* If the journal does not exist, it usually means that some
3702 ** other connection managed to get in and roll it back before
3703 ** this connection obtained the exclusive lock above. Or, it
3704 ** may mean that the pager was in the error-state when this
3705 ** function was called and the journal file does not exist. */
3706 rc = pager_end_transaction(pPager, 0);
danielk1977b3175382008-10-17 18:51:52 +00003707 }
3708 }
3709 }
3710 if( rc!=SQLITE_OK ){
danielk1977b3175382008-10-17 18:51:52 +00003711 goto failed;
3712 }
danielk1977bea2a942009-01-20 17:06:27 +00003713
3714 /* TODO: Why are these cleared here? Is it necessary? */
danielk1977b3175382008-10-17 18:51:52 +00003715 pPager->journalStarted = 0;
3716 pPager->journalOff = 0;
3717 pPager->setMaster = 0;
3718 pPager->journalHdr = 0;
3719
3720 /* Playback and delete the journal. Drop the database write
danielk1977112f7522009-01-08 17:50:45 +00003721 ** lock and reacquire the read lock. Purge the cache before
3722 ** playing back the hot-journal so that we don't end up with
danielk1977ad0ea222009-01-08 18:04:13 +00003723 ** an inconsistent cache.
danielk1977b3175382008-10-17 18:51:52 +00003724 */
danielk1977641a0bd2009-06-20 11:54:39 +00003725 if( isOpen(pPager->jfd) ){
3726 rc = pager_playback(pPager, 1);
3727 if( rc!=SQLITE_OK ){
3728 rc = pager_error(pPager, rc);
3729 goto failed;
3730 }
danielk1977b3175382008-10-17 18:51:52 +00003731 }
danielk1977bea2a942009-01-20 17:06:27 +00003732 assert( (pPager->state==PAGER_SHARED)
3733 || (pPager->exclusiveMode && pPager->state>PAGER_SHARED)
danielk1977b3175382008-10-17 18:51:52 +00003734 );
3735 }
3736
danielk1977e70f4f62009-05-13 07:52:06 +00003737 if( pPager->pBackup || sqlite3PcachePagecount(pPager->pPCache)>0 ){
danielk1977b3175382008-10-17 18:51:52 +00003738 /* The shared-lock has just been acquired on the database file
3739 ** and there are already pages in the cache (from a previous
3740 ** read or write transaction). Check to see if the database
3741 ** has been modified. If the database has changed, flush the
3742 ** cache.
3743 **
3744 ** Database changes is detected by looking at 15 bytes beginning
3745 ** at offset 24 into the file. The first 4 of these 16 bytes are
3746 ** a 32-bit counter that is incremented with each change. The
3747 ** other bytes change randomly with each file change when
3748 ** a codec is in use.
3749 **
3750 ** There is a vanishingly small chance that a change will not be
3751 ** detected. The chance of an undetected change is so small that
3752 ** it can be neglected.
3753 */
3754 char dbFileVers[sizeof(pPager->dbFileVers)];
3755 sqlite3PagerPagecount(pPager, 0);
3756
3757 if( pPager->errCode ){
3758 rc = pPager->errCode;
3759 goto failed;
danielk1977e277be02007-03-23 18:12:06 +00003760 }
3761
danielk1977d92db532008-11-17 04:56:24 +00003762 assert( pPager->dbSizeValid );
danielk1977b3175382008-10-17 18:51:52 +00003763 if( pPager->dbSize>0 ){
3764 IOTRACE(("CKVERS %p %d\n", pPager, sizeof(dbFileVers)));
3765 rc = sqlite3OsRead(pPager->fd, &dbFileVers, sizeof(dbFileVers), 24);
3766 if( rc!=SQLITE_OK ){
danielk197752b472a2008-05-05 16:23:55 +00003767 goto failed;
danielk1977e277be02007-03-23 18:12:06 +00003768 }
danielk1977b3175382008-10-17 18:51:52 +00003769 }else{
3770 memset(dbFileVers, 0, sizeof(dbFileVers));
3771 }
danielk1977e277be02007-03-23 18:12:06 +00003772
danielk1977b3175382008-10-17 18:51:52 +00003773 if( memcmp(pPager->dbFileVers, dbFileVers, sizeof(dbFileVers))!=0 ){
3774 pager_reset(pPager);
danielk1977e277be02007-03-23 18:12:06 +00003775 }
3776 }
danielk19770371f1b2009-01-09 17:11:04 +00003777 assert( pPager->exclusiveMode || pPager->state==PAGER_SHARED );
danielk1977e277be02007-03-23 18:12:06 +00003778 }
3779
danielk197752b472a2008-05-05 16:23:55 +00003780 failed:
3781 if( rc!=SQLITE_OK ){
3782 /* pager_unlock() is a no-op for exclusive mode and in-memory databases. */
3783 pager_unlock(pPager);
3784 }
danielk1977e277be02007-03-23 18:12:06 +00003785 return rc;
3786}
3787
3788/*
danielk1977bea2a942009-01-20 17:06:27 +00003789** If the reference count has reached zero, rollback any active
3790** transaction and unlock the pager.
drh59813952009-04-20 11:34:26 +00003791**
3792** Except, in locking_mode=EXCLUSIVE when there is nothing to in
3793** the rollback journal, the unlock is not performed and there is
3794** nothing to rollback, so this routine is a no-op.
danielk19778c0a7912008-08-20 14:49:23 +00003795*/
3796static void pagerUnlockIfUnused(Pager *pPager){
drh59813952009-04-20 11:34:26 +00003797 if( (sqlite3PcacheRefCount(pPager->pPCache)==0)
3798 && (!pPager->exclusiveMode || pPager->journalOff>0)
3799 ){
danielk19778c0a7912008-08-20 14:49:23 +00003800 pagerUnlockAndRollback(pPager);
3801 }
3802}
3803
3804/*
danielk1977bea2a942009-01-20 17:06:27 +00003805** Acquire a reference to page number pgno in pager pPager (a page
3806** reference has type DbPage*). If the requested reference is
3807** successfully obtained, it is copied to *ppPage and SQLITE_OK returned.
drhd9b02572001-04-15 00:37:09 +00003808**
danielk1977bea2a942009-01-20 17:06:27 +00003809** If the requested page is already in the cache, it is returned.
3810** Otherwise, a new page object is allocated and populated with data
3811** read from the database file. In some cases, the pcache module may
3812** choose not to allocate a new page object and may reuse an existing
3813** object with no outstanding references.
3814**
3815** The extra data appended to a page is always initialized to zeros the
3816** first time a page is loaded into memory. If the page requested is
3817** already in the cache when this function is called, then the extra
3818** data is left as it was when the page object was last used.
3819**
3820** If the database image is smaller than the requested page or if a
3821** non-zero value is passed as the noContent parameter and the
3822** requested page is not already stored in the cache, then no
3823** actual disk read occurs. In this case the memory image of the
3824** page is initialized to all zeros.
3825**
3826** If noContent is true, it means that we do not care about the contents
3827** of the page. This occurs in two seperate scenarios:
3828**
3829** a) When reading a free-list leaf page from the database, and
3830**
3831** b) When a savepoint is being rolled back and we need to load
3832** a new page into the cache to populate with the data read
3833** from the savepoint journal.
3834**
3835** If noContent is true, then the data returned is zeroed instead of
3836** being read from the database. Additionally, the bits corresponding
3837** to pgno in Pager.pInJournal (bitvec of pages already written to the
3838** journal file) and the PagerSavepoint.pInSavepoint bitvecs of any open
3839** savepoints are set. This means if the page is made writable at any
3840** point in the future, using a call to sqlite3PagerWrite(), its contents
3841** will not be journaled. This saves IO.
drh306dc212001-05-21 13:45:10 +00003842**
drhd9b02572001-04-15 00:37:09 +00003843** The acquisition might fail for several reasons. In all cases,
3844** an appropriate error code is returned and *ppPage is set to NULL.
drh7e3b0a02001-04-28 16:52:40 +00003845**
drhd33d5a82007-04-26 12:11:28 +00003846** See also sqlite3PagerLookup(). Both this routine and Lookup() attempt
drh7e3b0a02001-04-28 16:52:40 +00003847** to find a page in the in-memory cache first. If the page is not already
drhd33d5a82007-04-26 12:11:28 +00003848** in memory, this routine goes to disk to read it in whereas Lookup()
drh7e3b0a02001-04-28 16:52:40 +00003849** just returns 0. This routine acquires a read-lock the first time it
3850** has to go to disk, and could also playback an old journal if necessary.
drhd33d5a82007-04-26 12:11:28 +00003851** Since Lookup() never goes to disk, it never has to deal with locks
drh7e3b0a02001-04-28 16:52:40 +00003852** or journal files.
drhed7c8552001-04-11 14:29:21 +00003853*/
danielk197765e0ff32008-09-19 09:14:43 +00003854int sqlite3PagerAcquire(
drh538f5702007-04-13 02:14:30 +00003855 Pager *pPager, /* The pager open on the database file */
3856 Pgno pgno, /* Page number to fetch */
3857 DbPage **ppPage, /* Write a pointer to the page here */
3858 int noContent /* Do not bother reading content from disk if true */
3859){
drh165ffe92005-03-15 17:09:30 +00003860 int rc;
danielk197789bc4bc2009-07-21 19:25:24 +00003861 PgHdr *pPg;
drhed7c8552001-04-11 14:29:21 +00003862
danielk1977bea2a942009-01-20 17:06:27 +00003863 assert( assert_pager_state(pPager) );
danielk197789bc4bc2009-07-21 19:25:24 +00003864 assert( pPager->state>PAGER_UNLOCK );
danielk1977e277be02007-03-23 18:12:06 +00003865
danielk197789bc4bc2009-07-21 19:25:24 +00003866 if( pgno==0 ){
drh49285702005-09-17 15:20:26 +00003867 return SQLITE_CORRUPT_BKPT;
danielk197726836652005-01-17 01:33:13 +00003868 }
3869
danielk197789bc4bc2009-07-21 19:25:24 +00003870 /* If the pager is in the error state, return an error immediately.
3871 ** Otherwise, request the page from the PCache layer. */
3872 if( pPager->errCode!=SQLITE_OK && pPager->errCode!=SQLITE_FULL ){
3873 rc = pPager->errCode;
3874 }else{
3875 rc = sqlite3PcacheFetch(pPager->pPCache, pgno, 1, ppPage);
drhed7c8552001-04-11 14:29:21 +00003876 }
danielk1977e277be02007-03-23 18:12:06 +00003877
danielk19778c0a7912008-08-20 14:49:23 +00003878 if( rc!=SQLITE_OK ){
danielk197789bc4bc2009-07-21 19:25:24 +00003879 /* Either the call to sqlite3PcacheFetch() returned an error or the
3880 ** pager was already in the error-state when this function was called.
3881 ** Set pPg to 0 and jump to the exception handler. */
3882 pPg = 0;
3883 goto pager_acquire_err;
danielk19778c0a7912008-08-20 14:49:23 +00003884 }
danielk197789bc4bc2009-07-21 19:25:24 +00003885 assert( (*ppPage)->pgno==pgno );
3886 assert( (*ppPage)->pPager==pPager || (*ppPage)->pPager==0 );
3887
3888 if( (*ppPage)->pPager ){
3889 /* In this case the pcache already contains an initialized copy of
3890 ** the page. Return without further ado. */
danielk1977e878a2f2009-07-22 16:41:15 +00003891 assert( pgno<=PAGER_MAX_PGNO && pgno!=PAGER_MJ_PGNO(pPager) );
danielk197789bc4bc2009-07-21 19:25:24 +00003892 PAGER_INCR(pPager->nHit);
3893 return SQLITE_OK;
3894
3895 }else{
danielk19778c0a7912008-08-20 14:49:23 +00003896 /* The pager cache has created a new page. Its content needs to
danielk197789bc4bc2009-07-21 19:25:24 +00003897 ** be initialized. */
danielk1977979f38e2007-03-27 16:19:51 +00003898 int nMax;
danielk197789bc4bc2009-07-21 19:25:24 +00003899
drh538f5702007-04-13 02:14:30 +00003900 PAGER_INCR(pPager->nMiss);
danielk197789bc4bc2009-07-21 19:25:24 +00003901 pPg = *ppPage;
danielk19778c0a7912008-08-20 14:49:23 +00003902 pPg->pPager = pPager;
danielk197724168722007-04-02 05:07:47 +00003903
danielk197789bc4bc2009-07-21 19:25:24 +00003904 /* The maximum page number is 2^31. Return SQLITE_CORRUPT if a page
3905 ** number greater than this, or the unused locking-page, is requested. */
3906 if( pgno>PAGER_MAX_PGNO || pgno==PAGER_MJ_PGNO(pPager) ){
3907 rc = SQLITE_CORRUPT_BKPT;
3908 goto pager_acquire_err;
3909 }
3910
danielk1977ad0132d2008-06-07 08:58:22 +00003911 rc = sqlite3PagerPagecount(pPager, &nMax);
3912 if( rc!=SQLITE_OK ){
danielk197789bc4bc2009-07-21 19:25:24 +00003913 goto pager_acquire_err;
drh2e6d11b2003-04-25 15:37:57 +00003914 }
danielk197775bab7d2006-01-23 13:09:45 +00003915
danielk1977a1fa00d2008-08-27 15:16:33 +00003916 if( nMax<(int)pgno || MEMDB || noContent ){
drhf8e632b2007-05-08 14:51:36 +00003917 if( pgno>pPager->mxPgno ){
danielk197789bc4bc2009-07-21 19:25:24 +00003918 rc = SQLITE_FULL;
3919 goto pager_acquire_err;
drhf8e632b2007-05-08 14:51:36 +00003920 }
danielk1977a1fa00d2008-08-27 15:16:33 +00003921 if( noContent ){
danielk1977bea2a942009-01-20 17:06:27 +00003922 /* Failure to set the bits in the InJournal bit-vectors is benign.
3923 ** It merely means that we might do some extra work to journal a
3924 ** page that does not need to be journaled. Nevertheless, be sure
3925 ** to test the case where a malloc error occurs while trying to set
3926 ** a bit in a bit vector.
3927 */
3928 sqlite3BeginBenignMalloc();
drh8a938f92009-07-25 04:12:02 +00003929 if( pgno<=pPager->dbOrigSize ){
danielk1977bea2a942009-01-20 17:06:27 +00003930 TESTONLY( rc = ) sqlite3BitvecSet(pPager->pInJournal, pgno);
3931 testcase( rc==SQLITE_NOMEM );
3932 }
3933 TESTONLY( rc = ) addToSavepointBitvecs(pPager, pgno);
3934 testcase( rc==SQLITE_NOMEM );
3935 sqlite3EndBenignMalloc();
danielk1977e1fd5082009-01-23 16:45:00 +00003936 }else{
3937 memset(pPg->pData, 0, pPager->pageSize);
danielk19778c0a7912008-08-20 14:49:23 +00003938 }
drh538f5702007-04-13 02:14:30 +00003939 IOTRACE(("ZERO %p %d\n", pPager, pgno));
drh306dc212001-05-21 13:45:10 +00003940 }else{
danielk1977bea2a942009-01-20 17:06:27 +00003941 assert( pPg->pPager==pPager );
3942 rc = readDbPage(pPg);
danielk1977546820e2009-03-28 06:59:41 +00003943 if( rc!=SQLITE_OK ){
danielk197789bc4bc2009-07-21 19:25:24 +00003944 goto pager_acquire_err;
drh81a20f22001-10-12 17:30:04 +00003945 }
drh306dc212001-05-21 13:45:10 +00003946 }
danielk19773c407372005-02-15 02:54:14 +00003947#ifdef SQLITE_CHECK_PAGES
3948 pPg->pageHash = pager_pagehash(pPg);
3949#endif
drhed7c8552001-04-11 14:29:21 +00003950 }
danielk19778c0a7912008-08-20 14:49:23 +00003951
drhed7c8552001-04-11 14:29:21 +00003952 return SQLITE_OK;
danielk197789bc4bc2009-07-21 19:25:24 +00003953
3954pager_acquire_err:
3955 assert( rc!=SQLITE_OK );
danielk1977e878a2f2009-07-22 16:41:15 +00003956 if( pPg ){
3957 sqlite3PcacheDrop(pPg);
3958 }
danielk197789bc4bc2009-07-21 19:25:24 +00003959 pagerUnlockIfUnused(pPager);
danielk1977e878a2f2009-07-22 16:41:15 +00003960
danielk197789bc4bc2009-07-21 19:25:24 +00003961 *ppPage = 0;
3962 return rc;
drhed7c8552001-04-11 14:29:21 +00003963}
danielk19778c0a7912008-08-20 14:49:23 +00003964
drhed7c8552001-04-11 14:29:21 +00003965/*
drh7e3b0a02001-04-28 16:52:40 +00003966** Acquire a page if it is already in the in-memory cache. Do
3967** not read the page from disk. Return a pointer to the page,
danielk1977bea2a942009-01-20 17:06:27 +00003968** or 0 if the page is not in cache. Also, return 0 if the
3969** pager is in PAGER_UNLOCK state when this function is called,
3970** or if the pager is in an error state other than SQLITE_FULL.
drh7e3b0a02001-04-28 16:52:40 +00003971**
danielk19773b8a05f2007-03-19 17:44:26 +00003972** See also sqlite3PagerGet(). The difference between this routine
3973** and sqlite3PagerGet() is that _get() will go to the disk and read
drh7e3b0a02001-04-28 16:52:40 +00003974** in the page if the page is not already in cache. This routine
drh5e00f6c2001-09-13 13:46:56 +00003975** returns NULL if the page is not in cache or if a disk I/O error
3976** has ever happened.
drh7e3b0a02001-04-28 16:52:40 +00003977*/
danielk19773b8a05f2007-03-19 17:44:26 +00003978DbPage *sqlite3PagerLookup(Pager *pPager, Pgno pgno){
drh86f8c192007-08-22 00:39:19 +00003979 PgHdr *pPg = 0;
drh836faa42003-01-11 13:30:57 +00003980 assert( pPager!=0 );
3981 assert( pgno!=0 );
drhad7516c2009-07-24 16:32:00 +00003982 assert( pPager->pPCache!=0 );
3983 assert( pPager->state > PAGER_UNLOCK );
3984 sqlite3PcacheFetch(pPager->pPCache, pgno, 0, &pPg);
danielk19773b8a05f2007-03-19 17:44:26 +00003985 return pPg;
drh7e3b0a02001-04-28 16:52:40 +00003986}
3987
3988/*
danielk1977bea2a942009-01-20 17:06:27 +00003989** Release a page reference.
drhed7c8552001-04-11 14:29:21 +00003990**
3991** If the number of references to the page drop to zero, then the
3992** page is added to the LRU list. When all references to all pages
drhd9b02572001-04-15 00:37:09 +00003993** are released, a rollback occurs and the lock on the database is
drhed7c8552001-04-11 14:29:21 +00003994** removed.
3995*/
danielk1977bea2a942009-01-20 17:06:27 +00003996void sqlite3PagerUnref(DbPage *pPg){
danielk19778c0a7912008-08-20 14:49:23 +00003997 if( pPg ){
3998 Pager *pPager = pPg->pPager;
danielk19778c0a7912008-08-20 14:49:23 +00003999 sqlite3PcacheRelease(pPg);
4000 pagerUnlockIfUnused(pPager);
drhed7c8552001-04-11 14:29:21 +00004001 }
drhed7c8552001-04-11 14:29:21 +00004002}
4003
danielk19779153d852009-01-07 10:52:56 +00004004/*
4005** If the main journal file has already been opened, ensure that the
4006** sub-journal file is open too. If the main journal is not open,
4007** this function is a no-op.
4008**
danielk1977bea2a942009-01-20 17:06:27 +00004009** SQLITE_OK is returned if everything goes according to plan.
4010** An SQLITE_IOERR_XXX error code is returned if a call to
danielk19779153d852009-01-07 10:52:56 +00004011** sqlite3OsOpen() fails.
4012*/
danielk1977fd7f0452008-12-17 17:30:26 +00004013static int openSubJournal(Pager *pPager){
4014 int rc = SQLITE_OK;
danielk1977bea2a942009-01-20 17:06:27 +00004015 if( isOpen(pPager->jfd) && !isOpen(pPager->sjfd) ){
danielk1977d8293352009-04-30 09:10:37 +00004016 if( pPager->journalMode==PAGER_JOURNALMODE_MEMORY || pPager->subjInMemory ){
danielk1977fd7f0452008-12-17 17:30:26 +00004017 sqlite3MemJournalOpen(pPager->sjfd);
4018 }else{
danielk1977bea2a942009-01-20 17:06:27 +00004019 rc = pagerOpentemp(pPager, pPager->sjfd, SQLITE_OPEN_SUBJOURNAL);
danielk1977fd7f0452008-12-17 17:30:26 +00004020 }
4021 }
4022 return rc;
4023}
4024
drhed7c8552001-04-11 14:29:21 +00004025/*
danielk1977bea2a942009-01-20 17:06:27 +00004026** This function is called at the start of every write transaction.
4027** There must already be a RESERVED or EXCLUSIVE lock on the database
4028** file when this routine is called.
drhda47d772002-12-02 04:25:19 +00004029**
danielk1977bea2a942009-01-20 17:06:27 +00004030** Open the journal file for pager pPager and write a journal header
4031** to the start of it. If there are active savepoints, open the sub-journal
4032** as well. This function is only used when the journal file is being
4033** opened to write a rollback log for a transaction. It is not used
4034** when opening a hot journal file to roll it back.
4035**
4036** If the journal file is already open (as it may be in exclusive mode),
4037** then this function just writes a journal header to the start of the
4038** already open file.
4039**
4040** Whether or not the journal file is opened by this function, the
4041** Pager.pInJournal bitvec structure is allocated.
4042**
4043** Return SQLITE_OK if everything is successful. Otherwise, return
4044** SQLITE_NOMEM if the attempt to allocate Pager.pInJournal fails, or
4045** an IO error code if opening or writing the journal file fails.
drhda47d772002-12-02 04:25:19 +00004046*/
4047static int pager_open_journal(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00004048 int rc = SQLITE_OK; /* Return code */
4049 sqlite3_vfs * const pVfs = pPager->pVfs; /* Local cache of vfs pointer */
danielk1977b4b47412007-08-17 15:53:36 +00004050
drha6abd042004-06-09 17:37:22 +00004051 assert( pPager->state>=PAGER_RESERVED );
drhda47d772002-12-02 04:25:19 +00004052 assert( pPager->useJournal );
drh4775ecd2009-07-24 19:01:19 +00004053 assert( pPager->journalMode!=PAGER_JOURNALMODE_OFF );
drhf5e7bb52008-02-18 14:47:33 +00004054 assert( pPager->pInJournal==0 );
danielk1977bea2a942009-01-20 17:06:27 +00004055
drhad7516c2009-07-24 16:32:00 +00004056 /* If already in the error state, this function is a no-op. But on
4057 ** the other hand, this routine is never called if we are already in
4058 ** an error state. */
4059 if( NEVER(pPager->errCode) ) return pPager->errCode;
danielk1977b4b47412007-08-17 15:53:36 +00004060
danielk1977bea2a942009-01-20 17:06:27 +00004061 /* TODO: Is it really possible to get here with dbSizeValid==0? If not,
4062 ** the call to PagerPagecount() can be removed.
4063 */
4064 testcase( pPager->dbSizeValid==0 );
4065 sqlite3PagerPagecount(pPager, 0);
4066
4067 pPager->pInJournal = sqlite3BitvecCreate(pPager->dbSize);
4068 if( pPager->pInJournal==0 ){
4069 return SQLITE_NOMEM;
4070 }
4071
4072 /* Open the journal file if it is not already open. */
4073 if( !isOpen(pPager->jfd) ){
danielk1977b3175382008-10-17 18:51:52 +00004074 if( pPager->journalMode==PAGER_JOURNALMODE_MEMORY ){
4075 sqlite3MemJournalOpen(pPager->jfd);
danielk1977b3175382008-10-17 18:51:52 +00004076 }else{
danielk1977bea2a942009-01-20 17:06:27 +00004077 const int flags = /* VFS flags to open journal file */
danielk1977ee8b7992009-03-26 17:13:06 +00004078 SQLITE_OPEN_READWRITE|SQLITE_OPEN_CREATE|
danielk1977bea2a942009-01-20 17:06:27 +00004079 (pPager->tempFile ?
4080 (SQLITE_OPEN_DELETEONCLOSE|SQLITE_OPEN_TEMP_JOURNAL):
4081 (SQLITE_OPEN_MAIN_JOURNAL)
4082 );
drhfdc40e92008-04-17 20:59:37 +00004083#ifdef SQLITE_ENABLE_ATOMIC_WRITE
danielk1977b3175382008-10-17 18:51:52 +00004084 rc = sqlite3JournalOpen(
4085 pVfs, pPager->zJournal, pPager->jfd, flags, jrnlBufferSize(pPager)
4086 );
drhfdc40e92008-04-17 20:59:37 +00004087#else
danielk1977b3175382008-10-17 18:51:52 +00004088 rc = sqlite3OsOpen(pVfs, pPager->zJournal, pPager->jfd, flags, 0);
drhfdc40e92008-04-17 20:59:37 +00004089#endif
danielk1977b3175382008-10-17 18:51:52 +00004090 }
danielk1977bea2a942009-01-20 17:06:27 +00004091 assert( rc!=SQLITE_OK || isOpen(pPager->jfd) );
4092 }
4093
4094
4095 /* Write the first journal header to the journal file and open
4096 ** the sub-journal if necessary.
4097 */
4098 if( rc==SQLITE_OK ){
4099 /* TODO: Check if all of these are really required. */
4100 pPager->dbOrigSize = pPager->dbSize;
4101 pPager->journalStarted = 0;
4102 pPager->needSync = 0;
4103 pPager->nRec = 0;
drhfdc40e92008-04-17 20:59:37 +00004104 pPager->journalOff = 0;
4105 pPager->setMaster = 0;
4106 pPager->journalHdr = 0;
danielk1977bea2a942009-01-20 17:06:27 +00004107 rc = writeJournalHdr(pPager);
drhda47d772002-12-02 04:25:19 +00004108 }
danielk1977bea2a942009-01-20 17:06:27 +00004109 if( rc==SQLITE_OK && pPager->nSavepoint ){
danielk1977fd7f0452008-12-17 17:30:26 +00004110 rc = openSubJournal(pPager);
drhda47d772002-12-02 04:25:19 +00004111 }
drh9c105bb2004-10-02 20:38:28 +00004112
danielk1977bea2a942009-01-20 17:06:27 +00004113 if( rc!=SQLITE_OK ){
4114 sqlite3BitvecDestroy(pPager->pInJournal);
4115 pPager->pInJournal = 0;
4116 }
drh9c105bb2004-10-02 20:38:28 +00004117 return rc;
drhda47d772002-12-02 04:25:19 +00004118}
4119
4120/*
danielk1977bea2a942009-01-20 17:06:27 +00004121** Begin a write-transaction on the specified pager object. If a
4122** write-transaction has already been opened, this function is a no-op.
drh4b845d72002-03-05 12:41:19 +00004123**
danielk1977bea2a942009-01-20 17:06:27 +00004124** If the exFlag argument is false, then acquire at least a RESERVED
4125** lock on the database file. If exFlag is true, then acquire at least
4126** an EXCLUSIVE lock. If such a lock is already held, no locking
4127** functions need be called.
drh4b845d72002-03-05 12:41:19 +00004128**
danielk1977bea2a942009-01-20 17:06:27 +00004129** If this is not a temporary or in-memory file and, the journal file is
4130** opened if it has not been already. For a temporary file, the opening
4131** of the journal file is deferred until there is an actual need to
4132** write to the journal. TODO: Why handle temporary files differently?
drh4b845d72002-03-05 12:41:19 +00004133**
danielk1977bea2a942009-01-20 17:06:27 +00004134** If the journal file is opened (or if it is already open), then a
4135** journal-header is written to the start of it.
danielk1977d8293352009-04-30 09:10:37 +00004136**
4137** If the subjInMemory argument is non-zero, then any sub-journal opened
4138** within this transaction will be opened as an in-memory file. This
4139** has no effect if the sub-journal is already opened (as it may be when
4140** running in exclusive mode) or if the transaction does not require a
4141** sub-journal. If the subjInMemory argument is zero, then any required
4142** sub-journal is implemented in-memory if pPager is an in-memory database,
4143** or using a temporary file otherwise.
drh4b845d72002-03-05 12:41:19 +00004144*/
danielk1977d8293352009-04-30 09:10:37 +00004145int sqlite3PagerBegin(Pager *pPager, int exFlag, int subjInMemory){
drh4b845d72002-03-05 12:41:19 +00004146 int rc = SQLITE_OK;
drha6abd042004-06-09 17:37:22 +00004147 assert( pPager->state!=PAGER_UNLOCK );
shane60a4b532009-05-06 18:57:09 +00004148 pPager->subjInMemory = (u8)subjInMemory;
drha6abd042004-06-09 17:37:22 +00004149 if( pPager->state==PAGER_SHARED ){
drhf5e7bb52008-02-18 14:47:33 +00004150 assert( pPager->pInJournal==0 );
danielk1977bea2a942009-01-20 17:06:27 +00004151 assert( !MEMDB && !pPager->tempFile );
4152
4153 /* Obtain a RESERVED lock on the database file. If the exFlag parameter
4154 ** is true, then immediately upgrade this to an EXCLUSIVE lock. The
4155 ** busy-handler callback can be used when upgrading to the EXCLUSIVE
4156 ** lock, but not when obtaining the RESERVED lock.
4157 */
danielk1977b3175382008-10-17 18:51:52 +00004158 rc = sqlite3OsLock(pPager->fd, RESERVED_LOCK);
4159 if( rc==SQLITE_OK ){
4160 pPager->state = PAGER_RESERVED;
4161 if( exFlag ){
4162 rc = pager_wait_on_lock(pPager, EXCLUSIVE_LOCK);
drh684917c2004-10-05 02:41:42 +00004163 }
danielk1977b3175382008-10-17 18:51:52 +00004164 }
danielk1977bea2a942009-01-20 17:06:27 +00004165
4166 /* If the required locks were successfully obtained, open the journal
4167 ** file and write the first journal-header to it.
4168 */
drh4775ecd2009-07-24 19:01:19 +00004169 if( rc==SQLITE_OK && pPager->journalMode!=PAGER_JOURNALMODE_OFF ){
danielk1977b3175382008-10-17 18:51:52 +00004170 rc = pager_open_journal(pPager);
drh4b845d72002-03-05 12:41:19 +00004171 }
danielk1977bea2a942009-01-20 17:06:27 +00004172 }else if( isOpen(pPager->jfd) && pPager->journalOff==0 ){
drhd138c012008-05-13 00:58:18 +00004173 /* This happens when the pager was in exclusive-access mode the last
danielk1977334cdb62007-03-26 08:05:12 +00004174 ** time a (read or write) transaction was successfully concluded
4175 ** by this connection. Instead of deleting the journal file it was
drhd138c012008-05-13 00:58:18 +00004176 ** kept open and either was truncated to 0 bytes or its header was
4177 ** overwritten with zeros.
danielk1977334cdb62007-03-26 08:05:12 +00004178 */
4179 assert( pPager->nRec==0 );
danielk19773460d192008-12-27 15:23:13 +00004180 assert( pPager->dbOrigSize==0 );
drhf5e7bb52008-02-18 14:47:33 +00004181 assert( pPager->pInJournal==0 );
danielk1977bea2a942009-01-20 17:06:27 +00004182 rc = pager_open_journal(pPager);
drh4b845d72002-03-05 12:41:19 +00004183 }
danielk1977bea2a942009-01-20 17:06:27 +00004184
4185 PAGERTRACE(("TRANSACTION %d\n", PAGERID(pPager)));
4186 assert( !isOpen(pPager->jfd) || pPager->journalOff>0 || rc!=SQLITE_OK );
danielk197775a40122009-07-07 13:56:24 +00004187 if( rc!=SQLITE_OK ){
4188 assert( !pPager->dbModified );
4189 /* Ignore any IO error that occurs within pager_end_transaction(). The
4190 ** purpose of this call is to reset the internal state of the pager
4191 ** sub-system. It doesn't matter if the journal-file is not properly
4192 ** finalized at this point (since it is not a valid journal file anyway).
4193 */
4194 pager_end_transaction(pPager, 0);
4195 }
drh4b845d72002-03-05 12:41:19 +00004196 return rc;
4197}
4198
4199/*
danielk1977bea2a942009-01-20 17:06:27 +00004200** Mark a single data page as writeable. The page is written into the
4201** main journal or sub-journal as required. If the page is written into
4202** one of the journals, the corresponding bit is set in the
4203** Pager.pInJournal bitvec and the PagerSavepoint.pInSavepoint bitvecs
4204** of any open savepoints as appropriate.
drhed7c8552001-04-11 14:29:21 +00004205*/
danielk19773b8a05f2007-03-19 17:44:26 +00004206static int pager_write(PgHdr *pPg){
danielk19778c0a7912008-08-20 14:49:23 +00004207 void *pData = pPg->pData;
drh69688d52001-04-14 16:38:23 +00004208 Pager *pPager = pPg->pPager;
drhd79caeb2001-04-15 02:27:24 +00004209 int rc = SQLITE_OK;
drh69688d52001-04-14 16:38:23 +00004210
drh5e1fa032009-07-25 15:24:13 +00004211 /* This routine is not called unless a transaction has already been
4212 ** started.
4213 */
4214 assert( pPager->state>=PAGER_RESERVED );
4215
drhad7516c2009-07-24 16:32:00 +00004216 /* If an error has been previously detected, we should not be
4217 ** calling this routine. Repeat the error for robustness.
drh6446c4d2001-12-15 14:22:18 +00004218 */
drhad7516c2009-07-24 16:32:00 +00004219 if( NEVER(pPager->errCode) ) return pPager->errCode;
4220
4221 /* Higher-level routines never call this function if database is not
4222 ** writable. But check anyway, just for robustness. */
4223 if( NEVER(pPager->readOnly) ) return SQLITE_PERM;
drh6446c4d2001-12-15 14:22:18 +00004224
danielk197776572402004-06-25 02:38:54 +00004225 assert( !pPager->setMaster );
4226
danielk19773c407372005-02-15 02:54:14 +00004227 CHECK_PAGE(pPg);
4228
drh6446c4d2001-12-15 14:22:18 +00004229 /* Mark the page as dirty. If the page has already been written
4230 ** to the journal then we can return right away.
4231 */
drhc047b9f2008-11-21 03:23:43 +00004232 sqlite3PcacheMakeDirty(pPg);
danielk19773460d192008-12-27 15:23:13 +00004233 if( pageInJournal(pPg) && !subjRequiresPage(pPg) ){
drhd138c012008-05-13 00:58:18 +00004234 pPager->dbModified = 1;
danielk1977a0bf2652004-11-04 14:30:04 +00004235 }else{
drh6446c4d2001-12-15 14:22:18 +00004236
danielk1977a0bf2652004-11-04 14:30:04 +00004237 /* If we get this far, it means that the page needs to be
4238 ** written to the transaction journal or the ckeckpoint journal
4239 ** or both.
4240 **
drh5e1fa032009-07-25 15:24:13 +00004241 ** Higher level routines should have already started a transaction,
4242 ** which means they have acquired the necessary locks and opened
4243 ** a rollback journal. Double-check to makes sure this is the case.
danielk1977a0bf2652004-11-04 14:30:04 +00004244 */
danielk1977d8293352009-04-30 09:10:37 +00004245 rc = sqlite3PagerBegin(pPager, 0, pPager->subjInMemory);
drh5e1fa032009-07-25 15:24:13 +00004246 if( NEVER(rc!=SQLITE_OK) ){
danielk1977a0bf2652004-11-04 14:30:04 +00004247 return rc;
4248 }
drh4775ecd2009-07-24 19:01:19 +00004249 if( !isOpen(pPager->jfd) && pPager->journalMode!=PAGER_JOURNALMODE_OFF ){
4250 assert( pPager->useJournal );
danielk1977a0bf2652004-11-04 14:30:04 +00004251 rc = pager_open_journal(pPager);
4252 if( rc!=SQLITE_OK ) return rc;
4253 }
drhd138c012008-05-13 00:58:18 +00004254 pPager->dbModified = 1;
danielk1977a0bf2652004-11-04 14:30:04 +00004255
4256 /* The transaction journal now exists and we have a RESERVED or an
4257 ** EXCLUSIVE lock on the main database file. Write the current page to
4258 ** the transaction journal if it is not there already.
4259 */
danielk1977bea2a942009-01-20 17:06:27 +00004260 if( !pageInJournal(pPg) && isOpen(pPager->jfd) ){
danielk19773460d192008-12-27 15:23:13 +00004261 if( pPg->pgno<=pPager->dbOrigSize ){
danielk1977b3175382008-10-17 18:51:52 +00004262 u32 cksum;
4263 char *pData2;
danielk1977dd97a492007-08-22 18:54:32 +00004264
danielk1977b3175382008-10-17 18:51:52 +00004265 /* We should never write to the journal file the page that
4266 ** contains the database locks. The following assert verifies
4267 ** that we do not. */
4268 assert( pPg->pgno!=PAGER_MJ_PGNO(pPager) );
drh85d2bd22009-06-11 00:47:20 +00004269 CODEC2(pPager, pData, pPg->pgno, 7, return SQLITE_NOMEM, pData2);
danielk1977b3175382008-10-17 18:51:52 +00004270 cksum = pager_cksum(pPager, (u8*)pData2);
4271 rc = write32bits(pPager->jfd, pPager->journalOff, pPg->pgno);
4272 if( rc==SQLITE_OK ){
4273 rc = sqlite3OsWrite(pPager->jfd, pData2, pPager->pageSize,
4274 pPager->journalOff + 4);
4275 pPager->journalOff += pPager->pageSize+4;
4276 }
4277 if( rc==SQLITE_OK ){
4278 rc = write32bits(pPager->jfd, pPager->journalOff, cksum);
4279 pPager->journalOff += 4;
4280 }
4281 IOTRACE(("JOUT %p %d %lld %d\n", pPager, pPg->pgno,
4282 pPager->journalOff, pPager->pageSize));
4283 PAGER_INCR(sqlite3_pager_writej_count);
drh30d53702009-01-06 15:58:57 +00004284 PAGERTRACE(("JOURNAL %d page %d needSync=%d hash(%08x)\n",
danielk1977b3175382008-10-17 18:51:52 +00004285 PAGERID(pPager), pPg->pgno,
drh30d53702009-01-06 15:58:57 +00004286 ((pPg->flags&PGHDR_NEED_SYNC)?1:0), pager_pagehash(pPg)));
danielk197707cb5602006-01-20 10:55:05 +00004287
danielk1977f3107512008-12-22 10:58:46 +00004288 /* Even if an IO or diskfull error occurred while journalling the
4289 ** page in the block above, set the need-sync flag for the page.
4290 ** Otherwise, when the transaction is rolled back, the logic in
4291 ** playback_one_page() will think that the page needs to be restored
4292 ** in the database file. And if an IO error occurs while doing so,
4293 ** then corruption may follow.
4294 */
4295 if( !pPager->noSync ){
4296 pPg->flags |= PGHDR_NEED_SYNC;
danielk1977a4124bd2008-12-23 10:37:47 +00004297 pPager->needSync = 1;
danielk1977f3107512008-12-22 10:58:46 +00004298 }
4299
shanebe217792009-03-05 04:20:31 +00004300 /* An error has occurred writing to the journal file. The
danielk1977b3175382008-10-17 18:51:52 +00004301 ** transaction will be rolled back by the layer above.
4302 */
4303 if( rc!=SQLITE_OK ){
4304 return rc;
4305 }
danielk197707cb5602006-01-20 10:55:05 +00004306
danielk1977b3175382008-10-17 18:51:52 +00004307 pPager->nRec++;
4308 assert( pPager->pInJournal!=0 );
drh7539b6b2009-01-02 21:39:39 +00004309 rc = sqlite3BitvecSet(pPager->pInJournal, pPg->pgno);
4310 testcase( rc==SQLITE_NOMEM );
4311 assert( rc==SQLITE_OK || rc==SQLITE_NOMEM );
4312 rc |= addToSavepointBitvecs(pPager, pPg->pgno);
4313 if( rc!=SQLITE_OK ){
4314 assert( rc==SQLITE_NOMEM );
4315 return rc;
4316 }
danielk197713adf8a2004-06-03 16:08:41 +00004317 }else{
danielk19778c0a7912008-08-20 14:49:23 +00004318 if( !pPager->journalStarted && !pPager->noSync ){
4319 pPg->flags |= PGHDR_NEED_SYNC;
danielk1977a4124bd2008-12-23 10:37:47 +00004320 pPager->needSync = 1;
danielk19778c0a7912008-08-20 14:49:23 +00004321 }
drh30d53702009-01-06 15:58:57 +00004322 PAGERTRACE(("APPEND %d page %d needSync=%d\n",
danielk19778c0a7912008-08-20 14:49:23 +00004323 PAGERID(pPager), pPg->pgno,
drh30d53702009-01-06 15:58:57 +00004324 ((pPg->flags&PGHDR_NEED_SYNC)?1:0)));
danielk1977a0bf2652004-11-04 14:30:04 +00004325 }
danielk1977a0bf2652004-11-04 14:30:04 +00004326 }
4327
4328 /* If the statement journal is open and the page is not in it,
4329 ** then write the current page to the statement journal. Note that
4330 ** the statement journal format differs from the standard journal format
4331 ** in that it omits the checksums and the header.
4332 */
danielk19773460d192008-12-27 15:23:13 +00004333 if( subjRequiresPage(pPg) ){
danielk1977f2c31ad2009-01-06 13:40:08 +00004334 rc = subjournalPage(pPg);
drhd9b02572001-04-15 00:37:09 +00004335 }
drhfa86c412002-02-02 15:01:15 +00004336 }
4337
4338 /* Update the database size and return.
4339 */
drh1aa2d8b2007-01-03 15:34:29 +00004340 assert( pPager->state>=PAGER_SHARED );
danielk1977d92db532008-11-17 04:56:24 +00004341 if( pPager->dbSize<pPg->pgno ){
drh306dc212001-05-21 13:45:10 +00004342 pPager->dbSize = pPg->pgno;
4343 }
drh69688d52001-04-14 16:38:23 +00004344 return rc;
drhed7c8552001-04-11 14:29:21 +00004345}
4346
4347/*
danielk1977bea2a942009-01-20 17:06:27 +00004348** Mark a data page as writeable. This routine must be called before
4349** making changes to a page. The caller must check the return value
4350** of this function and be careful not to change any page data unless
4351** this routine returns SQLITE_OK.
danielk19774099f6e2007-03-19 11:25:20 +00004352**
4353** The difference between this function and pager_write() is that this
4354** function also deals with the special case where 2 or more pages
4355** fit on a single disk sector. In this case all co-resident pages
4356** must have been written to the journal file before returning.
danielk1977bea2a942009-01-20 17:06:27 +00004357**
4358** If an error occurs, SQLITE_NOMEM or an IO error code is returned
4359** as appropriate. Otherwise, SQLITE_OK.
danielk19774099f6e2007-03-19 11:25:20 +00004360*/
danielk19773b8a05f2007-03-19 17:44:26 +00004361int sqlite3PagerWrite(DbPage *pDbPage){
danielk19774099f6e2007-03-19 11:25:20 +00004362 int rc = SQLITE_OK;
4363
danielk19773b8a05f2007-03-19 17:44:26 +00004364 PgHdr *pPg = pDbPage;
danielk19774099f6e2007-03-19 11:25:20 +00004365 Pager *pPager = pPg->pPager;
4366 Pgno nPagePerSector = (pPager->sectorSize/pPager->pageSize);
4367
danielk1977b3175382008-10-17 18:51:52 +00004368 if( nPagePerSector>1 ){
danielk19774099f6e2007-03-19 11:25:20 +00004369 Pgno nPageCount; /* Total number of pages in database file */
4370 Pgno pg1; /* First page of the sector pPg is located on. */
4371 int nPage; /* Number of pages starting at pg1 to journal */
danielk1977bea2a942009-01-20 17:06:27 +00004372 int ii; /* Loop counter */
4373 int needSync = 0; /* True if any page has PGHDR_NEED_SYNC */
danielk19774099f6e2007-03-19 11:25:20 +00004374
4375 /* Set the doNotSync flag to 1. This is because we cannot allow a journal
4376 ** header to be written between the pages journaled by this function.
4377 */
danielk1977b3175382008-10-17 18:51:52 +00004378 assert( !MEMDB );
danielk19774099f6e2007-03-19 11:25:20 +00004379 assert( pPager->doNotSync==0 );
4380 pPager->doNotSync = 1;
4381
4382 /* This trick assumes that both the page-size and sector-size are
4383 ** an integer power of 2. It sets variable pg1 to the identifier
4384 ** of the first page of the sector pPg is located on.
4385 */
4386 pg1 = ((pPg->pgno-1) & ~(nPagePerSector-1)) + 1;
4387
danielk1977ad0132d2008-06-07 08:58:22 +00004388 sqlite3PagerPagecount(pPager, (int *)&nPageCount);
danielk19774099f6e2007-03-19 11:25:20 +00004389 if( pPg->pgno>nPageCount ){
4390 nPage = (pPg->pgno - pg1)+1;
4391 }else if( (pg1+nPagePerSector-1)>nPageCount ){
4392 nPage = nPageCount+1-pg1;
4393 }else{
4394 nPage = nPagePerSector;
4395 }
4396 assert(nPage>0);
4397 assert(pg1<=pPg->pgno);
4398 assert((pg1+nPage)>pPg->pgno);
4399
4400 for(ii=0; ii<nPage && rc==SQLITE_OK; ii++){
4401 Pgno pg = pg1+ii;
danielk1977dd97a492007-08-22 18:54:32 +00004402 PgHdr *pPage;
drhf5e7bb52008-02-18 14:47:33 +00004403 if( pg==pPg->pgno || !sqlite3BitvecTest(pPager->pInJournal, pg) ){
danielk19774099f6e2007-03-19 11:25:20 +00004404 if( pg!=PAGER_MJ_PGNO(pPager) ){
danielk19773b8a05f2007-03-19 17:44:26 +00004405 rc = sqlite3PagerGet(pPager, pg, &pPage);
danielk19774099f6e2007-03-19 11:25:20 +00004406 if( rc==SQLITE_OK ){
4407 rc = pager_write(pPage);
danielk19778c0a7912008-08-20 14:49:23 +00004408 if( pPage->flags&PGHDR_NEED_SYNC ){
danielk1977dd97a492007-08-22 18:54:32 +00004409 needSync = 1;
danielk1977a4124bd2008-12-23 10:37:47 +00004410 assert(pPager->needSync);
danielk1977dd97a492007-08-22 18:54:32 +00004411 }
danielk19773b8a05f2007-03-19 17:44:26 +00004412 sqlite3PagerUnref(pPage);
danielk19774099f6e2007-03-19 11:25:20 +00004413 }
4414 }
drhc81945e2008-03-10 14:12:53 +00004415 }else if( (pPage = pager_lookup(pPager, pg))!=0 ){
danielk19778c0a7912008-08-20 14:49:23 +00004416 if( pPage->flags&PGHDR_NEED_SYNC ){
danielk1977dd97a492007-08-22 18:54:32 +00004417 needSync = 1;
4418 }
danielk19778c0a7912008-08-20 14:49:23 +00004419 sqlite3PagerUnref(pPage);
danielk19774099f6e2007-03-19 11:25:20 +00004420 }
4421 }
4422
drhee03d622009-01-07 15:33:45 +00004423 /* If the PGHDR_NEED_SYNC flag is set for any of the nPage pages
danielk1977dd97a492007-08-22 18:54:32 +00004424 ** starting at pg1, then it needs to be set for all of them. Because
4425 ** writing to any of these nPage pages may damage the others, the
4426 ** journal file must contain sync()ed copies of all of them
4427 ** before any of them can be written out to the database file.
4428 */
danielk1977a299d612009-07-13 11:22:10 +00004429 if( rc==SQLITE_OK && needSync ){
drhb3df2e12008-09-17 20:06:26 +00004430 assert( !MEMDB && pPager->noSync==0 );
drhb480dc22009-07-24 12:35:57 +00004431 for(ii=0; ii<nPage; ii++){
danielk1977dd97a492007-08-22 18:54:32 +00004432 PgHdr *pPage = pager_lookup(pPager, pg1+ii);
drhee03d622009-01-07 15:33:45 +00004433 if( pPage ){
drhee03d622009-01-07 15:33:45 +00004434 pPage->flags |= PGHDR_NEED_SYNC;
4435 sqlite3PagerUnref(pPage);
4436 }
danielk1977dd97a492007-08-22 18:54:32 +00004437 }
4438 assert(pPager->needSync);
4439 }
4440
danielk19774099f6e2007-03-19 11:25:20 +00004441 assert( pPager->doNotSync==1 );
4442 pPager->doNotSync = 0;
4443 }else{
danielk19773b8a05f2007-03-19 17:44:26 +00004444 rc = pager_write(pDbPage);
danielk19774099f6e2007-03-19 11:25:20 +00004445 }
4446 return rc;
4447}
4448
4449/*
drhaacc5432002-01-06 17:07:40 +00004450** Return TRUE if the page given in the argument was previously passed
danielk19773b8a05f2007-03-19 17:44:26 +00004451** to sqlite3PagerWrite(). In other words, return TRUE if it is ok
drh6019e162001-07-02 17:51:45 +00004452** to change the content of the page.
4453*/
danielk19777d3a6662006-01-23 16:21:05 +00004454#ifndef NDEBUG
danielk19773b8a05f2007-03-19 17:44:26 +00004455int sqlite3PagerIswriteable(DbPage *pPg){
danielk19778c0a7912008-08-20 14:49:23 +00004456 return pPg->flags&PGHDR_DIRTY;
drh6019e162001-07-02 17:51:45 +00004457}
danielk19777d3a6662006-01-23 16:21:05 +00004458#endif
drh6019e162001-07-02 17:51:45 +00004459
drh001bbcb2003-03-19 03:14:00 +00004460/*
drh30e58752002-03-02 20:41:57 +00004461** A call to this routine tells the pager that it is not necessary to
drh538f5702007-04-13 02:14:30 +00004462** write the information on page pPg back to the disk, even though
drhdfe88ec2008-11-03 20:55:06 +00004463** that page might be marked as dirty. This happens, for example, when
4464** the page has been added as a leaf of the freelist and so its
4465** content no longer matters.
drh30e58752002-03-02 20:41:57 +00004466**
4467** The overlying software layer calls this routine when all of the data
danielk1977bea2a942009-01-20 17:06:27 +00004468** on the given page is unused. The pager marks the page as clean so
drh30e58752002-03-02 20:41:57 +00004469** that it does not get written to disk.
4470**
danielk1977bea2a942009-01-20 17:06:27 +00004471** Tests show that this optimization can quadruple the speed of large
4472** DELETE operations.
drh30e58752002-03-02 20:41:57 +00004473*/
danielk1977bea2a942009-01-20 17:06:27 +00004474void sqlite3PagerDontWrite(PgHdr *pPg){
drh538f5702007-04-13 02:14:30 +00004475 Pager *pPager = pPg->pPager;
danielk1977bea2a942009-01-20 17:06:27 +00004476 if( (pPg->flags&PGHDR_DIRTY) && pPager->nSavepoint==0 ){
4477 PAGERTRACE(("DONT_WRITE page %d of %d\n", pPg->pgno, PAGERID(pPager)));
4478 IOTRACE(("CLEAN %p %d\n", pPager, pPg->pgno))
4479 pPg->flags |= PGHDR_DONT_WRITE;
danielk197745d68822009-01-16 16:23:38 +00004480#ifdef SQLITE_CHECK_PAGES
danielk1977bea2a942009-01-20 17:06:27 +00004481 pPg->pageHash = pager_pagehash(pPg);
danielk197745d68822009-01-16 16:23:38 +00004482#endif
danielk197745d68822009-01-16 16:23:38 +00004483 }
drh30e58752002-03-02 20:41:57 +00004484}
4485
4486/*
danielk1977bea2a942009-01-20 17:06:27 +00004487** This routine is called to increment the value of the database file
4488** change-counter, stored as a 4-byte big-endian integer starting at
4489** byte offset 24 of the pager file.
danielk197745d68822009-01-16 16:23:38 +00004490**
drhb480dc22009-07-24 12:35:57 +00004491** If the isDirectMode flag is zero, then this is done by calling
danielk1977bea2a942009-01-20 17:06:27 +00004492** sqlite3PagerWrite() on page 1, then modifying the contents of the
4493** page data. In this case the file will be updated when the current
4494** transaction is committed.
4495**
drhb480dc22009-07-24 12:35:57 +00004496** The isDirectMode flag may only be non-zero if the library was compiled
danielk1977bea2a942009-01-20 17:06:27 +00004497** with the SQLITE_ENABLE_ATOMIC_WRITE macro defined. In this case,
4498** if isDirect is non-zero, then the database file is updated directly
4499** by writing an updated version of page 1 using a call to the
4500** sqlite3OsWrite() function.
danielk197745d68822009-01-16 16:23:38 +00004501*/
danielk1977bea2a942009-01-20 17:06:27 +00004502static int pager_incr_changecounter(Pager *pPager, int isDirectMode){
danielk1977c7b60172007-08-22 11:22:03 +00004503 int rc = SQLITE_OK;
drh80e35f42007-03-30 14:06:34 +00004504
danielk1977bea2a942009-01-20 17:06:27 +00004505 /* Declare and initialize constant integer 'isDirect'. If the
4506 ** atomic-write optimization is enabled in this build, then isDirect
4507 ** is initialized to the value passed as the isDirectMode parameter
4508 ** to this function. Otherwise, it is always set to zero.
4509 **
4510 ** The idea is that if the atomic-write optimization is not
4511 ** enabled at compile time, the compiler can omit the tests of
4512 ** 'isDirect' below, as well as the block enclosed in the
4513 ** "if( isDirect )" condition.
4514 */
drh701bb3b2008-08-02 03:50:39 +00004515#ifndef SQLITE_ENABLE_ATOMIC_WRITE
drhb480dc22009-07-24 12:35:57 +00004516# define DIRECT_MODE 0
danielk1977bea2a942009-01-20 17:06:27 +00004517 assert( isDirectMode==0 );
drhdc86e2b2009-01-24 11:30:42 +00004518 UNUSED_PARAMETER(isDirectMode);
danielk1977bea2a942009-01-20 17:06:27 +00004519#else
drhb480dc22009-07-24 12:35:57 +00004520# define DIRECT_MODE isDirectMode
drh701bb3b2008-08-02 03:50:39 +00004521#endif
danielk1977bea2a942009-01-20 17:06:27 +00004522
4523 assert( pPager->state>=PAGER_RESERVED );
drh4775ecd2009-07-24 19:01:19 +00004524 if( !pPager->changeCountDone && ALWAYS(pPager->dbSize>0) ){
danielk1977bea2a942009-01-20 17:06:27 +00004525 PgHdr *pPgHdr; /* Reference to page 1 */
4526 u32 change_counter; /* Initial value of change-counter field */
4527
4528 assert( !pPager->tempFile && isOpen(pPager->fd) );
4529
drh80e35f42007-03-30 14:06:34 +00004530 /* Open page 1 of the file for writing. */
4531 rc = sqlite3PagerGet(pPager, 1, &pPgHdr);
danielk1977bea2a942009-01-20 17:06:27 +00004532 assert( pPgHdr==0 || rc==SQLITE_OK );
danielk1977c7b60172007-08-22 11:22:03 +00004533
danielk1977bea2a942009-01-20 17:06:27 +00004534 /* If page one was fetched successfully, and this function is not
drhad7516c2009-07-24 16:32:00 +00004535 ** operating in direct-mode, make page 1 writable. When not in
4536 ** direct mode, page 1 is always held in cache and hence the PagerGet()
4537 ** above is always successful - hence the ALWAYS on rc==SQLITE_OK.
danielk1977bea2a942009-01-20 17:06:27 +00004538 */
drhad7516c2009-07-24 16:32:00 +00004539 if( !DIRECT_MODE && ALWAYS(rc==SQLITE_OK) ){
danielk1977c7b60172007-08-22 11:22:03 +00004540 rc = sqlite3PagerWrite(pPgHdr);
danielk1977bea2a942009-01-20 17:06:27 +00004541 }
4542
4543 if( rc==SQLITE_OK ){
4544 /* Increment the value just read and write it back to byte 24. */
4545 change_counter = sqlite3Get4byte((u8*)pPager->dbFileVers);
4546 change_counter++;
4547 put32bits(((char*)pPgHdr->pData)+24, change_counter);
4548
4549 /* If running in direct mode, write the contents of page 1 to the file. */
drhb480dc22009-07-24 12:35:57 +00004550 if( DIRECT_MODE ){
danielk1977bea2a942009-01-20 17:06:27 +00004551 const void *zBuf = pPgHdr->pData;
4552 assert( pPager->dbFileSize>0 );
4553 rc = sqlite3OsWrite(pPager->fd, zBuf, pPager->pageSize, 0);
drhb480dc22009-07-24 12:35:57 +00004554 if( rc==SQLITE_OK ){
4555 pPager->changeCountDone = 1;
4556 }
4557 }else{
danielk1977bea2a942009-01-20 17:06:27 +00004558 pPager->changeCountDone = 1;
danielk1977ae72d982007-10-03 08:46:44 +00004559 }
danielk1977c7b60172007-08-22 11:22:03 +00004560 }
4561
drh80e35f42007-03-30 14:06:34 +00004562 /* Release the page reference. */
4563 sqlite3PagerUnref(pPgHdr);
drh80e35f42007-03-30 14:06:34 +00004564 }
danielk1977c7b60172007-08-22 11:22:03 +00004565 return rc;
drh80e35f42007-03-30 14:06:34 +00004566}
4567
4568/*
danielk1977bea2a942009-01-20 17:06:27 +00004569** Sync the pager file to disk. This is a no-op for in-memory files
4570** or pages with the Pager.noSync flag set.
4571**
4572** If successful, or called on a pager for which it is a no-op, this
4573** function returns SQLITE_OK. Otherwise, an IO error code is returned.
danielk1977f653d782008-03-20 11:04:21 +00004574*/
4575int sqlite3PagerSync(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00004576 int rc; /* Return code */
drhad7516c2009-07-24 16:32:00 +00004577 assert( !MEMDB );
4578 if( pPager->noSync ){
drh7426f862008-08-26 21:07:26 +00004579 rc = SQLITE_OK;
4580 }else{
4581 rc = sqlite3OsSync(pPager->fd, pPager->sync_flags);
4582 }
danielk1977f653d782008-03-20 11:04:21 +00004583 return rc;
4584}
4585
4586/*
drh80e35f42007-03-30 14:06:34 +00004587** Sync the database file for the pager pPager. zMaster points to the name
4588** of a master journal file that should be written into the individual
4589** journal file. zMaster may be NULL, which is interpreted as no master
4590** journal (a single database transaction).
4591**
danielk1977bea2a942009-01-20 17:06:27 +00004592** This routine ensures that:
4593**
4594** * The database file change-counter is updated,
4595** * the journal is synced (unless the atomic-write optimization is used),
4596** * all dirty pages are written to the database file,
4597** * the database file is truncated (if required), and
4598** * the database file synced.
4599**
4600** The only thing that remains to commit the transaction is to finalize
4601** (delete, truncate or zero the first part of) the journal file (or
4602** delete the master journal file if specified).
drh80e35f42007-03-30 14:06:34 +00004603**
4604** Note that if zMaster==NULL, this does not overwrite a previous value
4605** passed to an sqlite3PagerCommitPhaseOne() call.
4606**
danielk1977f653d782008-03-20 11:04:21 +00004607** If the final parameter - noSync - is true, then the database file itself
4608** is not synced. The caller must call sqlite3PagerSync() directly to
4609** sync the database file before calling CommitPhaseTwo() to delete the
4610** journal file in this case.
drh80e35f42007-03-30 14:06:34 +00004611*/
danielk1977f653d782008-03-20 11:04:21 +00004612int sqlite3PagerCommitPhaseOne(
danielk1977bea2a942009-01-20 17:06:27 +00004613 Pager *pPager, /* Pager object */
4614 const char *zMaster, /* If not NULL, the master journal name */
4615 int noSync /* True to omit the xSync on the db file */
danielk1977f653d782008-03-20 11:04:21 +00004616){
danielk1977bea2a942009-01-20 17:06:27 +00004617 int rc = SQLITE_OK; /* Return code */
drh80e35f42007-03-30 14:06:34 +00004618
drhad7516c2009-07-24 16:32:00 +00004619 /* The dbOrigSize is never set if journal_mode=OFF */
4620 assert( pPager->journalMode!=PAGER_JOURNALMODE_OFF || pPager->dbOrigSize==0 );
4621
drhb480dc22009-07-24 12:35:57 +00004622 /* If a prior error occurred, this routine should not be called. ROLLBACK
4623 ** is the appropriate response to an error, not COMMIT. Guard against
4624 ** coding errors by repeating the prior error. */
4625 if( NEVER(pPager->errCode) ) return pPager->errCode;
danielk1977dad31b52008-05-15 11:08:07 +00004626
drh30d53702009-01-06 15:58:57 +00004627 PAGERTRACE(("DATABASE SYNC: File=%s zMaster=%s nSize=%d\n",
4628 pPager->zFilename, zMaster, pPager->dbSize));
drh80e35f42007-03-30 14:06:34 +00004629
danielk197704103022009-02-03 16:51:24 +00004630 if( MEMDB && pPager->dbModified ){
drhb480dc22009-07-24 12:35:57 +00004631 /* If this is an in-memory db, or no pages have been written to, or this
4632 ** function has already been called, it is mostly a no-op. However, any
4633 ** backup in progress needs to be restarted.
4634 */
danielk197704103022009-02-03 16:51:24 +00004635 sqlite3BackupRestart(pPager->pBackup);
4636 }else if( pPager->state!=PAGER_SYNCED && pPager->dbModified ){
drh80e35f42007-03-30 14:06:34 +00004637
danielk1977bea2a942009-01-20 17:06:27 +00004638 /* The following block updates the change-counter. Exactly how it
4639 ** does this depends on whether or not the atomic-update optimization
4640 ** was enabled at compile time, and if this transaction meets the
4641 ** runtime criteria to use the operation:
danielk1977c7b60172007-08-22 11:22:03 +00004642 **
danielk1977bea2a942009-01-20 17:06:27 +00004643 ** * The file-system supports the atomic-write property for
4644 ** blocks of size page-size, and
4645 ** * This commit is not part of a multi-file transaction, and
4646 ** * Exactly one page has been modified and store in the journal file.
danielk1977c7b60172007-08-22 11:22:03 +00004647 **
danielk1977bea2a942009-01-20 17:06:27 +00004648 ** If the optimization was not enabled at compile time, then the
4649 ** pager_incr_changecounter() function is called to update the change
4650 ** counter in 'indirect-mode'. If the optimization is compiled in but
4651 ** is not applicable to this transaction, call sqlite3JournalCreate()
4652 ** to make sure the journal file has actually been created, then call
4653 ** pager_incr_changecounter() to update the change-counter in indirect
4654 ** mode.
4655 **
4656 ** Otherwise, if the optimization is both enabled and applicable,
4657 ** then call pager_incr_changecounter() to update the change-counter
4658 ** in 'direct' mode. In this case the journal file will never be
4659 ** created for this transaction.
danielk1977c7b60172007-08-22 11:22:03 +00004660 */
danielk1977bea2a942009-01-20 17:06:27 +00004661#ifdef SQLITE_ENABLE_ATOMIC_WRITE
4662 PgHdr *pPg;
4663 assert( isOpen(pPager->jfd) || pPager->journalMode==PAGER_JOURNALMODE_OFF );
4664 if( !zMaster && isOpen(pPager->jfd)
4665 && pPager->journalOff==jrnlBufferSize(pPager)
4666 && pPager->dbSize>=pPager->dbFileSize
4667 && (0==(pPg = sqlite3PcacheDirtyList(pPager->pPCache)) || 0==pPg->pDirty)
4668 ){
4669 /* Update the db file change counter via the direct-write method. The
4670 ** following call will modify the in-memory representation of page 1
4671 ** to include the updated change counter and then write page 1
4672 ** directly to the database file. Because of the atomic-write
4673 ** property of the host file-system, this is safe.
danielk1977c7b60172007-08-22 11:22:03 +00004674 */
danielk1977bea2a942009-01-20 17:06:27 +00004675 rc = pager_incr_changecounter(pPager, 1);
danielk1977f55b8992007-08-24 08:15:53 +00004676 }else{
4677 rc = sqlite3JournalCreate(pPager->jfd);
danielk1977bea2a942009-01-20 17:06:27 +00004678 if( rc==SQLITE_OK ){
4679 rc = pager_incr_changecounter(pPager, 0);
danielk197771aa7ff2008-05-20 07:05:09 +00004680 }
drh80e35f42007-03-30 14:06:34 +00004681 }
danielk1977bea2a942009-01-20 17:06:27 +00004682#else
4683 rc = pager_incr_changecounter(pPager, 0);
4684#endif
4685 if( rc!=SQLITE_OK ) goto commit_phase_one_exit;
drh80e35f42007-03-30 14:06:34 +00004686
danielk1977bea2a942009-01-20 17:06:27 +00004687 /* If this transaction has made the database smaller, then all pages
4688 ** being discarded by the truncation must be written to the journal
4689 ** file. This can only happen in auto-vacuum mode.
4690 **
4691 ** Before reading the pages with page numbers larger than the
4692 ** current value of Pager.dbSize, set dbSize back to the value
4693 ** that it took at the start of the transaction. Otherwise, the
4694 ** calls to sqlite3PagerGet() return zeroed pages instead of
4695 ** reading data from the database file.
drhad7516c2009-07-24 16:32:00 +00004696 **
4697 ** When journal_mode==OFF the dbOrigSize is always zero, so this
4698 ** block never runs if journal_mode=OFF.
danielk1977bea2a942009-01-20 17:06:27 +00004699 */
4700#ifndef SQLITE_OMIT_AUTOVACUUM
drhad7516c2009-07-24 16:32:00 +00004701 if( pPager->dbSize<pPager->dbOrigSize
4702 && ALWAYS(pPager->journalMode!=PAGER_JOURNALMODE_OFF)
danielk1977bea2a942009-01-20 17:06:27 +00004703 ){
4704 Pgno i; /* Iterator variable */
4705 const Pgno iSkip = PAGER_MJ_PGNO(pPager); /* Pending lock page */
4706 const Pgno dbSize = pPager->dbSize; /* Database image size */
4707 pPager->dbSize = pPager->dbOrigSize;
4708 for( i=dbSize+1; i<=pPager->dbOrigSize; i++ ){
4709 if( !sqlite3BitvecTest(pPager->pInJournal, i) && i!=iSkip ){
4710 PgHdr *pPage; /* Page to journal */
4711 rc = sqlite3PagerGet(pPager, i, &pPage);
4712 if( rc!=SQLITE_OK ) goto commit_phase_one_exit;
4713 rc = sqlite3PagerWrite(pPage);
4714 sqlite3PagerUnref(pPage);
4715 if( rc!=SQLITE_OK ) goto commit_phase_one_exit;
4716 }
4717 }
4718 pPager->dbSize = dbSize;
4719 }
4720#endif
4721
4722 /* Write the master journal name into the journal file. If a master
4723 ** journal file name has already been written to the journal file,
4724 ** or if zMaster is NULL (no master journal), then this call is a no-op.
4725 */
4726 rc = writeMasterJournal(pPager, zMaster);
4727 if( rc!=SQLITE_OK ) goto commit_phase_one_exit;
4728
4729 /* Sync the journal file. If the atomic-update optimization is being
4730 ** used, this call will not create the journal file or perform any
4731 ** real IO.
4732 */
4733 rc = syncJournal(pPager);
4734 if( rc!=SQLITE_OK ) goto commit_phase_one_exit;
4735
4736 /* Write all dirty pages to the database file. */
4737 rc = pager_write_pagelist(sqlite3PcacheDirtyList(pPager->pPCache));
drh153c62c2007-08-24 03:51:33 +00004738 if( rc!=SQLITE_OK ){
drh04c3a462008-02-26 16:16:45 +00004739 assert( rc!=SQLITE_IOERR_BLOCKED );
danielk1977bea2a942009-01-20 17:06:27 +00004740 goto commit_phase_one_exit;
drh153c62c2007-08-24 03:51:33 +00004741 }
danielk19778c0a7912008-08-20 14:49:23 +00004742 sqlite3PcacheCleanAll(pPager->pPCache);
drh80e35f42007-03-30 14:06:34 +00004743
danielk1977bea2a942009-01-20 17:06:27 +00004744 /* If the file on disk is not the same size as the database image,
4745 ** then use pager_truncate to grow or shrink the file here.
4746 */
4747 if( pPager->dbSize!=pPager->dbFileSize ){
4748 Pgno nNew = pPager->dbSize - (pPager->dbSize==PAGER_MJ_PGNO(pPager));
danielk1977f90b7262009-01-07 15:18:20 +00004749 assert( pPager->state>=PAGER_EXCLUSIVE );
danielk1977bea2a942009-01-20 17:06:27 +00004750 rc = pager_truncate(pPager, nNew);
4751 if( rc!=SQLITE_OK ) goto commit_phase_one_exit;
danielk1977f90b7262009-01-07 15:18:20 +00004752 }
4753
danielk1977bea2a942009-01-20 17:06:27 +00004754 /* Finally, sync the database file. */
danielk1977f653d782008-03-20 11:04:21 +00004755 if( !pPager->noSync && !noSync ){
danielk1977f036aef2007-08-20 05:36:51 +00004756 rc = sqlite3OsSync(pPager->fd, pPager->sync_flags);
drh80e35f42007-03-30 14:06:34 +00004757 }
4758 IOTRACE(("DBSYNC %p\n", pPager))
4759
4760 pPager->state = PAGER_SYNCED;
drh80e35f42007-03-30 14:06:34 +00004761 }
4762
danielk1977bea2a942009-01-20 17:06:27 +00004763commit_phase_one_exit:
drh80e35f42007-03-30 14:06:34 +00004764 return rc;
4765}
4766
4767
4768/*
danielk1977bea2a942009-01-20 17:06:27 +00004769** When this function is called, the database file has been completely
4770** updated to reflect the changes made by the current transaction and
4771** synced to disk. The journal file still exists in the file-system
4772** though, and if a failure occurs at this point it will eventually
4773** be used as a hot-journal and the current transaction rolled back.
drhd9b02572001-04-15 00:37:09 +00004774**
danielk1977bea2a942009-01-20 17:06:27 +00004775** This function finalizes the journal file, either by deleting,
4776** truncating or partially zeroing it, so that it cannot be used
4777** for hot-journal rollback. Once this is done the transaction is
4778** irrevocably committed.
4779**
4780** If an error occurs, an IO error code is returned and the pager
4781** moves into the error state. Otherwise, SQLITE_OK is returned.
drhed7c8552001-04-11 14:29:21 +00004782*/
drh80e35f42007-03-30 14:06:34 +00004783int sqlite3PagerCommitPhaseTwo(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00004784 int rc = SQLITE_OK; /* Return code */
drhd9b02572001-04-15 00:37:09 +00004785
drhb480dc22009-07-24 12:35:57 +00004786 /* This routine should not be called if a prior error has occurred.
4787 ** But if (due to a coding error elsewhere in the system) it does get
4788 ** called, just return the same error code without doing anything. */
4789 if( NEVER(pPager->errCode) ) return pPager->errCode;
danielk1977bea2a942009-01-20 17:06:27 +00004790
4791 /* This function should not be called if the pager is not in at least
4792 ** PAGER_RESERVED state. And indeed SQLite never does this. But it is
drhb480dc22009-07-24 12:35:57 +00004793 ** nice to have this defensive test here anyway.
danielk1977bea2a942009-01-20 17:06:27 +00004794 */
drhb480dc22009-07-24 12:35:57 +00004795 if( NEVER(pPager->state<PAGER_RESERVED) ) return SQLITE_ERROR;
danielk1977bea2a942009-01-20 17:06:27 +00004796
4797 /* An optimization. If the database was not actually modified during
4798 ** this transaction, the pager is running in exclusive-mode and is
4799 ** using persistent journals, then this function is a no-op.
4800 **
4801 ** The start of the journal file currently contains a single journal
4802 ** header with the nRec field set to 0. If such a journal is used as
4803 ** a hot-journal during hot-journal rollback, 0 changes will be made
4804 ** to the database file. So there is no need to zero the journal
4805 ** header. Since the pager is in exclusive mode, there is no need
4806 ** to drop any locks either.
4807 */
danielk19773cfe0702009-01-17 16:59:40 +00004808 if( pPager->dbModified==0 && pPager->exclusiveMode
4809 && pPager->journalMode==PAGER_JOURNALMODE_PERSIST
4810 ){
danielk1977bea2a942009-01-20 17:06:27 +00004811 assert( pPager->journalOff==JOURNAL_HDR_SZ(pPager) );
drhd138c012008-05-13 00:58:18 +00004812 return SQLITE_OK;
4813 }
danielk1977bea2a942009-01-20 17:06:27 +00004814
drh30d53702009-01-06 15:58:57 +00004815 PAGERTRACE(("COMMIT %d\n", PAGERID(pPager)));
danielk1977bea2a942009-01-20 17:06:27 +00004816 assert( pPager->state==PAGER_SYNCED || MEMDB || !pPager->dbModified );
danielk1977b3175382008-10-17 18:51:52 +00004817 rc = pager_end_transaction(pPager, pPager->setMaster);
danielk1977bea2a942009-01-20 17:06:27 +00004818 return pager_error(pPager, rc);
drhed7c8552001-04-11 14:29:21 +00004819}
4820
4821/*
danielk1977bea2a942009-01-20 17:06:27 +00004822** Rollback all changes. The database falls back to PAGER_SHARED mode.
drhd9b02572001-04-15 00:37:09 +00004823**
danielk1977bea2a942009-01-20 17:06:27 +00004824** This function performs two tasks:
4825**
4826** 1) It rolls back the journal file, restoring all database file and
4827** in-memory cache pages to the state they were in when the transaction
4828** was opened, and
4829** 2) It finalizes the journal file, so that it is not used for hot
4830** rollback at any point in the future.
4831**
4832** subject to the following qualifications:
4833**
4834** * If the journal file is not yet open when this function is called,
4835** then only (2) is performed. In this case there is no journal file
4836** to roll back.
4837**
4838** * If in an error state other than SQLITE_FULL, then task (1) is
4839** performed. If successful, task (2). Regardless of the outcome
4840** of either, the error state error code is returned to the caller
4841** (i.e. either SQLITE_IOERR or SQLITE_CORRUPT).
4842**
4843** * If the pager is in PAGER_RESERVED state, then attempt (1). Whether
4844** or not (1) is succussful, also attempt (2). If successful, return
4845** SQLITE_OK. Otherwise, enter the error state and return the first
4846** error code encountered.
4847**
4848** In this case there is no chance that the database was written to.
4849** So is safe to finalize the journal file even if the playback
4850** (operation 1) failed. However the pager must enter the error state
4851** as the contents of the in-memory cache are now suspect.
4852**
4853** * Finally, if in PAGER_EXCLUSIVE state, then attempt (1). Only
4854** attempt (2) if (1) is successful. Return SQLITE_OK if successful,
4855** otherwise enter the error state and return the error code from the
4856** failing operation.
4857**
4858** In this case the database file may have been written to. So if the
4859** playback operation did not succeed it would not be safe to finalize
4860** the journal file. It needs to be left in the file-system so that
4861** some other process can use it to restore the database state (by
4862** hot-journal rollback).
drhed7c8552001-04-11 14:29:21 +00004863*/
danielk19773b8a05f2007-03-19 17:44:26 +00004864int sqlite3PagerRollback(Pager *pPager){
danielk1977bea2a942009-01-20 17:06:27 +00004865 int rc = SQLITE_OK; /* Return code */
drh30d53702009-01-06 15:58:57 +00004866 PAGERTRACE(("ROLLBACK %d\n", PAGERID(pPager)));
danielk1977bea2a942009-01-20 17:06:27 +00004867 if( !pPager->dbModified || !isOpen(pPager->jfd) ){
danielk1977df2566a2008-05-07 19:11:03 +00004868 rc = pager_end_transaction(pPager, pPager->setMaster);
danielk19778c0a7912008-08-20 14:49:23 +00004869 }else if( pPager->errCode && pPager->errCode!=SQLITE_FULL ){
drha6abd042004-06-09 17:37:22 +00004870 if( pPager->state>=PAGER_EXCLUSIVE ){
danielk1977e277be02007-03-23 18:12:06 +00004871 pager_playback(pPager, 0);
drh4b845d72002-03-05 12:41:19 +00004872 }
danielk19778c0a7912008-08-20 14:49:23 +00004873 rc = pPager->errCode;
drha6abd042004-06-09 17:37:22 +00004874 }else{
danielk19778c0a7912008-08-20 14:49:23 +00004875 if( pPager->state==PAGER_RESERVED ){
4876 int rc2;
4877 rc = pager_playback(pPager, 0);
4878 rc2 = pager_end_transaction(pPager, pPager->setMaster);
4879 if( rc==SQLITE_OK ){
4880 rc = rc2;
4881 }
4882 }else{
4883 rc = pager_playback(pPager, 0);
4884 }
danielk197707cb5602006-01-20 10:55:05 +00004885
danielk1977b3175382008-10-17 18:51:52 +00004886 if( !MEMDB ){
danielk1977d92db532008-11-17 04:56:24 +00004887 pPager->dbSizeValid = 0;
danielk1977b3175382008-10-17 18:51:52 +00004888 }
danielk19778c0a7912008-08-20 14:49:23 +00004889
4890 /* If an error occurs during a ROLLBACK, we can no longer trust the pager
4891 ** cache. So call pager_error() on the way out to make any error
4892 ** persistent.
4893 */
4894 rc = pager_error(pPager, rc);
4895 }
drh86f8c192007-08-22 00:39:19 +00004896 return rc;
drh98808ba2001-10-18 12:34:46 +00004897}
drhd9b02572001-04-15 00:37:09 +00004898
4899/*
drh5e00f6c2001-09-13 13:46:56 +00004900** Return TRUE if the database file is opened read-only. Return FALSE
4901** if the database is (in theory) writable.
4902*/
drhf49661a2008-12-10 16:45:50 +00004903u8 sqlite3PagerIsreadonly(Pager *pPager){
drhbe0072d2001-09-13 14:46:09 +00004904 return pPager->readOnly;
drh5e00f6c2001-09-13 13:46:56 +00004905}
4906
4907/*
drh0f7eb612006-08-08 13:51:43 +00004908** Return the number of references to the pager.
4909*/
danielk19773b8a05f2007-03-19 17:44:26 +00004910int sqlite3PagerRefcount(Pager *pPager){
danielk19778c0a7912008-08-20 14:49:23 +00004911 return sqlite3PcacheRefCount(pPager->pPCache);
drh0f7eb612006-08-08 13:51:43 +00004912}
4913
danielk197771d5d2c2008-09-29 11:49:47 +00004914/*
4915** Return the number of references to the specified page.
4916*/
4917int sqlite3PagerPageRefcount(DbPage *pPage){
4918 return sqlite3PcachePageRefcount(pPage);
4919}
4920
drh0f7eb612006-08-08 13:51:43 +00004921#ifdef SQLITE_TEST
4922/*
drhd9b02572001-04-15 00:37:09 +00004923** This routine is used for testing and analysis only.
4924*/
danielk19773b8a05f2007-03-19 17:44:26 +00004925int *sqlite3PagerStats(Pager *pPager){
danielk197742741be2005-01-08 12:42:39 +00004926 static int a[11];
danielk19778c0a7912008-08-20 14:49:23 +00004927 a[0] = sqlite3PcacheRefCount(pPager->pPCache);
4928 a[1] = sqlite3PcachePagecount(pPager->pPCache);
4929 a[2] = sqlite3PcacheGetCachesize(pPager->pPCache);
danielk1977d92db532008-11-17 04:56:24 +00004930 a[3] = pPager->dbSizeValid ? (int) pPager->dbSize : -1;
drhd9b02572001-04-15 00:37:09 +00004931 a[4] = pPager->state;
danielk1977efaaf572006-01-16 11:29:19 +00004932 a[5] = pPager->errCode;
drhd9b02572001-04-15 00:37:09 +00004933 a[6] = pPager->nHit;
4934 a[7] = pPager->nMiss;
drh7c4ac0c2007-04-05 11:25:58 +00004935 a[8] = 0; /* Used to be pPager->nOvfl */
danielk197742741be2005-01-08 12:42:39 +00004936 a[9] = pPager->nRead;
4937 a[10] = pPager->nWrite;
drhd9b02572001-04-15 00:37:09 +00004938 return a;
4939}
danielk197704103022009-02-03 16:51:24 +00004940#endif
4941
4942/*
4943** Return true if this is an in-memory pager.
4944*/
danielk197717b90b52008-06-06 11:11:25 +00004945int sqlite3PagerIsMemdb(Pager *pPager){
4946 return MEMDB;
4947}
drhdd793422001-06-28 01:54:48 +00004948
drhfa86c412002-02-02 15:01:15 +00004949/*
danielk1977bea2a942009-01-20 17:06:27 +00004950** Check that there are at least nSavepoint savepoints open. If there are
4951** currently less than nSavepoints open, then open one or more savepoints
4952** to make up the difference. If the number of savepoints is already
4953** equal to nSavepoint, then this function is a no-op.
4954**
4955** If a memory allocation fails, SQLITE_NOMEM is returned. If an error
4956** occurs while opening the sub-journal file, then an IO error code is
4957** returned. Otherwise, SQLITE_OK.
drhfa86c412002-02-02 15:01:15 +00004958*/
danielk1977fd7f0452008-12-17 17:30:26 +00004959int sqlite3PagerOpenSavepoint(Pager *pPager, int nSavepoint){
danielk1977bea2a942009-01-20 17:06:27 +00004960 int rc = SQLITE_OK; /* Return code */
4961 int nCurrent = pPager->nSavepoint; /* Current number of savepoints */
danielk1977fd7f0452008-12-17 17:30:26 +00004962
danielk1977bea2a942009-01-20 17:06:27 +00004963 if( nSavepoint>nCurrent && pPager->useJournal ){
4964 int ii; /* Iterator variable */
4965 PagerSavepoint *aNew; /* New Pager.aSavepoint array */
danielk1977fd7f0452008-12-17 17:30:26 +00004966
drhc0731c92009-01-11 17:00:02 +00004967 /* Either there is no active journal or the sub-journal is open or
4968 ** the journal is always stored in memory */
danielk1977bea2a942009-01-20 17:06:27 +00004969 assert( pPager->nSavepoint==0 || isOpen(pPager->sjfd) ||
drhc0731c92009-01-11 17:00:02 +00004970 pPager->journalMode==PAGER_JOURNALMODE_MEMORY );
danielk1977fd7f0452008-12-17 17:30:26 +00004971
4972 /* Grow the Pager.aSavepoint array using realloc(). Return SQLITE_NOMEM
4973 ** if the allocation fails. Otherwise, zero the new portion in case a
4974 ** malloc failure occurs while populating it in the for(...) loop below.
4975 */
drh49b9d332009-01-02 18:10:42 +00004976 aNew = (PagerSavepoint *)sqlite3Realloc(
danielk1977fd7f0452008-12-17 17:30:26 +00004977 pPager->aSavepoint, sizeof(PagerSavepoint)*nSavepoint
4978 );
4979 if( !aNew ){
4980 return SQLITE_NOMEM;
4981 }
danielk1977bea2a942009-01-20 17:06:27 +00004982 memset(&aNew[nCurrent], 0, (nSavepoint-nCurrent) * sizeof(PagerSavepoint));
danielk1977fd7f0452008-12-17 17:30:26 +00004983 pPager->aSavepoint = aNew;
danielk1977fd7f0452008-12-17 17:30:26 +00004984 pPager->nSavepoint = nSavepoint;
4985
4986 /* Populate the PagerSavepoint structures just allocated. */
danielk1977bea2a942009-01-20 17:06:27 +00004987 for(ii=nCurrent; ii<nSavepoint; ii++){
danielk197712dd5492008-12-18 15:45:07 +00004988 assert( pPager->dbSizeValid );
danielk1977fd7f0452008-12-17 17:30:26 +00004989 aNew[ii].nOrig = pPager->dbSize;
drh8a938f92009-07-25 04:12:02 +00004990 if( isOpen(pPager->jfd) && ALWAYS(pPager->journalOff>0) ){
danielk197767ddef62008-12-23 19:15:56 +00004991 aNew[ii].iOffset = pPager->journalOff;
4992 }else{
4993 aNew[ii].iOffset = JOURNAL_HDR_SZ(pPager);
4994 }
danielk1977bea2a942009-01-20 17:06:27 +00004995 aNew[ii].iSubRec = pPager->nSubRec;
danielk1977fd7f0452008-12-17 17:30:26 +00004996 aNew[ii].pInSavepoint = sqlite3BitvecCreate(pPager->dbSize);
4997 if( !aNew[ii].pInSavepoint ){
4998 return SQLITE_NOMEM;
danielk1977b3175382008-10-17 18:51:52 +00004999 }
drh334b2992007-09-06 23:28:23 +00005000 }
danielk1977fd7f0452008-12-17 17:30:26 +00005001
5002 /* Open the sub-journal, if it is not already opened. */
5003 rc = openSubJournal(pPager);
danielk19779f0b6be2009-07-25 11:40:07 +00005004 assertTruncateConstraint(pPager);
drh0f892532002-05-30 12:27:03 +00005005 }
danielk1977fd7f0452008-12-17 17:30:26 +00005006
drh86f8c192007-08-22 00:39:19 +00005007 return rc;
5008}
drhfa86c412002-02-02 15:01:15 +00005009
5010/*
danielk1977bea2a942009-01-20 17:06:27 +00005011** This function is called to rollback or release (commit) a savepoint.
5012** The savepoint to release or rollback need not be the most recently
5013** created savepoint.
5014**
danielk1977fd7f0452008-12-17 17:30:26 +00005015** Parameter op is always either SAVEPOINT_ROLLBACK or SAVEPOINT_RELEASE.
5016** If it is SAVEPOINT_RELEASE, then release and destroy the savepoint with
5017** index iSavepoint. If it is SAVEPOINT_ROLLBACK, then rollback all changes
shanebe217792009-03-05 04:20:31 +00005018** that have occurred since the specified savepoint was created.
danielk1977fd7f0452008-12-17 17:30:26 +00005019**
danielk1977bea2a942009-01-20 17:06:27 +00005020** The savepoint to rollback or release is identified by parameter
5021** iSavepoint. A value of 0 means to operate on the outermost savepoint
5022** (the first created). A value of (Pager.nSavepoint-1) means operate
5023** on the most recently created savepoint. If iSavepoint is greater than
5024** (Pager.nSavepoint-1), then this function is a no-op.
danielk1977fd7f0452008-12-17 17:30:26 +00005025**
danielk1977bea2a942009-01-20 17:06:27 +00005026** If a negative value is passed to this function, then the current
5027** transaction is rolled back. This is different to calling
5028** sqlite3PagerRollback() because this function does not terminate
5029** the transaction or unlock the database, it just restores the
5030** contents of the database to its original state.
5031**
5032** In any case, all savepoints with an index greater than iSavepoint
5033** are destroyed. If this is a release operation (op==SAVEPOINT_RELEASE),
5034** then savepoint iSavepoint is also destroyed.
5035**
5036** This function may return SQLITE_NOMEM if a memory allocation fails,
5037** or an IO error code if an IO error occurs while rolling back a
5038** savepoint. If no errors occur, SQLITE_OK is returned.
danielk1977fd7f0452008-12-17 17:30:26 +00005039*/
5040int sqlite3PagerSavepoint(Pager *pPager, int op, int iSavepoint){
5041 int rc = SQLITE_OK;
5042
5043 assert( op==SAVEPOINT_RELEASE || op==SAVEPOINT_ROLLBACK );
danielk1977bea2a942009-01-20 17:06:27 +00005044 assert( iSavepoint>=0 || op==SAVEPOINT_ROLLBACK );
danielk1977fd7f0452008-12-17 17:30:26 +00005045
5046 if( iSavepoint<pPager->nSavepoint ){
danielk1977bea2a942009-01-20 17:06:27 +00005047 int ii; /* Iterator variable */
5048 int nNew; /* Number of remaining savepoints after this op. */
5049
5050 /* Figure out how many savepoints will still be active after this
5051 ** operation. Store this value in nNew. Then free resources associated
5052 ** with any savepoints that are destroyed by this operation.
5053 */
5054 nNew = iSavepoint + (op==SAVEPOINT_ROLLBACK);
danielk1977fd7f0452008-12-17 17:30:26 +00005055 for(ii=nNew; ii<pPager->nSavepoint; ii++){
5056 sqlite3BitvecDestroy(pPager->aSavepoint[ii].pInSavepoint);
5057 }
5058 pPager->nSavepoint = nNew;
5059
danielk1977bea2a942009-01-20 17:06:27 +00005060 /* If this is a rollback operation, playback the specified savepoint.
5061 ** If this is a temp-file, it is possible that the journal file has
5062 ** not yet been opened. In this case there have been no changes to
5063 ** the database file, so the playback operation can be skipped.
5064 */
5065 if( op==SAVEPOINT_ROLLBACK && isOpen(pPager->jfd) ){
danielk1977f3107512008-12-22 10:58:46 +00005066 PagerSavepoint *pSavepoint = (nNew==0)?0:&pPager->aSavepoint[nNew-1];
danielk1977fd7f0452008-12-17 17:30:26 +00005067 rc = pagerPlaybackSavepoint(pPager, pSavepoint);
5068 assert(rc!=SQLITE_DONE);
5069 }
danielk1977f3107512008-12-22 10:58:46 +00005070
danielk1977fd7f0452008-12-17 17:30:26 +00005071 /* If this is a release of the outermost savepoint, truncate
danielk1977bea2a942009-01-20 17:06:27 +00005072 ** the sub-journal to zero bytes in size. */
5073 if( nNew==0 && op==SAVEPOINT_RELEASE && isOpen(pPager->sjfd) ){
danielk1977fd7f0452008-12-17 17:30:26 +00005074 assert( rc==SQLITE_OK );
5075 rc = sqlite3OsTruncate(pPager->sjfd, 0);
danielk1977bea2a942009-01-20 17:06:27 +00005076 pPager->nSubRec = 0;
danielk1977b3175382008-10-17 18:51:52 +00005077 }
drh663fc632002-02-02 18:49:19 +00005078 }
drhfa86c412002-02-02 15:01:15 +00005079 return rc;
5080}
5081
drh73509ee2003-04-06 20:44:45 +00005082/*
5083** Return the full pathname of the database file.
5084*/
danielk19773b8a05f2007-03-19 17:44:26 +00005085const char *sqlite3PagerFilename(Pager *pPager){
drh73509ee2003-04-06 20:44:45 +00005086 return pPager->zFilename;
5087}
5088
drhb20ea9d2004-02-09 01:20:36 +00005089/*
drhd0679ed2007-08-28 22:24:34 +00005090** Return the VFS structure for the pager.
5091*/
5092const sqlite3_vfs *sqlite3PagerVfs(Pager *pPager){
5093 return pPager->pVfs;
5094}
5095
5096/*
drhcc6bb3e2007-08-31 16:11:35 +00005097** Return the file handle for the database file associated
5098** with the pager. This might return NULL if the file has
5099** not yet been opened.
5100*/
5101sqlite3_file *sqlite3PagerFile(Pager *pPager){
5102 return pPager->fd;
5103}
5104
5105/*
danielk19775865e3d2004-06-14 06:03:57 +00005106** Return the full pathname of the journal file.
5107*/
danielk19773b8a05f2007-03-19 17:44:26 +00005108const char *sqlite3PagerJournalname(Pager *pPager){
danielk19775865e3d2004-06-14 06:03:57 +00005109 return pPager->zJournal;
5110}
5111
5112/*
drh2c8997b2005-08-27 16:36:48 +00005113** Return true if fsync() calls are disabled for this pager. Return FALSE
5114** if fsync()s are executed normally.
5115*/
danielk19773b8a05f2007-03-19 17:44:26 +00005116int sqlite3PagerNosync(Pager *pPager){
drh2c8997b2005-08-27 16:36:48 +00005117 return pPager->noSync;
5118}
5119
drh7c4ac0c2007-04-05 11:25:58 +00005120#ifdef SQLITE_HAS_CODEC
drh2c8997b2005-08-27 16:36:48 +00005121/*
drhfa9601a2009-06-18 17:22:39 +00005122** Set or retrieve the codec for this pager
drhb20ea9d2004-02-09 01:20:36 +00005123*/
drhfa9601a2009-06-18 17:22:39 +00005124static void sqlite3PagerSetCodec(
drhb20ea9d2004-02-09 01:20:36 +00005125 Pager *pPager,
drhc001c582006-03-06 18:23:16 +00005126 void *(*xCodec)(void*,void*,Pgno,int),
drhfa9601a2009-06-18 17:22:39 +00005127 void (*xCodecSizeChng)(void*,int,int),
5128 void (*xCodecFree)(void*),
5129 void *pCodec
drhb20ea9d2004-02-09 01:20:36 +00005130){
drhfa9601a2009-06-18 17:22:39 +00005131 if( pPager->xCodecFree ) pPager->xCodecFree(pPager->pCodec);
drhb20ea9d2004-02-09 01:20:36 +00005132 pPager->xCodec = xCodec;
drhfa9601a2009-06-18 17:22:39 +00005133 pPager->xCodecSizeChng = xCodecSizeChng;
5134 pPager->xCodecFree = xCodecFree;
5135 pPager->pCodec = pCodec;
5136 pagerReportSize(pPager);
5137}
5138static void *sqlite3PagerGetCodec(Pager *pPager){
5139 return pPager->pCodec;
drhb20ea9d2004-02-09 01:20:36 +00005140}
drh7c4ac0c2007-04-05 11:25:58 +00005141#endif
drhb20ea9d2004-02-09 01:20:36 +00005142
danielk1977687566d2004-11-02 12:56:41 +00005143#ifndef SQLITE_OMIT_AUTOVACUUM
5144/*
danielk197787c29a92008-01-18 11:33:16 +00005145** Move the page pPg to location pgno in the file.
danielk1977687566d2004-11-02 12:56:41 +00005146**
drh5e385312007-06-16 04:42:12 +00005147** There must be no references to the page previously located at
5148** pgno (which we call pPgOld) though that page is allowed to be
drhb3df2e12008-09-17 20:06:26 +00005149** in cache. If the page previously located at pgno is not already
drh5e385312007-06-16 04:42:12 +00005150** in the rollback journal, it is not put there by by this routine.
danielk1977687566d2004-11-02 12:56:41 +00005151**
drh5e385312007-06-16 04:42:12 +00005152** References to the page pPg remain valid. Updating any
5153** meta-data associated with pPg (i.e. data stored in the nExtra bytes
danielk1977687566d2004-11-02 12:56:41 +00005154** allocated along with the page) is the responsibility of the caller.
5155**
danielk19775fd057a2005-03-09 13:09:43 +00005156** A transaction must be active when this routine is called. It used to be
5157** required that a statement transaction was not active, but this restriction
5158** has been removed (CREATE INDEX needs to move a page when a statement
5159** transaction is active).
danielk19774c999992008-07-16 18:17:55 +00005160**
5161** If the fourth argument, isCommit, is non-zero, then this page is being
5162** moved as part of a database reorganization just before the transaction
5163** is being committed. In this case, it is guaranteed that the database page
5164** pPg refers to will not be written to again within this transaction.
danielk1977bea2a942009-01-20 17:06:27 +00005165**
5166** This function may return SQLITE_NOMEM or an IO error code if an error
5167** occurs. Otherwise, it returns SQLITE_OK.
danielk1977687566d2004-11-02 12:56:41 +00005168*/
danielk19774c999992008-07-16 18:17:55 +00005169int sqlite3PagerMovepage(Pager *pPager, DbPage *pPg, Pgno pgno, int isCommit){
danielk1977bea2a942009-01-20 17:06:27 +00005170 PgHdr *pPgOld; /* The page being overwritten. */
5171 Pgno needSyncPgno = 0; /* Old value of pPg->pgno, if sync is required */
5172 int rc; /* Return code */
drh86655a12009-03-31 02:54:40 +00005173 Pgno origPgno; /* The original page number */
danielk1977687566d2004-11-02 12:56:41 +00005174
danielk1977687566d2004-11-02 12:56:41 +00005175 assert( pPg->nRef>0 );
5176
danielk19771fab7b62009-01-07 10:35:18 +00005177 /* If the page being moved is dirty and has not been saved by the latest
5178 ** savepoint, then save the current contents of the page into the
5179 ** sub-journal now. This is required to handle the following scenario:
5180 **
5181 ** BEGIN;
5182 ** <journal page X, then modify it in memory>
5183 ** SAVEPOINT one;
5184 ** <Move page X to location Y>
5185 ** ROLLBACK TO one;
5186 **
5187 ** If page X were not written to the sub-journal here, it would not
5188 ** be possible to restore its contents when the "ROLLBACK TO one"
danielk1977bea2a942009-01-20 17:06:27 +00005189 ** statement were is processed.
5190 **
5191 ** subjournalPage() may need to allocate space to store pPg->pgno into
5192 ** one or more savepoint bitvecs. This is the reason this function
5193 ** may return SQLITE_NOMEM.
danielk19771fab7b62009-01-07 10:35:18 +00005194 */
5195 if( pPg->flags&PGHDR_DIRTY
5196 && subjRequiresPage(pPg)
5197 && SQLITE_OK!=(rc = subjournalPage(pPg))
5198 ){
5199 return rc;
5200 }
5201
drh30d53702009-01-06 15:58:57 +00005202 PAGERTRACE(("MOVE %d page %d (needSync=%d) moves to %d\n",
5203 PAGERID(pPager), pPg->pgno, (pPg->flags&PGHDR_NEED_SYNC)?1:0, pgno));
drhb0603412007-02-28 04:47:26 +00005204 IOTRACE(("MOVE %p %d %d\n", pPager, pPg->pgno, pgno))
danielk1977ef73ee92004-11-06 12:26:07 +00005205
danielk19774c999992008-07-16 18:17:55 +00005206 /* If the journal needs to be sync()ed before page pPg->pgno can
5207 ** be written to, store pPg->pgno in local variable needSyncPgno.
5208 **
5209 ** If the isCommit flag is set, there is no need to remember that
5210 ** the journal needs to be sync()ed before database page pPg->pgno
5211 ** can be written to. The caller has already promised not to write to it.
5212 */
danielk19778c0a7912008-08-20 14:49:23 +00005213 if( (pPg->flags&PGHDR_NEED_SYNC) && !isCommit ){
danielk197794daf7f2004-11-08 09:26:09 +00005214 needSyncPgno = pPg->pgno;
danielk19773460d192008-12-27 15:23:13 +00005215 assert( pageInJournal(pPg) || pPg->pgno>pPager->dbOrigSize );
danielk19778c0a7912008-08-20 14:49:23 +00005216 assert( pPg->flags&PGHDR_DIRTY );
danielk1977ae825582004-11-23 09:06:55 +00005217 assert( pPager->needSync );
danielk197794daf7f2004-11-08 09:26:09 +00005218 }
5219
danielk1977ef73ee92004-11-06 12:26:07 +00005220 /* If the cache contains a page with page-number pgno, remove it
drh85b623f2007-12-13 21:54:09 +00005221 ** from its hash chain. Also, if the PgHdr.needSync was set for
danielk1977599fcba2004-11-08 07:13:13 +00005222 ** page pgno before the 'move' operation, it needs to be retained
5223 ** for the page moved there.
danielk1977f5fdda82004-11-03 08:44:05 +00005224 */
danielk1977bc2ca9e2008-11-13 14:28:28 +00005225 pPg->flags &= ~PGHDR_NEED_SYNC;
danielk1977687566d2004-11-02 12:56:41 +00005226 pPgOld = pager_lookup(pPager, pgno);
danielk19778c0a7912008-08-20 14:49:23 +00005227 assert( !pPgOld || pPgOld->nRef==1 );
drh6e2ef432009-07-22 02:02:39 +00005228 if( pPgOld ){
danielk19778c0a7912008-08-20 14:49:23 +00005229 pPg->flags |= (pPgOld->flags&PGHDR_NEED_SYNC);
danielk1977be20e8e2009-04-11 09:51:55 +00005230 sqlite3PcacheDrop(pPgOld);
drh5e385312007-06-16 04:42:12 +00005231 }
danielk1977687566d2004-11-02 12:56:41 +00005232
drh86655a12009-03-31 02:54:40 +00005233 origPgno = pPg->pgno;
danielk19778c0a7912008-08-20 14:49:23 +00005234 sqlite3PcacheMove(pPg, pgno);
drhc047b9f2008-11-21 03:23:43 +00005235 sqlite3PcacheMakeDirty(pPg);
drhd138c012008-05-13 00:58:18 +00005236 pPager->dbModified = 1;
danielk1977687566d2004-11-02 12:56:41 +00005237
danielk197794daf7f2004-11-08 09:26:09 +00005238 if( needSyncPgno ){
5239 /* If needSyncPgno is non-zero, then the journal file needs to be
5240 ** sync()ed before any data is written to database file page needSyncPgno.
5241 ** Currently, no such page exists in the page-cache and the
danielk19774c999992008-07-16 18:17:55 +00005242 ** "is journaled" bitvec flag has been set. This needs to be remedied by
5243 ** loading the page into the pager-cache and setting the PgHdr.needSync
5244 ** flag.
danielk1977ae825582004-11-23 09:06:55 +00005245 **
danielk1977a98d7b42008-01-18 13:42:54 +00005246 ** If the attempt to load the page into the page-cache fails, (due
drhf5e7bb52008-02-18 14:47:33 +00005247 ** to a malloc() or IO failure), clear the bit in the pInJournal[]
danielk1977a98d7b42008-01-18 13:42:54 +00005248 ** array. Otherwise, if the page is loaded and written again in
5249 ** this transaction, it may be written to the database file before
5250 ** it is synced into the journal file. This way, it may end up in
5251 ** the journal file twice, but that is not a problem.
5252 **
danielk19773b8a05f2007-03-19 17:44:26 +00005253 ** The sqlite3PagerGet() call may cause the journal to sync. So make
danielk1977ae825582004-11-23 09:06:55 +00005254 ** sure the Pager.needSync flag is set too.
danielk197794daf7f2004-11-08 09:26:09 +00005255 */
danielk19773b8a05f2007-03-19 17:44:26 +00005256 PgHdr *pPgHdr;
danielk1977ae825582004-11-23 09:06:55 +00005257 assert( pPager->needSync );
danielk19773b8a05f2007-03-19 17:44:26 +00005258 rc = sqlite3PagerGet(pPager, needSyncPgno, &pPgHdr);
danielk197787c29a92008-01-18 11:33:16 +00005259 if( rc!=SQLITE_OK ){
drh6aac11d2009-07-18 20:01:37 +00005260 if( needSyncPgno<=pPager->dbOrigSize ){
drhe98c9042009-06-02 21:31:38 +00005261 assert( pPager->pTmpSpace!=0 );
5262 sqlite3BitvecClear(pPager->pInJournal, needSyncPgno, pPager->pTmpSpace);
danielk1977a98d7b42008-01-18 13:42:54 +00005263 }
danielk197787c29a92008-01-18 11:33:16 +00005264 return rc;
5265 }
danielk1977ae825582004-11-23 09:06:55 +00005266 pPager->needSync = 1;
drhb3df2e12008-09-17 20:06:26 +00005267 assert( pPager->noSync==0 && !MEMDB );
danielk19778c0a7912008-08-20 14:49:23 +00005268 pPgHdr->flags |= PGHDR_NEED_SYNC;
drhc047b9f2008-11-21 03:23:43 +00005269 sqlite3PcacheMakeDirty(pPgHdr);
danielk19773b8a05f2007-03-19 17:44:26 +00005270 sqlite3PagerUnref(pPgHdr);
danielk197794daf7f2004-11-08 09:26:09 +00005271 }
5272
drh86655a12009-03-31 02:54:40 +00005273 /*
5274 ** For an in-memory database, make sure the original page continues
5275 ** to exist, in case the transaction needs to roll back. We allocate
5276 ** the page now, instead of at rollback, because we can better deal
5277 ** with an out-of-memory error now. Ticket #3761.
5278 */
5279 if( MEMDB ){
5280 DbPage *pNew;
5281 rc = sqlite3PagerAcquire(pPager, origPgno, &pNew, 1);
drh6a8b8d32009-07-12 02:31:36 +00005282 if( rc!=SQLITE_OK ){
5283 sqlite3PcacheMove(pPg, origPgno);
5284 return rc;
5285 }
drh86655a12009-03-31 02:54:40 +00005286 sqlite3PagerUnref(pNew);
5287 }
5288
danielk1977687566d2004-11-02 12:56:41 +00005289 return SQLITE_OK;
5290}
5291#endif
5292
danielk19773b8a05f2007-03-19 17:44:26 +00005293/*
5294** Return a pointer to the data for the specified page.
5295*/
5296void *sqlite3PagerGetData(DbPage *pPg){
danielk197771d5d2c2008-09-29 11:49:47 +00005297 assert( pPg->nRef>0 || pPg->pPager->memDb );
danielk19778c0a7912008-08-20 14:49:23 +00005298 return pPg->pData;
danielk19773b8a05f2007-03-19 17:44:26 +00005299}
5300
5301/*
5302** Return a pointer to the Pager.nExtra bytes of "extra" space
5303** allocated along with the specified page.
5304*/
5305void *sqlite3PagerGetExtra(DbPage *pPg){
drh6aac11d2009-07-18 20:01:37 +00005306 return pPg->pExtra;
danielk19773b8a05f2007-03-19 17:44:26 +00005307}
5308
danielk197741483462007-03-24 16:45:04 +00005309/*
5310** Get/set the locking-mode for this pager. Parameter eMode must be one
5311** of PAGER_LOCKINGMODE_QUERY, PAGER_LOCKINGMODE_NORMAL or
5312** PAGER_LOCKINGMODE_EXCLUSIVE. If the parameter is not _QUERY, then
5313** the locking-mode is set to the value specified.
5314**
5315** The returned value is either PAGER_LOCKINGMODE_NORMAL or
5316** PAGER_LOCKINGMODE_EXCLUSIVE, indicating the current (possibly updated)
5317** locking-mode.
5318*/
5319int sqlite3PagerLockingMode(Pager *pPager, int eMode){
drh369339d2007-03-30 16:01:55 +00005320 assert( eMode==PAGER_LOCKINGMODE_QUERY
5321 || eMode==PAGER_LOCKINGMODE_NORMAL
5322 || eMode==PAGER_LOCKINGMODE_EXCLUSIVE );
5323 assert( PAGER_LOCKINGMODE_QUERY<0 );
5324 assert( PAGER_LOCKINGMODE_NORMAL>=0 && PAGER_LOCKINGMODE_EXCLUSIVE>=0 );
5325 if( eMode>=0 && !pPager->tempFile ){
drh1bd10f82008-12-10 21:19:56 +00005326 pPager->exclusiveMode = (u8)eMode;
danielk197741483462007-03-24 16:45:04 +00005327 }
5328 return (int)pPager->exclusiveMode;
5329}
5330
drh3b020132008-04-17 17:02:01 +00005331/*
drh04335882008-09-26 21:08:08 +00005332** Get/set the journal-mode for this pager. Parameter eMode must be one of:
drh3b020132008-04-17 17:02:01 +00005333**
drh04335882008-09-26 21:08:08 +00005334** PAGER_JOURNALMODE_QUERY
5335** PAGER_JOURNALMODE_DELETE
5336** PAGER_JOURNALMODE_TRUNCATE
5337** PAGER_JOURNALMODE_PERSIST
5338** PAGER_JOURNALMODE_OFF
danielk1977bea2a942009-01-20 17:06:27 +00005339** PAGER_JOURNALMODE_MEMORY
drh04335882008-09-26 21:08:08 +00005340**
drh8a939192009-04-20 17:43:03 +00005341** If the parameter is not _QUERY, then the journal_mode is set to the
5342** value specified if the change is allowed. The change is disallowed
5343** for the following reasons:
5344**
5345** * An in-memory database can only have its journal_mode set to _OFF
5346** or _MEMORY.
5347**
5348** * The journal mode may not be changed while a transaction is active.
drh04335882008-09-26 21:08:08 +00005349**
danielk1977bea2a942009-01-20 17:06:27 +00005350** The returned indicate the current (possibly updated) journal-mode.
drh3b020132008-04-17 17:02:01 +00005351*/
5352int sqlite3PagerJournalMode(Pager *pPager, int eMode){
drh5d738542009-04-04 15:53:47 +00005353 assert( eMode==PAGER_JOURNALMODE_QUERY
5354 || eMode==PAGER_JOURNALMODE_DELETE
5355 || eMode==PAGER_JOURNALMODE_TRUNCATE
5356 || eMode==PAGER_JOURNALMODE_PERSIST
5357 || eMode==PAGER_JOURNALMODE_OFF
5358 || eMode==PAGER_JOURNALMODE_MEMORY );
5359 assert( PAGER_JOURNALMODE_QUERY<0 );
drh8a939192009-04-20 17:43:03 +00005360 if( eMode>=0
5361 && (!MEMDB || eMode==PAGER_JOURNALMODE_MEMORY
5362 || eMode==PAGER_JOURNALMODE_OFF)
5363 && !pPager->dbModified
danielk1977f761f762009-04-28 05:27:20 +00005364 && (!isOpen(pPager->jfd) || 0==pPager->journalOff)
drh8a939192009-04-20 17:43:03 +00005365 ){
5366 if( isOpen(pPager->jfd) ){
5367 sqlite3OsClose(pPager->jfd);
5368 }
drh5d738542009-04-04 15:53:47 +00005369 pPager->journalMode = (u8)eMode;
drh3b020132008-04-17 17:02:01 +00005370 }
drhfdc40e92008-04-17 20:59:37 +00005371 return (int)pPager->journalMode;
drh3b020132008-04-17 17:02:01 +00005372}
5373
danielk1977b53e4962008-06-04 06:45:59 +00005374/*
5375** Get/set the size-limit used for persistent journal files.
drh5d738542009-04-04 15:53:47 +00005376**
5377** Setting the size limit to -1 means no limit is enforced.
5378** An attempt to set a limit smaller than -1 is a no-op.
danielk1977b53e4962008-06-04 06:45:59 +00005379*/
5380i64 sqlite3PagerJournalSizeLimit(Pager *pPager, i64 iLimit){
5381 if( iLimit>=-1 ){
5382 pPager->journalSizeLimit = iLimit;
5383 }
5384 return pPager->journalSizeLimit;
5385}
5386
danielk197704103022009-02-03 16:51:24 +00005387/*
5388** Return a pointer to the pPager->pBackup variable. The backup module
5389** in backup.c maintains the content of this variable. This module
5390** uses it opaquely as an argument to sqlite3BackupRestart() and
5391** sqlite3BackupUpdate() only.
5392*/
5393sqlite3_backup **sqlite3PagerBackupPtr(Pager *pPager){
5394 return &pPager->pBackup;
5395}
5396
drh2e66f0b2005-04-28 17:18:48 +00005397#endif /* SQLITE_OMIT_DISKIO */