blob: 467e2b3deed4095d74ce6a44a19191c51b6161b6 [file] [log] [blame]
danielk19778c0a7912008-08-20 14:49:23 +00001/*
2** 2008 August 05
3**
4** The author disclaims copyright to this source code. In place of
5** a legal notice, here is a blessing:
6**
7** May you do good and not evil.
8** May you find forgiveness for yourself and forgive others.
9** May you share freely, never taking more than you give.
10**
11*************************************************************************
12** This file implements that page cache.
danielk19778c0a7912008-08-20 14:49:23 +000013*/
14#include "sqliteInt.h"
15
16/*
17** A complete page cache is an instance of this structure.
18*/
19struct PCache {
danielk1977d491e1b2008-08-26 18:05:48 +000020 PgHdr *pDirty, *pDirtyTail; /* List of dirty pages in LRU order */
21 PgHdr *pSynced; /* Last synced page in dirty page list */
danielk1977bc2ca9e2008-11-13 14:28:28 +000022 int nRef; /* Number of referenced pages */
drh3b42abb2011-11-09 14:23:04 +000023 int szCache; /* Configured cache size */
drha85f7e32008-08-28 02:26:07 +000024 int szPage; /* Size of every page in this cache */
25 int szExtra; /* Size of extra space for each page */
drhfe21a792014-02-03 17:04:29 +000026 u8 bPurgeable; /* True if pages are on backing store */
27 u8 eCreate; /* eCreate value for for xFetch() */
drha85f7e32008-08-28 02:26:07 +000028 int (*xStress)(void*,PgHdr*); /* Call to try make a page clean */
29 void *pStress; /* Argument to xStress */
danielk1977bc2ca9e2008-11-13 14:28:28 +000030 sqlite3_pcache *pCache; /* Pluggable cache module */
danielk1977bea2a942009-01-20 17:06:27 +000031 PgHdr *pPage1; /* Reference to page 1 */
danielk19778c0a7912008-08-20 14:49:23 +000032};
33
danielk19778c0a7912008-08-20 14:49:23 +000034/********************************** Linked List Management ********************/
35
drha8dcba92014-08-22 20:35:29 +000036/* Allowed values for second argument to pcacheManageDirtyList() */
37#define PCACHE_DIRTYLIST_REMOVE 1 /* Remove pPage from dirty list */
38#define PCACHE_DIRTYLIST_ADD 2 /* Add pPage to the dirty list */
39#define PCACHE_DIRTYLIST_FRONT 3 /* Move pPage to the front of the list */
danielk19778c0a7912008-08-20 14:49:23 +000040
41/*
drha8dcba92014-08-22 20:35:29 +000042** Manage pPage's participation on the dirty list. Bits of the addRemove
43** argument determines what operation to do. The 0x01 bit means first
44** remove pPage from the dirty list. The 0x02 means add pPage back to
45** the dirty list. Doing both moves pPage to the front of the dirty list.
danielk19778c0a7912008-08-20 14:49:23 +000046*/
drha8dcba92014-08-22 20:35:29 +000047static void pcacheManageDirtyList(PgHdr *pPage, u8 addRemove){
danielk1977bc2ca9e2008-11-13 14:28:28 +000048 PCache *p = pPage->pCache;
danielk19778c0a7912008-08-20 14:49:23 +000049
drha8dcba92014-08-22 20:35:29 +000050 if( addRemove & PCACHE_DIRTYLIST_REMOVE ){
51 assert( pPage->pDirtyNext || pPage==p->pDirtyTail );
52 assert( pPage->pDirtyPrev || pPage==p->pDirty );
53
54 /* Update the PCache1.pSynced variable if necessary. */
55 if( p->pSynced==pPage ){
56 PgHdr *pSynced = pPage->pDirtyPrev;
57 while( pSynced && (pSynced->flags&PGHDR_NEED_SYNC) ){
58 pSynced = pSynced->pDirtyPrev;
59 }
60 p->pSynced = pSynced;
61 }
62
63 if( pPage->pDirtyNext ){
64 pPage->pDirtyNext->pDirtyPrev = pPage->pDirtyPrev;
65 }else{
66 assert( pPage==p->pDirtyTail );
67 p->pDirtyTail = pPage->pDirtyPrev;
68 }
69 if( pPage->pDirtyPrev ){
70 pPage->pDirtyPrev->pDirtyNext = pPage->pDirtyNext;
71 }else{
72 assert( pPage==p->pDirty );
73 p->pDirty = pPage->pDirtyNext;
74 if( p->pDirty==0 && p->bPurgeable ){
75 assert( p->eCreate==1 );
76 p->eCreate = 2;
77 }
78 }
79 pPage->pDirtyNext = 0;
80 pPage->pDirtyPrev = 0;
danielk19778c0a7912008-08-20 14:49:23 +000081 }
drha8dcba92014-08-22 20:35:29 +000082 if( addRemove & PCACHE_DIRTYLIST_ADD ){
83 assert( pPage->pDirtyNext==0 && pPage->pDirtyPrev==0 && p->pDirty!=pPage );
84
85 pPage->pDirtyNext = p->pDirty;
86 if( pPage->pDirtyNext ){
87 assert( pPage->pDirtyNext->pDirtyPrev==0 );
88 pPage->pDirtyNext->pDirtyPrev = pPage;
drh36ce9192014-09-12 20:30:59 +000089 }else{
90 p->pDirtyTail = pPage;
91 if( p->bPurgeable ){
92 assert( p->eCreate==2 );
93 p->eCreate = 1;
94 }
drha8dcba92014-08-22 20:35:29 +000095 }
96 p->pDirty = pPage;
drha8dcba92014-08-22 20:35:29 +000097 if( !p->pSynced && 0==(pPage->flags&PGHDR_NEED_SYNC) ){
98 p->pSynced = pPage;
99 }
danielk1977bc2ca9e2008-11-13 14:28:28 +0000100 }
danielk19778c0a7912008-08-20 14:49:23 +0000101}
102
103/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000104** Wrapper around the pluggable caches xUnpin method. If the cache is
105** being used for an in-memory database, this function is a no-op.
danielk19778c0a7912008-08-20 14:49:23 +0000106*/
danielk1977bc2ca9e2008-11-13 14:28:28 +0000107static void pcacheUnpin(PgHdr *p){
drha8dcba92014-08-22 20:35:29 +0000108 if( p->pCache->bPurgeable ){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000109 if( p->pgno==1 ){
drha8dcba92014-08-22 20:35:29 +0000110 p->pCache->pPage1 = 0;
danielk1977d491e1b2008-08-26 18:05:48 +0000111 }
drha8dcba92014-08-22 20:35:29 +0000112 sqlite3GlobalConfig.pcache2.xUnpin(p->pCache->pCache, p->pPage, 0);
danielk19778c0a7912008-08-20 14:49:23 +0000113 }
danielk19778c0a7912008-08-20 14:49:23 +0000114}
115
drhc3031c62014-08-26 15:06:49 +0000116/*
117** Compute the number of pages of cache requested.
118*/
119static int numberOfCachePages(PCache *p){
120 if( p->szCache>=0 ){
121 return p->szCache;
122 }else{
123 return (int)((-1024*(i64)p->szCache)/(p->szPage+p->szExtra));
124 }
125}
126
danielk19778c0a7912008-08-20 14:49:23 +0000127/*************************************************** General Interfaces ******
128**
129** Initialize and shutdown the page cache subsystem. Neither of these
130** functions are threadsafe.
131*/
132int sqlite3PcacheInitialize(void){
dan22e21ff2011-11-08 20:08:44 +0000133 if( sqlite3GlobalConfig.pcache2.xInit==0 ){
drhf759bb82010-09-09 18:25:34 +0000134 /* IMPLEMENTATION-OF: R-26801-64137 If the xInit() method is NULL, then the
135 ** built-in default page cache is used instead of the application defined
136 ** page cache. */
danielk1977bc2ca9e2008-11-13 14:28:28 +0000137 sqlite3PCacheSetDefault();
danielk19778c0a7912008-08-20 14:49:23 +0000138 }
dan22e21ff2011-11-08 20:08:44 +0000139 return sqlite3GlobalConfig.pcache2.xInit(sqlite3GlobalConfig.pcache2.pArg);
danielk19778c0a7912008-08-20 14:49:23 +0000140}
141void sqlite3PcacheShutdown(void){
dan22e21ff2011-11-08 20:08:44 +0000142 if( sqlite3GlobalConfig.pcache2.xShutdown ){
drhf759bb82010-09-09 18:25:34 +0000143 /* IMPLEMENTATION-OF: R-26000-56589 The xShutdown() method may be NULL. */
dan22e21ff2011-11-08 20:08:44 +0000144 sqlite3GlobalConfig.pcache2.xShutdown(sqlite3GlobalConfig.pcache2.pArg);
danielk1977bc2ca9e2008-11-13 14:28:28 +0000145 }
danielk19778c0a7912008-08-20 14:49:23 +0000146}
147
148/*
149** Return the size in bytes of a PCache object.
150*/
151int sqlite3PcacheSize(void){ return sizeof(PCache); }
152
153/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000154** Create a new PCache object. Storage space to hold the object
155** has already been allocated and is passed in as the p pointer.
156** The caller discovers how much space needs to be allocated by
157** calling sqlite3PcacheSize().
danielk19778c0a7912008-08-20 14:49:23 +0000158*/
drhc3031c62014-08-26 15:06:49 +0000159int sqlite3PcacheOpen(
danielk19778c0a7912008-08-20 14:49:23 +0000160 int szPage, /* Size of every page */
161 int szExtra, /* Extra space associated with each page */
162 int bPurgeable, /* True if pages are on backing store */
danielk1977a858aa22008-08-22 16:22:17 +0000163 int (*xStress)(void*,PgHdr*),/* Call to try to make pages clean */
danielk19778c0a7912008-08-20 14:49:23 +0000164 void *pStress, /* Argument to xStress */
165 PCache *p /* Preallocated space for the PCache */
166){
danielk19778c0a7912008-08-20 14:49:23 +0000167 memset(p, 0, sizeof(PCache));
drhc3031c62014-08-26 15:06:49 +0000168 p->szPage = 1;
danielk19778c0a7912008-08-20 14:49:23 +0000169 p->szExtra = szExtra;
170 p->bPurgeable = bPurgeable;
drhfe21a792014-02-03 17:04:29 +0000171 p->eCreate = 2;
danielk19778c0a7912008-08-20 14:49:23 +0000172 p->xStress = xStress;
173 p->pStress = pStress;
drh3b42abb2011-11-09 14:23:04 +0000174 p->szCache = 100;
drhc3031c62014-08-26 15:06:49 +0000175 return sqlite3PcacheSetPageSize(p, szPage);
danielk19778c0a7912008-08-20 14:49:23 +0000176}
177
drh41d30272008-08-20 21:47:45 +0000178/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000179** Change the page size for PCache object. The caller must ensure that there
180** are no outstanding page references when this function is called.
drh41d30272008-08-20 21:47:45 +0000181*/
drhc3031c62014-08-26 15:06:49 +0000182int sqlite3PcacheSetPageSize(PCache *pCache, int szPage){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000183 assert( pCache->nRef==0 && pCache->pDirty==0 );
drhc3031c62014-08-26 15:06:49 +0000184 if( pCache->szPage ){
185 sqlite3_pcache *pNew;
186 pNew = sqlite3GlobalConfig.pcache2.xCreate(
drh51dc84e2014-12-30 13:04:25 +0000187 szPage, pCache->szExtra + ROUND8(sizeof(PgHdr)),
188 pCache->bPurgeable
drhc3031c62014-08-26 15:06:49 +0000189 );
190 if( pNew==0 ) return SQLITE_NOMEM;
191 sqlite3GlobalConfig.pcache2.xCachesize(pNew, numberOfCachePages(pCache));
192 if( pCache->pCache ){
193 sqlite3GlobalConfig.pcache2.xDestroy(pCache->pCache);
194 }
195 pCache->pCache = pNew;
drh2ec050c2010-03-02 23:34:54 +0000196 pCache->pPage1 = 0;
drhc3031c62014-08-26 15:06:49 +0000197 pCache->szPage = szPage;
danielk1977bc2ca9e2008-11-13 14:28:28 +0000198 }
drhc3031c62014-08-26 15:06:49 +0000199 return SQLITE_OK;
drh3b42abb2011-11-09 14:23:04 +0000200}
201
202/*
danielk19778c0a7912008-08-20 14:49:23 +0000203** Try to obtain a page from the cache.
drhbc59ac02014-08-27 23:18:01 +0000204**
205** This routine returns a pointer to an sqlite3_pcache_page object if
206** such an object is already in cache, or if a new one is created.
207** This routine returns a NULL pointer if the object was not in cache
208** and could not be created.
209**
210** The createFlags should be 0 to check for existing pages and should
211** be 3 (not 1, but 3) to try to create a new page.
212**
213** If the createFlag is 0, then NULL is always returned if the page
214** is not already in the cache. If createFlag is 1, then a new page
215** is created only if that can be done without spilling dirty pages
216** and without exceeding the cache size limit.
217**
218** The caller needs to invoke sqlite3PcacheFetchFinish() to properly
219** initialize the sqlite3_pcache_page object and convert it into a
220** PgHdr object. The sqlite3PcacheFetch() and sqlite3PcacheFetchFinish()
221** routines are split this way for performance reasons. When separated
222** they can both (usually) operate without having to push values to
223** the stack on entry and pop them back off on exit, which saves a
224** lot of pushing and popping.
danielk19778c0a7912008-08-20 14:49:23 +0000225*/
drhbc59ac02014-08-27 23:18:01 +0000226sqlite3_pcache_page *sqlite3PcacheFetch(
danielk19778c0a7912008-08-20 14:49:23 +0000227 PCache *pCache, /* Obtain the page from this cache */
228 Pgno pgno, /* Page number to obtain */
drhbc59ac02014-08-27 23:18:01 +0000229 int createFlag /* If true, create page if it does not exist already */
danielk19778c0a7912008-08-20 14:49:23 +0000230){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000231 int eCreate;
danielk1977f599a192008-08-28 10:21:16 +0000232
danielk19778c0a7912008-08-20 14:49:23 +0000233 assert( pCache!=0 );
drhc3031c62014-08-26 15:06:49 +0000234 assert( pCache->pCache!=0 );
235 assert( createFlag==3 || createFlag==0 );
danielk19778c0a7912008-08-20 14:49:23 +0000236 assert( pgno>0 );
danielk19778c0a7912008-08-20 14:49:23 +0000237
drhfe21a792014-02-03 17:04:29 +0000238 /* eCreate defines what to do if the page does not exist.
239 ** 0 Do not allocate a new page. (createFlag==0)
240 ** 1 Allocate a new page if doing so is inexpensive.
241 ** (createFlag==1 AND bPurgeable AND pDirty)
242 ** 2 Allocate a new page even it doing so is difficult.
243 ** (createFlag==1 AND !(bPurgeable AND pDirty)
244 */
drhc3031c62014-08-26 15:06:49 +0000245 eCreate = createFlag & pCache->eCreate;
246 assert( eCreate==0 || eCreate==1 || eCreate==2 );
247 assert( createFlag==0 || pCache->eCreate==eCreate );
248 assert( createFlag==0 || eCreate==1+(!pCache->bPurgeable||!pCache->pDirty) );
drhbc59ac02014-08-27 23:18:01 +0000249 return sqlite3GlobalConfig.pcache2.xFetch(pCache->pCache, pgno, eCreate);
250}
danielk1977bc2ca9e2008-11-13 14:28:28 +0000251
drhbc59ac02014-08-27 23:18:01 +0000252/*
253** If the sqlite3PcacheFetch() routine is unable to allocate a new
254** page because new clean pages are available for reuse and the cache
255** size limit has been reached, then this routine can be invoked to
256** try harder to allocate a page. This routine might invoke the stress
257** callback to spill dirty pages to the journal. It will then try to
258** allocate the new page and will only fail to allocate a new page on
259** an OOM error.
260**
261** This routine should be invoked only after sqlite3PcacheFetch() fails.
262*/
263int sqlite3PcacheFetchStress(
264 PCache *pCache, /* Obtain the page from this cache */
265 Pgno pgno, /* Page number to obtain */
266 sqlite3_pcache_page **ppPage /* Write result here */
267){
268 PgHdr *pPg;
269 if( pCache->eCreate==2 ) return 0;
270
271
272 /* Find a dirty page to write-out and recycle. First try to find a
273 ** page that does not require a journal-sync (one with PGHDR_NEED_SYNC
274 ** cleared), but if that is not possible settle for any other
275 ** unreferenced dirty page.
276 */
drhbc59ac02014-08-27 23:18:01 +0000277 for(pPg=pCache->pSynced;
278 pPg && (pPg->nRef || (pPg->flags&PGHDR_NEED_SYNC));
279 pPg=pPg->pDirtyPrev
280 );
281 pCache->pSynced = pPg;
282 if( !pPg ){
283 for(pPg=pCache->pDirtyTail; pPg && pPg->nRef; pPg=pPg->pDirtyPrev);
284 }
285 if( pPg ){
286 int rc;
drhc97125e2011-05-28 15:53:07 +0000287#ifdef SQLITE_LOG_CACHE_SPILL
drhbc59ac02014-08-27 23:18:01 +0000288 sqlite3_log(SQLITE_FULL,
289 "spill page %d making room for %d - cache used: %d/%d",
290 pPg->pgno, pgno,
291 sqlite3GlobalConfig.pcache.xPagecount(pCache->pCache),
292 numberOfCachePages(pCache));
drhc97125e2011-05-28 15:53:07 +0000293#endif
drhbc59ac02014-08-27 23:18:01 +0000294 rc = pCache->xStress(pCache->pStress, pPg);
295 if( rc!=SQLITE_OK && rc!=SQLITE_BUSY ){
296 return rc;
danielk1977f599a192008-08-28 10:21:16 +0000297 }
danielk19778c0a7912008-08-20 14:49:23 +0000298 }
drhbc59ac02014-08-27 23:18:01 +0000299 *ppPage = sqlite3GlobalConfig.pcache2.xFetch(pCache->pCache, pgno, 2);
300 return *ppPage==0 ? SQLITE_NOMEM : SQLITE_OK;
301}
302
303/*
304** This is a helper routine for sqlite3PcacheFetchFinish()
305**
306** In the uncommon case where the page being fetched has not been
307** initialized, this routine is invoked to do the initialization.
308** This routine is broken out into a separate function since it
309** requires extra stack manipulation that can be avoided in the common
310** case.
311*/
312static SQLITE_NOINLINE PgHdr *pcacheFetchFinishWithInit(
313 PCache *pCache, /* Obtain the page from this cache */
314 Pgno pgno, /* Page number obtained */
315 sqlite3_pcache_page *pPage /* Page obtained by prior PcacheFetch() call */
316){
317 PgHdr *pPgHdr;
318 assert( pPage!=0 );
319 pPgHdr = (PgHdr*)pPage->pExtra;
320 assert( pPgHdr->pPage==0 );
321 memset(pPgHdr, 0, sizeof(PgHdr));
322 pPgHdr->pPage = pPage;
323 pPgHdr->pData = pPage->pBuf;
324 pPgHdr->pExtra = (void *)&pPgHdr[1];
325 memset(pPgHdr->pExtra, 0, pCache->szExtra);
326 pPgHdr->pCache = pCache;
327 pPgHdr->pgno = pgno;
328 return sqlite3PcacheFetchFinish(pCache,pgno,pPage);
329}
330
331/*
332** This routine converts the sqlite3_pcache_page object returned by
333** sqlite3PcacheFetch() into an initialized PgHdr object. This routine
334** must be called after sqlite3PcacheFetch() in order to get a usable
335** result.
336*/
337PgHdr *sqlite3PcacheFetchFinish(
338 PCache *pCache, /* Obtain the page from this cache */
339 Pgno pgno, /* Page number obtained */
340 sqlite3_pcache_page *pPage /* Page obtained by prior PcacheFetch() call */
341){
342 PgHdr *pPgHdr;
343
344 if( pPage==0 ) return 0;
345 pPgHdr = (PgHdr *)pPage->pExtra;
346
347 if( !pPgHdr->pPage ){
348 return pcacheFetchFinishWithInit(pCache, pgno, pPage);
349 }
350 if( 0==pPgHdr->nRef ){
351 pCache->nRef++;
352 }
353 pPgHdr->nRef++;
354 if( pgno==1 ){
355 pCache->pPage1 = pPgHdr;
356 }
357 return pPgHdr;
danielk19778c0a7912008-08-20 14:49:23 +0000358}
359
360/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000361** Decrement the reference count on a page. If the page is clean and the
peter.d.reid60ec9142014-09-06 16:39:46 +0000362** reference count drops to 0, then it is made eligible for recycling.
danielk19778c0a7912008-08-20 14:49:23 +0000363*/
drha8dcba92014-08-22 20:35:29 +0000364void SQLITE_NOINLINE sqlite3PcacheRelease(PgHdr *p){
danielk19778c0a7912008-08-20 14:49:23 +0000365 assert( p->nRef>0 );
danielk1977502b7432008-08-25 14:49:42 +0000366 p->nRef--;
367 if( p->nRef==0 ){
drha8dcba92014-08-22 20:35:29 +0000368 p->pCache->nRef--;
danielk1977d491e1b2008-08-26 18:05:48 +0000369 if( (p->flags&PGHDR_DIRTY)==0 ){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000370 pcacheUnpin(p);
drh36ce9192014-09-12 20:30:59 +0000371 }else if( p->pDirtyPrev!=0 ){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000372 /* Move the page to the head of the dirty list. */
drha8dcba92014-08-22 20:35:29 +0000373 pcacheManageDirtyList(p, PCACHE_DIRTYLIST_FRONT);
danielk1977d491e1b2008-08-26 18:05:48 +0000374 }
danielk1977502b7432008-08-25 14:49:42 +0000375 }
danielk19778c0a7912008-08-20 14:49:23 +0000376}
377
danielk1977bc2ca9e2008-11-13 14:28:28 +0000378/*
379** Increase the reference count of a supplied page by 1.
380*/
danielk19778c0a7912008-08-20 14:49:23 +0000381void sqlite3PcacheRef(PgHdr *p){
danielk1977502b7432008-08-25 14:49:42 +0000382 assert(p->nRef>0);
383 p->nRef++;
danielk19778c0a7912008-08-20 14:49:23 +0000384}
385
386/*
danielk19774abdfa42008-08-27 09:44:39 +0000387** Drop a page from the cache. There must be exactly one reference to the
388** page. This function deletes that reference, so after it returns the
389** page pointed to by p is invalid.
danielk19778c0a7912008-08-20 14:49:23 +0000390*/
391void sqlite3PcacheDrop(PgHdr *p){
danielk19778c0a7912008-08-20 14:49:23 +0000392 assert( p->nRef==1 );
danielk1977bc2ca9e2008-11-13 14:28:28 +0000393 if( p->flags&PGHDR_DIRTY ){
drha8dcba92014-08-22 20:35:29 +0000394 pcacheManageDirtyList(p, PCACHE_DIRTYLIST_REMOVE);
danielk1977bc2ca9e2008-11-13 14:28:28 +0000395 }
drha8dcba92014-08-22 20:35:29 +0000396 p->pCache->nRef--;
danielk1977bc2ca9e2008-11-13 14:28:28 +0000397 if( p->pgno==1 ){
drha8dcba92014-08-22 20:35:29 +0000398 p->pCache->pPage1 = 0;
danielk1977bc2ca9e2008-11-13 14:28:28 +0000399 }
drha8dcba92014-08-22 20:35:29 +0000400 sqlite3GlobalConfig.pcache2.xUnpin(p->pCache->pCache, p->pPage, 1);
danielk19778c0a7912008-08-20 14:49:23 +0000401}
402
403/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000404** Make sure the page is marked as dirty. If it isn't dirty already,
danielk19778c0a7912008-08-20 14:49:23 +0000405** make it so.
406*/
407void sqlite3PcacheMakeDirty(PgHdr *p){
danielk197733e32162008-08-23 18:53:08 +0000408 p->flags &= ~PGHDR_DONT_WRITE;
danielk19778c0a7912008-08-20 14:49:23 +0000409 assert( p->nRef>0 );
danielk1977bc2ca9e2008-11-13 14:28:28 +0000410 if( 0==(p->flags & PGHDR_DIRTY) ){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000411 p->flags |= PGHDR_DIRTY;
drha8dcba92014-08-22 20:35:29 +0000412 pcacheManageDirtyList(p, PCACHE_DIRTYLIST_ADD);
danielk1977d491e1b2008-08-26 18:05:48 +0000413 }
danielk1977f599a192008-08-28 10:21:16 +0000414}
415
416/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000417** Make sure the page is marked as clean. If it isn't clean already,
danielk1977f599a192008-08-28 10:21:16 +0000418** make it so.
419*/
420void sqlite3PcacheMakeClean(PgHdr *p){
421 if( (p->flags & PGHDR_DIRTY) ){
drha8dcba92014-08-22 20:35:29 +0000422 pcacheManageDirtyList(p, PCACHE_DIRTYLIST_REMOVE);
danielk1977bc2ca9e2008-11-13 14:28:28 +0000423 p->flags &= ~(PGHDR_DIRTY|PGHDR_NEED_SYNC);
424 if( p->nRef==0 ){
425 pcacheUnpin(p);
426 }
danielk1977f599a192008-08-28 10:21:16 +0000427 }
danielk19778c0a7912008-08-20 14:49:23 +0000428}
429
430/*
431** Make every page in the cache clean.
432*/
433void sqlite3PcacheCleanAll(PCache *pCache){
434 PgHdr *p;
danielk19778c0a7912008-08-20 14:49:23 +0000435 while( (p = pCache->pDirty)!=0 ){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000436 sqlite3PcacheMakeClean(p);
danielk19778c0a7912008-08-20 14:49:23 +0000437 }
438}
439
440/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000441** Clear the PGHDR_NEED_SYNC flag from all dirty pages.
442*/
443void sqlite3PcacheClearSyncFlags(PCache *pCache){
444 PgHdr *p;
445 for(p=pCache->pDirty; p; p=p->pDirtyNext){
446 p->flags &= ~PGHDR_NEED_SYNC;
447 }
448 pCache->pSynced = pCache->pDirtyTail;
449}
450
451/*
452** Change the page number of page p to newPgno.
danielk19778c0a7912008-08-20 14:49:23 +0000453*/
454void sqlite3PcacheMove(PgHdr *p, Pgno newPgno){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000455 PCache *pCache = p->pCache;
danielk1977d491e1b2008-08-26 18:05:48 +0000456 assert( p->nRef>0 );
danielk1977bc2ca9e2008-11-13 14:28:28 +0000457 assert( newPgno>0 );
dan22e21ff2011-11-08 20:08:44 +0000458 sqlite3GlobalConfig.pcache2.xRekey(pCache->pCache, p->pPage, p->pgno,newPgno);
danielk19778c0a7912008-08-20 14:49:23 +0000459 p->pgno = newPgno;
danielk1977bc2ca9e2008-11-13 14:28:28 +0000460 if( (p->flags&PGHDR_DIRTY) && (p->flags&PGHDR_NEED_SYNC) ){
drha8dcba92014-08-22 20:35:29 +0000461 pcacheManageDirtyList(p, PCACHE_DIRTYLIST_FRONT);
danielk19778c0a7912008-08-20 14:49:23 +0000462 }
danielk19778c0a7912008-08-20 14:49:23 +0000463}
464
465/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000466** Drop every cache entry whose page number is greater than "pgno". The
467** caller must ensure that there are no outstanding references to any pages
468** other than page 1 with a page number greater than pgno.
469**
470** If there is a reference to page 1 and the pgno parameter passed to this
471** function is 0, then the data area associated with page 1 is zeroed, but
472** the page object is not dropped.
danielk19778c0a7912008-08-20 14:49:23 +0000473*/
474void sqlite3PcacheTruncate(PCache *pCache, Pgno pgno){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000475 if( pCache->pCache ){
476 PgHdr *p;
477 PgHdr *pNext;
478 for(p=pCache->pDirty; p; p=pNext){
479 pNext = p->pDirtyNext;
drhf3609ee2010-03-19 19:23:51 +0000480 /* This routine never gets call with a positive pgno except right
481 ** after sqlite3PcacheCleanAll(). So if there are dirty pages,
482 ** it must be that pgno==0.
483 */
484 assert( p->pgno>0 );
485 if( ALWAYS(p->pgno>pgno) ){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000486 assert( p->flags&PGHDR_DIRTY );
487 sqlite3PcacheMakeClean(p);
danielk19778c0a7912008-08-20 14:49:23 +0000488 }
489 }
danielk1977bc2ca9e2008-11-13 14:28:28 +0000490 if( pgno==0 && pCache->pPage1 ){
491 memset(pCache->pPage1->pData, 0, pCache->szPage);
492 pgno = 1;
493 }
dan22e21ff2011-11-08 20:08:44 +0000494 sqlite3GlobalConfig.pcache2.xTruncate(pCache->pCache, pgno+1);
danielk1977062d4cb2008-08-29 09:10:02 +0000495 }
496}
danielk19778c0a7912008-08-20 14:49:23 +0000497
498/*
499** Close a cache.
500*/
501void sqlite3PcacheClose(PCache *pCache){
drhc3031c62014-08-26 15:06:49 +0000502 assert( pCache->pCache!=0 );
503 sqlite3GlobalConfig.pcache2.xDestroy(pCache->pCache);
danielk19778c0a7912008-08-20 14:49:23 +0000504}
505
506/*
507** Discard the contents of the cache.
508*/
danielk1977bea2a942009-01-20 17:06:27 +0000509void sqlite3PcacheClear(PCache *pCache){
danielk1977bc2ca9e2008-11-13 14:28:28 +0000510 sqlite3PcacheTruncate(pCache, 0);
danielk19778c0a7912008-08-20 14:49:23 +0000511}
512
513/*
514** Merge two lists of pages connected by pDirty and in pgno order.
danielk1977bc2ca9e2008-11-13 14:28:28 +0000515** Do not both fixing the pDirtyPrev pointers.
danielk19778c0a7912008-08-20 14:49:23 +0000516*/
517static PgHdr *pcacheMergeDirtyList(PgHdr *pA, PgHdr *pB){
518 PgHdr result, *pTail;
519 pTail = &result;
520 while( pA && pB ){
521 if( pA->pgno<pB->pgno ){
522 pTail->pDirty = pA;
523 pTail = pA;
524 pA = pA->pDirty;
525 }else{
526 pTail->pDirty = pB;
527 pTail = pB;
528 pB = pB->pDirty;
529 }
530 }
531 if( pA ){
532 pTail->pDirty = pA;
533 }else if( pB ){
534 pTail->pDirty = pB;
535 }else{
536 pTail->pDirty = 0;
537 }
538 return result.pDirty;
539}
540
541/*
542** Sort the list of pages in accending order by pgno. Pages are
danielk1977bc2ca9e2008-11-13 14:28:28 +0000543** connected by pDirty pointers. The pDirtyPrev pointers are
danielk19778c0a7912008-08-20 14:49:23 +0000544** corrupted by this sort.
drhe64ca7b2009-07-16 18:21:17 +0000545**
546** Since there cannot be more than 2^31 distinct pages in a database,
547** there cannot be more than 31 buckets required by the merge sorter.
548** One extra bucket is added to catch overflow in case something
549** ever changes to make the previous sentence incorrect.
danielk19778c0a7912008-08-20 14:49:23 +0000550*/
drhe64ca7b2009-07-16 18:21:17 +0000551#define N_SORT_BUCKET 32
danielk19778c0a7912008-08-20 14:49:23 +0000552static PgHdr *pcacheSortDirtyList(PgHdr *pIn){
drhe64ca7b2009-07-16 18:21:17 +0000553 PgHdr *a[N_SORT_BUCKET], *p;
danielk19778c0a7912008-08-20 14:49:23 +0000554 int i;
555 memset(a, 0, sizeof(a));
556 while( pIn ){
557 p = pIn;
558 pIn = p->pDirty;
559 p->pDirty = 0;
drhe64ca7b2009-07-16 18:21:17 +0000560 for(i=0; ALWAYS(i<N_SORT_BUCKET-1); i++){
danielk19778c0a7912008-08-20 14:49:23 +0000561 if( a[i]==0 ){
562 a[i] = p;
563 break;
564 }else{
565 p = pcacheMergeDirtyList(a[i], p);
566 a[i] = 0;
567 }
568 }
drhe64ca7b2009-07-16 18:21:17 +0000569 if( NEVER(i==N_SORT_BUCKET-1) ){
570 /* To get here, there need to be 2^(N_SORT_BUCKET) elements in
571 ** the input list. But that is impossible.
danielk19778c0a7912008-08-20 14:49:23 +0000572 */
573 a[i] = pcacheMergeDirtyList(a[i], p);
574 }
575 }
576 p = a[0];
577 for(i=1; i<N_SORT_BUCKET; i++){
578 p = pcacheMergeDirtyList(p, a[i]);
579 }
580 return p;
581}
582
583/*
584** Return a list of all dirty pages in the cache, sorted by page number.
585*/
586PgHdr *sqlite3PcacheDirtyList(PCache *pCache){
587 PgHdr *p;
danielk1977bc2ca9e2008-11-13 14:28:28 +0000588 for(p=pCache->pDirty; p; p=p->pDirtyNext){
589 p->pDirty = p->pDirtyNext;
danielk19778c0a7912008-08-20 14:49:23 +0000590 }
591 return pcacheSortDirtyList(pCache->pDirty);
592}
593
danielk19778c0a7912008-08-20 14:49:23 +0000594/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000595** Return the total number of referenced pages held by the cache.
danielk19778c0a7912008-08-20 14:49:23 +0000596*/
597int sqlite3PcacheRefCount(PCache *pCache){
598 return pCache->nRef;
599}
600
danielk1977bc2ca9e2008-11-13 14:28:28 +0000601/*
602** Return the number of references to the page supplied as an argument.
603*/
danielk197771d5d2c2008-09-29 11:49:47 +0000604int sqlite3PcachePageRefcount(PgHdr *p){
605 return p->nRef;
606}
607
danielk19778c0a7912008-08-20 14:49:23 +0000608/*
609** Return the total number of pages in the cache.
610*/
611int sqlite3PcachePagecount(PCache *pCache){
drhc3031c62014-08-26 15:06:49 +0000612 assert( pCache->pCache!=0 );
613 return sqlite3GlobalConfig.pcache2.xPagecount(pCache->pCache);
danielk19778c0a7912008-08-20 14:49:23 +0000614}
615
danielk1977f3d3c272008-11-19 16:52:44 +0000616#ifdef SQLITE_TEST
danielk19778c0a7912008-08-20 14:49:23 +0000617/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000618** Get the suggested cache-size value.
danielk19778c0a7912008-08-20 14:49:23 +0000619*/
620int sqlite3PcacheGetCachesize(PCache *pCache){
drh3b42abb2011-11-09 14:23:04 +0000621 return numberOfCachePages(pCache);
danielk19778c0a7912008-08-20 14:49:23 +0000622}
danielk1977f3d3c272008-11-19 16:52:44 +0000623#endif
danielk19778c0a7912008-08-20 14:49:23 +0000624
625/*
626** Set the suggested cache-size value.
627*/
628void sqlite3PcacheSetCachesize(PCache *pCache, int mxPage){
drhc3031c62014-08-26 15:06:49 +0000629 assert( pCache->pCache!=0 );
drh3b42abb2011-11-09 14:23:04 +0000630 pCache->szCache = mxPage;
drhc3031c62014-08-26 15:06:49 +0000631 sqlite3GlobalConfig.pcache2.xCachesize(pCache->pCache,
632 numberOfCachePages(pCache));
danielk19778c0a7912008-08-20 14:49:23 +0000633}
634
drh09419b42011-11-16 19:29:17 +0000635/*
636** Free up as much memory as possible from the page cache.
637*/
638void sqlite3PcacheShrink(PCache *pCache){
drhc3031c62014-08-26 15:06:49 +0000639 assert( pCache->pCache!=0 );
640 sqlite3GlobalConfig.pcache2.xShrink(pCache->pCache);
drh09419b42011-11-16 19:29:17 +0000641}
642
drhdef68892014-11-04 12:11:23 +0000643/*
644** Return the size of the header added by this middleware layer
645** in the page-cache hierarchy.
646*/
drh37c057b2014-12-30 00:57:29 +0000647int sqlite3HeaderSizePcache(void){ return ROUND8(sizeof(PgHdr)); }
drhdef68892014-11-04 12:11:23 +0000648
649
danielk1977750e87d2009-07-25 11:46:48 +0000650#if defined(SQLITE_CHECK_PAGES) || defined(SQLITE_DEBUG)
danielk197767e3da72008-08-21 12:19:44 +0000651/*
danielk1977bc2ca9e2008-11-13 14:28:28 +0000652** For all dirty pages currently in the cache, invoke the specified
653** callback. This is only used if the SQLITE_CHECK_PAGES macro is
654** defined.
danielk197767e3da72008-08-21 12:19:44 +0000655*/
danielk1977bc2ca9e2008-11-13 14:28:28 +0000656void sqlite3PcacheIterateDirty(PCache *pCache, void (*xIter)(PgHdr *)){
657 PgHdr *pDirty;
658 for(pDirty=pCache->pDirty; pDirty; pDirty=pDirty->pDirtyNext){
659 xIter(pDirty);
danielk197767e3da72008-08-21 12:19:44 +0000660 }
danielk1977062d4cb2008-08-29 09:10:02 +0000661}
662#endif