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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**
danielk1977334cdb62007-03-26 08:05:12 +000021** @(#) $Id: pager.c,v 1.295 2007/03/26 08:05:12 danielk1977 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"
drheb206252004-10-01 02:00:31 +000025#include "os.h"
drhed7c8552001-04-11 14:29:21 +000026#include "pager.h"
drhed7c8552001-04-11 14:29:21 +000027#include <assert.h>
drhd9b02572001-04-15 00:37:09 +000028#include <string.h>
drhed7c8552001-04-11 14:29:21 +000029
30/*
drhdb48ee02003-01-16 13:42:43 +000031** Macros for troubleshooting. Normally turned off
32*/
danielk1977466be562004-06-10 02:16:01 +000033#if 0
drhd3627af2006-12-18 18:34:51 +000034#define sqlite3DebugPrintf printf
drh34f47322004-08-18 15:58:22 +000035#define TRACE1(X) sqlite3DebugPrintf(X)
36#define TRACE2(X,Y) sqlite3DebugPrintf(X,Y)
37#define TRACE3(X,Y,Z) sqlite3DebugPrintf(X,Y,Z)
38#define TRACE4(X,Y,Z,W) sqlite3DebugPrintf(X,Y,Z,W)
danielk197794daf7f2004-11-08 09:26:09 +000039#define TRACE5(X,Y,Z,W,V) sqlite3DebugPrintf(X,Y,Z,W,V)
drhdb48ee02003-01-16 13:42:43 +000040#else
drhdb48ee02003-01-16 13:42:43 +000041#define TRACE1(X)
42#define TRACE2(X,Y)
43#define TRACE3(X,Y,Z)
drh34f47322004-08-18 15:58:22 +000044#define TRACE4(X,Y,Z,W)
danielk1977599fcba2004-11-08 07:13:13 +000045#define TRACE5(X,Y,Z,W,V)
drhdb48ee02003-01-16 13:42:43 +000046#endif
47
danielk1977599fcba2004-11-08 07:13:13 +000048/*
49** The following two macros are used within the TRACEX() macros above
drhd86959f2005-11-26 03:51:18 +000050** to print out file-descriptors.
danielk1977599fcba2004-11-08 07:13:13 +000051**
52** PAGERID() takes a pointer to a Pager struct as it's argument. The
53** associated file-descriptor is returned. FILEHANDLEID() takes an OsFile
54** struct as it's argument.
55*/
drhc001c582006-03-06 18:23:16 +000056#define PAGERID(p) ((int)(p->fd))
57#define FILEHANDLEID(fd) ((int)fd)
drhdb48ee02003-01-16 13:42:43 +000058
59/*
drhed7c8552001-04-11 14:29:21 +000060** The page cache as a whole is always in one of the following
61** states:
62**
drha6abd042004-06-09 17:37:22 +000063** PAGER_UNLOCK The page cache is not currently reading or
drhed7c8552001-04-11 14:29:21 +000064** writing the database file. There is no
65** data held in memory. This is the initial
66** state.
67**
drha6abd042004-06-09 17:37:22 +000068** PAGER_SHARED The page cache is reading the database.
drhed7c8552001-04-11 14:29:21 +000069** Writing is not permitted. There can be
70** multiple readers accessing the same database
drh69688d52001-04-14 16:38:23 +000071** file at the same time.
drhed7c8552001-04-11 14:29:21 +000072**
drh726de592004-06-10 23:35:50 +000073** PAGER_RESERVED This process has reserved the database for writing
74** but has not yet made any changes. Only one process
75** at a time can reserve the database. The original
76** database file has not been modified so other
77** processes may still be reading the on-disk
drha6abd042004-06-09 17:37:22 +000078** database file.
79**
80** PAGER_EXCLUSIVE The page cache is writing the database.
drhed7c8552001-04-11 14:29:21 +000081** Access is exclusive. No other processes or
82** threads can be reading or writing while one
83** process is writing.
84**
danielk1977aa5ccdf2004-06-14 05:10:42 +000085** PAGER_SYNCED The pager moves to this state from PAGER_EXCLUSIVE
86** after all dirty pages have been written to the
87** database file and the file has been synced to
88** disk. All that remains to do is to remove the
89** journal file and the transaction will be
90** committed.
91**
drha6abd042004-06-09 17:37:22 +000092** The page cache comes up in PAGER_UNLOCK. The first time a
danielk19773b8a05f2007-03-19 17:44:26 +000093** sqlite3PagerGet() occurs, the state transitions to PAGER_SHARED.
drhed7c8552001-04-11 14:29:21 +000094** After all pages have been released using sqlite_page_unref(),
drha6abd042004-06-09 17:37:22 +000095** the state transitions back to PAGER_UNLOCK. The first time
danielk19773b8a05f2007-03-19 17:44:26 +000096** that sqlite3PagerWrite() is called, the state transitions to
drha6abd042004-06-09 17:37:22 +000097** PAGER_RESERVED. (Note that sqlite_page_write() can only be
drh306dc212001-05-21 13:45:10 +000098** called on an outstanding page which means that the pager must
drha6abd042004-06-09 17:37:22 +000099** be in PAGER_SHARED before it transitions to PAGER_RESERVED.)
drh726de592004-06-10 23:35:50 +0000100** The transition to PAGER_EXCLUSIVE occurs when before any changes
danielk19773b8a05f2007-03-19 17:44:26 +0000101** are made to the database file. After an sqlite3PagerRollback()
drh726de592004-06-10 23:35:50 +0000102** or sqlite_pager_commit(), the state goes back to PAGER_SHARED.
drhed7c8552001-04-11 14:29:21 +0000103*/
drha6abd042004-06-09 17:37:22 +0000104#define PAGER_UNLOCK 0
drh684917c2004-10-05 02:41:42 +0000105#define PAGER_SHARED 1 /* same as SHARED_LOCK */
106#define PAGER_RESERVED 2 /* same as RESERVED_LOCK */
107#define PAGER_EXCLUSIVE 4 /* same as EXCLUSIVE_LOCK */
108#define PAGER_SYNCED 5
drhed7c8552001-04-11 14:29:21 +0000109
drh684917c2004-10-05 02:41:42 +0000110/*
111** If the SQLITE_BUSY_RESERVED_LOCK macro is set to true at compile-time,
112** then failed attempts to get a reserved lock will invoke the busy callback.
113** This is off by default. To see why, consider the following scenario:
114**
115** Suppose thread A already has a shared lock and wants a reserved lock.
116** Thread B already has a reserved lock and wants an exclusive lock. If
117** both threads are using their busy callbacks, it might be a long time
118** be for one of the threads give up and allows the other to proceed.
119** But if the thread trying to get the reserved lock gives up quickly
120** (if it never invokes its busy callback) then the contention will be
121** resolved quickly.
122*/
123#ifndef SQLITE_BUSY_RESERVED_LOCK
124# define SQLITE_BUSY_RESERVED_LOCK 0
125#endif
drhd9b02572001-04-15 00:37:09 +0000126
drhed7c8552001-04-11 14:29:21 +0000127/*
drh887dc4c2004-10-22 16:22:57 +0000128** This macro rounds values up so that if the value is an address it
129** is guaranteed to be an address that is aligned to an 8-byte boundary.
130*/
131#define FORCE_ALIGNMENT(X) (((X)+7)&~7)
132
133/*
drhed7c8552001-04-11 14:29:21 +0000134** Each in-memory image of a page begins with the following header.
drhbd03cae2001-06-02 02:40:57 +0000135** This header is only visible to this pager module. The client
136** code that calls pager sees only the data that follows the header.
drhf6038712004-02-08 18:07:34 +0000137**
danielk19773b8a05f2007-03-19 17:44:26 +0000138** Client code should call sqlite3PagerWrite() on a page prior to making
139** any modifications to that page. The first time sqlite3PagerWrite()
drhf6038712004-02-08 18:07:34 +0000140** is called, the original page contents are written into the rollback
141** journal and PgHdr.inJournal and PgHdr.needSync are set. Later, once
142** the journal page has made it onto the disk surface, PgHdr.needSync
143** is cleared. The modified page cannot be written back into the original
144** database file until the journal pages has been synced to disk and the
145** PgHdr.needSync has been cleared.
146**
danielk19773b8a05f2007-03-19 17:44:26 +0000147** The PgHdr.dirty flag is set when sqlite3PagerWrite() is called and
drhf6038712004-02-08 18:07:34 +0000148** is cleared again when the page content is written back to the original
149** database file.
drhed7c8552001-04-11 14:29:21 +0000150*/
drhd9b02572001-04-15 00:37:09 +0000151typedef struct PgHdr PgHdr;
drhed7c8552001-04-11 14:29:21 +0000152struct PgHdr {
153 Pager *pPager; /* The pager to which this page belongs */
154 Pgno pgno; /* The page number for this page */
drh69688d52001-04-14 16:38:23 +0000155 PgHdr *pNextHash, *pPrevHash; /* Hash collision chain for PgHdr.pgno */
drhd9b02572001-04-15 00:37:09 +0000156 PgHdr *pNextFree, *pPrevFree; /* Freelist of pages where nRef==0 */
drhac69b052004-05-12 13:30:07 +0000157 PgHdr *pNextAll; /* A list of all pages */
158 PgHdr *pNextStmt, *pPrevStmt; /* List of pages in the statement journal */
drh193a6b42002-07-07 16:52:46 +0000159 u8 inJournal; /* TRUE if has been written to journal */
drhac69b052004-05-12 13:30:07 +0000160 u8 inStmt; /* TRUE if in the statement subjournal */
drh193a6b42002-07-07 16:52:46 +0000161 u8 dirty; /* TRUE if we need to write back changes */
drhdb48ee02003-01-16 13:42:43 +0000162 u8 needSync; /* Sync journal before writing this page */
drh193a6b42002-07-07 16:52:46 +0000163 u8 alwaysRollback; /* Disable dont_rollback() for this page */
drhac69b052004-05-12 13:30:07 +0000164 short int nRef; /* Number of users of this page */
drhdc3e10b2006-06-15 14:31:06 +0000165 PgHdr *pDirty, *pPrevDirty; /* Dirty pages */
drh605ad8f2006-05-03 23:34:05 +0000166 u32 notUsed; /* Buffer space */
danielk19773c407372005-02-15 02:54:14 +0000167#ifdef SQLITE_CHECK_PAGES
168 u32 pageHash;
169#endif
drh1c7880e2005-05-20 20:01:55 +0000170 /* pPager->pageSize bytes of page data follow this header */
drh973b6e32003-02-12 14:09:42 +0000171 /* Pager.nExtra bytes of local data follow the page data */
drhed7c8552001-04-11 14:29:21 +0000172};
173
drhac69b052004-05-12 13:30:07 +0000174/*
175** For an in-memory only database, some extra information is recorded about
176** each page so that changes can be rolled back. (Journal files are not
177** used for in-memory databases.) The following information is added to
178** the end of every EXTRA block for in-memory databases.
179**
180** This information could have been added directly to the PgHdr structure.
181** But then it would take up an extra 8 bytes of storage on every PgHdr
182** even for disk-based databases. Splitting it out saves 8 bytes. This
183** is only a savings of 0.8% but those percentages add up.
184*/
185typedef struct PgHistory PgHistory;
186struct PgHistory {
187 u8 *pOrig; /* Original page text. Restore to this on a full rollback */
188 u8 *pStmt; /* Text as it was at the beginning of the current statement */
189};
drh9eb9e262004-02-11 02:18:05 +0000190
191/*
192** A macro used for invoking the codec if there is one
193*/
194#ifdef SQLITE_HAS_CODEC
drhc001c582006-03-06 18:23:16 +0000195# define CODEC1(P,D,N,X) if( P->xCodec!=0 ){ P->xCodec(P->pCodecArg,D,N,X); }
196# define CODEC2(P,D,N,X) ((char*)(P->xCodec!=0?P->xCodec(P->pCodecArg,D,N,X):D))
drh9eb9e262004-02-11 02:18:05 +0000197#else
drhc001c582006-03-06 18:23:16 +0000198# define CODEC1(P,D,N,X) /* NO-OP */
199# define CODEC2(P,D,N,X) ((char*)D)
drh9eb9e262004-02-11 02:18:05 +0000200#endif
201
drhed7c8552001-04-11 14:29:21 +0000202/*
drh69688d52001-04-14 16:38:23 +0000203** Convert a pointer to a PgHdr into a pointer to its data
204** and back again.
drhed7c8552001-04-11 14:29:21 +0000205*/
206#define PGHDR_TO_DATA(P) ((void*)(&(P)[1]))
207#define DATA_TO_PGHDR(D) (&((PgHdr*)(D))[-1])
drh1c7880e2005-05-20 20:01:55 +0000208#define PGHDR_TO_EXTRA(G,P) ((void*)&((char*)(&(G)[1]))[(P)->pageSize])
drhac69b052004-05-12 13:30:07 +0000209#define PGHDR_TO_HIST(P,PGR) \
drh1c7880e2005-05-20 20:01:55 +0000210 ((PgHistory*)&((char*)(&(P)[1]))[(PGR)->pageSize+(PGR)->nExtra])
drhed7c8552001-04-11 14:29:21 +0000211
212/*
drhed7c8552001-04-11 14:29:21 +0000213** A open page cache is an instance of the following structure.
danielk1977efaaf572006-01-16 11:29:19 +0000214**
215** Pager.errCode may be set to SQLITE_IOERR, SQLITE_CORRUPT, SQLITE_PROTOCOL
216** or SQLITE_FULL. Once one of the first three errors occurs, it persists
217** and is returned as the result of every major pager API call. The
218** SQLITE_FULL return code is slightly different. It persists only until the
219** next successful rollback is performed on the pager cache. Also,
danielk19773b8a05f2007-03-19 17:44:26 +0000220** SQLITE_FULL does not affect the sqlite3PagerGet() and sqlite3PagerLookup()
danielk1977efaaf572006-01-16 11:29:19 +0000221** APIs, they may still be used successfully.
drhed7c8552001-04-11 14:29:21 +0000222*/
223struct Pager {
drh603240c2002-03-05 01:11:12 +0000224 u8 journalOpen; /* True if journal file descriptors is valid */
drh34e79ce2004-02-08 06:05:46 +0000225 u8 journalStarted; /* True if header of journal is synced */
226 u8 useJournal; /* Use a rollback journal on this file */
drh7bec5052005-02-06 02:45:41 +0000227 u8 noReadlock; /* Do not bother to obtain readlocks */
drhac69b052004-05-12 13:30:07 +0000228 u8 stmtOpen; /* True if the statement subjournal is open */
229 u8 stmtInUse; /* True we are in a statement subtransaction */
230 u8 stmtAutoopen; /* Open stmt journal when main journal is opened*/
drh603240c2002-03-05 01:11:12 +0000231 u8 noSync; /* Do not sync the journal if true */
drh968af522003-02-11 14:55:40 +0000232 u8 fullSync; /* Do extra syncs of the journal for robustness */
drhac530b12006-02-11 01:25:50 +0000233 u8 full_fsync; /* Use F_FULLFSYNC when available */
drha6abd042004-06-09 17:37:22 +0000234 u8 state; /* PAGER_UNLOCK, _SHARED, _RESERVED, etc. */
drh603240c2002-03-05 01:11:12 +0000235 u8 tempFile; /* zFilename is a temporary file */
236 u8 readOnly; /* True for a read-only database */
237 u8 needSync; /* True if an fsync() is needed on the journal */
drha6abd042004-06-09 17:37:22 +0000238 u8 dirtyCache; /* True if cached pages have changed */
drh193a6b42002-07-07 16:52:46 +0000239 u8 alwaysRollback; /* Disable dont_rollback() for all pages */
drhac69b052004-05-12 13:30:07 +0000240 u8 memDb; /* True to inhibit all file I/O */
drh6d156e42005-05-20 20:11:20 +0000241 u8 setMaster; /* True if a m-j name has been written to jrnl */
drhe49f9822006-09-15 12:29:16 +0000242 int errCode; /* One of several kinds of errors */
drhfcd35c72005-05-21 02:48:08 +0000243 int dbSize; /* Number of pages in the file */
244 int origDbSize; /* dbSize before the current change */
245 int stmtSize; /* Size of database (in pages) at stmt_begin() */
246 int nRec; /* Number of pages written to the journal */
247 u32 cksumInit; /* Quasi-random value added to every checksum */
248 int stmtNRec; /* Number of records in stmt subjournal */
249 int nExtra; /* Add this many bytes to each in-memory page */
250 int pageSize; /* Number of bytes in a page */
251 int nPage; /* Total number of in-memory pages */
252 int nMaxPage; /* High water mark of nPage */
253 int nRef; /* Number of in-memory pages with PgHdr.nRef>0 */
254 int mxPage; /* Maximum number of pages to hold in cache */
drh603240c2002-03-05 01:11:12 +0000255 u8 *aInJournal; /* One bit for each page in the database file */
drhac69b052004-05-12 13:30:07 +0000256 u8 *aInStmt; /* One bit for each page in the database */
drhfcd35c72005-05-21 02:48:08 +0000257 char *zFilename; /* Name of the database file */
258 char *zJournal; /* Name of the journal file */
259 char *zDirectory; /* Directory hold database and journal files */
drh9cbe6352005-11-29 03:13:21 +0000260 OsFile *fd, *jfd; /* File descriptors for database and journal */
261 OsFile *stfd; /* File descriptor for the statement subjournal*/
drh726de592004-06-10 23:35:50 +0000262 BusyHandler *pBusyHandler; /* Pointer to sqlite.busyHandler */
drhed7c8552001-04-11 14:29:21 +0000263 PgHdr *pFirst, *pLast; /* List of free pages */
drh341eae82003-01-21 02:39:36 +0000264 PgHdr *pFirstSynced; /* First free page with PgHdr.needSync==0 */
drhd9b02572001-04-15 00:37:09 +0000265 PgHdr *pAll; /* List of all pages */
drhac69b052004-05-12 13:30:07 +0000266 PgHdr *pStmt; /* List of pages in the statement subjournal */
drh605ad8f2006-05-03 23:34:05 +0000267 PgHdr *pDirty; /* List of all dirty pages */
drheb206252004-10-01 02:00:31 +0000268 i64 journalOff; /* Current byte offset in the journal file */
269 i64 journalHdr; /* Byte offset to previous journal header */
270 i64 stmtHdrOff; /* First journal header written this statement */
271 i64 stmtCksum; /* cksumInit when statement was started */
drh6d156e42005-05-20 20:11:20 +0000272 i64 stmtJSize; /* Size of journal at stmt_begin() */
danielk197776572402004-06-25 02:38:54 +0000273 int sectorSize; /* Assumed sector size during rollback */
drhfcd35c72005-05-21 02:48:08 +0000274#ifdef SQLITE_TEST
drh6d156e42005-05-20 20:11:20 +0000275 int nHit, nMiss, nOvfl; /* Cache hits, missing, and LRU overflows */
276 int nRead,nWrite; /* Database pages read/written */
drhfcd35c72005-05-21 02:48:08 +0000277#endif
danielk19773b8a05f2007-03-19 17:44:26 +0000278 void (*xDestructor)(DbPage*,int); /* Call this routine when freeing pages */
279 void (*xReiniter)(DbPage*,int); /* Call this routine when reloading pages */
drhc001c582006-03-06 18:23:16 +0000280 void *(*xCodec)(void*,void*,Pgno,int); /* Routine for en/decoding data */
drh6d156e42005-05-20 20:11:20 +0000281 void *pCodecArg; /* First argument to xCodec() */
drh8ca0c722006-05-07 17:49:38 +0000282 int nHash; /* Size of the pager hash table */
283 PgHdr **aHash; /* Hash table to map page number to PgHdr */
drh6f7adc82006-01-11 21:41:20 +0000284#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
danielk197713f72992005-12-18 08:51:22 +0000285 Pager *pNext; /* Linked list of pagers in this thread */
286#endif
danielk19778186df82007-03-06 13:45:59 +0000287 char *pTmpSpace; /* Pager.pageSize bytes of space for tmp use */
danielk1977e277be02007-03-23 18:12:06 +0000288 u32 iChangeCount; /* Db change-counter for which cache is valid */
danielk197741483462007-03-24 16:45:04 +0000289 u8 doNotSync; /* Boolean. While true, do not spill the cache */
290 u8 exclusiveMode; /* Boolean. True if locking_mode==EXCLUSIVE */
291 u8 changeCountDone; /* Set after incrementing the change-counter */
drhd9b02572001-04-15 00:37:09 +0000292};
293
294/*
drhfcd35c72005-05-21 02:48:08 +0000295** If SQLITE_TEST is defined then increment the variable given in
296** the argument
297*/
298#ifdef SQLITE_TEST
299# define TEST_INCR(x) x++
300#else
301# define TEST_INCR(x)
302#endif
303
304/*
drh5e00f6c2001-09-13 13:46:56 +0000305** Journal files begin with the following magic string. The data
306** was obtained from /dev/random. It is used only as a sanity check.
drh94f33312002-08-12 12:29:56 +0000307**
drhae2b40c2004-06-09 19:03:54 +0000308** Since version 2.8.0, the journal format contains additional sanity
309** checking information. If the power fails while the journal is begin
310** written, semi-random garbage data might appear in the journal
311** file after power is restored. If an attempt is then made
drh968af522003-02-11 14:55:40 +0000312** to roll the journal back, the database could be corrupted. The additional
313** sanity checking data is an attempt to discover the garbage in the
314** journal and ignore it.
315**
drhae2b40c2004-06-09 19:03:54 +0000316** The sanity checking information for the new journal format consists
drh968af522003-02-11 14:55:40 +0000317** of a 32-bit checksum on each page of data. The checksum covers both
drh90f5ecb2004-07-22 01:19:35 +0000318** the page number and the pPager->pageSize bytes of data for the page.
drh968af522003-02-11 14:55:40 +0000319** This cksum is initialized to a 32-bit random value that appears in the
320** journal file right after the header. The random initializer is important,
321** because garbage data that appears at the end of a journal is likely
322** data that was once in other files that have now been deleted. If the
323** garbage data came from an obsolete journal file, the checksums might
324** be correct. But by initializing the checksum to random value which
325** is different for every journal, we minimize that risk.
drhd9b02572001-04-15 00:37:09 +0000326*/
drhae2b40c2004-06-09 19:03:54 +0000327static const unsigned char aJournalMagic[] = {
328 0xd9, 0xd5, 0x05, 0xf9, 0x20, 0xa1, 0x63, 0xd7,
drhed7c8552001-04-11 14:29:21 +0000329};
330
331/*
drh726de592004-06-10 23:35:50 +0000332** The size of the header and of each page in the journal is determined
333** by the following macros.
drh968af522003-02-11 14:55:40 +0000334*/
drhae2b40c2004-06-09 19:03:54 +0000335#define JOURNAL_PG_SZ(pPager) ((pPager->pageSize) + 8)
drh968af522003-02-11 14:55:40 +0000336
danielk197776572402004-06-25 02:38:54 +0000337/*
338** The journal header size for this pager. In the future, this could be
339** set to some value read from the disk controller. The important
340** characteristic is that it is the same size as a disk sector.
341*/
342#define JOURNAL_HDR_SZ(pPager) (pPager->sectorSize)
343
drhb7f91642004-10-31 02:22:47 +0000344/*
345** The macro MEMDB is true if we are dealing with an in-memory database.
346** We do this as a macro so that if the SQLITE_OMIT_MEMORYDB macro is set,
347** the value of MEMDB will be a constant and the compiler will optimize
348** out code that would never execute.
349*/
350#ifdef SQLITE_OMIT_MEMORYDB
351# define MEMDB 0
352#else
353# define MEMDB pPager->memDb
354#endif
355
356/*
danielk197776572402004-06-25 02:38:54 +0000357** Page number PAGER_MJ_PGNO is never used in an SQLite database (it is
358** reserved for working around a windows/posix incompatibility). It is
359** used in the journal to signify that the remainder of the journal file
360** is devoted to storing a master journal name - there are no more pages to
361** roll back. See comments for function writeMasterJournal() for details.
362*/
danielk1977599fcba2004-11-08 07:13:13 +0000363/* #define PAGER_MJ_PGNO(x) (PENDING_BYTE/((x)->pageSize)) */
364#define PAGER_MJ_PGNO(x) ((PENDING_BYTE/((x)->pageSize))+1)
danielk197713adf8a2004-06-03 16:08:41 +0000365
drh968af522003-02-11 14:55:40 +0000366/*
danielk197726836652005-01-17 01:33:13 +0000367** The maximum legal page number is (2^31 - 1).
368*/
369#define PAGER_MAX_PGNO 2147483647
370
371/*
drh726de592004-06-10 23:35:50 +0000372** Enable reference count tracking (for debugging) here:
drhdd793422001-06-28 01:54:48 +0000373*/
drh0f7eb612006-08-08 13:51:43 +0000374#ifdef SQLITE_TEST
drh3aac2dd2004-04-26 14:10:20 +0000375 int pager3_refinfo_enable = 0;
drhdd793422001-06-28 01:54:48 +0000376 static void pager_refinfo(PgHdr *p){
377 static int cnt = 0;
drh3aac2dd2004-04-26 14:10:20 +0000378 if( !pager3_refinfo_enable ) return;
drhfe63d1c2004-09-08 20:13:04 +0000379 sqlite3DebugPrintf(
drh24c9a2e2007-01-05 02:00:47 +0000380 "REFCNT: %4d addr=%p nRef=%-3d total=%d\n",
381 p->pgno, PGHDR_TO_DATA(p), p->nRef, p->pPager->nRef
drhdd793422001-06-28 01:54:48 +0000382 );
383 cnt++; /* Something to set a breakpoint on */
384 }
385# define REFINFO(X) pager_refinfo(X)
386#else
387# define REFINFO(X)
388#endif
389
drh8ca0c722006-05-07 17:49:38 +0000390
391/*
392** Change the size of the pager hash table to N. N must be a power
393** of two.
394*/
395static void pager_resize_hash_table(Pager *pPager, int N){
396 PgHdr **aHash, *pPg;
397 assert( N>0 && (N&(N-1))==0 );
398 aHash = sqliteMalloc( sizeof(aHash[0])*N );
399 if( aHash==0 ){
400 /* Failure to rehash is not an error. It is only a performance hit. */
401 return;
402 }
403 sqliteFree(pPager->aHash);
404 pPager->nHash = N;
405 pPager->aHash = aHash;
406 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
drh3765df42006-06-28 18:18:09 +0000407 int h;
408 if( pPg->pgno==0 ){
409 assert( pPg->pNextHash==0 && pPg->pPrevHash==0 );
410 continue;
411 }
412 h = pPg->pgno & (N-1);
drh8ca0c722006-05-07 17:49:38 +0000413 pPg->pNextHash = aHash[h];
414 if( aHash[h] ){
415 aHash[h]->pPrevHash = pPg;
416 }
417 aHash[h] = pPg;
418 pPg->pPrevHash = 0;
419 }
420}
421
drhdd793422001-06-28 01:54:48 +0000422/*
drh34e79ce2004-02-08 06:05:46 +0000423** Read a 32-bit integer from the given file descriptor. Store the integer
424** that is read in *pRes. Return SQLITE_OK if everything worked, or an
425** error code is something goes wrong.
drh726de592004-06-10 23:35:50 +0000426**
427** All values are stored on disk as big-endian.
drh94f33312002-08-12 12:29:56 +0000428*/
drhae2b40c2004-06-09 19:03:54 +0000429static int read32bits(OsFile *fd, u32 *pRes){
drh3b59a5c2006-01-15 20:28:28 +0000430 unsigned char ac[4];
431 int rc = sqlite3OsRead(fd, ac, sizeof(ac));
drhae2b40c2004-06-09 19:03:54 +0000432 if( rc==SQLITE_OK ){
drh3b59a5c2006-01-15 20:28:28 +0000433 *pRes = (ac[0]<<24) | (ac[1]<<16) | (ac[2]<<8) | ac[3];
drh94f33312002-08-12 12:29:56 +0000434 }
drh94f33312002-08-12 12:29:56 +0000435 return rc;
436}
437
438/*
drh97b57482006-01-10 20:32:32 +0000439** Write a 32-bit integer into a string buffer in big-endian byte order.
440*/
441static void put32bits(char *ac, u32 val){
442 ac[0] = (val>>24) & 0xff;
443 ac[1] = (val>>16) & 0xff;
444 ac[2] = (val>>8) & 0xff;
445 ac[3] = val & 0xff;
446}
447
448/*
drh34e79ce2004-02-08 06:05:46 +0000449** Write a 32-bit integer into the given file descriptor. Return SQLITE_OK
450** on success or an error code is something goes wrong.
drh94f33312002-08-12 12:29:56 +0000451*/
452static int write32bits(OsFile *fd, u32 val){
danielk1977bab45c62006-01-16 15:14:27 +0000453 char ac[4];
drh97b57482006-01-10 20:32:32 +0000454 put32bits(ac, val);
drh054889e2005-11-30 03:20:31 +0000455 return sqlite3OsWrite(fd, ac, 4);
drh94f33312002-08-12 12:29:56 +0000456}
457
drh2554f8b2003-01-22 01:26:44 +0000458/*
danielk1977aa5ccdf2004-06-14 05:10:42 +0000459** Read a 32-bit integer at offset 'offset' from the page identified by
460** page header 'p'.
461*/
462static u32 retrieve32bits(PgHdr *p, int offset){
463 unsigned char *ac;
464 ac = &((unsigned char*)PGHDR_TO_DATA(p))[offset];
465 return (ac[0]<<24) | (ac[1]<<16) | (ac[2]<<8) | ac[3];
466}
467
drh94f33312002-08-12 12:29:56 +0000468
469/*
danielk1977aef0bf62005-12-30 16:28:01 +0000470** This function should be called when an error occurs within the pager
danielk1977a96a7102006-01-16 12:46:41 +0000471** code. The first argument is a pointer to the pager structure, the
472** second the error-code about to be returned by a pager API function.
473** The value returned is a copy of the second argument to this function.
474**
475** If the second argument is SQLITE_IOERR, SQLITE_CORRUPT or SQLITE_PROTOCOL,
476** the error becomes persistent. All subsequent API calls on this Pager
477** will immediately return the same error code.
danielk1977aef0bf62005-12-30 16:28:01 +0000478*/
479static int pager_error(Pager *pPager, int rc){
drh4ac285a2006-09-15 07:28:50 +0000480 int rc2 = rc & 0xff;
danielk1977efaaf572006-01-16 11:29:19 +0000481 assert( pPager->errCode==SQLITE_FULL || pPager->errCode==SQLITE_OK );
482 if(
drh4ac285a2006-09-15 07:28:50 +0000483 rc2==SQLITE_FULL ||
484 rc2==SQLITE_IOERR ||
485 rc2==SQLITE_CORRUPT ||
486 rc2==SQLITE_PROTOCOL
danielk1977efaaf572006-01-16 11:29:19 +0000487 ){
488 pPager->errCode = rc;
danielk1977aef0bf62005-12-30 16:28:01 +0000489 }
490 return rc;
491}
492
danielk19773c407372005-02-15 02:54:14 +0000493#ifdef SQLITE_CHECK_PAGES
494/*
495** Return a 32-bit hash of the page data for pPage.
496*/
497static u32 pager_pagehash(PgHdr *pPage){
498 u32 hash = 0;
499 int i;
500 unsigned char *pData = (unsigned char *)PGHDR_TO_DATA(pPage);
501 for(i=0; i<pPage->pPager->pageSize; i++){
502 hash = (hash+i)^pData[i];
503 }
504 return hash;
505}
506
507/*
508** The CHECK_PAGE macro takes a PgHdr* as an argument. If SQLITE_CHECK_PAGES
509** is defined, and NDEBUG is not defined, an assert() statement checks
510** that the page is either dirty or still matches the calculated page-hash.
511*/
512#define CHECK_PAGE(x) checkPage(x)
513static void checkPage(PgHdr *pPg){
514 Pager *pPager = pPg->pPager;
danielk1977efaaf572006-01-16 11:29:19 +0000515 assert( !pPg->pageHash || pPager->errCode || MEMDB || pPg->dirty ||
danielk19773c407372005-02-15 02:54:14 +0000516 pPg->pageHash==pager_pagehash(pPg) );
517}
518
519#else
520#define CHECK_PAGE(x)
521#endif
522
drhed7c8552001-04-11 14:29:21 +0000523/*
danielk197776572402004-06-25 02:38:54 +0000524** When this is called the journal file for pager pPager must be open.
525** The master journal file name is read from the end of the file and
526** written into memory obtained from sqliteMalloc(). *pzMaster is
527** set to point at the memory and SQLITE_OK returned. The caller must
528** sqliteFree() *pzMaster.
529**
530** If no master journal file name is present *pzMaster is set to 0 and
531** SQLITE_OK returned.
532*/
533static int readMasterJournal(OsFile *pJrnl, char **pzMaster){
534 int rc;
535 u32 len;
drheb206252004-10-01 02:00:31 +0000536 i64 szJ;
danielk1977c3e8f5e2004-06-28 01:16:46 +0000537 u32 cksum;
danielk1977cafadba2004-06-25 11:11:54 +0000538 int i;
danielk197776572402004-06-25 02:38:54 +0000539 unsigned char aMagic[8]; /* A buffer to hold the magic header */
540
541 *pzMaster = 0;
542
drh054889e2005-11-30 03:20:31 +0000543 rc = sqlite3OsFileSize(pJrnl, &szJ);
danielk1977cafadba2004-06-25 11:11:54 +0000544 if( rc!=SQLITE_OK || szJ<16 ) return rc;
danielk197776572402004-06-25 02:38:54 +0000545
drh054889e2005-11-30 03:20:31 +0000546 rc = sqlite3OsSeek(pJrnl, szJ-16);
danielk197776572402004-06-25 02:38:54 +0000547 if( rc!=SQLITE_OK ) return rc;
548
549 rc = read32bits(pJrnl, &len);
550 if( rc!=SQLITE_OK ) return rc;
551
danielk1977cafadba2004-06-25 11:11:54 +0000552 rc = read32bits(pJrnl, &cksum);
553 if( rc!=SQLITE_OK ) return rc;
554
drh054889e2005-11-30 03:20:31 +0000555 rc = sqlite3OsRead(pJrnl, aMagic, 8);
danielk197776572402004-06-25 02:38:54 +0000556 if( rc!=SQLITE_OK || memcmp(aMagic, aJournalMagic, 8) ) return rc;
557
drh054889e2005-11-30 03:20:31 +0000558 rc = sqlite3OsSeek(pJrnl, szJ-16-len);
danielk197776572402004-06-25 02:38:54 +0000559 if( rc!=SQLITE_OK ) return rc;
560
danielk19778191bff2004-06-28 04:52:30 +0000561 *pzMaster = (char *)sqliteMalloc(len+1);
danielk197776572402004-06-25 02:38:54 +0000562 if( !*pzMaster ){
563 return SQLITE_NOMEM;
564 }
drh054889e2005-11-30 03:20:31 +0000565 rc = sqlite3OsRead(pJrnl, *pzMaster, len);
danielk197776572402004-06-25 02:38:54 +0000566 if( rc!=SQLITE_OK ){
567 sqliteFree(*pzMaster);
568 *pzMaster = 0;
569 return rc;
570 }
danielk1977cafadba2004-06-25 11:11:54 +0000571
572 /* See if the checksum matches the master journal name */
573 for(i=0; i<len; i++){
danielk19778191bff2004-06-28 04:52:30 +0000574 cksum -= (*pzMaster)[i];
danielk1977cafadba2004-06-25 11:11:54 +0000575 }
danielk19778191bff2004-06-28 04:52:30 +0000576 if( cksum ){
577 /* If the checksum doesn't add up, then one or more of the disk sectors
578 ** containing the master journal filename is corrupted. This means
579 ** definitely roll back, so just return SQLITE_OK and report a (nul)
580 ** master-journal filename.
581 */
danielk1977cafadba2004-06-25 11:11:54 +0000582 sqliteFree(*pzMaster);
583 *pzMaster = 0;
danielk1977aca790a2005-01-13 11:07:52 +0000584 }else{
585 (*pzMaster)[len] = '\0';
danielk1977cafadba2004-06-25 11:11:54 +0000586 }
danielk197776572402004-06-25 02:38:54 +0000587
588 return SQLITE_OK;
589}
590
591/*
592** Seek the journal file descriptor to the next sector boundary where a
593** journal header may be read or written. Pager.journalOff is updated with
594** the new seek offset.
595**
596** i.e for a sector size of 512:
597**
598** Input Offset Output Offset
599** ---------------------------------------
600** 0 0
601** 512 512
602** 100 512
603** 2000 2048
604**
605*/
606static int seekJournalHdr(Pager *pPager){
drheb206252004-10-01 02:00:31 +0000607 i64 offset = 0;
608 i64 c = pPager->journalOff;
danielk197776572402004-06-25 02:38:54 +0000609 if( c ){
610 offset = ((c-1)/JOURNAL_HDR_SZ(pPager) + 1) * JOURNAL_HDR_SZ(pPager);
611 }
612 assert( offset%JOURNAL_HDR_SZ(pPager)==0 );
613 assert( offset>=c );
614 assert( (offset-c)<JOURNAL_HDR_SZ(pPager) );
615 pPager->journalOff = offset;
drh054889e2005-11-30 03:20:31 +0000616 return sqlite3OsSeek(pPager->jfd, pPager->journalOff);
danielk197776572402004-06-25 02:38:54 +0000617}
618
619/*
620** The journal file must be open when this routine is called. A journal
621** header (JOURNAL_HDR_SZ bytes) is written into the journal file at the
622** current location.
623**
624** The format for the journal header is as follows:
625** - 8 bytes: Magic identifying journal format.
626** - 4 bytes: Number of records in journal, or -1 no-sync mode is on.
627** - 4 bytes: Random number used for page hash.
628** - 4 bytes: Initial database page count.
629** - 4 bytes: Sector size used by the process that wrote this journal.
630**
danielk1977f42f25c2004-06-25 07:21:28 +0000631** Followed by (JOURNAL_HDR_SZ - 24) bytes of unused space.
danielk197776572402004-06-25 02:38:54 +0000632*/
633static int writeJournalHdr(Pager *pPager){
drh97b57482006-01-10 20:32:32 +0000634 char zHeader[sizeof(aJournalMagic)+16];
danielk19774099f6e2007-03-19 11:25:20 +0000635 int rc;
danielk197776572402004-06-25 02:38:54 +0000636
danielk19774099f6e2007-03-19 11:25:20 +0000637 if( pPager->stmtHdrOff==0 ){
638 pPager->stmtHdrOff = pPager->journalOff;
639 }
640
641 rc = seekJournalHdr(pPager);
danielk197776572402004-06-25 02:38:54 +0000642 if( rc ) return rc;
643
644 pPager->journalHdr = pPager->journalOff;
danielk197776572402004-06-25 02:38:54 +0000645 pPager->journalOff += JOURNAL_HDR_SZ(pPager);
646
647 /* FIX ME:
648 **
649 ** Possibly for a pager not in no-sync mode, the journal magic should not
650 ** be written until nRec is filled in as part of next syncJournal().
651 **
652 ** Actually maybe the whole journal header should be delayed until that
653 ** point. Think about this.
654 */
drh97b57482006-01-10 20:32:32 +0000655 memcpy(zHeader, aJournalMagic, sizeof(aJournalMagic));
656 /* The nRec Field. 0xFFFFFFFF for no-sync journals. */
657 put32bits(&zHeader[sizeof(aJournalMagic)], pPager->noSync ? 0xffffffff : 0);
658 /* The random check-hash initialiser */
659 sqlite3Randomness(sizeof(pPager->cksumInit), &pPager->cksumInit);
660 put32bits(&zHeader[sizeof(aJournalMagic)+4], pPager->cksumInit);
661 /* The initial database size */
662 put32bits(&zHeader[sizeof(aJournalMagic)+8], pPager->dbSize);
663 /* The assumed sector size for this process */
664 put32bits(&zHeader[sizeof(aJournalMagic)+12], pPager->sectorSize);
drhb0603412007-02-28 04:47:26 +0000665 IOTRACE(("JHDR %p %lld %d\n", pPager, pPager->journalHdr, sizeof(zHeader)))
drh97b57482006-01-10 20:32:32 +0000666 rc = sqlite3OsWrite(pPager->jfd, zHeader, sizeof(zHeader));
danielk197776572402004-06-25 02:38:54 +0000667
668 /* The journal header has been written successfully. Seek the journal
669 ** file descriptor to the end of the journal header sector.
670 */
671 if( rc==SQLITE_OK ){
drhb0603412007-02-28 04:47:26 +0000672 IOTRACE(("JTAIL %p %lld\n", pPager, pPager->journalOff-1))
drh054889e2005-11-30 03:20:31 +0000673 rc = sqlite3OsSeek(pPager->jfd, pPager->journalOff-1);
drhb4746b92005-09-09 01:32:06 +0000674 if( rc==SQLITE_OK ){
drh054889e2005-11-30 03:20:31 +0000675 rc = sqlite3OsWrite(pPager->jfd, "\000", 1);
drhb4746b92005-09-09 01:32:06 +0000676 }
danielk197776572402004-06-25 02:38:54 +0000677 }
678 return rc;
679}
680
681/*
682** The journal file must be open when this is called. A journal header file
683** (JOURNAL_HDR_SZ bytes) is read from the current location in the journal
684** file. See comments above function writeJournalHdr() for a description of
685** the journal header format.
686**
687** If the header is read successfully, *nRec is set to the number of
688** page records following this header and *dbSize is set to the size of the
689** database before the transaction began, in pages. Also, pPager->cksumInit
690** is set to the value read from the journal header. SQLITE_OK is returned
691** in this case.
692**
693** If the journal header file appears to be corrupted, SQLITE_DONE is
694** returned and *nRec and *dbSize are not set. If JOURNAL_HDR_SZ bytes
695** cannot be read from the journal file an error code is returned.
696*/
697static int readJournalHdr(
698 Pager *pPager,
drheb206252004-10-01 02:00:31 +0000699 i64 journalSize,
danielk197776572402004-06-25 02:38:54 +0000700 u32 *pNRec,
701 u32 *pDbSize
702){
703 int rc;
704 unsigned char aMagic[8]; /* A buffer to hold the magic header */
705
706 rc = seekJournalHdr(pPager);
707 if( rc ) return rc;
708
709 if( pPager->journalOff+JOURNAL_HDR_SZ(pPager) > journalSize ){
710 return SQLITE_DONE;
711 }
712
drh054889e2005-11-30 03:20:31 +0000713 rc = sqlite3OsRead(pPager->jfd, aMagic, sizeof(aMagic));
danielk197776572402004-06-25 02:38:54 +0000714 if( rc ) return rc;
715
716 if( memcmp(aMagic, aJournalMagic, sizeof(aMagic))!=0 ){
717 return SQLITE_DONE;
718 }
719
drh9cbe6352005-11-29 03:13:21 +0000720 rc = read32bits(pPager->jfd, pNRec);
danielk197776572402004-06-25 02:38:54 +0000721 if( rc ) return rc;
722
drh9cbe6352005-11-29 03:13:21 +0000723 rc = read32bits(pPager->jfd, &pPager->cksumInit);
danielk197776572402004-06-25 02:38:54 +0000724 if( rc ) return rc;
725
drh9cbe6352005-11-29 03:13:21 +0000726 rc = read32bits(pPager->jfd, pDbSize);
danielk197776572402004-06-25 02:38:54 +0000727 if( rc ) return rc;
728
729 /* Update the assumed sector-size to match the value used by
730 ** the process that created this journal. If this journal was
731 ** created by a process other than this one, then this routine
732 ** is being called from within pager_playback(). The local value
733 ** of Pager.sectorSize is restored at the end of that routine.
734 */
drh9cbe6352005-11-29 03:13:21 +0000735 rc = read32bits(pPager->jfd, (u32 *)&pPager->sectorSize);
danielk197776572402004-06-25 02:38:54 +0000736 if( rc ) return rc;
737
738 pPager->journalOff += JOURNAL_HDR_SZ(pPager);
drh054889e2005-11-30 03:20:31 +0000739 rc = sqlite3OsSeek(pPager->jfd, pPager->journalOff);
danielk197776572402004-06-25 02:38:54 +0000740 return rc;
741}
742
743
744/*
745** Write the supplied master journal name into the journal file for pager
danielk1977cafadba2004-06-25 11:11:54 +0000746** pPager at the current location. The master journal name must be the last
747** thing written to a journal file. If the pager is in full-sync mode, the
748** journal file descriptor is advanced to the next sector boundary before
749** anything is written. The format is:
750**
751** + 4 bytes: PAGER_MJ_PGNO.
752** + N bytes: length of master journal name.
753** + 4 bytes: N
754** + 4 bytes: Master journal name checksum.
755** + 8 bytes: aJournalMagic[].
756**
757** The master journal page checksum is the sum of the bytes in the master
758** journal name.
danielk1977aef0bf62005-12-30 16:28:01 +0000759**
760** If zMaster is a NULL pointer (occurs for a single database transaction),
761** this call is a no-op.
danielk197776572402004-06-25 02:38:54 +0000762*/
763static int writeMasterJournal(Pager *pPager, const char *zMaster){
764 int rc;
765 int len;
danielk1977cafadba2004-06-25 11:11:54 +0000766 int i;
drh97b57482006-01-10 20:32:32 +0000767 u32 cksum = 0;
768 char zBuf[sizeof(aJournalMagic)+2*4];
danielk197776572402004-06-25 02:38:54 +0000769
770 if( !zMaster || pPager->setMaster) return SQLITE_OK;
771 pPager->setMaster = 1;
772
773 len = strlen(zMaster);
danielk1977cafadba2004-06-25 11:11:54 +0000774 for(i=0; i<len; i++){
775 cksum += zMaster[i];
776 }
danielk197776572402004-06-25 02:38:54 +0000777
778 /* If in full-sync mode, advance to the next disk sector before writing
779 ** the master journal name. This is in case the previous page written to
780 ** the journal has already been synced.
781 */
782 if( pPager->fullSync ){
783 rc = seekJournalHdr(pPager);
784 if( rc!=SQLITE_OK ) return rc;
785 }
danielk1977cafadba2004-06-25 11:11:54 +0000786 pPager->journalOff += (len+20);
danielk197776572402004-06-25 02:38:54 +0000787
drh9cbe6352005-11-29 03:13:21 +0000788 rc = write32bits(pPager->jfd, PAGER_MJ_PGNO(pPager));
danielk197776572402004-06-25 02:38:54 +0000789 if( rc!=SQLITE_OK ) return rc;
790
drh054889e2005-11-30 03:20:31 +0000791 rc = sqlite3OsWrite(pPager->jfd, zMaster, len);
danielk197776572402004-06-25 02:38:54 +0000792 if( rc!=SQLITE_OK ) return rc;
793
drh97b57482006-01-10 20:32:32 +0000794 put32bits(zBuf, len);
795 put32bits(&zBuf[4], cksum);
796 memcpy(&zBuf[8], aJournalMagic, sizeof(aJournalMagic));
797 rc = sqlite3OsWrite(pPager->jfd, zBuf, 8+sizeof(aJournalMagic));
drh2c8997b2005-08-27 16:36:48 +0000798 pPager->needSync = !pPager->noSync;
danielk197776572402004-06-25 02:38:54 +0000799 return rc;
800}
801
802/*
drh03eb96a2002-11-10 23:32:56 +0000803** Add or remove a page from the list of all pages that are in the
drhac69b052004-05-12 13:30:07 +0000804** statement journal.
drh03eb96a2002-11-10 23:32:56 +0000805**
806** The Pager keeps a separate list of pages that are currently in
danielk19773b8a05f2007-03-19 17:44:26 +0000807** the statement journal. This helps the sqlite3PagerStmtCommit()
drh03eb96a2002-11-10 23:32:56 +0000808** routine run MUCH faster for the common case where there are many
drhac69b052004-05-12 13:30:07 +0000809** pages in memory but only a few are in the statement journal.
drh03eb96a2002-11-10 23:32:56 +0000810*/
drh3aac2dd2004-04-26 14:10:20 +0000811static void page_add_to_stmt_list(PgHdr *pPg){
drh03eb96a2002-11-10 23:32:56 +0000812 Pager *pPager = pPg->pPager;
drhac69b052004-05-12 13:30:07 +0000813 if( pPg->inStmt ) return;
814 assert( pPg->pPrevStmt==0 && pPg->pNextStmt==0 );
815 pPg->pPrevStmt = 0;
816 if( pPager->pStmt ){
817 pPager->pStmt->pPrevStmt = pPg;
drh03eb96a2002-11-10 23:32:56 +0000818 }
drhac69b052004-05-12 13:30:07 +0000819 pPg->pNextStmt = pPager->pStmt;
820 pPager->pStmt = pPg;
821 pPg->inStmt = 1;
drh03eb96a2002-11-10 23:32:56 +0000822}
drh3aac2dd2004-04-26 14:10:20 +0000823static void page_remove_from_stmt_list(PgHdr *pPg){
drhac69b052004-05-12 13:30:07 +0000824 if( !pPg->inStmt ) return;
825 if( pPg->pPrevStmt ){
826 assert( pPg->pPrevStmt->pNextStmt==pPg );
827 pPg->pPrevStmt->pNextStmt = pPg->pNextStmt;
drh03eb96a2002-11-10 23:32:56 +0000828 }else{
drhac69b052004-05-12 13:30:07 +0000829 assert( pPg->pPager->pStmt==pPg );
830 pPg->pPager->pStmt = pPg->pNextStmt;
drh03eb96a2002-11-10 23:32:56 +0000831 }
drhac69b052004-05-12 13:30:07 +0000832 if( pPg->pNextStmt ){
833 assert( pPg->pNextStmt->pPrevStmt==pPg );
834 pPg->pNextStmt->pPrevStmt = pPg->pPrevStmt;
drh03eb96a2002-11-10 23:32:56 +0000835 }
drhac69b052004-05-12 13:30:07 +0000836 pPg->pNextStmt = 0;
837 pPg->pPrevStmt = 0;
838 pPg->inStmt = 0;
drh03eb96a2002-11-10 23:32:56 +0000839}
840
841/*
drhed7c8552001-04-11 14:29:21 +0000842** Find a page in the hash table given its page number. Return
843** a pointer to the page or NULL if not found.
844*/
drhd9b02572001-04-15 00:37:09 +0000845static PgHdr *pager_lookup(Pager *pPager, Pgno pgno){
drh8ca0c722006-05-07 17:49:38 +0000846 PgHdr *p;
847 if( pPager->aHash==0 ) return 0;
848 p = pPager->aHash[pgno & (pPager->nHash-1)];
drhed7c8552001-04-11 14:29:21 +0000849 while( p && p->pgno!=pgno ){
850 p = p->pNextHash;
851 }
852 return p;
853}
854
855/*
drh1aa2d8b2007-01-03 15:34:29 +0000856** Unlock the database file.
drh1aa2d8b2007-01-03 15:34:29 +0000857*/
858static void pager_unlock(Pager *pPager){
danielk197741483462007-03-24 16:45:04 +0000859 if( !pPager->exclusiveMode ){
860 if( !MEMDB ){
861 sqlite3OsUnlock(pPager->fd, NO_LOCK);
862 pPager->dbSize = -1;
863 IOTRACE(("UNLOCK %p\n", pPager))
864 }
865 pPager->state = PAGER_UNLOCK;
866 pPager->changeCountDone = 0;
drh1aa2d8b2007-01-03 15:34:29 +0000867 }
danielk1977e277be02007-03-23 18:12:06 +0000868}
869
870/*
871** Execute a rollback if a transaction is active and unlock the
872** database file. This is a no-op if the pager has already entered
873** the error-state.
874*/
danielk1977334cdb62007-03-26 08:05:12 +0000875static void pagerUnlockAndRollback(Pager *p){
876 if( p->errCode ) return;
877 if( p->state>=PAGER_RESERVED ){
878 sqlite3PagerRollback(p);
danielk1977e277be02007-03-23 18:12:06 +0000879 }
danielk1977334cdb62007-03-26 08:05:12 +0000880 pager_unlock(p);
881 assert( p->errCode || !p->journalOpen || (p->exclusiveMode&&!p->journalOff) );
882 assert( p->errCode || !p->stmtOpen || p->exclusiveMode );
drh1aa2d8b2007-01-03 15:34:29 +0000883}
884
885
886/*
drhed7c8552001-04-11 14:29:21 +0000887** Unlock the database and clear the in-memory cache. This routine
888** sets the state of the pager back to what it was when it was first
889** opened. Any outstanding pages are invalidated and subsequent attempts
890** to access those pages will likely result in a coredump.
891*/
drhd9b02572001-04-15 00:37:09 +0000892static void pager_reset(Pager *pPager){
drhed7c8552001-04-11 14:29:21 +0000893 PgHdr *pPg, *pNext;
danielk1977efaaf572006-01-16 11:29:19 +0000894 if( pPager->errCode ) return;
drhd9b02572001-04-15 00:37:09 +0000895 for(pPg=pPager->pAll; pPg; pPg=pNext){
896 pNext = pPg->pNextAll;
897 sqliteFree(pPg);
drhed7c8552001-04-11 14:29:21 +0000898 }
danielk1977b94bf852007-03-19 13:53:37 +0000899 pPager->pStmt = 0;
drhed7c8552001-04-11 14:29:21 +0000900 pPager->pFirst = 0;
drh341eae82003-01-21 02:39:36 +0000901 pPager->pFirstSynced = 0;
drhd9b02572001-04-15 00:37:09 +0000902 pPager->pLast = 0;
903 pPager->pAll = 0;
drh8ca0c722006-05-07 17:49:38 +0000904 pPager->nHash = 0;
905 sqliteFree(pPager->aHash);
drhed7c8552001-04-11 14:29:21 +0000906 pPager->nPage = 0;
drh8ca0c722006-05-07 17:49:38 +0000907 pPager->aHash = 0;
drhed7c8552001-04-11 14:29:21 +0000908 pPager->nRef = 0;
danielk1977e277be02007-03-23 18:12:06 +0000909}
910
911/*
drhed7c8552001-04-11 14:29:21 +0000912** When this routine is called, the pager has the journal file open and
drha6abd042004-06-09 17:37:22 +0000913** a RESERVED or EXCLUSIVE lock on the database. This routine releases
914** the database lock and acquires a SHARED lock in its place. The journal
915** file is deleted and closed.
drh50457892003-09-06 01:10:47 +0000916**
917** TODO: Consider keeping the journal file open for temporary databases.
918** This might give a performance improvement on windows where opening
919** a file is an expensive operation.
drhed7c8552001-04-11 14:29:21 +0000920*/
drhd9b02572001-04-15 00:37:09 +0000921static int pager_unwritelock(Pager *pPager){
drhd9b02572001-04-15 00:37:09 +0000922 PgHdr *pPg;
danielk197741483462007-03-24 16:45:04 +0000923 int rc = SQLITE_OK;
drhb7f91642004-10-31 02:22:47 +0000924 assert( !MEMDB );
drha6abd042004-06-09 17:37:22 +0000925 if( pPager->state<PAGER_RESERVED ){
926 return SQLITE_OK;
927 }
danielk19773b8a05f2007-03-19 17:44:26 +0000928 sqlite3PagerStmtCommit(pPager);
danielk1977334cdb62007-03-26 08:05:12 +0000929 if( pPager->stmtOpen && !pPager->exclusiveMode ){
930 if( pPager->exclusiveMode ){
931 sqlite3OsClose(&pPager->stfd);
932 pPager->stmtOpen = 0;
933 }else{
934 sqlite3OsTruncate(pPager->stfd, 0);
935 }
drh0f892532002-05-30 12:27:03 +0000936 }
drhda47d772002-12-02 04:25:19 +0000937 if( pPager->journalOpen ){
danielk197741483462007-03-24 16:45:04 +0000938 if( pPager->exclusiveMode ){
939 sqlite3OsTruncate(pPager->jfd, 0);
940 sqlite3OsSeek(pPager->jfd, 0);
941 pPager->journalOff = 0;
danielk1977334cdb62007-03-26 08:05:12 +0000942 pPager->journalStarted = 0;
danielk197741483462007-03-24 16:45:04 +0000943 }else{
944 sqlite3OsClose(&pPager->jfd);
945 pPager->journalOpen = 0;
946 sqlite3OsDelete(pPager->zJournal);
947 }
drhda47d772002-12-02 04:25:19 +0000948 sqliteFree( pPager->aInJournal );
949 pPager->aInJournal = 0;
950 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
951 pPg->inJournal = 0;
952 pPg->dirty = 0;
drhdb48ee02003-01-16 13:42:43 +0000953 pPg->needSync = 0;
danielk197741483462007-03-24 16:45:04 +0000954 pPg->alwaysRollback = 0;
danielk19773c407372005-02-15 02:54:14 +0000955#ifdef SQLITE_CHECK_PAGES
956 pPg->pageHash = pager_pagehash(pPg);
957#endif
drhda47d772002-12-02 04:25:19 +0000958 }
drh605ad8f2006-05-03 23:34:05 +0000959 pPager->pDirty = 0;
danielk1977ef317ab2004-06-23 10:43:10 +0000960 pPager->dirtyCache = 0;
danielk1977ef317ab2004-06-23 10:43:10 +0000961 pPager->nRec = 0;
drhda47d772002-12-02 04:25:19 +0000962 }else{
drh88b01a12005-03-28 18:04:27 +0000963 assert( pPager->aInJournal==0 );
drha6abd042004-06-09 17:37:22 +0000964 assert( pPager->dirtyCache==0 || pPager->useJournal==0 );
drhd9b02572001-04-15 00:37:09 +0000965 }
danielk197741483462007-03-24 16:45:04 +0000966 if( !pPager->exclusiveMode ){
967 rc = sqlite3OsUnlock(pPager->fd, SHARED_LOCK);
968 pPager->state = PAGER_SHARED;
danielk1977334cdb62007-03-26 08:05:12 +0000969 }else if( pPager->state==PAGER_SYNCED ){
970 pPager->state = PAGER_EXCLUSIVE;
danielk197741483462007-03-24 16:45:04 +0000971 }
danielk1977334cdb62007-03-26 08:05:12 +0000972 pPager->origDbSize = 0;
danielk197776572402004-06-25 02:38:54 +0000973 pPager->setMaster = 0;
danielk1977c4da5b92006-01-21 12:08:54 +0000974 pPager->needSync = 0;
975 pPager->pFirstSynced = pPager->pFirst;
drh588f5bc2007-01-02 18:41:54 +0000976 pPager->dbSize = -1;
drh9c105bb2004-10-02 20:38:28 +0000977 return rc;
drhed7c8552001-04-11 14:29:21 +0000978}
979
drhed7c8552001-04-11 14:29:21 +0000980/*
drh968af522003-02-11 14:55:40 +0000981** Compute and return a checksum for the page of data.
drh34e79ce2004-02-08 06:05:46 +0000982**
983** This is not a real checksum. It is really just the sum of the
drh726de592004-06-10 23:35:50 +0000984** random initial value and the page number. We experimented with
985** a checksum of the entire data, but that was found to be too slow.
986**
987** Note that the page number is stored at the beginning of data and
988** the checksum is stored at the end. This is important. If journal
989** corruption occurs due to a power failure, the most likely scenario
990** is that one end or the other of the record will be changed. It is
991** much less likely that the two ends of the journal record will be
992** correct and the middle be corrupt. Thus, this "checksum" scheme,
993** though fast and simple, catches the mostly likely kind of corruption.
994**
995** FIX ME: Consider adding every 200th (or so) byte of the data to the
996** checksum. That way if a single page spans 3 or more disk sectors and
997** only the middle sector is corrupt, we will still have a reasonable
998** chance of failing the checksum and thus detecting the problem.
drh968af522003-02-11 14:55:40 +0000999*/
drh74161702006-02-24 02:53:49 +00001000static u32 pager_cksum(Pager *pPager, const u8 *aData){
danielk1977ef317ab2004-06-23 10:43:10 +00001001 u32 cksum = pPager->cksumInit;
1002 int i = pPager->pageSize-200;
1003 while( i>0 ){
1004 cksum += aData[i];
1005 i -= 200;
1006 }
drh968af522003-02-11 14:55:40 +00001007 return cksum;
1008}
1009
drh605ad8f2006-05-03 23:34:05 +00001010/* Forward declaration */
1011static void makeClean(PgHdr*);
1012
drh968af522003-02-11 14:55:40 +00001013/*
drhfa86c412002-02-02 15:01:15 +00001014** Read a single page from the journal file opened on file descriptor
1015** jfd. Playback this one page.
drh968af522003-02-11 14:55:40 +00001016**
drh726de592004-06-10 23:35:50 +00001017** If useCksum==0 it means this journal does not use checksums. Checksums
1018** are not used in statement journals because statement journals do not
1019** need to survive power failures.
drhfa86c412002-02-02 15:01:15 +00001020*/
drhae2b40c2004-06-09 19:03:54 +00001021static int pager_playback_one_page(Pager *pPager, OsFile *jfd, int useCksum){
drhfa86c412002-02-02 15:01:15 +00001022 int rc;
drhae2b40c2004-06-09 19:03:54 +00001023 PgHdr *pPg; /* An existing page in the cache */
1024 Pgno pgno; /* The page number of a page in journal */
1025 u32 cksum; /* Checksum used for sanity checking */
danielk19778186df82007-03-06 13:45:59 +00001026 u8 *aData = (u8 *)pPager->pTmpSpace; /* Temp storage for a page */
drhfa86c412002-02-02 15:01:15 +00001027
drh96362842005-03-20 22:47:56 +00001028 /* useCksum should be true for the main journal and false for
1029 ** statement journals. Verify that this is always the case
1030 */
drh9cbe6352005-11-29 03:13:21 +00001031 assert( jfd == (useCksum ? pPager->jfd : pPager->stfd) );
danielk19778186df82007-03-06 13:45:59 +00001032 assert( aData );
drh96362842005-03-20 22:47:56 +00001033
drhae2b40c2004-06-09 19:03:54 +00001034 rc = read32bits(jfd, &pgno);
drh99ee3602003-02-16 19:13:36 +00001035 if( rc!=SQLITE_OK ) return rc;
danielk19778186df82007-03-06 13:45:59 +00001036 rc = sqlite3OsRead(jfd, aData, pPager->pageSize);
drh99ee3602003-02-16 19:13:36 +00001037 if( rc!=SQLITE_OK ) return rc;
danielk197776572402004-06-25 02:38:54 +00001038 pPager->journalOff += pPager->pageSize + 4;
drhfa86c412002-02-02 15:01:15 +00001039
drh968af522003-02-11 14:55:40 +00001040 /* Sanity checking on the page. This is more important that I originally
1041 ** thought. If a power failure occurs while the journal is being written,
1042 ** it could cause invalid data to be written into the journal. We need to
1043 ** detect this invalid data (with high probability) and ignore it.
1044 */
danielk197775edc162004-06-26 01:48:18 +00001045 if( pgno==0 || pgno==PAGER_MJ_PGNO(pPager) ){
drh968af522003-02-11 14:55:40 +00001046 return SQLITE_DONE;
1047 }
drhae2b40c2004-06-09 19:03:54 +00001048 if( pgno>(unsigned)pPager->dbSize ){
drh968af522003-02-11 14:55:40 +00001049 return SQLITE_OK;
1050 }
drhae2b40c2004-06-09 19:03:54 +00001051 if( useCksum ){
1052 rc = read32bits(jfd, &cksum);
drh99ee3602003-02-16 19:13:36 +00001053 if( rc ) return rc;
danielk197776572402004-06-25 02:38:54 +00001054 pPager->journalOff += 4;
drh74161702006-02-24 02:53:49 +00001055 if( pager_cksum(pPager, aData)!=cksum ){
drh968af522003-02-11 14:55:40 +00001056 return SQLITE_DONE;
1057 }
1058 }
drhfa86c412002-02-02 15:01:15 +00001059
danielk1977aa5ccdf2004-06-14 05:10:42 +00001060 assert( pPager->state==PAGER_RESERVED || pPager->state>=PAGER_EXCLUSIVE );
danielk1977a3f3a5f2004-06-10 04:32:16 +00001061
1062 /* If the pager is in RESERVED state, then there must be a copy of this
1063 ** page in the pager cache. In this case just update the pager cache,
danielk19770de0bb32004-06-10 05:59:24 +00001064 ** not the database file. The page is left marked dirty in this case.
1065 **
danielk1977a3f3a5f2004-06-10 04:32:16 +00001066 ** If in EXCLUSIVE state, then we update the pager cache if it exists
1067 ** and the main file. The page is then marked not dirty.
drh96362842005-03-20 22:47:56 +00001068 **
1069 ** Ticket #1171: The statement journal might contain page content that is
1070 ** different from the page content at the start of the transaction.
1071 ** This occurs when a page is changed prior to the start of a statement
1072 ** then changed again within the statement. When rolling back such a
1073 ** statement we must not write to the original database unless we know
1074 ** for certain that original page contents are in the main rollback
1075 ** journal. Otherwise, if a full ROLLBACK occurs after the statement
1076 ** rollback the full ROLLBACK will not restore the page to its original
1077 ** content. Two conditions must be met before writing to the database
1078 ** files. (1) the database must be locked. (2) we know that the original
1079 ** page content is in the main journal either because the page is not in
1080 ** cache or else it is marked as needSync==0.
drhfa86c412002-02-02 15:01:15 +00001081 */
drhae2b40c2004-06-09 19:03:54 +00001082 pPg = pager_lookup(pPager, pgno);
drh96362842005-03-20 22:47:56 +00001083 assert( pPager->state>=PAGER_EXCLUSIVE || pPg!=0 );
danielk1977ef73ee92004-11-06 12:26:07 +00001084 TRACE3("PLAYBACK %d page %d\n", PAGERID(pPager), pgno);
drh96362842005-03-20 22:47:56 +00001085 if( pPager->state>=PAGER_EXCLUSIVE && (pPg==0 || pPg->needSync==0) ){
drh054889e2005-11-30 03:20:31 +00001086 rc = sqlite3OsSeek(pPager->fd, (pgno-1)*(i64)pPager->pageSize);
drhb4746b92005-09-09 01:32:06 +00001087 if( rc==SQLITE_OK ){
drh054889e2005-11-30 03:20:31 +00001088 rc = sqlite3OsWrite(pPager->fd, aData, pPager->pageSize);
drhb4746b92005-09-09 01:32:06 +00001089 }
drh605ad8f2006-05-03 23:34:05 +00001090 if( pPg ){
1091 makeClean(pPg);
1092 }
danielk1977a3f3a5f2004-06-10 04:32:16 +00001093 }
drhfa86c412002-02-02 15:01:15 +00001094 if( pPg ){
danielk197728129562005-01-11 10:25:06 +00001095 /* No page should ever be explicitly rolled back that is in use, except
1096 ** for page 1 which is held in use in order to keep the lock on the
1097 ** database active. However such a page may be rolled back as a result
1098 ** of an internal error resulting in an automatic call to
danielk19773b8a05f2007-03-19 17:44:26 +00001099 ** sqlite3PagerRollback().
drhacf4ac92003-12-17 23:57:34 +00001100 */
drhb6f41482004-05-14 01:58:11 +00001101 void *pData;
danielk197728129562005-01-11 10:25:06 +00001102 /* assert( pPg->nRef==0 || pPg->pgno==1 ); */
drhb6f41482004-05-14 01:58:11 +00001103 pData = PGHDR_TO_DATA(pPg);
drhae2b40c2004-06-09 19:03:54 +00001104 memcpy(pData, aData, pPager->pageSize);
drh726de592004-06-10 23:35:50 +00001105 if( pPager->xDestructor ){ /*** FIX ME: Should this be xReinit? ***/
danielk19773b8a05f2007-03-19 17:44:26 +00001106 pPager->xDestructor(pPg, pPager->pageSize);
drhde647132004-05-07 17:57:49 +00001107 }
danielk19773c407372005-02-15 02:54:14 +00001108#ifdef SQLITE_CHECK_PAGES
drh96362842005-03-20 22:47:56 +00001109 pPg->pageHash = pager_pagehash(pPg);
danielk19773c407372005-02-15 02:54:14 +00001110#endif
drhc001c582006-03-06 18:23:16 +00001111 CODEC1(pPager, pData, pPg->pgno, 3);
danielk197741483462007-03-24 16:45:04 +00001112
1113 /* If this was page 1, then restore the value of Pager.iChangeCount */
1114 if( pgno==1 ){
1115 pPager->iChangeCount = retrieve32bits(pPg, 24);
1116 }
drhfa86c412002-02-02 15:01:15 +00001117 }
1118 return rc;
1119}
1120
1121/*
danielk197713adf8a2004-06-03 16:08:41 +00001122** Parameter zMaster is the name of a master journal file. A single journal
1123** file that referred to the master journal file has just been rolled back.
1124** This routine checks if it is possible to delete the master journal file,
1125** and does so if it is.
drh726de592004-06-10 23:35:50 +00001126**
1127** The master journal file contains the names of all child journals.
1128** To tell if a master journal can be deleted, check to each of the
1129** children. If all children are either missing or do not refer to
1130** a different master journal, then this master journal can be deleted.
danielk197713adf8a2004-06-03 16:08:41 +00001131*/
1132static int pager_delmaster(const char *zMaster){
1133 int rc;
1134 int master_open = 0;
drh9cbe6352005-11-29 03:13:21 +00001135 OsFile *master = 0;
danielk197713adf8a2004-06-03 16:08:41 +00001136 char *zMasterJournal = 0; /* Contents of master journal file */
drheb206252004-10-01 02:00:31 +00001137 i64 nMasterJournal; /* Size of master journal file */
danielk197713adf8a2004-06-03 16:08:41 +00001138
1139 /* Open the master journal file exclusively in case some other process
1140 ** is running this routine also. Not that it makes too much difference.
1141 */
drh66560ad2006-01-06 14:32:19 +00001142 rc = sqlite3OsOpenReadOnly(zMaster, &master);
danielk197713adf8a2004-06-03 16:08:41 +00001143 if( rc!=SQLITE_OK ) goto delmaster_out;
1144 master_open = 1;
drh054889e2005-11-30 03:20:31 +00001145 rc = sqlite3OsFileSize(master, &nMasterJournal);
danielk197713adf8a2004-06-03 16:08:41 +00001146 if( rc!=SQLITE_OK ) goto delmaster_out;
1147
1148 if( nMasterJournal>0 ){
danielk19775865e3d2004-06-14 06:03:57 +00001149 char *zJournal;
danielk197776572402004-06-25 02:38:54 +00001150 char *zMasterPtr = 0;
danielk19775865e3d2004-06-14 06:03:57 +00001151
1152 /* Load the entire master journal file into space obtained from
1153 ** sqliteMalloc() and pointed to by zMasterJournal.
danielk19775865e3d2004-06-14 06:03:57 +00001154 */
danielk197776572402004-06-25 02:38:54 +00001155 zMasterJournal = (char *)sqliteMalloc(nMasterJournal);
danielk197713adf8a2004-06-03 16:08:41 +00001156 if( !zMasterJournal ){
1157 rc = SQLITE_NOMEM;
1158 goto delmaster_out;
1159 }
drh054889e2005-11-30 03:20:31 +00001160 rc = sqlite3OsRead(master, zMasterJournal, nMasterJournal);
danielk197713adf8a2004-06-03 16:08:41 +00001161 if( rc!=SQLITE_OK ) goto delmaster_out;
1162
danielk19775865e3d2004-06-14 06:03:57 +00001163 zJournal = zMasterJournal;
1164 while( (zJournal-zMasterJournal)<nMasterJournal ){
drh66560ad2006-01-06 14:32:19 +00001165 if( sqlite3OsFileExists(zJournal) ){
danielk197713adf8a2004-06-03 16:08:41 +00001166 /* One of the journals pointed to by the master journal exists.
1167 ** Open it and check if it points at the master journal. If
1168 ** so, return without deleting the master journal file.
1169 */
drh9cbe6352005-11-29 03:13:21 +00001170 OsFile *journal = 0;
drh3b7b78b2004-11-24 01:16:43 +00001171 int c;
danielk197713adf8a2004-06-03 16:08:41 +00001172
drh66560ad2006-01-06 14:32:19 +00001173 rc = sqlite3OsOpenReadOnly(zJournal, &journal);
danielk197713adf8a2004-06-03 16:08:41 +00001174 if( rc!=SQLITE_OK ){
danielk197713adf8a2004-06-03 16:08:41 +00001175 goto delmaster_out;
1176 }
danielk197713adf8a2004-06-03 16:08:41 +00001177
drh9cbe6352005-11-29 03:13:21 +00001178 rc = readMasterJournal(journal, &zMasterPtr);
drh054889e2005-11-30 03:20:31 +00001179 sqlite3OsClose(&journal);
danielk19779eed5052004-06-04 10:38:30 +00001180 if( rc!=SQLITE_OK ){
danielk19779eed5052004-06-04 10:38:30 +00001181 goto delmaster_out;
1182 }
danielk197776572402004-06-25 02:38:54 +00001183
drh3b7b78b2004-11-24 01:16:43 +00001184 c = zMasterPtr!=0 && strcmp(zMasterPtr, zMaster)==0;
1185 sqliteFree(zMasterPtr);
1186 if( c ){
danielk197776572402004-06-25 02:38:54 +00001187 /* We have a match. Do not delete the master journal file. */
1188 goto delmaster_out;
danielk197713adf8a2004-06-03 16:08:41 +00001189 }
1190 }
danielk19775865e3d2004-06-14 06:03:57 +00001191 zJournal += (strlen(zJournal)+1);
danielk197713adf8a2004-06-03 16:08:41 +00001192 }
1193 }
1194
drh66560ad2006-01-06 14:32:19 +00001195 sqlite3OsDelete(zMaster);
danielk197713adf8a2004-06-03 16:08:41 +00001196
1197delmaster_out:
1198 if( zMasterJournal ){
1199 sqliteFree(zMasterJournal);
1200 }
1201 if( master_open ){
drh054889e2005-11-30 03:20:31 +00001202 sqlite3OsClose(&master);
danielk197713adf8a2004-06-03 16:08:41 +00001203 }
1204 return rc;
1205}
1206
danielk197741483462007-03-24 16:45:04 +00001207#if 0
danielk197713adf8a2004-06-03 16:08:41 +00001208/*
drha6abd042004-06-09 17:37:22 +00001209** Make every page in the cache agree with what is on disk. In other words,
1210** reread the disk to reset the state of the cache.
1211**
1212** This routine is called after a rollback in which some of the dirty cache
1213** pages had never been written out to disk. We need to roll back the
1214** cache content and the easiest way to do that is to reread the old content
1215** back from the disk.
1216*/
1217static int pager_reload_cache(Pager *pPager){
1218 PgHdr *pPg;
1219 int rc = SQLITE_OK;
1220 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
danielk19778186df82007-03-06 13:45:59 +00001221 char *zBuf = pPager->pTmpSpace; /* Temp storage for one page */
drha6abd042004-06-09 17:37:22 +00001222 if( !pPg->dirty ) continue;
1223 if( (int)pPg->pgno <= pPager->origDbSize ){
drh054889e2005-11-30 03:20:31 +00001224 rc = sqlite3OsSeek(pPager->fd, pPager->pageSize*(i64)(pPg->pgno-1));
drhb4746b92005-09-09 01:32:06 +00001225 if( rc==SQLITE_OK ){
drh054889e2005-11-30 03:20:31 +00001226 rc = sqlite3OsRead(pPager->fd, zBuf, pPager->pageSize);
drhb4746b92005-09-09 01:32:06 +00001227 }
danielk1977ef73ee92004-11-06 12:26:07 +00001228 TRACE3("REFETCH %d page %d\n", PAGERID(pPager), pPg->pgno);
drha6abd042004-06-09 17:37:22 +00001229 if( rc ) break;
drhc001c582006-03-06 18:23:16 +00001230 CODEC1(pPager, zBuf, pPg->pgno, 2);
drha6abd042004-06-09 17:37:22 +00001231 }else{
drh90f5ecb2004-07-22 01:19:35 +00001232 memset(zBuf, 0, pPager->pageSize);
drha6abd042004-06-09 17:37:22 +00001233 }
drh90f5ecb2004-07-22 01:19:35 +00001234 if( pPg->nRef==0 || memcmp(zBuf, PGHDR_TO_DATA(pPg), pPager->pageSize) ){
1235 memcpy(PGHDR_TO_DATA(pPg), zBuf, pPager->pageSize);
drha6abd042004-06-09 17:37:22 +00001236 if( pPager->xReiniter ){
danielk19773b8a05f2007-03-19 17:44:26 +00001237 pPager->xReiniter(pPg, pPager->pageSize);
drha6abd042004-06-09 17:37:22 +00001238 }else{
drh90f5ecb2004-07-22 01:19:35 +00001239 memset(PGHDR_TO_EXTRA(pPg, pPager), 0, pPager->nExtra);
drha6abd042004-06-09 17:37:22 +00001240 }
1241 }
1242 pPg->needSync = 0;
1243 pPg->dirty = 0;
danielk19773c407372005-02-15 02:54:14 +00001244#ifdef SQLITE_CHECK_PAGES
1245 pPg->pageHash = pager_pagehash(pPg);
1246#endif
drha6abd042004-06-09 17:37:22 +00001247 }
drh605ad8f2006-05-03 23:34:05 +00001248 pPager->pDirty = 0;
drha6abd042004-06-09 17:37:22 +00001249 return rc;
1250}
danielk197741483462007-03-24 16:45:04 +00001251#endif
drha6abd042004-06-09 17:37:22 +00001252
drha6abd042004-06-09 17:37:22 +00001253/*
drhcb4c40b2004-08-18 19:09:43 +00001254** Truncate the main file of the given pager to the number of pages
1255** indicated.
1256*/
1257static int pager_truncate(Pager *pPager, int nPage){
danielk197717221812005-02-15 03:38:05 +00001258 assert( pPager->state>=PAGER_EXCLUSIVE );
drh054889e2005-11-30 03:20:31 +00001259 return sqlite3OsTruncate(pPager->fd, pPager->pageSize*(i64)nPage);
drhcb4c40b2004-08-18 19:09:43 +00001260}
1261
1262/*
drhed7c8552001-04-11 14:29:21 +00001263** Playback the journal and thus restore the database file to
1264** the state it was in before we started making changes.
1265**
drh34e79ce2004-02-08 06:05:46 +00001266** The journal file format is as follows:
1267**
drhae2b40c2004-06-09 19:03:54 +00001268** (1) 8 byte prefix. A copy of aJournalMagic[].
1269** (2) 4 byte big-endian integer which is the number of valid page records
drh34e79ce2004-02-08 06:05:46 +00001270** in the journal. If this value is 0xffffffff, then compute the
drhae2b40c2004-06-09 19:03:54 +00001271** number of page records from the journal size.
1272** (3) 4 byte big-endian integer which is the initial value for the
1273** sanity checksum.
1274** (4) 4 byte integer which is the number of pages to truncate the
drh34e79ce2004-02-08 06:05:46 +00001275** database to during a rollback.
drhae2b40c2004-06-09 19:03:54 +00001276** (5) 4 byte integer which is the number of bytes in the master journal
1277** name. The value may be zero (indicate that there is no master
1278** journal.)
1279** (6) N bytes of the master journal name. The name will be nul-terminated
1280** and might be shorter than the value read from (5). If the first byte
1281** of the name is \000 then there is no master journal. The master
1282** journal name is stored in UTF-8.
1283** (7) Zero or more pages instances, each as follows:
drh34e79ce2004-02-08 06:05:46 +00001284** + 4 byte page number.
drhae2b40c2004-06-09 19:03:54 +00001285** + pPager->pageSize bytes of data.
1286** + 4 byte checksum
drh34e79ce2004-02-08 06:05:46 +00001287**
drhae2b40c2004-06-09 19:03:54 +00001288** When we speak of the journal header, we mean the first 6 items above.
1289** Each entry in the journal is an instance of the 7th item.
drh34e79ce2004-02-08 06:05:46 +00001290**
1291** Call the value from the second bullet "nRec". nRec is the number of
1292** valid page entries in the journal. In most cases, you can compute the
1293** value of nRec from the size of the journal file. But if a power
1294** failure occurred while the journal was being written, it could be the
1295** case that the size of the journal file had already been increased but
1296** the extra entries had not yet made it safely to disk. In such a case,
1297** the value of nRec computed from the file size would be too large. For
1298** that reason, we always use the nRec value in the header.
1299**
1300** If the nRec value is 0xffffffff it means that nRec should be computed
1301** from the file size. This value is used when the user selects the
1302** no-sync option for the journal. A power failure could lead to corruption
1303** in this case. But for things like temporary table (which will be
1304** deleted when the power is restored) we don't care.
1305**
drhd9b02572001-04-15 00:37:09 +00001306** If the file opened as the journal file is not a well-formed
danielk1977ece80f12004-06-23 01:05:26 +00001307** journal file then all pages up to the first corrupted page are rolled
1308** back (or no pages if the journal header is corrupted). The journal file
1309** is then deleted and SQLITE_OK returned, just as if no corruption had
1310** been encountered.
1311**
1312** If an I/O or malloc() error occurs, the journal-file is not deleted
1313** and an error code is returned.
drhed7c8552001-04-11 14:29:21 +00001314*/
danielk1977e277be02007-03-23 18:12:06 +00001315static int pager_playback(Pager *pPager, int isHot){
drheb206252004-10-01 02:00:31 +00001316 i64 szJ; /* Size of the journal file in bytes */
danielk1977c3e8f5e2004-06-28 01:16:46 +00001317 u32 nRec; /* Number of Records in the journal */
drhd9b02572001-04-15 00:37:09 +00001318 int i; /* Loop counter */
1319 Pgno mxPg = 0; /* Size of the original file in pages */
drhae2b40c2004-06-09 19:03:54 +00001320 int rc; /* Result code of a subroutine */
danielk197713adf8a2004-06-03 16:08:41 +00001321 char *zMaster = 0; /* Name of master journal file if any */
drhed7c8552001-04-11 14:29:21 +00001322
drhc3a64ba2001-11-22 00:01:27 +00001323 /* Figure out how many records are in the journal. Abort early if
1324 ** the journal is empty.
drhed7c8552001-04-11 14:29:21 +00001325 */
drh8cfbf082001-09-19 13:22:39 +00001326 assert( pPager->journalOpen );
drh054889e2005-11-30 03:20:31 +00001327 rc = sqlite3OsFileSize(pPager->jfd, &szJ);
danielk1977334cdb62007-03-26 08:05:12 +00001328 if( rc!=SQLITE_OK || szJ==0 ){
drhc3a64ba2001-11-22 00:01:27 +00001329 goto end_playback;
1330 }
drh240c5792004-02-08 00:40:52 +00001331
danielk197776572402004-06-25 02:38:54 +00001332 /* Read the master journal name from the journal, if it is present.
1333 ** If a master journal file name is specified, but the file is not
1334 ** present on disk, then the journal is not hot and does not need to be
1335 ** played back.
drh240c5792004-02-08 00:40:52 +00001336 */
drh9cbe6352005-11-29 03:13:21 +00001337 rc = readMasterJournal(pPager->jfd, &zMaster);
danielk197776572402004-06-25 02:38:54 +00001338 assert( rc!=SQLITE_DONE );
drh66560ad2006-01-06 14:32:19 +00001339 if( rc!=SQLITE_OK || (zMaster && !sqlite3OsFileExists(zMaster)) ){
danielk197776572402004-06-25 02:38:54 +00001340 sqliteFree(zMaster);
1341 zMaster = 0;
1342 if( rc==SQLITE_DONE ) rc = SQLITE_OK;
drhc3a64ba2001-11-22 00:01:27 +00001343 goto end_playback;
1344 }
drh054889e2005-11-30 03:20:31 +00001345 sqlite3OsSeek(pPager->jfd, 0);
danielk197776572402004-06-25 02:38:54 +00001346 pPager->journalOff = 0;
drhc3a64ba2001-11-22 00:01:27 +00001347
danielk197776572402004-06-25 02:38:54 +00001348 /* This loop terminates either when the readJournalHdr() call returns
1349 ** SQLITE_DONE or an IO error occurs. */
1350 while( 1 ){
drhae2b40c2004-06-09 19:03:54 +00001351
danielk197776572402004-06-25 02:38:54 +00001352 /* Read the next journal header from the journal file. If there are
1353 ** not enough bytes left in the journal file for a complete header, or
1354 ** it is corrupted, then a process must of failed while writing it.
1355 ** This indicates nothing more needs to be rolled back.
1356 */
1357 rc = readJournalHdr(pPager, szJ, &nRec, &mxPg);
1358 if( rc!=SQLITE_OK ){
drh968af522003-02-11 14:55:40 +00001359 if( rc==SQLITE_DONE ){
drh968af522003-02-11 14:55:40 +00001360 rc = SQLITE_OK;
1361 }
danielk197776572402004-06-25 02:38:54 +00001362 goto end_playback;
1363 }
1364
1365 /* If nRec is 0xffffffff, then this journal was created by a process
1366 ** working in no-sync mode. This means that the rest of the journal
1367 ** file consists of pages, there are no more journal headers. Compute
1368 ** the value of nRec based on this assumption.
1369 */
1370 if( nRec==0xffffffff ){
1371 assert( pPager->journalOff==JOURNAL_HDR_SZ(pPager) );
1372 nRec = (szJ - JOURNAL_HDR_SZ(pPager))/JOURNAL_PG_SZ(pPager);
1373 }
1374
danielk1977e277be02007-03-23 18:12:06 +00001375 /* If nRec is 0 and this rollback is of a transaction created by this
1376 ** process. In this case the rest of the journal file consists of
1377 ** journalled copies of pages that need to be read back into the cache.
1378 */
1379 if( nRec==0 && !isHot ){
1380 nRec = (szJ - pPager->journalOff) / JOURNAL_PG_SZ(pPager);
1381 }
1382
danielk197776572402004-06-25 02:38:54 +00001383 /* If this is the first header read from the journal, truncate the
1384 ** database file back to it's original size.
1385 */
danielk197717221812005-02-15 03:38:05 +00001386 if( pPager->state>=PAGER_EXCLUSIVE &&
1387 pPager->journalOff==JOURNAL_HDR_SZ(pPager) ){
danielk197776572402004-06-25 02:38:54 +00001388 assert( pPager->origDbSize==0 || pPager->origDbSize==mxPg );
drhcb4c40b2004-08-18 19:09:43 +00001389 rc = pager_truncate(pPager, mxPg);
danielk197776572402004-06-25 02:38:54 +00001390 if( rc!=SQLITE_OK ){
1391 goto end_playback;
1392 }
1393 pPager->dbSize = mxPg;
1394 }
1395
danielk197776572402004-06-25 02:38:54 +00001396 /* Copy original pages out of the journal and back into the database file.
1397 */
1398 for(i=0; i<nRec; i++){
drh9cbe6352005-11-29 03:13:21 +00001399 rc = pager_playback_one_page(pPager, pPager->jfd, 1);
danielk197776572402004-06-25 02:38:54 +00001400 if( rc!=SQLITE_OK ){
1401 if( rc==SQLITE_DONE ){
1402 rc = SQLITE_OK;
1403 pPager->journalOff = szJ;
1404 break;
1405 }else{
1406 goto end_playback;
1407 }
1408 }
drh968af522003-02-11 14:55:40 +00001409 }
drhed7c8552001-04-11 14:29:21 +00001410 }
drh580eeaf2006-02-24 03:09:37 +00001411 /*NOTREACHED*/
1412 assert( 0 );
drh4a0681e2003-02-13 01:58:20 +00001413
1414end_playback:
danielk19778191bff2004-06-28 04:52:30 +00001415 if( rc==SQLITE_OK ){
1416 rc = pager_unwritelock(pPager);
1417 }
danielk197713adf8a2004-06-03 16:08:41 +00001418 if( zMaster ){
1419 /* If there was a master journal and this routine will return true,
danielk197732554c12005-01-22 03:39:39 +00001420 ** see if it is possible to delete the master journal.
danielk197713adf8a2004-06-03 16:08:41 +00001421 */
1422 if( rc==SQLITE_OK ){
danielk197732554c12005-01-22 03:39:39 +00001423 rc = pager_delmaster(zMaster);
danielk197713adf8a2004-06-03 16:08:41 +00001424 }
1425 sqliteFree(zMaster);
1426 }
danielk197776572402004-06-25 02:38:54 +00001427
1428 /* The Pager.sectorSize variable may have been updated while rolling
1429 ** back a journal created by a process with a different PAGER_SECTOR_SIZE
1430 ** value. Reset it to the correct value for this process.
1431 */
danielk1977b4721172007-03-19 05:54:48 +00001432 pPager->sectorSize = sqlite3OsSectorSize(pPager->fd);
drhd9b02572001-04-15 00:37:09 +00001433 return rc;
drhed7c8552001-04-11 14:29:21 +00001434}
1435
1436/*
drhac69b052004-05-12 13:30:07 +00001437** Playback the statement journal.
drhfa86c412002-02-02 15:01:15 +00001438**
1439** This is similar to playing back the transaction journal but with
1440** a few extra twists.
1441**
drh663fc632002-02-02 18:49:19 +00001442** (1) The number of pages in the database file at the start of
drhac69b052004-05-12 13:30:07 +00001443** the statement is stored in pPager->stmtSize, not in the
drh663fc632002-02-02 18:49:19 +00001444** journal file itself.
drhfa86c412002-02-02 15:01:15 +00001445**
drhac69b052004-05-12 13:30:07 +00001446** (2) In addition to playing back the statement journal, also
drhfa86c412002-02-02 15:01:15 +00001447** playback all pages of the transaction journal beginning
drhac69b052004-05-12 13:30:07 +00001448** at offset pPager->stmtJSize.
drhfa86c412002-02-02 15:01:15 +00001449*/
drh3aac2dd2004-04-26 14:10:20 +00001450static int pager_stmt_playback(Pager *pPager){
drheb206252004-10-01 02:00:31 +00001451 i64 szJ; /* Size of the full journal */
1452 i64 hdrOff;
drh968af522003-02-11 14:55:40 +00001453 int nRec; /* Number of Records */
drhfa86c412002-02-02 15:01:15 +00001454 int i; /* Loop counter */
1455 int rc;
1456
danielk197776572402004-06-25 02:38:54 +00001457 szJ = pPager->journalOff;
1458#ifndef NDEBUG
1459 {
drheb206252004-10-01 02:00:31 +00001460 i64 os_szJ;
drh054889e2005-11-30 03:20:31 +00001461 rc = sqlite3OsFileSize(pPager->jfd, &os_szJ);
danielk197776572402004-06-25 02:38:54 +00001462 if( rc!=SQLITE_OK ) return rc;
1463 assert( szJ==os_szJ );
1464 }
1465#endif
1466
danielk19774099f6e2007-03-19 11:25:20 +00001467 /* Set hdrOff to be the offset just after the end of the last journal
1468 ** page written before the first journal-header for this statement
1469 ** transaction was written, or the end of the file if no journal
danielk197776572402004-06-25 02:38:54 +00001470 ** header was written.
1471 */
1472 hdrOff = pPager->stmtHdrOff;
1473 assert( pPager->fullSync || !hdrOff );
1474 if( !hdrOff ){
1475 hdrOff = szJ;
1476 }
1477
drhfa86c412002-02-02 15:01:15 +00001478 /* Truncate the database back to its original size.
1479 */
danielk197717221812005-02-15 03:38:05 +00001480 if( pPager->state>=PAGER_EXCLUSIVE ){
1481 rc = pager_truncate(pPager, pPager->stmtSize);
1482 }
drh1aa2d8b2007-01-03 15:34:29 +00001483 assert( pPager->state>=PAGER_SHARED );
drhac69b052004-05-12 13:30:07 +00001484 pPager->dbSize = pPager->stmtSize;
drhfa86c412002-02-02 15:01:15 +00001485
drhac69b052004-05-12 13:30:07 +00001486 /* Figure out how many records are in the statement journal.
drhfa86c412002-02-02 15:01:15 +00001487 */
drhac69b052004-05-12 13:30:07 +00001488 assert( pPager->stmtInUse && pPager->journalOpen );
drh054889e2005-11-30 03:20:31 +00001489 sqlite3OsSeek(pPager->stfd, 0);
drhac69b052004-05-12 13:30:07 +00001490 nRec = pPager->stmtNRec;
drhfa86c412002-02-02 15:01:15 +00001491
drhac69b052004-05-12 13:30:07 +00001492 /* Copy original pages out of the statement journal and back into the
drhae2b40c2004-06-09 19:03:54 +00001493 ** database file. Note that the statement journal omits checksums from
1494 ** each record since power-failure recovery is not important to statement
1495 ** journals.
drhfa86c412002-02-02 15:01:15 +00001496 */
1497 for(i=nRec-1; i>=0; i--){
drh9cbe6352005-11-29 03:13:21 +00001498 rc = pager_playback_one_page(pPager, pPager->stfd, 0);
drh968af522003-02-11 14:55:40 +00001499 assert( rc!=SQLITE_DONE );
drh3aac2dd2004-04-26 14:10:20 +00001500 if( rc!=SQLITE_OK ) goto end_stmt_playback;
drhfa86c412002-02-02 15:01:15 +00001501 }
1502
danielk197776572402004-06-25 02:38:54 +00001503 /* Now roll some pages back from the transaction journal. Pager.stmtJSize
1504 ** was the size of the journal file when this statement was started, so
1505 ** everything after that needs to be rolled back, either into the
1506 ** database, the memory cache, or both.
1507 **
1508 ** If it is not zero, then Pager.stmtHdrOff is the offset to the start
1509 ** of the first journal header written during this statement transaction.
drhfa86c412002-02-02 15:01:15 +00001510 */
drh054889e2005-11-30 03:20:31 +00001511 rc = sqlite3OsSeek(pPager->jfd, pPager->stmtJSize);
drhfa86c412002-02-02 15:01:15 +00001512 if( rc!=SQLITE_OK ){
drh3aac2dd2004-04-26 14:10:20 +00001513 goto end_stmt_playback;
drhfa86c412002-02-02 15:01:15 +00001514 }
danielk197776572402004-06-25 02:38:54 +00001515 pPager->journalOff = pPager->stmtJSize;
danielk197775edc162004-06-26 01:48:18 +00001516 pPager->cksumInit = pPager->stmtCksum;
danielk19774099f6e2007-03-19 11:25:20 +00001517 while( pPager->journalOff < hdrOff ){
drh9cbe6352005-11-29 03:13:21 +00001518 rc = pager_playback_one_page(pPager, pPager->jfd, 1);
danielk197776572402004-06-25 02:38:54 +00001519 assert( rc!=SQLITE_DONE );
1520 if( rc!=SQLITE_OK ) goto end_stmt_playback;
1521 }
1522
1523 while( pPager->journalOff < szJ ){
danielk1977f0113002006-01-24 12:09:17 +00001524 u32 nJRec; /* Number of Journal Records */
danielk197776572402004-06-25 02:38:54 +00001525 u32 dummy;
danielk1977f0113002006-01-24 12:09:17 +00001526 rc = readJournalHdr(pPager, szJ, &nJRec, &dummy);
drh968af522003-02-11 14:55:40 +00001527 if( rc!=SQLITE_OK ){
1528 assert( rc!=SQLITE_DONE );
drh3aac2dd2004-04-26 14:10:20 +00001529 goto end_stmt_playback;
drh968af522003-02-11 14:55:40 +00001530 }
danielk1977f0113002006-01-24 12:09:17 +00001531 if( nJRec==0 ){
1532 nJRec = (szJ - pPager->journalOff) / (pPager->pageSize+8);
danielk197775edc162004-06-26 01:48:18 +00001533 }
danielk1977f0113002006-01-24 12:09:17 +00001534 for(i=nJRec-1; i>=0 && pPager->journalOff < szJ; i--){
drh9cbe6352005-11-29 03:13:21 +00001535 rc = pager_playback_one_page(pPager, pPager->jfd, 1);
danielk197776572402004-06-25 02:38:54 +00001536 assert( rc!=SQLITE_DONE );
1537 if( rc!=SQLITE_OK ) goto end_stmt_playback;
1538 }
drhfa86c412002-02-02 15:01:15 +00001539 }
danielk197776572402004-06-25 02:38:54 +00001540
1541 pPager->journalOff = szJ;
drhfa86c412002-02-02 15:01:15 +00001542
drh3aac2dd2004-04-26 14:10:20 +00001543end_stmt_playback:
danielk19778a7aea32006-01-23 15:25:48 +00001544 if( rc==SQLITE_OK) {
danielk197775edc162004-06-26 01:48:18 +00001545 pPager->journalOff = szJ;
1546 /* pager_reload_cache(pPager); */
drhfa86c412002-02-02 15:01:15 +00001547 }
1548 return rc;
1549}
1550
1551/*
drhf57b14a2001-09-14 18:54:08 +00001552** Change the maximum number of in-memory pages that are allowed.
1553*/
danielk19773b8a05f2007-03-19 17:44:26 +00001554void sqlite3PagerSetCachesize(Pager *pPager, int mxPage){
drhf57b14a2001-09-14 18:54:08 +00001555 if( mxPage>10 ){
1556 pPager->mxPage = mxPage;
danielk1977ef317ab2004-06-23 10:43:10 +00001557 }else{
1558 pPager->mxPage = 10;
drhf57b14a2001-09-14 18:54:08 +00001559 }
1560}
1561
1562/*
drh973b6e32003-02-12 14:09:42 +00001563** Adjust the robustness of the database to damage due to OS crashes
1564** or power failures by changing the number of syncs()s when writing
1565** the rollback journal. There are three levels:
1566**
drh054889e2005-11-30 03:20:31 +00001567** OFF sqlite3OsSync() is never called. This is the default
drh973b6e32003-02-12 14:09:42 +00001568** for temporary and transient files.
1569**
1570** NORMAL The journal is synced once before writes begin on the
1571** database. This is normally adequate protection, but
1572** it is theoretically possible, though very unlikely,
1573** that an inopertune power failure could leave the journal
1574** in a state which would cause damage to the database
1575** when it is rolled back.
1576**
1577** FULL The journal is synced twice before writes begin on the
drh34e79ce2004-02-08 06:05:46 +00001578** database (with some additional information - the nRec field
1579** of the journal header - being written in between the two
1580** syncs). If we assume that writing a
drh973b6e32003-02-12 14:09:42 +00001581** single disk sector is atomic, then this mode provides
1582** assurance that the journal will not be corrupted to the
1583** point of causing damage to the database during rollback.
1584**
1585** Numeric values associated with these states are OFF==1, NORMAL=2,
1586** and FULL=3.
1587*/
danielk197793758c82005-01-21 08:13:14 +00001588#ifndef SQLITE_OMIT_PAGER_PRAGMAS
danielk19773b8a05f2007-03-19 17:44:26 +00001589void sqlite3PagerSetSafetyLevel(Pager *pPager, int level, int full_fsync){
drh973b6e32003-02-12 14:09:42 +00001590 pPager->noSync = level==1 || pPager->tempFile;
1591 pPager->fullSync = level==3 && !pPager->tempFile;
drhac530b12006-02-11 01:25:50 +00001592 pPager->full_fsync = full_fsync;
danielk19771d850a72004-05-31 08:26:49 +00001593 if( pPager->noSync ) pPager->needSync = 0;
drh973b6e32003-02-12 14:09:42 +00001594}
danielk197793758c82005-01-21 08:13:14 +00001595#endif
drh973b6e32003-02-12 14:09:42 +00001596
1597/*
drhaf6df112005-06-07 02:12:30 +00001598** The following global variable is incremented whenever the library
1599** attempts to open a temporary file. This information is used for
1600** testing and analysis only.
1601*/
drh0f7eb612006-08-08 13:51:43 +00001602#ifdef SQLITE_TEST
drhaf6df112005-06-07 02:12:30 +00001603int sqlite3_opentemp_count = 0;
drh0f7eb612006-08-08 13:51:43 +00001604#endif
drhaf6df112005-06-07 02:12:30 +00001605
1606/*
drh3f56e6e2007-03-15 01:16:47 +00001607** Open a temporary file.
1608**
1609** Write the file descriptor into *fd. Return SQLITE_OK on success or some
drhfa86c412002-02-02 15:01:15 +00001610** other error code if we fail.
1611**
1612** The OS will automatically delete the temporary file when it is
1613** closed.
1614*/
danielk19773b8a05f2007-03-19 17:44:26 +00001615static int sqlite3PagerOpentemp(OsFile **pFd){
drhfa86c412002-02-02 15:01:15 +00001616 int cnt = 8;
1617 int rc;
drh3f56e6e2007-03-15 01:16:47 +00001618 char zFile[SQLITE_TEMPNAME_SIZE];
1619
drh0f7eb612006-08-08 13:51:43 +00001620#ifdef SQLITE_TEST
drhaf6df112005-06-07 02:12:30 +00001621 sqlite3_opentemp_count++; /* Used for testing and analysis only */
drh0f7eb612006-08-08 13:51:43 +00001622#endif
drhfa86c412002-02-02 15:01:15 +00001623 do{
1624 cnt--;
drh66560ad2006-01-06 14:32:19 +00001625 sqlite3OsTempFileName(zFile);
1626 rc = sqlite3OsOpenExclusive(zFile, pFd, 1);
danielk197713073932004-06-30 11:54:06 +00001627 }while( cnt>0 && rc!=SQLITE_OK && rc!=SQLITE_NOMEM );
drhfa86c412002-02-02 15:01:15 +00001628 return rc;
1629}
1630
1631/*
drhed7c8552001-04-11 14:29:21 +00001632** Create a new page cache and put a pointer to the page cache in *ppPager.
drh5e00f6c2001-09-13 13:46:56 +00001633** The file to be cached need not exist. The file is not locked until
danielk19773b8a05f2007-03-19 17:44:26 +00001634** the first call to sqlite3PagerGet() and is only held open until the
1635** last page is released using sqlite3PagerUnref().
drh382c0242001-10-06 16:33:02 +00001636**
drh6446c4d2001-12-15 14:22:18 +00001637** If zFilename is NULL then a randomly-named temporary file is created
1638** and used as the file to be cached. The file will be deleted
1639** automatically when it is closed.
drh90f5ecb2004-07-22 01:19:35 +00001640**
1641** If zFilename is ":memory:" then all information is held in cache.
1642** It is never written to disk. This can be used to implement an
1643** in-memory database.
drhed7c8552001-04-11 14:29:21 +00001644*/
danielk19773b8a05f2007-03-19 17:44:26 +00001645int sqlite3PagerOpen(
drh7e3b0a02001-04-28 16:52:40 +00001646 Pager **ppPager, /* Return the Pager structure here */
1647 const char *zFilename, /* Name of the database file to open */
drhda47d772002-12-02 04:25:19 +00001648 int nExtra, /* Extra bytes append to each in-memory page */
drh7bec5052005-02-06 02:45:41 +00001649 int flags /* flags controlling this file */
drh7e3b0a02001-04-28 16:52:40 +00001650){
danielk1977aef0bf62005-12-30 16:28:01 +00001651 Pager *pPager = 0;
danielk19778def5ea2004-06-16 10:39:52 +00001652 char *zFullPathname = 0;
drh02afc862006-01-20 18:10:57 +00001653 int nameLen; /* Compiler is wrong. This is always initialized before use */
drh9cbe6352005-11-29 03:13:21 +00001654 OsFile *fd;
danielk1977cfe9a692004-06-16 12:00:29 +00001655 int rc = SQLITE_OK;
1656 int i;
danielk19778def5ea2004-06-16 10:39:52 +00001657 int tempFile = 0;
drhac69b052004-05-12 13:30:07 +00001658 int memDb = 0;
drh5e00f6c2001-09-13 13:46:56 +00001659 int readOnly = 0;
drh7bec5052005-02-06 02:45:41 +00001660 int useJournal = (flags & PAGER_OMIT_JOURNAL)==0;
1661 int noReadlock = (flags & PAGER_NO_READLOCK)!=0;
drh8cfbf082001-09-19 13:22:39 +00001662 char zTemp[SQLITE_TEMPNAME_SIZE];
drh6f7adc82006-01-11 21:41:20 +00001663#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
danielk197754f01982006-01-18 15:25:17 +00001664 /* A malloc() cannot fail in sqlite3ThreadData() as one or more calls to
1665 ** malloc() must have already been made by this thread before it gets
1666 ** to this point. This means the ThreadData must have been allocated already
1667 ** so that ThreadData.nAlloc can be set. It would be nice to assert
1668 ** that ThreadData.nAlloc is non-zero, but alas this breaks test cases
1669 ** written to invoke the pager directly.
1670 */
danielk19778212def2006-01-16 15:32:23 +00001671 ThreadData *pTsd = sqlite3ThreadData();
danielk197754f01982006-01-18 15:25:17 +00001672 assert( pTsd );
danielk197752622822006-01-09 09:59:49 +00001673#endif
drhed7c8552001-04-11 14:29:21 +00001674
danielk1977aef0bf62005-12-30 16:28:01 +00001675 /* If malloc() has already failed return SQLITE_NOMEM. Before even
1676 ** testing for this, set *ppPager to NULL so the caller knows the pager
1677 ** structure was never allocated.
1678 */
drhd9b02572001-04-15 00:37:09 +00001679 *ppPager = 0;
danielk19779e128002006-01-18 16:51:35 +00001680 if( sqlite3MallocFailed() ){
drhd9b02572001-04-15 00:37:09 +00001681 return SQLITE_NOMEM;
1682 }
danielk1977aef0bf62005-12-30 16:28:01 +00001683 memset(&fd, 0, sizeof(fd));
1684
1685 /* Open the pager file and set zFullPathname to point at malloc()ed
1686 ** memory containing the complete filename (i.e. including the directory).
1687 */
drh901afd42003-08-26 11:25:58 +00001688 if( zFilename && zFilename[0] ){
drhb7f91642004-10-31 02:22:47 +00001689#ifndef SQLITE_OMIT_MEMORYDB
drhac69b052004-05-12 13:30:07 +00001690 if( strcmp(zFilename,":memory:")==0 ){
1691 memDb = 1;
drhda71ce12004-06-21 18:14:45 +00001692 zFullPathname = sqliteStrDup("");
drhb7f91642004-10-31 02:22:47 +00001693 }else
1694#endif
1695 {
drh66560ad2006-01-06 14:32:19 +00001696 zFullPathname = sqlite3OsFullPathname(zFilename);
danielk19778def5ea2004-06-16 10:39:52 +00001697 if( zFullPathname ){
drh66560ad2006-01-06 14:32:19 +00001698 rc = sqlite3OsOpenReadWrite(zFullPathname, &fd, &readOnly);
danielk19778def5ea2004-06-16 10:39:52 +00001699 }
drhac69b052004-05-12 13:30:07 +00001700 }
drh5e00f6c2001-09-13 13:46:56 +00001701 }else{
danielk19773b8a05f2007-03-19 17:44:26 +00001702 rc = sqlite3PagerOpentemp(&fd);
drh3f56e6e2007-03-15 01:16:47 +00001703 sqlite3OsTempFileName(zTemp);
drh5e00f6c2001-09-13 13:46:56 +00001704 zFilename = zTemp;
drh66560ad2006-01-06 14:32:19 +00001705 zFullPathname = sqlite3OsFullPathname(zFilename);
danielk19778def5ea2004-06-16 10:39:52 +00001706 if( rc==SQLITE_OK ){
1707 tempFile = 1;
1708 }
drh5e00f6c2001-09-13 13:46:56 +00001709 }
danielk1977aef0bf62005-12-30 16:28:01 +00001710
1711 /* Allocate the Pager structure. As part of the same allocation, allocate
1712 ** space for the full paths of the file, directory and journal
1713 ** (Pager.zFilename, Pager.zDirectory and Pager.zJournal).
1714 */
1715 if( zFullPathname ){
1716 nameLen = strlen(zFullPathname);
1717 pPager = sqliteMalloc( sizeof(*pPager) + nameLen*3 + 30 );
danielk19778186df82007-03-06 13:45:59 +00001718 if( pPager && rc==SQLITE_OK ){
1719 pPager->pTmpSpace = (char *)sqliteMallocRaw(SQLITE_DEFAULT_PAGE_SIZE);
1720 }
drh3e7a6092002-12-07 21:45:14 +00001721 }
danielk1977aef0bf62005-12-30 16:28:01 +00001722
danielk19778186df82007-03-06 13:45:59 +00001723
danielk1977aef0bf62005-12-30 16:28:01 +00001724 /* If an error occured in either of the blocks above, free the memory
1725 ** pointed to by zFullPathname, free the Pager structure and close the
1726 ** file. Since the pager is not allocated there is no need to set
1727 ** any Pager.errMask variables.
1728 */
danielk19778186df82007-03-06 13:45:59 +00001729 if( !pPager || !zFullPathname || !pPager->pTmpSpace || rc!=SQLITE_OK ){
drh054889e2005-11-30 03:20:31 +00001730 sqlite3OsClose(&fd);
drhda71ce12004-06-21 18:14:45 +00001731 sqliteFree(zFullPathname);
danielk1977aef0bf62005-12-30 16:28:01 +00001732 sqliteFree(pPager);
1733 return ((rc==SQLITE_OK)?SQLITE_NOMEM:rc);
drhed7c8552001-04-11 14:29:21 +00001734 }
danielk1977aef0bf62005-12-30 16:28:01 +00001735
danielk1977ef73ee92004-11-06 12:26:07 +00001736 TRACE3("OPEN %d %s\n", FILEHANDLEID(fd), zFullPathname);
drhb0603412007-02-28 04:47:26 +00001737 IOTRACE(("OPEN %p %s\n", pPager, zFullPathname))
drhed7c8552001-04-11 14:29:21 +00001738 pPager->zFilename = (char*)&pPager[1];
drha76c82e2003-07-27 18:59:42 +00001739 pPager->zDirectory = &pPager->zFilename[nameLen+1];
1740 pPager->zJournal = &pPager->zDirectory[nameLen+1];
drh3e7a6092002-12-07 21:45:14 +00001741 strcpy(pPager->zFilename, zFullPathname);
drha76c82e2003-07-27 18:59:42 +00001742 strcpy(pPager->zDirectory, zFullPathname);
danielk1977aef0bf62005-12-30 16:28:01 +00001743
drha76c82e2003-07-27 18:59:42 +00001744 for(i=nameLen; i>0 && pPager->zDirectory[i-1]!='/'; i--){}
1745 if( i>0 ) pPager->zDirectory[i-1] = 0;
drh3e7a6092002-12-07 21:45:14 +00001746 strcpy(pPager->zJournal, zFullPathname);
1747 sqliteFree(zFullPathname);
drhed7c8552001-04-11 14:29:21 +00001748 strcpy(&pPager->zJournal[nameLen], "-journal");
drh9cbe6352005-11-29 03:13:21 +00001749 pPager->fd = fd;
drh3b59a5c2006-01-15 20:28:28 +00001750 /* pPager->journalOpen = 0; */
drhac69b052004-05-12 13:30:07 +00001751 pPager->useJournal = useJournal && !memDb;
drh7bec5052005-02-06 02:45:41 +00001752 pPager->noReadlock = noReadlock && readOnly;
drh3b59a5c2006-01-15 20:28:28 +00001753 /* pPager->stmtOpen = 0; */
1754 /* pPager->stmtInUse = 0; */
1755 /* pPager->nRef = 0; */
drhac69b052004-05-12 13:30:07 +00001756 pPager->dbSize = memDb-1;
drh90f5ecb2004-07-22 01:19:35 +00001757 pPager->pageSize = SQLITE_DEFAULT_PAGE_SIZE;
drh3b59a5c2006-01-15 20:28:28 +00001758 /* pPager->stmtSize = 0; */
1759 /* pPager->stmtJSize = 0; */
1760 /* pPager->nPage = 0; */
1761 /* pPager->nMaxPage = 0; */
drh90f5ecb2004-07-22 01:19:35 +00001762 pPager->mxPage = 100;
drh3b59a5c2006-01-15 20:28:28 +00001763 assert( PAGER_UNLOCK==0 );
1764 /* pPager->state = PAGER_UNLOCK; */
1765 /* pPager->errMask = 0; */
drh5e00f6c2001-09-13 13:46:56 +00001766 pPager->tempFile = tempFile;
drhac69b052004-05-12 13:30:07 +00001767 pPager->memDb = memDb;
drh5e00f6c2001-09-13 13:46:56 +00001768 pPager->readOnly = readOnly;
drh3b59a5c2006-01-15 20:28:28 +00001769 /* pPager->needSync = 0; */
drhda47d772002-12-02 04:25:19 +00001770 pPager->noSync = pPager->tempFile || !useJournal;
danielk197775edc162004-06-26 01:48:18 +00001771 pPager->fullSync = (pPager->noSync?0:1);
drh3b59a5c2006-01-15 20:28:28 +00001772 /* pPager->pFirst = 0; */
1773 /* pPager->pFirstSynced = 0; */
1774 /* pPager->pLast = 0; */
drh887dc4c2004-10-22 16:22:57 +00001775 pPager->nExtra = FORCE_ALIGNMENT(nExtra);
danielk1977b4721172007-03-19 05:54:48 +00001776 assert(fd||memDb);
1777 if( !memDb ){
1778 pPager->sectorSize = sqlite3OsSectorSize(fd);
1779 }
drh3b59a5c2006-01-15 20:28:28 +00001780 /* pPager->pBusyHandler = 0; */
1781 /* memset(pPager->aHash, 0, sizeof(pPager->aHash)); */
drhed7c8552001-04-11 14:29:21 +00001782 *ppPager = pPager;
drh6f7adc82006-01-11 21:41:20 +00001783#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
danielk19778212def2006-01-16 15:32:23 +00001784 pPager->pNext = pTsd->pPager;
1785 pTsd->pPager = pPager;
danielk197752622822006-01-09 09:59:49 +00001786#endif
drhed7c8552001-04-11 14:29:21 +00001787 return SQLITE_OK;
1788}
1789
1790/*
drh90f5ecb2004-07-22 01:19:35 +00001791** Set the busy handler function.
1792*/
danielk19773b8a05f2007-03-19 17:44:26 +00001793void sqlite3PagerSetBusyhandler(Pager *pPager, BusyHandler *pBusyHandler){
drh90f5ecb2004-07-22 01:19:35 +00001794 pPager->pBusyHandler = pBusyHandler;
1795}
1796
1797/*
drh72f82862001-05-24 21:06:34 +00001798** Set the destructor for this pager. If not NULL, the destructor is called
drh5e00f6c2001-09-13 13:46:56 +00001799** when the reference count on each page reaches zero. The destructor can
1800** be used to clean up information in the extra segment appended to each page.
drh72f82862001-05-24 21:06:34 +00001801**
danielk19773b8a05f2007-03-19 17:44:26 +00001802** The destructor is not called as a result sqlite3PagerClose().
1803** Destructors are only called by sqlite3PagerUnref().
drh72f82862001-05-24 21:06:34 +00001804*/
danielk19773b8a05f2007-03-19 17:44:26 +00001805void sqlite3PagerSetDestructor(Pager *pPager, void (*xDesc)(DbPage*,int)){
drh72f82862001-05-24 21:06:34 +00001806 pPager->xDestructor = xDesc;
1807}
1808
1809/*
drha6abd042004-06-09 17:37:22 +00001810** Set the reinitializer for this pager. If not NULL, the reinitializer
1811** is called when the content of a page in cache is restored to its original
1812** value as a result of a rollback. The callback gives higher-level code
1813** an opportunity to restore the EXTRA section to agree with the restored
1814** page data.
1815*/
danielk19773b8a05f2007-03-19 17:44:26 +00001816void sqlite3PagerSetReiniter(Pager *pPager, void (*xReinit)(DbPage*,int)){
drha6abd042004-06-09 17:37:22 +00001817 pPager->xReiniter = xReinit;
1818}
1819
1820/*
drh1c7880e2005-05-20 20:01:55 +00001821** Set the page size. Return the new size. If the suggest new page
1822** size is inappropriate, then an alternative page size is selected
1823** and returned.
drh90f5ecb2004-07-22 01:19:35 +00001824*/
danielk19773b8a05f2007-03-19 17:44:26 +00001825int sqlite3PagerSetPagesize(Pager *pPager, int pageSize){
drh90f5ecb2004-07-22 01:19:35 +00001826 assert( pageSize>=512 && pageSize<=SQLITE_MAX_PAGE_SIZE );
drh1c7880e2005-05-20 20:01:55 +00001827 if( !pPager->memDb ){
1828 pPager->pageSize = pageSize;
danielk19778186df82007-03-06 13:45:59 +00001829 sqlite3ReallocOrFree((void **)&pPager->pTmpSpace, pageSize);
drh1c7880e2005-05-20 20:01:55 +00001830 }
1831 return pPager->pageSize;
drh90f5ecb2004-07-22 01:19:35 +00001832}
1833
1834/*
drhc9ac5ca2005-11-04 22:03:30 +00001835** The following set of routines are used to disable the simulated
1836** I/O error mechanism. These routines are used to avoid simulated
1837** errors in places where we do not care about errors.
1838**
1839** Unless -DSQLITE_TEST=1 is used, these routines are all no-ops
1840** and generate no code.
1841*/
1842#ifdef SQLITE_TEST
1843extern int sqlite3_io_error_pending;
1844extern int sqlite3_io_error_hit;
1845static int saved_cnt;
1846void clear_simulated_io_error(){
1847 sqlite3_io_error_hit = 0;
1848}
1849void disable_simulated_io_errors(void){
1850 saved_cnt = sqlite3_io_error_pending;
1851 sqlite3_io_error_pending = -1;
1852}
1853void enable_simulated_io_errors(void){
1854 sqlite3_io_error_pending = saved_cnt;
1855}
1856#else
drh152410f2005-11-05 15:11:22 +00001857# define clear_simulated_io_error()
1858# define disable_simulated_io_errors()
1859# define enable_simulated_io_errors()
drhc9ac5ca2005-11-04 22:03:30 +00001860#endif
1861
1862/*
drh90f5ecb2004-07-22 01:19:35 +00001863** Read the first N bytes from the beginning of the file into memory
danielk1977aef0bf62005-12-30 16:28:01 +00001864** that pDest points to.
1865**
1866** No error checking is done. The rational for this is that this function
1867** may be called even if the file does not exist or contain a header. In
1868** these cases sqlite3OsRead() will return an error, to which the correct
1869** response is to zero the memory at pDest and continue. A real IO error
1870** will presumably recur and be picked up later (Todo: Think about this).
drh90f5ecb2004-07-22 01:19:35 +00001871*/
danielk19773b8a05f2007-03-19 17:44:26 +00001872int sqlite3PagerReadFileheader(Pager *pPager, int N, unsigned char *pDest){
drh551b7732006-11-06 21:20:25 +00001873 int rc = SQLITE_OK;
drh90f5ecb2004-07-22 01:19:35 +00001874 memset(pDest, 0, N);
drhb7f91642004-10-31 02:22:47 +00001875 if( MEMDB==0 ){
danielk1977f2fa8312006-01-24 13:09:33 +00001876 disable_simulated_io_errors();
drh054889e2005-11-30 03:20:31 +00001877 sqlite3OsSeek(pPager->fd, 0);
danielk1977f2fa8312006-01-24 13:09:33 +00001878 enable_simulated_io_errors();
drhb0603412007-02-28 04:47:26 +00001879 IOTRACE(("DBHDR %p 0 %d\n", pPager, N))
drh551b7732006-11-06 21:20:25 +00001880 rc = sqlite3OsRead(pPager->fd, pDest, N);
1881 if( rc==SQLITE_IOERR_SHORT_READ ){
1882 rc = SQLITE_OK;
1883 }
drh90f5ecb2004-07-22 01:19:35 +00001884 }
drh551b7732006-11-06 21:20:25 +00001885 return rc;
drh90f5ecb2004-07-22 01:19:35 +00001886}
1887
1888/*
drh5e00f6c2001-09-13 13:46:56 +00001889** Return the total number of pages in the disk file associated with
danielk197715f411d2005-09-16 10:18:45 +00001890** pPager.
1891**
1892** If the PENDING_BYTE lies on the page directly after the end of the
1893** file, then consider this page part of the file too. For example, if
1894** PENDING_BYTE is byte 4096 (the first byte of page 5) and the size of the
1895** file is 4096 bytes, 5 is returned instead of 4.
drhed7c8552001-04-11 14:29:21 +00001896*/
danielk19773b8a05f2007-03-19 17:44:26 +00001897int sqlite3PagerPagecount(Pager *pPager){
drheb206252004-10-01 02:00:31 +00001898 i64 n;
drhe49f9822006-09-15 12:29:16 +00001899 int rc;
drhd9b02572001-04-15 00:37:09 +00001900 assert( pPager!=0 );
drha7aea3d2007-03-15 12:51:16 +00001901 if( pPager->errCode ){
1902 return 0;
1903 }
drhed7c8552001-04-11 14:29:21 +00001904 if( pPager->dbSize>=0 ){
danielk197715f411d2005-09-16 10:18:45 +00001905 n = pPager->dbSize;
1906 } else {
drhe49f9822006-09-15 12:29:16 +00001907 if( (rc = sqlite3OsFileSize(pPager->fd, &n))!=SQLITE_OK ){
1908 pager_error(pPager, rc);
danielk197715f411d2005-09-16 10:18:45 +00001909 return 0;
1910 }
1911 if( n>0 && n<pPager->pageSize ){
1912 n = 1;
1913 }else{
1914 n /= pPager->pageSize;
1915 }
1916 if( pPager->state!=PAGER_UNLOCK ){
1917 pPager->dbSize = n;
1918 }
drhed7c8552001-04-11 14:29:21 +00001919 }
danielk197715f411d2005-09-16 10:18:45 +00001920 if( n==(PENDING_BYTE/pPager->pageSize) ){
drh1f595712004-06-15 01:40:29 +00001921 n++;
1922 }
drhed7c8552001-04-11 14:29:21 +00001923 return n;
1924}
1925
drhf07e7d52006-04-07 13:54:46 +00001926
1927#ifndef SQLITE_OMIT_MEMORYDB
1928/*
1929** Clear a PgHistory block
1930*/
1931static void clearHistory(PgHistory *pHist){
1932 sqliteFree(pHist->pOrig);
1933 sqliteFree(pHist->pStmt);
1934 pHist->pOrig = 0;
1935 pHist->pStmt = 0;
1936}
1937#else
1938#define clearHistory(x)
1939#endif
1940
drhed7c8552001-04-11 14:29:21 +00001941/*
drhf7c57532003-04-25 13:22:51 +00001942** Forward declaration
1943*/
danielk197776572402004-06-25 02:38:54 +00001944static int syncJournal(Pager*);
drhac69b052004-05-12 13:30:07 +00001945
1946/*
danielk1977f5fdda82004-11-03 08:44:05 +00001947** Unlink pPg from it's hash chain. Also set the page number to 0 to indicate
1948** that the page is not part of any hash chain. This is required because the
danielk19773b8a05f2007-03-19 17:44:26 +00001949** sqlite3PagerMovepage() routine can leave a page in the
danielk1977f5fdda82004-11-03 08:44:05 +00001950** pNextFree/pPrevFree list that is not a part of any hash-chain.
1951*/
1952static void unlinkHashChain(Pager *pPager, PgHdr *pPg){
1953 if( pPg->pgno==0 ){
drh3765df42006-06-28 18:18:09 +00001954 assert( pPg->pNextHash==0 && pPg->pPrevHash==0 );
danielk1977f5fdda82004-11-03 08:44:05 +00001955 return;
1956 }
1957 if( pPg->pNextHash ){
1958 pPg->pNextHash->pPrevHash = pPg->pPrevHash;
1959 }
1960 if( pPg->pPrevHash ){
drh8ca0c722006-05-07 17:49:38 +00001961 assert( pPager->aHash[pPg->pgno & (pPager->nHash-1)]!=pPg );
danielk1977f5fdda82004-11-03 08:44:05 +00001962 pPg->pPrevHash->pNextHash = pPg->pNextHash;
1963 }else{
drh8ca0c722006-05-07 17:49:38 +00001964 int h = pPg->pgno & (pPager->nHash-1);
danielk1977f5fdda82004-11-03 08:44:05 +00001965 pPager->aHash[h] = pPg->pNextHash;
1966 }
drh5229ae42006-03-23 23:29:04 +00001967 if( MEMDB ){
drh5229ae42006-03-23 23:29:04 +00001968 clearHistory(PGHDR_TO_HIST(pPg, pPager));
1969 }
danielk1977f5fdda82004-11-03 08:44:05 +00001970 pPg->pgno = 0;
1971 pPg->pNextHash = pPg->pPrevHash = 0;
1972}
1973
1974/*
drhac69b052004-05-12 13:30:07 +00001975** Unlink a page from the free list (the list of all pages where nRef==0)
1976** and from its hash collision chain.
1977*/
1978static void unlinkPage(PgHdr *pPg){
1979 Pager *pPager = pPg->pPager;
1980
1981 /* Keep the pFirstSynced pointer pointing at the first synchronized page */
1982 if( pPg==pPager->pFirstSynced ){
1983 PgHdr *p = pPg->pNextFree;
1984 while( p && p->needSync ){ p = p->pNextFree; }
1985 pPager->pFirstSynced = p;
1986 }
1987
1988 /* Unlink from the freelist */
1989 if( pPg->pPrevFree ){
1990 pPg->pPrevFree->pNextFree = pPg->pNextFree;
1991 }else{
1992 assert( pPager->pFirst==pPg );
1993 pPager->pFirst = pPg->pNextFree;
1994 }
1995 if( pPg->pNextFree ){
1996 pPg->pNextFree->pPrevFree = pPg->pPrevFree;
1997 }else{
1998 assert( pPager->pLast==pPg );
1999 pPager->pLast = pPg->pPrevFree;
2000 }
2001 pPg->pNextFree = pPg->pPrevFree = 0;
2002
2003 /* Unlink from the pgno hash table */
danielk1977f5fdda82004-11-03 08:44:05 +00002004 unlinkHashChain(pPager, pPg);
drhac69b052004-05-12 13:30:07 +00002005}
2006
danielk1977b84f96f2005-01-20 11:32:23 +00002007#ifndef SQLITE_OMIT_MEMORYDB
drhac69b052004-05-12 13:30:07 +00002008/*
2009** This routine is used to truncate an in-memory database. Delete
danielk1977369f27e2004-06-15 11:40:04 +00002010** all pages whose pgno is larger than pPager->dbSize and is unreferenced.
drhac69b052004-05-12 13:30:07 +00002011** Referenced pages larger than pPager->dbSize are zeroed.
2012*/
2013static void memoryTruncate(Pager *pPager){
2014 PgHdr *pPg;
2015 PgHdr **ppPg;
2016 int dbSize = pPager->dbSize;
2017
2018 ppPg = &pPager->pAll;
2019 while( (pPg = *ppPg)!=0 ){
2020 if( pPg->pgno<=dbSize ){
2021 ppPg = &pPg->pNextAll;
2022 }else if( pPg->nRef>0 ){
2023 memset(PGHDR_TO_DATA(pPg), 0, pPager->pageSize);
2024 ppPg = &pPg->pNextAll;
2025 }else{
2026 *ppPg = pPg->pNextAll;
2027 unlinkPage(pPg);
drh605ad8f2006-05-03 23:34:05 +00002028 makeClean(pPg);
drhac69b052004-05-12 13:30:07 +00002029 sqliteFree(pPg);
2030 pPager->nPage--;
2031 }
2032 }
2033}
danielk1977b84f96f2005-01-20 11:32:23 +00002034#else
2035#define memoryTruncate(p)
2036#endif
drhac69b052004-05-12 13:30:07 +00002037
drhf7c57532003-04-25 13:22:51 +00002038/*
danielk197717221812005-02-15 03:38:05 +00002039** Try to obtain a lock on a file. Invoke the busy callback if the lock
drha4afb652005-07-09 02:16:02 +00002040** is currently not available. Repeat until the busy callback returns
danielk197717221812005-02-15 03:38:05 +00002041** false or until the lock succeeds.
2042**
2043** Return SQLITE_OK on success and an error code if we cannot obtain
2044** the lock.
2045*/
2046static int pager_wait_on_lock(Pager *pPager, int locktype){
2047 int rc;
drh1aa2d8b2007-01-03 15:34:29 +00002048
2049 /* The OS lock values must be the same as the Pager lock values */
danielk197717221812005-02-15 03:38:05 +00002050 assert( PAGER_SHARED==SHARED_LOCK );
2051 assert( PAGER_RESERVED==RESERVED_LOCK );
2052 assert( PAGER_EXCLUSIVE==EXCLUSIVE_LOCK );
drh1aa2d8b2007-01-03 15:34:29 +00002053
2054 /* If the file is currently unlocked then the size must be unknown */
2055 assert( pPager->state>=PAGER_SHARED || pPager->dbSize<0 || MEMDB );
2056
danielk197717221812005-02-15 03:38:05 +00002057 if( pPager->state>=locktype ){
2058 rc = SQLITE_OK;
2059 }else{
danielk197717221812005-02-15 03:38:05 +00002060 do {
drh054889e2005-11-30 03:20:31 +00002061 rc = sqlite3OsLock(pPager->fd, locktype);
drha4afb652005-07-09 02:16:02 +00002062 }while( rc==SQLITE_BUSY && sqlite3InvokeBusyHandler(pPager->pBusyHandler) );
danielk197717221812005-02-15 03:38:05 +00002063 if( rc==SQLITE_OK ){
2064 pPager->state = locktype;
drhb0603412007-02-28 04:47:26 +00002065 IOTRACE(("LOCK %p %d\n", pPager, locktype))
danielk197717221812005-02-15 03:38:05 +00002066 }
2067 }
2068 return rc;
2069}
2070
2071/*
drhf7c57532003-04-25 13:22:51 +00002072** Truncate the file to the number of pages specified.
2073*/
danielk19773b8a05f2007-03-19 17:44:26 +00002074int sqlite3PagerTruncate(Pager *pPager, Pgno nPage){
drhf7c57532003-04-25 13:22:51 +00002075 int rc;
drh1aa2d8b2007-01-03 15:34:29 +00002076 assert( pPager->state>=PAGER_SHARED || MEMDB );
danielk19773b8a05f2007-03-19 17:44:26 +00002077 sqlite3PagerPagecount(pPager);
danielk1977efaaf572006-01-16 11:29:19 +00002078 if( pPager->errCode ){
2079 rc = pPager->errCode;
drh2e6d11b2003-04-25 15:37:57 +00002080 return rc;
2081 }
drh7d02cb72003-06-04 16:24:39 +00002082 if( nPage>=(unsigned)pPager->dbSize ){
drhf7c57532003-04-25 13:22:51 +00002083 return SQLITE_OK;
2084 }
drhb7f91642004-10-31 02:22:47 +00002085 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00002086 pPager->dbSize = nPage;
2087 memoryTruncate(pPager);
2088 return SQLITE_OK;
2089 }
danielk197776572402004-06-25 02:38:54 +00002090 rc = syncJournal(pPager);
danielk1977369f27e2004-06-15 11:40:04 +00002091 if( rc!=SQLITE_OK ){
2092 return rc;
2093 }
danielk197717221812005-02-15 03:38:05 +00002094
2095 /* Get an exclusive lock on the database before truncating. */
2096 rc = pager_wait_on_lock(pPager, EXCLUSIVE_LOCK);
2097 if( rc!=SQLITE_OK ){
2098 return rc;
2099 }
2100
drhcb4c40b2004-08-18 19:09:43 +00002101 rc = pager_truncate(pPager, nPage);
drhf7c57532003-04-25 13:22:51 +00002102 if( rc==SQLITE_OK ){
2103 pPager->dbSize = nPage;
2104 }
2105 return rc;
2106}
2107
2108/*
drhed7c8552001-04-11 14:29:21 +00002109** Shutdown the page cache. Free all memory and close all files.
2110**
2111** If a transaction was in progress when this routine is called, that
2112** transaction is rolled back. All outstanding pages are invalidated
2113** and their memory is freed. Any attempt to use a page associated
2114** with this page cache after this function returns will likely
2115** result in a coredump.
danielk1977aef0bf62005-12-30 16:28:01 +00002116**
2117** This function always succeeds. If a transaction is active an attempt
2118** is made to roll it back. If an error occurs during the rollback
2119** a hot journal may be left in the filesystem but no error is returned
2120** to the caller.
drhed7c8552001-04-11 14:29:21 +00002121*/
danielk19773b8a05f2007-03-19 17:44:26 +00002122int sqlite3PagerClose(Pager *pPager){
drh6f7adc82006-01-11 21:41:20 +00002123#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
danielk197754f01982006-01-18 15:25:17 +00002124 /* A malloc() cannot fail in sqlite3ThreadData() as one or more calls to
2125 ** malloc() must have already been made by this thread before it gets
2126 ** to this point. This means the ThreadData must have been allocated already
2127 ** so that ThreadData.nAlloc can be set.
2128 */
danielk19778212def2006-01-16 15:32:23 +00002129 ThreadData *pTsd = sqlite3ThreadData();
danielk197776e8d1a2006-01-18 18:22:43 +00002130 assert( pPager );
danielk197754f01982006-01-18 15:25:17 +00002131 assert( pTsd && pTsd->nAlloc );
danielk197713f72992005-12-18 08:51:22 +00002132#endif
2133
drhbafda092007-01-03 23:36:22 +00002134 disable_simulated_io_errors();
drhc2ee76c2007-01-04 14:58:14 +00002135 pPager->errCode = 0;
danielk197741483462007-03-24 16:45:04 +00002136 pPager->exclusiveMode = 0;
drhbafda092007-01-03 23:36:22 +00002137 pager_reset(pPager);
danielk1977e277be02007-03-23 18:12:06 +00002138 pagerUnlockAndRollback(pPager);
drhbafda092007-01-03 23:36:22 +00002139 enable_simulated_io_errors();
danielk1977ef73ee92004-11-06 12:26:07 +00002140 TRACE2("CLOSE %d\n", PAGERID(pPager));
drhb0603412007-02-28 04:47:26 +00002141 IOTRACE(("CLOSE %p\n", pPager))
danielk1977efaaf572006-01-16 11:29:19 +00002142 assert( pPager->errCode || (pPager->journalOpen==0 && pPager->stmtOpen==0) );
danielk1977e94ddc92005-03-21 03:53:38 +00002143 if( pPager->journalOpen ){
drh054889e2005-11-30 03:20:31 +00002144 sqlite3OsClose(&pPager->jfd);
danielk1977e94ddc92005-03-21 03:53:38 +00002145 }
drh88b01a12005-03-28 18:04:27 +00002146 sqliteFree(pPager->aInJournal);
danielk1977e94ddc92005-03-21 03:53:38 +00002147 if( pPager->stmtOpen ){
drh054889e2005-11-30 03:20:31 +00002148 sqlite3OsClose(&pPager->stfd);
danielk1977e94ddc92005-03-21 03:53:38 +00002149 }
drh054889e2005-11-30 03:20:31 +00002150 sqlite3OsClose(&pPager->fd);
drh0f892532002-05-30 12:27:03 +00002151 /* Temp files are automatically deleted by the OS
2152 ** if( pPager->tempFile ){
drh66560ad2006-01-06 14:32:19 +00002153 ** sqlite3OsDelete(pPager->zFilename);
drh0f892532002-05-30 12:27:03 +00002154 ** }
2155 */
danielk1977aca790a2005-01-13 11:07:52 +00002156
drh6f7adc82006-01-11 21:41:20 +00002157#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
danielk1977aef0bf62005-12-30 16:28:01 +00002158 /* Remove the pager from the linked list of pagers starting at
danielk197752622822006-01-09 09:59:49 +00002159 ** ThreadData.pPager if memory-management is enabled.
danielk1977aef0bf62005-12-30 16:28:01 +00002160 */
danielk19778212def2006-01-16 15:32:23 +00002161 if( pPager==pTsd->pPager ){
2162 pTsd->pPager = pPager->pNext;
2163 }else{
2164 Pager *pTmp;
drh74161702006-02-24 02:53:49 +00002165 for(pTmp = pTsd->pPager; pTmp->pNext!=pPager; pTmp=pTmp->pNext){}
danielk19778212def2006-01-16 15:32:23 +00002166 pTmp->pNext = pPager->pNext;
danielk197713f72992005-12-18 08:51:22 +00002167 }
2168#endif
drh8ca0c722006-05-07 17:49:38 +00002169 sqliteFree(pPager->aHash);
danielk19778186df82007-03-06 13:45:59 +00002170 sqliteFree(pPager->pTmpSpace);
drhed7c8552001-04-11 14:29:21 +00002171 sqliteFree(pPager);
2172 return SQLITE_OK;
2173}
2174
2175/*
drh5e00f6c2001-09-13 13:46:56 +00002176** Return the page number for the given page data.
drhed7c8552001-04-11 14:29:21 +00002177*/
danielk19773b8a05f2007-03-19 17:44:26 +00002178Pgno sqlite3PagerPagenumber(DbPage *p){
drhed7c8552001-04-11 14:29:21 +00002179 return p->pgno;
2180}
2181
2182/*
drhc8629a12004-05-08 20:07:40 +00002183** The page_ref() function increments the reference count for a page.
2184** If the page is currently on the freelist (the reference count is zero) then
drh7e3b0a02001-04-28 16:52:40 +00002185** remove it from the freelist.
drhc8629a12004-05-08 20:07:40 +00002186**
2187** For non-test systems, page_ref() is a macro that calls _page_ref()
2188** online of the reference count is zero. For test systems, page_ref()
2189** is a real function so that we can set breakpoints and trace it.
drh7e3b0a02001-04-28 16:52:40 +00002190*/
drh836faa42003-01-11 13:30:57 +00002191static void _page_ref(PgHdr *pPg){
drh7e3b0a02001-04-28 16:52:40 +00002192 if( pPg->nRef==0 ){
2193 /* The page is currently on the freelist. Remove it. */
drh341eae82003-01-21 02:39:36 +00002194 if( pPg==pPg->pPager->pFirstSynced ){
2195 PgHdr *p = pPg->pNextFree;
2196 while( p && p->needSync ){ p = p->pNextFree; }
2197 pPg->pPager->pFirstSynced = p;
2198 }
drh7e3b0a02001-04-28 16:52:40 +00002199 if( pPg->pPrevFree ){
2200 pPg->pPrevFree->pNextFree = pPg->pNextFree;
2201 }else{
2202 pPg->pPager->pFirst = pPg->pNextFree;
2203 }
2204 if( pPg->pNextFree ){
2205 pPg->pNextFree->pPrevFree = pPg->pPrevFree;
2206 }else{
2207 pPg->pPager->pLast = pPg->pPrevFree;
2208 }
2209 pPg->pPager->nRef++;
2210 }
2211 pPg->nRef++;
drhdd793422001-06-28 01:54:48 +00002212 REFINFO(pPg);
drhdf0b3b02001-06-23 11:36:20 +00002213}
danielk1977aca790a2005-01-13 11:07:52 +00002214#ifdef SQLITE_DEBUG
drhc8629a12004-05-08 20:07:40 +00002215 static void page_ref(PgHdr *pPg){
2216 if( pPg->nRef==0 ){
2217 _page_ref(pPg);
2218 }else{
2219 pPg->nRef++;
2220 REFINFO(pPg);
2221 }
2222 }
2223#else
2224# define page_ref(P) ((P)->nRef==0?_page_ref(P):(void)(P)->nRef++)
2225#endif
drhdf0b3b02001-06-23 11:36:20 +00002226
2227/*
2228** Increment the reference count for a page. The input pointer is
2229** a reference to the page data.
2230*/
danielk19773b8a05f2007-03-19 17:44:26 +00002231int sqlite3PagerRef(DbPage *pPg){
drhdf0b3b02001-06-23 11:36:20 +00002232 page_ref(pPg);
drh8c42ca92001-06-22 19:15:00 +00002233 return SQLITE_OK;
drh7e3b0a02001-04-28 16:52:40 +00002234}
2235
2236/*
drh34e79ce2004-02-08 06:05:46 +00002237** Sync the journal. In other words, make sure all the pages that have
2238** been written to the journal have actually reached the surface of the
2239** disk. It is not safe to modify the original database file until after
2240** the journal has been synced. If the original database is modified before
2241** the journal is synced and a power failure occurs, the unsynced journal
2242** data would be lost and we would be unable to completely rollback the
2243** database changes. Database corruption would occur.
2244**
2245** This routine also updates the nRec field in the header of the journal.
2246** (See comments on the pager_playback() routine for additional information.)
2247** If the sync mode is FULL, two syncs will occur. First the whole journal
2248** is synced, then the nRec field is updated, then a second sync occurs.
drhb19a2bc2001-09-16 00:13:26 +00002249**
drh34e79ce2004-02-08 06:05:46 +00002250** For temporary databases, we do not care if we are able to rollback
2251** after a power failure, so sync occurs.
drhfa86c412002-02-02 15:01:15 +00002252**
drh34e79ce2004-02-08 06:05:46 +00002253** This routine clears the needSync field of every page current held in
2254** memory.
drh50e5dad2001-09-15 00:57:28 +00002255*/
danielk197776572402004-06-25 02:38:54 +00002256static int syncJournal(Pager *pPager){
drh50e5dad2001-09-15 00:57:28 +00002257 PgHdr *pPg;
2258 int rc = SQLITE_OK;
drh03eb96a2002-11-10 23:32:56 +00002259
2260 /* Sync the journal before modifying the main database
2261 ** (assuming there is a journal and it needs to be synced.)
2262 */
danielk197776572402004-06-25 02:38:54 +00002263 if( pPager->needSync ){
drhfa86c412002-02-02 15:01:15 +00002264 if( !pPager->tempFile ){
drhdb48ee02003-01-16 13:42:43 +00002265 assert( pPager->journalOpen );
drh946966f2004-02-25 02:20:41 +00002266 /* assert( !pPager->noSync ); // noSync might be set if synchronous
2267 ** was turned off after the transaction was started. Ticket #615 */
drh968af522003-02-11 14:55:40 +00002268#ifndef NDEBUG
2269 {
drh34e79ce2004-02-08 06:05:46 +00002270 /* Make sure the pPager->nRec counter we are keeping agrees
2271 ** with the nRec computed from the size of the journal file.
2272 */
drheb206252004-10-01 02:00:31 +00002273 i64 jSz;
drh054889e2005-11-30 03:20:31 +00002274 rc = sqlite3OsFileSize(pPager->jfd, &jSz);
drh968af522003-02-11 14:55:40 +00002275 if( rc!=0 ) return rc;
danielk197776572402004-06-25 02:38:54 +00002276 assert( pPager->journalOff==jSz );
drh968af522003-02-11 14:55:40 +00002277 }
2278#endif
drhae2b40c2004-06-09 19:03:54 +00002279 {
danielk197776572402004-06-25 02:38:54 +00002280 /* Write the nRec value into the journal file header. If in
2281 ** full-synchronous mode, sync the journal first. This ensures that
2282 ** all data has really hit the disk before nRec is updated to mark
2283 ** it as a candidate for rollback.
2284 */
drhd8d66e82003-02-12 02:10:15 +00002285 if( pPager->fullSync ){
danielk1977ef73ee92004-11-06 12:26:07 +00002286 TRACE2("SYNC journal of %d\n", PAGERID(pPager));
drhb0603412007-02-28 04:47:26 +00002287 IOTRACE(("JSYNC %p\n", pPager))
drh054889e2005-11-30 03:20:31 +00002288 rc = sqlite3OsSync(pPager->jfd, 0);
drhd8d66e82003-02-12 02:10:15 +00002289 if( rc!=0 ) return rc;
2290 }
drh054889e2005-11-30 03:20:31 +00002291 rc = sqlite3OsSeek(pPager->jfd,
drhb4746b92005-09-09 01:32:06 +00002292 pPager->journalHdr + sizeof(aJournalMagic));
2293 if( rc ) return rc;
drhb0603412007-02-28 04:47:26 +00002294 IOTRACE(("JHDR %p %lld %d\n", pPager,
2295 pPager->journalHdr + sizeof(aJournalMagic), 4))
drh9cbe6352005-11-29 03:13:21 +00002296 rc = write32bits(pPager->jfd, pPager->nRec);
drh99ee3602003-02-16 19:13:36 +00002297 if( rc ) return rc;
danielk197713adf8a2004-06-03 16:08:41 +00002298
drh054889e2005-11-30 03:20:31 +00002299 rc = sqlite3OsSeek(pPager->jfd, pPager->journalOff);
drhb4746b92005-09-09 01:32:06 +00002300 if( rc ) return rc;
drh968af522003-02-11 14:55:40 +00002301 }
danielk1977ef73ee92004-11-06 12:26:07 +00002302 TRACE2("SYNC journal of %d\n", PAGERID(pPager));
drhb0603412007-02-28 04:47:26 +00002303 IOTRACE(("JSYNC %d\n", pPager))
drhac530b12006-02-11 01:25:50 +00002304 rc = sqlite3OsSync(pPager->jfd, pPager->full_fsync);
drhfa86c412002-02-02 15:01:15 +00002305 if( rc!=0 ) return rc;
drhdb48ee02003-01-16 13:42:43 +00002306 pPager->journalStarted = 1;
drhfa86c412002-02-02 15:01:15 +00002307 }
drh50e5dad2001-09-15 00:57:28 +00002308 pPager->needSync = 0;
drh341eae82003-01-21 02:39:36 +00002309
2310 /* Erase the needSync flag from every page.
2311 */
2312 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
2313 pPg->needSync = 0;
2314 }
2315 pPager->pFirstSynced = pPager->pFirst;
drh50e5dad2001-09-15 00:57:28 +00002316 }
drh03eb96a2002-11-10 23:32:56 +00002317
drh341eae82003-01-21 02:39:36 +00002318#ifndef NDEBUG
2319 /* If the Pager.needSync flag is clear then the PgHdr.needSync
2320 ** flag must also be clear for all pages. Verify that this
2321 ** invariant is true.
drh03eb96a2002-11-10 23:32:56 +00002322 */
drh341eae82003-01-21 02:39:36 +00002323 else{
2324 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
2325 assert( pPg->needSync==0 );
2326 }
2327 assert( pPager->pFirstSynced==pPager->pFirst );
drh03eb96a2002-11-10 23:32:56 +00002328 }
drh341eae82003-01-21 02:39:36 +00002329#endif
drhdb48ee02003-01-16 13:42:43 +00002330
drh81a20f22001-10-12 17:30:04 +00002331 return rc;
drh50e5dad2001-09-15 00:57:28 +00002332}
2333
2334/*
drhdc3e10b2006-06-15 14:31:06 +00002335** Merge two lists of pages connected by pDirty and in pgno order.
2336** Do not both fixing the pPrevDirty pointers.
2337*/
2338static PgHdr *merge_pagelist(PgHdr *pA, PgHdr *pB){
2339 PgHdr result, *pTail;
2340 pTail = &result;
2341 while( pA && pB ){
2342 if( pA->pgno<pB->pgno ){
2343 pTail->pDirty = pA;
2344 pTail = pA;
2345 pA = pA->pDirty;
2346 }else{
2347 pTail->pDirty = pB;
2348 pTail = pB;
2349 pB = pB->pDirty;
2350 }
2351 }
2352 if( pA ){
2353 pTail->pDirty = pA;
2354 }else if( pB ){
2355 pTail->pDirty = pB;
2356 }else{
2357 pTail->pDirty = 0;
2358 }
2359 return result.pDirty;
2360}
2361
2362/*
2363** Sort the list of pages in accending order by pgno. Pages are
2364** connected by pDirty pointers. The pPrevDirty pointers are
2365** corrupted by this sort.
2366*/
2367#define N_SORT_BUCKET 25
2368static PgHdr *sort_pagelist(PgHdr *pIn){
2369 PgHdr *a[N_SORT_BUCKET], *p;
2370 int i;
2371 memset(a, 0, sizeof(a));
2372 while( pIn ){
2373 p = pIn;
2374 pIn = p->pDirty;
2375 p->pDirty = 0;
2376 for(i=0; i<N_SORT_BUCKET-1; i++){
2377 if( a[i]==0 ){
2378 a[i] = p;
2379 break;
2380 }else{
2381 p = merge_pagelist(a[i], p);
2382 a[i] = 0;
2383 }
2384 }
2385 if( i==N_SORT_BUCKET-1 ){
2386 a[i] = merge_pagelist(a[i], p);
2387 }
2388 }
2389 p = a[0];
2390 for(i=1; i<N_SORT_BUCKET; i++){
2391 p = merge_pagelist(p, a[i]);
2392 }
2393 return p;
2394}
2395
2396/*
drh2554f8b2003-01-22 01:26:44 +00002397** Given a list of pages (connected by the PgHdr.pDirty pointer) write
2398** every one of those pages out to the database file and mark them all
2399** as clean.
2400*/
2401static int pager_write_pagelist(PgHdr *pList){
2402 Pager *pPager;
2403 int rc;
2404
2405 if( pList==0 ) return SQLITE_OK;
2406 pPager = pList->pPager;
danielk19779eed5052004-06-04 10:38:30 +00002407
2408 /* At this point there may be either a RESERVED or EXCLUSIVE lock on the
2409 ** database file. If there is already an EXCLUSIVE lock, the following
drh054889e2005-11-30 03:20:31 +00002410 ** calls to sqlite3OsLock() are no-ops.
danielk19779eed5052004-06-04 10:38:30 +00002411 **
drha6abd042004-06-09 17:37:22 +00002412 ** Moving the lock from RESERVED to EXCLUSIVE actually involves going
2413 ** through an intermediate state PENDING. A PENDING lock prevents new
2414 ** readers from attaching to the database but is unsufficient for us to
2415 ** write. The idea of a PENDING lock is to prevent new readers from
2416 ** coming in while we wait for existing readers to clear.
danielk19779eed5052004-06-04 10:38:30 +00002417 **
drha6abd042004-06-09 17:37:22 +00002418 ** While the pager is in the RESERVED state, the original database file
2419 ** is unchanged and we can rollback without having to playback the
2420 ** journal into the original database file. Once we transition to
2421 ** EXCLUSIVE, it means the database file has been changed and any rollback
2422 ** will require a journal playback.
danielk19779eed5052004-06-04 10:38:30 +00002423 */
drh684917c2004-10-05 02:41:42 +00002424 rc = pager_wait_on_lock(pPager, EXCLUSIVE_LOCK);
danielk19779eed5052004-06-04 10:38:30 +00002425 if( rc!=SQLITE_OK ){
2426 return rc;
2427 }
2428
drhdc3e10b2006-06-15 14:31:06 +00002429 pList = sort_pagelist(pList);
drh2554f8b2003-01-22 01:26:44 +00002430 while( pList ){
2431 assert( pList->dirty );
drh054889e2005-11-30 03:20:31 +00002432 rc = sqlite3OsSeek(pPager->fd, (pList->pgno-1)*(i64)pPager->pageSize);
drhb4746b92005-09-09 01:32:06 +00002433 if( rc ) return rc;
danielk1977687566d2004-11-02 12:56:41 +00002434 /* If there are dirty pages in the page cache with page numbers greater
danielk19773b8a05f2007-03-19 17:44:26 +00002435 ** than Pager.dbSize, this means sqlite3PagerTruncate() was called to
danielk1977687566d2004-11-02 12:56:41 +00002436 ** make the file smaller (presumably by auto-vacuum code). Do not write
2437 ** any such pages to the file.
2438 */
2439 if( pList->pgno<=pPager->dbSize ){
drhc001c582006-03-06 18:23:16 +00002440 char *pData = CODEC2(pPager, PGHDR_TO_DATA(pList), pList->pgno, 6);
danielk1977ef73ee92004-11-06 12:26:07 +00002441 TRACE3("STORE %d page %d\n", PAGERID(pPager), pList->pgno);
drhb0603412007-02-28 04:47:26 +00002442 IOTRACE(("PGOUT %p %d\n", pPager, pList->pgno))
drhc001c582006-03-06 18:23:16 +00002443 rc = sqlite3OsWrite(pPager->fd, pData, pPager->pageSize);
drhfcd35c72005-05-21 02:48:08 +00002444 TEST_INCR(pPager->nWrite);
danielk1977687566d2004-11-02 12:56:41 +00002445 }
2446#ifndef NDEBUG
2447 else{
danielk1977ef73ee92004-11-06 12:26:07 +00002448 TRACE3("NOSTORE %d page %d\n", PAGERID(pPager), pList->pgno);
danielk1977687566d2004-11-02 12:56:41 +00002449 }
2450#endif
drh2554f8b2003-01-22 01:26:44 +00002451 if( rc ) return rc;
2452 pList->dirty = 0;
danielk19773c407372005-02-15 02:54:14 +00002453#ifdef SQLITE_CHECK_PAGES
2454 pList->pageHash = pager_pagehash(pList);
2455#endif
drh2554f8b2003-01-22 01:26:44 +00002456 pList = pList->pDirty;
2457 }
2458 return SQLITE_OK;
2459}
2460
2461/*
2462** Collect every dirty page into a dirty list and
2463** return a pointer to the head of that list. All pages are
2464** collected even if they are still in use.
2465*/
2466static PgHdr *pager_get_all_dirty_pages(Pager *pPager){
drh605ad8f2006-05-03 23:34:05 +00002467 return pPager->pDirty;
drh2554f8b2003-01-22 01:26:44 +00002468}
2469
2470/*
drh165ffe92005-03-15 17:09:30 +00002471** Return TRUE if there is a hot journal on the given pager.
2472** A hot journal is one that needs to be played back.
2473**
2474** If the current size of the database file is 0 but a journal file
2475** exists, that is probably an old journal left over from a prior
2476** database with the same name. Just delete the journal.
2477*/
2478static int hasHotJournal(Pager *pPager){
2479 if( !pPager->useJournal ) return 0;
drh66560ad2006-01-06 14:32:19 +00002480 if( !sqlite3OsFileExists(pPager->zJournal) ) return 0;
drh054889e2005-11-30 03:20:31 +00002481 if( sqlite3OsCheckReservedLock(pPager->fd) ) return 0;
danielk19773b8a05f2007-03-19 17:44:26 +00002482 if( sqlite3PagerPagecount(pPager)==0 ){
drh66560ad2006-01-06 14:32:19 +00002483 sqlite3OsDelete(pPager->zJournal);
drh165ffe92005-03-15 17:09:30 +00002484 return 0;
2485 }else{
2486 return 1;
2487 }
2488}
2489
danielk19775591df52005-12-20 09:19:37 +00002490/*
danielk1977aef0bf62005-12-30 16:28:01 +00002491** Try to find a page in the cache that can be recycled.
2492**
2493** This routine may return SQLITE_IOERR, SQLITE_FULL or SQLITE_OK. It
danielk1977efaaf572006-01-16 11:29:19 +00002494** does not set the pPager->errCode variable.
danielk19775591df52005-12-20 09:19:37 +00002495*/
danielk197713f72992005-12-18 08:51:22 +00002496static int pager_recycle(Pager *pPager, int syncOk, PgHdr **ppPg){
2497 PgHdr *pPg;
2498 *ppPg = 0;
2499
2500 /* Find a page to recycle. Try to locate a page that does not
2501 ** require us to do an fsync() on the journal.
2502 */
2503 pPg = pPager->pFirstSynced;
2504
2505 /* If we could not find a page that does not require an fsync()
2506 ** on the journal file then fsync the journal file. This is a
2507 ** very slow operation, so we work hard to avoid it. But sometimes
2508 ** it can't be helped.
2509 */
danielk19775591df52005-12-20 09:19:37 +00002510 if( pPg==0 && pPager->pFirst && syncOk && !MEMDB){
danielk197713f72992005-12-18 08:51:22 +00002511 int rc = syncJournal(pPager);
2512 if( rc!=0 ){
danielk1977aef0bf62005-12-30 16:28:01 +00002513 return rc;
danielk197713f72992005-12-18 08:51:22 +00002514 }
2515 if( pPager->fullSync ){
2516 /* If in full-sync mode, write a new journal header into the
2517 ** journal file. This is done to avoid ever modifying a journal
2518 ** header that is involved in the rollback of pages that have
2519 ** already been written to the database (in case the header is
2520 ** trashed when the nRec field is updated).
2521 */
2522 pPager->nRec = 0;
2523 assert( pPager->journalOff > 0 );
danielk19774099f6e2007-03-19 11:25:20 +00002524 assert( pPager->doNotSync==0 );
danielk197713f72992005-12-18 08:51:22 +00002525 rc = writeJournalHdr(pPager);
2526 if( rc!=0 ){
danielk1977aef0bf62005-12-30 16:28:01 +00002527 return rc;
danielk197713f72992005-12-18 08:51:22 +00002528 }
2529 }
2530 pPg = pPager->pFirst;
2531 }
2532 if( pPg==0 ){
2533 return SQLITE_OK;
2534 }
2535
2536 assert( pPg->nRef==0 );
2537
2538 /* Write the page to the database file if it is dirty.
2539 */
2540 if( pPg->dirty ){
2541 int rc;
2542 assert( pPg->needSync==0 );
drh605ad8f2006-05-03 23:34:05 +00002543 makeClean(pPg);
2544 pPg->dirty = 1;
danielk197713f72992005-12-18 08:51:22 +00002545 pPg->pDirty = 0;
2546 rc = pager_write_pagelist( pPg );
2547 if( rc!=SQLITE_OK ){
danielk1977aef0bf62005-12-30 16:28:01 +00002548 return rc;
danielk197713f72992005-12-18 08:51:22 +00002549 }
2550 }
2551 assert( pPg->dirty==0 );
2552
2553 /* If the page we are recycling is marked as alwaysRollback, then
2554 ** set the global alwaysRollback flag, thus disabling the
2555 ** sqlite_dont_rollback() optimization for the rest of this transaction.
2556 ** It is necessary to do this because the page marked alwaysRollback
2557 ** might be reloaded at a later time but at that point we won't remember
2558 ** that is was marked alwaysRollback. This means that all pages must
2559 ** be marked as alwaysRollback from here on out.
2560 */
2561 if( pPg->alwaysRollback ){
drh602c2372007-03-01 00:29:13 +00002562 IOTRACE(("ALWAYS_ROLLBACK %p\n", pPager))
danielk197713f72992005-12-18 08:51:22 +00002563 pPager->alwaysRollback = 1;
2564 }
2565
2566 /* Unlink the old page from the free list and the hash table
2567 */
2568 unlinkPage(pPg);
2569 TEST_INCR(pPager->nOvfl);
2570
2571 *ppPg = pPg;
2572 return SQLITE_OK;
2573}
2574
2575/*
2576** This function is called to free superfluous dynamically allocated memory
2577** held by the pager system. Memory in use by any SQLite pager allocated
2578** by the current thread may be sqliteFree()ed.
2579**
2580** nReq is the number of bytes of memory required. Once this much has
danielk19770190d1d2005-12-19 14:18:11 +00002581** been released, the function returns. A negative value for nReq means
2582** free as much memory as possible. The return value is the total number
danielk197713f72992005-12-18 08:51:22 +00002583** of bytes of memory released.
2584*/
drh6f7adc82006-01-11 21:41:20 +00002585#ifdef SQLITE_ENABLE_MEMORY_MANAGEMENT
danielk19773b8a05f2007-03-19 17:44:26 +00002586int sqlite3PagerReleaseMemory(int nReq){
drh6f7adc82006-01-11 21:41:20 +00002587 const ThreadData *pTsdro = sqlite3ThreadDataReadOnly();
danielk19770190d1d2005-12-19 14:18:11 +00002588 Pager *p;
danielk197713f72992005-12-18 08:51:22 +00002589 int nReleased = 0;
2590 int i;
2591
drh29c636b2006-01-09 23:40:25 +00002592 /* If the the global mutex is held, this subroutine becomes a
2593 ** o-op; zero bytes of memory are freed. This is because
2594 ** some of the code invoked by this function may also
2595 ** try to obtain the mutex, resulting in a deadlock.
danielk1977441b09a2006-01-05 13:48:29 +00002596 */
drh757b04e2006-01-18 17:25:45 +00002597 if( sqlite3OsInMutex(0) ){
danielk1977441b09a2006-01-05 13:48:29 +00002598 return 0;
2599 }
2600
danielk197713f72992005-12-18 08:51:22 +00002601 /* Outermost loop runs for at most two iterations. First iteration we
2602 ** try to find memory that can be released without calling fsync(). Second
2603 ** iteration (which only runs if the first failed to free nReq bytes of
2604 ** memory) is permitted to call fsync(). This is of course much more
2605 ** expensive.
2606 */
drh29c636b2006-01-09 23:40:25 +00002607 for(i=0; i<=1; i++){
danielk197713f72992005-12-18 08:51:22 +00002608
2609 /* Loop through all the SQLite pagers opened by the current thread. */
drh6f7adc82006-01-11 21:41:20 +00002610 for(p=pTsdro->pPager; p && (nReq<0 || nReleased<nReq); p=p->pNext){
danielk197713f72992005-12-18 08:51:22 +00002611 PgHdr *pPg;
2612 int rc;
2613
2614 /* For each pager, try to free as many pages as possible (without
2615 ** calling fsync() if this is the first iteration of the outermost
2616 ** loop).
2617 */
danielk19770190d1d2005-12-19 14:18:11 +00002618 while( SQLITE_OK==(rc = pager_recycle(p, i, &pPg)) && pPg) {
danielk1977aef0bf62005-12-30 16:28:01 +00002619 /* We've found a page to free. At this point the page has been
danielk197713f72992005-12-18 08:51:22 +00002620 ** removed from the page hash-table, free-list and synced-list
danielk1977aef0bf62005-12-30 16:28:01 +00002621 ** (pFirstSynced). It is still in the all pages (pAll) list.
danielk197713f72992005-12-18 08:51:22 +00002622 ** Remove it from this list before freeing.
2623 **
2624 ** Todo: Check the Pager.pStmt list to make sure this is Ok. It
2625 ** probably is though.
2626 */
2627 PgHdr *pTmp;
danielk19770190d1d2005-12-19 14:18:11 +00002628 assert( pPg );
danielk1977aef0bf62005-12-30 16:28:01 +00002629 page_remove_from_stmt_list(pPg);
danielk19770190d1d2005-12-19 14:18:11 +00002630 if( pPg==p->pAll ){
2631 p->pAll = pPg->pNextAll;
danielk197713f72992005-12-18 08:51:22 +00002632 }else{
drh74161702006-02-24 02:53:49 +00002633 for( pTmp=p->pAll; pTmp->pNextAll!=pPg; pTmp=pTmp->pNextAll ){}
danielk197713f72992005-12-18 08:51:22 +00002634 pTmp->pNextAll = pPg->pNextAll;
2635 }
2636 nReleased += sqliteAllocSize(pPg);
2637 sqliteFree(pPg);
2638 }
2639
2640 if( rc!=SQLITE_OK ){
danielk1977aef0bf62005-12-30 16:28:01 +00002641 /* An error occured whilst writing to the database file or
2642 ** journal in pager_recycle(). The error is not returned to the
danielk1977efaaf572006-01-16 11:29:19 +00002643 ** caller of this function. Instead, set the Pager.errCode variable.
danielk1977aef0bf62005-12-30 16:28:01 +00002644 ** The error will be returned to the user (or users, in the case
2645 ** of a shared pager cache) of the pager for which the error occured.
danielk197713f72992005-12-18 08:51:22 +00002646 */
drh4ac285a2006-09-15 07:28:50 +00002647 assert( (rc&0xff)==SQLITE_IOERR || rc==SQLITE_FULL );
danielk1977aef0bf62005-12-30 16:28:01 +00002648 assert( p->state>=PAGER_RESERVED );
2649 pager_error(p, rc);
danielk197713f72992005-12-18 08:51:22 +00002650 }
2651 }
2652 }
danielk1977aef0bf62005-12-30 16:28:01 +00002653
danielk197713f72992005-12-18 08:51:22 +00002654 return nReleased;
2655}
drh6f7adc82006-01-11 21:41:20 +00002656#endif /* SQLITE_ENABLE_MEMORY_MANAGEMENT */
danielk197713f72992005-12-18 08:51:22 +00002657
drh165ffe92005-03-15 17:09:30 +00002658/*
danielk1977e277be02007-03-23 18:12:06 +00002659** This function is called to obtain the shared lock required before
2660** data may be read from the pager cache. If the shared lock has already
2661** been obtained, this function is a no-op.
2662*/
2663static int pagerSharedLock(Pager *pPager){
2664 int rc = SQLITE_OK;
2665
2666 if( pPager->state==PAGER_UNLOCK ){
2667 if( !MEMDB ){
2668 assert( pPager->nRef==0 );
2669 if( !pPager->noReadlock ){
2670 rc = pager_wait_on_lock(pPager, SHARED_LOCK);
2671 if( rc!=SQLITE_OK ){
2672 return pager_error(pPager, rc);
2673 }
2674 assert( pPager->state>=SHARED_LOCK );
2675 }
2676
2677 /* If a journal file exists, and there is no RESERVED lock on the
2678 ** database file, then it either needs to be played back or deleted.
2679 */
2680 if( hasHotJournal(pPager) ){
2681 /* Get an EXCLUSIVE lock on the database file. At this point it is
2682 ** important that a RESERVED lock is not obtained on the way to the
2683 ** EXCLUSIVE lock. If it were, another process might open the
2684 ** database file, detect the RESERVED lock, and conclude that the
2685 ** database is safe to read while this process is still rolling it
2686 ** back.
2687 **
2688 ** Because the intermediate RESERVED lock is not requested, the
2689 ** second process will get to this point in the code and fail to
2690 ** obtain it's own EXCLUSIVE lock on the database file.
2691 */
2692 rc = sqlite3OsLock(pPager->fd, EXCLUSIVE_LOCK);
2693 if( rc!=SQLITE_OK ){
2694 pager_unlock(pPager);
2695 return pager_error(pPager, rc);
2696 }
2697 pPager->state = PAGER_EXCLUSIVE;
2698
2699 /* Open the journal for reading only. Return SQLITE_BUSY if
2700 ** we are unable to open the journal file.
2701 **
2702 ** The journal file does not need to be locked itself. The
2703 ** journal file is never open unless the main database file holds
2704 ** a write lock, so there is never any chance of two or more
2705 ** processes opening the journal at the same time.
2706 */
2707 rc = sqlite3OsOpenReadOnly(pPager->zJournal, &pPager->jfd);
2708 if( rc!=SQLITE_OK ){
2709 pager_unlock(pPager);
2710 return SQLITE_BUSY;
2711 }
2712 pPager->journalOpen = 1;
2713 pPager->journalStarted = 0;
2714 pPager->journalOff = 0;
2715 pPager->setMaster = 0;
2716 pPager->journalHdr = 0;
2717
2718 /* Playback and delete the journal. Drop the database write
2719 ** lock and reacquire the read lock.
2720 */
2721 rc = pager_playback(pPager, 1);
2722 if( rc!=SQLITE_OK ){
2723 return pager_error(pPager, rc);
2724 }
2725 }
2726
2727 if( pPager->pAll ){
2728 PgHdr *pPage1 = pager_lookup(pPager, 1);
2729 if( pPage1 ){
2730 unlinkHashChain(pPager, pPage1);
2731 }
2732
2733 assert( !pager_lookup(pPager, 1) );
2734 rc = sqlite3PagerAcquire(pPager, 1, &pPage1, 0);
2735 if( rc==SQLITE_OK ){
2736 /* The change-counter is stored at offset 24. See also
2737 ** pager_incr_changecounter().
2738 */
2739 u32 iChangeCount = retrieve32bits(pPage1, 24);
2740 pPager->nRef++;
2741 sqlite3PagerUnref(pPage1);
2742 pPager->nRef--;
2743 if( iChangeCount!=pPager->iChangeCount ){
2744 pager_reset(pPager);
danielk1977e277be02007-03-23 18:12:06 +00002745 }
2746 pPager->iChangeCount = iChangeCount;
2747 }
2748 }
2749 }
2750 pPager->state = PAGER_SHARED;
2751 }
2752
2753 return rc;
2754}
2755
2756/*
drhd9b02572001-04-15 00:37:09 +00002757** Acquire a page.
2758**
drh58a11682001-11-10 13:51:08 +00002759** A read lock on the disk file is obtained when the first page is acquired.
drh5e00f6c2001-09-13 13:46:56 +00002760** This read lock is dropped when the last page is released.
drhd9b02572001-04-15 00:37:09 +00002761**
drh306dc212001-05-21 13:45:10 +00002762** A _get works for any page number greater than 0. If the database
2763** file is smaller than the requested page, then no actual disk
2764** read occurs and the memory image of the page is initialized to
2765** all zeros. The extra data appended to a page is always initialized
2766** to zeros the first time a page is loaded into memory.
2767**
drhd9b02572001-04-15 00:37:09 +00002768** The acquisition might fail for several reasons. In all cases,
2769** an appropriate error code is returned and *ppPage is set to NULL.
drh7e3b0a02001-04-28 16:52:40 +00002770**
danielk19773b8a05f2007-03-19 17:44:26 +00002771** See also sqlite3PagerLookup(). Both this routine and _lookup() attempt
drh7e3b0a02001-04-28 16:52:40 +00002772** to find a page in the in-memory cache first. If the page is not already
drh5e00f6c2001-09-13 13:46:56 +00002773** in memory, this routine goes to disk to read it in whereas _lookup()
drh7e3b0a02001-04-28 16:52:40 +00002774** just returns 0. This routine acquires a read-lock the first time it
2775** has to go to disk, and could also playback an old journal if necessary.
2776** Since _lookup() never goes to disk, it never has to deal with locks
2777** or journal files.
drh0787db62007-03-04 13:15:27 +00002778**
2779** If clrFlag is false, the page contents are actually read from disk.
2780** If clfFlag is true, it means the page is about to be erased and
2781** rewritten without first being read so there is no point it doing
2782** the disk I/O.
drhed7c8552001-04-11 14:29:21 +00002783*/
danielk19773b8a05f2007-03-19 17:44:26 +00002784int sqlite3PagerAcquire(Pager *pPager, Pgno pgno, DbPage **ppPage, int clrFlag){
drhed7c8552001-04-11 14:29:21 +00002785 PgHdr *pPg;
drh165ffe92005-03-15 17:09:30 +00002786 int rc;
drhed7c8552001-04-11 14:29:21 +00002787
danielk1977e277be02007-03-23 18:12:06 +00002788 assert( pPager->state==PAGER_UNLOCK || pPager->nRef>0 || pgno==1 );
2789
danielk197726836652005-01-17 01:33:13 +00002790 /* The maximum page number is 2^31. Return SQLITE_CORRUPT if a page
2791 ** number greater than this, or zero, is requested.
2792 */
drh267cb322005-09-16 17:16:52 +00002793 if( pgno>PAGER_MAX_PGNO || pgno==0 || pgno==PAGER_MJ_PGNO(pPager) ){
drh49285702005-09-17 15:20:26 +00002794 return SQLITE_CORRUPT_BKPT;
danielk197726836652005-01-17 01:33:13 +00002795 }
2796
drhd9b02572001-04-15 00:37:09 +00002797 /* Make sure we have not hit any critical errors.
2798 */
drh836faa42003-01-11 13:30:57 +00002799 assert( pPager!=0 );
drh2e6d11b2003-04-25 15:37:57 +00002800 *ppPage = 0;
danielk1977efaaf572006-01-16 11:29:19 +00002801 if( pPager->errCode && pPager->errCode!=SQLITE_FULL ){
2802 return pPager->errCode;
drhd9b02572001-04-15 00:37:09 +00002803 }
2804
danielk197713adf8a2004-06-03 16:08:41 +00002805 /* If this is the first page accessed, then get a SHARED lock
danielk1977334cdb62007-03-26 08:05:12 +00002806 ** on the database file. pagerSharedLock() is a no-op if
2807 ** a database lock is already held.
drhed7c8552001-04-11 14:29:21 +00002808 */
danielk1977e277be02007-03-23 18:12:06 +00002809 rc = pagerSharedLock(pPager);
2810 if( rc!=SQLITE_OK ){
2811 return rc;
drhed7c8552001-04-11 14:29:21 +00002812 }
danielk1977e277be02007-03-23 18:12:06 +00002813 assert( pPager->state!=PAGER_UNLOCK );
2814
2815 pPg = pager_lookup(pPager, pgno);
drhed7c8552001-04-11 14:29:21 +00002816 if( pPg==0 ){
drhd9b02572001-04-15 00:37:09 +00002817 /* The requested page is not in the page cache. */
drhed7c8552001-04-11 14:29:21 +00002818 int h;
drhfcd35c72005-05-21 02:48:08 +00002819 TEST_INCR(pPager->nMiss);
danielk19774099f6e2007-03-19 11:25:20 +00002820 if( pPager->nPage<pPager->mxPage || pPager->pFirst==0 || MEMDB ||
2821 (pPager->pFirstSynced==0 && pPager->doNotSync)
2822 ){
drhed7c8552001-04-11 14:29:21 +00002823 /* Create a new page */
drh8ca0c722006-05-07 17:49:38 +00002824 if( pPager->nPage>=pPager->nHash ){
2825 pager_resize_hash_table(pPager,
2826 pPager->nHash<256 ? 256 : pPager->nHash*2);
2827 if( pPager->nHash==0 ){
2828 return SQLITE_NOMEM;
2829 }
2830 }
drh1c7880e2005-05-20 20:01:55 +00002831 pPg = sqliteMallocRaw( sizeof(*pPg) + pPager->pageSize
drhac69b052004-05-12 13:30:07 +00002832 + sizeof(u32) + pPager->nExtra
drhb7f91642004-10-31 02:22:47 +00002833 + MEMDB*sizeof(PgHistory) );
drhd9b02572001-04-15 00:37:09 +00002834 if( pPg==0 ){
drhd9b02572001-04-15 00:37:09 +00002835 return SQLITE_NOMEM;
2836 }
drh8c1238a2003-01-02 14:43:55 +00002837 memset(pPg, 0, sizeof(*pPg));
drhb7f91642004-10-31 02:22:47 +00002838 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00002839 memset(PGHDR_TO_HIST(pPg, pPager), 0, sizeof(PgHistory));
2840 }
drhed7c8552001-04-11 14:29:21 +00002841 pPg->pPager = pPager;
drhd9b02572001-04-15 00:37:09 +00002842 pPg->pNextAll = pPager->pAll;
drhd79caeb2001-04-15 02:27:24 +00002843 pPager->pAll = pPg;
drhd9b02572001-04-15 00:37:09 +00002844 pPager->nPage++;
danielk1977e94ddc92005-03-21 03:53:38 +00002845 if( pPager->nPage>pPager->nMaxPage ){
2846 assert( pPager->nMaxPage==(pPager->nPage-1) );
2847 pPager->nMaxPage++;
2848 }
drhed7c8552001-04-11 14:29:21 +00002849 }else{
danielk197713f72992005-12-18 08:51:22 +00002850 rc = pager_recycle(pPager, 1, &pPg);
2851 if( rc!=SQLITE_OK ){
danielk197775bab7d2006-01-23 13:09:45 +00002852 return rc;
drh50e5dad2001-09-15 00:57:28 +00002853 }
danielk1977e277be02007-03-23 18:12:06 +00002854 assert( pPager->state>=SHARED_LOCK );
2855 assert(pPg);
drhed7c8552001-04-11 14:29:21 +00002856 }
2857 pPg->pgno = pgno;
drh1ab43002002-01-14 09:28:19 +00002858 if( pPager->aInJournal && (int)pgno<=pPager->origDbSize ){
danielk19774adee202004-05-08 08:23:19 +00002859 sqlite3CheckMemory(pPager->aInJournal, pgno/8);
drhdb48ee02003-01-16 13:42:43 +00002860 assert( pPager->journalOpen );
drh6019e162001-07-02 17:51:45 +00002861 pPg->inJournal = (pPager->aInJournal[pgno/8] & (1<<(pgno&7)))!=0;
drhdb48ee02003-01-16 13:42:43 +00002862 pPg->needSync = 0;
drh6019e162001-07-02 17:51:45 +00002863 }else{
2864 pPg->inJournal = 0;
drhdb48ee02003-01-16 13:42:43 +00002865 pPg->needSync = 0;
drh6019e162001-07-02 17:51:45 +00002866 }
drhac69b052004-05-12 13:30:07 +00002867 if( pPager->aInStmt && (int)pgno<=pPager->stmtSize
2868 && (pPager->aInStmt[pgno/8] & (1<<(pgno&7)))!=0 ){
drh3aac2dd2004-04-26 14:10:20 +00002869 page_add_to_stmt_list(pPg);
drhfa86c412002-02-02 15:01:15 +00002870 }else{
drh3aac2dd2004-04-26 14:10:20 +00002871 page_remove_from_stmt_list(pPg);
drhfa86c412002-02-02 15:01:15 +00002872 }
drh605ad8f2006-05-03 23:34:05 +00002873 makeClean(pPg);
drhed7c8552001-04-11 14:29:21 +00002874 pPg->nRef = 1;
drhdd793422001-06-28 01:54:48 +00002875 REFINFO(pPg);
danielk197775bab7d2006-01-23 13:09:45 +00002876
drhd9b02572001-04-15 00:37:09 +00002877 pPager->nRef++;
drh2e6d11b2003-04-25 15:37:57 +00002878 if( pPager->nExtra>0 ){
drh90f5ecb2004-07-22 01:19:35 +00002879 memset(PGHDR_TO_EXTRA(pPg, pPager), 0, pPager->nExtra);
drh2e6d11b2003-04-25 15:37:57 +00002880 }
danielk1977efaaf572006-01-16 11:29:19 +00002881 if( pPager->errCode ){
danielk19773b8a05f2007-03-19 17:44:26 +00002882 sqlite3PagerUnref(pPg);
danielk1977efaaf572006-01-16 11:29:19 +00002883 rc = pPager->errCode;
drh2e6d11b2003-04-25 15:37:57 +00002884 return rc;
2885 }
danielk197775bab7d2006-01-23 13:09:45 +00002886
2887 /* Populate the page with data, either by reading from the database
2888 ** file, or by setting the entire page to zero.
2889 */
danielk19773b8a05f2007-03-19 17:44:26 +00002890 if( sqlite3PagerPagecount(pPager)<(int)pgno || MEMDB
drh0787db62007-03-04 13:15:27 +00002891 || (clrFlag && !pPager->alwaysRollback)
2892 ){
drh90f5ecb2004-07-22 01:19:35 +00002893 memset(PGHDR_TO_DATA(pPg), 0, pPager->pageSize);
drh306dc212001-05-21 13:45:10 +00002894 }else{
drhb7f91642004-10-31 02:22:47 +00002895 assert( MEMDB==0 );
drh054889e2005-11-30 03:20:31 +00002896 rc = sqlite3OsSeek(pPager->fd, (pgno-1)*(i64)pPager->pageSize);
drhb4746b92005-09-09 01:32:06 +00002897 if( rc==SQLITE_OK ){
drh054889e2005-11-30 03:20:31 +00002898 rc = sqlite3OsRead(pPager->fd, PGHDR_TO_DATA(pPg),
drh9c06c952005-11-26 00:25:00 +00002899 pPager->pageSize);
drhb4746b92005-09-09 01:32:06 +00002900 }
drhb0603412007-02-28 04:47:26 +00002901 IOTRACE(("PGIN %p %d\n", pPager, pgno))
danielk1977ef73ee92004-11-06 12:26:07 +00002902 TRACE3("FETCH %d page %d\n", PAGERID(pPager), pPg->pgno);
drhc001c582006-03-06 18:23:16 +00002903 CODEC1(pPager, PGHDR_TO_DATA(pPg), pPg->pgno, 3);
drh551b7732006-11-06 21:20:25 +00002904 if( rc!=SQLITE_OK && rc!=SQLITE_IOERR_SHORT_READ ){
2905 pPg->pgno = 0;
danielk19773b8a05f2007-03-19 17:44:26 +00002906 sqlite3PagerUnref(pPg);
drh551b7732006-11-06 21:20:25 +00002907 return rc;
danielk197742741be2005-01-08 12:42:39 +00002908 }else{
drhfcd35c72005-05-21 02:48:08 +00002909 TEST_INCR(pPager->nRead);
drh81a20f22001-10-12 17:30:04 +00002910 }
drh306dc212001-05-21 13:45:10 +00002911 }
danielk197775bab7d2006-01-23 13:09:45 +00002912
2913 /* Link the page into the page hash table */
drh8ca0c722006-05-07 17:49:38 +00002914 h = pgno & (pPager->nHash-1);
drh3765df42006-06-28 18:18:09 +00002915 assert( pgno!=0 );
danielk197775bab7d2006-01-23 13:09:45 +00002916 pPg->pNextHash = pPager->aHash[h];
2917 pPager->aHash[h] = pPg;
2918 if( pPg->pNextHash ){
2919 assert( pPg->pNextHash->pPrevHash==0 );
2920 pPg->pNextHash->pPrevHash = pPg;
2921 }
2922
danielk19773c407372005-02-15 02:54:14 +00002923#ifdef SQLITE_CHECK_PAGES
2924 pPg->pageHash = pager_pagehash(pPg);
2925#endif
drhed7c8552001-04-11 14:29:21 +00002926 }else{
drhd9b02572001-04-15 00:37:09 +00002927 /* The requested page is in the page cache. */
danielk1977e277be02007-03-23 18:12:06 +00002928 assert(pPager->nRef>0 || pgno==1);
drhfcd35c72005-05-21 02:48:08 +00002929 TEST_INCR(pPager->nHit);
drhdf0b3b02001-06-23 11:36:20 +00002930 page_ref(pPg);
drhed7c8552001-04-11 14:29:21 +00002931 }
danielk19773b8a05f2007-03-19 17:44:26 +00002932 *ppPage = pPg;
drhed7c8552001-04-11 14:29:21 +00002933 return SQLITE_OK;
2934}
2935
2936/*
drh7e3b0a02001-04-28 16:52:40 +00002937** Acquire a page if it is already in the in-memory cache. Do
2938** not read the page from disk. Return a pointer to the page,
2939** or 0 if the page is not in cache.
2940**
danielk19773b8a05f2007-03-19 17:44:26 +00002941** See also sqlite3PagerGet(). The difference between this routine
2942** and sqlite3PagerGet() is that _get() will go to the disk and read
drh7e3b0a02001-04-28 16:52:40 +00002943** in the page if the page is not already in cache. This routine
drh5e00f6c2001-09-13 13:46:56 +00002944** returns NULL if the page is not in cache or if a disk I/O error
2945** has ever happened.
drh7e3b0a02001-04-28 16:52:40 +00002946*/
danielk19773b8a05f2007-03-19 17:44:26 +00002947DbPage *sqlite3PagerLookup(Pager *pPager, Pgno pgno){
drh7e3b0a02001-04-28 16:52:40 +00002948 PgHdr *pPg;
2949
drh836faa42003-01-11 13:30:57 +00002950 assert( pPager!=0 );
2951 assert( pgno!=0 );
danielk1977e277be02007-03-23 18:12:06 +00002952
2953 if( pPager->state==PAGER_UNLOCK ){
danielk1977334cdb62007-03-26 08:05:12 +00002954 assert( !pPager->pAll || pPager->exclusiveMode );
danielk1977e277be02007-03-23 18:12:06 +00002955 return 0;
2956 }
danielk1977334cdb62007-03-26 08:05:12 +00002957 if( pPager->errCode && pPager->errCode!=SQLITE_FULL ){
drh7e3b0a02001-04-28 16:52:40 +00002958 return 0;
2959 }
drh7e3b0a02001-04-28 16:52:40 +00002960 pPg = pager_lookup(pPager, pgno);
2961 if( pPg==0 ) return 0;
drhdf0b3b02001-06-23 11:36:20 +00002962 page_ref(pPg);
danielk19773b8a05f2007-03-19 17:44:26 +00002963 return pPg;
drh7e3b0a02001-04-28 16:52:40 +00002964}
2965
2966/*
drhed7c8552001-04-11 14:29:21 +00002967** Release a page.
2968**
2969** If the number of references to the page drop to zero, then the
2970** page is added to the LRU list. When all references to all pages
drhd9b02572001-04-15 00:37:09 +00002971** are released, a rollback occurs and the lock on the database is
drhed7c8552001-04-11 14:29:21 +00002972** removed.
2973*/
danielk19773b8a05f2007-03-19 17:44:26 +00002974int sqlite3PagerUnref(DbPage *pPg){
drhd9b02572001-04-15 00:37:09 +00002975
2976 /* Decrement the reference count for this page
2977 */
drhed7c8552001-04-11 14:29:21 +00002978 assert( pPg->nRef>0 );
drhed7c8552001-04-11 14:29:21 +00002979 pPg->nRef--;
drhdd793422001-06-28 01:54:48 +00002980 REFINFO(pPg);
drhd9b02572001-04-15 00:37:09 +00002981
danielk19773c407372005-02-15 02:54:14 +00002982 CHECK_PAGE(pPg);
2983
drh72f82862001-05-24 21:06:34 +00002984 /* When the number of references to a page reach 0, call the
2985 ** destructor and add the page to the freelist.
drhd9b02572001-04-15 00:37:09 +00002986 */
drhed7c8552001-04-11 14:29:21 +00002987 if( pPg->nRef==0 ){
drh1eaa2692001-09-18 02:02:23 +00002988 Pager *pPager;
2989 pPager = pPg->pPager;
drhd9b02572001-04-15 00:37:09 +00002990 pPg->pNextFree = 0;
2991 pPg->pPrevFree = pPager->pLast;
drhed7c8552001-04-11 14:29:21 +00002992 pPager->pLast = pPg;
drhd9b02572001-04-15 00:37:09 +00002993 if( pPg->pPrevFree ){
2994 pPg->pPrevFree->pNextFree = pPg;
drhed7c8552001-04-11 14:29:21 +00002995 }else{
2996 pPager->pFirst = pPg;
2997 }
drh341eae82003-01-21 02:39:36 +00002998 if( pPg->needSync==0 && pPager->pFirstSynced==0 ){
2999 pPager->pFirstSynced = pPg;
3000 }
drh72f82862001-05-24 21:06:34 +00003001 if( pPager->xDestructor ){
danielk19773b8a05f2007-03-19 17:44:26 +00003002 pPager->xDestructor(pPg, pPager->pageSize);
drh72f82862001-05-24 21:06:34 +00003003 }
drhd9b02572001-04-15 00:37:09 +00003004
3005 /* When all pages reach the freelist, drop the read lock from
3006 ** the database file.
3007 */
3008 pPager->nRef--;
3009 assert( pPager->nRef>=0 );
danielk1977e277be02007-03-23 18:12:06 +00003010 if( pPager->nRef==0 ){
danielk1977e277be02007-03-23 18:12:06 +00003011 pagerUnlockAndRollback(pPager);
drhd9b02572001-04-15 00:37:09 +00003012 }
drhed7c8552001-04-11 14:29:21 +00003013 }
drhd9b02572001-04-15 00:37:09 +00003014 return SQLITE_OK;
drhed7c8552001-04-11 14:29:21 +00003015}
3016
3017/*
drha6abd042004-06-09 17:37:22 +00003018** Create a journal file for pPager. There should already be a RESERVED
3019** or EXCLUSIVE lock on the database file when this routine is called.
drhda47d772002-12-02 04:25:19 +00003020**
3021** Return SQLITE_OK if everything. Return an error code and release the
3022** write lock if anything goes wrong.
3023*/
3024static int pager_open_journal(Pager *pPager){
3025 int rc;
drhb7f91642004-10-31 02:22:47 +00003026 assert( !MEMDB );
drha6abd042004-06-09 17:37:22 +00003027 assert( pPager->state>=PAGER_RESERVED );
drhda47d772002-12-02 04:25:19 +00003028 assert( pPager->journalOpen==0 );
3029 assert( pPager->useJournal );
drh88b01a12005-03-28 18:04:27 +00003030 assert( pPager->aInJournal==0 );
danielk19773b8a05f2007-03-19 17:44:26 +00003031 sqlite3PagerPagecount(pPager);
drhda47d772002-12-02 04:25:19 +00003032 pPager->aInJournal = sqliteMalloc( pPager->dbSize/8 + 1 );
3033 if( pPager->aInJournal==0 ){
drh9c105bb2004-10-02 20:38:28 +00003034 rc = SQLITE_NOMEM;
3035 goto failed_to_open_journal;
drhda47d772002-12-02 04:25:19 +00003036 }
drh66560ad2006-01-06 14:32:19 +00003037 rc = sqlite3OsOpenExclusive(pPager->zJournal, &pPager->jfd,
drh9c06c952005-11-26 00:25:00 +00003038 pPager->tempFile);
danielk197776572402004-06-25 02:38:54 +00003039 pPager->journalOff = 0;
3040 pPager->setMaster = 0;
3041 pPager->journalHdr = 0;
drhda47d772002-12-02 04:25:19 +00003042 if( rc!=SQLITE_OK ){
drh9c105bb2004-10-02 20:38:28 +00003043 goto failed_to_open_journal;
drhda47d772002-12-02 04:25:19 +00003044 }
drhac530b12006-02-11 01:25:50 +00003045 sqlite3OsSetFullSync(pPager->jfd, pPager->full_fsync);
3046 sqlite3OsSetFullSync(pPager->fd, pPager->full_fsync);
drh054889e2005-11-30 03:20:31 +00003047 sqlite3OsOpenDirectory(pPager->jfd, pPager->zDirectory);
drhda47d772002-12-02 04:25:19 +00003048 pPager->journalOpen = 1;
drhdb48ee02003-01-16 13:42:43 +00003049 pPager->journalStarted = 0;
drhda47d772002-12-02 04:25:19 +00003050 pPager->needSync = 0;
3051 pPager->alwaysRollback = 0;
drh968af522003-02-11 14:55:40 +00003052 pPager->nRec = 0;
danielk1977efaaf572006-01-16 11:29:19 +00003053 if( pPager->errCode ){
3054 rc = pPager->errCode;
drhdd5b2fa2005-03-28 03:39:55 +00003055 goto failed_to_open_journal;
drh2e6d11b2003-04-25 15:37:57 +00003056 }
drhda47d772002-12-02 04:25:19 +00003057 pPager->origDbSize = pPager->dbSize;
drhae2b40c2004-06-09 19:03:54 +00003058
danielk197776572402004-06-25 02:38:54 +00003059 rc = writeJournalHdr(pPager);
3060
drhac69b052004-05-12 13:30:07 +00003061 if( pPager->stmtAutoopen && rc==SQLITE_OK ){
danielk19773b8a05f2007-03-19 17:44:26 +00003062 rc = sqlite3PagerStmtBegin(pPager);
drhda47d772002-12-02 04:25:19 +00003063 }
danielk1977261919c2005-12-06 12:52:59 +00003064 if( rc!=SQLITE_OK && rc!=SQLITE_NOMEM ){
drhda47d772002-12-02 04:25:19 +00003065 rc = pager_unwritelock(pPager);
3066 if( rc==SQLITE_OK ){
3067 rc = SQLITE_FULL;
3068 }
3069 }
drh9c105bb2004-10-02 20:38:28 +00003070 return rc;
3071
3072failed_to_open_journal:
3073 sqliteFree(pPager->aInJournal);
3074 pPager->aInJournal = 0;
danielk1977261919c2005-12-06 12:52:59 +00003075 if( rc==SQLITE_NOMEM ){
3076 /* If this was a malloc() failure, then we will not be closing the pager
3077 ** file. So delete any journal file we may have just created. Otherwise,
3078 ** the system will get confused, we have a read-lock on the file and a
3079 ** mysterious journal has appeared in the filesystem.
3080 */
drh66560ad2006-01-06 14:32:19 +00003081 sqlite3OsDelete(pPager->zJournal);
danielk1977261919c2005-12-06 12:52:59 +00003082 }else{
drhbafda092007-01-03 23:36:22 +00003083 pager_reset(pPager);
danielk1977261919c2005-12-06 12:52:59 +00003084 }
drh9c105bb2004-10-02 20:38:28 +00003085 return rc;
drhda47d772002-12-02 04:25:19 +00003086}
3087
3088/*
drh4b845d72002-03-05 12:41:19 +00003089** Acquire a write-lock on the database. The lock is removed when
3090** the any of the following happen:
3091**
danielk19773b8a05f2007-03-19 17:44:26 +00003092** * sqlite3PagerCommit() is called.
3093** * sqlite3PagerRollback() is called.
3094** * sqlite3PagerClose() is called.
3095** * sqlite3PagerUnref() is called to on every outstanding page.
drh4b845d72002-03-05 12:41:19 +00003096**
danielk197713adf8a2004-06-03 16:08:41 +00003097** The first parameter to this routine is a pointer to any open page of the
3098** database file. Nothing changes about the page - it is used merely to
3099** acquire a pointer to the Pager structure and as proof that there is
3100** already a read-lock on the database.
drh4b845d72002-03-05 12:41:19 +00003101**
danielk197713adf8a2004-06-03 16:08:41 +00003102** The second parameter indicates how much space in bytes to reserve for a
3103** master journal file-name at the start of the journal when it is created.
3104**
3105** A journal file is opened if this is not a temporary file. For temporary
3106** files, the opening of the journal file is deferred until there is an
3107** actual need to write to the journal.
drhda47d772002-12-02 04:25:19 +00003108**
drha6abd042004-06-09 17:37:22 +00003109** If the database is already reserved for writing, this routine is a no-op.
drh684917c2004-10-05 02:41:42 +00003110**
3111** If exFlag is true, go ahead and get an EXCLUSIVE lock on the file
3112** immediately instead of waiting until we try to flush the cache. The
3113** exFlag is ignored if a transaction is already active.
drh4b845d72002-03-05 12:41:19 +00003114*/
danielk19773b8a05f2007-03-19 17:44:26 +00003115int sqlite3PagerBegin(DbPage *pPg, int exFlag){
drh4b845d72002-03-05 12:41:19 +00003116 Pager *pPager = pPg->pPager;
3117 int rc = SQLITE_OK;
3118 assert( pPg->nRef>0 );
drha6abd042004-06-09 17:37:22 +00003119 assert( pPager->state!=PAGER_UNLOCK );
3120 if( pPager->state==PAGER_SHARED ){
drh4b845d72002-03-05 12:41:19 +00003121 assert( pPager->aInJournal==0 );
drhb7f91642004-10-31 02:22:47 +00003122 if( MEMDB ){
drha6abd042004-06-09 17:37:22 +00003123 pPager->state = PAGER_EXCLUSIVE;
drhac69b052004-05-12 13:30:07 +00003124 pPager->origDbSize = pPager->dbSize;
3125 }else{
drh054889e2005-11-30 03:20:31 +00003126 rc = sqlite3OsLock(pPager->fd, RESERVED_LOCK);
drh684917c2004-10-05 02:41:42 +00003127 if( rc==SQLITE_OK ){
3128 pPager->state = PAGER_RESERVED;
3129 if( exFlag ){
3130 rc = pager_wait_on_lock(pPager, EXCLUSIVE_LOCK);
3131 }
3132 }
danielk19779eed5052004-06-04 10:38:30 +00003133 if( rc!=SQLITE_OK ){
3134 return rc;
drhac69b052004-05-12 13:30:07 +00003135 }
drha6abd042004-06-09 17:37:22 +00003136 pPager->dirtyCache = 0;
danielk1977ef73ee92004-11-06 12:26:07 +00003137 TRACE2("TRANSACTION %d\n", PAGERID(pPager));
drhac69b052004-05-12 13:30:07 +00003138 if( pPager->useJournal && !pPager->tempFile ){
3139 rc = pager_open_journal(pPager);
3140 }
drh4b845d72002-03-05 12:41:19 +00003141 }
danielk1977334cdb62007-03-26 08:05:12 +00003142 }else if( pPager->journalOpen && pPager->journalOff==0 ){
3143 /* This happens when the pager was in exclusive-access mode last
3144 ** time a (read or write) transaction was successfully concluded
3145 ** by this connection. Instead of deleting the journal file it was
3146 ** kept open and truncated to 0 bytes.
3147 */
3148 assert( pPager->nRec==0 );
3149 assert( pPager->origDbSize==0 );
3150 sqlite3PagerPagecount(pPager);
3151 pPager->origDbSize = pPager->dbSize;
3152 pPager->aInJournal = sqliteMalloc( pPager->dbSize/8 + 1 );
3153 if( !pPager->aInJournal ){
3154 rc = SQLITE_NOMEM;
3155 }else{
3156 rc = writeJournalHdr(pPager);
3157 }
drh4b845d72002-03-05 12:41:19 +00003158 }
danielk1977334cdb62007-03-26 08:05:12 +00003159 assert( !pPager->journalOpen || pPager->journalOff>0 || rc!=SQLITE_OK );
drh4b845d72002-03-05 12:41:19 +00003160 return rc;
3161}
3162
3163/*
drh605ad8f2006-05-03 23:34:05 +00003164** Make a page dirty. Set its dirty flag and add it to the dirty
3165** page list.
3166*/
3167static void makeDirty(PgHdr *pPg){
3168 if( pPg->dirty==0 ){
3169 Pager *pPager = pPg->pPager;
3170 pPg->dirty = 1;
3171 pPg->pDirty = pPager->pDirty;
3172 if( pPager->pDirty ){
3173 pPager->pDirty->pPrevDirty = pPg;
3174 }
3175 pPg->pPrevDirty = 0;
3176 pPager->pDirty = pPg;
3177 }
3178}
3179
3180/*
3181** Make a page clean. Clear its dirty bit and remove it from the
3182** dirty page list.
3183*/
3184static void makeClean(PgHdr *pPg){
3185 if( pPg->dirty ){
3186 pPg->dirty = 0;
3187 if( pPg->pDirty ){
3188 pPg->pDirty->pPrevDirty = pPg->pPrevDirty;
3189 }
3190 if( pPg->pPrevDirty ){
3191 pPg->pPrevDirty->pDirty = pPg->pDirty;
3192 }else{
3193 pPg->pPager->pDirty = pPg->pDirty;
3194 }
3195 }
3196}
3197
3198
3199/*
drhed7c8552001-04-11 14:29:21 +00003200** Mark a data page as writeable. The page is written into the journal
3201** if it is not there already. This routine must be called before making
3202** changes to a page.
3203**
3204** The first time this routine is called, the pager creates a new
drha6abd042004-06-09 17:37:22 +00003205** journal and acquires a RESERVED lock on the database. If the RESERVED
drhed7c8552001-04-11 14:29:21 +00003206** lock could not be acquired, this routine returns SQLITE_BUSY. The
drh306dc212001-05-21 13:45:10 +00003207** calling routine must check for that return value and be careful not to
drhed7c8552001-04-11 14:29:21 +00003208** change any page data until this routine returns SQLITE_OK.
drhd9b02572001-04-15 00:37:09 +00003209**
3210** If the journal file could not be written because the disk is full,
3211** then this routine returns SQLITE_FULL and does an immediate rollback.
3212** All subsequent write attempts also return SQLITE_FULL until there
danielk19773b8a05f2007-03-19 17:44:26 +00003213** is a call to sqlite3PagerCommit() or sqlite3PagerRollback() to
drhd9b02572001-04-15 00:37:09 +00003214** reset.
drhed7c8552001-04-11 14:29:21 +00003215*/
danielk19773b8a05f2007-03-19 17:44:26 +00003216static int pager_write(PgHdr *pPg){
3217 void *pData = PGHDR_TO_DATA(pPg);
drh69688d52001-04-14 16:38:23 +00003218 Pager *pPager = pPg->pPager;
drhd79caeb2001-04-15 02:27:24 +00003219 int rc = SQLITE_OK;
drh69688d52001-04-14 16:38:23 +00003220
drh6446c4d2001-12-15 14:22:18 +00003221 /* Check for errors
3222 */
danielk1977efaaf572006-01-16 11:29:19 +00003223 if( pPager->errCode ){
3224 return pPager->errCode;
drhd9b02572001-04-15 00:37:09 +00003225 }
drh5e00f6c2001-09-13 13:46:56 +00003226 if( pPager->readOnly ){
3227 return SQLITE_PERM;
3228 }
drh6446c4d2001-12-15 14:22:18 +00003229
danielk197776572402004-06-25 02:38:54 +00003230 assert( !pPager->setMaster );
3231
danielk19773c407372005-02-15 02:54:14 +00003232 CHECK_PAGE(pPg);
3233
drh6446c4d2001-12-15 14:22:18 +00003234 /* Mark the page as dirty. If the page has already been written
3235 ** to the journal then we can return right away.
3236 */
drh605ad8f2006-05-03 23:34:05 +00003237 makeDirty(pPg);
drhac69b052004-05-12 13:30:07 +00003238 if( pPg->inJournal && (pPg->inStmt || pPager->stmtInUse==0) ){
drha6abd042004-06-09 17:37:22 +00003239 pPager->dirtyCache = 1;
danielk1977a0bf2652004-11-04 14:30:04 +00003240 }else{
drh6446c4d2001-12-15 14:22:18 +00003241
danielk1977a0bf2652004-11-04 14:30:04 +00003242 /* If we get this far, it means that the page needs to be
3243 ** written to the transaction journal or the ckeckpoint journal
3244 ** or both.
3245 **
3246 ** First check to see that the transaction journal exists and
3247 ** create it if it does not.
3248 */
3249 assert( pPager->state!=PAGER_UNLOCK );
danielk19773b8a05f2007-03-19 17:44:26 +00003250 rc = sqlite3PagerBegin(pPg, 0);
danielk1977a0bf2652004-11-04 14:30:04 +00003251 if( rc!=SQLITE_OK ){
3252 return rc;
3253 }
3254 assert( pPager->state>=PAGER_RESERVED );
3255 if( !pPager->journalOpen && pPager->useJournal ){
3256 rc = pager_open_journal(pPager);
3257 if( rc!=SQLITE_OK ) return rc;
3258 }
3259 assert( pPager->journalOpen || !pPager->useJournal );
3260 pPager->dirtyCache = 1;
3261
3262 /* The transaction journal now exists and we have a RESERVED or an
3263 ** EXCLUSIVE lock on the main database file. Write the current page to
3264 ** the transaction journal if it is not there already.
3265 */
3266 if( !pPg->inJournal && (pPager->useJournal || MEMDB) ){
3267 if( (int)pPg->pgno <= pPager->origDbSize ){
3268 int szPg;
danielk1977a0bf2652004-11-04 14:30:04 +00003269 if( MEMDB ){
3270 PgHistory *pHist = PGHDR_TO_HIST(pPg, pPager);
danielk1977ef73ee92004-11-06 12:26:07 +00003271 TRACE3("JOURNAL %d page %d\n", PAGERID(pPager), pPg->pgno);
danielk1977a0bf2652004-11-04 14:30:04 +00003272 assert( pHist->pOrig==0 );
3273 pHist->pOrig = sqliteMallocRaw( pPager->pageSize );
3274 if( pHist->pOrig ){
3275 memcpy(pHist->pOrig, PGHDR_TO_DATA(pPg), pPager->pageSize);
3276 }
3277 }else{
drhc001c582006-03-06 18:23:16 +00003278 u32 cksum, saved;
3279 char *pData2, *pEnd;
drh267cb322005-09-16 17:16:52 +00003280 /* We should never write to the journal file the page that
3281 ** contains the database locks. The following assert verifies
3282 ** that we do not. */
3283 assert( pPg->pgno!=PAGER_MJ_PGNO(pPager) );
drhc001c582006-03-06 18:23:16 +00003284 pData2 = CODEC2(pPager, pData, pPg->pgno, 7);
drh37527852006-03-16 16:19:56 +00003285 cksum = pager_cksum(pPager, (u8*)pData2);
drhc001c582006-03-06 18:23:16 +00003286 pEnd = pData2 + pPager->pageSize;
3287 pData2 -= 4;
3288 saved = *(u32*)pEnd;
3289 put32bits(pEnd, cksum);
danielk1977a0bf2652004-11-04 14:30:04 +00003290 szPg = pPager->pageSize+8;
drhc001c582006-03-06 18:23:16 +00003291 put32bits(pData2, pPg->pgno);
3292 rc = sqlite3OsWrite(pPager->jfd, pData2, szPg);
drhb0603412007-02-28 04:47:26 +00003293 IOTRACE(("JOUT %p %d %lld %d\n", pPager, pPg->pgno,
3294 pPager->journalOff, szPg))
danielk1977a0bf2652004-11-04 14:30:04 +00003295 pPager->journalOff += szPg;
3296 TRACE4("JOURNAL %d page %d needSync=%d\n",
danielk1977ef73ee92004-11-06 12:26:07 +00003297 PAGERID(pPager), pPg->pgno, pPg->needSync);
drhc001c582006-03-06 18:23:16 +00003298 *(u32*)pEnd = saved;
danielk197707cb5602006-01-20 10:55:05 +00003299
3300 /* An error has occured writing to the journal file. The
3301 ** transaction will be rolled back by the layer above.
3302 */
danielk1977a0bf2652004-11-04 14:30:04 +00003303 if( rc!=SQLITE_OK ){
danielk1977a0bf2652004-11-04 14:30:04 +00003304 return rc;
3305 }
danielk197707cb5602006-01-20 10:55:05 +00003306
danielk1977a0bf2652004-11-04 14:30:04 +00003307 pPager->nRec++;
3308 assert( pPager->aInJournal!=0 );
3309 pPager->aInJournal[pPg->pgno/8] |= 1<<(pPg->pgno&7);
3310 pPg->needSync = !pPager->noSync;
3311 if( pPager->stmtInUse ){
3312 pPager->aInStmt[pPg->pgno/8] |= 1<<(pPg->pgno&7);
3313 page_add_to_stmt_list(pPg);
3314 }
drhac69b052004-05-12 13:30:07 +00003315 }
danielk197713adf8a2004-06-03 16:08:41 +00003316 }else{
danielk1977a0bf2652004-11-04 14:30:04 +00003317 pPg->needSync = !pPager->journalStarted && !pPager->noSync;
3318 TRACE4("APPEND %d page %d needSync=%d\n",
danielk1977ef73ee92004-11-06 12:26:07 +00003319 PAGERID(pPager), pPg->pgno, pPg->needSync);
danielk1977a0bf2652004-11-04 14:30:04 +00003320 }
3321 if( pPg->needSync ){
3322 pPager->needSync = 1;
3323 }
3324 pPg->inJournal = 1;
3325 }
3326
3327 /* If the statement journal is open and the page is not in it,
3328 ** then write the current page to the statement journal. Note that
3329 ** the statement journal format differs from the standard journal format
3330 ** in that it omits the checksums and the header.
3331 */
3332 if( pPager->stmtInUse && !pPg->inStmt && (int)pPg->pgno<=pPager->stmtSize ){
3333 assert( pPg->inJournal || (int)pPg->pgno>pPager->origDbSize );
3334 if( MEMDB ){
3335 PgHistory *pHist = PGHDR_TO_HIST(pPg, pPager);
3336 assert( pHist->pStmt==0 );
3337 pHist->pStmt = sqliteMallocRaw( pPager->pageSize );
3338 if( pHist->pStmt ){
3339 memcpy(pHist->pStmt, PGHDR_TO_DATA(pPg), pPager->pageSize);
3340 }
danielk1977ef73ee92004-11-06 12:26:07 +00003341 TRACE3("STMT-JOURNAL %d page %d\n", PAGERID(pPager), pPg->pgno);
danielk1977a0bf2652004-11-04 14:30:04 +00003342 }else{
drhc001c582006-03-06 18:23:16 +00003343 char *pData2 = CODEC2(pPager, pData, pPg->pgno, 7)-4;
3344 put32bits(pData2, pPg->pgno);
3345 rc = sqlite3OsWrite(pPager->stfd, pData2, pPager->pageSize+4);
danielk1977ef73ee92004-11-06 12:26:07 +00003346 TRACE3("STMT-JOURNAL %d page %d\n", PAGERID(pPager), pPg->pgno);
drhac69b052004-05-12 13:30:07 +00003347 if( rc!=SQLITE_OK ){
drhac69b052004-05-12 13:30:07 +00003348 return rc;
3349 }
danielk1977a0bf2652004-11-04 14:30:04 +00003350 pPager->stmtNRec++;
3351 assert( pPager->aInStmt!=0 );
3352 pPager->aInStmt[pPg->pgno/8] |= 1<<(pPg->pgno&7);
drhdb48ee02003-01-16 13:42:43 +00003353 }
danielk1977a0bf2652004-11-04 14:30:04 +00003354 page_add_to_stmt_list(pPg);
drhd9b02572001-04-15 00:37:09 +00003355 }
drhfa86c412002-02-02 15:01:15 +00003356 }
3357
3358 /* Update the database size and return.
3359 */
drh1aa2d8b2007-01-03 15:34:29 +00003360 assert( pPager->state>=PAGER_SHARED );
drh1ab43002002-01-14 09:28:19 +00003361 if( pPager->dbSize<(int)pPg->pgno ){
drh306dc212001-05-21 13:45:10 +00003362 pPager->dbSize = pPg->pgno;
drhb7f91642004-10-31 02:22:47 +00003363 if( !MEMDB && pPager->dbSize==PENDING_BYTE/pPager->pageSize ){
drh1f595712004-06-15 01:40:29 +00003364 pPager->dbSize++;
3365 }
drh306dc212001-05-21 13:45:10 +00003366 }
drh69688d52001-04-14 16:38:23 +00003367 return rc;
drhed7c8552001-04-11 14:29:21 +00003368}
3369
3370/*
danielk19774099f6e2007-03-19 11:25:20 +00003371** This function is used to mark a data-page as writable. It uses
3372** pager_write() to open a journal file (if it is not already open)
3373** and write the page *pData to the journal.
3374**
3375** The difference between this function and pager_write() is that this
3376** function also deals with the special case where 2 or more pages
3377** fit on a single disk sector. In this case all co-resident pages
3378** must have been written to the journal file before returning.
3379*/
danielk19773b8a05f2007-03-19 17:44:26 +00003380int sqlite3PagerWrite(DbPage *pDbPage){
danielk19774099f6e2007-03-19 11:25:20 +00003381 int rc = SQLITE_OK;
3382
danielk19773b8a05f2007-03-19 17:44:26 +00003383 PgHdr *pPg = pDbPage;
danielk19774099f6e2007-03-19 11:25:20 +00003384 Pager *pPager = pPg->pPager;
3385 Pgno nPagePerSector = (pPager->sectorSize/pPager->pageSize);
3386
3387 if( !MEMDB && nPagePerSector>1 ){
3388 Pgno nPageCount; /* Total number of pages in database file */
3389 Pgno pg1; /* First page of the sector pPg is located on. */
3390 int nPage; /* Number of pages starting at pg1 to journal */
3391 int ii;
3392
3393 /* Set the doNotSync flag to 1. This is because we cannot allow a journal
3394 ** header to be written between the pages journaled by this function.
3395 */
3396 assert( pPager->doNotSync==0 );
3397 pPager->doNotSync = 1;
3398
3399 /* This trick assumes that both the page-size and sector-size are
3400 ** an integer power of 2. It sets variable pg1 to the identifier
3401 ** of the first page of the sector pPg is located on.
3402 */
3403 pg1 = ((pPg->pgno-1) & ~(nPagePerSector-1)) + 1;
3404
danielk19773b8a05f2007-03-19 17:44:26 +00003405 nPageCount = sqlite3PagerPagecount(pPager);
danielk19774099f6e2007-03-19 11:25:20 +00003406 if( pPg->pgno>nPageCount ){
3407 nPage = (pPg->pgno - pg1)+1;
3408 }else if( (pg1+nPagePerSector-1)>nPageCount ){
3409 nPage = nPageCount+1-pg1;
3410 }else{
3411 nPage = nPagePerSector;
3412 }
3413 assert(nPage>0);
3414 assert(pg1<=pPg->pgno);
3415 assert((pg1+nPage)>pPg->pgno);
3416
3417 for(ii=0; ii<nPage && rc==SQLITE_OK; ii++){
3418 Pgno pg = pg1+ii;
3419 if( !pPager->aInJournal || pg==pPg->pgno ||
3420 pg>pPager->origDbSize || !(pPager->aInJournal[pg/8]&(1<<(pg&7)))
3421 ) {
3422 if( pg!=PAGER_MJ_PGNO(pPager) ){
danielk19773b8a05f2007-03-19 17:44:26 +00003423 PgHdr *pPage;
3424 rc = sqlite3PagerGet(pPager, pg, &pPage);
danielk19774099f6e2007-03-19 11:25:20 +00003425 if( rc==SQLITE_OK ){
3426 rc = pager_write(pPage);
danielk19773b8a05f2007-03-19 17:44:26 +00003427 sqlite3PagerUnref(pPage);
danielk19774099f6e2007-03-19 11:25:20 +00003428 }
3429 }
3430 }
3431 }
3432
3433 assert( pPager->doNotSync==1 );
3434 pPager->doNotSync = 0;
3435 }else{
danielk19773b8a05f2007-03-19 17:44:26 +00003436 rc = pager_write(pDbPage);
danielk19774099f6e2007-03-19 11:25:20 +00003437 }
3438 return rc;
3439}
3440
3441/*
drhaacc5432002-01-06 17:07:40 +00003442** Return TRUE if the page given in the argument was previously passed
danielk19773b8a05f2007-03-19 17:44:26 +00003443** to sqlite3PagerWrite(). In other words, return TRUE if it is ok
drh6019e162001-07-02 17:51:45 +00003444** to change the content of the page.
3445*/
danielk19777d3a6662006-01-23 16:21:05 +00003446#ifndef NDEBUG
danielk19773b8a05f2007-03-19 17:44:26 +00003447int sqlite3PagerIswriteable(DbPage *pPg){
drh6019e162001-07-02 17:51:45 +00003448 return pPg->dirty;
3449}
danielk19777d3a6662006-01-23 16:21:05 +00003450#endif
drh6019e162001-07-02 17:51:45 +00003451
danielk1977b84f96f2005-01-20 11:32:23 +00003452#ifndef SQLITE_OMIT_VACUUM
drh6019e162001-07-02 17:51:45 +00003453/*
drh001bbcb2003-03-19 03:14:00 +00003454** Replace the content of a single page with the information in the third
3455** argument.
3456*/
danielk19773b8a05f2007-03-19 17:44:26 +00003457int sqlite3PagerOverwrite(Pager *pPager, Pgno pgno, void *pData){
3458 PgHdr *pPg;
drh001bbcb2003-03-19 03:14:00 +00003459 int rc;
3460
danielk19773b8a05f2007-03-19 17:44:26 +00003461 rc = sqlite3PagerGet(pPager, pgno, &pPg);
drh001bbcb2003-03-19 03:14:00 +00003462 if( rc==SQLITE_OK ){
danielk19773b8a05f2007-03-19 17:44:26 +00003463 rc = sqlite3PagerWrite(pPg);
drh001bbcb2003-03-19 03:14:00 +00003464 if( rc==SQLITE_OK ){
danielk19773b8a05f2007-03-19 17:44:26 +00003465 memcpy(sqlite3PagerGetData(pPg), pData, pPager->pageSize);
drh001bbcb2003-03-19 03:14:00 +00003466 }
danielk19773b8a05f2007-03-19 17:44:26 +00003467 sqlite3PagerUnref(pPg);
drh001bbcb2003-03-19 03:14:00 +00003468 }
3469 return rc;
3470}
danielk1977b84f96f2005-01-20 11:32:23 +00003471#endif
drh001bbcb2003-03-19 03:14:00 +00003472
3473/*
drh30e58752002-03-02 20:41:57 +00003474** A call to this routine tells the pager that it is not necessary to
3475** write the information on page "pgno" back to the disk, even though
3476** that page might be marked as dirty.
3477**
3478** The overlying software layer calls this routine when all of the data
3479** on the given page is unused. The pager marks the page as clean so
3480** that it does not get written to disk.
3481**
3482** Tests show that this optimization, together with the
danielk19773b8a05f2007-03-19 17:44:26 +00003483** sqlite3PagerDontRollback() below, more than double the speed
drh30e58752002-03-02 20:41:57 +00003484** of large INSERT operations and quadruple the speed of large DELETEs.
drh8e298f92002-07-06 16:28:47 +00003485**
3486** When this routine is called, set the alwaysRollback flag to true.
danielk19773b8a05f2007-03-19 17:44:26 +00003487** Subsequent calls to sqlite3PagerDontRollback() for the same page
drh8e298f92002-07-06 16:28:47 +00003488** will thereafter be ignored. This is necessary to avoid a problem
3489** where a page with data is added to the freelist during one part of
3490** a transaction then removed from the freelist during a later part
3491** of the same transaction and reused for some other purpose. When it
3492** is first added to the freelist, this routine is called. When reused,
3493** the dont_rollback() routine is called. But because the page contains
3494** critical data, we still need to be sure it gets rolled back in spite
3495** of the dont_rollback() call.
drh30e58752002-03-02 20:41:57 +00003496*/
danielk19773b8a05f2007-03-19 17:44:26 +00003497void sqlite3PagerDontWrite(Pager *pPager, Pgno pgno){
drh30e58752002-03-02 20:41:57 +00003498 PgHdr *pPg;
drh8e298f92002-07-06 16:28:47 +00003499
drhb7f91642004-10-31 02:22:47 +00003500 if( MEMDB ) return;
danielk1977eac7a362004-06-16 07:45:24 +00003501
drh30e58752002-03-02 20:41:57 +00003502 pPg = pager_lookup(pPager, pgno);
drh43617e92006-03-06 20:55:46 +00003503 assert( pPg!=0 ); /* We never call _dont_write unless the page is in mem */
drh8e298f92002-07-06 16:28:47 +00003504 pPg->alwaysRollback = 1;
drh43617e92006-03-06 20:55:46 +00003505 if( pPg->dirty && !pPager->stmtInUse ){
drh1aa2d8b2007-01-03 15:34:29 +00003506 assert( pPager->state>=PAGER_SHARED );
drh8124a302002-06-25 14:43:57 +00003507 if( pPager->dbSize==(int)pPg->pgno && pPager->origDbSize<pPager->dbSize ){
3508 /* If this pages is the last page in the file and the file has grown
3509 ** during the current transaction, then do NOT mark the page as clean.
3510 ** When the database file grows, we must make sure that the last page
3511 ** gets written at least once so that the disk file will be the correct
3512 ** size. If you do not write this page and the size of the file
3513 ** on the disk ends up being too small, that can lead to database
3514 ** corruption during the next transaction.
3515 */
3516 }else{
danielk1977ef73ee92004-11-06 12:26:07 +00003517 TRACE3("DONT_WRITE page %d of %d\n", pgno, PAGERID(pPager));
drhb0603412007-02-28 04:47:26 +00003518 IOTRACE(("CLEAN %p %d\n", pPager, pgno))
drh605ad8f2006-05-03 23:34:05 +00003519 makeClean(pPg);
danielk19773c407372005-02-15 02:54:14 +00003520#ifdef SQLITE_CHECK_PAGES
3521 pPg->pageHash = pager_pagehash(pPg);
3522#endif
drh8124a302002-06-25 14:43:57 +00003523 }
drh30e58752002-03-02 20:41:57 +00003524 }
3525}
3526
3527/*
3528** A call to this routine tells the pager that if a rollback occurs,
3529** it is not necessary to restore the data on the given page. This
3530** means that the pager does not have to record the given page in the
3531** rollback journal.
3532*/
danielk19773b8a05f2007-03-19 17:44:26 +00003533void sqlite3PagerDontRollback(DbPage *pPg){
drh30e58752002-03-02 20:41:57 +00003534 Pager *pPager = pPg->pPager;
3535
drhd3627af2006-12-18 18:34:51 +00003536 assert( pPager->state>=PAGER_RESERVED );
3537 if( pPager->journalOpen==0 ) return;
drhb7f91642004-10-31 02:22:47 +00003538 if( pPg->alwaysRollback || pPager->alwaysRollback || MEMDB ) return;
drh30e58752002-03-02 20:41:57 +00003539 if( !pPg->inJournal && (int)pPg->pgno <= pPager->origDbSize ){
3540 assert( pPager->aInJournal!=0 );
3541 pPager->aInJournal[pPg->pgno/8] |= 1<<(pPg->pgno&7);
3542 pPg->inJournal = 1;
drhac69b052004-05-12 13:30:07 +00003543 if( pPager->stmtInUse ){
3544 pPager->aInStmt[pPg->pgno/8] |= 1<<(pPg->pgno&7);
drh3aac2dd2004-04-26 14:10:20 +00003545 page_add_to_stmt_list(pPg);
drh30e58752002-03-02 20:41:57 +00003546 }
danielk1977ef73ee92004-11-06 12:26:07 +00003547 TRACE3("DONT_ROLLBACK page %d of %d\n", pPg->pgno, PAGERID(pPager));
drhb0603412007-02-28 04:47:26 +00003548 IOTRACE(("GARBAGE %p %d\n", pPager, pPg->pgno))
drh30e58752002-03-02 20:41:57 +00003549 }
drhac69b052004-05-12 13:30:07 +00003550 if( pPager->stmtInUse && !pPg->inStmt && (int)pPg->pgno<=pPager->stmtSize ){
drh30e58752002-03-02 20:41:57 +00003551 assert( pPg->inJournal || (int)pPg->pgno>pPager->origDbSize );
drhac69b052004-05-12 13:30:07 +00003552 assert( pPager->aInStmt!=0 );
3553 pPager->aInStmt[pPg->pgno/8] |= 1<<(pPg->pgno&7);
drh3aac2dd2004-04-26 14:10:20 +00003554 page_add_to_stmt_list(pPg);
drh30e58752002-03-02 20:41:57 +00003555 }
3556}
3557
drhac69b052004-05-12 13:30:07 +00003558
drh30e58752002-03-02 20:41:57 +00003559/*
drhed7c8552001-04-11 14:29:21 +00003560** Commit all changes to the database and release the write lock.
drhd9b02572001-04-15 00:37:09 +00003561**
3562** If the commit fails for any reason, a rollback attempt is made
3563** and an error code is returned. If the commit worked, SQLITE_OK
3564** is returned.
drhed7c8552001-04-11 14:29:21 +00003565*/
danielk19773b8a05f2007-03-19 17:44:26 +00003566int sqlite3PagerCommit(Pager *pPager){
drha1b351a2001-09-14 16:42:12 +00003567 int rc;
drhed7c8552001-04-11 14:29:21 +00003568 PgHdr *pPg;
drhd9b02572001-04-15 00:37:09 +00003569
danielk1977efaaf572006-01-16 11:29:19 +00003570 if( pPager->errCode ){
danielk19777f7bc662006-01-23 13:47:47 +00003571 return pPager->errCode;
drhd9b02572001-04-15 00:37:09 +00003572 }
drha6abd042004-06-09 17:37:22 +00003573 if( pPager->state<PAGER_RESERVED ){
drhd9b02572001-04-15 00:37:09 +00003574 return SQLITE_ERROR;
3575 }
danielk1977ef73ee92004-11-06 12:26:07 +00003576 TRACE2("COMMIT %d\n", PAGERID(pPager));
drhb7f91642004-10-31 02:22:47 +00003577 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00003578 pPg = pager_get_all_dirty_pages(pPager);
3579 while( pPg ){
3580 clearHistory(PGHDR_TO_HIST(pPg, pPager));
3581 pPg->dirty = 0;
3582 pPg->inJournal = 0;
3583 pPg->inStmt = 0;
drh5229ae42006-03-23 23:29:04 +00003584 pPg->needSync = 0;
drhac69b052004-05-12 13:30:07 +00003585 pPg->pPrevStmt = pPg->pNextStmt = 0;
3586 pPg = pPg->pDirty;
3587 }
drh605ad8f2006-05-03 23:34:05 +00003588 pPager->pDirty = 0;
danielk1977eac7a362004-06-16 07:45:24 +00003589#ifndef NDEBUG
3590 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
3591 PgHistory *pHist = PGHDR_TO_HIST(pPg, pPager);
3592 assert( !pPg->alwaysRollback );
3593 assert( !pHist->pOrig );
3594 assert( !pHist->pStmt );
3595 }
3596#endif
drhac69b052004-05-12 13:30:07 +00003597 pPager->pStmt = 0;
drha6abd042004-06-09 17:37:22 +00003598 pPager->state = PAGER_SHARED;
drhac69b052004-05-12 13:30:07 +00003599 return SQLITE_OK;
3600 }
drha6abd042004-06-09 17:37:22 +00003601 if( pPager->dirtyCache==0 ){
drh054889e2005-11-30 03:20:31 +00003602 /* Exit early (without doing the time-consuming sqlite3OsSync() calls)
drha1680452002-04-18 01:56:57 +00003603 ** if there have been no changes to the database file. */
drh341eae82003-01-21 02:39:36 +00003604 assert( pPager->needSync==0 );
drha1680452002-04-18 01:56:57 +00003605 rc = pager_unwritelock(pPager);
drha1680452002-04-18 01:56:57 +00003606 return rc;
3607 }
drhda47d772002-12-02 04:25:19 +00003608 assert( pPager->journalOpen );
danielk19773b8a05f2007-03-19 17:44:26 +00003609 rc = sqlite3PagerSync(pPager, 0, 0);
danielk19777f7bc662006-01-23 13:47:47 +00003610 if( rc==SQLITE_OK ){
3611 rc = pager_unwritelock(pPager);
drha6abd042004-06-09 17:37:22 +00003612 }
drhed7c8552001-04-11 14:29:21 +00003613 return rc;
3614}
3615
3616/*
drha6abd042004-06-09 17:37:22 +00003617** Rollback all changes. The database falls back to PAGER_SHARED mode.
drhed7c8552001-04-11 14:29:21 +00003618** All in-memory cache pages revert to their original data contents.
3619** The journal is deleted.
drhd9b02572001-04-15 00:37:09 +00003620**
3621** This routine cannot fail unless some other process is not following
3622** the correct locking protocol (SQLITE_PROTOCOL) or unless some other
3623** process is writing trash into the journal file (SQLITE_CORRUPT) or
3624** unless a prior malloc() failed (SQLITE_NOMEM). Appropriate error
3625** codes are returned for all these occasions. Otherwise,
3626** SQLITE_OK is returned.
drhed7c8552001-04-11 14:29:21 +00003627*/
danielk19773b8a05f2007-03-19 17:44:26 +00003628int sqlite3PagerRollback(Pager *pPager){
drhed7c8552001-04-11 14:29:21 +00003629 int rc;
danielk1977ef73ee92004-11-06 12:26:07 +00003630 TRACE2("ROLLBACK %d\n", PAGERID(pPager));
drhb7f91642004-10-31 02:22:47 +00003631 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00003632 PgHdr *p;
3633 for(p=pPager->pAll; p; p=p->pNextAll){
3634 PgHistory *pHist;
danielk1977eac7a362004-06-16 07:45:24 +00003635 assert( !p->alwaysRollback );
3636 if( !p->dirty ){
3637 assert( !((PgHistory *)PGHDR_TO_HIST(p, pPager))->pOrig );
3638 assert( !((PgHistory *)PGHDR_TO_HIST(p, pPager))->pStmt );
3639 continue;
3640 }
3641
drhac69b052004-05-12 13:30:07 +00003642 pHist = PGHDR_TO_HIST(p, pPager);
3643 if( pHist->pOrig ){
3644 memcpy(PGHDR_TO_DATA(p), pHist->pOrig, pPager->pageSize);
danielk1977ef73ee92004-11-06 12:26:07 +00003645 TRACE3("ROLLBACK-PAGE %d of %d\n", p->pgno, PAGERID(pPager));
drhac69b052004-05-12 13:30:07 +00003646 }else{
danielk1977ef73ee92004-11-06 12:26:07 +00003647 TRACE3("PAGE %d is clean on %d\n", p->pgno, PAGERID(pPager));
drhac69b052004-05-12 13:30:07 +00003648 }
3649 clearHistory(pHist);
3650 p->dirty = 0;
3651 p->inJournal = 0;
3652 p->inStmt = 0;
3653 p->pPrevStmt = p->pNextStmt = 0;
danielk1977369f27e2004-06-15 11:40:04 +00003654 if( pPager->xReiniter ){
danielk19773b8a05f2007-03-19 17:44:26 +00003655 pPager->xReiniter(p, pPager->pageSize);
danielk1977369f27e2004-06-15 11:40:04 +00003656 }
drhac69b052004-05-12 13:30:07 +00003657 }
drh605ad8f2006-05-03 23:34:05 +00003658 pPager->pDirty = 0;
drhac69b052004-05-12 13:30:07 +00003659 pPager->pStmt = 0;
3660 pPager->dbSize = pPager->origDbSize;
3661 memoryTruncate(pPager);
3662 pPager->stmtInUse = 0;
drha6abd042004-06-09 17:37:22 +00003663 pPager->state = PAGER_SHARED;
drhac69b052004-05-12 13:30:07 +00003664 return SQLITE_OK;
3665 }
3666
drha6abd042004-06-09 17:37:22 +00003667 if( !pPager->dirtyCache || !pPager->journalOpen ){
drhda47d772002-12-02 04:25:19 +00003668 rc = pager_unwritelock(pPager);
drhda47d772002-12-02 04:25:19 +00003669 return rc;
3670 }
drhdb48ee02003-01-16 13:42:43 +00003671
danielk1977efaaf572006-01-16 11:29:19 +00003672 if( pPager->errCode && pPager->errCode!=SQLITE_FULL ){
drha6abd042004-06-09 17:37:22 +00003673 if( pPager->state>=PAGER_EXCLUSIVE ){
danielk1977e277be02007-03-23 18:12:06 +00003674 pager_playback(pPager, 0);
drh4b845d72002-03-05 12:41:19 +00003675 }
danielk1977efaaf572006-01-16 11:29:19 +00003676 return pPager->errCode;
drhed7c8552001-04-11 14:29:21 +00003677 }
drha6abd042004-06-09 17:37:22 +00003678 if( pPager->state==PAGER_RESERVED ){
danielk197717221812005-02-15 03:38:05 +00003679 int rc2;
danielk1977e277be02007-03-23 18:12:06 +00003680 rc = pager_playback(pPager, 0);
danielk197717221812005-02-15 03:38:05 +00003681 rc2 = pager_unwritelock(pPager);
drha6abd042004-06-09 17:37:22 +00003682 if( rc==SQLITE_OK ){
3683 rc = rc2;
3684 }
3685 }else{
danielk1977e277be02007-03-23 18:12:06 +00003686 rc = pager_playback(pPager, 0);
drhd9b02572001-04-15 00:37:09 +00003687 }
drhd9b02572001-04-15 00:37:09 +00003688 pPager->dbSize = -1;
danielk197707cb5602006-01-20 10:55:05 +00003689
3690 /* If an error occurs during a ROLLBACK, we can no longer trust the pager
3691 ** cache. So call pager_error() on the way out to make any error
3692 ** persistent.
3693 */
3694 return pager_error(pPager, rc);
drh98808ba2001-10-18 12:34:46 +00003695}
drhd9b02572001-04-15 00:37:09 +00003696
3697/*
drh5e00f6c2001-09-13 13:46:56 +00003698** Return TRUE if the database file is opened read-only. Return FALSE
3699** if the database is (in theory) writable.
3700*/
danielk19773b8a05f2007-03-19 17:44:26 +00003701int sqlite3PagerIsreadonly(Pager *pPager){
drhbe0072d2001-09-13 14:46:09 +00003702 return pPager->readOnly;
drh5e00f6c2001-09-13 13:46:56 +00003703}
3704
3705/*
drh0f7eb612006-08-08 13:51:43 +00003706** Return the number of references to the pager.
3707*/
danielk19773b8a05f2007-03-19 17:44:26 +00003708int sqlite3PagerRefcount(Pager *pPager){
drh0f7eb612006-08-08 13:51:43 +00003709 return pPager->nRef;
3710}
3711
3712#ifdef SQLITE_TEST
3713/*
drhd9b02572001-04-15 00:37:09 +00003714** This routine is used for testing and analysis only.
3715*/
danielk19773b8a05f2007-03-19 17:44:26 +00003716int *sqlite3PagerStats(Pager *pPager){
danielk197742741be2005-01-08 12:42:39 +00003717 static int a[11];
drhd9b02572001-04-15 00:37:09 +00003718 a[0] = pPager->nRef;
3719 a[1] = pPager->nPage;
3720 a[2] = pPager->mxPage;
3721 a[3] = pPager->dbSize;
3722 a[4] = pPager->state;
danielk1977efaaf572006-01-16 11:29:19 +00003723 a[5] = pPager->errCode;
drhd9b02572001-04-15 00:37:09 +00003724 a[6] = pPager->nHit;
3725 a[7] = pPager->nMiss;
3726 a[8] = pPager->nOvfl;
danielk197742741be2005-01-08 12:42:39 +00003727 a[9] = pPager->nRead;
3728 a[10] = pPager->nWrite;
drhd9b02572001-04-15 00:37:09 +00003729 return a;
3730}
drh0f7eb612006-08-08 13:51:43 +00003731#endif
drhdd793422001-06-28 01:54:48 +00003732
drhfa86c412002-02-02 15:01:15 +00003733/*
drhac69b052004-05-12 13:30:07 +00003734** Set the statement rollback point.
drhfa86c412002-02-02 15:01:15 +00003735**
3736** This routine should be called with the transaction journal already
drhac69b052004-05-12 13:30:07 +00003737** open. A new statement journal is created that can be used to rollback
drhaaab5722002-02-19 13:39:21 +00003738** changes of a single SQL command within a larger transaction.
drhfa86c412002-02-02 15:01:15 +00003739*/
danielk19773b8a05f2007-03-19 17:44:26 +00003740int sqlite3PagerStmtBegin(Pager *pPager){
drhfa86c412002-02-02 15:01:15 +00003741 int rc;
drhac69b052004-05-12 13:30:07 +00003742 assert( !pPager->stmtInUse );
drh1aa2d8b2007-01-03 15:34:29 +00003743 assert( pPager->state>=PAGER_SHARED );
drhdc3ff9c2004-08-18 02:10:15 +00003744 assert( pPager->dbSize>=0 );
danielk1977ef73ee92004-11-06 12:26:07 +00003745 TRACE2("STMT-BEGIN %d\n", PAGERID(pPager));
drhb7f91642004-10-31 02:22:47 +00003746 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00003747 pPager->stmtInUse = 1;
3748 pPager->stmtSize = pPager->dbSize;
3749 return SQLITE_OK;
3750 }
drhda47d772002-12-02 04:25:19 +00003751 if( !pPager->journalOpen ){
drhac69b052004-05-12 13:30:07 +00003752 pPager->stmtAutoopen = 1;
drhda47d772002-12-02 04:25:19 +00003753 return SQLITE_OK;
3754 }
drhfa86c412002-02-02 15:01:15 +00003755 assert( pPager->journalOpen );
drhac69b052004-05-12 13:30:07 +00003756 pPager->aInStmt = sqliteMalloc( pPager->dbSize/8 + 1 );
3757 if( pPager->aInStmt==0 ){
danielk1977261919c2005-12-06 12:52:59 +00003758 /* sqlite3OsLock(pPager->fd, SHARED_LOCK); */
drhfa86c412002-02-02 15:01:15 +00003759 return SQLITE_NOMEM;
3760 }
drh968af522003-02-11 14:55:40 +00003761#ifndef NDEBUG
drh054889e2005-11-30 03:20:31 +00003762 rc = sqlite3OsFileSize(pPager->jfd, &pPager->stmtJSize);
drhac69b052004-05-12 13:30:07 +00003763 if( rc ) goto stmt_begin_failed;
danielk197776572402004-06-25 02:38:54 +00003764 assert( pPager->stmtJSize == pPager->journalOff );
drh968af522003-02-11 14:55:40 +00003765#endif
danielk197776572402004-06-25 02:38:54 +00003766 pPager->stmtJSize = pPager->journalOff;
drhac69b052004-05-12 13:30:07 +00003767 pPager->stmtSize = pPager->dbSize;
danielk197776572402004-06-25 02:38:54 +00003768 pPager->stmtHdrOff = 0;
danielk197775edc162004-06-26 01:48:18 +00003769 pPager->stmtCksum = pPager->cksumInit;
drhac69b052004-05-12 13:30:07 +00003770 if( !pPager->stmtOpen ){
danielk19773b8a05f2007-03-19 17:44:26 +00003771 rc = sqlite3PagerOpentemp(&pPager->stfd);
drhac69b052004-05-12 13:30:07 +00003772 if( rc ) goto stmt_begin_failed;
3773 pPager->stmtOpen = 1;
3774 pPager->stmtNRec = 0;
drh0f892532002-05-30 12:27:03 +00003775 }
drhac69b052004-05-12 13:30:07 +00003776 pPager->stmtInUse = 1;
drhfa86c412002-02-02 15:01:15 +00003777 return SQLITE_OK;
3778
drhac69b052004-05-12 13:30:07 +00003779stmt_begin_failed:
3780 if( pPager->aInStmt ){
3781 sqliteFree(pPager->aInStmt);
3782 pPager->aInStmt = 0;
drhfa86c412002-02-02 15:01:15 +00003783 }
3784 return rc;
3785}
3786
3787/*
drhac69b052004-05-12 13:30:07 +00003788** Commit a statement.
drhfa86c412002-02-02 15:01:15 +00003789*/
danielk19773b8a05f2007-03-19 17:44:26 +00003790int sqlite3PagerStmtCommit(Pager *pPager){
drhac69b052004-05-12 13:30:07 +00003791 if( pPager->stmtInUse ){
drh03eb96a2002-11-10 23:32:56 +00003792 PgHdr *pPg, *pNext;
danielk1977ef73ee92004-11-06 12:26:07 +00003793 TRACE2("STMT-COMMIT %d\n", PAGERID(pPager));
drhb7f91642004-10-31 02:22:47 +00003794 if( !MEMDB ){
drh054889e2005-11-30 03:20:31 +00003795 sqlite3OsSeek(pPager->stfd, 0);
3796 /* sqlite3OsTruncate(pPager->stfd, 0); */
drhac69b052004-05-12 13:30:07 +00003797 sqliteFree( pPager->aInStmt );
3798 pPager->aInStmt = 0;
drh663fc632002-02-02 18:49:19 +00003799 }
drhac69b052004-05-12 13:30:07 +00003800 for(pPg=pPager->pStmt; pPg; pPg=pNext){
3801 pNext = pPg->pNextStmt;
3802 assert( pPg->inStmt );
3803 pPg->inStmt = 0;
3804 pPg->pPrevStmt = pPg->pNextStmt = 0;
drhb7f91642004-10-31 02:22:47 +00003805 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00003806 PgHistory *pHist = PGHDR_TO_HIST(pPg, pPager);
3807 sqliteFree(pHist->pStmt);
3808 pHist->pStmt = 0;
3809 }
3810 }
3811 pPager->stmtNRec = 0;
3812 pPager->stmtInUse = 0;
3813 pPager->pStmt = 0;
drh663fc632002-02-02 18:49:19 +00003814 }
drhac69b052004-05-12 13:30:07 +00003815 pPager->stmtAutoopen = 0;
drhfa86c412002-02-02 15:01:15 +00003816 return SQLITE_OK;
3817}
3818
3819/*
drhac69b052004-05-12 13:30:07 +00003820** Rollback a statement.
drhfa86c412002-02-02 15:01:15 +00003821*/
danielk19773b8a05f2007-03-19 17:44:26 +00003822int sqlite3PagerStmtRollback(Pager *pPager){
drhfa86c412002-02-02 15:01:15 +00003823 int rc;
drhac69b052004-05-12 13:30:07 +00003824 if( pPager->stmtInUse ){
danielk1977ef73ee92004-11-06 12:26:07 +00003825 TRACE2("STMT-ROLLBACK %d\n", PAGERID(pPager));
drhb7f91642004-10-31 02:22:47 +00003826 if( MEMDB ){
drhac69b052004-05-12 13:30:07 +00003827 PgHdr *pPg;
3828 for(pPg=pPager->pStmt; pPg; pPg=pPg->pNextStmt){
3829 PgHistory *pHist = PGHDR_TO_HIST(pPg, pPager);
3830 if( pHist->pStmt ){
3831 memcpy(PGHDR_TO_DATA(pPg), pHist->pStmt, pPager->pageSize);
3832 sqliteFree(pHist->pStmt);
3833 pHist->pStmt = 0;
3834 }
3835 }
3836 pPager->dbSize = pPager->stmtSize;
3837 memoryTruncate(pPager);
3838 rc = SQLITE_OK;
3839 }else{
3840 rc = pager_stmt_playback(pPager);
3841 }
danielk19773b8a05f2007-03-19 17:44:26 +00003842 sqlite3PagerStmtCommit(pPager);
drh663fc632002-02-02 18:49:19 +00003843 }else{
3844 rc = SQLITE_OK;
3845 }
drhac69b052004-05-12 13:30:07 +00003846 pPager->stmtAutoopen = 0;
drhfa86c412002-02-02 15:01:15 +00003847 return rc;
3848}
3849
drh73509ee2003-04-06 20:44:45 +00003850/*
3851** Return the full pathname of the database file.
3852*/
danielk19773b8a05f2007-03-19 17:44:26 +00003853const char *sqlite3PagerFilename(Pager *pPager){
drh73509ee2003-04-06 20:44:45 +00003854 return pPager->zFilename;
3855}
3856
drhb20ea9d2004-02-09 01:20:36 +00003857/*
danielk19775865e3d2004-06-14 06:03:57 +00003858** Return the directory of the database file.
3859*/
danielk19773b8a05f2007-03-19 17:44:26 +00003860const char *sqlite3PagerDirname(Pager *pPager){
danielk19775865e3d2004-06-14 06:03:57 +00003861 return pPager->zDirectory;
3862}
3863
3864/*
3865** Return the full pathname of the journal file.
3866*/
danielk19773b8a05f2007-03-19 17:44:26 +00003867const char *sqlite3PagerJournalname(Pager *pPager){
danielk19775865e3d2004-06-14 06:03:57 +00003868 return pPager->zJournal;
3869}
3870
3871/*
drh2c8997b2005-08-27 16:36:48 +00003872** Return true if fsync() calls are disabled for this pager. Return FALSE
3873** if fsync()s are executed normally.
3874*/
danielk19773b8a05f2007-03-19 17:44:26 +00003875int sqlite3PagerNosync(Pager *pPager){
drh2c8997b2005-08-27 16:36:48 +00003876 return pPager->noSync;
3877}
3878
3879/*
drhb20ea9d2004-02-09 01:20:36 +00003880** Set the codec for this pager
3881*/
danielk19773b8a05f2007-03-19 17:44:26 +00003882void sqlite3PagerSetCodec(
drhb20ea9d2004-02-09 01:20:36 +00003883 Pager *pPager,
drhc001c582006-03-06 18:23:16 +00003884 void *(*xCodec)(void*,void*,Pgno,int),
drhb20ea9d2004-02-09 01:20:36 +00003885 void *pCodecArg
3886){
3887 pPager->xCodec = xCodec;
3888 pPager->pCodecArg = pCodecArg;
3889}
3890
danielk197713adf8a2004-06-03 16:08:41 +00003891/*
danielk1977aa5ccdf2004-06-14 05:10:42 +00003892** This routine is called to increment the database file change-counter,
3893** stored at byte 24 of the pager file.
3894*/
3895static int pager_incr_changecounter(Pager *pPager){
danielk1977aa5ccdf2004-06-14 05:10:42 +00003896 PgHdr *pPgHdr;
3897 u32 change_counter;
3898 int rc;
3899
3900 /* Open page 1 of the file for writing. */
danielk19773b8a05f2007-03-19 17:44:26 +00003901 rc = sqlite3PagerGet(pPager, 1, &pPgHdr);
danielk1977aa5ccdf2004-06-14 05:10:42 +00003902 if( rc!=SQLITE_OK ) return rc;
danielk19773b8a05f2007-03-19 17:44:26 +00003903 rc = sqlite3PagerWrite(pPgHdr);
danielk1977aa5ccdf2004-06-14 05:10:42 +00003904 if( rc!=SQLITE_OK ) return rc;
3905
3906 /* Read the current value at byte 24. */
danielk1977aa5ccdf2004-06-14 05:10:42 +00003907 change_counter = retrieve32bits(pPgHdr, 24);
3908
3909 /* Increment the value just read and write it back to byte 24. */
3910 change_counter++;
drhc001c582006-03-06 18:23:16 +00003911 put32bits(((char*)PGHDR_TO_DATA(pPgHdr))+24, change_counter);
danielk1977e277be02007-03-23 18:12:06 +00003912 pPager->iChangeCount = change_counter;
danielk1977aa5ccdf2004-06-14 05:10:42 +00003913
3914 /* Release the page reference. */
danielk19773b8a05f2007-03-19 17:44:26 +00003915 sqlite3PagerUnref(pPgHdr);
danielk197741483462007-03-24 16:45:04 +00003916 pPager->changeCountDone = 1;
danielk1977aa5ccdf2004-06-14 05:10:42 +00003917 return SQLITE_OK;
3918}
3919
3920/*
danielk197713adf8a2004-06-03 16:08:41 +00003921** Sync the database file for the pager pPager. zMaster points to the name
3922** of a master journal file that should be written into the individual
3923** journal file. zMaster may be NULL, which is interpreted as no master
3924** journal (a single database transaction).
3925**
3926** This routine ensures that the journal is synced, all dirty pages written
3927** to the database file and the database file synced. The only thing that
3928** remains to commit the transaction is to delete the journal file (or
3929** master journal file if specified).
3930**
3931** Note that if zMaster==NULL, this does not overwrite a previous value
danielk19773b8a05f2007-03-19 17:44:26 +00003932** passed to an sqlite3PagerSync() call.
danielk1977d761c0c2004-11-05 16:37:02 +00003933**
3934** If parameter nTrunc is non-zero, then the pager file is truncated to
3935** nTrunc pages (this is used by auto-vacuum databases).
danielk197713adf8a2004-06-03 16:08:41 +00003936*/
danielk19773b8a05f2007-03-19 17:44:26 +00003937int sqlite3PagerSync(Pager *pPager, const char *zMaster, Pgno nTrunc){
danielk197713adf8a2004-06-03 16:08:41 +00003938 int rc = SQLITE_OK;
3939
danielk1977ef73ee92004-11-06 12:26:07 +00003940 TRACE4("DATABASE SYNC: File=%s zMaster=%s nTrunc=%d\n",
3941 pPager->zFilename, zMaster, nTrunc);
3942
danielk1977aa5ccdf2004-06-14 05:10:42 +00003943 /* If this is an in-memory db, or no pages have been written to, or this
3944 ** function has already been called, it is a no-op.
danielk197713adf8a2004-06-03 16:08:41 +00003945 */
drhb7f91642004-10-31 02:22:47 +00003946 if( pPager->state!=PAGER_SYNCED && !MEMDB && pPager->dirtyCache ){
danielk197713adf8a2004-06-03 16:08:41 +00003947 PgHdr *pPg;
3948 assert( pPager->journalOpen );
3949
danielk197776572402004-06-25 02:38:54 +00003950 /* If a master journal file name has already been written to the
3951 ** journal file, then no sync is required. This happens when it is
3952 ** written, then the process fails to upgrade from a RESERVED to an
3953 ** EXCLUSIVE lock. The next time the process tries to commit the
3954 ** transaction the m-j name will have already been written.
3955 */
3956 if( !pPager->setMaster ){
3957 rc = pager_incr_changecounter(pPager);
3958 if( rc!=SQLITE_OK ) goto sync_exit;
danielk1977ef73ee92004-11-06 12:26:07 +00003959#ifndef SQLITE_OMIT_AUTOVACUUM
3960 if( nTrunc!=0 ){
3961 /* If this transaction has made the database smaller, then all pages
3962 ** being discarded by the truncation must be written to the journal
3963 ** file.
3964 */
3965 Pgno i;
drh267cb322005-09-16 17:16:52 +00003966 int iSkip = PAGER_MJ_PGNO(pPager);
danielk1977ef73ee92004-11-06 12:26:07 +00003967 for( i=nTrunc+1; i<=pPager->origDbSize; i++ ){
drh267cb322005-09-16 17:16:52 +00003968 if( !(pPager->aInJournal[i/8] & (1<<(i&7))) && i!=iSkip ){
danielk19773b8a05f2007-03-19 17:44:26 +00003969 rc = sqlite3PagerGet(pPager, i, &pPg);
danielk1977ef73ee92004-11-06 12:26:07 +00003970 if( rc!=SQLITE_OK ) goto sync_exit;
danielk19773b8a05f2007-03-19 17:44:26 +00003971 rc = sqlite3PagerWrite(pPg);
3972 sqlite3PagerUnref(pPg);
danielk1977ef73ee92004-11-06 12:26:07 +00003973 if( rc!=SQLITE_OK ) goto sync_exit;
3974 }
3975 }
3976 }
3977#endif
danielk197776572402004-06-25 02:38:54 +00003978 rc = writeMasterJournal(pPager, zMaster);
3979 if( rc!=SQLITE_OK ) goto sync_exit;
3980 rc = syncJournal(pPager);
3981 if( rc!=SQLITE_OK ) goto sync_exit;
3982 }
danielk197713adf8a2004-06-03 16:08:41 +00003983
danielk1977d761c0c2004-11-05 16:37:02 +00003984#ifndef SQLITE_OMIT_AUTOVACUUM
3985 if( nTrunc!=0 ){
danielk19773b8a05f2007-03-19 17:44:26 +00003986 rc = sqlite3PagerTruncate(pPager, nTrunc);
danielk1977d761c0c2004-11-05 16:37:02 +00003987 if( rc!=SQLITE_OK ) goto sync_exit;
3988 }
3989#endif
3990
danielk197713adf8a2004-06-03 16:08:41 +00003991 /* Write all dirty pages to the database file */
3992 pPg = pager_get_all_dirty_pages(pPager);
3993 rc = pager_write_pagelist(pPg);
3994 if( rc!=SQLITE_OK ) goto sync_exit;
3995
danielk1977aa5ccdf2004-06-14 05:10:42 +00003996 /* Sync the database file. */
3997 if( !pPager->noSync ){
drh054889e2005-11-30 03:20:31 +00003998 rc = sqlite3OsSync(pPager->fd, 0);
danielk197713adf8a2004-06-03 16:08:41 +00003999 }
drhb0603412007-02-28 04:47:26 +00004000 IOTRACE(("DBSYNC %p\n", pPager))
danielk1977aa5ccdf2004-06-14 05:10:42 +00004001
4002 pPager->state = PAGER_SYNCED;
drh5229ae42006-03-23 23:29:04 +00004003 }else if( MEMDB && nTrunc!=0 ){
danielk19773b8a05f2007-03-19 17:44:26 +00004004 rc = sqlite3PagerTruncate(pPager, nTrunc);
danielk197713adf8a2004-06-03 16:08:41 +00004005 }
4006
4007sync_exit:
4008 return rc;
4009}
4010
danielk1977687566d2004-11-02 12:56:41 +00004011#ifndef SQLITE_OMIT_AUTOVACUUM
4012/*
4013** Move the page identified by pData to location pgno in the file.
4014**
4015** There must be no references to the current page pgno. If current page
4016** pgno is not already in the rollback journal, it is not written there by
4017** by this routine. The same applies to the page pData refers to on entry to
4018** this routine.
4019**
4020** References to the page refered to by pData remain valid. Updating any
4021** meta-data associated with page pData (i.e. data stored in the nExtra bytes
4022** allocated along with the page) is the responsibility of the caller.
4023**
danielk19775fd057a2005-03-09 13:09:43 +00004024** A transaction must be active when this routine is called. It used to be
4025** required that a statement transaction was not active, but this restriction
4026** has been removed (CREATE INDEX needs to move a page when a statement
4027** transaction is active).
danielk1977687566d2004-11-02 12:56:41 +00004028*/
danielk19773b8a05f2007-03-19 17:44:26 +00004029int sqlite3PagerMovepage(Pager *pPager, DbPage *pPg, Pgno pgno){
danielk1977687566d2004-11-02 12:56:41 +00004030 PgHdr *pPgOld;
danielk1977f5fdda82004-11-03 08:44:05 +00004031 int h;
danielk197794daf7f2004-11-08 09:26:09 +00004032 Pgno needSyncPgno = 0;
danielk1977687566d2004-11-02 12:56:41 +00004033
danielk1977687566d2004-11-02 12:56:41 +00004034 assert( pPg->nRef>0 );
4035
danielk1977599fcba2004-11-08 07:13:13 +00004036 TRACE5("MOVE %d page %d (needSync=%d) moves to %d\n",
4037 PAGERID(pPager), pPg->pgno, pPg->needSync, pgno);
drhb0603412007-02-28 04:47:26 +00004038 IOTRACE(("MOVE %p %d %d\n", pPager, pPg->pgno, pgno))
danielk1977ef73ee92004-11-06 12:26:07 +00004039
danielk197794daf7f2004-11-08 09:26:09 +00004040 if( pPg->needSync ){
4041 needSyncPgno = pPg->pgno;
4042 assert( pPg->inJournal );
4043 assert( pPg->dirty );
danielk1977ae825582004-11-23 09:06:55 +00004044 assert( pPager->needSync );
danielk197794daf7f2004-11-08 09:26:09 +00004045 }
4046
danielk1977687566d2004-11-02 12:56:41 +00004047 /* Unlink pPg from it's hash-chain */
danielk1977f5fdda82004-11-03 08:44:05 +00004048 unlinkHashChain(pPager, pPg);
danielk1977687566d2004-11-02 12:56:41 +00004049
danielk1977ef73ee92004-11-06 12:26:07 +00004050 /* If the cache contains a page with page-number pgno, remove it
danielk1977599fcba2004-11-08 07:13:13 +00004051 ** from it's hash chain. Also, if the PgHdr.needSync was set for
4052 ** page pgno before the 'move' operation, it needs to be retained
4053 ** for the page moved there.
danielk1977f5fdda82004-11-03 08:44:05 +00004054 */
danielk1977687566d2004-11-02 12:56:41 +00004055 pPgOld = pager_lookup(pPager, pgno);
4056 if( pPgOld ){
danielk1977f5fdda82004-11-03 08:44:05 +00004057 assert( pPgOld->nRef==0 );
4058 unlinkHashChain(pPager, pPgOld);
drh605ad8f2006-05-03 23:34:05 +00004059 makeClean(pPgOld);
danielk1977ef73ee92004-11-06 12:26:07 +00004060 if( pPgOld->needSync ){
danielk197745901d62004-11-10 15:27:38 +00004061 assert( pPgOld->inJournal );
4062 pPg->inJournal = 1;
danielk1977ef73ee92004-11-06 12:26:07 +00004063 pPg->needSync = 1;
danielk1977ae825582004-11-23 09:06:55 +00004064 assert( pPager->needSync );
danielk1977ef73ee92004-11-06 12:26:07 +00004065 }
danielk1977687566d2004-11-02 12:56:41 +00004066 }
4067
danielk1977f5fdda82004-11-03 08:44:05 +00004068 /* Change the page number for pPg and insert it into the new hash-chain. */
drh3765df42006-06-28 18:18:09 +00004069 assert( pgno!=0 );
danielk1977f5fdda82004-11-03 08:44:05 +00004070 pPg->pgno = pgno;
drh8ca0c722006-05-07 17:49:38 +00004071 h = pgno & (pPager->nHash-1);
danielk1977f5fdda82004-11-03 08:44:05 +00004072 if( pPager->aHash[h] ){
4073 assert( pPager->aHash[h]->pPrevHash==0 );
4074 pPager->aHash[h]->pPrevHash = pPg;
4075 }
4076 pPg->pNextHash = pPager->aHash[h];
4077 pPager->aHash[h] = pPg;
4078 pPg->pPrevHash = 0;
4079
drh605ad8f2006-05-03 23:34:05 +00004080 makeDirty(pPg);
danielk1977687566d2004-11-02 12:56:41 +00004081 pPager->dirtyCache = 1;
4082
danielk197794daf7f2004-11-08 09:26:09 +00004083 if( needSyncPgno ){
4084 /* If needSyncPgno is non-zero, then the journal file needs to be
4085 ** sync()ed before any data is written to database file page needSyncPgno.
4086 ** Currently, no such page exists in the page-cache and the
4087 ** Pager.aInJournal bit has been set. This needs to be remedied by loading
4088 ** the page into the pager-cache and setting the PgHdr.needSync flag.
danielk1977ae825582004-11-23 09:06:55 +00004089 **
danielk19773b8a05f2007-03-19 17:44:26 +00004090 ** The sqlite3PagerGet() call may cause the journal to sync. So make
danielk1977ae825582004-11-23 09:06:55 +00004091 ** sure the Pager.needSync flag is set too.
danielk197794daf7f2004-11-08 09:26:09 +00004092 */
4093 int rc;
danielk19773b8a05f2007-03-19 17:44:26 +00004094 PgHdr *pPgHdr;
danielk1977ae825582004-11-23 09:06:55 +00004095 assert( pPager->needSync );
danielk19773b8a05f2007-03-19 17:44:26 +00004096 rc = sqlite3PagerGet(pPager, needSyncPgno, &pPgHdr);
danielk197794daf7f2004-11-08 09:26:09 +00004097 if( rc!=SQLITE_OK ) return rc;
danielk1977ae825582004-11-23 09:06:55 +00004098 pPager->needSync = 1;
danielk19773b8a05f2007-03-19 17:44:26 +00004099 pPgHdr->needSync = 1;
4100 pPgHdr->inJournal = 1;
4101 makeDirty(pPgHdr);
4102 sqlite3PagerUnref(pPgHdr);
danielk197794daf7f2004-11-08 09:26:09 +00004103 }
4104
danielk1977687566d2004-11-02 12:56:41 +00004105 return SQLITE_OK;
4106}
4107#endif
4108
danielk19773b8a05f2007-03-19 17:44:26 +00004109/*
4110** Return a pointer to the data for the specified page.
4111*/
4112void *sqlite3PagerGetData(DbPage *pPg){
4113 return PGHDR_TO_DATA(pPg);
4114}
4115
4116/*
4117** Return a pointer to the Pager.nExtra bytes of "extra" space
4118** allocated along with the specified page.
4119*/
4120void *sqlite3PagerGetExtra(DbPage *pPg){
4121 Pager *pPager = pPg->pPager;
4122 return (pPager?PGHDR_TO_EXTRA(pPg, pPager):0);
4123}
4124
danielk197741483462007-03-24 16:45:04 +00004125/*
4126** Get/set the locking-mode for this pager. Parameter eMode must be one
4127** of PAGER_LOCKINGMODE_QUERY, PAGER_LOCKINGMODE_NORMAL or
4128** PAGER_LOCKINGMODE_EXCLUSIVE. If the parameter is not _QUERY, then
4129** the locking-mode is set to the value specified.
4130**
4131** The returned value is either PAGER_LOCKINGMODE_NORMAL or
4132** PAGER_LOCKINGMODE_EXCLUSIVE, indicating the current (possibly updated)
4133** locking-mode.
4134*/
4135int sqlite3PagerLockingMode(Pager *pPager, int eMode){
4136 if( eMode>=0 ){
4137 pPager->exclusiveMode = eMode;
4138 }
4139 return (int)pPager->exclusiveMode;
4140}
4141
dougcurrie81c95ef2004-06-18 23:21:47 +00004142#if defined(SQLITE_DEBUG) || defined(SQLITE_TEST)
drh89ac8c12004-06-09 14:17:20 +00004143/*
4144** Return the current state of the file lock for the given pager.
4145** The return value is one of NO_LOCK, SHARED_LOCK, RESERVED_LOCK,
4146** PENDING_LOCK, or EXCLUSIVE_LOCK.
4147*/
danielk19773b8a05f2007-03-19 17:44:26 +00004148int sqlite3PagerLockstate(Pager *pPager){
drh054889e2005-11-30 03:20:31 +00004149 return sqlite3OsLockState(pPager->fd);
drh89ac8c12004-06-09 14:17:20 +00004150}
4151#endif
4152
danielk197793758c82005-01-21 08:13:14 +00004153#ifdef SQLITE_DEBUG
drhdd793422001-06-28 01:54:48 +00004154/*
4155** Print a listing of all referenced pages and their ref count.
4156*/
danielk19773b8a05f2007-03-19 17:44:26 +00004157void sqlite3PagerRefdump(Pager *pPager){
drhdd793422001-06-28 01:54:48 +00004158 PgHdr *pPg;
4159 for(pPg=pPager->pAll; pPg; pPg=pPg->pNextAll){
4160 if( pPg->nRef<=0 ) continue;
drhfe63d1c2004-09-08 20:13:04 +00004161 sqlite3DebugPrintf("PAGE %3d addr=%p nRef=%d\n",
4162 pPg->pgno, PGHDR_TO_DATA(pPg), pPg->nRef);
drhdd793422001-06-28 01:54:48 +00004163 }
4164}
4165#endif
drh2e66f0b2005-04-28 17:18:48 +00004166
4167#endif /* SQLITE_OMIT_DISKIO */