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drh75897232000-05-29 14:26:00 +00001/*
drhb19a2bc2001-09-16 00:13:26 +00002** 2001 September 15
drh75897232000-05-29 14:26:00 +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:
drh75897232000-05-29 14:26:00 +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.
drh75897232000-05-29 14:26:00 +000010**
11*************************************************************************
12** Internal interface definitions for SQLite.
13**
drh51147ba2005-07-23 22:59:55 +000014** @(#) $Id: sqliteInt.h,v 1.400 2005/07/23 22:59:56 drh Exp $
drh75897232000-05-29 14:26:00 +000015*/
danielk1977e3026632004-06-22 11:29:02 +000016#ifndef _SQLITEINT_H_
17#define _SQLITEINT_H_
18
drheb206252004-10-01 02:00:31 +000019/*
20** These #defines should enable >2GB file support on Posix if the
21** underlying operating system supports it. If the OS lacks
22** large file support, or if the OS is windows, these should be no-ops.
23**
24** Large file support can be disabled using the -DSQLITE_DISABLE_LFS switch
25** on the compiler command line. This is necessary if you are compiling
26** on a recent machine (ex: RedHat 7.2) but you want your code to work
27** on an older machine (ex: RedHat 6.0). If you compile on RedHat 7.2
28** without this option, LFS is enable. But LFS does not exist in the kernel
29** in RedHat 6.0, so the code won't work. Hence, for maximum binary
30** portability you should omit LFS.
31**
32** Similar is true for MacOS. LFS is only supported on MacOS 9 and later.
33*/
34#ifndef SQLITE_DISABLE_LFS
35# define _LARGE_FILE 1
36# ifndef _FILE_OFFSET_BITS
37# define _FILE_OFFSET_BITS 64
38# endif
39# define _LARGEFILE_SOURCE 1
40#endif
41
drh1d482dd2004-05-31 18:23:07 +000042#include "sqlite3.h"
drhbeae3192001-09-22 18:12:08 +000043#include "hash.h"
drh75897232000-05-29 14:26:00 +000044#include "parse.h"
drh75897232000-05-29 14:26:00 +000045#include <stdio.h>
46#include <stdlib.h>
47#include <string.h>
48#include <assert.h>
drh52370e22005-01-21 21:31:40 +000049#include <stddef.h>
drh75897232000-05-29 14:26:00 +000050
drh967e8b72000-06-21 13:59:10 +000051/*
drha1b351a2001-09-14 16:42:12 +000052** The maximum number of in-memory pages to use for the main database
danielk197724c8ab82005-02-09 01:40:23 +000053** table and for temporary tables. Internally, the MAX_PAGES and
54** TEMP_PAGES macros are used. To override the default values at
55** compilation time, the SQLITE_DEFAULT_CACHE_SIZE and
56** SQLITE_DEFAULT_TEMP_CACHE_SIZE macros should be set.
drha1b351a2001-09-14 16:42:12 +000057*/
drh1ba1e6e2005-01-21 21:22:52 +000058#ifdef SQLITE_DEFAULT_CACHE_SIZE
59# define MAX_PAGES SQLITE_DEFAULT_CACHE_SIZE
60#else
61# define MAX_PAGES 2000
62#endif
danielk197724c8ab82005-02-09 01:40:23 +000063#ifdef SQLITE_DEFAULT_TEMP_CACHE_SIZE
64# define TEMP_PAGES SQLITE_DEFAULT_TEMP_CACHE_SIZE
65#else
66# define TEMP_PAGES 500
67#endif
drha1b351a2001-09-14 16:42:12 +000068
69/*
danielk197753c0f742005-03-29 03:10:59 +000070** OMIT_TEMPDB is set to 1 if SQLITE_OMIT_TEMPDB is defined, or 0
71** afterward. Having this macro allows us to cause the C compiler
72** to omit code used by TEMP tables without messy #ifndef statements.
73*/
74#ifdef SQLITE_OMIT_TEMPDB
75#define OMIT_TEMPDB 1
76#else
77#define OMIT_TEMPDB 0
78#endif
79
80/*
drh0bd1f4e2002-06-06 18:54:39 +000081** If the following macro is set to 1, then NULL values are considered
82** distinct for the SELECT DISTINCT statement and for UNION or EXCEPT
83** compound queries. No other SQL database engine (among those tested)
84** works this way except for OCELOT. But the SQL92 spec implies that
85** this is how things should work.
86**
87** If the following macro is set to 0, then NULLs are indistinct for
88** SELECT DISTINCT and for UNION.
89*/
90#define NULL_ALWAYS_DISTINCT 0
91
92/*
93** If the following macro is set to 1, then NULL values are considered
94** distinct when determining whether or not two entries are the same
95** in a UNIQUE index. This is the way PostgreSQL, Oracle, DB2, MySQL,
96** OCELOT, and Firebird all work. The SQL92 spec explicitly says this
97** is the way things are suppose to work.
98**
99** If the following macro is set to 0, the NULLs are indistinct for
100** a UNIQUE index. In this mode, you can only have a single NULL entry
101** for a column declared UNIQUE. This is the way Informix and SQL Server
102** work.
103*/
104#define NULL_DISTINCT_FOR_UNIQUE 1
105
106/*
drh665de472003-03-31 13:36:09 +0000107** The maximum number of attached databases. This must be at least 2
108** in order to support the main database file (0) and the file used to
drh80242052004-06-09 00:48:12 +0000109** hold temporary tables (1). And it must be less than 32 because
110** we use a bitmask of databases with a u32 in places (for example
111** the Parse.cookieMask field).
drh665de472003-03-31 13:36:09 +0000112*/
113#define MAX_ATTACHED 10
114
115/*
drhfa6bc002004-09-07 16:19:52 +0000116** The maximum value of a ?nnn wildcard that the parser will accept.
117*/
118#define SQLITE_MAX_VARIABLE_NUMBER 999
119
120/*
drh13bff812003-04-15 01:19:47 +0000121** When building SQLite for embedded systems where memory is scarce,
122** you can define one or more of the following macros to omit extra
123** features of the library and thus keep the size of the library to
124** a minimum.
125*/
126/* #define SQLITE_OMIT_AUTHORIZATION 1 */
danielk19773e8c37e2005-01-21 03:12:14 +0000127/* #define SQLITE_OMIT_MEMORYDB 1 */
drh13bff812003-04-15 01:19:47 +0000128/* #define SQLITE_OMIT_VACUUM 1 */
drh0a5294b2003-11-11 23:30:35 +0000129/* #define SQLITE_OMIT_DATETIME_FUNCS 1 */
danielk1977348bb5d2003-10-18 09:37:26 +0000130/* #define SQLITE_OMIT_PROGRESS_CALLBACK 1 */
danielk197745901d62004-11-10 15:27:38 +0000131/* #define SQLITE_OMIT_AUTOVACUUM */
danielk19779fd2a9a2004-11-12 13:42:30 +0000132/* #define SQLITE_OMIT_ALTERTABLE */
drh13bff812003-04-15 01:19:47 +0000133
134/*
drh49766d62005-01-08 18:42:28 +0000135** Provide a default value for TEMP_STORE in case it is not specified
136** on the command-line
137*/
138#ifndef TEMP_STORE
139# define TEMP_STORE 1
140#endif
141
142/*
drhf1974842004-11-05 03:56:00 +0000143** GCC does not define the offsetof() macro so we'll have to do it
144** ourselves.
145*/
146#ifndef offsetof
147#define offsetof(STRUCTURE,FIELD) ((int)((char*)&((STRUCTURE*)0)->FIELD))
148#endif
149
150/*
drh5a2c2c22001-11-21 02:21:11 +0000151** Integers of known sizes. These typedefs might change for architectures
152** where the sizes very. Preprocessor macros are available so that the
153** types can be conveniently redefined at compile-type. Like this:
154**
155** cc '-DUINTPTR_TYPE=long long int' ...
drh41a2b482001-01-20 19:52:49 +0000156*/
drh3aac2dd2004-04-26 14:10:20 +0000157#ifndef UINT64_TYPE
drhefad9992004-06-22 12:13:55 +0000158# if defined(_MSC_VER) || defined(__BORLANDC__)
159# define UINT64_TYPE unsigned __int64
160# else
161# define UINT64_TYPE unsigned long long int
162# endif
drh3aac2dd2004-04-26 14:10:20 +0000163#endif
drh5a2c2c22001-11-21 02:21:11 +0000164#ifndef UINT32_TYPE
165# define UINT32_TYPE unsigned int
166#endif
167#ifndef UINT16_TYPE
168# define UINT16_TYPE unsigned short int
169#endif
drh939a16d2004-07-15 13:37:22 +0000170#ifndef INT16_TYPE
171# define INT16_TYPE short int
172#endif
drh5a2c2c22001-11-21 02:21:11 +0000173#ifndef UINT8_TYPE
174# define UINT8_TYPE unsigned char
175#endif
drh905793e2004-02-21 13:31:09 +0000176#ifndef INT8_TYPE
177# define INT8_TYPE signed char
178#endif
drhefad9992004-06-22 12:13:55 +0000179#ifndef LONGDOUBLE_TYPE
180# define LONGDOUBLE_TYPE long double
181#endif
drhefad9992004-06-22 12:13:55 +0000182typedef sqlite_int64 i64; /* 8-byte signed integer */
drh3aac2dd2004-04-26 14:10:20 +0000183typedef UINT64_TYPE u64; /* 8-byte unsigned integer */
drh5a2c2c22001-11-21 02:21:11 +0000184typedef UINT32_TYPE u32; /* 4-byte unsigned integer */
185typedef UINT16_TYPE u16; /* 2-byte unsigned integer */
drh939a16d2004-07-15 13:37:22 +0000186typedef INT16_TYPE i16; /* 2-byte signed integer */
drh5a2c2c22001-11-21 02:21:11 +0000187typedef UINT8_TYPE u8; /* 1-byte unsigned integer */
drh905793e2004-02-21 13:31:09 +0000188typedef UINT8_TYPE i8; /* 1-byte signed integer */
drh5a2c2c22001-11-21 02:21:11 +0000189
190/*
drhbbd42a62004-05-22 17:41:58 +0000191** Macros to determine whether the machine is big or little endian,
192** evaluated at runtime.
193*/
194extern const int sqlite3one;
drh9c054832004-05-31 18:51:57 +0000195#define SQLITE_BIGENDIAN (*(char *)(&sqlite3one)==0)
196#define SQLITE_LITTLEENDIAN (*(char *)(&sqlite3one)==1)
drhbbd42a62004-05-22 17:41:58 +0000197
198/*
drh90f5ecb2004-07-22 01:19:35 +0000199** An instance of the following structure is used to store the busy-handler
200** callback for a given sqlite handle.
201**
202** The sqlite.busyHandler member of the sqlite struct contains the busy
203** callback for the database handle. Each pager opened via the sqlite
204** handle is passed a pointer to sqlite.busyHandler. The busy-handler
205** callback is currently invoked only from within pager.c.
206*/
207typedef struct BusyHandler BusyHandler;
208struct BusyHandler {
209 int (*xFunc)(void *,int); /* The busy callback */
210 void *pArg; /* First arg to busy callback */
drha4afb652005-07-09 02:16:02 +0000211 int nBusy; /* Incremented with each busy call */
drh90f5ecb2004-07-22 01:19:35 +0000212};
213
214/*
215** Defer sourcing vdbe.h and btree.h until after the "u8" and
216** "BusyHandler typedefs.
drh905793e2004-02-21 13:31:09 +0000217*/
218#include "vdbe.h"
drh3aac2dd2004-04-26 14:10:20 +0000219#include "btree.h"
drh905793e2004-02-21 13:31:09 +0000220
221/*
drh5a2c2c22001-11-21 02:21:11 +0000222** This macro casts a pointer to an integer. Useful for doing
223** pointer arithmetic.
224*/
225#define Addr(X) ((uptr)X)
drh41a2b482001-01-20 19:52:49 +0000226
227/*
drh967e8b72000-06-21 13:59:10 +0000228** If memory allocation problems are found, recompile with
229**
drhfaa57ac2004-06-09 14:01:51 +0000230** -DSQLITE_DEBUG=1
drh967e8b72000-06-21 13:59:10 +0000231**
232** to enable some sanity checking on malloc() and free(). To
233** check for memory leaks, recompile with
234**
drhfaa57ac2004-06-09 14:01:51 +0000235** -DSQLITE_DEBUG=2
drh967e8b72000-06-21 13:59:10 +0000236**
237** and a line of text will be written to standard error for
238** each malloc() and free(). This output can be analyzed
239** by an AWK script to determine if there are any leaks.
240*/
danielk19772c336542005-01-13 02:14:23 +0000241#ifdef SQLITE_MEMDEBUG
danielk19774adee202004-05-08 08:23:19 +0000242# define sqliteMalloc(X) sqlite3Malloc_(X,1,__FILE__,__LINE__)
243# define sqliteMallocRaw(X) sqlite3Malloc_(X,0,__FILE__,__LINE__)
244# define sqliteFree(X) sqlite3Free_(X,__FILE__,__LINE__)
245# define sqliteRealloc(X,Y) sqlite3Realloc_(X,Y,__FILE__,__LINE__)
246# define sqliteStrDup(X) sqlite3StrDup_(X,__FILE__,__LINE__)
247# define sqliteStrNDup(X,Y) sqlite3StrNDup_(X,Y,__FILE__,__LINE__)
drhc3c2fc92000-05-31 22:58:39 +0000248#else
drh38f82712004-06-18 17:10:16 +0000249# define sqliteFree sqlite3FreeX
250# define sqliteMalloc sqlite3Malloc
251# define sqliteMallocRaw sqlite3MallocRaw
252# define sqliteRealloc sqlite3Realloc
drhae29ffb2004-09-25 14:39:18 +0000253# define sqliteStrDup sqlite3StrDup
254# define sqliteStrNDup sqlite3StrNDup
drhdcc581c2000-05-30 13:44:19 +0000255#endif
256
drh75897232000-05-29 14:26:00 +0000257/*
drhdaffd0e2001-04-11 14:28:42 +0000258** This variable gets set if malloc() ever fails. After it gets set,
259** the SQLite library shuts down permanently.
260*/
danielk19776f8a5032004-05-10 10:34:51 +0000261extern int sqlite3_malloc_failed;
drhdaffd0e2001-04-11 14:28:42 +0000262
263/*
drh6e142f52000-06-08 13:36:40 +0000264** The following global variables are used for testing and debugging
drhfaa57ac2004-06-09 14:01:51 +0000265** only. They only work if SQLITE_DEBUG is defined.
drh6e142f52000-06-08 13:36:40 +0000266*/
danielk19772c336542005-01-13 02:14:23 +0000267#ifdef SQLITE_MEMDEBUG
drh46934232004-11-20 19:18:00 +0000268extern int sqlite3_nMalloc; /* Number of sqliteMalloc() calls */
269extern int sqlite3_nFree; /* Number of sqliteFree() calls */
270extern int sqlite3_iMallocFail; /* Fail sqliteMalloc() after this many calls */
271extern int sqlite3_iMallocReset; /* Set iMallocFail to this when it reaches 0 */
drh6e142f52000-06-08 13:36:40 +0000272#endif
273
274/*
drh75897232000-05-29 14:26:00 +0000275** Name of the master database table. The master database table
276** is a special table that holds the names and attributes of all
277** user tables and indices.
278*/
drhe0bc4042002-06-25 01:09:11 +0000279#define MASTER_NAME "sqlite_master"
280#define TEMP_MASTER_NAME "sqlite_temp_master"
drh75897232000-05-29 14:26:00 +0000281
282/*
danielk19778e150812004-05-10 01:17:37 +0000283** The root-page of the master database table.
284*/
285#define MASTER_ROOT 1
286
287/*
drhed6c8672003-01-12 18:02:16 +0000288** The name of the schema table.
289*/
danielk197753c0f742005-03-29 03:10:59 +0000290#define SCHEMA_TABLE(x) ((!OMIT_TEMPDB)&&(x==1)?TEMP_MASTER_NAME:MASTER_NAME)
drhed6c8672003-01-12 18:02:16 +0000291
292/*
drh75897232000-05-29 14:26:00 +0000293** A convenience macro that returns the number of elements in
294** an array.
295*/
296#define ArraySize(X) (sizeof(X)/sizeof(X[0]))
297
298/*
299** Forward references to structures
300*/
drhfe05af82005-07-21 03:14:59 +0000301typedef struct AggExpr AggExpr;
302typedef struct AuthContext AuthContext;
303typedef struct CollSeq CollSeq;
drh7020f652000-06-03 18:06:52 +0000304typedef struct Column Column;
drhfe05af82005-07-21 03:14:59 +0000305typedef struct Db Db;
drh75897232000-05-29 14:26:00 +0000306typedef struct Expr Expr;
307typedef struct ExprList ExprList;
drhc2eef3b2002-08-31 18:53:06 +0000308typedef struct FKey FKey;
drhfe05af82005-07-21 03:14:59 +0000309typedef struct FuncDef FuncDef;
310typedef struct IdList IdList;
311typedef struct Index Index;
danielk19778d059842004-05-12 11:24:02 +0000312typedef struct KeyClass KeyClass;
drhd3d39e92004-05-20 22:16:29 +0000313typedef struct KeyInfo KeyInfo;
drh626a8792005-01-17 22:08:19 +0000314typedef struct NameContext NameContext;
drhfe05af82005-07-21 03:14:59 +0000315typedef struct Parse Parse;
316typedef struct Select Select;
317typedef struct SrcList SrcList;
318typedef struct Table Table;
319typedef struct Token Token;
320typedef struct TriggerStack TriggerStack;
321typedef struct TriggerStep TriggerStep;
322typedef struct Trigger Trigger;
drhfe05af82005-07-21 03:14:59 +0000323typedef struct WhereInfo WhereInfo;
324typedef struct WhereLevel WhereLevel;
drhd3d39e92004-05-20 22:16:29 +0000325
drh001bbcb2003-03-19 03:14:00 +0000326/*
327** Each database file to be accessed by the system is an instance
328** of the following structure. There are normally two of these structures
329** in the sqlite.aDb[] array. aDb[0] is the main database file and
drha69d9162003-04-17 22:57:53 +0000330** aDb[1] is the database file used to hold temporary tables. Additional
331** databases may be attached.
drh001bbcb2003-03-19 03:14:00 +0000332*/
333struct Db {
334 char *zName; /* Name of this database */
335 Btree *pBt; /* The B*Tree structure for this database file */
336 int schema_cookie; /* Database schema version number for this file */
drhd24cc422003-03-27 12:51:24 +0000337 Hash tblHash; /* All tables indexed by name */
338 Hash idxHash; /* All (named) indices indexed by name */
339 Hash trigHash; /* All triggers indexed by name */
340 Hash aFKey; /* Foreign keys indexed by to-table */
drhd24cc422003-03-27 12:51:24 +0000341 u16 flags; /* Flags associated with this database */
drh90f5ecb2004-07-22 01:19:35 +0000342 u8 inTrans; /* 0: not writable. 1: Transaction. 2: Checkpoint */
danielk197791cf71b2004-06-26 06:37:06 +0000343 u8 safety_level; /* How aggressive at synching data to disk */
344 int cache_size; /* Number of pages to use in the cache */
drh4794f732004-11-05 17:17:50 +0000345 Table *pSeqTab; /* The sqlite_sequence table used by AUTOINCREMENT */
346 void *pAux; /* Auxiliary data. Usually NULL */
drh4d189ca2004-02-12 18:46:38 +0000347 void (*xFreeAux)(void*); /* Routine to free pAux */
drh001bbcb2003-03-19 03:14:00 +0000348};
drh75897232000-05-29 14:26:00 +0000349
350/*
drh8bf8dc92003-05-17 17:35:10 +0000351** These macros can be used to test, set, or clear bits in the
352** Db.flags field.
353*/
354#define DbHasProperty(D,I,P) (((D)->aDb[I].flags&(P))==(P))
355#define DbHasAnyProperty(D,I,P) (((D)->aDb[I].flags&(P))!=0)
356#define DbSetProperty(D,I,P) (D)->aDb[I].flags|=(P)
357#define DbClearProperty(D,I,P) (D)->aDb[I].flags&=~(P)
358
359/*
360** Allowed values for the DB.flags field.
361**
drh8bf8dc92003-05-17 17:35:10 +0000362** The DB_SchemaLoaded flag is set after the database schema has been
363** read into internal hash tables.
364**
365** DB_UnresetViews means that one or more views have column names that
366** have been filled out. If the schema changes, these column names might
367** changes and so the view will need to be reset.
368*/
drh124b27e2004-06-19 16:06:10 +0000369#define DB_SchemaLoaded 0x0001 /* The schema has been loaded */
370#define DB_UnresetViews 0x0002 /* Some views have defined column names */
drh8bf8dc92003-05-17 17:35:10 +0000371
danielk1977dc8453f2004-06-12 00:42:34 +0000372#define SQLITE_UTF16NATIVE (SQLITE_BIGENDIAN?SQLITE_UTF16BE:SQLITE_UTF16LE)
drh8bf8dc92003-05-17 17:35:10 +0000373
374/*
drhc9b84a12002-06-20 11:36:48 +0000375** Each database is an instance of the following structure.
376**
rdcb0c374f2004-02-20 22:53:38 +0000377** The sqlite.lastRowid records the last insert rowid generated by an
378** insert statement. Inserts on views do not affect its value. Each
379** trigger has its own context, so that lastRowid can be updated inside
380** triggers as usual. The previous value will be restored once the trigger
381** exits. Upon entering a before or instead of trigger, lastRowid is no
382** longer (since after version 2.8.12) reset to -1.
383**
384** The sqlite.nChange does not count changes within triggers and keeps no
danielk19776f8a5032004-05-10 10:34:51 +0000385** context. It is reset at start of sqlite3_exec.
rdcb0c374f2004-02-20 22:53:38 +0000386** The sqlite.lsChange represents the number of changes made by the last
387** insert, update, or delete statement. It remains constant throughout the
388** length of a statement and is then updated by OP_SetCounts. It keeps a
389** context stack just like lastRowid so that the count of changes
390** within a trigger is not seen outside the trigger. Changes to views do not
391** affect the value of lsChange.
392** The sqlite.csChange keeps track of the number of current changes (since
393** the last statement) and is used to update sqlite_lsChange.
danielk19776622cce2004-05-20 11:00:52 +0000394**
395** The member variables sqlite.errCode, sqlite.zErrMsg and sqlite.zErrMsg16
396** store the most recent error code and, if applicable, string. The
397** internal function sqlite3Error() is used to set these variables
398** consistently.
drh75897232000-05-29 14:26:00 +0000399*/
drh9bb575f2004-09-06 17:24:11 +0000400struct sqlite3 {
drh001bbcb2003-03-19 03:14:00 +0000401 int nDb; /* Number of backends currently in use */
402 Db *aDb; /* All backends */
drh5e00f6c2001-09-13 13:46:56 +0000403 int flags; /* Miscellanous flags. See below */
drhfcd35c72005-05-21 02:48:08 +0000404 int errCode; /* Most recent error code (SQLITE_*) */
405 u8 enc; /* Text encoding for this database. */
406 u8 autoCommit; /* The auto-commit flag. */
drh973b6e32003-02-12 14:09:42 +0000407 u8 file_format; /* What file format version is this database? */
drh90f5ecb2004-07-22 01:19:35 +0000408 u8 temp_store; /* 1: file 2: memory 0: default */
drh5e00f6c2001-09-13 13:46:56 +0000409 int nTable; /* Number of tables in the database */
drhd3d39e92004-05-20 22:16:29 +0000410 CollSeq *pDfltColl; /* The default collating sequence (BINARY) */
drhf328bc82004-05-10 23:29:49 +0000411 i64 lastRowid; /* ROWID of most recent insert (see above) */
412 i64 priorNewRowid; /* Last randomly generated ROWID */
drh247be432002-05-10 05:44:55 +0000413 int magic; /* Magic number for detect library misuse */
danielk1977b28af712004-06-21 06:50:26 +0000414 int nChange; /* Value returned by sqlite3_changes() */
415 int nTotalChange; /* Value returned by sqlite3_total_changes() */
416 struct sqlite3InitInfo { /* Information used during initialization */
417 int iDb; /* When back is being initialized */
418 int newTnum; /* Rootpage of table being initialized */
419 u8 busy; /* TRUE if currently initializing */
drh1d85d932004-02-14 23:05:52 +0000420 } init;
drh326dce72003-01-29 14:06:07 +0000421 struct Vdbe *pVdbe; /* List of active virtual machines */
danielk19771d850a72004-05-31 08:26:49 +0000422 int activeVdbeCnt; /* Number of vdbes currently executing */
drh18de4822003-01-16 16:28:53 +0000423 void (*xTrace)(void*,const char*); /* Trace function */
424 void *pTraceArg; /* Argument to the trace function */
drhfcd35c72005-05-21 02:48:08 +0000425 void *pCommitArg; /* Argument to xCommitCallback() */
426 int (*xCommitCallback)(void*);/* Invoked at every commit. */
427 void(*xCollNeeded)(void*,sqlite3*,int eTextRep,const char*);
428 void(*xCollNeeded16)(void*,sqlite3*,int eTextRep,const void*);
429 void *pCollNeededArg;
430 sqlite3_value *pValue; /* Value used for transient conversions */
431 sqlite3_value *pErr; /* Most recent error message */
432 char *zErrMsg; /* Most recent error message (UTF-8 encoded) */
433 char *zErrMsg16; /* Most recent error message (UTF-16 encoded) */
drhed6c8672003-01-12 18:02:16 +0000434#ifndef SQLITE_OMIT_AUTHORIZATION
drhe22a3342003-04-22 20:30:37 +0000435 int (*xAuth)(void*,int,const char*,const char*,const char*,const char*);
436 /* Access authorization function */
drhed6c8672003-01-12 18:02:16 +0000437 void *pAuthArg; /* 1st argument to the access auth function */
438#endif
danielk1977348bb5d2003-10-18 09:37:26 +0000439#ifndef SQLITE_OMIT_PROGRESS_CALLBACK
440 int (*xProgress)(void *); /* The progress callback */
441 void *pProgressArg; /* Argument to the progress callback */
442 int nProgressOps; /* Number of opcodes for progress callback */
443#endif
danielk19776b456a22005-03-21 04:04:02 +0000444#ifndef SQLITE_OMIT_GLOBALRECOVER
445 sqlite3 *pNext; /* Linked list of open db handles. */
446#endif
drhfcd35c72005-05-21 02:48:08 +0000447 Hash aFunc; /* All functions that can be in SQL exprs */
448 Hash aCollSeq; /* All collating sequences */
449 BusyHandler busyHandler; /* Busy callback */
drh97903fe2005-05-24 20:19:57 +0000450 int busyTimeout; /* Busy handler timeout, in msec */
drhfcd35c72005-05-21 02:48:08 +0000451 Db aDbStatic[2]; /* Static space for the 2 default backends */
danielk19777e900ab2005-05-23 04:51:01 +0000452#ifdef SQLITE_SSE
453 sqlite3_stmt *pFetch; /* Used by SSE to fetch stored statements */
454#endif
drh75897232000-05-29 14:26:00 +0000455};
456
457/*
drh8bf8dc92003-05-17 17:35:10 +0000458** Possible values for the sqlite.flags and or Db.flags fields.
459**
460** On sqlite.flags, the SQLITE_InTrans value means that we have
461** executed a BEGIN. On Db.flags, SQLITE_InTrans means a statement
462** transaction is active on that particular database file.
drh75897232000-05-29 14:26:00 +0000463*/
drh5e00f6c2001-09-13 13:46:56 +0000464#define SQLITE_VdbeTrace 0x00000001 /* True to trace VDBE execution */
465#define SQLITE_Initialized 0x00000002 /* True after initialization */
466#define SQLITE_Interrupt 0x00000004 /* Cancel current operation */
467#define SQLITE_InTrans 0x00000008 /* True if in a transaction */
468#define SQLITE_InternChanges 0x00000010 /* Uncommitted Hash table changes */
drh382c0242001-10-06 16:33:02 +0000469#define SQLITE_FullColNames 0x00000020 /* Show full column names on SELECT */
drhfcabd462004-02-20 14:50:58 +0000470#define SQLITE_ShortColNames 0x00000040 /* Show short columns names */
471#define SQLITE_CountRows 0x00000080 /* Count rows changed by INSERT, */
drh1bee3d72001-10-15 00:44:35 +0000472 /* DELETE, or UPDATE and return */
473 /* the count using a callback. */
drhfcabd462004-02-20 14:50:58 +0000474#define SQLITE_NullCallback 0x00000100 /* Invoke the callback once if the */
drh6a535342001-10-19 16:44:56 +0000475 /* result set is empty */
drh35d4c2f2004-06-10 01:30:59 +0000476#define SQLITE_SqlTrace 0x00000200 /* Debug print SQL as it executes */
477#define SQLITE_VdbeListing 0x00000400 /* Debug listings of VDBE programs */
drhf4040832004-10-22 20:29:21 +0000478#define SQLITE_WriteSchema 0x00000800 /* OK to update SQLITE_MASTER */
drh7bec5052005-02-06 02:45:41 +0000479#define SQLITE_NoReadlock 0x00001000 /* Readlocks are omitted when
480 ** accessing read-only databases */
drh58b95762000-06-02 01:17:37 +0000481
482/*
drh247be432002-05-10 05:44:55 +0000483** Possible values for the sqlite.magic field.
484** The numbers are obtained at random and have no special meaning, other
485** than being distinct from one another.
486*/
487#define SQLITE_MAGIC_OPEN 0xa029a697 /* Database is open */
488#define SQLITE_MAGIC_CLOSED 0x9f3c2d33 /* Database is closed */
489#define SQLITE_MAGIC_BUSY 0xf03b7906 /* Database currently in use */
490#define SQLITE_MAGIC_ERROR 0xb5357930 /* An SQLITE_MISUSE error occurred */
491
492/*
drh0bce8352002-02-28 00:41:10 +0000493** Each SQL function is defined by an instance of the following
494** structure. A pointer to this structure is stored in the sqlite.aFunc
drh8e0a2f92002-02-23 23:45:45 +0000495** hash table. When multiple functions have the same name, the hash table
496** points to a linked list of these structures.
drh28037572000-08-02 13:47:41 +0000497*/
drh0bce8352002-02-28 00:41:10 +0000498struct FuncDef {
drhf9b596e2004-05-26 16:54:42 +0000499 char *zName; /* SQL name of the function */
500 int nArg; /* Number of arguments. -1 means unlimited */
danielk1977d8123362004-06-12 09:25:12 +0000501 u8 iPrefEnc; /* Preferred text encoding (SQLITE_UTF8, 16LE, 16BE) */
drhf9b596e2004-05-26 16:54:42 +0000502 void *pUserData; /* User data parameter */
503 FuncDef *pNext; /* Next function with same name */
504 void (*xFunc)(sqlite3_context*,int,sqlite3_value**); /* Regular function */
505 void (*xStep)(sqlite3_context*,int,sqlite3_value**); /* Aggregate step */
506 void (*xFinalize)(sqlite3_context*); /* Aggregate finializer */
danielk1977dc1bdc42004-06-11 10:51:27 +0000507 u8 needCollSeq; /* True if sqlite3GetFuncCollSeq() might be called */
drh8e0a2f92002-02-23 23:45:45 +0000508};
drh28037572000-08-02 13:47:41 +0000509
510/*
drh967e8b72000-06-21 13:59:10 +0000511** information about each column of an SQL table is held in an instance
drh7020f652000-06-03 18:06:52 +0000512** of this structure.
513*/
514struct Column {
drh967e8b72000-06-21 13:59:10 +0000515 char *zName; /* Name of this column */
danielk19777977a172004-11-09 12:44:37 +0000516 Expr *pDflt; /* Default value of this column */
drh382c0242001-10-06 16:33:02 +0000517 char *zType; /* Data type for this column */
drha9fd84b2004-05-18 23:21:35 +0000518 CollSeq *pColl; /* Collating sequence. If NULL, use the default */
drh4a324312001-12-21 14:30:42 +0000519 u8 notNull; /* True if there is a NOT NULL constraint */
drh78100cc2003-08-23 22:40:53 +0000520 u8 isPrimKey; /* True if this column is part of the PRIMARY KEY */
danielk1977a37cdde2004-05-16 11:15:36 +0000521 char affinity; /* One of the SQLITE_AFF_... values */
drh7020f652000-06-03 18:06:52 +0000522};
523
524/*
drha9fd84b2004-05-18 23:21:35 +0000525** A "Collating Sequence" is defined by an instance of the following
danielk19770202b292004-06-09 09:55:16 +0000526** structure. Conceptually, a collating sequence consists of a name and
527** a comparison routine that defines the order of that sequence.
drha9fd84b2004-05-18 23:21:35 +0000528**
danielk19770202b292004-06-09 09:55:16 +0000529** There may two seperate implementations of the collation function, one
530** that processes text in UTF-8 encoding (CollSeq.xCmp) and another that
531** processes text encoded in UTF-16 (CollSeq.xCmp16), using the machine
532** native byte order. When a collation sequence is invoked, SQLite selects
533** the version that will require the least expensive encoding
534** transalations, if any.
535**
536** The CollSeq.pUser member variable is an extra parameter that passed in
537** as the first argument to the UTF-8 comparison function, xCmp.
538** CollSeq.pUser16 is the equivalent for the UTF-16 comparison function,
539** xCmp16.
540**
541** If both CollSeq.xCmp and CollSeq.xCmp16 are NULL, it means that the
542** collating sequence is undefined. Indices built on an undefined
543** collating sequence may not be read or written.
drha9fd84b2004-05-18 23:21:35 +0000544*/
545struct CollSeq {
danielk19770202b292004-06-09 09:55:16 +0000546 char *zName; /* Name of the collating sequence, UTF-8 encoded */
danielk1977466be562004-06-10 02:16:01 +0000547 u8 enc; /* Text encoding handled by xCmp() */
drha9fd84b2004-05-18 23:21:35 +0000548 void *pUser; /* First argument to xCmp() */
danielk19770202b292004-06-09 09:55:16 +0000549 int (*xCmp)(void*,int, const void*, int, const void*);
drha9fd84b2004-05-18 23:21:35 +0000550};
551
552/*
drhd3d39e92004-05-20 22:16:29 +0000553** A sort order can be either ASC or DESC.
drh8e2ca022002-06-17 17:07:19 +0000554*/
drh8e2ca022002-06-17 17:07:19 +0000555#define SQLITE_SO_ASC 0 /* Sort in ascending order */
drhd3d39e92004-05-20 22:16:29 +0000556#define SQLITE_SO_DESC 1 /* Sort in ascending order */
drh8e2ca022002-06-17 17:07:19 +0000557
558/*
danielk1977a37cdde2004-05-16 11:15:36 +0000559** Column affinity types.
560*/
561#define SQLITE_AFF_INTEGER 'i'
562#define SQLITE_AFF_NUMERIC 'n'
563#define SQLITE_AFF_TEXT 't'
564#define SQLITE_AFF_NONE 'o'
565
566
567/*
drh22f70c32002-02-18 01:17:00 +0000568** Each SQL table is represented in memory by an instance of the
569** following structure.
570**
drhd24cc422003-03-27 12:51:24 +0000571** Table.zName is the name of the table. The case of the original
drh22f70c32002-02-18 01:17:00 +0000572** CREATE TABLE statement is stored, but case is not significant for
573** comparisons.
574**
drhd24cc422003-03-27 12:51:24 +0000575** Table.nCol is the number of columns in this table. Table.aCol is a
drh22f70c32002-02-18 01:17:00 +0000576** pointer to an array of Column structures, one for each column.
577**
drhd24cc422003-03-27 12:51:24 +0000578** If the table has an INTEGER PRIMARY KEY, then Table.iPKey is the index of
579** the column that is that key. Otherwise Table.iPKey is negative. Note
drh22f70c32002-02-18 01:17:00 +0000580** that the datatype of the PRIMARY KEY must be INTEGER for this field to
581** be set. An INTEGER PRIMARY KEY is used as the rowid for each row of
582** the table. If a table has no INTEGER PRIMARY KEY, then a random rowid
drhd24cc422003-03-27 12:51:24 +0000583** is generated for each row of the table. Table.hasPrimKey is true if
drh22f70c32002-02-18 01:17:00 +0000584** the table has any PRIMARY KEY, INTEGER or otherwise.
585**
drhd24cc422003-03-27 12:51:24 +0000586** Table.tnum is the page number for the root BTree page of the table in the
587** database file. If Table.iDb is the index of the database table backend
588** in sqlite.aDb[]. 0 is for the main database and 1 is for the file that
589** holds temporary tables and indices. If Table.isTransient
drh22f70c32002-02-18 01:17:00 +0000590** is true, then the table is stored in a file that is automatically deleted
drhd24cc422003-03-27 12:51:24 +0000591** when the VDBE cursor to the table is closed. In this case Table.tnum
drh22f70c32002-02-18 01:17:00 +0000592** refers VDBE cursor number that holds the table open, not to the root
593** page number. Transient tables are used to hold the results of a
594** sub-query that appears instead of a real table name in the FROM clause
595** of a SELECT statement.
drh75897232000-05-29 14:26:00 +0000596*/
597struct Table {
drh967e8b72000-06-21 13:59:10 +0000598 char *zName; /* Name of the table */
drh967e8b72000-06-21 13:59:10 +0000599 int nCol; /* Number of columns in this table */
600 Column *aCol; /* Information about each column */
drhc8392582001-12-31 02:48:51 +0000601 int iPKey; /* If not less then 0, use aCol[iPKey] as the primary key */
drh967e8b72000-06-21 13:59:10 +0000602 Index *pIndex; /* List of SQL indexes on this table. */
drh22f70c32002-02-18 01:17:00 +0000603 int tnum; /* Root BTree node for this table (see note above) */
drha76b5df2002-02-23 02:32:10 +0000604 Select *pSelect; /* NULL for tables. Points to definition if a view. */
drh717e6402001-09-27 03:22:32 +0000605 u8 readOnly; /* True if this table should not be written by the user */
drhd24cc422003-03-27 12:51:24 +0000606 u8 iDb; /* Index into sqlite.aDb[] of the backend for this table */
drh22f70c32002-02-18 01:17:00 +0000607 u8 isTransient; /* True if automatically deleted when VDBE finishes */
drh4a324312001-12-21 14:30:42 +0000608 u8 hasPrimKey; /* True if there exists a primary key */
drh9cfcf5d2002-01-29 18:41:24 +0000609 u8 keyConf; /* What to do in case of uniqueness conflict on iPKey */
drh205f48e2004-11-05 00:43:11 +0000610 u8 autoInc; /* True if the integer primary key is autoincrement */
drhed8a3bb2005-06-06 21:19:56 +0000611 int nRef; /* Number of pointers to this Table */
danielk1977c3f9bad2002-05-15 08:30:12 +0000612 Trigger *pTrigger; /* List of SQL triggers on this table */
drhc2eef3b2002-08-31 18:53:06 +0000613 FKey *pFKey; /* Linked list of all foreign keys in this table */
danielk19773d1bfea2004-05-14 11:00:53 +0000614 char *zColAff; /* String defining the affinity of each column */
danielk197719a8e7e2005-03-17 05:03:38 +0000615#ifndef SQLITE_OMIT_ALTERTABLE
616 int addColOffset; /* Offset in CREATE TABLE statement to add a new column */
617#endif
drh75897232000-05-29 14:26:00 +0000618};
619
620/*
drhc2eef3b2002-08-31 18:53:06 +0000621** Each foreign key constraint is an instance of the following structure.
622**
623** A foreign key is associated with two tables. The "from" table is
624** the table that contains the REFERENCES clause that creates the foreign
625** key. The "to" table is the table that is named in the REFERENCES clause.
626** Consider this example:
627**
628** CREATE TABLE ex1(
629** a INTEGER PRIMARY KEY,
630** b INTEGER CONSTRAINT fk1 REFERENCES ex2(x)
631** );
632**
633** For foreign key "fk1", the from-table is "ex1" and the to-table is "ex2".
634**
635** Each REFERENCES clause generates an instance of the following structure
636** which is attached to the from-table. The to-table need not exist when
637** the from-table is created. The existance of the to-table is not checked
638** until an attempt is made to insert data into the from-table.
639**
drhea1ba172003-04-20 00:00:23 +0000640** The sqlite.aFKey hash table stores pointers to this structure
drhc2eef3b2002-08-31 18:53:06 +0000641** given the name of a to-table. For each to-table, all foreign keys
642** associated with that table are on a linked list using the FKey.pNextTo
643** field.
644*/
645struct FKey {
646 Table *pFrom; /* The table that constains the REFERENCES clause */
647 FKey *pNextFrom; /* Next foreign key in pFrom */
648 char *zTo; /* Name of table that the key points to */
649 FKey *pNextTo; /* Next foreign key that points to zTo */
650 int nCol; /* Number of columns in this key */
651 struct sColMap { /* Mapping of columns in pFrom to columns in zTo */
652 int iFrom; /* Index of column in pFrom */
653 char *zCol; /* Name of column in zTo. If 0 use PRIMARY KEY */
654 } *aCol; /* One entry for each of nCol column s */
655 u8 isDeferred; /* True if constraint checking is deferred till COMMIT */
656 u8 updateConf; /* How to resolve conflicts that occur on UPDATE */
657 u8 deleteConf; /* How to resolve conflicts that occur on DELETE */
658 u8 insertConf; /* How to resolve conflicts that occur on INSERT */
659};
660
661/*
662** SQLite supports many different ways to resolve a contraint
drh22f70c32002-02-18 01:17:00 +0000663** error. ROLLBACK processing means that a constraint violation
drh0bd1f4e2002-06-06 18:54:39 +0000664** causes the operation in process to fail and for the current transaction
drh1c928532002-01-31 15:54:21 +0000665** to be rolled back. ABORT processing means the operation in process
666** fails and any prior changes from that one operation are backed out,
667** but the transaction is not rolled back. FAIL processing means that
668** the operation in progress stops and returns an error code. But prior
669** changes due to the same operation are not backed out and no rollback
670** occurs. IGNORE means that the particular row that caused the constraint
671** error is not inserted or updated. Processing continues and no error
672** is returned. REPLACE means that preexisting database rows that caused
673** a UNIQUE constraint violation are removed so that the new insert or
674** update can proceed. Processing continues and no error is reported.
drhc2eef3b2002-08-31 18:53:06 +0000675**
676** RESTRICT, SETNULL, and CASCADE actions apply only to foreign keys.
677** RESTRICT is the same as ABORT for IMMEDIATE foreign keys and the
678** same as ROLLBACK for DEFERRED keys. SETNULL means that the foreign
679** key is set to NULL. CASCADE means that a DELETE or UPDATE of the
680** referenced table row is propagated into the row that holds the
681** foreign key.
drh1c928532002-01-31 15:54:21 +0000682**
drh968af522003-02-11 14:55:40 +0000683** The following symbolic values are used to record which type
drh1c928532002-01-31 15:54:21 +0000684** of action to take.
drh9cfcf5d2002-01-29 18:41:24 +0000685*/
drh1c928532002-01-31 15:54:21 +0000686#define OE_None 0 /* There is no constraint to check */
687#define OE_Rollback 1 /* Fail the operation and rollback the transaction */
688#define OE_Abort 2 /* Back out changes but do no rollback transaction */
689#define OE_Fail 3 /* Stop the operation but leave all prior changes */
690#define OE_Ignore 4 /* Ignore the error. Do not do the INSERT or UPDATE */
691#define OE_Replace 5 /* Delete existing record, then do INSERT or UPDATE */
drhc2eef3b2002-08-31 18:53:06 +0000692
693#define OE_Restrict 6 /* OE_Abort for IMMEDIATE, OE_Rollback for DEFERRED */
694#define OE_SetNull 7 /* Set the foreign key value to NULL */
695#define OE_SetDflt 8 /* Set the foreign key value to its default */
696#define OE_Cascade 9 /* Cascade the changes */
697
698#define OE_Default 99 /* Do whatever the default action is */
drh9cfcf5d2002-01-29 18:41:24 +0000699
drhd3d39e92004-05-20 22:16:29 +0000700
701/*
702** An instance of the following structure is passed as the first
703** argument to sqlite3VdbeKeyCompare and is used to control the
704** comparison of the two index keys.
705**
706** If the KeyInfo.incrKey value is true and the comparison would
drh7e627792005-04-29 02:10:00 +0000707** otherwise be equal, then return a result as if the second key
708** were larger.
drhd3d39e92004-05-20 22:16:29 +0000709*/
710struct KeyInfo {
danielk1977b1bc9532004-05-22 03:05:33 +0000711 u8 enc; /* Text encoding - one of the TEXT_Utf* values */
drhd3d39e92004-05-20 22:16:29 +0000712 u8 incrKey; /* Increase 2nd key by epsilon before comparison */
713 int nField; /* Number of entries in aColl[] */
drhffbc3082004-05-21 01:29:06 +0000714 u8 *aSortOrder; /* If defined an aSortOrder[i] is true, sort DESC */
drhd3d39e92004-05-20 22:16:29 +0000715 CollSeq *aColl[1]; /* Collating sequence for each term of the key */
716};
717
drh9cfcf5d2002-01-29 18:41:24 +0000718/*
drh66b89c82000-11-28 20:47:17 +0000719** Each SQL index is represented in memory by an
drh75897232000-05-29 14:26:00 +0000720** instance of the following structure.
drh967e8b72000-06-21 13:59:10 +0000721**
722** The columns of the table that are to be indexed are described
723** by the aiColumn[] field of this structure. For example, suppose
724** we have the following table and index:
725**
726** CREATE TABLE Ex1(c1 int, c2 int, c3 text);
727** CREATE INDEX Ex2 ON Ex1(c3,c1);
728**
729** In the Table structure describing Ex1, nCol==3 because there are
730** three columns in the table. In the Index structure describing
731** Ex2, nColumn==2 since 2 of the 3 columns of Ex1 are indexed.
732** The value of aiColumn is {2, 0}. aiColumn[0]==2 because the
733** first column to be indexed (c3) has an index of 2 in Ex1.aCol[].
734** The second column to be indexed (c1) has an index of 0 in
735** Ex1.aCol[], hence Ex2.aiColumn[1]==0.
drhea1ba172003-04-20 00:00:23 +0000736**
737** The Index.onError field determines whether or not the indexed columns
738** must be unique and what to do if they are not. When Index.onError=OE_None,
739** it means this is not a unique index. Otherwise it is a unique index
740** and the value of Index.onError indicate the which conflict resolution
741** algorithm to employ whenever an attempt is made to insert a non-unique
742** element.
drh75897232000-05-29 14:26:00 +0000743*/
744struct Index {
drh967e8b72000-06-21 13:59:10 +0000745 char *zName; /* Name of this index */
drh967e8b72000-06-21 13:59:10 +0000746 int nColumn; /* Number of columns in the table used by this index */
747 int *aiColumn; /* Which columns are used by this index. 1st is 0 */
drh497e4462005-07-23 03:18:40 +0000748 int *aiRowEst; /* Result of ANALYZE: Est. rows selected by each column */
drh967e8b72000-06-21 13:59:10 +0000749 Table *pTable; /* The SQL table being indexed */
drhbe0072d2001-09-13 14:46:09 +0000750 int tnum; /* Page containing root of this index in database file */
drh9cfcf5d2002-01-29 18:41:24 +0000751 u8 onError; /* OE_Abort, OE_Ignore, OE_Replace, or OE_None */
drh485b39b2002-07-13 03:11:52 +0000752 u8 autoIndex; /* True if is automatically created (ex: by UNIQUE) */
drhd24cc422003-03-27 12:51:24 +0000753 u8 iDb; /* Index in sqlite.aDb[] of where this index is stored */
danielk1977a37cdde2004-05-16 11:15:36 +0000754 char *zColAff; /* String defining the affinity of each column */
drh967e8b72000-06-21 13:59:10 +0000755 Index *pNext; /* The next index associated with the same table */
drhd3d39e92004-05-20 22:16:29 +0000756 KeyInfo keyInfo; /* Info on how to order keys. MUST BE LAST */
drh75897232000-05-29 14:26:00 +0000757};
758
759/*
760** Each token coming out of the lexer is an instance of
drh4b59ab52002-08-24 18:24:51 +0000761** this structure. Tokens are also used as part of an expression.
drh4efc4752004-01-16 15:55:37 +0000762**
763** Note if Token.z==0 then Token.dyn and Token.n are undefined and
764** may contain random values. Do not make any assuptions about Token.dyn
765** and Token.n when Token.z==0.
drh75897232000-05-29 14:26:00 +0000766*/
767struct Token {
drh4c755c02004-08-08 20:22:17 +0000768 const unsigned char *z; /* Text of the token. Not NULL-terminated! */
769 unsigned dyn : 1; /* True for malloced memory, false for static */
770 unsigned n : 31; /* Number of characters in this token */
drh75897232000-05-29 14:26:00 +0000771};
772
773/*
774** Each node of an expression in the parse tree is an instance
drh22f70c32002-02-18 01:17:00 +0000775** of this structure.
776**
777** Expr.op is the opcode. The integer parser token codes are reused
778** as opcodes here. For example, the parser defines TK_GE to be an integer
779** code representing the ">=" operator. This same integer code is reused
780** to represent the greater-than-or-equal-to operator in the expression
781** tree.
782**
783** Expr.pRight and Expr.pLeft are subexpressions. Expr.pList is a list
784** of argument if the expression is a function.
785**
drh4b59ab52002-08-24 18:24:51 +0000786** Expr.token is the operator token for this node. For some expressions
787** that have subexpressions, Expr.token can be the complete text that gave
788** rise to the Expr. In the latter case, the token is marked as being
789** a compound token.
drh22f70c32002-02-18 01:17:00 +0000790**
791** An expression of the form ID or ID.ID refers to a column in a table.
792** For such expressions, Expr.op is set to TK_COLUMN and Expr.iTable is
793** the integer cursor number of a VDBE cursor pointing to that table and
794** Expr.iColumn is the column number for the specific column. If the
795** expression is used as a result in an aggregate SELECT, then the
796** value is also stored in the Expr.iAgg column in the aggregate so that
797** it can be accessed after all aggregates are computed.
798**
799** If the expression is a function, the Expr.iTable is an integer code
drh7c972de2003-09-06 22:18:07 +0000800** representing which function. If the expression is an unbound variable
801** marker (a question mark character '?' in the original SQL) then the
802** Expr.iTable holds the index number for that variable.
drh22f70c32002-02-18 01:17:00 +0000803**
drh1398ad32005-01-19 23:24:50 +0000804** If the expression is a subquery then Expr.iColumn holds an integer
805** register number containing the result of the subquery. If the
806** subquery gives a constant result, then iTable is -1. If the subquery
807** gives a different answer at different times during statement processing
808** then iTable is the address of a subroutine that computes the subquery.
809**
drh22f70c32002-02-18 01:17:00 +0000810** The Expr.pSelect field points to a SELECT statement. The SELECT might
811** be the right operand of an IN operator. Or, if a scalar SELECT appears
812** in an expression the opcode is TK_SELECT and Expr.pSelect is the only
813** operand.
danielk1977aee18ef2005-03-09 12:26:50 +0000814**
815** If the Expr is of type OP_Column, and the table it is selecting from
816** is a disk table or the "old.*" pseudo-table, then pTab points to the
817** corresponding table definition.
drh75897232000-05-29 14:26:00 +0000818*/
819struct Expr {
drh1cc093c2002-06-24 22:01:57 +0000820 u8 op; /* Operation performed by this node */
drha9fd84b2004-05-18 23:21:35 +0000821 char affinity; /* The affinity of the column or 0 if not a column */
drhb5a20d32003-04-23 12:25:23 +0000822 u8 iDb; /* Database referenced by this expression */
drhe22a3342003-04-22 20:30:37 +0000823 u8 flags; /* Various flags. See below */
drhf2bc0132004-10-04 13:19:23 +0000824 CollSeq *pColl; /* The collation type of the column or 0 */
drh75897232000-05-29 14:26:00 +0000825 Expr *pLeft, *pRight; /* Left and right subnodes */
drhd99f7062002-06-08 23:25:08 +0000826 ExprList *pList; /* A list of expressions used as function arguments
827 ** or in "<expr> IN (<expr-list)" */
drh75897232000-05-29 14:26:00 +0000828 Token token; /* An operand token */
drh6977fea2002-10-22 23:38:04 +0000829 Token span; /* Complete text of the expression */
drh967e8b72000-06-21 13:59:10 +0000830 int iTable, iColumn; /* When op==TK_COLUMN, then this expr node means the
drh8e2ca022002-06-17 17:07:19 +0000831 ** iColumn-th field of the iTable-th table. */
danielk1977a58fdfb2005-02-08 07:50:40 +0000832 int iAgg; /* When op==TK_COLUMN and pParse->fillAgg==FALSE, pull
drh967e8b72000-06-21 13:59:10 +0000833 ** result from the iAgg-th element of the aggregator */
danielk1977a58fdfb2005-02-08 07:50:40 +0000834 int iAggCtx; /* The value to pass as P1 of OP_AggGet. */
drhd99f7062002-06-08 23:25:08 +0000835 Select *pSelect; /* When the expression is a sub-select. Also the
836 ** right side of "<expr> IN (<select>)" */
danielk1977aee18ef2005-03-09 12:26:50 +0000837 Table *pTab; /* Table for OP_Column expressions. */
drh75897232000-05-29 14:26:00 +0000838};
839
840/*
drh1f162302002-10-27 19:35:33 +0000841** The following are the meanings of bits in the Expr.flags field.
842*/
drh392e5972005-07-08 14:14:22 +0000843#define EP_FromJoin 0x01 /* Originated in ON or USING clause of a join */
844#define EP_Agg 0x02 /* Contains one or more aggregate functions */
845#define EP_Resolved 0x04 /* IDs have been resolved to COLUMNs */
846#define EP_Error 0x08 /* Expression contains one or more errors */
847#define EP_Not 0x10 /* Operator preceeded by NOT */
848#define EP_VarSelect 0x20 /* pSelect is correlated, not constant */
drh1f162302002-10-27 19:35:33 +0000849
850/*
851** These macros can be used to test, set, or clear bits in the
852** Expr.flags field.
853*/
854#define ExprHasProperty(E,P) (((E)->flags&(P))==(P))
855#define ExprHasAnyProperty(E,P) (((E)->flags&(P))!=0)
856#define ExprSetProperty(E,P) (E)->flags|=(P)
857#define ExprClearProperty(E,P) (E)->flags&=~(P)
858
859/*
drh75897232000-05-29 14:26:00 +0000860** A list of expressions. Each expression may optionally have a
861** name. An expr/name combination can be used in several ways, such
862** as the list of "expr AS ID" fields following a "SELECT" or in the
863** list of "ID = expr" items in an UPDATE. A list of expressions can
drhad3cab52002-05-24 02:04:32 +0000864** also be used as the argument to a function, in which case the a.zName
drh75897232000-05-29 14:26:00 +0000865** field is not used.
866*/
867struct ExprList {
868 int nExpr; /* Number of expressions on the list */
drh4305d102003-07-30 12:34:12 +0000869 int nAlloc; /* Number of entries allocated below */
drh6d4abfb2001-10-22 02:58:08 +0000870 struct ExprList_item {
drh75897232000-05-29 14:26:00 +0000871 Expr *pExpr; /* The list of expressions */
872 char *zName; /* Token associated with this expression */
drh8e2ca022002-06-17 17:07:19 +0000873 u8 sortOrder; /* 1 for DESC or 0 for ASC */
874 u8 isAgg; /* True if this is an aggregate like count(*) */
875 u8 done; /* A flag to indicate when processing is finished */
drh75897232000-05-29 14:26:00 +0000876 } *a; /* One entry for each expression */
877};
878
879/*
drhad3cab52002-05-24 02:04:32 +0000880** An instance of this structure can hold a simple list of identifiers,
881** such as the list "a,b,c" in the following statements:
882**
883** INSERT INTO t(a,b,c) VALUES ...;
884** CREATE INDEX idx ON t(a,b,c);
885** CREATE TRIGGER trig BEFORE UPDATE ON t(a,b,c) ...;
886**
887** The IdList.a.idx field is used when the IdList represents the list of
888** column names after a table name in an INSERT statement. In the statement
889**
890** INSERT INTO t(a,b,c) ...
891**
892** If "a" is the k-th column of table "t", then IdList.a[0].idx==k.
drh75897232000-05-29 14:26:00 +0000893*/
894struct IdList {
895 int nId; /* Number of identifiers on the list */
drh4305d102003-07-30 12:34:12 +0000896 int nAlloc; /* Number of entries allocated for a[] below */
drh6d4abfb2001-10-22 02:58:08 +0000897 struct IdList_item {
drhad3cab52002-05-24 02:04:32 +0000898 char *zName; /* Name of the identifier */
drh967e8b72000-06-21 13:59:10 +0000899 int idx; /* Index in some Table.aCol[] of a column named zName */
drhad3cab52002-05-24 02:04:32 +0000900 } *a;
901};
902
903/*
drh51669862004-12-18 18:40:26 +0000904** The bitmask datatype defined below is used for various optimizations.
905*/
906typedef unsigned int Bitmask;
907
908/*
drhad3cab52002-05-24 02:04:32 +0000909** The following structure describes the FROM clause of a SELECT statement.
910** Each table or subquery in the FROM clause is a separate element of
911** the SrcList.a[] array.
drhd24cc422003-03-27 12:51:24 +0000912**
913** With the addition of multiple database support, the following structure
914** can also be used to describe a particular table such as the table that
915** is modified by an INSERT, DELETE, or UPDATE statement. In standard SQL,
916** such a table must be a simple name: ID. But in SQLite, the table can
917** now be identified by a database name, a dot, then the table name: ID.ID.
drhad3cab52002-05-24 02:04:32 +0000918*/
919struct SrcList {
drh939a16d2004-07-15 13:37:22 +0000920 i16 nSrc; /* Number of tables or subqueries in the FROM clause */
921 i16 nAlloc; /* Number of entries allocated in a[] below */
drhad3cab52002-05-24 02:04:32 +0000922 struct SrcList_item {
drh113088e2003-03-20 01:16:58 +0000923 char *zDatabase; /* Name of database holding this table */
drhad3cab52002-05-24 02:04:32 +0000924 char *zName; /* Name of the table */
925 char *zAlias; /* The "B" part of a "A AS B" phrase. zName is the "A" */
drhdaffd0e2001-04-11 14:28:42 +0000926 Table *pTab; /* An SQL table corresponding to zName */
927 Select *pSelect; /* A SELECT statement used in place of a table name */
drhfe05af82005-07-21 03:14:59 +0000928 u8 jointype; /* Type of join between this table and the next */
929 i16 iCursor; /* The VDBE cursor number used to access this table */
drhad3cab52002-05-24 02:04:32 +0000930 Expr *pOn; /* The ON clause of a join */
931 IdList *pUsing; /* The USING clause of a join */
drh51669862004-12-18 18:40:26 +0000932 Bitmask colUsed; /* Bit N (1<<N) set if column N or pTab is used */
drh113088e2003-03-20 01:16:58 +0000933 } a[1]; /* One entry for each identifier on the list */
drh75897232000-05-29 14:26:00 +0000934};
935
936/*
drh01f3f252002-05-24 16:14:15 +0000937** Permitted values of the SrcList.a.jointype field
938*/
939#define JT_INNER 0x0001 /* Any kind of inner or cross join */
940#define JT_NATURAL 0x0002 /* True for a "natural" join */
drh195e6962002-05-25 00:18:20 +0000941#define JT_LEFT 0x0004 /* Left outer join */
942#define JT_RIGHT 0x0008 /* Right outer join */
drh01f3f252002-05-24 16:14:15 +0000943#define JT_OUTER 0x0010 /* The "OUTER" keyword is present */
944#define JT_ERROR 0x0020 /* unknown or unsupported join type */
945
946/*
drh6b563442001-11-07 16:48:26 +0000947** For each nested loop in a WHERE clause implementation, the WhereInfo
948** structure contains a single instance of this structure. This structure
949** is intended to be private the the where.c module and should not be
950** access or modified by other modules.
951*/
952struct WhereLevel {
drh29dda4a2005-07-21 18:23:20 +0000953 int iFrom; /* Which entry in the FROM clause */
954 int flags; /* Flags associated with this level */
drh51147ba2005-07-23 22:59:55 +0000955 int iMem; /* First memory cell used by this level */
drh29dda4a2005-07-21 18:23:20 +0000956 int iLeftJoin; /* Memory cell used to implement LEFT OUTER JOIN */
957 Index *pIdx; /* Index used. NULL if no index */
958 int iTabCur; /* The VDBE cursor used to access the table */
959 int iIdxCur; /* The VDBE cursor used to acesss pIdx */
960 int brk; /* Jump here to break out of the loop */
961 int cont; /* Jump here to continue with the next loop cycle */
962 int top; /* First instruction of interior of the loop */
963 int op, p1, p2; /* Opcode used to terminate the loop */
drh51147ba2005-07-23 22:59:55 +0000964 int nEq; /* Number of == or IN constraints on this loop */
drhe23399f2005-07-22 00:31:39 +0000965 int nIn; /* Number of IN operators constraining this loop */
966 int *aInLoop; /* Loop terminators for IN operators */
drh6b563442001-11-07 16:48:26 +0000967};
968
969/*
drh75897232000-05-29 14:26:00 +0000970** The WHERE clause processing routine has two halves. The
971** first part does the start of the WHERE loop and the second
972** half does the tail of the WHERE loop. An instance of
973** this structure is returned by the first half and passed
974** into the second half to give some continuity.
975*/
976struct WhereInfo {
977 Parse *pParse;
drhad3cab52002-05-24 02:04:32 +0000978 SrcList *pTabList; /* List of tables in the join */
drh9012bcb2004-12-19 00:11:35 +0000979 int iTop; /* The very beginning of the WHERE loop */
drh19a775c2000-06-05 18:54:46 +0000980 int iContinue; /* Jump here to continue with next record */
981 int iBreak; /* Jump here to break out of the loop */
drh6b563442001-11-07 16:48:26 +0000982 int nLevel; /* Number of nested loop */
983 WhereLevel a[1]; /* Information about each nest loop in the WHERE */
drh75897232000-05-29 14:26:00 +0000984};
985
986/*
danielk1977b3bce662005-01-29 08:32:43 +0000987** A NameContext defines a context in which to resolve table and column
988** names. The context consists of a list of tables (the pSrcList) field and
989** a list of named expression (pEList). The named expression list may
990** be NULL. The pSrc corresponds to the FROM clause of a SELECT or
991** to the table being operated on by INSERT, UPDATE, or DELETE. The
992** pEList corresponds to the result set of a SELECT and is NULL for
993** other statements.
994**
995** NameContexts can be nested. When resolving names, the inner-most
996** context is searched first. If no match is found, the next outer
997** context is checked. If there is still no match, the next context
998** is checked. This process continues until either a match is found
999** or all contexts are check. When a match is found, the nRef member of
1000** the context containing the match is incremented.
1001**
1002** Each subquery gets a new NameContext. The pNext field points to the
1003** NameContext in the parent query. Thus the process of scanning the
1004** NameContext list corresponds to searching through successively outer
1005** subqueries looking for a match.
1006*/
1007struct NameContext {
1008 Parse *pParse; /* The parser */
1009 SrcList *pSrcList; /* One or more tables used to resolve names */
1010 ExprList *pEList; /* Optional list of named expressions */
1011 int nRef; /* Number of names resolved by this context */
1012 int nErr; /* Number of errors encountered while resolving names */
1013 u8 allowAgg; /* Aggregate functions allowed here */
1014 u8 hasAgg;
1015 int nDepth; /* Depth of subquery recursion. 1 for no recursion */
1016 NameContext *pNext; /* Next outer name context. NULL for outermost */
1017};
1018
1019/*
drh9bb61fe2000-06-05 16:01:39 +00001020** An instance of the following structure contains all information
1021** needed to generate code for a single SELECT statement.
drha76b5df2002-02-23 02:32:10 +00001022**
drhd11d3822002-06-21 23:01:49 +00001023** nLimit is set to -1 if there is no LIMIT clause. nOffset is set to 0.
1024** If there is a LIMIT clause, the parser sets nLimit to the value of the
1025** limit and nOffset to the value of the offset (or 0 if there is not
1026** offset). But later on, nLimit and nOffset become the memory locations
1027** in the VDBE that record the limit and offset counters.
drh9bb61fe2000-06-05 16:01:39 +00001028*/
1029struct Select {
drh9bb61fe2000-06-05 16:01:39 +00001030 ExprList *pEList; /* The fields of the result */
drh7b58dae2003-07-20 01:16:46 +00001031 u8 op; /* One of: TK_UNION TK_ALL TK_INTERSECT TK_EXCEPT */
1032 u8 isDistinct; /* True if the DISTINCT keyword is present */
drhad3cab52002-05-24 02:04:32 +00001033 SrcList *pSrc; /* The FROM clause */
drh9bb61fe2000-06-05 16:01:39 +00001034 Expr *pWhere; /* The WHERE clause */
1035 ExprList *pGroupBy; /* The GROUP BY clause */
1036 Expr *pHaving; /* The HAVING clause */
1037 ExprList *pOrderBy; /* The ORDER BY clause */
drh967e8b72000-06-21 13:59:10 +00001038 Select *pPrior; /* Prior select in a compound select statement */
danielk1977a2dc3b12005-02-05 12:48:48 +00001039 Expr *pLimit; /* LIMIT expression. NULL means not used. */
1040 Expr *pOffset; /* OFFSET expression. NULL means not used. */
drh7b58dae2003-07-20 01:16:46 +00001041 int iLimit, iOffset; /* Memory registers holding LIMIT & OFFSET counters */
drh9170dd72005-07-08 17:13:46 +00001042 IdList **ppOpenVirtual;/* OP_OpenVirtual addresses used by multi-selects */
danielk1977b3bce662005-01-29 08:32:43 +00001043 u8 isResolved; /* True once sqlite3SelectResolve() has run. */
1044 u8 isAgg; /* True if this is an aggregate query */
drh9bb61fe2000-06-05 16:01:39 +00001045};
1046
1047/*
drhfef52082000-06-06 01:50:43 +00001048** The results of a select can be distributed in several ways.
1049*/
1050#define SRT_Callback 1 /* Invoke a callback with each row of result */
1051#define SRT_Mem 2 /* Store result in a memory cell */
drh82c3d632000-06-06 21:56:07 +00001052#define SRT_Set 3 /* Store result as unique keys in a table */
1053#define SRT_Union 5 /* Store result as keys in a table */
1054#define SRT_Except 6 /* Remove result from a UNION table */
drh5974a302000-06-07 14:42:26 +00001055#define SRT_Table 7 /* Store result as data with a unique key */
drh2d0794e2002-03-03 03:03:52 +00001056#define SRT_TempTable 8 /* Store result in a trasient table */
drhd7489c32002-05-27 12:24:48 +00001057#define SRT_Discard 9 /* Do not save the results anywhere */
drhf46f9052002-06-22 02:33:38 +00001058#define SRT_Sorter 10 /* Store results in the sorter */
drh142e30d2002-08-28 03:00:58 +00001059#define SRT_Subroutine 11 /* Call a subroutine to handle results */
drh51522cd2005-01-20 13:36:19 +00001060#define SRT_Exists 12 /* Put 0 or 1 in a memory cell */
drhfef52082000-06-06 01:50:43 +00001061
1062/*
drh22827922000-06-06 17:27:05 +00001063** When a SELECT uses aggregate functions (like "count(*)" or "avg(f1)")
1064** we have to do some additional analysis of expressions. An instance
1065** of the following structure holds information about a single subexpression
1066** somewhere in the SELECT statement. An array of these structures holds
1067** all the information we need to generate code for aggregate
1068** expressions.
1069**
1070** Note that when analyzing a SELECT containing aggregates, both
1071** non-aggregate field variables and aggregate functions are stored
1072** in the AggExpr array of the Parser structure.
1073**
1074** The pExpr field points to an expression that is part of either the
1075** field list, the GROUP BY clause, the HAVING clause or the ORDER BY
1076** clause. The expression will be freed when those clauses are cleaned
1077** up. Do not try to delete the expression attached to AggExpr.pExpr.
1078**
1079** If AggExpr.pExpr==0, that means the expression is "count(*)".
1080*/
1081struct AggExpr {
1082 int isAgg; /* if TRUE contains an aggregate function */
1083 Expr *pExpr; /* The expression */
drh0bce8352002-02-28 00:41:10 +00001084 FuncDef *pFunc; /* Information about the aggregate function */
drh22827922000-06-06 17:27:05 +00001085};
1086
1087/*
drhf57b3392001-10-08 13:22:32 +00001088** An SQL parser context. A copy of this structure is passed through
1089** the parser and down into all the parser action routine in order to
1090** carry around information that is global to the entire parse.
drhf1974842004-11-05 03:56:00 +00001091**
1092** The structure is divided into two parts. When the parser and code
1093** generate call themselves recursively, the first part of the structure
1094** is constant but the second part is reset at the beginning and end of
1095** each recursion.
drh75897232000-05-29 14:26:00 +00001096*/
1097struct Parse {
drh9bb575f2004-09-06 17:24:11 +00001098 sqlite3 *db; /* The main database structure */
drh4c504392000-10-16 22:06:40 +00001099 int rc; /* Return code from execution */
drh75897232000-05-29 14:26:00 +00001100 char *zErrMsg; /* An error message */
drh75897232000-05-29 14:26:00 +00001101 Vdbe *pVdbe; /* An engine for executing database bytecode */
drh836faa42003-01-11 13:30:57 +00001102 u8 colNamesSet; /* TRUE after OP_ColumnName has been issued to pVdbe */
drhe0bc4042002-06-25 01:09:11 +00001103 u8 nameClash; /* A permanent table name clashes with temp table name */
drha6ecd332004-06-10 00:29:09 +00001104 u8 checkSchema; /* Causes schema cookie check after an error */
drh205f48e2004-11-05 00:43:11 +00001105 u8 nested; /* Number of nested calls to the parser/code generator */
drhfcd35c72005-05-21 02:48:08 +00001106 u8 fillAgg; /* If true, ignore the Expr.iAgg field. Normally false */
drh75897232000-05-29 14:26:00 +00001107 int nErr; /* Number of errors seen */
drh832508b2002-03-02 17:04:07 +00001108 int nTab; /* Number of previously allocated VDBE cursors */
drh19a775c2000-06-05 18:54:46 +00001109 int nMem; /* Number of memory cells used so far */
drhfef52082000-06-06 01:50:43 +00001110 int nSet; /* Number of sets used so far */
drh80242052004-06-09 00:48:12 +00001111 u32 writeMask; /* Start a write transaction on these databases */
drhfcd35c72005-05-21 02:48:08 +00001112 u32 cookieMask; /* Bitmask of schema verified databases */
1113 int cookieGoto; /* Address of OP_Goto to cookie verifier subroutine */
1114 int cookieValue[MAX_ATTACHED+2]; /* Values of cookies to verify */
drhf1974842004-11-05 03:56:00 +00001115
1116 /* Above is constant between recursions. Below is reset before and after
1117 ** each recursion */
1118
1119 int nVar; /* Number of '?' variables seen in the SQL so far */
1120 int nVarExpr; /* Number of used slots in apVarExpr[] */
1121 int nVarExprAlloc; /* Number of allocated slots in apVarExpr[] */
1122 Expr **apVarExpr; /* Pointers to :aaa and $aaaa wildcard expressions */
1123 u8 explain; /* True if the EXPLAIN flag is found on the query */
drhf1974842004-11-05 03:56:00 +00001124 Token sErrToken; /* The token at which the error occurred */
1125 Token sNameToken; /* Token with unqualified schema object name */
1126 Token sLastToken; /* The last token parsed */
1127 const char *zSql; /* All SQL text */
1128 const char *zTail; /* All SQL text past the last semicolon parsed */
1129 Table *pNewTable; /* A table being constructed by CREATE TABLE */
1130 Trigger *pNewTrigger; /* Trigger under construct by a CREATE TRIGGER */
1131 TriggerStack *trigStack; /* Trigger actions being coded */
1132 const char *zAuthContext; /* The 6th parameter to db->xAuth callbacks */
danielk1977b3bce662005-01-29 08:32:43 +00001133 int nAgg; /* Number of aggregate expressions */
1134 AggExpr *aAgg; /* An array of aggregate expressions */
1135 int nMaxDepth; /* Maximum depth of subquery recursion */
drh75897232000-05-29 14:26:00 +00001136};
1137
danielk1977d99bc932002-05-16 00:13:12 +00001138/*
drh85e20962003-04-25 17:52:11 +00001139** An instance of the following structure can be declared on a stack and used
1140** to save the Parse.zAuthContext value so that it can be restored later.
1141*/
1142struct AuthContext {
1143 const char *zAuthContext; /* Put saved Parse.zAuthContext here */
1144 Parse *pParse; /* The Parse structure */
1145};
1146
1147/*
drhf0863fe2005-06-12 21:35:51 +00001148** Bitfield flags for P2 value in OP_Insert and OP_Delete
rdcb0c374f2004-02-20 22:53:38 +00001149*/
1150#define OPFLAG_NCHANGE 1 /* Set to update db->nChange */
1151#define OPFLAG_LASTROWID 2 /* Set to update db->lastRowid */
rdcb0c374f2004-02-20 22:53:38 +00001152
1153/*
danielk1977d99bc932002-05-16 00:13:12 +00001154 * Each trigger present in the database schema is stored as an instance of
1155 * struct Trigger.
1156 *
1157 * Pointers to instances of struct Trigger are stored in two ways.
drh9bb575f2004-09-06 17:24:11 +00001158 * 1. In the "trigHash" hash table (part of the sqlite3* that represents the
danielk1977d99bc932002-05-16 00:13:12 +00001159 * database). This allows Trigger structures to be retrieved by name.
1160 * 2. All triggers associated with a single table form a linked list, using the
drhad3cab52002-05-24 02:04:32 +00001161 * pNext member of struct Trigger. A pointer to the first element of the
1162 * linked list is stored as the "pTrigger" member of the associated
1163 * struct Table.
danielk1977d99bc932002-05-16 00:13:12 +00001164 *
drhad3cab52002-05-24 02:04:32 +00001165 * The "step_list" member points to the first element of a linked list
1166 * containing the SQL statements specified as the trigger program.
danielk1977d99bc932002-05-16 00:13:12 +00001167 */
danielk1977c3f9bad2002-05-15 08:30:12 +00001168struct Trigger {
drhdc379452002-05-15 12:45:43 +00001169 char *name; /* The name of the trigger */
1170 char *table; /* The table or view to which the trigger applies */
drhf0f258b2003-04-21 18:48:45 +00001171 u8 iDb; /* Database containing this trigger */
drh79a519c2003-05-17 19:04:03 +00001172 u8 iTabDb; /* Database containing Trigger.table */
drhf0f258b2003-04-21 18:48:45 +00001173 u8 op; /* One of TK_DELETE, TK_UPDATE, TK_INSERT */
drhdca76842004-12-07 14:06:13 +00001174 u8 tr_tm; /* One of TRIGGER_BEFORE, TRIGGER_AFTER */
drhdc379452002-05-15 12:45:43 +00001175 Expr *pWhen; /* The WHEN clause of the expresion (may be NULL) */
1176 IdList *pColumns; /* If this is an UPDATE OF <column-list> trigger,
danielk1977d99bc932002-05-16 00:13:12 +00001177 the <column-list> is stored here */
drhdc379452002-05-15 12:45:43 +00001178 int foreach; /* One of TK_ROW or TK_STATEMENT */
drh4312db52003-06-03 01:47:11 +00001179 Token nameToken; /* Token containing zName. Use during parsing only */
danielk1977c3f9bad2002-05-15 08:30:12 +00001180
drhdc379452002-05-15 12:45:43 +00001181 TriggerStep *step_list; /* Link list of trigger program steps */
drhdc379452002-05-15 12:45:43 +00001182 Trigger *pNext; /* Next trigger associated with the table */
danielk1977c3f9bad2002-05-15 08:30:12 +00001183};
1184
danielk1977d99bc932002-05-16 00:13:12 +00001185/*
drhdca76842004-12-07 14:06:13 +00001186** A trigger is either a BEFORE or an AFTER trigger. The following constants
1187** determine which.
1188**
1189** If there are multiple triggers, you might of some BEFORE and some AFTER.
1190** In that cases, the constants below can be ORed together.
1191*/
1192#define TRIGGER_BEFORE 1
1193#define TRIGGER_AFTER 2
1194
1195/*
danielk1977d99bc932002-05-16 00:13:12 +00001196 * An instance of struct TriggerStep is used to store a single SQL statement
1197 * that is a part of a trigger-program.
1198 *
1199 * Instances of struct TriggerStep are stored in a singly linked list (linked
1200 * using the "pNext" member) referenced by the "step_list" member of the
1201 * associated struct Trigger instance. The first element of the linked list is
1202 * the first step of the trigger-program.
1203 *
1204 * The "op" member indicates whether this is a "DELETE", "INSERT", "UPDATE" or
1205 * "SELECT" statement. The meanings of the other members is determined by the
1206 * value of "op" as follows:
1207 *
1208 * (op == TK_INSERT)
1209 * orconf -> stores the ON CONFLICT algorithm
1210 * pSelect -> If this is an INSERT INTO ... SELECT ... statement, then
1211 * this stores a pointer to the SELECT statement. Otherwise NULL.
1212 * target -> A token holding the name of the table to insert into.
1213 * pExprList -> If this is an INSERT INTO ... VALUES ... statement, then
1214 * this stores values to be inserted. Otherwise NULL.
1215 * pIdList -> If this is an INSERT INTO ... (<column-names>) VALUES ...
drhad3cab52002-05-24 02:04:32 +00001216 * statement, then this stores the column-names to be
1217 * inserted into.
danielk1977d99bc932002-05-16 00:13:12 +00001218 *
1219 * (op == TK_DELETE)
1220 * target -> A token holding the name of the table to delete from.
1221 * pWhere -> The WHERE clause of the DELETE statement if one is specified.
1222 * Otherwise NULL.
1223 *
1224 * (op == TK_UPDATE)
1225 * target -> A token holding the name of the table to update rows of.
1226 * pWhere -> The WHERE clause of the UPDATE statement if one is specified.
1227 * Otherwise NULL.
1228 * pExprList -> A list of the columns to update and the expressions to update
danielk19774adee202004-05-08 08:23:19 +00001229 * them to. See sqlite3Update() documentation of "pChanges"
drhad3cab52002-05-24 02:04:32 +00001230 * argument.
danielk1977d99bc932002-05-16 00:13:12 +00001231 *
1232 */
1233struct TriggerStep {
1234 int op; /* One of TK_DELETE, TK_UPDATE, TK_INSERT, TK_SELECT */
1235 int orconf; /* OE_Rollback etc. */
drha69d9162003-04-17 22:57:53 +00001236 Trigger *pTrig; /* The trigger that this step is a part of */
danielk1977c3f9bad2002-05-15 08:30:12 +00001237
danielk1977d99bc932002-05-16 00:13:12 +00001238 Select *pSelect; /* Valid for SELECT and sometimes
1239 INSERT steps (when pExprList == 0) */
1240 Token target; /* Valid for DELETE, UPDATE, INSERT steps */
1241 Expr *pWhere; /* Valid for DELETE, UPDATE steps */
1242 ExprList *pExprList; /* Valid for UPDATE statements and sometimes
1243 INSERT steps (when pSelect == 0) */
1244 IdList *pIdList; /* Valid for INSERT statements only */
1245
1246 TriggerStep * pNext; /* Next in the link-list */
1247};
1248
1249/*
1250 * An instance of struct TriggerStack stores information required during code
1251 * generation of a single trigger program. While the trigger program is being
1252 * coded, its associated TriggerStack instance is pointed to by the
1253 * "pTriggerStack" member of the Parse structure.
1254 *
1255 * The pTab member points to the table that triggers are being coded on. The
1256 * newIdx member contains the index of the vdbe cursor that points at the temp
1257 * table that stores the new.* references. If new.* references are not valid
1258 * for the trigger being coded (for example an ON DELETE trigger), then newIdx
1259 * is set to -1. The oldIdx member is analogous to newIdx, for old.* references.
1260 *
1261 * The ON CONFLICT policy to be used for the trigger program steps is stored
1262 * as the orconf member. If this is OE_Default, then the ON CONFLICT clause
1263 * specified for individual triggers steps is used.
1264 *
1265 * struct TriggerStack has a "pNext" member, to allow linked lists to be
1266 * constructed. When coding nested triggers (triggers fired by other triggers)
1267 * each nested trigger stores its parent trigger's TriggerStack as the "pNext"
1268 * pointer. Once the nested trigger has been coded, the pNext value is restored
1269 * to the pTriggerStack member of the Parse stucture and coding of the parent
1270 * trigger continues.
1271 *
1272 * Before a nested trigger is coded, the linked list pointed to by the
1273 * pTriggerStack is scanned to ensure that the trigger is not about to be coded
1274 * recursively. If this condition is detected, the nested trigger is not coded.
1275 */
1276struct TriggerStack {
1277 Table *pTab; /* Table that triggers are currently being coded on */
1278 int newIdx; /* Index of vdbe cursor to "new" temp table */
1279 int oldIdx; /* Index of vdbe cursor to "old" temp table */
1280 int orconf; /* Current orconf policy */
danielk19776f349032002-06-11 02:25:40 +00001281 int ignoreJump; /* where to jump to for a RAISE(IGNORE) */
drhe22a3342003-04-22 20:30:37 +00001282 Trigger *pTrigger; /* The trigger currently being coded */
1283 TriggerStack *pNext; /* Next trigger down on the trigger stack */
danielk1977d99bc932002-05-16 00:13:12 +00001284};
1285
1286/*
drhf26e09c2003-05-31 16:21:12 +00001287** The following structure contains information used by the sqliteFix...
1288** routines as they walk the parse tree to make database references
1289** explicit.
1290*/
1291typedef struct DbFixer DbFixer;
1292struct DbFixer {
1293 Parse *pParse; /* The parsing context. Error messages written here */
1294 const char *zDb; /* Make sure all objects are contained in this database */
1295 const char *zType; /* Type of the container - used for error messages */
1296 const Token *pName; /* Name of the container - used for error messages */
1297};
1298
1299/*
drh234c39d2004-07-24 03:30:47 +00001300** A pointer to this structure is used to communicate information
1301** from sqlite3Init and OP_ParseSchema into the sqlite3InitCallback.
1302*/
1303typedef struct {
drh9bb575f2004-09-06 17:24:11 +00001304 sqlite3 *db; /* The database being initialized */
drh234c39d2004-07-24 03:30:47 +00001305 char **pzErrMsg; /* Error message stored here */
1306} InitData;
1307
drhb6c29892004-11-22 19:12:19 +00001308/*
danielk1977d99bc932002-05-16 00:13:12 +00001309 * This global flag is set for performance testing of triggers. When it is set
1310 * SQLite will perform the overhead of building new and old trigger references
1311 * even when no triggers exist
1312 */
drh38f82712004-06-18 17:10:16 +00001313extern int sqlite3_always_code_trigger_setup;
danielk1977c3f9bad2002-05-15 08:30:12 +00001314
drh75897232000-05-29 14:26:00 +00001315/*
1316** Internal function prototypes
1317*/
danielk19774adee202004-05-08 08:23:19 +00001318int sqlite3StrICmp(const char *, const char *);
1319int sqlite3StrNICmp(const char *, const char *, int);
1320int sqlite3HashNoCase(const char *, int);
danielk19778a6b5412004-05-24 07:04:25 +00001321int sqlite3IsNumber(const char*, int*, u8);
danielk19774adee202004-05-08 08:23:19 +00001322int sqlite3Compare(const char *, const char *);
1323int sqlite3SortCompare(const char *, const char *);
1324void sqlite3RealToSortable(double r, char *);
danielk19772c336542005-01-13 02:14:23 +00001325#ifdef SQLITE_MEMDEBUG
danielk19774adee202004-05-08 08:23:19 +00001326 void *sqlite3Malloc_(int,int,char*,int);
1327 void sqlite3Free_(void*,char*,int);
1328 void *sqlite3Realloc_(void*,int,char*,int);
1329 char *sqlite3StrDup_(const char*,char*,int);
1330 char *sqlite3StrNDup_(const char*, int,char*,int);
1331 void sqlite3CheckMemory(void*,int);
drhdcc581c2000-05-30 13:44:19 +00001332#else
drhbdb43832004-06-18 17:45:11 +00001333 void *sqlite3Malloc(int);
1334 void *sqlite3MallocRaw(int);
1335 void sqlite3Free(void*);
1336 void *sqlite3Realloc(void*,int);
1337 char *sqlite3StrDup(const char*);
1338 char *sqlite3StrNDup(const char*, int);
danielk19774adee202004-05-08 08:23:19 +00001339# define sqlite3CheckMemory(a,b)
drh132d8d62005-05-22 20:12:37 +00001340# define sqlite3MallocX sqlite3Malloc
drhdcc581c2000-05-30 13:44:19 +00001341#endif
drh998da3a2004-06-19 15:22:56 +00001342void sqlite3FreeX(void*);
drh132d8d62005-05-22 20:12:37 +00001343void *sqlite3MallocX(int);
danielk19774adee202004-05-08 08:23:19 +00001344char *sqlite3MPrintf(const char*, ...);
1345char *sqlite3VMPrintf(const char*, va_list);
drhe54ca3f2004-06-07 01:52:14 +00001346void sqlite3DebugPrintf(const char*, ...);
drhfe63d1c2004-09-08 20:13:04 +00001347void *sqlite3TextToPtr(const char*);
drh41f58522005-06-06 15:06:39 +00001348void sqlite3SetString(char **, ...);
danielk19774adee202004-05-08 08:23:19 +00001349void sqlite3ErrorMsg(Parse*, const char*, ...);
1350void sqlite3Dequote(char*);
1351int sqlite3KeywordCode(const char*, int);
1352int sqlite3RunParser(Parse*, const char*, char **);
drh80242052004-06-09 00:48:12 +00001353void sqlite3FinishCoding(Parse*);
drhe4e72072004-11-23 01:47:30 +00001354Expr *sqlite3Expr(int, Expr*, Expr*, const Token*);
drh4e0cff62004-11-05 05:10:28 +00001355Expr *sqlite3RegisterExpr(Parse*,Token*);
drh91bb0ee2004-09-01 03:06:34 +00001356Expr *sqlite3ExprAnd(Expr*, Expr*);
danielk19774adee202004-05-08 08:23:19 +00001357void sqlite3ExprSpan(Expr*,Token*,Token*);
1358Expr *sqlite3ExprFunction(ExprList*, Token*);
drhfa6bc002004-09-07 16:19:52 +00001359void sqlite3ExprAssignVarNumber(Parse*, Expr*);
danielk19774adee202004-05-08 08:23:19 +00001360void sqlite3ExprDelete(Expr*);
1361ExprList *sqlite3ExprListAppend(ExprList*,Expr*,Token*);
1362void sqlite3ExprListDelete(ExprList*);
drh9bb575f2004-09-06 17:24:11 +00001363int sqlite3Init(sqlite3*, char**);
drh234c39d2004-07-24 03:30:47 +00001364int sqlite3InitCallback(void*, int, char**, char**);
danielk197791cf71b2004-06-26 06:37:06 +00001365void sqlite3Pragma(Parse*,Token*,Token*,Token*,int);
drh9bb575f2004-09-06 17:24:11 +00001366void sqlite3ResetInternalSchema(sqlite3*, int);
danielk19774adee202004-05-08 08:23:19 +00001367void sqlite3BeginParse(Parse*,int);
drh9bb575f2004-09-06 17:24:11 +00001368void sqlite3RollbackInternalChanges(sqlite3*);
1369void sqlite3CommitInternalChanges(sqlite3*);
danielk19774adee202004-05-08 08:23:19 +00001370Table *sqlite3ResultSetOfSelect(Parse*,char*,Select*);
1371void sqlite3OpenMasterTable(Vdbe *v, int);
danielk1977cbb18d22004-05-28 11:37:27 +00001372void sqlite3StartTable(Parse*,Token*,Token*,Token*,int,int);
danielk19774adee202004-05-08 08:23:19 +00001373void sqlite3AddColumn(Parse*,Token*);
1374void sqlite3AddNotNull(Parse*, int);
drh205f48e2004-11-05 00:43:11 +00001375void sqlite3AddPrimaryKey(Parse*, ExprList*, int, int);
drh487e2622005-06-25 18:42:14 +00001376void sqlite3AddColumnType(Parse*,Token*);
danielk19777977a172004-11-09 12:44:37 +00001377void sqlite3AddDefaultValue(Parse*,Expr*);
drhd3d39e92004-05-20 22:16:29 +00001378void sqlite3AddCollateType(Parse*, const char*, int);
danielk197719a8e7e2005-03-17 05:03:38 +00001379void sqlite3EndTable(Parse*,Token*,Token*,Select*);
drhb7f91642004-10-31 02:22:47 +00001380
1381#ifndef SQLITE_OMIT_VIEW
1382 void sqlite3CreateView(Parse*,Token*,Token*,Token*,Select*,int);
1383 int sqlite3ViewGetColumnNames(Parse*,Table*);
1384#else
1385# define sqlite3ViewGetColumnNames(A,B) 0
1386#endif
1387
danielk1977a8858102004-05-28 12:11:21 +00001388void sqlite3DropTable(Parse*, SrcList*, int);
drh9bb575f2004-09-06 17:24:11 +00001389void sqlite3DeleteTable(sqlite3*, Table*);
danielk19774adee202004-05-08 08:23:19 +00001390void sqlite3Insert(Parse*, SrcList*, ExprList*, Select*, IdList*, int);
1391IdList *sqlite3IdListAppend(IdList*, Token*);
1392int sqlite3IdListIndex(IdList*,const char*);
1393SrcList *sqlite3SrcListAppend(SrcList*, Token*, Token*);
1394void sqlite3SrcListAddAlias(SrcList*, Token*);
1395void sqlite3SrcListAssignCursors(Parse*, SrcList*);
1396void sqlite3IdListDelete(IdList*);
1397void sqlite3SrcListDelete(SrcList*);
danielk19770202b292004-06-09 09:55:16 +00001398void sqlite3CreateIndex(Parse*,Token*,Token*,SrcList*,ExprList*,int,Token*,
danielk1977ef2cb632004-05-29 02:37:19 +00001399 Token*);
danielk19774adee202004-05-08 08:23:19 +00001400void sqlite3DropIndex(Parse*, SrcList*);
1401void sqlite3AddKeyType(Vdbe*, ExprList*);
1402void sqlite3AddIdxKeyType(Vdbe*, Index*);
danielk1977b3bce662005-01-29 08:32:43 +00001403int sqlite3Select(Parse*, Select*, int, int, Select*, int, int*, char *aff);
danielk19774adee202004-05-08 08:23:19 +00001404Select *sqlite3SelectNew(ExprList*,SrcList*,Expr*,ExprList*,Expr*,ExprList*,
danielk1977a2dc3b12005-02-05 12:48:48 +00001405 int,Expr*,Expr*);
danielk19774adee202004-05-08 08:23:19 +00001406void sqlite3SelectDelete(Select*);
1407void sqlite3SelectUnbind(Select*);
1408Table *sqlite3SrcListLookup(Parse*, SrcList*);
1409int sqlite3IsReadOnly(Parse*, Table*, int);
drhad6d9462004-09-19 02:15:24 +00001410void sqlite3OpenTableForReading(Vdbe*, int iCur, Table*);
drhb6c29892004-11-22 19:12:19 +00001411void sqlite3OpenTable(Vdbe*, int iCur, Table*, int);
danielk19774adee202004-05-08 08:23:19 +00001412void sqlite3DeleteFrom(Parse*, SrcList*, Expr*);
1413void sqlite3Update(Parse*, SrcList*, ExprList*, Expr*, int);
drhf8db1bc2005-04-22 02:38:37 +00001414WhereInfo *sqlite3WhereBegin(Parse*, SrcList*, Expr*, ExprList**);
danielk19774adee202004-05-08 08:23:19 +00001415void sqlite3WhereEnd(WhereInfo*);
1416void sqlite3ExprCode(Parse*, Expr*);
drh25303782004-12-07 15:41:48 +00001417void sqlite3ExprCodeAndCache(Parse*, Expr*);
drhf9b596e2004-05-26 16:54:42 +00001418int sqlite3ExprCodeExprList(Parse*, ExprList*);
danielk19774adee202004-05-08 08:23:19 +00001419void sqlite3ExprIfTrue(Parse*, Expr*, int, int);
1420void sqlite3ExprIfFalse(Parse*, Expr*, int, int);
drh205f48e2004-11-05 00:43:11 +00001421void sqlite3NextedParse(Parse*, const char*, ...);
drh9bb575f2004-09-06 17:24:11 +00001422Table *sqlite3FindTable(sqlite3*,const char*, const char*);
danielk19774adee202004-05-08 08:23:19 +00001423Table *sqlite3LocateTable(Parse*,const char*, const char*);
drh9bb575f2004-09-06 17:24:11 +00001424Index *sqlite3FindIndex(sqlite3*,const char*, const char*);
1425void sqlite3UnlinkAndDeleteTable(sqlite3*,int,const char*);
1426void sqlite3UnlinkAndDeleteIndex(sqlite3*,int,const char*);
danielk19774adee202004-05-08 08:23:19 +00001427void sqlite3Vacuum(Parse*, Token*);
drh9bb575f2004-09-06 17:24:11 +00001428int sqlite3RunVacuum(char**, sqlite3*);
drha99db3b2004-06-19 14:49:12 +00001429char *sqlite3NameFromToken(Token*);
danielk19774adee202004-05-08 08:23:19 +00001430int sqlite3ExprCheck(Parse*, Expr*, int, int*);
danielk19774adee202004-05-08 08:23:19 +00001431int sqlite3ExprCompare(Expr*, Expr*);
drhcce7d172000-05-31 15:34:51 +00001432int sqliteFuncId(Token*);
danielk1977b3bce662005-01-29 08:32:43 +00001433int sqlite3ExprResolveNames(NameContext *, Expr *);
danielk1977a58fdfb2005-02-08 07:50:40 +00001434int sqlite3ExprAnalyzeAggregates(NameContext*, Expr*);
danielk19774adee202004-05-08 08:23:19 +00001435Vdbe *sqlite3GetVdbe(Parse*);
1436void sqlite3Randomness(int, void*);
drh9bb575f2004-09-06 17:24:11 +00001437void sqlite3RollbackAll(sqlite3*);
danielk19774adee202004-05-08 08:23:19 +00001438void sqlite3CodeVerifySchema(Parse*, int);
drh684917c2004-10-05 02:41:42 +00001439void sqlite3BeginTransaction(Parse*, int);
danielk19774adee202004-05-08 08:23:19 +00001440void sqlite3CommitTransaction(Parse*);
1441void sqlite3RollbackTransaction(Parse*);
1442int sqlite3ExprIsConstant(Expr*);
drheb55bd22005-06-30 17:04:21 +00001443int sqlite3ExprIsConstantOrFunction(Expr*);
danielk19774adee202004-05-08 08:23:19 +00001444int sqlite3ExprIsInteger(Expr*, int*);
1445int sqlite3IsRowid(const char*);
drh9bb575f2004-09-06 17:24:11 +00001446void sqlite3GenerateRowDelete(sqlite3*, Vdbe*, Table*, int, int);
1447void sqlite3GenerateRowIndexDelete(sqlite3*, Vdbe*, Table*, int, char*);
drh51846b52004-05-28 16:00:21 +00001448void sqlite3GenerateIndexKey(Vdbe*, Index*, int);
danielk19774adee202004-05-08 08:23:19 +00001449void sqlite3GenerateConstraintChecks(Parse*,Table*,int,char*,int,int,int,int);
1450void sqlite3CompleteInsertion(Parse*, Table*, int, char*, int, int, int);
drh290c1942004-08-21 17:54:45 +00001451void sqlite3OpenTableAndIndices(Parse*, Table*, int, int);
danielk19774adee202004-05-08 08:23:19 +00001452void sqlite3BeginWriteOperation(Parse*, int, int);
danielk19774adee202004-05-08 08:23:19 +00001453Expr *sqlite3ExprDup(Expr*);
1454void sqlite3TokenCopy(Token*, Token*);
1455ExprList *sqlite3ExprListDup(ExprList*);
1456SrcList *sqlite3SrcListDup(SrcList*);
1457IdList *sqlite3IdListDup(IdList*);
1458Select *sqlite3SelectDup(Select*);
drh9bb575f2004-09-06 17:24:11 +00001459FuncDef *sqlite3FindFunction(sqlite3*,const char*,int,int,u8,int);
1460void sqlite3RegisterBuiltinFunctions(sqlite3*);
1461void sqlite3RegisterDateTimeFunctions(sqlite3*);
1462int sqlite3SafetyOn(sqlite3*);
1463int sqlite3SafetyOff(sqlite3*);
1464int sqlite3SafetyCheck(sqlite3*);
1465void sqlite3ChangeCookie(sqlite3*, Vdbe*, int);
drhb7f91642004-10-31 02:22:47 +00001466
1467#ifndef SQLITE_OMIT_TRIGGER
1468 void sqlite3BeginTrigger(Parse*, Token*,Token*,int,int,IdList*,SrcList*,
1469 int,Expr*,int);
1470 void sqlite3FinishTrigger(Parse*, TriggerStep*, Token*);
1471 void sqlite3DropTrigger(Parse*, SrcList*);
1472 void sqlite3DropTriggerPtr(Parse*, Trigger*, int);
drhdca76842004-12-07 14:06:13 +00001473 int sqlite3TriggersExist(Parse*, Table*, int, ExprList*);
drhb7f91642004-10-31 02:22:47 +00001474 int sqlite3CodeRowTrigger(Parse*, int, ExprList*, int, Table *, int, int,
1475 int, int);
1476 void sqliteViewTriggers(Parse*, Table*, Expr*, int, ExprList*);
1477 void sqlite3DeleteTriggerStep(TriggerStep*);
1478 TriggerStep *sqlite3TriggerSelectStep(Select*);
1479 TriggerStep *sqlite3TriggerInsertStep(Token*, IdList*, ExprList*,Select*,int);
1480 TriggerStep *sqlite3TriggerUpdateStep(Token*, ExprList*, Expr*, int);
1481 TriggerStep *sqlite3TriggerDeleteStep(Token*, Expr*);
1482 void sqlite3DeleteTrigger(Trigger*);
1483 void sqlite3UnlinkAndDeleteTrigger(sqlite3*,int,const char*);
1484#else
1485# define sqlite3TriggersExist(A,B,C,D,E,F) 0
1486# define sqlite3DeleteTrigger(A)
1487# define sqlite3DropTriggerPtr(A,B,C)
1488# define sqlite3UnlinkAndDeleteTrigger(A,B,C)
1489# define sqlite3CodeRowTrigger(A,B,C,D,E,F,G,H,I) 0
1490#endif
1491
danielk19774adee202004-05-08 08:23:19 +00001492int sqlite3JoinType(Parse*, Token*, Token*, Token*);
danielk19770202b292004-06-09 09:55:16 +00001493void sqlite3CreateForeignKey(Parse*, ExprList*, Token*, ExprList*, int);
danielk19774adee202004-05-08 08:23:19 +00001494void sqlite3DeferForeignKey(Parse*, int);
drhed6c8672003-01-12 18:02:16 +00001495#ifndef SQLITE_OMIT_AUTHORIZATION
danielk19774adee202004-05-08 08:23:19 +00001496 void sqlite3AuthRead(Parse*,Expr*,SrcList*);
1497 int sqlite3AuthCheck(Parse*,int, const char*, const char*, const char*);
1498 void sqlite3AuthContextPush(Parse*, AuthContext*, const char*);
1499 void sqlite3AuthContextPop(AuthContext*);
drhed6c8672003-01-12 18:02:16 +00001500#else
danielk19774adee202004-05-08 08:23:19 +00001501# define sqlite3AuthRead(a,b,c)
1502# define sqlite3AuthCheck(a,b,c,d,e) SQLITE_OK
1503# define sqlite3AuthContextPush(a,b,c)
1504# define sqlite3AuthContextPop(a) ((void)(a))
drhed6c8672003-01-12 18:02:16 +00001505#endif
drh25d65432004-07-22 15:02:25 +00001506void sqlite3Attach(Parse*, Token*, Token*, int, Token*);
danielk19774adee202004-05-08 08:23:19 +00001507void sqlite3Detach(Parse*, Token*);
drh9bb575f2004-09-06 17:24:11 +00001508int sqlite3BtreeFactory(const sqlite3 *db, const char *zFilename,
drh90f5ecb2004-07-22 01:19:35 +00001509 int omitJournal, int nCache, Btree **ppBtree);
danielk19774adee202004-05-08 08:23:19 +00001510int sqlite3FixInit(DbFixer*, Parse*, int, const char*, const Token*);
1511int sqlite3FixSrcList(DbFixer*, SrcList*);
1512int sqlite3FixSelect(DbFixer*, Select*);
1513int sqlite3FixExpr(DbFixer*, Expr*);
1514int sqlite3FixExprList(DbFixer*, ExprList*);
1515int sqlite3FixTriggerStep(DbFixer*, TriggerStep*);
drh487e2622005-06-25 18:42:14 +00001516int sqlite3AtoF(const char *z, double*);
danielk19776f8a5032004-05-10 10:34:51 +00001517char *sqlite3_snprintf(int,char*,const char*,...);
drhfec19aa2004-05-19 20:41:03 +00001518int sqlite3GetInt32(const char *, int*);
drhfec19aa2004-05-19 20:41:03 +00001519int sqlite3FitsIn64Bits(const char *);
danielk19776622cce2004-05-20 11:00:52 +00001520int sqlite3utf16ByteLen(const void *pData, int nChar);
1521int sqlite3utf8CharLen(const char *pData, int nByte);
drh4e5ffc52004-08-31 00:52:37 +00001522int sqlite3ReadUtf8(const unsigned char *);
danielk1977192ac1d2004-05-10 07:17:30 +00001523int sqlite3PutVarint(unsigned char *, u64);
danielk197790e4d952004-05-10 10:05:53 +00001524int sqlite3GetVarint(const unsigned char *, u64 *);
drh6d2fb152004-05-14 16:50:06 +00001525int sqlite3GetVarint32(const unsigned char *, u32 *);
danielk1977192ac1d2004-05-10 07:17:30 +00001526int sqlite3VarintLen(u64 v);
danielk1977a37cdde2004-05-16 11:15:36 +00001527void sqlite3IndexAffinityStr(Vdbe *, Index *);
1528void sqlite3TableAffinityStr(Vdbe *, Table *);
danielk1977e014a832004-05-17 10:48:57 +00001529char sqlite3CompareAffinity(Expr *pExpr, char aff2);
danielk1977e014a832004-05-17 10:48:57 +00001530int sqlite3IndexAffinityOk(Expr *pExpr, char idx_affinity);
danielk1977bf3b7212004-05-18 10:06:24 +00001531char sqlite3ExprAffinity(Expr *pExpr);
drheb2e1762004-05-27 01:53:56 +00001532int sqlite3atoi64(const char*, i64*);
drh9bb575f2004-09-06 17:24:11 +00001533void sqlite3Error(sqlite3*, int, const char*,...);
danielk1977cbb18d22004-05-28 11:37:27 +00001534void *sqlite3HexToBlob(const char *z);
danielk1977ef2cb632004-05-29 02:37:19 +00001535int sqlite3TwoPartName(Parse *, Token *, Token *, Token **);
danielk1977f20b21c2004-05-31 23:56:42 +00001536const char *sqlite3ErrStr(int);
danielk1977d02eb1f2004-06-06 09:44:03 +00001537int sqlite3ReadUniChar(const char *zStr, int *pOffset, u8 *pEnc, int fold);
danielk19778a414492004-06-29 08:59:35 +00001538int sqlite3ReadSchema(Parse *pParse);
drh9bb575f2004-09-06 17:24:11 +00001539CollSeq *sqlite3FindCollSeq(sqlite3*,u8 enc, const char *,int,int);
danielk19770202b292004-06-09 09:55:16 +00001540CollSeq *sqlite3LocateCollSeq(Parse *pParse, const char *zName, int nName);
danielk19777cedc8d2004-06-10 10:50:08 +00001541CollSeq *sqlite3ExprCollSeq(Parse *pParse, Expr *pExpr);
1542int sqlite3CheckCollSeq(Parse *, CollSeq *);
1543int sqlite3CheckIndexCollSeq(Parse *, Index *);
danielk1977d8123362004-06-12 09:25:12 +00001544int sqlite3CheckObjectName(Parse *, const char *);
danielk1977b28af712004-06-21 06:50:26 +00001545void sqlite3VdbeSetChanges(sqlite3 *, int);
danielk1977f4618892004-06-28 13:09:11 +00001546void sqlite3utf16Substr(sqlite3_context *,int,sqlite3_value **);
danielk19774e6af132004-06-10 14:01:08 +00001547
1548const void *sqlite3ValueText(sqlite3_value*, u8);
1549int sqlite3ValueBytes(sqlite3_value*, u8);
danielk1977bfd6cce2004-06-18 04:24:54 +00001550void sqlite3ValueSetStr(sqlite3_value*, int, const void *,u8, void(*)(void*));
danielk19774e6af132004-06-10 14:01:08 +00001551void sqlite3ValueFree(sqlite3_value*);
1552sqlite3_value *sqlite3ValueNew();
drh9bb575f2004-09-06 17:24:11 +00001553sqlite3_value *sqlite3GetTransientValue(sqlite3*db);
danielk1977aee18ef2005-03-09 12:26:50 +00001554int sqlite3ValueFromExpr(Expr *, u8, u8, sqlite3_value **);
1555void sqlite3ValueApplyAffinity(sqlite3_value *, u8, u8);
drh4e5ffc52004-08-31 00:52:37 +00001556extern const unsigned char sqlite3UpperToLower[];
danielk1977a0bf2652004-11-04 14:30:04 +00001557void sqlite3RootPageMoved(Db*, int, int);
drh4343fea2004-11-05 23:46:15 +00001558void sqlite3Reindex(Parse*, Token*, Token*);
drh1f01ec12005-02-15 21:36:18 +00001559void sqlite3AlterFunctions(sqlite3*);
danielk19779fd2a9a2004-11-12 13:42:30 +00001560void sqlite3AlterRenameTable(Parse*, SrcList*, Token*);
1561int sqlite3GetToken(const unsigned char *, int *);
drh2958a4e2004-11-12 03:56:15 +00001562void sqlite3NestedParse(Parse*, const char*, ...);
drhd89bd002005-01-22 03:03:54 +00001563void sqlite3ExpirePreparedStatements(sqlite3*);
danielk1977b3bce662005-01-29 08:32:43 +00001564void sqlite3CodeSubselect(Parse *, Expr *);
1565int sqlite3SelectResolve(Parse *, Select *, NameContext *);
danielk1977aee18ef2005-03-09 12:26:50 +00001566void sqlite3ColumnDefault(Vdbe *, Table *, int);
danielk197719a8e7e2005-03-17 05:03:38 +00001567void sqlite3AlterFinishAddColumn(Parse *, Token *);
1568void sqlite3AlterBeginAddColumn(Parse *, SrcList *);
drh2e66f0b2005-04-28 17:18:48 +00001569const char *sqlite3TestErrorName(int);
danielk19774dade032005-05-25 10:45:10 +00001570CollSeq *sqlite3GetCollSeq(sqlite3*, CollSeq *, const char *, int);
drh487e2622005-06-25 18:42:14 +00001571char sqlite3AffinityType(const Token*);
drh9f18e8a2005-07-08 12:13:04 +00001572void sqlite3Analyze(Parse*, Token*, Token*);
drha4afb652005-07-09 02:16:02 +00001573int sqlite3InvokeBusyHandler(BusyHandler*);
drhff2d5ea2005-07-23 00:41:48 +00001574int sqlite3FindDb(sqlite3*, Token*);
drh497e4462005-07-23 03:18:40 +00001575void sqlite3AnalysisLoad(sqlite3*,int iDB);
drh51147ba2005-07-23 22:59:55 +00001576void sqlite3DefaultRowEst(Index*);
danielk1977e3026632004-06-22 11:29:02 +00001577
danielk1977fd9a0a42005-05-24 12:01:00 +00001578#ifdef SQLITE_SSE
1579#include "sseInt.h"
1580#endif
1581
danielk1977e3026632004-06-22 11:29:02 +00001582#endif