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drh75897232000-05-29 14:26:00 +00001/*
drh1d1982c2017-06-29 17:27:04 +00002** 2001-09-15
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*************************************************************************
drhb19a2bc2001-09-16 00:13:26 +000012** This header file defines the interface that the SQLite library
drh6ed48bf2007-06-14 20:57:18 +000013** presents to client programs. If a C-function, structure, datatype,
14** or constant definition does not appear in this file, then it is
15** not a published API of SQLite, is subject to change without
16** notice, and should not be referenced by programs that use SQLite.
drh75897232000-05-29 14:26:00 +000017**
drh6ed48bf2007-06-14 20:57:18 +000018** Some of the definitions that are in this file are marked as
19** "experimental". Experimental interfaces are normally new
mihailima3f64902008-06-21 13:35:56 +000020** features recently added to SQLite. We do not anticipate changes
shane7c7c3112009-08-17 15:31:23 +000021** to experimental interfaces but reserve the right to make minor changes
22** if experience from use "in the wild" suggest such changes are prudent.
drh6ed48bf2007-06-14 20:57:18 +000023**
24** The official C-language API documentation for SQLite is derived
25** from comments in this file. This file is the authoritative source
drhc056e4b2015-06-15 10:49:01 +000026** on how SQLite interfaces are supposed to operate.
drh6ed48bf2007-06-14 20:57:18 +000027**
28** The name of this file under configuration management is "sqlite.h.in".
29** The makefile makes some minor changes to this file (such as inserting
30** the version number) and changes its name to "sqlite3.h" as
31** part of the build process.
drh75897232000-05-29 14:26:00 +000032*/
drh43f58d62016-07-09 16:14:45 +000033#ifndef SQLITE3_H
34#define SQLITE3_H
drha18c5682000-10-08 22:20:57 +000035#include <stdarg.h> /* Needed for the definition of va_list */
drh75897232000-05-29 14:26:00 +000036
37/*
drh382c0242001-10-06 16:33:02 +000038** Make sure we can call this stuff from C++.
39*/
40#ifdef __cplusplus
41extern "C" {
42#endif
43
drh6d2069d2007-08-14 01:58:53 +000044
drh382c0242001-10-06 16:33:02 +000045/*
drh790fa6e2015-03-24 21:54:42 +000046** Provide the ability to override linkage features of the interface.
drh73be5012007-08-08 12:11:21 +000047*/
48#ifndef SQLITE_EXTERN
49# define SQLITE_EXTERN extern
50#endif
drh790fa6e2015-03-24 21:54:42 +000051#ifndef SQLITE_API
52# define SQLITE_API
53#endif
mistachkin44723ce2015-03-21 02:22:37 +000054#ifndef SQLITE_CDECL
55# define SQLITE_CDECL
56#endif
mistachkin69def7f2016-07-28 04:14:37 +000057#ifndef SQLITE_APICALL
58# define SQLITE_APICALL
drh790fa6e2015-03-24 21:54:42 +000059#endif
drh4d6618f2008-09-22 17:54:46 +000060#ifndef SQLITE_STDCALL
mistachkin69def7f2016-07-28 04:14:37 +000061# define SQLITE_STDCALL SQLITE_APICALL
62#endif
63#ifndef SQLITE_CALLBACK
64# define SQLITE_CALLBACK
65#endif
66#ifndef SQLITE_SYSAPI
67# define SQLITE_SYSAPI
drh4d6618f2008-09-22 17:54:46 +000068#endif
drh4d6618f2008-09-22 17:54:46 +000069
70/*
drh4d6618f2008-09-22 17:54:46 +000071** These no-op macros are used in front of interfaces to mark those
72** interfaces as either deprecated or experimental. New applications
73** should not use deprecated interfaces - they are supported for backwards
74** compatibility only. Application writers should be aware that
75** experimental interfaces are subject to change in point releases.
76**
77** These macros used to resolve to various kinds of compiler magic that
78** would generate warning messages when they were used. But that
79** compiler magic ended up generating such a flurry of bug reports
80** that we have taken it all out and gone back to using simple
81** noop macros.
shanea79c3cc2008-08-11 17:27:01 +000082*/
drh4d6618f2008-09-22 17:54:46 +000083#define SQLITE_DEPRECATED
84#define SQLITE_EXPERIMENTAL
shanea79c3cc2008-08-11 17:27:01 +000085
86/*
mihailim362cc832008-06-21 06:16:42 +000087** Ensure these symbols were not defined by some previous header file.
drhb86ccfb2003-01-28 23:13:10 +000088*/
drh1e284f42004-10-06 15:52:01 +000089#ifdef SQLITE_VERSION
90# undef SQLITE_VERSION
drh1e284f42004-10-06 15:52:01 +000091#endif
drh6ed48bf2007-06-14 20:57:18 +000092#ifdef SQLITE_VERSION_NUMBER
93# undef SQLITE_VERSION_NUMBER
94#endif
danielk197799ba19e2005-02-05 07:33:34 +000095
96/*
drh1e15c032009-12-08 15:16:54 +000097** CAPI3REF: Compile-Time Library Version Numbers
drh6ed48bf2007-06-14 20:57:18 +000098**
drh1e15c032009-12-08 15:16:54 +000099** ^(The [SQLITE_VERSION] C preprocessor macro in the sqlite3.h header
100** evaluates to a string literal that is the SQLite version in the
101** format "X.Y.Z" where X is the major version number (always 3 for
102** SQLite3) and Y is the minor version number and Z is the release number.)^
103** ^(The [SQLITE_VERSION_NUMBER] C preprocessor macro resolves to an integer
104** with the value (X*1000000 + Y*1000 + Z) where X, Y, and Z are the same
105** numbers used in [SQLITE_VERSION].)^
106** The SQLITE_VERSION_NUMBER for any given release of SQLite will also
107** be larger than the release from which it is derived. Either Y will
108** be held constant and Z will be incremented or else Y will be incremented
109** and Z will be reset to zero.
drh6aa5f152009-08-19 15:57:07 +0000110**
drh481fd502016-09-14 18:56:20 +0000111** Since [version 3.6.18] ([dateof:3.6.18]),
112** SQLite source code has been stored in the
drh1e15c032009-12-08 15:16:54 +0000113** <a href="http://www.fossil-scm.org/">Fossil configuration management
drh9b8d0272010-08-09 15:44:21 +0000114** system</a>. ^The SQLITE_SOURCE_ID macro evaluates to
drh1e15c032009-12-08 15:16:54 +0000115** a string which identifies a particular check-in of SQLite
116** within its configuration management system. ^The SQLITE_SOURCE_ID
drhd3d52ef2017-03-20 13:03:39 +0000117** string contains the date and time of the check-in (UTC) and a SHA1
drh489a2242017-08-22 21:23:02 +0000118** or SHA3-256 hash of the entire source tree. If the source code has
119** been edited in any way since it was last checked in, then the last
120** four hexadecimal digits of the hash may be modified.
drh47baebc2009-08-14 16:01:24 +0000121**
drh6aa5f152009-08-19 15:57:07 +0000122** See also: [sqlite3_libversion()],
drh4e0b31c2009-09-02 19:04:24 +0000123** [sqlite3_libversion_number()], [sqlite3_sourceid()],
124** [sqlite_version()] and [sqlite_source_id()].
danielk197799ba19e2005-02-05 07:33:34 +0000125*/
drh47baebc2009-08-14 16:01:24 +0000126#define SQLITE_VERSION "--VERS--"
127#define SQLITE_VERSION_NUMBER --VERSION-NUMBER--
128#define SQLITE_SOURCE_ID "--SOURCE-ID--"
drhb86ccfb2003-01-28 23:13:10 +0000129
130/*
drh1e15c032009-12-08 15:16:54 +0000131** CAPI3REF: Run-Time Library Version Numbers
drh77233712016-11-09 00:57:27 +0000132** KEYWORDS: sqlite3_version sqlite3_sourceid
drh6ed48bf2007-06-14 20:57:18 +0000133**
drh47baebc2009-08-14 16:01:24 +0000134** These interfaces provide the same information as the [SQLITE_VERSION],
drh1e15c032009-12-08 15:16:54 +0000135** [SQLITE_VERSION_NUMBER], and [SQLITE_SOURCE_ID] C preprocessor macros
drhd68eee02009-12-11 03:44:18 +0000136** but are associated with the library instead of the header file. ^(Cautious
drh4e0b31c2009-09-02 19:04:24 +0000137** programmers might include assert() statements in their application to
138** verify that values returned by these interfaces match the macros in
drh2e25a002015-09-12 19:27:41 +0000139** the header, and thus ensure that the application is
drh6aa5f152009-08-19 15:57:07 +0000140** compiled with matching library and header files.
141**
142** <blockquote><pre>
143** assert( sqlite3_libversion_number()==SQLITE_VERSION_NUMBER );
drh489a2242017-08-22 21:23:02 +0000144** assert( strncmp(sqlite3_sourceid(),SQLITE_SOURCE_ID,80)==0 );
drh1e15c032009-12-08 15:16:54 +0000145** assert( strcmp(sqlite3_libversion(),SQLITE_VERSION)==0 );
drhd68eee02009-12-11 03:44:18 +0000146** </pre></blockquote>)^
drh6ed48bf2007-06-14 20:57:18 +0000147**
drh1e15c032009-12-08 15:16:54 +0000148** ^The sqlite3_version[] string constant contains the text of [SQLITE_VERSION]
149** macro. ^The sqlite3_libversion() function returns a pointer to the
150** to the sqlite3_version[] string constant. The sqlite3_libversion()
151** function is provided for use in DLLs since DLL users usually do not have
152** direct access to string constants within the DLL. ^The
153** sqlite3_libversion_number() function returns an integer equal to
drh489a2242017-08-22 21:23:02 +0000154** [SQLITE_VERSION_NUMBER]. ^(The sqlite3_sourceid() function returns
shanehbdea6d12010-02-23 04:19:54 +0000155** a pointer to a string constant whose value is the same as the
drh489a2242017-08-22 21:23:02 +0000156** [SQLITE_SOURCE_ID] C preprocessor macro. Except if SQLite is built
157** using an edited copy of [the amalgamation], then the last four characters
158** of the hash might be different from [SQLITE_SOURCE_ID].)^
drh33c1be32008-01-30 16:16:14 +0000159**
drh4e0b31c2009-09-02 19:04:24 +0000160** See also: [sqlite_version()] and [sqlite_source_id()].
drhb217a572000-08-22 13:40:18 +0000161*/
drh73be5012007-08-08 12:11:21 +0000162SQLITE_EXTERN const char sqlite3_version[];
drha3f70cb2004-09-30 14:24:50 +0000163const char *sqlite3_libversion(void);
drh47baebc2009-08-14 16:01:24 +0000164const char *sqlite3_sourceid(void);
danielk197799ba19e2005-02-05 07:33:34 +0000165int sqlite3_libversion_number(void);
166
167/*
shanehdc97a8c2010-02-23 20:08:35 +0000168** CAPI3REF: Run-Time Library Compilation Options Diagnostics
shanehdc97a8c2010-02-23 20:08:35 +0000169**
170** ^The sqlite3_compileoption_used() function returns 0 or 1
171** indicating whether the specified option was defined at
172** compile time. ^The SQLITE_ prefix may be omitted from the
173** option name passed to sqlite3_compileoption_used().
174**
drh9b8d0272010-08-09 15:44:21 +0000175** ^The sqlite3_compileoption_get() function allows iterating
shanehdc97a8c2010-02-23 20:08:35 +0000176** over the list of options that were defined at compile time by
177** returning the N-th compile time option string. ^If N is out of range,
178** sqlite3_compileoption_get() returns a NULL pointer. ^The SQLITE_
179** prefix is omitted from any strings returned by
180** sqlite3_compileoption_get().
181**
182** ^Support for the diagnostic functions sqlite3_compileoption_used()
drh9b8d0272010-08-09 15:44:21 +0000183** and sqlite3_compileoption_get() may be omitted by specifying the
drh71caabf2010-02-26 15:39:24 +0000184** [SQLITE_OMIT_COMPILEOPTION_DIAGS] option at compile time.
shanehdc97a8c2010-02-23 20:08:35 +0000185**
drh71caabf2010-02-26 15:39:24 +0000186** See also: SQL functions [sqlite_compileoption_used()] and
187** [sqlite_compileoption_get()] and the [compile_options pragma].
shanehdc97a8c2010-02-23 20:08:35 +0000188*/
dan98f0c362010-03-22 04:32:13 +0000189#ifndef SQLITE_OMIT_COMPILEOPTION_DIAGS
shanehdc97a8c2010-02-23 20:08:35 +0000190int sqlite3_compileoption_used(const char *zOptName);
drh380083c2010-02-23 20:32:15 +0000191const char *sqlite3_compileoption_get(int N);
dan98f0c362010-03-22 04:32:13 +0000192#endif
drhefad9992004-06-22 12:13:55 +0000193
drh75897232000-05-29 14:26:00 +0000194/*
drhd68eee02009-12-11 03:44:18 +0000195** CAPI3REF: Test To See If The Library Is Threadsafe
196**
197** ^The sqlite3_threadsafe() function returns zero if and only if
drhb8a45bb2011-12-31 21:51:55 +0000198** SQLite was compiled with mutexing code omitted due to the
drhd68eee02009-12-11 03:44:18 +0000199** [SQLITE_THREADSAFE] compile-time option being set to 0.
drhb67e8bf2007-08-30 20:09:48 +0000200**
drh33c1be32008-01-30 16:16:14 +0000201** SQLite can be compiled with or without mutexes. When
drh6aa5f152009-08-19 15:57:07 +0000202** the [SQLITE_THREADSAFE] C preprocessor macro is 1 or 2, mutexes
drhafacce02008-09-02 21:35:03 +0000203** are enabled and SQLite is threadsafe. When the
204** [SQLITE_THREADSAFE] macro is 0,
drh33c1be32008-01-30 16:16:14 +0000205** the mutexes are omitted. Without the mutexes, it is not safe
mihailim362cc832008-06-21 06:16:42 +0000206** to use SQLite concurrently from more than one thread.
drhb67e8bf2007-08-30 20:09:48 +0000207**
mihailim362cc832008-06-21 06:16:42 +0000208** Enabling mutexes incurs a measurable performance penalty.
drh33c1be32008-01-30 16:16:14 +0000209** So if speed is of utmost importance, it makes sense to disable
210** the mutexes. But for maximum safety, mutexes should be enabled.
drhd68eee02009-12-11 03:44:18 +0000211** ^The default behavior is for mutexes to be enabled.
drh33c1be32008-01-30 16:16:14 +0000212**
drh6aa5f152009-08-19 15:57:07 +0000213** This interface can be used by an application to make sure that the
drh33c1be32008-01-30 16:16:14 +0000214** version of SQLite that it is linking against was compiled with
drh4766b292008-06-26 02:53:02 +0000215** the desired setting of the [SQLITE_THREADSAFE] macro.
216**
217** This interface only reports on the compile-time mutex setting
218** of the [SQLITE_THREADSAFE] flag. If SQLite is compiled with
drhd68eee02009-12-11 03:44:18 +0000219** SQLITE_THREADSAFE=1 or =2 then mutexes are enabled by default but
drh4766b292008-06-26 02:53:02 +0000220** can be fully or partially disabled using a call to [sqlite3_config()]
221** with the verbs [SQLITE_CONFIG_SINGLETHREAD], [SQLITE_CONFIG_MULTITHREAD],
drh0a3520c2014-12-11 15:27:04 +0000222** or [SQLITE_CONFIG_SERIALIZED]. ^(The return value of the
drhd68eee02009-12-11 03:44:18 +0000223** sqlite3_threadsafe() function shows only the compile-time setting of
224** thread safety, not any run-time changes to that setting made by
225** sqlite3_config(). In other words, the return value from sqlite3_threadsafe()
226** is unchanged by calls to sqlite3_config().)^
drh33c1be32008-01-30 16:16:14 +0000227**
drhafacce02008-09-02 21:35:03 +0000228** See the [threading mode] documentation for additional information.
drhb67e8bf2007-08-30 20:09:48 +0000229*/
230int sqlite3_threadsafe(void);
231
232/*
drhd68eee02009-12-11 03:44:18 +0000233** CAPI3REF: Database Connection Handle
drha06f17f2008-05-11 11:07:06 +0000234** KEYWORDS: {database connection} {database connections}
drh6ed48bf2007-06-14 20:57:18 +0000235**
mihailim362cc832008-06-21 06:16:42 +0000236** Each open SQLite database is represented by a pointer to an instance of
237** the opaque structure named "sqlite3". It is useful to think of an sqlite3
drh8bacf972007-08-25 16:21:29 +0000238** pointer as an object. The [sqlite3_open()], [sqlite3_open16()], and
mihailim362cc832008-06-21 06:16:42 +0000239** [sqlite3_open_v2()] interfaces are its constructors, and [sqlite3_close()]
drh167cd6a2012-06-02 17:09:46 +0000240** and [sqlite3_close_v2()] are its destructors. There are many other
241** interfaces (such as
mihailim362cc832008-06-21 06:16:42 +0000242** [sqlite3_prepare_v2()], [sqlite3_create_function()], and
243** [sqlite3_busy_timeout()] to name but three) that are methods on an
244** sqlite3 object.
drh75897232000-05-29 14:26:00 +0000245*/
246typedef struct sqlite3 sqlite3;
247
drh75897232000-05-29 14:26:00 +0000248/*
drhd68eee02009-12-11 03:44:18 +0000249** CAPI3REF: 64-Bit Integer Types
drh33c1be32008-01-30 16:16:14 +0000250** KEYWORDS: sqlite_int64 sqlite_uint64
drh6ed48bf2007-06-14 20:57:18 +0000251**
drh33c1be32008-01-30 16:16:14 +0000252** Because there is no cross-platform way to specify 64-bit integer types
drhfddfa2d2007-12-05 18:05:16 +0000253** SQLite includes typedefs for 64-bit signed and unsigned integers.
drh6ed48bf2007-06-14 20:57:18 +0000254**
mihailim362cc832008-06-21 06:16:42 +0000255** The sqlite3_int64 and sqlite3_uint64 are the preferred type definitions.
256** The sqlite_int64 and sqlite_uint64 types are supported for backwards
257** compatibility only.
drh33c1be32008-01-30 16:16:14 +0000258**
drhd68eee02009-12-11 03:44:18 +0000259** ^The sqlite3_int64 and sqlite_int64 types can store integer values
260** between -9223372036854775808 and +9223372036854775807 inclusive. ^The
261** sqlite3_uint64 and sqlite_uint64 types can store integer values
262** between 0 and +18446744073709551615 inclusive.
drh75897232000-05-29 14:26:00 +0000263*/
drh27436af2006-03-28 23:57:17 +0000264#ifdef SQLITE_INT64_TYPE
drh9b8f4472006-04-04 01:54:55 +0000265 typedef SQLITE_INT64_TYPE sqlite_int64;
drhf4e994b2017-01-09 13:43:09 +0000266# ifdef SQLITE_UINT64_TYPE
267 typedef SQLITE_UINT64_TYPE sqlite_uint64;
268# else
269 typedef unsigned SQLITE_INT64_TYPE sqlite_uint64;
270# endif
drh27436af2006-03-28 23:57:17 +0000271#elif defined(_MSC_VER) || defined(__BORLANDC__)
drh75897232000-05-29 14:26:00 +0000272 typedef __int64 sqlite_int64;
273 typedef unsigned __int64 sqlite_uint64;
274#else
275 typedef long long int sqlite_int64;
276 typedef unsigned long long int sqlite_uint64;
277#endif
drh6d2069d2007-08-14 01:58:53 +0000278typedef sqlite_int64 sqlite3_int64;
279typedef sqlite_uint64 sqlite3_uint64;
drh75897232000-05-29 14:26:00 +0000280
drhb37df7b2005-10-13 02:09:49 +0000281/*
282** If compiling for a processor that lacks floating point support,
mihailim362cc832008-06-21 06:16:42 +0000283** substitute integer for floating-point.
drhb37df7b2005-10-13 02:09:49 +0000284*/
285#ifdef SQLITE_OMIT_FLOATING_POINT
drh6d2069d2007-08-14 01:58:53 +0000286# define double sqlite3_int64
drhb37df7b2005-10-13 02:09:49 +0000287#endif
drh75897232000-05-29 14:26:00 +0000288
289/*
drhd68eee02009-12-11 03:44:18 +0000290** CAPI3REF: Closing A Database Connection
drhd9a0a9a2015-04-14 15:14:06 +0000291** DESTRUCTOR: sqlite3
drh75897232000-05-29 14:26:00 +0000292**
drh167cd6a2012-06-02 17:09:46 +0000293** ^The sqlite3_close() and sqlite3_close_v2() routines are destructors
294** for the [sqlite3] object.
drh1d8ba022014-08-08 12:51:42 +0000295** ^Calls to sqlite3_close() and sqlite3_close_v2() return [SQLITE_OK] if
drh167cd6a2012-06-02 17:09:46 +0000296** the [sqlite3] object is successfully destroyed and all associated
297** resources are deallocated.
drh33c1be32008-01-30 16:16:14 +0000298**
drh167cd6a2012-06-02 17:09:46 +0000299** ^If the database connection is associated with unfinalized prepared
300** statements or unfinished sqlite3_backup objects then sqlite3_close()
301** will leave the database connection open and return [SQLITE_BUSY].
302** ^If sqlite3_close_v2() is called with unfinalized prepared statements
drhddb17ca2014-08-11 15:54:11 +0000303** and/or unfinished sqlite3_backups, then the database connection becomes
drh167cd6a2012-06-02 17:09:46 +0000304** an unusable "zombie" which will automatically be deallocated when the
305** last prepared statement is finalized or the last sqlite3_backup is
306** finished. The sqlite3_close_v2() interface is intended for use with
307** host languages that are garbage collected, and where the order in which
308** destructors are called is arbitrary.
drh33c1be32008-01-30 16:16:14 +0000309**
drh4245c402012-06-02 14:32:21 +0000310** Applications should [sqlite3_finalize | finalize] all [prepared statements],
311** [sqlite3_blob_close | close] all [BLOB handles], and
312** [sqlite3_backup_finish | finish] all [sqlite3_backup] objects associated
313** with the [sqlite3] object prior to attempting to close the object. ^If
mistachkinf5840162013-03-12 20:58:21 +0000314** sqlite3_close_v2() is called on a [database connection] that still has
drh4245c402012-06-02 14:32:21 +0000315** outstanding [prepared statements], [BLOB handles], and/or
drhddb17ca2014-08-11 15:54:11 +0000316** [sqlite3_backup] objects then it returns [SQLITE_OK] and the deallocation
drh4245c402012-06-02 14:32:21 +0000317** of resources is deferred until all [prepared statements], [BLOB handles],
318** and [sqlite3_backup] objects are also destroyed.
drh55b0cf02008-06-19 17:54:33 +0000319**
drh167cd6a2012-06-02 17:09:46 +0000320** ^If an [sqlite3] object is destroyed while a transaction is open,
drh55b0cf02008-06-19 17:54:33 +0000321** the transaction is automatically rolled back.
drh33c1be32008-01-30 16:16:14 +0000322**
drh167cd6a2012-06-02 17:09:46 +0000323** The C parameter to [sqlite3_close(C)] and [sqlite3_close_v2(C)]
324** must be either a NULL
drh8b39db12009-02-18 18:37:58 +0000325** pointer or an [sqlite3] object pointer obtained
326** from [sqlite3_open()], [sqlite3_open16()], or
327** [sqlite3_open_v2()], and not previously closed.
drh167cd6a2012-06-02 17:09:46 +0000328** ^Calling sqlite3_close() or sqlite3_close_v2() with a NULL pointer
329** argument is a harmless no-op.
drh75897232000-05-29 14:26:00 +0000330*/
drh167cd6a2012-06-02 17:09:46 +0000331int sqlite3_close(sqlite3*);
332int sqlite3_close_v2(sqlite3*);
drh75897232000-05-29 14:26:00 +0000333
334/*
335** The type for a callback function.
drh6ed48bf2007-06-14 20:57:18 +0000336** This is legacy and deprecated. It is included for historical
337** compatibility and is not documented.
drh75897232000-05-29 14:26:00 +0000338*/
drh12057d52004-09-06 17:34:12 +0000339typedef int (*sqlite3_callback)(void*,int,char**, char**);
drh75897232000-05-29 14:26:00 +0000340
341/*
drhd68eee02009-12-11 03:44:18 +0000342** CAPI3REF: One-Step Query Execution Interface
drhd9a0a9a2015-04-14 15:14:06 +0000343** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +0000344**
drhd68eee02009-12-11 03:44:18 +0000345** The sqlite3_exec() interface is a convenience wrapper around
346** [sqlite3_prepare_v2()], [sqlite3_step()], and [sqlite3_finalize()],
347** that allows an application to run multiple statements of SQL
348** without having to use a lot of C code.
drh75897232000-05-29 14:26:00 +0000349**
drhd68eee02009-12-11 03:44:18 +0000350** ^The sqlite3_exec() interface runs zero or more UTF-8 encoded,
351** semicolon-separate SQL statements passed into its 2nd argument,
352** in the context of the [database connection] passed in as its 1st
353** argument. ^If the callback function of the 3rd argument to
354** sqlite3_exec() is not NULL, then it is invoked for each result row
355** coming out of the evaluated SQL statements. ^The 4th argument to
drh8a17be02011-06-20 20:39:12 +0000356** sqlite3_exec() is relayed through to the 1st argument of each
drhd68eee02009-12-11 03:44:18 +0000357** callback invocation. ^If the callback pointer to sqlite3_exec()
358** is NULL, then no callback is ever invoked and result rows are
359** ignored.
drh35c61902008-05-20 15:44:30 +0000360**
drhd68eee02009-12-11 03:44:18 +0000361** ^If an error occurs while evaluating the SQL statements passed into
362** sqlite3_exec(), then execution of the current statement stops and
363** subsequent statements are skipped. ^If the 5th parameter to sqlite3_exec()
364** is not NULL then any error message is written into memory obtained
365** from [sqlite3_malloc()] and passed back through the 5th parameter.
366** To avoid memory leaks, the application should invoke [sqlite3_free()]
367** on error message strings returned through the 5th parameter of
drhaa622c12016-02-12 17:30:39 +0000368** sqlite3_exec() after the error message string is no longer needed.
drhd68eee02009-12-11 03:44:18 +0000369** ^If the 5th parameter to sqlite3_exec() is not NULL and no errors
370** occur, then sqlite3_exec() sets the pointer in its 5th parameter to
371** NULL before returning.
drh35c61902008-05-20 15:44:30 +0000372**
drhd68eee02009-12-11 03:44:18 +0000373** ^If an sqlite3_exec() callback returns non-zero, the sqlite3_exec()
374** routine returns SQLITE_ABORT without invoking the callback again and
375** without running any subsequent SQL statements.
drh75897232000-05-29 14:26:00 +0000376**
drhd68eee02009-12-11 03:44:18 +0000377** ^The 2nd argument to the sqlite3_exec() callback function is the
378** number of columns in the result. ^The 3rd argument to the sqlite3_exec()
379** callback is an array of pointers to strings obtained as if from
380** [sqlite3_column_text()], one for each column. ^If an element of a
381** result row is NULL then the corresponding string pointer for the
382** sqlite3_exec() callback is a NULL pointer. ^The 4th argument to the
383** sqlite3_exec() callback is an array of pointers to strings where each
384** entry represents the name of corresponding result column as obtained
385** from [sqlite3_column_name()].
mihailima3f64902008-06-21 13:35:56 +0000386**
drhd68eee02009-12-11 03:44:18 +0000387** ^If the 2nd parameter to sqlite3_exec() is a NULL pointer, a pointer
388** to an empty string, or a pointer that contains only whitespace and/or
389** SQL comments, then no SQL statements are evaluated and the database
390** is not changed.
drh75897232000-05-29 14:26:00 +0000391**
drhd68eee02009-12-11 03:44:18 +0000392** Restrictions:
drh75897232000-05-29 14:26:00 +0000393**
drhd68eee02009-12-11 03:44:18 +0000394** <ul>
drh2e25a002015-09-12 19:27:41 +0000395** <li> The application must ensure that the 1st parameter to sqlite3_exec()
drhd68eee02009-12-11 03:44:18 +0000396** is a valid and open [database connection].
drh2365bac2013-11-18 18:48:50 +0000397** <li> The application must not close the [database connection] specified by
drhd68eee02009-12-11 03:44:18 +0000398** the 1st parameter to sqlite3_exec() while sqlite3_exec() is running.
399** <li> The application must not modify the SQL statement text passed into
400** the 2nd parameter of sqlite3_exec() while sqlite3_exec() is running.
401** </ul>
drh75897232000-05-29 14:26:00 +0000402*/
danielk19776f8a5032004-05-10 10:34:51 +0000403int sqlite3_exec(
drh6ed48bf2007-06-14 20:57:18 +0000404 sqlite3*, /* An open database */
shane236ce972008-05-30 15:35:30 +0000405 const char *sql, /* SQL to be evaluated */
drh6ed48bf2007-06-14 20:57:18 +0000406 int (*callback)(void*,int,char**,char**), /* Callback function */
407 void *, /* 1st argument to callback */
408 char **errmsg /* Error msg written here */
drh75897232000-05-29 14:26:00 +0000409);
410
drh58b95762000-06-02 01:17:37 +0000411/*
drhd68eee02009-12-11 03:44:18 +0000412** CAPI3REF: Result Codes
drh1d8ba022014-08-08 12:51:42 +0000413** KEYWORDS: {result code definitions}
drh6ed48bf2007-06-14 20:57:18 +0000414**
415** Many SQLite functions return an integer result code from the set shown
dan44659c92011-12-30 05:08:41 +0000416** here in order to indicate success or failure.
drh6ed48bf2007-06-14 20:57:18 +0000417**
drh4766b292008-06-26 02:53:02 +0000418** New error codes may be added in future versions of SQLite.
419**
drh1d8ba022014-08-08 12:51:42 +0000420** See also: [extended result code definitions]
drh58b95762000-06-02 01:17:37 +0000421*/
drh717e6402001-09-27 03:22:32 +0000422#define SQLITE_OK 0 /* Successful result */
drh15b9a152006-01-31 20:49:13 +0000423/* beginning-of-error-codes */
drha690ff32017-07-07 19:43:23 +0000424#define SQLITE_ERROR 1 /* Generic error */
drh89e0dde2007-12-12 12:25:21 +0000425#define SQLITE_INTERNAL 2 /* Internal logic error in SQLite */
drh717e6402001-09-27 03:22:32 +0000426#define SQLITE_PERM 3 /* Access permission denied */
427#define SQLITE_ABORT 4 /* Callback routine requested an abort */
428#define SQLITE_BUSY 5 /* The database file is locked */
429#define SQLITE_LOCKED 6 /* A table in the database is locked */
430#define SQLITE_NOMEM 7 /* A malloc() failed */
431#define SQLITE_READONLY 8 /* Attempt to write a readonly database */
drh24cd67e2004-05-10 16:18:47 +0000432#define SQLITE_INTERRUPT 9 /* Operation terminated by sqlite3_interrupt()*/
drh717e6402001-09-27 03:22:32 +0000433#define SQLITE_IOERR 10 /* Some kind of disk I/O error occurred */
434#define SQLITE_CORRUPT 11 /* The database disk image is malformed */
drh0b52b7d2011-01-26 19:46:22 +0000435#define SQLITE_NOTFOUND 12 /* Unknown opcode in sqlite3_file_control() */
drh717e6402001-09-27 03:22:32 +0000436#define SQLITE_FULL 13 /* Insertion failed because database is full */
437#define SQLITE_CANTOPEN 14 /* Unable to open the database file */
drhaab4c022010-06-02 14:45:51 +0000438#define SQLITE_PROTOCOL 15 /* Database lock protocol error */
drh44548e72017-08-14 18:13:52 +0000439#define SQLITE_EMPTY 16 /* Internal use only */
drh717e6402001-09-27 03:22:32 +0000440#define SQLITE_SCHEMA 17 /* The database schema changed */
drhc797d4d2007-05-08 01:08:49 +0000441#define SQLITE_TOOBIG 18 /* String or BLOB exceeds size limit */
danielk19776eb91d22007-09-21 04:27:02 +0000442#define SQLITE_CONSTRAINT 19 /* Abort due to constraint violation */
drh8aff1012001-12-22 14:49:24 +0000443#define SQLITE_MISMATCH 20 /* Data type mismatch */
drh247be432002-05-10 05:44:55 +0000444#define SQLITE_MISUSE 21 /* Library used incorrectly */
drh8766c342002-11-09 00:33:15 +0000445#define SQLITE_NOLFS 22 /* Uses OS features not supported on host */
drhed6c8672003-01-12 18:02:16 +0000446#define SQLITE_AUTH 23 /* Authorization denied */
drhe75be1a2017-07-10 11:17:51 +0000447#define SQLITE_FORMAT 24 /* Not used */
danielk19776f8a5032004-05-10 10:34:51 +0000448#define SQLITE_RANGE 25 /* 2nd parameter to sqlite3_bind out of range */
drhc602f9a2004-02-12 19:01:04 +0000449#define SQLITE_NOTADB 26 /* File opened that is not a database file */
drhd040e762013-04-10 23:48:37 +0000450#define SQLITE_NOTICE 27 /* Notifications from sqlite3_log() */
451#define SQLITE_WARNING 28 /* Warnings from sqlite3_log() */
danielk19776f8a5032004-05-10 10:34:51 +0000452#define SQLITE_ROW 100 /* sqlite3_step() has another row ready */
453#define SQLITE_DONE 101 /* sqlite3_step() has finished executing */
drh15b9a152006-01-31 20:49:13 +0000454/* end-of-error-codes */
drh717e6402001-09-27 03:22:32 +0000455
drhaf9ff332002-01-16 21:00:27 +0000456/*
drhd68eee02009-12-11 03:44:18 +0000457** CAPI3REF: Extended Result Codes
drh1d8ba022014-08-08 12:51:42 +0000458** KEYWORDS: {extended result code definitions}
drh4ac285a2006-09-15 07:28:50 +0000459**
drh1d8ba022014-08-08 12:51:42 +0000460** In its default configuration, SQLite API routines return one of 30 integer
461** [result codes]. However, experience has shown that many of
mihailim362cc832008-06-21 06:16:42 +0000462** these result codes are too coarse-grained. They do not provide as
drhf5befa02007-12-06 02:42:07 +0000463** much information about problems as programmers might like. In an effort to
drh481fd502016-09-14 18:56:20 +0000464** address this, newer versions of SQLite (version 3.3.8 [dateof:3.3.8]
465** and later) include
drh6ed48bf2007-06-14 20:57:18 +0000466** support for additional result codes that provide more detailed information
drh1d8ba022014-08-08 12:51:42 +0000467** about errors. These [extended result codes] are enabled or disabled
mihailim362cc832008-06-21 06:16:42 +0000468** on a per database connection basis using the
drh1d8ba022014-08-08 12:51:42 +0000469** [sqlite3_extended_result_codes()] API. Or, the extended code for
470** the most recent error can be obtained using
471** [sqlite3_extended_errcode()].
drh4ac285a2006-09-15 07:28:50 +0000472*/
drh7e8515d2017-12-08 19:37:04 +0000473#define SQLITE_ERROR_MISSING_COLLSEQ (SQLITE_ERROR | (1<<8))
474#define SQLITE_ERROR_RETRY (SQLITE_ERROR | (2<<8))
danielk1977861f7452008-06-05 11:39:11 +0000475#define SQLITE_IOERR_READ (SQLITE_IOERR | (1<<8))
476#define SQLITE_IOERR_SHORT_READ (SQLITE_IOERR | (2<<8))
477#define SQLITE_IOERR_WRITE (SQLITE_IOERR | (3<<8))
478#define SQLITE_IOERR_FSYNC (SQLITE_IOERR | (4<<8))
479#define SQLITE_IOERR_DIR_FSYNC (SQLITE_IOERR | (5<<8))
480#define SQLITE_IOERR_TRUNCATE (SQLITE_IOERR | (6<<8))
481#define SQLITE_IOERR_FSTAT (SQLITE_IOERR | (7<<8))
482#define SQLITE_IOERR_UNLOCK (SQLITE_IOERR | (8<<8))
483#define SQLITE_IOERR_RDLOCK (SQLITE_IOERR | (9<<8))
484#define SQLITE_IOERR_DELETE (SQLITE_IOERR | (10<<8))
485#define SQLITE_IOERR_BLOCKED (SQLITE_IOERR | (11<<8))
486#define SQLITE_IOERR_NOMEM (SQLITE_IOERR | (12<<8))
487#define SQLITE_IOERR_ACCESS (SQLITE_IOERR | (13<<8))
488#define SQLITE_IOERR_CHECKRESERVEDLOCK (SQLITE_IOERR | (14<<8))
aswift5b1a2562008-08-22 00:22:35 +0000489#define SQLITE_IOERR_LOCK (SQLITE_IOERR | (15<<8))
aswiftaebf4132008-11-21 00:10:35 +0000490#define SQLITE_IOERR_CLOSE (SQLITE_IOERR | (16<<8))
491#define SQLITE_IOERR_DIR_CLOSE (SQLITE_IOERR | (17<<8))
drhaab4c022010-06-02 14:45:51 +0000492#define SQLITE_IOERR_SHMOPEN (SQLITE_IOERR | (18<<8))
493#define SQLITE_IOERR_SHMSIZE (SQLITE_IOERR | (19<<8))
494#define SQLITE_IOERR_SHMLOCK (SQLITE_IOERR | (20<<8))
drh50990db2011-04-13 20:26:13 +0000495#define SQLITE_IOERR_SHMMAP (SQLITE_IOERR | (21<<8))
496#define SQLITE_IOERR_SEEK (SQLITE_IOERR | (22<<8))
dan9fc5b4a2012-11-09 20:17:26 +0000497#define SQLITE_IOERR_DELETE_NOENT (SQLITE_IOERR | (23<<8))
danaef49d72013-03-25 16:28:54 +0000498#define SQLITE_IOERR_MMAP (SQLITE_IOERR | (24<<8))
mistachkin16a2e7a2013-07-31 22:27:16 +0000499#define SQLITE_IOERR_GETTEMPPATH (SQLITE_IOERR | (25<<8))
mistachkind95a3d32013-08-30 21:52:38 +0000500#define SQLITE_IOERR_CONVPATH (SQLITE_IOERR | (26<<8))
drh180872f2015-08-21 17:39:35 +0000501#define SQLITE_IOERR_VNODE (SQLITE_IOERR | (27<<8))
dan2853c682015-10-26 20:39:56 +0000502#define SQLITE_IOERR_AUTH (SQLITE_IOERR | (28<<8))
drh344f7632017-07-28 13:18:35 +0000503#define SQLITE_IOERR_BEGIN_ATOMIC (SQLITE_IOERR | (29<<8))
504#define SQLITE_IOERR_COMMIT_ATOMIC (SQLITE_IOERR | (30<<8))
505#define SQLITE_IOERR_ROLLBACK_ATOMIC (SQLITE_IOERR | (31<<8))
drh73b64e42010-05-30 19:55:15 +0000506#define SQLITE_LOCKED_SHAREDCACHE (SQLITE_LOCKED | (1<<8))
507#define SQLITE_BUSY_RECOVERY (SQLITE_BUSY | (1<<8))
danf73819a2013-06-27 11:46:27 +0000508#define SQLITE_BUSY_SNAPSHOT (SQLITE_BUSY | (2<<8))
drh8b3cf822010-06-01 21:02:51 +0000509#define SQLITE_CANTOPEN_NOTEMPDIR (SQLITE_CANTOPEN | (1<<8))
mistachkin48a55aa2012-05-07 17:16:07 +0000510#define SQLITE_CANTOPEN_ISDIR (SQLITE_CANTOPEN | (2<<8))
mistachkin7ea11af2012-09-13 15:24:29 +0000511#define SQLITE_CANTOPEN_FULLPATH (SQLITE_CANTOPEN | (3<<8))
mistachkind95a3d32013-08-30 21:52:38 +0000512#define SQLITE_CANTOPEN_CONVPATH (SQLITE_CANTOPEN | (4<<8))
drhb5039fb2017-10-25 23:28:13 +0000513#define SQLITE_CANTOPEN_DIRTYWAL (SQLITE_CANTOPEN | (5<<8))
dan133d7da2011-05-17 15:56:16 +0000514#define SQLITE_CORRUPT_VTAB (SQLITE_CORRUPT | (1<<8))
dan4edc6bf2011-05-10 17:31:29 +0000515#define SQLITE_READONLY_RECOVERY (SQLITE_READONLY | (1<<8))
516#define SQLITE_READONLY_CANTLOCK (SQLITE_READONLY | (2<<8))
dane3664fb2013-03-05 15:09:25 +0000517#define SQLITE_READONLY_ROLLBACK (SQLITE_READONLY | (3<<8))
drh3fee8a62013-12-06 17:23:38 +0000518#define SQLITE_READONLY_DBMOVED (SQLITE_READONLY | (4<<8))
drh73169602017-11-08 17:51:10 +0000519#define SQLITE_READONLY_CANTINIT (SQLITE_READONLY | (5<<8))
drha803a2c2017-12-13 20:02:29 +0000520#define SQLITE_READONLY_DIRECTORY (SQLITE_READONLY | (6<<8))
drh21021a52012-02-13 17:01:51 +0000521#define SQLITE_ABORT_ROLLBACK (SQLITE_ABORT | (2<<8))
drh433dccf2013-02-09 15:37:11 +0000522#define SQLITE_CONSTRAINT_CHECK (SQLITE_CONSTRAINT | (1<<8))
523#define SQLITE_CONSTRAINT_COMMITHOOK (SQLITE_CONSTRAINT | (2<<8))
drhd91c1a12013-02-09 13:58:25 +0000524#define SQLITE_CONSTRAINT_FOREIGNKEY (SQLITE_CONSTRAINT | (3<<8))
drh433dccf2013-02-09 15:37:11 +0000525#define SQLITE_CONSTRAINT_FUNCTION (SQLITE_CONSTRAINT | (4<<8))
526#define SQLITE_CONSTRAINT_NOTNULL (SQLITE_CONSTRAINT | (5<<8))
527#define SQLITE_CONSTRAINT_PRIMARYKEY (SQLITE_CONSTRAINT | (6<<8))
528#define SQLITE_CONSTRAINT_TRIGGER (SQLITE_CONSTRAINT | (7<<8))
529#define SQLITE_CONSTRAINT_UNIQUE (SQLITE_CONSTRAINT | (8<<8))
530#define SQLITE_CONSTRAINT_VTAB (SQLITE_CONSTRAINT | (9<<8))
drhf9c8ce32013-11-05 13:33:55 +0000531#define SQLITE_CONSTRAINT_ROWID (SQLITE_CONSTRAINT |(10<<8))
drhd040e762013-04-10 23:48:37 +0000532#define SQLITE_NOTICE_RECOVER_WAL (SQLITE_NOTICE | (1<<8))
533#define SQLITE_NOTICE_RECOVER_ROLLBACK (SQLITE_NOTICE | (2<<8))
drh8d56e202013-06-28 23:55:45 +0000534#define SQLITE_WARNING_AUTOINDEX (SQLITE_WARNING | (1<<8))
drhf442e332014-09-10 19:01:14 +0000535#define SQLITE_AUTH_USER (SQLITE_AUTH | (1<<8))
drhc1502e22016-05-28 17:23:08 +0000536#define SQLITE_OK_LOAD_PERMANENTLY (SQLITE_OK | (1<<8))
dan4edc6bf2011-05-10 17:31:29 +0000537
drh4ac285a2006-09-15 07:28:50 +0000538/*
drhd68eee02009-12-11 03:44:18 +0000539** CAPI3REF: Flags For File Open Operations
drh6d2069d2007-08-14 01:58:53 +0000540**
mlcreechb2799412008-03-07 03:20:31 +0000541** These bit values are intended for use in the
drh33c1be32008-01-30 16:16:14 +0000542** 3rd parameter to the [sqlite3_open_v2()] interface and
drhb706fe52011-05-11 20:54:32 +0000543** in the 4th parameter to the [sqlite3_vfs.xOpen] method.
drh6d2069d2007-08-14 01:58:53 +0000544*/
shane089b0a42009-05-14 03:21:28 +0000545#define SQLITE_OPEN_READONLY 0x00000001 /* Ok for sqlite3_open_v2() */
546#define SQLITE_OPEN_READWRITE 0x00000002 /* Ok for sqlite3_open_v2() */
547#define SQLITE_OPEN_CREATE 0x00000004 /* Ok for sqlite3_open_v2() */
548#define SQLITE_OPEN_DELETEONCLOSE 0x00000008 /* VFS only */
549#define SQLITE_OPEN_EXCLUSIVE 0x00000010 /* VFS only */
drh7ed97b92010-01-20 13:07:21 +0000550#define SQLITE_OPEN_AUTOPROXY 0x00000020 /* VFS only */
drhb706fe52011-05-11 20:54:32 +0000551#define SQLITE_OPEN_URI 0x00000040 /* Ok for sqlite3_open_v2() */
drh9c67b2a2012-05-28 13:58:00 +0000552#define SQLITE_OPEN_MEMORY 0x00000080 /* Ok for sqlite3_open_v2() */
shane089b0a42009-05-14 03:21:28 +0000553#define SQLITE_OPEN_MAIN_DB 0x00000100 /* VFS only */
554#define SQLITE_OPEN_TEMP_DB 0x00000200 /* VFS only */
555#define SQLITE_OPEN_TRANSIENT_DB 0x00000400 /* VFS only */
556#define SQLITE_OPEN_MAIN_JOURNAL 0x00000800 /* VFS only */
557#define SQLITE_OPEN_TEMP_JOURNAL 0x00001000 /* VFS only */
558#define SQLITE_OPEN_SUBJOURNAL 0x00002000 /* VFS only */
559#define SQLITE_OPEN_MASTER_JOURNAL 0x00004000 /* VFS only */
560#define SQLITE_OPEN_NOMUTEX 0x00008000 /* Ok for sqlite3_open_v2() */
561#define SQLITE_OPEN_FULLMUTEX 0x00010000 /* Ok for sqlite3_open_v2() */
drhf1f12682009-09-09 14:17:52 +0000562#define SQLITE_OPEN_SHAREDCACHE 0x00020000 /* Ok for sqlite3_open_v2() */
563#define SQLITE_OPEN_PRIVATECACHE 0x00040000 /* Ok for sqlite3_open_v2() */
danddb0ac42010-07-14 14:48:58 +0000564#define SQLITE_OPEN_WAL 0x00080000 /* VFS only */
drh6d2069d2007-08-14 01:58:53 +0000565
drh03e1b402011-02-23 22:39:23 +0000566/* Reserved: 0x00F00000 */
567
drh6d2069d2007-08-14 01:58:53 +0000568/*
drhd68eee02009-12-11 03:44:18 +0000569** CAPI3REF: Device Characteristics
drh6d2069d2007-08-14 01:58:53 +0000570**
dan0c173602010-07-13 18:45:10 +0000571** The xDeviceCharacteristics method of the [sqlite3_io_methods]
mistachkind5578432012-08-25 10:01:29 +0000572** object returns an integer which is a vector of these
drh6d2069d2007-08-14 01:58:53 +0000573** bit values expressing I/O characteristics of the mass storage
574** device that holds the file that the [sqlite3_io_methods]
drh33c1be32008-01-30 16:16:14 +0000575** refers to.
drh6d2069d2007-08-14 01:58:53 +0000576**
drh33c1be32008-01-30 16:16:14 +0000577** The SQLITE_IOCAP_ATOMIC property means that all writes of
578** any size are atomic. The SQLITE_IOCAP_ATOMICnnn values
drh6d2069d2007-08-14 01:58:53 +0000579** mean that writes of blocks that are nnn bytes in size and
580** are aligned to an address which is an integer multiple of
drh33c1be32008-01-30 16:16:14 +0000581** nnn are atomic. The SQLITE_IOCAP_SAFE_APPEND value means
drh6d2069d2007-08-14 01:58:53 +0000582** that when data is appended to a file, the data is appended
583** first then the size of the file is extended, never the other
drh33c1be32008-01-30 16:16:14 +0000584** way around. The SQLITE_IOCAP_SEQUENTIAL property means that
drh6d2069d2007-08-14 01:58:53 +0000585** information is written to disk in the same order as calls
drhcb15f352011-12-23 01:04:17 +0000586** to xWrite(). The SQLITE_IOCAP_POWERSAFE_OVERWRITE property means that
drh4eaff932011-12-23 20:49:26 +0000587** after reboot following a crash or power loss, the only bytes in a
588** file that were written at the application level might have changed
589** and that adjacent bytes, even bytes within the same sector are
drh1b1f30b2013-12-06 15:37:35 +0000590** guaranteed to be unchanged. The SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN
mistachkin35f30d32017-01-22 02:04:05 +0000591** flag indicates that a file cannot be deleted when open. The
drhd1ae96d2014-05-01 01:13:08 +0000592** SQLITE_IOCAP_IMMUTABLE flag indicates that the file is on
593** read-only media and cannot be changed even by processes with
594** elevated privileges.
drh466004d2017-07-19 11:20:32 +0000595**
596** The SQLITE_IOCAP_BATCH_ATOMIC property means that the underlying
drhd080e3d2017-07-21 14:49:58 +0000597** filesystem supports doing multiple write operations atomically when those
598** write operations are bracketed by [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] and
mistachkin172861b2017-07-21 20:29:06 +0000599** [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE].
drh6d2069d2007-08-14 01:58:53 +0000600*/
dan8ce49d62010-06-19 18:12:02 +0000601#define SQLITE_IOCAP_ATOMIC 0x00000001
602#define SQLITE_IOCAP_ATOMIC512 0x00000002
603#define SQLITE_IOCAP_ATOMIC1K 0x00000004
604#define SQLITE_IOCAP_ATOMIC2K 0x00000008
605#define SQLITE_IOCAP_ATOMIC4K 0x00000010
606#define SQLITE_IOCAP_ATOMIC8K 0x00000020
607#define SQLITE_IOCAP_ATOMIC16K 0x00000040
608#define SQLITE_IOCAP_ATOMIC32K 0x00000080
609#define SQLITE_IOCAP_ATOMIC64K 0x00000100
610#define SQLITE_IOCAP_SAFE_APPEND 0x00000200
611#define SQLITE_IOCAP_SEQUENTIAL 0x00000400
612#define SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN 0x00000800
drhcb15f352011-12-23 01:04:17 +0000613#define SQLITE_IOCAP_POWERSAFE_OVERWRITE 0x00001000
drhd1ae96d2014-05-01 01:13:08 +0000614#define SQLITE_IOCAP_IMMUTABLE 0x00002000
danefe16972017-07-20 19:49:14 +0000615#define SQLITE_IOCAP_BATCH_ATOMIC 0x00004000
drh6d2069d2007-08-14 01:58:53 +0000616
617/*
drhd68eee02009-12-11 03:44:18 +0000618** CAPI3REF: File Locking Levels
drh6d2069d2007-08-14 01:58:53 +0000619**
drh33c1be32008-01-30 16:16:14 +0000620** SQLite uses one of these integer values as the second
drh6d2069d2007-08-14 01:58:53 +0000621** argument to calls it makes to the xLock() and xUnlock() methods
drh33c1be32008-01-30 16:16:14 +0000622** of an [sqlite3_io_methods] object.
drh6d2069d2007-08-14 01:58:53 +0000623*/
624#define SQLITE_LOCK_NONE 0
625#define SQLITE_LOCK_SHARED 1
626#define SQLITE_LOCK_RESERVED 2
627#define SQLITE_LOCK_PENDING 3
628#define SQLITE_LOCK_EXCLUSIVE 4
629
630/*
drhd68eee02009-12-11 03:44:18 +0000631** CAPI3REF: Synchronization Type Flags
drh6d2069d2007-08-14 01:58:53 +0000632**
drh33c1be32008-01-30 16:16:14 +0000633** When SQLite invokes the xSync() method of an
mlcreechb2799412008-03-07 03:20:31 +0000634** [sqlite3_io_methods] object it uses a combination of
drhfddfa2d2007-12-05 18:05:16 +0000635** these integer values as the second argument.
drh6d2069d2007-08-14 01:58:53 +0000636**
drh33c1be32008-01-30 16:16:14 +0000637** When the SQLITE_SYNC_DATAONLY flag is used, it means that the
drh6d2069d2007-08-14 01:58:53 +0000638** sync operation only needs to flush data to mass storage. Inode
drheb0d6292009-04-04 14:04:58 +0000639** information need not be flushed. If the lower four bits of the flag
640** equal SQLITE_SYNC_NORMAL, that means to use normal fsync() semantics.
641** If the lower four bits equal SQLITE_SYNC_FULL, that means
shane7ba429a2008-11-10 17:08:49 +0000642** to use Mac OS X style fullsync instead of fsync().
drhc97d8462010-11-19 18:23:35 +0000643**
644** Do not confuse the SQLITE_SYNC_NORMAL and SQLITE_SYNC_FULL flags
645** with the [PRAGMA synchronous]=NORMAL and [PRAGMA synchronous]=FULL
646** settings. The [synchronous pragma] determines when calls to the
647** xSync VFS method occur and applies uniformly across all platforms.
648** The SQLITE_SYNC_NORMAL and SQLITE_SYNC_FULL flags determine how
649** energetic or rigorous or forceful the sync operations are and
650** only make a difference on Mac OSX for the default SQLite code.
651** (Third-party VFS implementations might also make the distinction
652** between SQLITE_SYNC_NORMAL and SQLITE_SYNC_FULL, but among the
653** operating systems natively supported by SQLite, only Mac OSX
654** cares about the difference.)
drh6d2069d2007-08-14 01:58:53 +0000655*/
drh6d2069d2007-08-14 01:58:53 +0000656#define SQLITE_SYNC_NORMAL 0x00002
657#define SQLITE_SYNC_FULL 0x00003
658#define SQLITE_SYNC_DATAONLY 0x00010
659
drh6d2069d2007-08-14 01:58:53 +0000660/*
drhd68eee02009-12-11 03:44:18 +0000661** CAPI3REF: OS Interface Open File Handle
drh6d2069d2007-08-14 01:58:53 +0000662**
drh6aa5f152009-08-19 15:57:07 +0000663** An [sqlite3_file] object represents an open file in the
664** [sqlite3_vfs | OS interface layer]. Individual OS interface
665** implementations will
drh6d2069d2007-08-14 01:58:53 +0000666** want to subclass this object by appending additional fields
drh4ff7fa02007-09-01 18:17:21 +0000667** for their own use. The pMethods entry is a pointer to an
drhd84f9462007-08-15 11:28:56 +0000668** [sqlite3_io_methods] object that defines methods for performing
669** I/O operations on the open file.
drh6d2069d2007-08-14 01:58:53 +0000670*/
671typedef struct sqlite3_file sqlite3_file;
672struct sqlite3_file {
drh153c62c2007-08-24 03:51:33 +0000673 const struct sqlite3_io_methods *pMethods; /* Methods for an open file */
drh6d2069d2007-08-14 01:58:53 +0000674};
675
676/*
drhd68eee02009-12-11 03:44:18 +0000677** CAPI3REF: OS Interface File Virtual Methods Object
drh6d2069d2007-08-14 01:58:53 +0000678**
drhb706fe52011-05-11 20:54:32 +0000679** Every file opened by the [sqlite3_vfs.xOpen] method populates an
drh4766b292008-06-26 02:53:02 +0000680** [sqlite3_file] object (or, more commonly, a subclass of the
681** [sqlite3_file] object) with a pointer to an instance of this object.
682** This object defines the methods used to perform various operations
683** against the open file represented by the [sqlite3_file] object.
drhd84f9462007-08-15 11:28:56 +0000684**
drhb706fe52011-05-11 20:54:32 +0000685** If the [sqlite3_vfs.xOpen] method sets the sqlite3_file.pMethods element
drh9afedcc2009-06-19 22:50:31 +0000686** to a non-NULL pointer, then the sqlite3_io_methods.xClose method
drhb706fe52011-05-11 20:54:32 +0000687** may be invoked even if the [sqlite3_vfs.xOpen] reported that it failed. The
688** only way to prevent a call to xClose following a failed [sqlite3_vfs.xOpen]
689** is for the [sqlite3_vfs.xOpen] to set the sqlite3_file.pMethods element
690** to NULL.
drh9afedcc2009-06-19 22:50:31 +0000691**
drhfddfa2d2007-12-05 18:05:16 +0000692** The flags argument to xSync may be one of [SQLITE_SYNC_NORMAL] or
693** [SQLITE_SYNC_FULL]. The first choice is the normal fsync().
shane7ba429a2008-11-10 17:08:49 +0000694** The second choice is a Mac OS X style fullsync. The [SQLITE_SYNC_DATAONLY]
mihailim362cc832008-06-21 06:16:42 +0000695** flag may be ORed in to indicate that only the data of the file
696** and not its inode needs to be synced.
mihailima3f64902008-06-21 13:35:56 +0000697**
drhd84f9462007-08-15 11:28:56 +0000698** The integer values to xLock() and xUnlock() are one of
drh4ff7fa02007-09-01 18:17:21 +0000699** <ul>
700** <li> [SQLITE_LOCK_NONE],
drh79491ab2007-09-04 12:00:00 +0000701** <li> [SQLITE_LOCK_SHARED],
drh4ff7fa02007-09-01 18:17:21 +0000702** <li> [SQLITE_LOCK_RESERVED],
703** <li> [SQLITE_LOCK_PENDING], or
704** <li> [SQLITE_LOCK_EXCLUSIVE].
705** </ul>
mihailima3f64902008-06-21 13:35:56 +0000706** xLock() increases the lock. xUnlock() decreases the lock.
mihailim362cc832008-06-21 06:16:42 +0000707** The xCheckReservedLock() method checks whether any database connection,
708** either in this process or in some other process, is holding a RESERVED,
drhd84f9462007-08-15 11:28:56 +0000709** PENDING, or EXCLUSIVE lock on the file. It returns true
mihailim362cc832008-06-21 06:16:42 +0000710** if such a lock exists and false otherwise.
mihailima3f64902008-06-21 13:35:56 +0000711**
drhcc6bb3e2007-08-31 16:11:35 +0000712** The xFileControl() method is a generic interface that allows custom
713** VFS implementations to directly control an open file using the
mihailim362cc832008-06-21 06:16:42 +0000714** [sqlite3_file_control()] interface. The second "op" argument is an
mihailima3f64902008-06-21 13:35:56 +0000715** integer opcode. The third argument is a generic pointer intended to
mihailim362cc832008-06-21 06:16:42 +0000716** point to a structure that may contain arguments or space in which to
drhcc6bb3e2007-08-31 16:11:35 +0000717** write return values. Potential uses for xFileControl() might be
718** functions to enable blocking locks with timeouts, to change the
719** locking strategy (for example to use dot-file locks), to inquire
drh9e33c2c2007-08-31 18:34:59 +0000720** about the status of a lock, or to break stale locks. The SQLite
mihailima3f64902008-06-21 13:35:56 +0000721** core reserves all opcodes less than 100 for its own use.
drh3c19bbe2014-08-08 15:38:11 +0000722** A [file control opcodes | list of opcodes] less than 100 is available.
mihailim362cc832008-06-21 06:16:42 +0000723** Applications that define a custom xFileControl method should use opcodes
drh0b52b7d2011-01-26 19:46:22 +0000724** greater than 100 to avoid conflicts. VFS implementations should
725** return [SQLITE_NOTFOUND] for file control opcodes that they do not
726** recognize.
drhd84f9462007-08-15 11:28:56 +0000727**
728** The xSectorSize() method returns the sector size of the
729** device that underlies the file. The sector size is the
730** minimum write that can be performed without disturbing
731** other bytes in the file. The xDeviceCharacteristics()
732** method returns a bit vector describing behaviors of the
733** underlying device:
734**
735** <ul>
drh4ff7fa02007-09-01 18:17:21 +0000736** <li> [SQLITE_IOCAP_ATOMIC]
737** <li> [SQLITE_IOCAP_ATOMIC512]
738** <li> [SQLITE_IOCAP_ATOMIC1K]
739** <li> [SQLITE_IOCAP_ATOMIC2K]
740** <li> [SQLITE_IOCAP_ATOMIC4K]
741** <li> [SQLITE_IOCAP_ATOMIC8K]
742** <li> [SQLITE_IOCAP_ATOMIC16K]
743** <li> [SQLITE_IOCAP_ATOMIC32K]
744** <li> [SQLITE_IOCAP_ATOMIC64K]
745** <li> [SQLITE_IOCAP_SAFE_APPEND]
746** <li> [SQLITE_IOCAP_SEQUENTIAL]
mistachkin35f30d32017-01-22 02:04:05 +0000747** <li> [SQLITE_IOCAP_UNDELETABLE_WHEN_OPEN]
748** <li> [SQLITE_IOCAP_POWERSAFE_OVERWRITE]
749** <li> [SQLITE_IOCAP_IMMUTABLE]
danefe16972017-07-20 19:49:14 +0000750** <li> [SQLITE_IOCAP_BATCH_ATOMIC]
drhd84f9462007-08-15 11:28:56 +0000751** </ul>
752**
753** The SQLITE_IOCAP_ATOMIC property means that all writes of
754** any size are atomic. The SQLITE_IOCAP_ATOMICnnn values
755** mean that writes of blocks that are nnn bytes in size and
756** are aligned to an address which is an integer multiple of
757** nnn are atomic. The SQLITE_IOCAP_SAFE_APPEND value means
758** that when data is appended to a file, the data is appended
759** first then the size of the file is extended, never the other
760** way around. The SQLITE_IOCAP_SEQUENTIAL property means that
761** information is written to disk in the same order as calls
762** to xWrite().
drh4c17c3f2008-11-07 00:06:18 +0000763**
764** If xRead() returns SQLITE_IOERR_SHORT_READ it must also fill
765** in the unread portions of the buffer with zeros. A VFS that
766** fails to zero-fill short reads might seem to work. However,
767** failure to zero-fill short reads will eventually lead to
768** database corruption.
drh6d2069d2007-08-14 01:58:53 +0000769*/
770typedef struct sqlite3_io_methods sqlite3_io_methods;
771struct sqlite3_io_methods {
772 int iVersion;
773 int (*xClose)(sqlite3_file*);
drh79491ab2007-09-04 12:00:00 +0000774 int (*xRead)(sqlite3_file*, void*, int iAmt, sqlite3_int64 iOfst);
775 int (*xWrite)(sqlite3_file*, const void*, int iAmt, sqlite3_int64 iOfst);
776 int (*xTruncate)(sqlite3_file*, sqlite3_int64 size);
drh6d2069d2007-08-14 01:58:53 +0000777 int (*xSync)(sqlite3_file*, int flags);
drh79491ab2007-09-04 12:00:00 +0000778 int (*xFileSize)(sqlite3_file*, sqlite3_int64 *pSize);
drh6d2069d2007-08-14 01:58:53 +0000779 int (*xLock)(sqlite3_file*, int);
780 int (*xUnlock)(sqlite3_file*, int);
danielk1977861f7452008-06-05 11:39:11 +0000781 int (*xCheckReservedLock)(sqlite3_file*, int *pResOut);
drhcc6bb3e2007-08-31 16:11:35 +0000782 int (*xFileControl)(sqlite3_file*, int op, void *pArg);
drh6d2069d2007-08-14 01:58:53 +0000783 int (*xSectorSize)(sqlite3_file*);
784 int (*xDeviceCharacteristics)(sqlite3_file*);
drhd9e5c4f2010-05-12 18:01:39 +0000785 /* Methods above are valid for version 1 */
danda9fe0c2010-07-13 18:44:03 +0000786 int (*xShmMap)(sqlite3_file*, int iPg, int pgsz, int, void volatile**);
drh73b64e42010-05-30 19:55:15 +0000787 int (*xShmLock)(sqlite3_file*, int offset, int n, int flags);
drh286a2882010-05-20 23:51:06 +0000788 void (*xShmBarrier)(sqlite3_file*);
danaf6ea4e2010-07-13 14:33:48 +0000789 int (*xShmUnmap)(sqlite3_file*, int deleteFlag);
drhd9e5c4f2010-05-12 18:01:39 +0000790 /* Methods above are valid for version 2 */
danf23da962013-03-23 21:00:41 +0000791 int (*xFetch)(sqlite3_file*, sqlite3_int64 iOfst, int iAmt, void **pp);
dandf737fe2013-03-25 17:00:24 +0000792 int (*xUnfetch)(sqlite3_file*, sqlite3_int64 iOfst, void *p);
dan5d8a1372013-03-19 19:28:06 +0000793 /* Methods above are valid for version 3 */
drh6d2069d2007-08-14 01:58:53 +0000794 /* Additional methods may be added in future releases */
795};
796
797/*
drhd68eee02009-12-11 03:44:18 +0000798** CAPI3REF: Standard File Control Opcodes
drh3c19bbe2014-08-08 15:38:11 +0000799** KEYWORDS: {file control opcodes} {file control opcode}
drh9e33c2c2007-08-31 18:34:59 +0000800**
801** These integer constants are opcodes for the xFileControl method
mihailim362cc832008-06-21 06:16:42 +0000802** of the [sqlite3_io_methods] object and for the [sqlite3_file_control()]
drh9e33c2c2007-08-31 18:34:59 +0000803** interface.
804**
drh8dd7a6a2015-03-06 04:37:26 +0000805** <ul>
806** <li>[[SQLITE_FCNTL_LOCKSTATE]]
drh33c1be32008-01-30 16:16:14 +0000807** The [SQLITE_FCNTL_LOCKSTATE] opcode is used for debugging. This
mlcreechb2799412008-03-07 03:20:31 +0000808** opcode causes the xFileControl method to write the current state of
drh9e33c2c2007-08-31 18:34:59 +0000809** the lock (one of [SQLITE_LOCK_NONE], [SQLITE_LOCK_SHARED],
810** [SQLITE_LOCK_RESERVED], [SQLITE_LOCK_PENDING], or [SQLITE_LOCK_EXCLUSIVE])
drh33c1be32008-01-30 16:16:14 +0000811** into an integer that the pArg argument points to. This capability
drh8dd7a6a2015-03-06 04:37:26 +0000812** is used during testing and is only available when the SQLITE_TEST
813** compile-time option is used.
814**
drh49dc66d2012-02-23 14:28:46 +0000815** <li>[[SQLITE_FCNTL_SIZE_HINT]]
drh9ff27ec2010-05-19 19:26:05 +0000816** The [SQLITE_FCNTL_SIZE_HINT] opcode is used by SQLite to give the VFS
817** layer a hint of how large the database file will grow to be during the
818** current transaction. This hint is not guaranteed to be accurate but it
819** is often close. The underlying VFS might choose to preallocate database
820** file space based on this hint in order to help writes to the database
821** file run faster.
dan502019c2010-07-28 14:26:17 +0000822**
drh49dc66d2012-02-23 14:28:46 +0000823** <li>[[SQLITE_FCNTL_CHUNK_SIZE]]
dan502019c2010-07-28 14:26:17 +0000824** The [SQLITE_FCNTL_CHUNK_SIZE] opcode is used to request that the VFS
825** extends and truncates the database file in chunks of a size specified
826** by the user. The fourth argument to [sqlite3_file_control()] should
827** point to an integer (type int) containing the new chunk-size to use
828** for the nominated database. Allocating database file space in large
829** chunks (say 1MB at a time), may reduce file-system fragmentation and
830** improve performance on some systems.
drh91412b22010-12-07 23:24:00 +0000831**
drh49dc66d2012-02-23 14:28:46 +0000832** <li>[[SQLITE_FCNTL_FILE_POINTER]]
drh91412b22010-12-07 23:24:00 +0000833** The [SQLITE_FCNTL_FILE_POINTER] opcode is used to obtain a pointer
834** to the [sqlite3_file] object associated with a particular database
drh504ef442016-01-13 18:06:08 +0000835** connection. See also [SQLITE_FCNTL_JOURNAL_POINTER].
836**
837** <li>[[SQLITE_FCNTL_JOURNAL_POINTER]]
838** The [SQLITE_FCNTL_JOURNAL_POINTER] opcode is used to obtain a pointer
839** to the [sqlite3_file] object associated with the journal file (either
840** the [rollback journal] or the [write-ahead log]) for a particular database
841** connection. See also [SQLITE_FCNTL_FILE_POINTER].
dan354bfe02011-01-11 17:39:37 +0000842**
drh49dc66d2012-02-23 14:28:46 +0000843** <li>[[SQLITE_FCNTL_SYNC_OMITTED]]
dan6f68f162013-12-10 17:34:53 +0000844** No longer in use.
845**
846** <li>[[SQLITE_FCNTL_SYNC]]
847** The [SQLITE_FCNTL_SYNC] opcode is generated internally by SQLite and
848** sent to the VFS immediately before the xSync method is invoked on a
849** database file descriptor. Or, if the xSync method is not invoked
850** because the user has configured SQLite with
851** [PRAGMA synchronous | PRAGMA synchronous=OFF] it is invoked in place
852** of the xSync method. In most cases, the pointer argument passed with
853** this file-control is NULL. However, if the database file is being synced
854** as part of a multi-database commit, the argument points to a nul-terminated
855** string containing the transactions master-journal file name. VFSes that
856** do not need this signal should silently ignore this opcode. Applications
857** should not call [sqlite3_file_control()] with this opcode as doing so may
858** disrupt the operation of the specialized VFSes that do require it.
859**
860** <li>[[SQLITE_FCNTL_COMMIT_PHASETWO]]
861** The [SQLITE_FCNTL_COMMIT_PHASETWO] opcode is generated internally by SQLite
862** and sent to the VFS after a transaction has been committed immediately
863** but before the database is unlocked. VFSes that do not need this signal
864** should silently ignore this opcode. Applications should not call
865** [sqlite3_file_control()] with this opcode as doing so may disrupt the
866** operation of the specialized VFSes that do require it.
drhd0cdf012011-07-13 16:03:46 +0000867**
drh49dc66d2012-02-23 14:28:46 +0000868** <li>[[SQLITE_FCNTL_WIN32_AV_RETRY]]
drhd0cdf012011-07-13 16:03:46 +0000869** ^The [SQLITE_FCNTL_WIN32_AV_RETRY] opcode is used to configure automatic
870** retry counts and intervals for certain disk I/O operations for the
dan44659c92011-12-30 05:08:41 +0000871** windows [VFS] in order to provide robustness in the presence of
drhd0cdf012011-07-13 16:03:46 +0000872** anti-virus programs. By default, the windows VFS will retry file read,
drh76c67dc2011-10-31 12:25:01 +0000873** file write, and file delete operations up to 10 times, with a delay
drhd0cdf012011-07-13 16:03:46 +0000874** of 25 milliseconds before the first retry and with the delay increasing
875** by an additional 25 milliseconds with each subsequent retry. This
dan44659c92011-12-30 05:08:41 +0000876** opcode allows these two values (10 retries and 25 milliseconds of delay)
drhd0cdf012011-07-13 16:03:46 +0000877** to be adjusted. The values are changed for all database connections
878** within the same process. The argument is a pointer to an array of two
mistachkin8d5cee12017-05-02 01:30:44 +0000879** integers where the first integer is the new retry count and the second
drhd0cdf012011-07-13 16:03:46 +0000880** integer is the delay. If either integer is negative, then the setting
881** is not changed but instead the prior value of that setting is written
882** into the array entry, allowing the current retry settings to be
883** interrogated. The zDbName parameter is ignored.
drhf0b190d2011-07-26 16:03:07 +0000884**
drh49dc66d2012-02-23 14:28:46 +0000885** <li>[[SQLITE_FCNTL_PERSIST_WAL]]
drhf0b190d2011-07-26 16:03:07 +0000886** ^The [SQLITE_FCNTL_PERSIST_WAL] opcode is used to set or query the
drh5b6c44a2012-05-12 22:36:03 +0000887** persistent [WAL | Write Ahead Log] setting. By default, the auxiliary
drhf0b190d2011-07-26 16:03:07 +0000888** write ahead log and shared memory files used for transaction control
889** are automatically deleted when the latest connection to the database
890** closes. Setting persistent WAL mode causes those files to persist after
891** close. Persisting the files is useful when other processes that do not
892** have write permission on the directory containing the database file want
893** to read the database file, as the WAL and shared memory files must exist
894** in order for the database to be readable. The fourth parameter to
895** [sqlite3_file_control()] for this opcode should be a pointer to an integer.
896** That integer is 0 to disable persistent WAL mode or 1 to enable persistent
897** WAL mode. If the integer is -1, then it is overwritten with the current
898** WAL persistence setting.
danc5f20a02011-10-07 16:57:59 +0000899**
drh49dc66d2012-02-23 14:28:46 +0000900** <li>[[SQLITE_FCNTL_POWERSAFE_OVERWRITE]]
drhcb15f352011-12-23 01:04:17 +0000901** ^The [SQLITE_FCNTL_POWERSAFE_OVERWRITE] opcode is used to set or query the
902** persistent "powersafe-overwrite" or "PSOW" setting. The PSOW setting
903** determines the [SQLITE_IOCAP_POWERSAFE_OVERWRITE] bit of the
904** xDeviceCharacteristics methods. The fourth parameter to
drhf12b3f62011-12-21 14:42:29 +0000905** [sqlite3_file_control()] for this opcode should be a pointer to an integer.
906** That integer is 0 to disable zero-damage mode or 1 to enable zero-damage
907** mode. If the integer is -1, then it is overwritten with the current
908** zero-damage mode setting.
909**
drh49dc66d2012-02-23 14:28:46 +0000910** <li>[[SQLITE_FCNTL_OVERWRITE]]
danc5f20a02011-10-07 16:57:59 +0000911** ^The [SQLITE_FCNTL_OVERWRITE] opcode is invoked by SQLite after opening
912** a write transaction to indicate that, unless it is rolled back for some
913** reason, the entire database file will be overwritten by the current
914** transaction. This is used by VACUUM operations.
drhde60fc22011-12-14 17:53:36 +0000915**
drh49dc66d2012-02-23 14:28:46 +0000916** <li>[[SQLITE_FCNTL_VFSNAME]]
drhde60fc22011-12-14 17:53:36 +0000917** ^The [SQLITE_FCNTL_VFSNAME] opcode can be used to obtain the names of
918** all [VFSes] in the VFS stack. The names are of all VFS shims and the
919** final bottom-level VFS are written into memory obtained from
920** [sqlite3_malloc()] and the result is stored in the char* variable
921** that the fourth parameter of [sqlite3_file_control()] points to.
922** The caller is responsible for freeing the memory when done. As with
923** all file-control actions, there is no guarantee that this will actually
924** do anything. Callers should initialize the char* variable to a NULL
925** pointer in case this file-control is not implemented. This file-control
926** is intended for diagnostic use only.
drh06fd5d62012-02-22 14:45:19 +0000927**
drh790f2872015-11-28 18:06:36 +0000928** <li>[[SQLITE_FCNTL_VFS_POINTER]]
929** ^The [SQLITE_FCNTL_VFS_POINTER] opcode finds a pointer to the top-level
930** [VFSes] currently in use. ^(The argument X in
931** sqlite3_file_control(db,SQLITE_FCNTL_VFS_POINTER,X) must be
932** of type "[sqlite3_vfs] **". This opcodes will set *X
drh15427272015-12-03 22:33:55 +0000933** to a pointer to the top-level VFS.)^
drh790f2872015-11-28 18:06:36 +0000934** ^When there are multiple VFS shims in the stack, this opcode finds the
935** upper-most shim only.
936**
drh49dc66d2012-02-23 14:28:46 +0000937** <li>[[SQLITE_FCNTL_PRAGMA]]
drh06fd5d62012-02-22 14:45:19 +0000938** ^Whenever a [PRAGMA] statement is parsed, an [SQLITE_FCNTL_PRAGMA]
939** file control is sent to the open [sqlite3_file] object corresponding
drh49dc66d2012-02-23 14:28:46 +0000940** to the database file to which the pragma statement refers. ^The argument
941** to the [SQLITE_FCNTL_PRAGMA] file control is an array of
942** pointers to strings (char**) in which the second element of the array
943** is the name of the pragma and the third element is the argument to the
944** pragma or NULL if the pragma has no argument. ^The handler for an
945** [SQLITE_FCNTL_PRAGMA] file control can optionally make the first element
946** of the char** argument point to a string obtained from [sqlite3_mprintf()]
947** or the equivalent and that string will become the result of the pragma or
948** the error message if the pragma fails. ^If the
drh06fd5d62012-02-22 14:45:19 +0000949** [SQLITE_FCNTL_PRAGMA] file control returns [SQLITE_NOTFOUND], then normal
drh49dc66d2012-02-23 14:28:46 +0000950** [PRAGMA] processing continues. ^If the [SQLITE_FCNTL_PRAGMA]
drh06fd5d62012-02-22 14:45:19 +0000951** file control returns [SQLITE_OK], then the parser assumes that the
drh49dc66d2012-02-23 14:28:46 +0000952** VFS has handled the PRAGMA itself and the parser generates a no-op
drh8dd7a6a2015-03-06 04:37:26 +0000953** prepared statement if result string is NULL, or that returns a copy
954** of the result string if the string is non-NULL.
955** ^If the [SQLITE_FCNTL_PRAGMA] file control returns
drh49dc66d2012-02-23 14:28:46 +0000956** any result code other than [SQLITE_OK] or [SQLITE_NOTFOUND], that means
957** that the VFS encountered an error while handling the [PRAGMA] and the
958** compilation of the PRAGMA fails with an error. ^The [SQLITE_FCNTL_PRAGMA]
959** file control occurs at the beginning of pragma statement analysis and so
960** it is able to override built-in [PRAGMA] statements.
dan80bb6f82012-10-01 18:44:33 +0000961**
962** <li>[[SQLITE_FCNTL_BUSYHANDLER]]
drh67f7c782013-04-04 01:54:10 +0000963** ^The [SQLITE_FCNTL_BUSYHANDLER]
964** file-control may be invoked by SQLite on the database file handle
dan80bb6f82012-10-01 18:44:33 +0000965** shortly after it is opened in order to provide a custom VFS with access
966** to the connections busy-handler callback. The argument is of type (void **)
967** - an array of two (void *) values. The first (void *) actually points
968** to a function of type (int (*)(void *)). In order to invoke the connections
969** busy-handler, this function should be invoked with the second (void *) in
970** the array as the only argument. If it returns non-zero, then the operation
971** should be retried. If it returns zero, the custom VFS should abandon the
972** current operation.
drh696b33e2012-12-06 19:01:42 +0000973**
974** <li>[[SQLITE_FCNTL_TEMPFILENAME]]
drh67f7c782013-04-04 01:54:10 +0000975** ^Application can invoke the [SQLITE_FCNTL_TEMPFILENAME] file-control
976** to have SQLite generate a
drh696b33e2012-12-06 19:01:42 +0000977** temporary filename using the same algorithm that is followed to generate
978** temporary filenames for TEMP tables and other internal uses. The
979** argument should be a char** which will be filled with the filename
980** written into memory obtained from [sqlite3_malloc()]. The caller should
981** invoke [sqlite3_free()] on the result to avoid a memory leak.
982**
drh9b4c59f2013-04-15 17:03:42 +0000983** <li>[[SQLITE_FCNTL_MMAP_SIZE]]
984** The [SQLITE_FCNTL_MMAP_SIZE] file control is used to query or set the
drh67f7c782013-04-04 01:54:10 +0000985** maximum number of bytes that will be used for memory-mapped I/O.
986** The argument is a pointer to a value of type sqlite3_int64 that
drh34f74902013-04-03 13:09:18 +0000987** is an advisory maximum number of bytes in the file to memory map. The
988** pointer is overwritten with the old value. The limit is not changed if
drh9b4c59f2013-04-15 17:03:42 +0000989** the value originally pointed to is negative, and so the current limit
990** can be queried by passing in a pointer to a negative number. This
991** file-control is used internally to implement [PRAGMA mmap_size].
danf23da962013-03-23 21:00:41 +0000992**
drh8f8b2312013-10-18 20:03:43 +0000993** <li>[[SQLITE_FCNTL_TRACE]]
994** The [SQLITE_FCNTL_TRACE] file control provides advisory information
995** to the VFS about what the higher layers of the SQLite stack are doing.
996** This file control is used by some VFS activity tracing [shims].
997** The argument is a zero-terminated string. Higher layers in the
998** SQLite stack may generate instances of this file control if
999** the [SQLITE_USE_FCNTL_TRACE] compile-time option is enabled.
1000**
drhb959a012013-12-07 12:29:22 +00001001** <li>[[SQLITE_FCNTL_HAS_MOVED]]
1002** The [SQLITE_FCNTL_HAS_MOVED] file control interprets its argument as a
1003** pointer to an integer and it writes a boolean into that integer depending
1004** on whether or not the file has been renamed, moved, or deleted since it
1005** was first opened.
1006**
mistachkin1b361ff2016-05-03 19:36:54 +00001007** <li>[[SQLITE_FCNTL_WIN32_GET_HANDLE]]
1008** The [SQLITE_FCNTL_WIN32_GET_HANDLE] opcode can be used to obtain the
1009** underlying native file handle associated with a file handle. This file
1010** control interprets its argument as a pointer to a native file handle and
1011** writes the resulting value there.
1012**
mistachkin6b98d672014-05-30 16:42:35 +00001013** <li>[[SQLITE_FCNTL_WIN32_SET_HANDLE]]
1014** The [SQLITE_FCNTL_WIN32_SET_HANDLE] opcode is used for debugging. This
1015** opcode causes the xFileControl method to swap the file handle with the one
1016** pointed to by the pArg argument. This capability is used during testing
1017** and only needs to be supported when SQLITE_TEST is defined.
1018**
mistachkin2efcf2a2015-05-30 22:05:17 +00001019** <li>[[SQLITE_FCNTL_WAL_BLOCK]]
drha5eaece2015-03-17 16:59:57 +00001020** The [SQLITE_FCNTL_WAL_BLOCK] is a signal to the VFS layer that it might
drhbbf76ee2015-03-10 20:22:35 +00001021** be advantageous to block on the next WAL lock if the lock is not immediately
drha5eaece2015-03-17 16:59:57 +00001022** available. The WAL subsystem issues this signal during rare
drhbbf76ee2015-03-10 20:22:35 +00001023** circumstances in order to fix a problem with priority inversion.
1024** Applications should <em>not</em> use this file-control.
1025**
dan04f121c2015-02-23 15:41:48 +00001026** <li>[[SQLITE_FCNTL_ZIPVFS]]
1027** The [SQLITE_FCNTL_ZIPVFS] opcode is implemented by zipvfs only. All other
1028** VFS should return SQLITE_NOTFOUND for this opcode.
dan504ab3b2015-05-19 16:26:51 +00001029**
drhcfb8f8d2015-07-23 20:44:49 +00001030** <li>[[SQLITE_FCNTL_RBU]]
1031** The [SQLITE_FCNTL_RBU] opcode is implemented by the special VFS used by
1032** the RBU extension only. All other VFS should return SQLITE_NOTFOUND for
dan504ab3b2015-05-19 16:26:51 +00001033** this opcode.
drh466004d2017-07-19 11:20:32 +00001034**
1035** <li>[[SQLITE_FCNTL_BEGIN_ATOMIC_WRITE]]
drhd080e3d2017-07-21 14:49:58 +00001036** If the [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] opcode returns SQLITE_OK, then
1037** the file descriptor is placed in "batch write mode", which
drh466004d2017-07-19 11:20:32 +00001038** means all subsequent write operations will be deferred and done
1039** atomically at the next [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE]. Systems
1040** that do not support batch atomic writes will return SQLITE_NOTFOUND.
drhd080e3d2017-07-21 14:49:58 +00001041** ^Following a successful SQLITE_FCNTL_BEGIN_ATOMIC_WRITE and prior to
1042** the closing [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE] or
1043** [SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE], SQLite will make
1044** no VFS interface calls on the same [sqlite3_file] file descriptor
1045** except for calls to the xWrite method and the xFileControl method
1046** with [SQLITE_FCNTL_SIZE_HINT].
drh466004d2017-07-19 11:20:32 +00001047**
1048** <li>[[SQLITE_FCNTL_COMMIT_ATOMIC_WRITE]]
drhd080e3d2017-07-21 14:49:58 +00001049** The [SQLITE_FCNTL_COMMIT_ATOMIC_WRITE] opcode causes all write
drh466004d2017-07-19 11:20:32 +00001050** operations since the previous successful call to
1051** [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] to be performed atomically.
1052** This file control returns [SQLITE_OK] if and only if the writes were
1053** all performed successfully and have been committed to persistent storage.
drhd080e3d2017-07-21 14:49:58 +00001054** ^Regardless of whether or not it is successful, this file control takes
1055** the file descriptor out of batch write mode so that all subsequent
1056** write operations are independent.
1057** ^SQLite will never invoke SQLITE_FCNTL_COMMIT_ATOMIC_WRITE without
1058** a prior successful call to [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE].
drh35270d22017-07-20 21:18:49 +00001059**
1060** <li>[[SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE]]
drhd080e3d2017-07-21 14:49:58 +00001061** The [SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE] opcode causes all write
drh35270d22017-07-20 21:18:49 +00001062** operations since the previous successful call to
drhd080e3d2017-07-21 14:49:58 +00001063** [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE] to be rolled back.
1064** ^This file control takes the file descriptor out of batch write mode
1065** so that all subsequent write operations are independent.
1066** ^SQLite will never invoke SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE without
1067** a prior successful call to [SQLITE_FCNTL_BEGIN_ATOMIC_WRITE].
drh696b33e2012-12-06 19:01:42 +00001068** </ul>
drh9e33c2c2007-08-31 18:34:59 +00001069*/
drhcb15f352011-12-23 01:04:17 +00001070#define SQLITE_FCNTL_LOCKSTATE 1
drh883ad042015-02-19 00:29:11 +00001071#define SQLITE_FCNTL_GET_LOCKPROXYFILE 2
1072#define SQLITE_FCNTL_SET_LOCKPROXYFILE 3
1073#define SQLITE_FCNTL_LAST_ERRNO 4
drhcb15f352011-12-23 01:04:17 +00001074#define SQLITE_FCNTL_SIZE_HINT 5
1075#define SQLITE_FCNTL_CHUNK_SIZE 6
1076#define SQLITE_FCNTL_FILE_POINTER 7
1077#define SQLITE_FCNTL_SYNC_OMITTED 8
1078#define SQLITE_FCNTL_WIN32_AV_RETRY 9
1079#define SQLITE_FCNTL_PERSIST_WAL 10
1080#define SQLITE_FCNTL_OVERWRITE 11
1081#define SQLITE_FCNTL_VFSNAME 12
1082#define SQLITE_FCNTL_POWERSAFE_OVERWRITE 13
drh06fd5d62012-02-22 14:45:19 +00001083#define SQLITE_FCNTL_PRAGMA 14
dan80bb6f82012-10-01 18:44:33 +00001084#define SQLITE_FCNTL_BUSYHANDLER 15
drh696b33e2012-12-06 19:01:42 +00001085#define SQLITE_FCNTL_TEMPFILENAME 16
drh9b4c59f2013-04-15 17:03:42 +00001086#define SQLITE_FCNTL_MMAP_SIZE 18
drh8f8b2312013-10-18 20:03:43 +00001087#define SQLITE_FCNTL_TRACE 19
drhb959a012013-12-07 12:29:22 +00001088#define SQLITE_FCNTL_HAS_MOVED 20
dan6f68f162013-12-10 17:34:53 +00001089#define SQLITE_FCNTL_SYNC 21
1090#define SQLITE_FCNTL_COMMIT_PHASETWO 22
mistachkin6b98d672014-05-30 16:42:35 +00001091#define SQLITE_FCNTL_WIN32_SET_HANDLE 23
drhbbf76ee2015-03-10 20:22:35 +00001092#define SQLITE_FCNTL_WAL_BLOCK 24
dan6da7a0a2015-03-24 18:21:41 +00001093#define SQLITE_FCNTL_ZIPVFS 25
drhcfb8f8d2015-07-23 20:44:49 +00001094#define SQLITE_FCNTL_RBU 26
drh790f2872015-11-28 18:06:36 +00001095#define SQLITE_FCNTL_VFS_POINTER 27
drh21d61852016-01-08 02:27:01 +00001096#define SQLITE_FCNTL_JOURNAL_POINTER 28
mistachkin1b361ff2016-05-03 19:36:54 +00001097#define SQLITE_FCNTL_WIN32_GET_HANDLE 29
dan14800952016-10-17 15:28:39 +00001098#define SQLITE_FCNTL_PDB 30
danefe16972017-07-20 19:49:14 +00001099#define SQLITE_FCNTL_BEGIN_ATOMIC_WRITE 31
1100#define SQLITE_FCNTL_COMMIT_ATOMIC_WRITE 32
1101#define SQLITE_FCNTL_ROLLBACK_ATOMIC_WRITE 33
dan999cd082013-12-09 20:42:03 +00001102
drh883ad042015-02-19 00:29:11 +00001103/* deprecated names */
1104#define SQLITE_GET_LOCKPROXYFILE SQLITE_FCNTL_GET_LOCKPROXYFILE
1105#define SQLITE_SET_LOCKPROXYFILE SQLITE_FCNTL_SET_LOCKPROXYFILE
1106#define SQLITE_LAST_ERRNO SQLITE_FCNTL_LAST_ERRNO
1107
1108
drh9e33c2c2007-08-31 18:34:59 +00001109/*
drhd68eee02009-12-11 03:44:18 +00001110** CAPI3REF: Mutex Handle
drh6d2069d2007-08-14 01:58:53 +00001111**
drhd84f9462007-08-15 11:28:56 +00001112** The mutex module within SQLite defines [sqlite3_mutex] to be an
drh33c1be32008-01-30 16:16:14 +00001113** abstract type for a mutex object. The SQLite core never looks
1114** at the internal representation of an [sqlite3_mutex]. It only
drhd84f9462007-08-15 11:28:56 +00001115** deals with pointers to the [sqlite3_mutex] object.
drh6bdec4a2007-08-16 19:40:16 +00001116**
1117** Mutexes are created using [sqlite3_mutex_alloc()].
drh6d2069d2007-08-14 01:58:53 +00001118*/
1119typedef struct sqlite3_mutex sqlite3_mutex;
1120
1121/*
drh32c83c82016-08-01 14:35:48 +00001122** CAPI3REF: Loadable Extension Thunk
1123**
1124** A pointer to the opaque sqlite3_api_routines structure is passed as
1125** the third parameter to entry points of [loadable extensions]. This
1126** structure must be typedefed in order to work around compiler warnings
1127** on some platforms.
1128*/
1129typedef struct sqlite3_api_routines sqlite3_api_routines;
1130
1131/*
drhd68eee02009-12-11 03:44:18 +00001132** CAPI3REF: OS Interface Object
drh6d2069d2007-08-14 01:58:53 +00001133**
mihailim362cc832008-06-21 06:16:42 +00001134** An instance of the sqlite3_vfs object defines the interface between
1135** the SQLite core and the underlying operating system. The "vfs"
drh1c485302011-05-20 20:42:11 +00001136** in the name of the object stands for "virtual file system". See
1137** the [VFS | VFS documentation] for further information.
drh6d2069d2007-08-14 01:58:53 +00001138**
drh592eca12017-11-08 02:50:09 +00001139** The VFS interface is sometimes extended by adding new methods onto
1140** the end. Each time such an extension occurs, the iVersion field
1141** is incremented. The iVersion value started out as 1 in
1142** SQLite [version 3.5.0] on [dateof:3.5.0], then increased to 2
1143** with SQLite [version 3.7.0] on [dateof:3.7.0], and then increased
1144** to 3 with SQLite [version 3.7.6] on [dateof:3.7.6]. Additional fields
1145** may be appended to the sqlite3_vfs object and the iVersion value
1146** may increase again in future versions of SQLite.
1147** Note that the structure
1148** of the sqlite3_vfs object changes in the transition from
1149** SQLite [version 3.5.9] to [version 3.6.0] on [dateof:3.6.0]
1150** and yet the iVersion field was not modified.
drh6bdec4a2007-08-16 19:40:16 +00001151**
drh4ff7fa02007-09-01 18:17:21 +00001152** The szOsFile field is the size of the subclassed [sqlite3_file]
drhd84f9462007-08-15 11:28:56 +00001153** structure used by this VFS. mxPathname is the maximum length of
1154** a pathname in this VFS.
1155**
drhb4d58ae2008-02-21 20:17:06 +00001156** Registered sqlite3_vfs objects are kept on a linked list formed by
drh79491ab2007-09-04 12:00:00 +00001157** the pNext pointer. The [sqlite3_vfs_register()]
1158** and [sqlite3_vfs_unregister()] interfaces manage this list
1159** in a thread-safe way. The [sqlite3_vfs_find()] interface
drh4766b292008-06-26 02:53:02 +00001160** searches the list. Neither the application code nor the VFS
1161** implementation should use the pNext pointer.
drhd84f9462007-08-15 11:28:56 +00001162**
mihailima3f64902008-06-21 13:35:56 +00001163** The pNext field is the only field in the sqlite3_vfs
drh1cc8c442007-08-24 16:08:29 +00001164** structure that SQLite will ever modify. SQLite will only access
1165** or modify this field while holding a particular static mutex.
1166** The application should never modify anything within the sqlite3_vfs
1167** object once the object has been registered.
1168**
drhd84f9462007-08-15 11:28:56 +00001169** The zName field holds the name of the VFS module. The name must
1170** be unique across all VFS modules.
1171**
drhb706fe52011-05-11 20:54:32 +00001172** [[sqlite3_vfs.xOpen]]
drh99b70772010-09-07 23:28:58 +00001173** ^SQLite guarantees that the zFilename parameter to xOpen
drh4766b292008-06-26 02:53:02 +00001174** is either a NULL pointer or string obtained
drh99b70772010-09-07 23:28:58 +00001175** from xFullPathname() with an optional suffix added.
1176** ^If a suffix is added to the zFilename parameter, it will
1177** consist of a single "-" character followed by no more than
drh2faf5f52011-12-30 15:17:47 +00001178** 11 alphanumeric and/or "-" characters.
drh99b70772010-09-07 23:28:58 +00001179** ^SQLite further guarantees that
drh4766b292008-06-26 02:53:02 +00001180** the string will be valid and unchanged until xClose() is
drh9afedcc2009-06-19 22:50:31 +00001181** called. Because of the previous sentence,
drh4766b292008-06-26 02:53:02 +00001182** the [sqlite3_file] can safely store a pointer to the
drh6d2069d2007-08-14 01:58:53 +00001183** filename if it needs to remember the filename for some reason.
drhbfccdaf2010-09-01 19:29:57 +00001184** If the zFilename parameter to xOpen is a NULL pointer then xOpen
1185** must invent its own temporary name for the file. ^Whenever the
drh4766b292008-06-26 02:53:02 +00001186** xFilename parameter is NULL it will also be the case that the
1187** flags parameter will include [SQLITE_OPEN_DELETEONCLOSE].
drhd84f9462007-08-15 11:28:56 +00001188**
drh032ca702008-12-10 11:44:30 +00001189** The flags argument to xOpen() includes all bits set in
drhf5befa02007-12-06 02:42:07 +00001190** the flags argument to [sqlite3_open_v2()]. Or if [sqlite3_open()]
1191** or [sqlite3_open16()] is used, then flags includes at least
drh032ca702008-12-10 11:44:30 +00001192** [SQLITE_OPEN_READWRITE] | [SQLITE_OPEN_CREATE].
drh6d2069d2007-08-14 01:58:53 +00001193** If xOpen() opens a file read-only then it sets *pOutFlags to
mihailim362cc832008-06-21 06:16:42 +00001194** include [SQLITE_OPEN_READONLY]. Other bits in *pOutFlags may be set.
1195**
drhbfccdaf2010-09-01 19:29:57 +00001196** ^(SQLite will also add one of the following flags to the xOpen()
drh6d2069d2007-08-14 01:58:53 +00001197** call, depending on the object being opened:
mihailim362cc832008-06-21 06:16:42 +00001198**
drh6d2069d2007-08-14 01:58:53 +00001199** <ul>
1200** <li> [SQLITE_OPEN_MAIN_DB]
1201** <li> [SQLITE_OPEN_MAIN_JOURNAL]
1202** <li> [SQLITE_OPEN_TEMP_DB]
1203** <li> [SQLITE_OPEN_TEMP_JOURNAL]
drh33f4e022007-09-03 15:19:34 +00001204** <li> [SQLITE_OPEN_TRANSIENT_DB]
drh6d2069d2007-08-14 01:58:53 +00001205** <li> [SQLITE_OPEN_SUBJOURNAL]
1206** <li> [SQLITE_OPEN_MASTER_JOURNAL]
drhbfccdaf2010-09-01 19:29:57 +00001207** <li> [SQLITE_OPEN_WAL]
1208** </ul>)^
drhd84f9462007-08-15 11:28:56 +00001209**
drh6d2069d2007-08-14 01:58:53 +00001210** The file I/O implementation can use the object type flags to
mihailim362cc832008-06-21 06:16:42 +00001211** change the way it deals with files. For example, an application
mlcreechb2799412008-03-07 03:20:31 +00001212** that does not care about crash recovery or rollback might make
1213** the open of a journal file a no-op. Writes to this journal would
mihailim362cc832008-06-21 06:16:42 +00001214** also be no-ops, and any attempt to read the journal would return
1215** SQLITE_IOERR. Or the implementation might recognize that a database
1216** file will be doing page-aligned sector reads and writes in a random
mlcreechb2799412008-03-07 03:20:31 +00001217** order and set up its I/O subsystem accordingly.
mihailim362cc832008-06-21 06:16:42 +00001218**
1219** SQLite might also add one of the following flags to the xOpen method:
1220**
drh6d2069d2007-08-14 01:58:53 +00001221** <ul>
1222** <li> [SQLITE_OPEN_DELETEONCLOSE]
1223** <li> [SQLITE_OPEN_EXCLUSIVE]
1224** </ul>
mihailim362cc832008-06-21 06:16:42 +00001225**
drh032ca702008-12-10 11:44:30 +00001226** The [SQLITE_OPEN_DELETEONCLOSE] flag means the file should be
drhbfccdaf2010-09-01 19:29:57 +00001227** deleted when it is closed. ^The [SQLITE_OPEN_DELETEONCLOSE]
1228** will be set for TEMP databases and their journals, transient
1229** databases, and subjournals.
mihailim04bcc002008-06-22 10:21:27 +00001230**
drhbfccdaf2010-09-01 19:29:57 +00001231** ^The [SQLITE_OPEN_EXCLUSIVE] flag is always used in conjunction
shane089b0a42009-05-14 03:21:28 +00001232** with the [SQLITE_OPEN_CREATE] flag, which are both directly
1233** analogous to the O_EXCL and O_CREAT flags of the POSIX open()
1234** API. The SQLITE_OPEN_EXCLUSIVE flag, when paired with the
1235** SQLITE_OPEN_CREATE, is used to indicate that file should always
1236** be created, and that it is an error if it already exists.
1237** It is <i>not</i> used to indicate the file should be opened
1238** for exclusive access.
mihailim362cc832008-06-21 06:16:42 +00001239**
drhbfccdaf2010-09-01 19:29:57 +00001240** ^At least szOsFile bytes of memory are allocated by SQLite
mihailim362cc832008-06-21 06:16:42 +00001241** to hold the [sqlite3_file] structure passed as the third
drh032ca702008-12-10 11:44:30 +00001242** argument to xOpen. The xOpen method does not have to
drh9afedcc2009-06-19 22:50:31 +00001243** allocate the structure; it should just fill it in. Note that
1244** the xOpen method must set the sqlite3_file.pMethods to either
1245** a valid [sqlite3_io_methods] object or to NULL. xOpen must do
1246** this even if the open fails. SQLite expects that the sqlite3_file.pMethods
1247** element will be valid after xOpen returns regardless of the success
1248** or failure of the xOpen call.
mihailim362cc832008-06-21 06:16:42 +00001249**
drhb706fe52011-05-11 20:54:32 +00001250** [[sqlite3_vfs.xAccess]]
drhbfccdaf2010-09-01 19:29:57 +00001251** ^The flags argument to xAccess() may be [SQLITE_ACCESS_EXISTS]
mihailim362cc832008-06-21 06:16:42 +00001252** to test for the existence of a file, or [SQLITE_ACCESS_READWRITE] to
1253** test whether a file is readable and writable, or [SQLITE_ACCESS_READ]
drh032ca702008-12-10 11:44:30 +00001254** to test whether a file is at least readable. The file can be a
drh6d2069d2007-08-14 01:58:53 +00001255** directory.
mihailim362cc832008-06-21 06:16:42 +00001256**
drhbfccdaf2010-09-01 19:29:57 +00001257** ^SQLite will always allocate at least mxPathname+1 bytes for the
drh032ca702008-12-10 11:44:30 +00001258** output buffer xFullPathname. The exact size of the output buffer
1259** is also passed as a parameter to both methods. If the output buffer
mihailim362cc832008-06-21 06:16:42 +00001260** is not large enough, [SQLITE_CANTOPEN] should be returned. Since this is
1261** handled as a fatal error by SQLite, vfs implementations should endeavor
1262** to prevent this by setting mxPathname to a sufficiently large value.
1263**
drh2667be52010-07-03 17:13:31 +00001264** The xRandomness(), xSleep(), xCurrentTime(), and xCurrentTimeInt64()
1265** interfaces are not strictly a part of the filesystem, but they are
drhd84f9462007-08-15 11:28:56 +00001266** included in the VFS structure for completeness.
drh6d2069d2007-08-14 01:58:53 +00001267** The xRandomness() function attempts to return nBytes bytes
1268** of good-quality randomness into zOut. The return value is
mihailim362cc832008-06-21 06:16:42 +00001269** the actual number of bytes of randomness obtained.
1270** The xSleep() method causes the calling thread to sleep for at
drhbfccdaf2010-09-01 19:29:57 +00001271** least the number of microseconds given. ^The xCurrentTime()
drh2667be52010-07-03 17:13:31 +00001272** method returns a Julian Day Number for the current date and time as
1273** a floating point value.
drhbfccdaf2010-09-01 19:29:57 +00001274** ^The xCurrentTimeInt64() method returns, as an integer, the Julian
drh8a17be02011-06-20 20:39:12 +00001275** Day Number multiplied by 86400000 (the number of milliseconds in
drh2667be52010-07-03 17:13:31 +00001276** a 24-hour day).
1277** ^SQLite will use the xCurrentTimeInt64() method to get the current
1278** date and time if that method is available (if iVersion is 2 or
1279** greater and the function pointer is not NULL) and will fall back
1280** to xCurrentTime() if xCurrentTimeInt64() is unavailable.
drh6f6e6892011-03-08 16:39:29 +00001281**
1282** ^The xSetSystemCall(), xGetSystemCall(), and xNestSystemCall() interfaces
1283** are not used by the SQLite core. These optional interfaces are provided
1284** by some VFSes to facilitate testing of the VFS code. By overriding
1285** system calls with functions under its control, a test program can
1286** simulate faults and error conditions that would otherwise be difficult
1287** or impossible to induce. The set of system calls that can be overridden
1288** varies from one VFS to another, and from one version of the same VFS to the
1289** next. Applications that use these interfaces must be prepared for any
1290** or all of these interfaces to be NULL or for their behavior to change
1291** from one release to the next. Applications must not attempt to access
1292** any of these methods if the iVersion of the VFS is less than 3.
drh6d2069d2007-08-14 01:58:53 +00001293*/
drhd84f9462007-08-15 11:28:56 +00001294typedef struct sqlite3_vfs sqlite3_vfs;
drh58ad5802011-03-23 22:02:23 +00001295typedef void (*sqlite3_syscall_ptr)(void);
drhd84f9462007-08-15 11:28:56 +00001296struct sqlite3_vfs {
drh99ab3b12011-03-02 15:09:07 +00001297 int iVersion; /* Structure version number (currently 3) */
drh6d2069d2007-08-14 01:58:53 +00001298 int szOsFile; /* Size of subclassed sqlite3_file */
drh6d2069d2007-08-14 01:58:53 +00001299 int mxPathname; /* Maximum file pathname length */
drhd84f9462007-08-15 11:28:56 +00001300 sqlite3_vfs *pNext; /* Next registered VFS */
drhd84f9462007-08-15 11:28:56 +00001301 const char *zName; /* Name of this virtual file system */
drh1cc8c442007-08-24 16:08:29 +00001302 void *pAppData; /* Pointer to application-specific data */
drh153c62c2007-08-24 03:51:33 +00001303 int (*xOpen)(sqlite3_vfs*, const char *zName, sqlite3_file*,
drh6d2069d2007-08-14 01:58:53 +00001304 int flags, int *pOutFlags);
drh153c62c2007-08-24 03:51:33 +00001305 int (*xDelete)(sqlite3_vfs*, const char *zName, int syncDir);
danielk1977861f7452008-06-05 11:39:11 +00001306 int (*xAccess)(sqlite3_vfs*, const char *zName, int flags, int *pResOut);
danielk1977adfb9b02007-09-17 07:02:56 +00001307 int (*xFullPathname)(sqlite3_vfs*, const char *zName, int nOut, char *zOut);
drh153c62c2007-08-24 03:51:33 +00001308 void *(*xDlOpen)(sqlite3_vfs*, const char *zFilename);
1309 void (*xDlError)(sqlite3_vfs*, int nByte, char *zErrMsg);
drh1875f7a2008-12-08 18:19:17 +00001310 void (*(*xDlSym)(sqlite3_vfs*,void*, const char *zSymbol))(void);
drh153c62c2007-08-24 03:51:33 +00001311 void (*xDlClose)(sqlite3_vfs*, void*);
1312 int (*xRandomness)(sqlite3_vfs*, int nByte, char *zOut);
1313 int (*xSleep)(sqlite3_vfs*, int microseconds);
1314 int (*xCurrentTime)(sqlite3_vfs*, double*);
danielk1977bcb97fe2008-06-06 15:49:29 +00001315 int (*xGetLastError)(sqlite3_vfs*, int, char *);
drhf2424c52010-04-26 00:04:55 +00001316 /*
1317 ** The methods above are in version 1 of the sqlite_vfs object
1318 ** definition. Those that follow are added in version 2 or later
1319 */
drhf2424c52010-04-26 00:04:55 +00001320 int (*xCurrentTimeInt64)(sqlite3_vfs*, sqlite3_int64*);
1321 /*
1322 ** The methods above are in versions 1 and 2 of the sqlite_vfs object.
drh99ab3b12011-03-02 15:09:07 +00001323 ** Those below are for version 3 and greater.
1324 */
drh58ad5802011-03-23 22:02:23 +00001325 int (*xSetSystemCall)(sqlite3_vfs*, const char *zName, sqlite3_syscall_ptr);
1326 sqlite3_syscall_ptr (*xGetSystemCall)(sqlite3_vfs*, const char *zName);
drh1df30962011-03-02 19:06:42 +00001327 const char *(*xNextSystemCall)(sqlite3_vfs*, const char *zName);
drh99ab3b12011-03-02 15:09:07 +00001328 /*
1329 ** The methods above are in versions 1 through 3 of the sqlite_vfs object.
drh5f7d4112016-02-26 13:22:21 +00001330 ** New fields may be appended in future versions. The iVersion
drhf2424c52010-04-26 00:04:55 +00001331 ** value will increment whenever this happens.
1332 */
drh6d2069d2007-08-14 01:58:53 +00001333};
1334
drh50d3f902007-08-27 21:10:36 +00001335/*
drhd68eee02009-12-11 03:44:18 +00001336** CAPI3REF: Flags for the xAccess VFS method
drh50d3f902007-08-27 21:10:36 +00001337**
drh032ca702008-12-10 11:44:30 +00001338** These integer constants can be used as the third parameter to
drhfb434032009-12-11 23:11:26 +00001339** the xAccess method of an [sqlite3_vfs] object. They determine
mihailim04bcc002008-06-22 10:21:27 +00001340** what kind of permissions the xAccess method is looking for.
drh032ca702008-12-10 11:44:30 +00001341** With SQLITE_ACCESS_EXISTS, the xAccess method
mihailim04bcc002008-06-22 10:21:27 +00001342** simply checks whether the file exists.
drh032ca702008-12-10 11:44:30 +00001343** With SQLITE_ACCESS_READWRITE, the xAccess method
drh21032452010-07-13 14:48:27 +00001344** checks whether the named directory is both readable and writable
1345** (in other words, if files can be added, removed, and renamed within
1346** the directory).
1347** The SQLITE_ACCESS_READWRITE constant is currently used only by the
1348** [temp_store_directory pragma], though this could change in a future
1349** release of SQLite.
drh032ca702008-12-10 11:44:30 +00001350** With SQLITE_ACCESS_READ, the xAccess method
drh21032452010-07-13 14:48:27 +00001351** checks whether the file is readable. The SQLITE_ACCESS_READ constant is
1352** currently unused, though it might be used in a future release of
1353** SQLite.
drh50d3f902007-08-27 21:10:36 +00001354*/
danielk1977b4b47412007-08-17 15:53:36 +00001355#define SQLITE_ACCESS_EXISTS 0
drh21032452010-07-13 14:48:27 +00001356#define SQLITE_ACCESS_READWRITE 1 /* Used by PRAGMA temp_store_directory */
1357#define SQLITE_ACCESS_READ 2 /* Unused */
danielk1977b4b47412007-08-17 15:53:36 +00001358
drh6d2069d2007-08-14 01:58:53 +00001359/*
drhf2424c52010-04-26 00:04:55 +00001360** CAPI3REF: Flags for the xShmLock VFS method
1361**
drh73b64e42010-05-30 19:55:15 +00001362** These integer constants define the various locking operations
1363** allowed by the xShmLock method of [sqlite3_io_methods]. The
1364** following are the only legal combinations of flags to the
1365** xShmLock method:
1366**
1367** <ul>
1368** <li> SQLITE_SHM_LOCK | SQLITE_SHM_SHARED
1369** <li> SQLITE_SHM_LOCK | SQLITE_SHM_EXCLUSIVE
1370** <li> SQLITE_SHM_UNLOCK | SQLITE_SHM_SHARED
1371** <li> SQLITE_SHM_UNLOCK | SQLITE_SHM_EXCLUSIVE
1372** </ul>
1373**
1374** When unlocking, the same SHARED or EXCLUSIVE flag must be supplied as
drh063970a2014-12-04 14:01:39 +00001375** was given on the corresponding lock.
drh73b64e42010-05-30 19:55:15 +00001376**
1377** The xShmLock method can transition between unlocked and SHARED or
1378** between unlocked and EXCLUSIVE. It cannot transition between SHARED
1379** and EXCLUSIVE.
drhf2424c52010-04-26 00:04:55 +00001380*/
drh73b64e42010-05-30 19:55:15 +00001381#define SQLITE_SHM_UNLOCK 1
1382#define SQLITE_SHM_LOCK 2
1383#define SQLITE_SHM_SHARED 4
1384#define SQLITE_SHM_EXCLUSIVE 8
1385
1386/*
1387** CAPI3REF: Maximum xShmLock index
1388**
1389** The xShmLock method on [sqlite3_io_methods] may use values
1390** between 0 and this upper bound as its "offset" argument.
1391** The SQLite core will never attempt to acquire or release a
1392** lock outside of this range
1393*/
1394#define SQLITE_SHM_NLOCK 8
1395
drhf2424c52010-04-26 00:04:55 +00001396
1397/*
drhd68eee02009-12-11 03:44:18 +00001398** CAPI3REF: Initialize The SQLite Library
drh673299b2008-06-09 21:57:22 +00001399**
drhd68eee02009-12-11 03:44:18 +00001400** ^The sqlite3_initialize() routine initializes the
1401** SQLite library. ^The sqlite3_shutdown() routine
drhcb041342008-06-12 00:07:29 +00001402** deallocates any resources that were allocated by sqlite3_initialize().
drh481aa742009-11-05 18:46:02 +00001403** These routines are designed to aid in process initialization and
drh9524f4b2009-10-20 15:27:55 +00001404** shutdown on embedded systems. Workstation applications using
1405** SQLite normally do not need to invoke either of these routines.
drh673299b2008-06-09 21:57:22 +00001406**
drhcb041342008-06-12 00:07:29 +00001407** A call to sqlite3_initialize() is an "effective" call if it is
1408** the first time sqlite3_initialize() is invoked during the lifetime of
1409** the process, or if it is the first time sqlite3_initialize() is invoked
drhd68eee02009-12-11 03:44:18 +00001410** following a call to sqlite3_shutdown(). ^(Only an effective call
drhcb041342008-06-12 00:07:29 +00001411** of sqlite3_initialize() does any initialization. All other calls
drhd68eee02009-12-11 03:44:18 +00001412** are harmless no-ops.)^
drhcb041342008-06-12 00:07:29 +00001413**
drhd1a24402009-04-19 12:23:58 +00001414** A call to sqlite3_shutdown() is an "effective" call if it is the first
drhd68eee02009-12-11 03:44:18 +00001415** call to sqlite3_shutdown() since the last sqlite3_initialize(). ^(Only
drhd1a24402009-04-19 12:23:58 +00001416** an effective call to sqlite3_shutdown() does any deinitialization.
drhd68eee02009-12-11 03:44:18 +00001417** All other valid calls to sqlite3_shutdown() are harmless no-ops.)^
drhd1a24402009-04-19 12:23:58 +00001418**
drh9524f4b2009-10-20 15:27:55 +00001419** The sqlite3_initialize() interface is threadsafe, but sqlite3_shutdown()
1420** is not. The sqlite3_shutdown() interface must only be called from a
1421** single thread. All open [database connections] must be closed and all
1422** other SQLite resources must be deallocated prior to invoking
1423** sqlite3_shutdown().
1424**
drhd68eee02009-12-11 03:44:18 +00001425** Among other things, ^sqlite3_initialize() will invoke
1426** sqlite3_os_init(). Similarly, ^sqlite3_shutdown()
drh9524f4b2009-10-20 15:27:55 +00001427** will invoke sqlite3_os_end().
drh673299b2008-06-09 21:57:22 +00001428**
drhd68eee02009-12-11 03:44:18 +00001429** ^The sqlite3_initialize() routine returns [SQLITE_OK] on success.
1430** ^If for some reason, sqlite3_initialize() is unable to initialize
drhce5a5a02008-06-10 17:41:44 +00001431** the library (perhaps it is unable to allocate a needed resource such
drhadfae6c2008-10-10 17:26:35 +00001432** as a mutex) it returns an [error code] other than [SQLITE_OK].
drh673299b2008-06-09 21:57:22 +00001433**
drhd68eee02009-12-11 03:44:18 +00001434** ^The sqlite3_initialize() routine is called internally by many other
drhcb041342008-06-12 00:07:29 +00001435** SQLite interfaces so that an application usually does not need to
drhce5a5a02008-06-10 17:41:44 +00001436** invoke sqlite3_initialize() directly. For example, [sqlite3_open()]
1437** calls sqlite3_initialize() so the SQLite library will be automatically
1438** initialized when [sqlite3_open()] is called if it has not be initialized
drhd68eee02009-12-11 03:44:18 +00001439** already. ^However, if SQLite is compiled with the [SQLITE_OMIT_AUTOINIT]
drhcb041342008-06-12 00:07:29 +00001440** compile-time option, then the automatic calls to sqlite3_initialize()
1441** are omitted and the application must call sqlite3_initialize() directly
1442** prior to using any other SQLite interface. For maximum portability,
1443** it is recommended that applications always invoke sqlite3_initialize()
1444** directly prior to using any other SQLite interface. Future releases
1445** of SQLite may require this. In other words, the behavior exhibited
drhadfae6c2008-10-10 17:26:35 +00001446** when SQLite is compiled with [SQLITE_OMIT_AUTOINIT] might become the
drhcb041342008-06-12 00:07:29 +00001447** default behavior in some future release of SQLite.
drh673299b2008-06-09 21:57:22 +00001448**
drhcb041342008-06-12 00:07:29 +00001449** The sqlite3_os_init() routine does operating-system specific
1450** initialization of the SQLite library. The sqlite3_os_end()
1451** routine undoes the effect of sqlite3_os_init(). Typical tasks
1452** performed by these routines include allocation or deallocation
1453** of static resources, initialization of global variables,
1454** setting up a default [sqlite3_vfs] module, or setting up
mihailima3f64902008-06-21 13:35:56 +00001455** a default configuration using [sqlite3_config()].
drh673299b2008-06-09 21:57:22 +00001456**
drhcb041342008-06-12 00:07:29 +00001457** The application should never invoke either sqlite3_os_init()
1458** or sqlite3_os_end() directly. The application should only invoke
1459** sqlite3_initialize() and sqlite3_shutdown(). The sqlite3_os_init()
mihailima3f64902008-06-21 13:35:56 +00001460** interface is called automatically by sqlite3_initialize() and
drhcb041342008-06-12 00:07:29 +00001461** sqlite3_os_end() is called by sqlite3_shutdown(). Appropriate
1462** implementations for sqlite3_os_init() and sqlite3_os_end()
shane7c7c3112009-08-17 15:31:23 +00001463** are built into SQLite when it is compiled for Unix, Windows, or OS/2.
drh6aa5f152009-08-19 15:57:07 +00001464** When [custom builds | built for other platforms]
1465** (using the [SQLITE_OS_OTHER=1] compile-time
drhcb041342008-06-12 00:07:29 +00001466** option) the application must supply a suitable implementation for
1467** sqlite3_os_init() and sqlite3_os_end(). An application-supplied
1468** implementation of sqlite3_os_init() or sqlite3_os_end()
drhadfae6c2008-10-10 17:26:35 +00001469** must return [SQLITE_OK] on success and some other [error code] upon
drhcb041342008-06-12 00:07:29 +00001470** failure.
drh673299b2008-06-09 21:57:22 +00001471*/
drhce5a5a02008-06-10 17:41:44 +00001472int sqlite3_initialize(void);
drh673299b2008-06-09 21:57:22 +00001473int sqlite3_shutdown(void);
drhcb041342008-06-12 00:07:29 +00001474int sqlite3_os_init(void);
1475int sqlite3_os_end(void);
drh673299b2008-06-09 21:57:22 +00001476
drhce5a5a02008-06-10 17:41:44 +00001477/*
drhd68eee02009-12-11 03:44:18 +00001478** CAPI3REF: Configuring The SQLite Library
drhce5a5a02008-06-10 17:41:44 +00001479**
1480** The sqlite3_config() interface is used to make global configuration
1481** changes to SQLite in order to tune SQLite to the specific needs of
1482** the application. The default configuration is recommended for most
1483** applications and so this routine is usually not necessary. It is
1484** provided to support rare applications with unusual needs.
1485**
drh2e25a002015-09-12 19:27:41 +00001486** <b>The sqlite3_config() interface is not threadsafe. The application
1487** must ensure that no other SQLite interfaces are invoked by other
1488** threads while sqlite3_config() is running.</b>
1489**
1490** The sqlite3_config() interface
drhce5a5a02008-06-10 17:41:44 +00001491** may only be invoked prior to library initialization using
1492** [sqlite3_initialize()] or after shutdown by [sqlite3_shutdown()].
drhd68eee02009-12-11 03:44:18 +00001493** ^If sqlite3_config() is called after [sqlite3_initialize()] and before
1494** [sqlite3_shutdown()] then it will return SQLITE_MISUSE.
1495** Note, however, that ^sqlite3_config() can be called as part of the
drh40257ff2008-06-13 18:24:27 +00001496** implementation of an application-defined [sqlite3_os_init()].
drhce5a5a02008-06-10 17:41:44 +00001497**
1498** The first argument to sqlite3_config() is an integer
drhb706fe52011-05-11 20:54:32 +00001499** [configuration option] that determines
drhce5a5a02008-06-10 17:41:44 +00001500** what property of SQLite is to be configured. Subsequent arguments
drhb706fe52011-05-11 20:54:32 +00001501** vary depending on the [configuration option]
drhce5a5a02008-06-10 17:41:44 +00001502** in the first argument.
1503**
drhd68eee02009-12-11 03:44:18 +00001504** ^When a configuration option is set, sqlite3_config() returns [SQLITE_OK].
1505** ^If the option is unknown or SQLite is unable to set the option
drh40257ff2008-06-13 18:24:27 +00001506** then this routine returns a non-zero [error code].
drhce5a5a02008-06-10 17:41:44 +00001507*/
drh9f8da322010-03-10 20:06:37 +00001508int sqlite3_config(int, ...);
drhce5a5a02008-06-10 17:41:44 +00001509
1510/*
drhd68eee02009-12-11 03:44:18 +00001511** CAPI3REF: Configure database connections
drhd9a0a9a2015-04-14 15:14:06 +00001512** METHOD: sqlite3
drh633e6d52008-07-28 19:34:53 +00001513**
1514** The sqlite3_db_config() interface is used to make configuration
drh2462e322008-07-31 14:47:54 +00001515** changes to a [database connection]. The interface is similar to
1516** [sqlite3_config()] except that the changes apply to a single
drhe83cafd2011-03-21 17:15:58 +00001517** [database connection] (specified in the first argument).
drh2462e322008-07-31 14:47:54 +00001518**
1519** The second argument to sqlite3_db_config(D,V,...) is the
drh0d8bba92011-04-05 14:22:48 +00001520** [SQLITE_DBCONFIG_LOOKASIDE | configuration verb] - an integer code
drhe83cafd2011-03-21 17:15:58 +00001521** that indicates what aspect of the [database connection] is being configured.
1522** Subsequent arguments vary depending on the configuration verb.
drhf8cecda2008-10-10 23:48:25 +00001523**
drhd68eee02009-12-11 03:44:18 +00001524** ^Calls to sqlite3_db_config() return SQLITE_OK if and only if
1525** the call is considered successful.
drh633e6d52008-07-28 19:34:53 +00001526*/
drh9f8da322010-03-10 20:06:37 +00001527int sqlite3_db_config(sqlite3*, int op, ...);
drh633e6d52008-07-28 19:34:53 +00001528
1529/*
drhfb434032009-12-11 23:11:26 +00001530** CAPI3REF: Memory Allocation Routines
drhfec00ea2008-06-14 16:56:21 +00001531**
1532** An instance of this object defines the interface between SQLite
mihailima3f64902008-06-21 13:35:56 +00001533** and low-level memory allocation routines.
drhfec00ea2008-06-14 16:56:21 +00001534**
1535** This object is used in only one place in the SQLite interface.
1536** A pointer to an instance of this object is the argument to
drh4766b292008-06-26 02:53:02 +00001537** [sqlite3_config()] when the configuration option is
drh6aa5f152009-08-19 15:57:07 +00001538** [SQLITE_CONFIG_MALLOC] or [SQLITE_CONFIG_GETMALLOC].
1539** By creating an instance of this object
1540** and passing it to [sqlite3_config]([SQLITE_CONFIG_MALLOC])
1541** during configuration, an application can specify an alternative
1542** memory allocation subsystem for SQLite to use for all of its
1543** dynamic memory needs.
drhfec00ea2008-06-14 16:56:21 +00001544**
drh6aa5f152009-08-19 15:57:07 +00001545** Note that SQLite comes with several [built-in memory allocators]
1546** that are perfectly adequate for the overwhelming majority of applications
drhfec00ea2008-06-14 16:56:21 +00001547** and that this object is only useful to a tiny minority of applications
1548** with specialized memory allocation requirements. This object is
1549** also used during testing of SQLite in order to specify an alternative
1550** memory allocator that simulates memory out-of-memory conditions in
1551** order to verify that SQLite recovers gracefully from such
1552** conditions.
1553**
drh2d1017e2011-08-24 15:18:16 +00001554** The xMalloc, xRealloc, and xFree methods must work like the
1555** malloc(), realloc() and free() functions from the standard C library.
1556** ^SQLite guarantees that the second argument to
drh6aa5f152009-08-19 15:57:07 +00001557** xRealloc is always a value returned by a prior call to xRoundup.
drhfec00ea2008-06-14 16:56:21 +00001558**
1559** xSize should return the allocated size of a memory allocation
1560** previously obtained from xMalloc or xRealloc. The allocated size
1561** is always at least as big as the requested size but may be larger.
1562**
1563** The xRoundup method returns what would be the allocated size of
1564** a memory allocation given a particular requested size. Most memory
1565** allocators round up memory allocations at least to the next multiple
mihailima3f64902008-06-21 13:35:56 +00001566** of 8. Some allocators round up to a larger multiple or to a power of 2.
drh6aa5f152009-08-19 15:57:07 +00001567** Every memory allocation request coming in through [sqlite3_malloc()]
1568** or [sqlite3_realloc()] first calls xRoundup. If xRoundup returns 0,
1569** that causes the corresponding memory allocation to fail.
drhe5ae5732008-06-15 02:51:47 +00001570**
drh2365bac2013-11-18 18:48:50 +00001571** The xInit method initializes the memory allocator. For example,
drhfec00ea2008-06-14 16:56:21 +00001572** it might allocate any require mutexes or initialize internal data
1573** structures. The xShutdown method is invoked (indirectly) by
1574** [sqlite3_shutdown()] and should deallocate any resources acquired
1575** by xInit. The pAppData pointer is used as the only parameter to
1576** xInit and xShutdown.
drh9ac06502009-08-17 13:42:29 +00001577**
1578** SQLite holds the [SQLITE_MUTEX_STATIC_MASTER] mutex when it invokes
1579** the xInit method, so the xInit method need not be threadsafe. The
1580** xShutdown method is only called from [sqlite3_shutdown()] so it does
drh6aa5f152009-08-19 15:57:07 +00001581** not need to be threadsafe either. For all other methods, SQLite
1582** holds the [SQLITE_MUTEX_STATIC_MEM] mutex as long as the
1583** [SQLITE_CONFIG_MEMSTATUS] configuration option is turned on (which
1584** it is by default) and so the methods are automatically serialized.
1585** However, if [SQLITE_CONFIG_MEMSTATUS] is disabled, then the other
1586** methods must be threadsafe or else make their own arrangements for
1587** serialization.
drh9ac06502009-08-17 13:42:29 +00001588**
1589** SQLite will never invoke xInit() more than once without an intervening
1590** call to xShutdown().
drhfec00ea2008-06-14 16:56:21 +00001591*/
1592typedef struct sqlite3_mem_methods sqlite3_mem_methods;
1593struct sqlite3_mem_methods {
1594 void *(*xMalloc)(int); /* Memory allocation function */
1595 void (*xFree)(void*); /* Free a prior allocation */
1596 void *(*xRealloc)(void*,int); /* Resize an allocation */
1597 int (*xSize)(void*); /* Return the size of an allocation */
1598 int (*xRoundup)(int); /* Round up request size to allocation size */
1599 int (*xInit)(void*); /* Initialize the memory allocator */
1600 void (*xShutdown)(void*); /* Deinitialize the memory allocator */
1601 void *pAppData; /* Argument to xInit() and xShutdown() */
1602};
1603
1604/*
drhfb434032009-12-11 23:11:26 +00001605** CAPI3REF: Configuration Options
drhb706fe52011-05-11 20:54:32 +00001606** KEYWORDS: {configuration option}
drhce5a5a02008-06-10 17:41:44 +00001607**
1608** These constants are the available integer configuration options that
1609** can be passed as the first argument to the [sqlite3_config()] interface.
mihailima3f64902008-06-21 13:35:56 +00001610**
drha911abe2008-07-16 13:29:51 +00001611** New configuration options may be added in future releases of SQLite.
1612** Existing configuration options might be discontinued. Applications
1613** should check the return code from [sqlite3_config()] to make sure that
1614** the call worked. The [sqlite3_config()] interface will return a
1615** non-zero [error code] if a discontinued or unsupported configuration option
1616** is invoked.
1617**
drhce5a5a02008-06-10 17:41:44 +00001618** <dl>
drhb706fe52011-05-11 20:54:32 +00001619** [[SQLITE_CONFIG_SINGLETHREAD]] <dt>SQLITE_CONFIG_SINGLETHREAD</dt>
drhd68eee02009-12-11 03:44:18 +00001620** <dd>There are no arguments to this option. ^This option sets the
1621** [threading mode] to Single-thread. In other words, it disables
drhce5a5a02008-06-10 17:41:44 +00001622** all mutexing and puts SQLite into a mode where it can only be used
drhd68eee02009-12-11 03:44:18 +00001623** by a single thread. ^If SQLite is compiled with
1624** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
1625** it is not possible to change the [threading mode] from its default
1626** value of Single-thread and so [sqlite3_config()] will return
1627** [SQLITE_ERROR] if called with the SQLITE_CONFIG_SINGLETHREAD
1628** configuration option.</dd>
drhce5a5a02008-06-10 17:41:44 +00001629**
drhb706fe52011-05-11 20:54:32 +00001630** [[SQLITE_CONFIG_MULTITHREAD]] <dt>SQLITE_CONFIG_MULTITHREAD</dt>
drhd68eee02009-12-11 03:44:18 +00001631** <dd>There are no arguments to this option. ^This option sets the
1632** [threading mode] to Multi-thread. In other words, it disables
drhce5a5a02008-06-10 17:41:44 +00001633** mutexing on [database connection] and [prepared statement] objects.
1634** The application is responsible for serializing access to
1635** [database connections] and [prepared statements]. But other mutexes
1636** are enabled so that SQLite will be safe to use in a multi-threaded
drhafacce02008-09-02 21:35:03 +00001637** environment as long as no two threads attempt to use the same
drhd68eee02009-12-11 03:44:18 +00001638** [database connection] at the same time. ^If SQLite is compiled with
1639** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
1640** it is not possible to set the Multi-thread [threading mode] and
1641** [sqlite3_config()] will return [SQLITE_ERROR] if called with the
1642** SQLITE_CONFIG_MULTITHREAD configuration option.</dd>
drhce5a5a02008-06-10 17:41:44 +00001643**
drhb706fe52011-05-11 20:54:32 +00001644** [[SQLITE_CONFIG_SERIALIZED]] <dt>SQLITE_CONFIG_SERIALIZED</dt>
drhd68eee02009-12-11 03:44:18 +00001645** <dd>There are no arguments to this option. ^This option sets the
1646** [threading mode] to Serialized. In other words, this option enables
drhce5a5a02008-06-10 17:41:44 +00001647** all mutexes including the recursive
1648** mutexes on [database connection] and [prepared statement] objects.
1649** In this mode (which is the default when SQLite is compiled with
drh4766b292008-06-26 02:53:02 +00001650** [SQLITE_THREADSAFE=1]) the SQLite library will itself serialize access
drhce5a5a02008-06-10 17:41:44 +00001651** to [database connections] and [prepared statements] so that the
1652** application is free to use the same [database connection] or the
drh31d38cf2008-07-12 20:35:08 +00001653** same [prepared statement] in different threads at the same time.
drhd68eee02009-12-11 03:44:18 +00001654** ^If SQLite is compiled with
1655** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
1656** it is not possible to set the Serialized [threading mode] and
1657** [sqlite3_config()] will return [SQLITE_ERROR] if called with the
1658** SQLITE_CONFIG_SERIALIZED configuration option.</dd>
drhce5a5a02008-06-10 17:41:44 +00001659**
drhb706fe52011-05-11 20:54:32 +00001660** [[SQLITE_CONFIG_MALLOC]] <dt>SQLITE_CONFIG_MALLOC</dt>
drh5279d342014-11-04 13:41:32 +00001661** <dd> ^(The SQLITE_CONFIG_MALLOC option takes a single argument which is
1662** a pointer to an instance of the [sqlite3_mem_methods] structure.
1663** The argument specifies
mihailimdb4f2ad2008-06-21 11:20:48 +00001664** alternative low-level memory allocation routines to be used in place of
drhd68eee02009-12-11 03:44:18 +00001665** the memory allocation routines built into SQLite.)^ ^SQLite makes
1666** its own private copy of the content of the [sqlite3_mem_methods] structure
1667** before the [sqlite3_config()] call returns.</dd>
drhce5a5a02008-06-10 17:41:44 +00001668**
drhb706fe52011-05-11 20:54:32 +00001669** [[SQLITE_CONFIG_GETMALLOC]] <dt>SQLITE_CONFIG_GETMALLOC</dt>
drh5279d342014-11-04 13:41:32 +00001670** <dd> ^(The SQLITE_CONFIG_GETMALLOC option takes a single argument which
1671** is a pointer to an instance of the [sqlite3_mem_methods] structure.
1672** The [sqlite3_mem_methods]
drhd68eee02009-12-11 03:44:18 +00001673** structure is filled with the currently defined memory allocation routines.)^
drh33589792008-06-18 13:27:46 +00001674** This option can be used to overload the default memory allocation
1675** routines with a wrapper that simulations memory allocation failure or
drhd68eee02009-12-11 03:44:18 +00001676** tracks memory usage, for example. </dd>
drh33589792008-06-18 13:27:46 +00001677**
drhb2a0f752017-08-28 15:51:35 +00001678** [[SQLITE_CONFIG_SMALL_MALLOC]] <dt>SQLITE_CONFIG_SMALL_MALLOC</dt>
1679** <dd> ^The SQLITE_CONFIG_SMALL_MALLOC option takes single argument of
1680** type int, interpreted as a boolean, which if true provides a hint to
1681** SQLite that it should avoid large memory allocations if possible.
1682** SQLite will run faster if it is free to make large memory allocations,
1683** but some application might prefer to run slower in exchange for
1684** guarantees about memory fragmentation that are possible if large
1685** allocations are avoided. This hint is normally off.
1686** </dd>
1687**
drhb706fe52011-05-11 20:54:32 +00001688** [[SQLITE_CONFIG_MEMSTATUS]] <dt>SQLITE_CONFIG_MEMSTATUS</dt>
drh5279d342014-11-04 13:41:32 +00001689** <dd> ^The SQLITE_CONFIG_MEMSTATUS option takes single argument of type int,
1690** interpreted as a boolean, which enables or disables the collection of
drh86e166a2014-12-03 19:08:00 +00001691** memory allocation statistics. ^(When memory allocation statistics are
1692** disabled, the following SQLite interfaces become non-operational:
drhce5a5a02008-06-10 17:41:44 +00001693** <ul>
1694** <li> [sqlite3_memory_used()]
1695** <li> [sqlite3_memory_highwater()]
drhf82ccf62010-09-15 17:54:31 +00001696** <li> [sqlite3_soft_heap_limit64()]
drhaf89fe62015-03-23 17:25:18 +00001697** <li> [sqlite3_status64()]
drhd68eee02009-12-11 03:44:18 +00001698** </ul>)^
1699** ^Memory allocation statistics are enabled by default unless SQLite is
1700** compiled with [SQLITE_DEFAULT_MEMSTATUS]=0 in which case memory
1701** allocation statistics are disabled by default.
drhce5a5a02008-06-10 17:41:44 +00001702** </dd>
drh33589792008-06-18 13:27:46 +00001703**
drhb706fe52011-05-11 20:54:32 +00001704** [[SQLITE_CONFIG_SCRATCH]] <dt>SQLITE_CONFIG_SCRATCH</dt>
drhb2a0f752017-08-28 15:51:35 +00001705** <dd> The SQLITE_CONFIG_SCRATCH option is no longer used.
drh7b4d7802014-11-03 14:46:29 +00001706** </dd>
drh33589792008-06-18 13:27:46 +00001707**
drhb706fe52011-05-11 20:54:32 +00001708** [[SQLITE_CONFIG_PAGECACHE]] <dt>SQLITE_CONFIG_PAGECACHE</dt>
mistachkin24e98952015-11-11 18:43:49 +00001709** <dd> ^The SQLITE_CONFIG_PAGECACHE option specifies a memory pool
drh5279d342014-11-04 13:41:32 +00001710** that SQLite can use for the database page cache with the default page
1711** cache implementation.
drh3d38cec2015-11-11 15:28:52 +00001712** This configuration option is a no-op if an application-define page
1713** cache implementation is loaded using the [SQLITE_CONFIG_PCACHE2].
drh86e166a2014-12-03 19:08:00 +00001714** ^There are three arguments to SQLITE_CONFIG_PAGECACHE: A pointer to
drh3d38cec2015-11-11 15:28:52 +00001715** 8-byte aligned memory (pMem), the size of each page cache line (sz),
1716** and the number of cache lines (N).
drh6860da02009-06-09 19:53:58 +00001717** The sz argument should be the size of the largest database page
drh0ab0e052014-12-25 12:19:56 +00001718** (a power of two between 512 and 65536) plus some extra bytes for each
drhdef68892014-11-04 12:11:23 +00001719** page header. ^The number of extra bytes needed by the page header
drh3d38cec2015-11-11 15:28:52 +00001720** can be determined using [SQLITE_CONFIG_PCACHE_HDRSZ].
drhdef68892014-11-04 12:11:23 +00001721** ^It is harmless, apart from the wasted memory,
drh3d38cec2015-11-11 15:28:52 +00001722** for the sz parameter to be larger than necessary. The pMem
1723** argument must be either a NULL pointer or a pointer to an 8-byte
1724** aligned block of memory of at least sz*N bytes, otherwise
1725** subsequent behavior is undefined.
1726** ^When pMem is not NULL, SQLite will strive to use the memory provided
1727** to satisfy page cache needs, falling back to [sqlite3_malloc()] if
1728** a page cache line is larger than sz bytes or if all of the pMem buffer
1729** is exhausted.
1730** ^If pMem is NULL and N is non-zero, then each database connection
1731** does an initial bulk allocation for page cache memory
1732** from [sqlite3_malloc()] sufficient for N cache lines if N is positive or
1733** of -1024*N bytes if N is negative, . ^If additional
1734** page cache memory is needed beyond what is provided by the initial
1735** allocation, then SQLite goes to [sqlite3_malloc()] separately for each
1736** additional cache line. </dd>
drh33589792008-06-18 13:27:46 +00001737**
drhb706fe52011-05-11 20:54:32 +00001738** [[SQLITE_CONFIG_HEAP]] <dt>SQLITE_CONFIG_HEAP</dt>
drh5279d342014-11-04 13:41:32 +00001739** <dd> ^The SQLITE_CONFIG_HEAP option specifies a static memory buffer
1740** that SQLite will use for all of its dynamic memory allocation needs
drhb2a0f752017-08-28 15:51:35 +00001741** beyond those provided for by [SQLITE_CONFIG_PAGECACHE].
drh8790b6e2014-11-07 01:43:56 +00001742** ^The SQLITE_CONFIG_HEAP option is only available if SQLite is compiled
1743** with either [SQLITE_ENABLE_MEMSYS3] or [SQLITE_ENABLE_MEMSYS5] and returns
1744** [SQLITE_ERROR] if invoked otherwise.
drh5279d342014-11-04 13:41:32 +00001745** ^There are three arguments to SQLITE_CONFIG_HEAP:
1746** An 8-byte aligned pointer to the memory,
drh6860da02009-06-09 19:53:58 +00001747** the number of bytes in the memory buffer, and the minimum allocation size.
drhd68eee02009-12-11 03:44:18 +00001748** ^If the first pointer (the memory pointer) is NULL, then SQLite reverts
drh8a42cbd2008-07-10 18:13:42 +00001749** to using its default memory allocator (the system malloc() implementation),
drhd68eee02009-12-11 03:44:18 +00001750** undoing any prior invocation of [SQLITE_CONFIG_MALLOC]. ^If the
drh8790b6e2014-11-07 01:43:56 +00001751** memory pointer is not NULL then the alternative memory
drh39bf74a2009-06-09 18:02:10 +00001752** allocator is engaged to handle all of SQLites memory allocation needs.
1753** The first pointer (the memory pointer) must be aligned to an 8-byte
shaneha6ec8922011-03-09 21:36:17 +00001754** boundary or subsequent behavior of SQLite will be undefined.
drhd76b64e2011-10-19 17:13:08 +00001755** The minimum allocation size is capped at 2**12. Reasonable values
1756** for the minimum allocation size are 2**5 through 2**8.</dd>
drh33589792008-06-18 13:27:46 +00001757**
drhb706fe52011-05-11 20:54:32 +00001758** [[SQLITE_CONFIG_MUTEX]] <dt>SQLITE_CONFIG_MUTEX</dt>
drh5279d342014-11-04 13:41:32 +00001759** <dd> ^(The SQLITE_CONFIG_MUTEX option takes a single argument which is a
1760** pointer to an instance of the [sqlite3_mutex_methods] structure.
drh86e166a2014-12-03 19:08:00 +00001761** The argument specifies alternative low-level mutex routines to be used
1762** in place the mutex routines built into SQLite.)^ ^SQLite makes a copy of
1763** the content of the [sqlite3_mutex_methods] structure before the call to
drhd68eee02009-12-11 03:44:18 +00001764** [sqlite3_config()] returns. ^If SQLite is compiled with
1765** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
1766** the entire mutexing subsystem is omitted from the build and hence calls to
1767** [sqlite3_config()] with the SQLITE_CONFIG_MUTEX configuration option will
1768** return [SQLITE_ERROR].</dd>
drh33589792008-06-18 13:27:46 +00001769**
drhb706fe52011-05-11 20:54:32 +00001770** [[SQLITE_CONFIG_GETMUTEX]] <dt>SQLITE_CONFIG_GETMUTEX</dt>
drh5279d342014-11-04 13:41:32 +00001771** <dd> ^(The SQLITE_CONFIG_GETMUTEX option takes a single argument which
1772** is a pointer to an instance of the [sqlite3_mutex_methods] structure. The
drh33589792008-06-18 13:27:46 +00001773** [sqlite3_mutex_methods]
drhd68eee02009-12-11 03:44:18 +00001774** structure is filled with the currently defined mutex routines.)^
drh33589792008-06-18 13:27:46 +00001775** This option can be used to overload the default mutex allocation
1776** routines with a wrapper used to track mutex usage for performance
drhd68eee02009-12-11 03:44:18 +00001777** profiling or testing, for example. ^If SQLite is compiled with
1778** the [SQLITE_THREADSAFE | SQLITE_THREADSAFE=0] compile-time option then
1779** the entire mutexing subsystem is omitted from the build and hence calls to
1780** [sqlite3_config()] with the SQLITE_CONFIG_GETMUTEX configuration option will
1781** return [SQLITE_ERROR].</dd>
drh633e6d52008-07-28 19:34:53 +00001782**
drhb706fe52011-05-11 20:54:32 +00001783** [[SQLITE_CONFIG_LOOKASIDE]] <dt>SQLITE_CONFIG_LOOKASIDE</dt>
drh5279d342014-11-04 13:41:32 +00001784** <dd> ^(The SQLITE_CONFIG_LOOKASIDE option takes two arguments that determine
1785** the default size of lookaside memory on each [database connection].
1786** The first argument is the
drh633e6d52008-07-28 19:34:53 +00001787** size of each lookaside buffer slot and the second is the number of
drh5279d342014-11-04 13:41:32 +00001788** slots allocated to each database connection.)^ ^(SQLITE_CONFIG_LOOKASIDE
1789** sets the <i>default</i> lookaside size. The [SQLITE_DBCONFIG_LOOKASIDE]
1790** option to [sqlite3_db_config()] can be used to change the lookaside
drhd68eee02009-12-11 03:44:18 +00001791** configuration on individual connections.)^ </dd>
drh633e6d52008-07-28 19:34:53 +00001792**
drhe5c40b12011-11-09 00:06:05 +00001793** [[SQLITE_CONFIG_PCACHE2]] <dt>SQLITE_CONFIG_PCACHE2</dt>
drh5279d342014-11-04 13:41:32 +00001794** <dd> ^(The SQLITE_CONFIG_PCACHE2 option takes a single argument which is
1795** a pointer to an [sqlite3_pcache_methods2] object. This object specifies
1796** the interface to a custom page cache implementation.)^
1797** ^SQLite makes a copy of the [sqlite3_pcache_methods2] object.</dd>
drh21614742008-11-18 19:18:08 +00001798**
drhe5c40b12011-11-09 00:06:05 +00001799** [[SQLITE_CONFIG_GETPCACHE2]] <dt>SQLITE_CONFIG_GETPCACHE2</dt>
drh5279d342014-11-04 13:41:32 +00001800** <dd> ^(The SQLITE_CONFIG_GETPCACHE2 option takes a single argument which
drh86e166a2014-12-03 19:08:00 +00001801** is a pointer to an [sqlite3_pcache_methods2] object. SQLite copies of
1802** the current page cache implementation into that object.)^ </dd>
drh21614742008-11-18 19:18:08 +00001803**
drhb706fe52011-05-11 20:54:32 +00001804** [[SQLITE_CONFIG_LOG]] <dt>SQLITE_CONFIG_LOG</dt>
drh9ea88b22013-04-26 15:55:57 +00001805** <dd> The SQLITE_CONFIG_LOG option is used to configure the SQLite
1806** global [error log].
drha13090f2013-04-26 19:33:34 +00001807** (^The SQLITE_CONFIG_LOG option takes two arguments: a pointer to a
drhd3d986d2010-03-31 13:57:56 +00001808** function with a call signature of void(*)(void*,int,const char*),
1809** and a pointer to void. ^If the function pointer is not NULL, it is
1810** invoked by [sqlite3_log()] to process each logging event. ^If the
1811** function pointer is NULL, the [sqlite3_log()] interface becomes a no-op.
1812** ^The void pointer that is the second argument to SQLITE_CONFIG_LOG is
1813** passed through as the first parameter to the application-defined logger
1814** function whenever that function is invoked. ^The second parameter to
1815** the logger function is a copy of the first parameter to the corresponding
1816** [sqlite3_log()] call and is intended to be a [result code] or an
1817** [extended result code]. ^The third parameter passed to the logger is
1818** log message after formatting via [sqlite3_snprintf()].
1819** The SQLite logging interface is not reentrant; the logger function
1820** supplied by the application must not invoke any SQLite interface.
1821** In a multi-threaded application, the application-defined logger
1822** function must be threadsafe. </dd>
1823**
drhb706fe52011-05-11 20:54:32 +00001824** [[SQLITE_CONFIG_URI]] <dt>SQLITE_CONFIG_URI
drh5279d342014-11-04 13:41:32 +00001825** <dd>^(The SQLITE_CONFIG_URI option takes a single argument of type int.
1826** If non-zero, then URI handling is globally enabled. If the parameter is zero,
drh86e166a2014-12-03 19:08:00 +00001827** then URI handling is globally disabled.)^ ^If URI handling is globally
1828** enabled, all filenames passed to [sqlite3_open()], [sqlite3_open_v2()],
1829** [sqlite3_open16()] or
dan00142d72011-05-05 12:35:33 +00001830** specified as part of [ATTACH] commands are interpreted as URIs, regardless
1831** of whether or not the [SQLITE_OPEN_URI] flag is set when the database
drhcf9fca42013-10-11 23:37:57 +00001832** connection is opened. ^If it is globally disabled, filenames are
dan00142d72011-05-05 12:35:33 +00001833** only interpreted as URIs if the SQLITE_OPEN_URI flag is set when the
drhcf9fca42013-10-11 23:37:57 +00001834** database connection is opened. ^(By default, URI handling is globally
dan00142d72011-05-05 12:35:33 +00001835** disabled. The default value may be changed by compiling with the
drhcf9fca42013-10-11 23:37:57 +00001836** [SQLITE_USE_URI] symbol defined.)^
drhe5c40b12011-11-09 00:06:05 +00001837**
drhde9a7b82012-09-17 20:44:46 +00001838** [[SQLITE_CONFIG_COVERING_INDEX_SCAN]] <dt>SQLITE_CONFIG_COVERING_INDEX_SCAN
drh5279d342014-11-04 13:41:32 +00001839** <dd>^The SQLITE_CONFIG_COVERING_INDEX_SCAN option takes a single integer
1840** argument which is interpreted as a boolean in order to enable or disable
1841** the use of covering indices for full table scans in the query optimizer.
1842** ^The default setting is determined
drhde9a7b82012-09-17 20:44:46 +00001843** by the [SQLITE_ALLOW_COVERING_INDEX_SCAN] compile-time option, or is "on"
1844** if that compile-time option is omitted.
1845** The ability to disable the use of covering indices for full table scans
1846** is because some incorrectly coded legacy applications might malfunction
drhcf9fca42013-10-11 23:37:57 +00001847** when the optimization is enabled. Providing the ability to
drhde9a7b82012-09-17 20:44:46 +00001848** disable the optimization allows the older, buggy application code to work
1849** without change even with newer versions of SQLite.
1850**
drhe5c40b12011-11-09 00:06:05 +00001851** [[SQLITE_CONFIG_PCACHE]] [[SQLITE_CONFIG_GETPCACHE]]
drh2b32b992012-04-14 11:48:25 +00001852** <dt>SQLITE_CONFIG_PCACHE and SQLITE_CONFIG_GETPCACHE
drhe5c40b12011-11-09 00:06:05 +00001853** <dd> These options are obsolete and should not be used by new code.
1854** They are retained for backwards compatibility but are now no-ops.
drhb9830a12013-04-22 13:51:09 +00001855** </dd>
danac455932012-11-26 19:50:41 +00001856**
1857** [[SQLITE_CONFIG_SQLLOG]]
1858** <dt>SQLITE_CONFIG_SQLLOG
1859** <dd>This option is only available if sqlite is compiled with the
drhb9830a12013-04-22 13:51:09 +00001860** [SQLITE_ENABLE_SQLLOG] pre-processor macro defined. The first argument should
danac455932012-11-26 19:50:41 +00001861** be a pointer to a function of type void(*)(void*,sqlite3*,const char*, int).
dan71ba10d2012-11-27 10:56:39 +00001862** The second should be of type (void*). The callback is invoked by the library
1863** in three separate circumstances, identified by the value passed as the
1864** fourth parameter. If the fourth parameter is 0, then the database connection
1865** passed as the second argument has just been opened. The third argument
1866** points to a buffer containing the name of the main database file. If the
1867** fourth parameter is 1, then the SQL statement that the third parameter
1868** points to has just been executed. Or, if the fourth parameter is 2, then
1869** the connection being passed as the second parameter is being closed. The
drhb9830a12013-04-22 13:51:09 +00001870** third parameter is passed NULL In this case. An example of using this
1871** configuration option can be seen in the "test_sqllog.c" source file in
1872** the canonical SQLite source tree.</dd>
drha1f42c72013-04-01 22:38:06 +00001873**
drh9b4c59f2013-04-15 17:03:42 +00001874** [[SQLITE_CONFIG_MMAP_SIZE]]
1875** <dt>SQLITE_CONFIG_MMAP_SIZE
drhcf9fca42013-10-11 23:37:57 +00001876** <dd>^SQLITE_CONFIG_MMAP_SIZE takes two 64-bit integer (sqlite3_int64) values
drh9b4c59f2013-04-15 17:03:42 +00001877** that are the default mmap size limit (the default setting for
1878** [PRAGMA mmap_size]) and the maximum allowed mmap size limit.
drhcf9fca42013-10-11 23:37:57 +00001879** ^The default setting can be overridden by each database connection using
drh9b4c59f2013-04-15 17:03:42 +00001880** either the [PRAGMA mmap_size] command, or by using the
drhcf9fca42013-10-11 23:37:57 +00001881** [SQLITE_FCNTL_MMAP_SIZE] file control. ^(The maximum allowed mmap size
drh8790b6e2014-11-07 01:43:56 +00001882** will be silently truncated if necessary so that it does not exceed the
1883** compile-time maximum mmap size set by the
drhcf9fca42013-10-11 23:37:57 +00001884** [SQLITE_MAX_MMAP_SIZE] compile-time option.)^
1885** ^If either argument to this option is negative, then that argument is
drh9b4c59f2013-04-15 17:03:42 +00001886** changed to its compile-time default.
mistachkinac1f1042013-11-23 00:27:29 +00001887**
mistachkinaf8641b2013-11-25 21:49:04 +00001888** [[SQLITE_CONFIG_WIN32_HEAPSIZE]]
1889** <dt>SQLITE_CONFIG_WIN32_HEAPSIZE
drh5279d342014-11-04 13:41:32 +00001890** <dd>^The SQLITE_CONFIG_WIN32_HEAPSIZE option is only available if SQLite is
drh86e166a2014-12-03 19:08:00 +00001891** compiled for Windows with the [SQLITE_WIN32_MALLOC] pre-processor macro
1892** defined. ^SQLITE_CONFIG_WIN32_HEAPSIZE takes a 32-bit unsigned integer value
mistachkin202ca3e2013-11-25 23:42:21 +00001893** that specifies the maximum size of the created heap.
drhdef68892014-11-04 12:11:23 +00001894**
1895** [[SQLITE_CONFIG_PCACHE_HDRSZ]]
1896** <dt>SQLITE_CONFIG_PCACHE_HDRSZ
drh5279d342014-11-04 13:41:32 +00001897** <dd>^The SQLITE_CONFIG_PCACHE_HDRSZ option takes a single parameter which
1898** is a pointer to an integer and writes into that integer the number of extra
drh86e166a2014-12-03 19:08:00 +00001899** bytes per page required for each page in [SQLITE_CONFIG_PAGECACHE].
1900** The amount of extra space required can change depending on the compiler,
drhdef68892014-11-04 12:11:23 +00001901** target platform, and SQLite version.
drh3bd17912015-01-02 15:55:29 +00001902**
1903** [[SQLITE_CONFIG_PMASZ]]
1904** <dt>SQLITE_CONFIG_PMASZ
1905** <dd>^The SQLITE_CONFIG_PMASZ option takes a single parameter which
1906** is an unsigned integer and sets the "Minimum PMA Size" for the multithreaded
1907** sorter to that integer. The default minimum PMA Size is set by the
1908** [SQLITE_SORTER_PMASZ] compile-time option. New threads are launched
1909** to help with sort operations when multithreaded sorting
1910** is enabled (using the [PRAGMA threads] command) and the amount of content
1911** to be sorted exceeds the page size times the minimum of the
1912** [PRAGMA cache_size] setting and this value.
drh8c71a982016-03-07 17:37:37 +00001913**
1914** [[SQLITE_CONFIG_STMTJRNL_SPILL]]
1915** <dt>SQLITE_CONFIG_STMTJRNL_SPILL
1916** <dd>^The SQLITE_CONFIG_STMTJRNL_SPILL option takes a single parameter which
1917** becomes the [statement journal] spill-to-disk threshold.
1918** [Statement journals] are held in memory until their size (in bytes)
1919** exceeds this threshold, at which point they are written to disk.
1920** Or if the threshold is -1, statement journals are always held
1921** exclusively in memory.
1922** Since many statement journals never become large, setting the spill
1923** threshold to a value such as 64KiB can greatly reduce the amount of
1924** I/O required to support statement rollback.
1925** The default value for this setting is controlled by the
1926** [SQLITE_STMTJRNL_SPILL] compile-time option.
drhdef68892014-11-04 12:11:23 +00001927** </dl>
mihailima3f64902008-06-21 13:35:56 +00001928*/
drh40257ff2008-06-13 18:24:27 +00001929#define SQLITE_CONFIG_SINGLETHREAD 1 /* nil */
1930#define SQLITE_CONFIG_MULTITHREAD 2 /* nil */
1931#define SQLITE_CONFIG_SERIALIZED 3 /* nil */
drhfec00ea2008-06-14 16:56:21 +00001932#define SQLITE_CONFIG_MALLOC 4 /* sqlite3_mem_methods* */
drh33589792008-06-18 13:27:46 +00001933#define SQLITE_CONFIG_GETMALLOC 5 /* sqlite3_mem_methods* */
drhb2a0f752017-08-28 15:51:35 +00001934#define SQLITE_CONFIG_SCRATCH 6 /* No longer used */
drh33589792008-06-18 13:27:46 +00001935#define SQLITE_CONFIG_PAGECACHE 7 /* void*, int sz, int N */
1936#define SQLITE_CONFIG_HEAP 8 /* void*, int nByte, int min */
1937#define SQLITE_CONFIG_MEMSTATUS 9 /* boolean */
1938#define SQLITE_CONFIG_MUTEX 10 /* sqlite3_mutex_methods* */
1939#define SQLITE_CONFIG_GETMUTEX 11 /* sqlite3_mutex_methods* */
shane2479de32008-11-10 18:05:35 +00001940/* previously SQLITE_CONFIG_CHUNKALLOC 12 which is now unused. */
drh633e6d52008-07-28 19:34:53 +00001941#define SQLITE_CONFIG_LOOKASIDE 13 /* int int */
drhe5c40b12011-11-09 00:06:05 +00001942#define SQLITE_CONFIG_PCACHE 14 /* no-op */
1943#define SQLITE_CONFIG_GETPCACHE 15 /* no-op */
drh3f280702010-02-18 18:45:09 +00001944#define SQLITE_CONFIG_LOG 16 /* xFunc, void* */
dancd74b612011-04-22 19:37:32 +00001945#define SQLITE_CONFIG_URI 17 /* int */
dan22e21ff2011-11-08 20:08:44 +00001946#define SQLITE_CONFIG_PCACHE2 18 /* sqlite3_pcache_methods2* */
1947#define SQLITE_CONFIG_GETPCACHE2 19 /* sqlite3_pcache_methods2* */
drhde9a7b82012-09-17 20:44:46 +00001948#define SQLITE_CONFIG_COVERING_INDEX_SCAN 20 /* int */
danac455932012-11-26 19:50:41 +00001949#define SQLITE_CONFIG_SQLLOG 21 /* xSqllog, void* */
drh9b4c59f2013-04-15 17:03:42 +00001950#define SQLITE_CONFIG_MMAP_SIZE 22 /* sqlite3_int64, sqlite3_int64 */
mistachkinaf8641b2013-11-25 21:49:04 +00001951#define SQLITE_CONFIG_WIN32_HEAPSIZE 23 /* int nByte */
drhdef68892014-11-04 12:11:23 +00001952#define SQLITE_CONFIG_PCACHE_HDRSZ 24 /* int *psz */
drh3bd17912015-01-02 15:55:29 +00001953#define SQLITE_CONFIG_PMASZ 25 /* unsigned int szPma */
drh8c71a982016-03-07 17:37:37 +00001954#define SQLITE_CONFIG_STMTJRNL_SPILL 26 /* int nByte */
drhb2a0f752017-08-28 15:51:35 +00001955#define SQLITE_CONFIG_SMALL_MALLOC 27 /* boolean */
danielk19772d340812008-07-24 08:20:40 +00001956
drhe9d1c722008-08-04 20:13:26 +00001957/*
drh9f8da322010-03-10 20:06:37 +00001958** CAPI3REF: Database Connection Configuration Options
drhe9d1c722008-08-04 20:13:26 +00001959**
1960** These constants are the available integer configuration options that
1961** can be passed as the second argument to the [sqlite3_db_config()] interface.
1962**
1963** New configuration options may be added in future releases of SQLite.
1964** Existing configuration options might be discontinued. Applications
1965** should check the return code from [sqlite3_db_config()] to make sure that
drhd68eee02009-12-11 03:44:18 +00001966** the call worked. ^The [sqlite3_db_config()] interface will return a
drhe9d1c722008-08-04 20:13:26 +00001967** non-zero [error code] if a discontinued or unsupported configuration option
1968** is invoked.
1969**
1970** <dl>
1971** <dt>SQLITE_DBCONFIG_LOOKASIDE</dt>
drhd68eee02009-12-11 03:44:18 +00001972** <dd> ^This option takes three additional arguments that determine the
drhe9d1c722008-08-04 20:13:26 +00001973** [lookaside memory allocator] configuration for the [database connection].
drhd68eee02009-12-11 03:44:18 +00001974** ^The first argument (the third parameter to [sqlite3_db_config()] is a
drh8b2b2e62011-04-07 01:14:12 +00001975** pointer to a memory buffer to use for lookaside memory.
drhd68eee02009-12-11 03:44:18 +00001976** ^The first argument after the SQLITE_DBCONFIG_LOOKASIDE verb
1977** may be NULL in which case SQLite will allocate the
1978** lookaside buffer itself using [sqlite3_malloc()]. ^The second argument is the
1979** size of each lookaside buffer slot. ^The third argument is the number of
drhe9d1c722008-08-04 20:13:26 +00001980** slots. The size of the buffer in the first argument must be greater than
drh6aa5f152009-08-19 15:57:07 +00001981** or equal to the product of the second and third arguments. The buffer
drhd68eee02009-12-11 03:44:18 +00001982** must be aligned to an 8-byte boundary. ^If the second argument to
1983** SQLITE_DBCONFIG_LOOKASIDE is not a multiple of 8, it is internally
drhee9ff672010-09-03 18:50:48 +00001984** rounded down to the next smaller multiple of 8. ^(The lookaside memory
1985** configuration for a database connection can only be changed when that
1986** connection is not currently using lookaside memory, or in other words
1987** when the "current value" returned by
1988** [sqlite3_db_status](D,[SQLITE_CONFIG_LOOKASIDE],...) is zero.
1989** Any attempt to change the lookaside memory configuration when lookaside
1990** memory is in use leaves the configuration unchanged and returns
1991** [SQLITE_BUSY].)^</dd>
drhe9d1c722008-08-04 20:13:26 +00001992**
drhe83cafd2011-03-21 17:15:58 +00001993** <dt>SQLITE_DBCONFIG_ENABLE_FKEY</dt>
1994** <dd> ^This option is used to enable or disable the enforcement of
1995** [foreign key constraints]. There should be two additional arguments.
1996** The first argument is an integer which is 0 to disable FK enforcement,
1997** positive to enable FK enforcement or negative to leave FK enforcement
1998** unchanged. The second parameter is a pointer to an integer into which
1999** is written 0 or 1 to indicate whether FK enforcement is off or on
2000** following this call. The second parameter may be a NULL pointer, in
2001** which case the FK enforcement setting is not reported back. </dd>
2002**
2003** <dt>SQLITE_DBCONFIG_ENABLE_TRIGGER</dt>
2004** <dd> ^This option is used to enable or disable [CREATE TRIGGER | triggers].
2005** There should be two additional arguments.
2006** The first argument is an integer which is 0 to disable triggers,
drh8b2b2e62011-04-07 01:14:12 +00002007** positive to enable triggers or negative to leave the setting unchanged.
drhe83cafd2011-03-21 17:15:58 +00002008** The second parameter is a pointer to an integer into which
2009** is written 0 or 1 to indicate whether triggers are disabled or enabled
2010** following this call. The second parameter may be a NULL pointer, in
2011** which case the trigger setting is not reported back. </dd>
2012**
drhd42908f2016-02-26 15:38:24 +00002013** <dt>SQLITE_DBCONFIG_ENABLE_FTS3_TOKENIZER</dt>
2014** <dd> ^This option is used to enable or disable the two-argument
2015** version of the [fts3_tokenizer()] function which is part of the
2016** [FTS3] full-text search engine extension.
2017** There should be two additional arguments.
2018** The first argument is an integer which is 0 to disable fts3_tokenizer() or
2019** positive to enable fts3_tokenizer() or negative to leave the setting
2020** unchanged.
2021** The second parameter is a pointer to an integer into which
2022** is written 0 or 1 to indicate whether fts3_tokenizer is disabled or enabled
2023** following this call. The second parameter may be a NULL pointer, in
2024** which case the new setting is not reported back. </dd>
2025**
drh191dd062016-04-21 01:30:09 +00002026** <dt>SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION</dt>
2027** <dd> ^This option is used to enable or disable the [sqlite3_load_extension()]
2028** interface independently of the [load_extension()] SQL function.
2029** The [sqlite3_enable_load_extension()] API enables or disables both the
2030** C-API [sqlite3_load_extension()] and the SQL function [load_extension()].
2031** There should be two additional arguments.
2032** When the first argument to this interface is 1, then only the C-API is
drh6da466e2016-08-07 18:52:11 +00002033** enabled and the SQL function remains disabled. If the first argument to
drh191dd062016-04-21 01:30:09 +00002034** this interface is 0, then both the C-API and the SQL function are disabled.
2035** If the first argument is -1, then no changes are made to state of either the
2036** C-API or the SQL function.
2037** The second parameter is a pointer to an integer into which
2038** is written 0 or 1 to indicate whether [sqlite3_load_extension()] interface
2039** is disabled or enabled following this call. The second parameter may
2040** be a NULL pointer, in which case the new setting is not reported back.
2041** </dd>
2042**
drhda84dca2016-08-18 22:44:22 +00002043** <dt>SQLITE_DBCONFIG_MAINDBNAME</dt>
2044** <dd> ^This option is used to change the name of the "main" database
2045** schema. ^The sole argument is a pointer to a constant UTF8 string
2046** which will become the new schema name in place of "main". ^SQLite
2047** does not make a copy of the new main schema name string, so the application
2048** must ensure that the argument passed into this DBCONFIG option is unchanged
2049** until after the database connection closes.
2050** </dd>
2051**
dan298af022016-10-31 16:16:49 +00002052** <dt>SQLITE_DBCONFIG_NO_CKPT_ON_CLOSE</dt>
2053** <dd> Usually, when a database in wal mode is closed or detached from a
2054** database handle, SQLite checks if this will mean that there are now no
2055** connections at all to the database. If so, it performs a checkpoint
2056** operation before closing the connection. This option may be used to
2057** override this behaviour. The first parameter passed to this operation
2058** is an integer - non-zero to disable checkpoints-on-close, or zero (the
2059** default) to enable them. The second parameter is a pointer to an integer
2060** into which is written 0 or 1 to indicate whether checkpoints-on-close
2061** have been disabled - 0 if they are not disabled, 1 if they are.
2062** </dd>
drh169dd922017-06-26 13:57:49 +00002063** <dt>SQLITE_DBCONFIG_ENABLE_QPSG</dt>
drh749e4a92017-07-14 19:47:32 +00002064** <dd>^(The SQLITE_DBCONFIG_ENABLE_QPSG option activates or deactivates
drh169dd922017-06-26 13:57:49 +00002065** the [query planner stability guarantee] (QPSG). When the QPSG is active,
2066** a single SQL query statement will always use the same algorithm regardless
drh749e4a92017-07-14 19:47:32 +00002067** of values of [bound parameters].)^ The QPSG disables some query optimizations
drh169dd922017-06-26 13:57:49 +00002068** that look at the values of bound parameters, which can make some queries
2069** slower. But the QPSG has the advantage of more predictable behavior. With
2070** the QPSG active, SQLite will always use the same query plan in the field as
2071** was used during testing in the lab.
2072** </dd>
drh36e31c62017-12-21 18:23:26 +00002073** <dt>SQLITE_DBCONFIG_TRIGGER_EQP</dt>
dan280db652017-04-17 17:03:08 +00002074** <dd> By default, the output of EXPLAIN QUERY PLAN commands does not
2075** include output for any operations performed by trigger programs. This
2076** option is used to set or clear (the default) a flag that governs this
2077** behavior. The first parameter passed to this operation is an integer -
2078** non-zero to enable output for trigger programs, or zero to disable it.
2079** The second parameter is a pointer to an integer into which is written
2080** 0 or 1 to indicate whether output-for-triggers has been disabled - 0 if
2081** it is not disabled, 1 if it is.
2082** </dd>
drhe9d1c722008-08-04 20:13:26 +00002083** </dl>
2084*/
drhda84dca2016-08-18 22:44:22 +00002085#define SQLITE_DBCONFIG_MAINDBNAME 1000 /* const char* */
drhd42908f2016-02-26 15:38:24 +00002086#define SQLITE_DBCONFIG_LOOKASIDE 1001 /* void* int int */
2087#define SQLITE_DBCONFIG_ENABLE_FKEY 1002 /* int int* */
2088#define SQLITE_DBCONFIG_ENABLE_TRIGGER 1003 /* int int* */
2089#define SQLITE_DBCONFIG_ENABLE_FTS3_TOKENIZER 1004 /* int int* */
drh191dd062016-04-21 01:30:09 +00002090#define SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION 1005 /* int int* */
dan298af022016-10-31 16:16:49 +00002091#define SQLITE_DBCONFIG_NO_CKPT_ON_CLOSE 1006 /* int int* */
drh169dd922017-06-26 13:57:49 +00002092#define SQLITE_DBCONFIG_ENABLE_QPSG 1007 /* int int* */
drh36e31c62017-12-21 18:23:26 +00002093#define SQLITE_DBCONFIG_TRIGGER_EQP 1008 /* int int* */
drh3c5d2852017-12-21 14:46:11 +00002094#define SQLITE_DBCONFIG_MAX 1008 /* Largest DBCONFIG */
dan0824ccf2017-04-14 19:41:37 +00002095
drh673299b2008-06-09 21:57:22 +00002096/*
drhd68eee02009-12-11 03:44:18 +00002097** CAPI3REF: Enable Or Disable Extended Result Codes
drhd9a0a9a2015-04-14 15:14:06 +00002098** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002099**
drhd68eee02009-12-11 03:44:18 +00002100** ^The sqlite3_extended_result_codes() routine enables or disables the
2101** [extended result codes] feature of SQLite. ^The extended result
2102** codes are disabled by default for historical compatibility.
drh4ac285a2006-09-15 07:28:50 +00002103*/
2104int sqlite3_extended_result_codes(sqlite3*, int onoff);
2105
2106/*
drhd68eee02009-12-11 03:44:18 +00002107** CAPI3REF: Last Insert Rowid
drhd9a0a9a2015-04-14 15:14:06 +00002108** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002109**
drh6c41b612013-11-09 21:19:12 +00002110** ^Each entry in most SQLite tables (except for [WITHOUT ROWID] tables)
2111** has a unique 64-bit signed
drhd68eee02009-12-11 03:44:18 +00002112** integer key called the [ROWID | "rowid"]. ^The rowid is always available
drhfddfa2d2007-12-05 18:05:16 +00002113** as an undeclared column named ROWID, OID, or _ROWID_ as long as those
drhd68eee02009-12-11 03:44:18 +00002114** names are not also used by explicitly declared columns. ^If
drh49c3d572008-12-15 22:51:38 +00002115** the table has a column of type [INTEGER PRIMARY KEY] then that column
mlcreechb2799412008-03-07 03:20:31 +00002116** is another alias for the rowid.
drh6ed48bf2007-06-14 20:57:18 +00002117**
dan9c58b632017-02-27 14:52:48 +00002118** ^The sqlite3_last_insert_rowid(D) interface usually returns the [rowid] of
2119** the most recent successful [INSERT] into a rowid table or [virtual table]
2120** on database connection D. ^Inserts into [WITHOUT ROWID] tables are not
2121** recorded. ^If no successful [INSERT]s into rowid tables have ever occurred
2122** on the database connection D, then sqlite3_last_insert_rowid(D) returns
2123** zero.
drh6ed48bf2007-06-14 20:57:18 +00002124**
dan9c58b632017-02-27 14:52:48 +00002125** As well as being set automatically as rows are inserted into database
2126** tables, the value returned by this function may be set explicitly by
2127** [sqlite3_set_last_insert_rowid()]
2128**
2129** Some virtual table implementations may INSERT rows into rowid tables as
2130** part of committing a transaction (e.g. to flush data accumulated in memory
2131** to disk). In this case subsequent calls to this function return the rowid
2132** associated with these internal INSERT operations, which leads to
2133** unintuitive results. Virtual table implementations that do write to rowid
2134** tables in this way can avoid this problem by restoring the original
2135** rowid value using [sqlite3_set_last_insert_rowid()] before returning
2136** control to the user.
drh6ed48bf2007-06-14 20:57:18 +00002137**
dan2efd3482017-02-27 12:23:52 +00002138** ^(If an [INSERT] occurs within a trigger then this routine will
2139** return the [rowid] of the inserted row as long as the trigger is
2140** running. Once the trigger program ends, the value returned
2141** by this routine reverts to what it was before the trigger was fired.)^
drhe30f4422007-08-21 16:15:55 +00002142**
drhd68eee02009-12-11 03:44:18 +00002143** ^An [INSERT] that fails due to a constraint violation is not a
drhf8cecda2008-10-10 23:48:25 +00002144** successful [INSERT] and does not change the value returned by this
drhd68eee02009-12-11 03:44:18 +00002145** routine. ^Thus INSERT OR FAIL, INSERT OR IGNORE, INSERT OR ROLLBACK,
drhdc1d9f12007-10-27 16:25:16 +00002146** and INSERT OR ABORT make no changes to the return value of this
drhd68eee02009-12-11 03:44:18 +00002147** routine when their insertion fails. ^(When INSERT OR REPLACE
drhdc1d9f12007-10-27 16:25:16 +00002148** encounters a constraint violation, it does not fail. The
2149** INSERT continues to completion after deleting rows that caused
2150** the constraint problem so INSERT OR REPLACE will always change
drhd68eee02009-12-11 03:44:18 +00002151** the return value of this interface.)^
drhdc1d9f12007-10-27 16:25:16 +00002152**
drhd68eee02009-12-11 03:44:18 +00002153** ^For the purposes of this routine, an [INSERT] is considered to
drh33c1be32008-01-30 16:16:14 +00002154** be successful even if it is subsequently rolled back.
2155**
drha94cc422009-12-03 01:01:02 +00002156** This function is accessible to SQL statements via the
2157** [last_insert_rowid() SQL function].
2158**
drh8b39db12009-02-18 18:37:58 +00002159** If a separate thread performs a new [INSERT] on the same
2160** database connection while the [sqlite3_last_insert_rowid()]
2161** function is running and thus changes the last insert [rowid],
2162** then the value returned by [sqlite3_last_insert_rowid()] is
2163** unpredictable and might not equal either the old or the new
2164** last insert [rowid].
drhaf9ff332002-01-16 21:00:27 +00002165*/
drh6d2069d2007-08-14 01:58:53 +00002166sqlite3_int64 sqlite3_last_insert_rowid(sqlite3*);
drhaf9ff332002-01-16 21:00:27 +00002167
drhc8d30ac2002-04-12 10:08:59 +00002168/*
dan9c58b632017-02-27 14:52:48 +00002169** CAPI3REF: Set the Last Insert Rowid value.
2170** METHOD: sqlite3
2171**
2172** The sqlite3_set_last_insert_rowid(D, R) method allows the application to
2173** set the value returned by calling sqlite3_last_insert_rowid(D) to R
2174** without inserting a row into the database.
2175*/
2176void sqlite3_set_last_insert_rowid(sqlite3*,sqlite3_int64);
2177
2178/*
drhd68eee02009-12-11 03:44:18 +00002179** CAPI3REF: Count The Number Of Rows Modified
drhd9a0a9a2015-04-14 15:14:06 +00002180** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002181**
danc3da6672014-10-28 18:24:16 +00002182** ^This function returns the number of rows modified, inserted or
2183** deleted by the most recently completed INSERT, UPDATE or DELETE
2184** statement on the database connection specified by the only parameter.
2185** ^Executing any other type of SQL statement does not modify the value
2186** returned by this function.
drh6ed48bf2007-06-14 20:57:18 +00002187**
danc3da6672014-10-28 18:24:16 +00002188** ^Only changes made directly by the INSERT, UPDATE or DELETE statement are
2189** considered - auxiliary changes caused by [CREATE TRIGGER | triggers],
2190** [foreign key actions] or [REPLACE] constraint resolution are not counted.
2191**
2192** Changes to a view that are intercepted by
2193** [INSTEAD OF trigger | INSTEAD OF triggers] are not counted. ^The value
2194** returned by sqlite3_changes() immediately after an INSERT, UPDATE or
2195** DELETE statement run on a view is always zero. Only changes made to real
2196** tables are counted.
drhd9c20d72009-04-29 14:33:44 +00002197**
danc3da6672014-10-28 18:24:16 +00002198** Things are more complicated if the sqlite3_changes() function is
2199** executed while a trigger program is running. This may happen if the
2200** program uses the [changes() SQL function], or if some other callback
2201** function invokes sqlite3_changes() directly. Essentially:
2202**
2203** <ul>
2204** <li> ^(Before entering a trigger program the value returned by
2205** sqlite3_changes() function is saved. After the trigger program
2206** has finished, the original value is restored.)^
2207**
2208** <li> ^(Within a trigger program each INSERT, UPDATE and DELETE
2209** statement sets the value returned by sqlite3_changes()
2210** upon completion as normal. Of course, this value will not include
2211** any changes performed by sub-triggers, as the sqlite3_changes()
2212** value will be saved and restored after each sub-trigger has run.)^
2213** </ul>
2214**
2215** ^This means that if the changes() SQL function (or similar) is used
2216** by the first INSERT, UPDATE or DELETE statement within a trigger, it
2217** returns the value as set when the calling statement began executing.
2218** ^If it is used by the second or subsequent such statement within a trigger
2219** program, the value returned reflects the number of rows modified by the
2220** previous INSERT, UPDATE or DELETE statement within the same trigger.
drhc8d30ac2002-04-12 10:08:59 +00002221**
drha94cc422009-12-03 01:01:02 +00002222** See also the [sqlite3_total_changes()] interface, the
2223** [count_changes pragma], and the [changes() SQL function].
drhe30f4422007-08-21 16:15:55 +00002224**
drh8b39db12009-02-18 18:37:58 +00002225** If a separate thread makes changes on the same database connection
2226** while [sqlite3_changes()] is running then the value returned
2227** is unpredictable and not meaningful.
drhc8d30ac2002-04-12 10:08:59 +00002228*/
danielk1977f9d64d22004-06-19 08:18:07 +00002229int sqlite3_changes(sqlite3*);
drhc8d30ac2002-04-12 10:08:59 +00002230
rdcf146a772004-02-25 22:51:06 +00002231/*
drhd68eee02009-12-11 03:44:18 +00002232** CAPI3REF: Total Number Of Rows Modified
drhd9a0a9a2015-04-14 15:14:06 +00002233** METHOD: sqlite3
mihailimdb4f2ad2008-06-21 11:20:48 +00002234**
danaa555632014-10-28 20:49:59 +00002235** ^This function returns the total number of rows inserted, modified or
2236** deleted by all [INSERT], [UPDATE] or [DELETE] statements completed
2237** since the database connection was opened, including those executed as
2238** part of trigger programs. ^Executing any other type of SQL statement
2239** does not affect the value returned by sqlite3_total_changes().
2240**
2241** ^Changes made as part of [foreign key actions] are included in the
2242** count, but those made as part of REPLACE constraint resolution are
2243** not. ^Changes to a view that are intercepted by INSTEAD OF triggers
2244** are not counted.
2245**
drha94cc422009-12-03 01:01:02 +00002246** See also the [sqlite3_changes()] interface, the
2247** [count_changes pragma], and the [total_changes() SQL function].
drh33c1be32008-01-30 16:16:14 +00002248**
drh8b39db12009-02-18 18:37:58 +00002249** If a separate thread makes changes on the same database connection
2250** while [sqlite3_total_changes()] is running then the value
2251** returned is unpredictable and not meaningful.
rdcf146a772004-02-25 22:51:06 +00002252*/
danielk1977b28af712004-06-21 06:50:26 +00002253int sqlite3_total_changes(sqlite3*);
2254
drh6ed48bf2007-06-14 20:57:18 +00002255/*
drhd68eee02009-12-11 03:44:18 +00002256** CAPI3REF: Interrupt A Long-Running Query
drhd9a0a9a2015-04-14 15:14:06 +00002257** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002258**
drhd68eee02009-12-11 03:44:18 +00002259** ^This function causes any pending database operation to abort and
drh33c1be32008-01-30 16:16:14 +00002260** return at its earliest opportunity. This routine is typically
mihailimebe796c2008-06-21 20:11:17 +00002261** called in response to a user action such as pressing "Cancel"
drh4c504392000-10-16 22:06:40 +00002262** or Ctrl-C where the user wants a long query operation to halt
2263** immediately.
drh930cc582007-03-28 13:07:40 +00002264**
drhd68eee02009-12-11 03:44:18 +00002265** ^It is safe to call this routine from a thread different from the
drh33c1be32008-01-30 16:16:14 +00002266** thread that is currently running the database operation. But it
mihailimdb4f2ad2008-06-21 11:20:48 +00002267** is not safe to call this routine with a [database connection] that
drh871f6ca2007-08-14 18:03:14 +00002268** is closed or might close before sqlite3_interrupt() returns.
drh6ed48bf2007-06-14 20:57:18 +00002269**
drhd68eee02009-12-11 03:44:18 +00002270** ^If an SQL operation is very nearly finished at the time when
mihailimdb4f2ad2008-06-21 11:20:48 +00002271** sqlite3_interrupt() is called, then it might not have an opportunity
2272** to be interrupted and might continue to completion.
2273**
drhd68eee02009-12-11 03:44:18 +00002274** ^An SQL operation that is interrupted will return [SQLITE_INTERRUPT].
2275** ^If the interrupted SQL operation is an INSERT, UPDATE, or DELETE
mihailimdb4f2ad2008-06-21 11:20:48 +00002276** that is inside an explicit transaction, then the entire transaction
2277** will be rolled back automatically.
2278**
drhdf6473a2009-12-13 22:20:08 +00002279** ^The sqlite3_interrupt(D) call is in effect until all currently running
2280** SQL statements on [database connection] D complete. ^Any new SQL statements
drhd2b68432009-04-20 12:31:46 +00002281** that are started after the sqlite3_interrupt() call and before the
2282** running statements reaches zero are interrupted as if they had been
drhdf6473a2009-12-13 22:20:08 +00002283** running prior to the sqlite3_interrupt() call. ^New SQL statements
drhd2b68432009-04-20 12:31:46 +00002284** that are started after the running statement count reaches zero are
drhdf6473a2009-12-13 22:20:08 +00002285** not effected by the sqlite3_interrupt().
drhd68eee02009-12-11 03:44:18 +00002286** ^A call to sqlite3_interrupt(D) that occurs when there are no running
drhd2b68432009-04-20 12:31:46 +00002287** SQL statements is a no-op and has no effect on SQL statements
2288** that are started after the sqlite3_interrupt() call returns.
drh4c504392000-10-16 22:06:40 +00002289*/
danielk1977f9d64d22004-06-19 08:18:07 +00002290void sqlite3_interrupt(sqlite3*);
drh4c504392000-10-16 22:06:40 +00002291
drh6ed48bf2007-06-14 20:57:18 +00002292/*
drhd68eee02009-12-11 03:44:18 +00002293** CAPI3REF: Determine If An SQL Statement Is Complete
drh75897232000-05-29 14:26:00 +00002294**
drh709915d2009-04-28 04:46:41 +00002295** These routines are useful during command-line input to determine if the
2296** currently entered text seems to form a complete SQL statement or
drhf5befa02007-12-06 02:42:07 +00002297** if additional input is needed before sending the text into
drhd68eee02009-12-11 03:44:18 +00002298** SQLite for parsing. ^These routines return 1 if the input string
2299** appears to be a complete SQL statement. ^A statement is judged to be
drh709915d2009-04-28 04:46:41 +00002300** complete if it ends with a semicolon token and is not a prefix of a
drhd68eee02009-12-11 03:44:18 +00002301** well-formed CREATE TRIGGER statement. ^Semicolons that are embedded within
drh33c1be32008-01-30 16:16:14 +00002302** string literals or quoted identifier names or comments are not
2303** independent tokens (they are part of the token in which they are
drhd68eee02009-12-11 03:44:18 +00002304** embedded) and thus do not count as a statement terminator. ^Whitespace
drh709915d2009-04-28 04:46:41 +00002305** and comments that follow the final semicolon are ignored.
2306**
drhd68eee02009-12-11 03:44:18 +00002307** ^These routines return 0 if the statement is incomplete. ^If a
drh709915d2009-04-28 04:46:41 +00002308** memory allocation fails, then SQLITE_NOMEM is returned.
drh33c1be32008-01-30 16:16:14 +00002309**
drhd68eee02009-12-11 03:44:18 +00002310** ^These routines do not parse the SQL statements thus
mihailimdb4f2ad2008-06-21 11:20:48 +00002311** will not detect syntactically incorrect SQL.
drhfddfa2d2007-12-05 18:05:16 +00002312**
drhd68eee02009-12-11 03:44:18 +00002313** ^(If SQLite has not been initialized using [sqlite3_initialize()] prior
drh709915d2009-04-28 04:46:41 +00002314** to invoking sqlite3_complete16() then sqlite3_initialize() is invoked
2315** automatically by sqlite3_complete16(). If that initialization fails,
2316** then the return value from sqlite3_complete16() will be non-zero
drhd68eee02009-12-11 03:44:18 +00002317** regardless of whether or not the input SQL is complete.)^
drh33c1be32008-01-30 16:16:14 +00002318**
drh8b39db12009-02-18 18:37:58 +00002319** The input to [sqlite3_complete()] must be a zero-terminated
2320** UTF-8 string.
drh33c1be32008-01-30 16:16:14 +00002321**
drh8b39db12009-02-18 18:37:58 +00002322** The input to [sqlite3_complete16()] must be a zero-terminated
2323** UTF-16 string in native byte order.
drh75897232000-05-29 14:26:00 +00002324*/
danielk19776f8a5032004-05-10 10:34:51 +00002325int sqlite3_complete(const char *sql);
danielk197761de0d12004-05-27 23:56:16 +00002326int sqlite3_complete16(const void *sql);
drh75897232000-05-29 14:26:00 +00002327
drh2dfbbca2000-07-28 14:32:48 +00002328/*
drhd68eee02009-12-11 03:44:18 +00002329** CAPI3REF: Register A Callback To Handle SQLITE_BUSY Errors
drh86e166a2014-12-03 19:08:00 +00002330** KEYWORDS: {busy-handler callback} {busy handler}
drhd9a0a9a2015-04-14 15:14:06 +00002331** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002332**
drha6f59722014-07-18 19:06:39 +00002333** ^The sqlite3_busy_handler(D,X,P) routine sets a callback function X
2334** that might be invoked with argument P whenever
2335** an attempt is made to access a database table associated with
2336** [database connection] D when another thread
2337** or process has the table locked.
2338** The sqlite3_busy_handler() interface is used to implement
2339** [sqlite3_busy_timeout()] and [PRAGMA busy_timeout].
mihailimdb4f2ad2008-06-21 11:20:48 +00002340**
drh3c19bbe2014-08-08 15:38:11 +00002341** ^If the busy callback is NULL, then [SQLITE_BUSY]
drhd68eee02009-12-11 03:44:18 +00002342** is returned immediately upon encountering the lock. ^If the busy callback
2343** is not NULL, then the callback might be invoked with two arguments.
mihailimdb4f2ad2008-06-21 11:20:48 +00002344**
drhd68eee02009-12-11 03:44:18 +00002345** ^The first argument to the busy handler is a copy of the void* pointer which
2346** is the third argument to sqlite3_busy_handler(). ^The second argument to
2347** the busy handler callback is the number of times that the busy handler has
drhd8922052014-12-04 15:02:03 +00002348** been invoked previously for the same locking event. ^If the
drh6ed48bf2007-06-14 20:57:18 +00002349** busy callback returns 0, then no additional attempts are made to
drh3c19bbe2014-08-08 15:38:11 +00002350** access the database and [SQLITE_BUSY] is returned
drha6f59722014-07-18 19:06:39 +00002351** to the application.
drhd68eee02009-12-11 03:44:18 +00002352** ^If the callback returns non-zero, then another attempt
drha6f59722014-07-18 19:06:39 +00002353** is made to access the database and the cycle repeats.
drh2dfbbca2000-07-28 14:32:48 +00002354**
mihailimdb4f2ad2008-06-21 11:20:48 +00002355** The presence of a busy handler does not guarantee that it will be invoked
drhd68eee02009-12-11 03:44:18 +00002356** when there is lock contention. ^If SQLite determines that invoking the busy
mihailimdb4f2ad2008-06-21 11:20:48 +00002357** handler could result in a deadlock, it will go ahead and return [SQLITE_BUSY]
drh3c19bbe2014-08-08 15:38:11 +00002358** to the application instead of invoking the
drha6f59722014-07-18 19:06:39 +00002359** busy handler.
drh86939b52007-01-10 12:54:51 +00002360** Consider a scenario where one process is holding a read lock that
2361** it is trying to promote to a reserved lock and
2362** a second process is holding a reserved lock that it is trying
2363** to promote to an exclusive lock. The first process cannot proceed
2364** because it is blocked by the second and the second process cannot
2365** proceed because it is blocked by the first. If both processes
drhf5befa02007-12-06 02:42:07 +00002366** invoke the busy handlers, neither will make any progress. Therefore,
drh6ed48bf2007-06-14 20:57:18 +00002367** SQLite returns [SQLITE_BUSY] for the first process, hoping that this
drh86939b52007-01-10 12:54:51 +00002368** will induce the first process to release its read lock and allow
2369** the second process to proceed.
2370**
drhd68eee02009-12-11 03:44:18 +00002371** ^The default busy callback is NULL.
drh2dfbbca2000-07-28 14:32:48 +00002372**
drhd68eee02009-12-11 03:44:18 +00002373** ^(There can only be a single busy handler defined for each
mihailimdb4f2ad2008-06-21 11:20:48 +00002374** [database connection]. Setting a new busy handler clears any
drhd68eee02009-12-11 03:44:18 +00002375** previously set handler.)^ ^Note that calling [sqlite3_busy_timeout()]
drha6f59722014-07-18 19:06:39 +00002376** or evaluating [PRAGMA busy_timeout=N] will change the
2377** busy handler and thus clear any previously set busy handler.
drhd677b3d2007-08-20 22:48:41 +00002378**
drhc8075422008-09-10 13:09:23 +00002379** The busy callback should not take any actions which modify the
drha6f59722014-07-18 19:06:39 +00002380** database connection that invoked the busy handler. In other words,
2381** the busy handler is not reentrant. Any such actions
drhc8075422008-09-10 13:09:23 +00002382** result in undefined behavior.
2383**
drh8b39db12009-02-18 18:37:58 +00002384** A busy handler must not close the database connection
2385** or [prepared statement] that invoked the busy handler.
drh2dfbbca2000-07-28 14:32:48 +00002386*/
drh32c83c82016-08-01 14:35:48 +00002387int sqlite3_busy_handler(sqlite3*,int(*)(void*,int),void*);
drh2dfbbca2000-07-28 14:32:48 +00002388
2389/*
drhd68eee02009-12-11 03:44:18 +00002390** CAPI3REF: Set A Busy Timeout
drhd9a0a9a2015-04-14 15:14:06 +00002391** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002392**
drhd68eee02009-12-11 03:44:18 +00002393** ^This routine sets a [sqlite3_busy_handler | busy handler] that sleeps
2394** for a specified amount of time when a table is locked. ^The handler
mihailimdb4f2ad2008-06-21 11:20:48 +00002395** will sleep multiple times until at least "ms" milliseconds of sleeping
drhd68eee02009-12-11 03:44:18 +00002396** have accumulated. ^After at least "ms" milliseconds of sleeping,
mihailimdb4f2ad2008-06-21 11:20:48 +00002397** the handler returns 0 which causes [sqlite3_step()] to return
drh3c19bbe2014-08-08 15:38:11 +00002398** [SQLITE_BUSY].
drh2dfbbca2000-07-28 14:32:48 +00002399**
drhd68eee02009-12-11 03:44:18 +00002400** ^Calling this routine with an argument less than or equal to zero
drh2dfbbca2000-07-28 14:32:48 +00002401** turns off all busy handlers.
drh6ed48bf2007-06-14 20:57:18 +00002402**
drhd68eee02009-12-11 03:44:18 +00002403** ^(There can only be a single busy handler for a particular
peter.d.reid60ec9142014-09-06 16:39:46 +00002404** [database connection] at any given moment. If another busy handler
mihailimdb4f2ad2008-06-21 11:20:48 +00002405** was defined (using [sqlite3_busy_handler()]) prior to calling
drhd68eee02009-12-11 03:44:18 +00002406** this routine, that other busy handler is cleared.)^
drha6f59722014-07-18 19:06:39 +00002407**
2408** See also: [PRAGMA busy_timeout]
drh2dfbbca2000-07-28 14:32:48 +00002409*/
danielk1977f9d64d22004-06-19 08:18:07 +00002410int sqlite3_busy_timeout(sqlite3*, int ms);
drh2dfbbca2000-07-28 14:32:48 +00002411
drhe3710332000-09-29 13:30:53 +00002412/*
drhd68eee02009-12-11 03:44:18 +00002413** CAPI3REF: Convenience Routines For Running Queries
drhd9a0a9a2015-04-14 15:14:06 +00002414** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002415**
drh3063d9a2010-09-28 13:12:50 +00002416** This is a legacy interface that is preserved for backwards compatibility.
2417** Use of this interface is not recommended.
2418**
drh33c1be32008-01-30 16:16:14 +00002419** Definition: A <b>result table</b> is memory data structure created by the
2420** [sqlite3_get_table()] interface. A result table records the
2421** complete query results from one or more queries.
drha18c5682000-10-08 22:20:57 +00002422**
drh33c1be32008-01-30 16:16:14 +00002423** The table conceptually has a number of rows and columns. But
2424** these numbers are not part of the result table itself. These
2425** numbers are obtained separately. Let N be the number of rows
2426** and M be the number of columns.
2427**
mihailimdb4f2ad2008-06-21 11:20:48 +00002428** A result table is an array of pointers to zero-terminated UTF-8 strings.
2429** There are (N+1)*M elements in the array. The first M pointers point
2430** to zero-terminated strings that contain the names of the columns.
2431** The remaining entries all point to query results. NULL values result
2432** in NULL pointers. All other values are in their UTF-8 zero-terminated
2433** string representation as returned by [sqlite3_column_text()].
drh33c1be32008-01-30 16:16:14 +00002434**
mihailimdb4f2ad2008-06-21 11:20:48 +00002435** A result table might consist of one or more memory allocations.
drh33c1be32008-01-30 16:16:14 +00002436** It is not safe to pass a result table directly to [sqlite3_free()].
2437** A result table should be deallocated using [sqlite3_free_table()].
2438**
drh3063d9a2010-09-28 13:12:50 +00002439** ^(As an example of the result table format, suppose a query result
drh33c1be32008-01-30 16:16:14 +00002440** is as follows:
drha18c5682000-10-08 22:20:57 +00002441**
drh8bacf972007-08-25 16:21:29 +00002442** <blockquote><pre>
drha18c5682000-10-08 22:20:57 +00002443** Name | Age
2444** -----------------------
2445** Alice | 43
2446** Bob | 28
2447** Cindy | 21
drh8bacf972007-08-25 16:21:29 +00002448** </pre></blockquote>
drha18c5682000-10-08 22:20:57 +00002449**
drh33c1be32008-01-30 16:16:14 +00002450** There are two column (M==2) and three rows (N==3). Thus the
2451** result table has 8 entries. Suppose the result table is stored
2452** in an array names azResult. Then azResult holds this content:
drha18c5682000-10-08 22:20:57 +00002453**
drh8bacf972007-08-25 16:21:29 +00002454** <blockquote><pre>
2455** azResult&#91;0] = "Name";
2456** azResult&#91;1] = "Age";
2457** azResult&#91;2] = "Alice";
2458** azResult&#91;3] = "43";
2459** azResult&#91;4] = "Bob";
2460** azResult&#91;5] = "28";
2461** azResult&#91;6] = "Cindy";
2462** azResult&#91;7] = "21";
drh3063d9a2010-09-28 13:12:50 +00002463** </pre></blockquote>)^
drha18c5682000-10-08 22:20:57 +00002464**
drhd68eee02009-12-11 03:44:18 +00002465** ^The sqlite3_get_table() function evaluates one or more
drh33c1be32008-01-30 16:16:14 +00002466** semicolon-separated SQL statements in the zero-terminated UTF-8
drhd68eee02009-12-11 03:44:18 +00002467** string of its 2nd parameter and returns a result table to the
drh33c1be32008-01-30 16:16:14 +00002468** pointer given in its 3rd parameter.
drha18c5682000-10-08 22:20:57 +00002469**
drhd68eee02009-12-11 03:44:18 +00002470** After the application has finished with the result from sqlite3_get_table(),
drh3063d9a2010-09-28 13:12:50 +00002471** it must pass the result table pointer to sqlite3_free_table() in order to
mihailimdb4f2ad2008-06-21 11:20:48 +00002472** release the memory that was malloced. Because of the way the
drh33c1be32008-01-30 16:16:14 +00002473** [sqlite3_malloc()] happens within sqlite3_get_table(), the calling
mihailimdb4f2ad2008-06-21 11:20:48 +00002474** function must not try to call [sqlite3_free()] directly. Only
drh33c1be32008-01-30 16:16:14 +00002475** [sqlite3_free_table()] is able to release the memory properly and safely.
drhe3710332000-09-29 13:30:53 +00002476**
drh3063d9a2010-09-28 13:12:50 +00002477** The sqlite3_get_table() interface is implemented as a wrapper around
drh33c1be32008-01-30 16:16:14 +00002478** [sqlite3_exec()]. The sqlite3_get_table() routine does not have access
2479** to any internal data structures of SQLite. It uses only the public
2480** interface defined here. As a consequence, errors that occur in the
2481** wrapper layer outside of the internal [sqlite3_exec()] call are not
drhd68eee02009-12-11 03:44:18 +00002482** reflected in subsequent calls to [sqlite3_errcode()] or
drh3063d9a2010-09-28 13:12:50 +00002483** [sqlite3_errmsg()].
drhe3710332000-09-29 13:30:53 +00002484*/
danielk19776f8a5032004-05-10 10:34:51 +00002485int sqlite3_get_table(
drhcf538f42008-06-27 14:51:52 +00002486 sqlite3 *db, /* An open database */
2487 const char *zSql, /* SQL to be evaluated */
2488 char ***pazResult, /* Results of the query */
2489 int *pnRow, /* Number of result rows written here */
2490 int *pnColumn, /* Number of result columns written here */
2491 char **pzErrmsg /* Error msg written here */
drhe3710332000-09-29 13:30:53 +00002492);
danielk19776f8a5032004-05-10 10:34:51 +00002493void sqlite3_free_table(char **result);
drhe3710332000-09-29 13:30:53 +00002494
drha18c5682000-10-08 22:20:57 +00002495/*
drhd68eee02009-12-11 03:44:18 +00002496** CAPI3REF: Formatted String Printing Functions
drh6ed48bf2007-06-14 20:57:18 +00002497**
shane7c7c3112009-08-17 15:31:23 +00002498** These routines are work-alikes of the "printf()" family of functions
drh6ed48bf2007-06-14 20:57:18 +00002499** from the standard C library.
drhd4ef0262015-02-21 15:42:57 +00002500** These routines understand most of the common K&R formatting options,
2501** plus some additional non-standard formats, detailed below.
2502** Note that some of the more obscure formatting options from recent
2503** C-library standards are omitted from this implementation.
drh6ed48bf2007-06-14 20:57:18 +00002504**
drhd68eee02009-12-11 03:44:18 +00002505** ^The sqlite3_mprintf() and sqlite3_vmprintf() routines write their
drh6d2069d2007-08-14 01:58:53 +00002506** results into memory obtained from [sqlite3_malloc()].
drh33c1be32008-01-30 16:16:14 +00002507** The strings returned by these two routines should be
drhd68eee02009-12-11 03:44:18 +00002508** released by [sqlite3_free()]. ^Both routines return a
drh6ed48bf2007-06-14 20:57:18 +00002509** NULL pointer if [sqlite3_malloc()] is unable to allocate enough
2510** memory to hold the resulting string.
2511**
drh2afc7042011-01-24 19:45:07 +00002512** ^(The sqlite3_snprintf() routine is similar to "snprintf()" from
drh6ed48bf2007-06-14 20:57:18 +00002513** the standard C library. The result is written into the
2514** buffer supplied as the second parameter whose size is given by
drh33c1be32008-01-30 16:16:14 +00002515** the first parameter. Note that the order of the
drhd68eee02009-12-11 03:44:18 +00002516** first two parameters is reversed from snprintf().)^ This is an
drh6ed48bf2007-06-14 20:57:18 +00002517** historical accident that cannot be fixed without breaking
drhd68eee02009-12-11 03:44:18 +00002518** backwards compatibility. ^(Note also that sqlite3_snprintf()
drh6ed48bf2007-06-14 20:57:18 +00002519** returns a pointer to its buffer instead of the number of
drhd68eee02009-12-11 03:44:18 +00002520** characters actually written into the buffer.)^ We admit that
drh6ed48bf2007-06-14 20:57:18 +00002521** the number of characters written would be a more useful return
2522** value but we cannot change the implementation of sqlite3_snprintf()
2523** now without breaking compatibility.
2524**
drhd68eee02009-12-11 03:44:18 +00002525** ^As long as the buffer size is greater than zero, sqlite3_snprintf()
2526** guarantees that the buffer is always zero-terminated. ^The first
drh6ed48bf2007-06-14 20:57:18 +00002527** parameter "n" is the total size of the buffer, including space for
drh33c1be32008-01-30 16:16:14 +00002528** the zero terminator. So the longest string that can be completely
drh6ed48bf2007-06-14 20:57:18 +00002529** written will be n-1 characters.
2530**
drhdb26d4c2011-01-05 12:20:09 +00002531** ^The sqlite3_vsnprintf() routine is a varargs version of sqlite3_snprintf().
2532**
drh6ed48bf2007-06-14 20:57:18 +00002533** These routines all implement some additional formatting
drh4f26d6c2004-05-26 23:25:30 +00002534** options that are useful for constructing SQL statements.
shane26b34032008-05-23 17:21:09 +00002535** All of the usual printf() formatting options apply. In addition, there
drhd4ef0262015-02-21 15:42:57 +00002536** is are "%q", "%Q", "%w" and "%z" options.
drh6ed48bf2007-06-14 20:57:18 +00002537**
dan44659c92011-12-30 05:08:41 +00002538** ^(The %q option works like %s in that it substitutes a nul-terminated
drh66b89c82000-11-28 20:47:17 +00002539** string from the argument list. But %q also doubles every '\'' character.
drhd68eee02009-12-11 03:44:18 +00002540** %q is designed for use inside a string literal.)^ By doubling each '\''
drh66b89c82000-11-28 20:47:17 +00002541** character it escapes that character and allows it to be inserted into
drha18c5682000-10-08 22:20:57 +00002542** the string.
2543**
mihailimdb4f2ad2008-06-21 11:20:48 +00002544** For example, assume the string variable zText contains text as follows:
drha18c5682000-10-08 22:20:57 +00002545**
drh6ed48bf2007-06-14 20:57:18 +00002546** <blockquote><pre>
2547** char *zText = "It's a happy day!";
2548** </pre></blockquote>
drha18c5682000-10-08 22:20:57 +00002549**
drh6ed48bf2007-06-14 20:57:18 +00002550** One can use this text in an SQL statement as follows:
drha18c5682000-10-08 22:20:57 +00002551**
drh6ed48bf2007-06-14 20:57:18 +00002552** <blockquote><pre>
2553** char *zSQL = sqlite3_mprintf("INSERT INTO table VALUES('%q')", zText);
2554** sqlite3_exec(db, zSQL, 0, 0, 0);
2555** sqlite3_free(zSQL);
2556** </pre></blockquote>
drha18c5682000-10-08 22:20:57 +00002557**
2558** Because the %q format string is used, the '\'' character in zText
2559** is escaped and the SQL generated is as follows:
2560**
drh6ed48bf2007-06-14 20:57:18 +00002561** <blockquote><pre>
2562** INSERT INTO table1 VALUES('It''s a happy day!')
2563** </pre></blockquote>
drha18c5682000-10-08 22:20:57 +00002564**
2565** This is correct. Had we used %s instead of %q, the generated SQL
2566** would have looked like this:
2567**
drh6ed48bf2007-06-14 20:57:18 +00002568** <blockquote><pre>
2569** INSERT INTO table1 VALUES('It's a happy day!');
2570** </pre></blockquote>
drha18c5682000-10-08 22:20:57 +00002571**
mihailimdb4f2ad2008-06-21 11:20:48 +00002572** This second example is an SQL syntax error. As a general rule you should
2573** always use %q instead of %s when inserting text into a string literal.
drh6ed48bf2007-06-14 20:57:18 +00002574**
drhd68eee02009-12-11 03:44:18 +00002575** ^(The %Q option works like %q except it also adds single quotes around
mihailimdb4f2ad2008-06-21 11:20:48 +00002576** the outside of the total string. Additionally, if the parameter in the
2577** argument list is a NULL pointer, %Q substitutes the text "NULL" (without
drhd68eee02009-12-11 03:44:18 +00002578** single quotes).)^ So, for example, one could say:
drh6ed48bf2007-06-14 20:57:18 +00002579**
2580** <blockquote><pre>
2581** char *zSQL = sqlite3_mprintf("INSERT INTO table VALUES(%Q)", zText);
2582** sqlite3_exec(db, zSQL, 0, 0, 0);
2583** sqlite3_free(zSQL);
2584** </pre></blockquote>
2585**
2586** The code above will render a correct SQL statement in the zSQL
2587** variable even if the zText variable is a NULL pointer.
drh153c62c2007-08-24 03:51:33 +00002588**
drhd4ef0262015-02-21 15:42:57 +00002589** ^(The "%w" formatting option is like "%q" except that it expects to
2590** be contained within double-quotes instead of single quotes, and it
2591** escapes the double-quote character instead of the single-quote
2592** character.)^ The "%w" formatting option is intended for safely inserting
2593** table and column names into a constructed SQL statement.
2594**
drhd68eee02009-12-11 03:44:18 +00002595** ^(The "%z" formatting option works like "%s" but with the
drh153c62c2007-08-24 03:51:33 +00002596** addition that after the string has been read and copied into
drhd68eee02009-12-11 03:44:18 +00002597** the result, [sqlite3_free()] is called on the input string.)^
drha18c5682000-10-08 22:20:57 +00002598*/
danielk19776f8a5032004-05-10 10:34:51 +00002599char *sqlite3_mprintf(const char*,...);
2600char *sqlite3_vmprintf(const char*, va_list);
drhfeac5f82004-08-01 00:10:45 +00002601char *sqlite3_snprintf(int,char*,const char*, ...);
drhdb26d4c2011-01-05 12:20:09 +00002602char *sqlite3_vsnprintf(int,char*,const char*, va_list);
drh5191b7e2002-03-08 02:12:00 +00002603
drh28dd4792006-06-26 21:35:44 +00002604/*
drhd68eee02009-12-11 03:44:18 +00002605** CAPI3REF: Memory Allocation Subsystem
drhd84f9462007-08-15 11:28:56 +00002606**
drhd68eee02009-12-11 03:44:18 +00002607** The SQLite core uses these three routines for all of its own
drh33c1be32008-01-30 16:16:14 +00002608** internal memory allocation needs. "Core" in the previous sentence
drhf5befa02007-12-06 02:42:07 +00002609** does not include operating-system specific VFS implementation. The
shane26b34032008-05-23 17:21:09 +00002610** Windows VFS uses native malloc() and free() for some operations.
drhd64621d2007-11-05 17:54:17 +00002611**
drhd68eee02009-12-11 03:44:18 +00002612** ^The sqlite3_malloc() routine returns a pointer to a block
drhfddfa2d2007-12-05 18:05:16 +00002613** of memory at least N bytes in length, where N is the parameter.
drhd68eee02009-12-11 03:44:18 +00002614** ^If sqlite3_malloc() is unable to obtain sufficient free
2615** memory, it returns a NULL pointer. ^If the parameter N to
drhfddfa2d2007-12-05 18:05:16 +00002616** sqlite3_malloc() is zero or negative then sqlite3_malloc() returns
2617** a NULL pointer.
2618**
drhda4ca9d2014-09-09 17:27:35 +00002619** ^The sqlite3_malloc64(N) routine works just like
2620** sqlite3_malloc(N) except that N is an unsigned 64-bit integer instead
2621** of a signed 32-bit integer.
2622**
drhd68eee02009-12-11 03:44:18 +00002623** ^Calling sqlite3_free() with a pointer previously returned
drhfddfa2d2007-12-05 18:05:16 +00002624** by sqlite3_malloc() or sqlite3_realloc() releases that memory so
drhd68eee02009-12-11 03:44:18 +00002625** that it might be reused. ^The sqlite3_free() routine is
drhfddfa2d2007-12-05 18:05:16 +00002626** a no-op if is called with a NULL pointer. Passing a NULL pointer
drh33c1be32008-01-30 16:16:14 +00002627** to sqlite3_free() is harmless. After being freed, memory
drhfddfa2d2007-12-05 18:05:16 +00002628** should neither be read nor written. Even reading previously freed
2629** memory might result in a segmentation fault or other severe error.
drh33c1be32008-01-30 16:16:14 +00002630** Memory corruption, a segmentation fault, or other severe error
drhfddfa2d2007-12-05 18:05:16 +00002631** might result if sqlite3_free() is called with a non-NULL pointer that
drh7b228b32008-10-17 15:10:37 +00002632** was not obtained from sqlite3_malloc() or sqlite3_realloc().
drhfddfa2d2007-12-05 18:05:16 +00002633**
drhda4ca9d2014-09-09 17:27:35 +00002634** ^The sqlite3_realloc(X,N) interface attempts to resize a
2635** prior memory allocation X to be at least N bytes.
2636** ^If the X parameter to sqlite3_realloc(X,N)
drhfddfa2d2007-12-05 18:05:16 +00002637** is a NULL pointer then its behavior is identical to calling
drhda4ca9d2014-09-09 17:27:35 +00002638** sqlite3_malloc(N).
2639** ^If the N parameter to sqlite3_realloc(X,N) is zero or
drhfddfa2d2007-12-05 18:05:16 +00002640** negative then the behavior is exactly the same as calling
drhda4ca9d2014-09-09 17:27:35 +00002641** sqlite3_free(X).
2642** ^sqlite3_realloc(X,N) returns a pointer to a memory allocation
2643** of at least N bytes in size or NULL if insufficient memory is available.
drhd68eee02009-12-11 03:44:18 +00002644** ^If M is the size of the prior allocation, then min(N,M) bytes
drhfddfa2d2007-12-05 18:05:16 +00002645** of the prior allocation are copied into the beginning of buffer returned
drhda4ca9d2014-09-09 17:27:35 +00002646** by sqlite3_realloc(X,N) and the prior allocation is freed.
2647** ^If sqlite3_realloc(X,N) returns NULL and N is positive, then the
2648** prior allocation is not freed.
drhfddfa2d2007-12-05 18:05:16 +00002649**
drhda4ca9d2014-09-09 17:27:35 +00002650** ^The sqlite3_realloc64(X,N) interfaces works the same as
2651** sqlite3_realloc(X,N) except that N is a 64-bit unsigned integer instead
2652** of a 32-bit signed integer.
2653**
2654** ^If X is a memory allocation previously obtained from sqlite3_malloc(),
2655** sqlite3_malloc64(), sqlite3_realloc(), or sqlite3_realloc64(), then
2656** sqlite3_msize(X) returns the size of that memory allocation in bytes.
2657** ^The value returned by sqlite3_msize(X) might be larger than the number
2658** of bytes requested when X was allocated. ^If X is a NULL pointer then
2659** sqlite3_msize(X) returns zero. If X points to something that is not
2660** the beginning of memory allocation, or if it points to a formerly
2661** valid memory allocation that has now been freed, then the behavior
2662** of sqlite3_msize(X) is undefined and possibly harmful.
2663**
2664** ^The memory returned by sqlite3_malloc(), sqlite3_realloc(),
2665** sqlite3_malloc64(), and sqlite3_realloc64()
drh71a1a0f2010-09-11 16:15:55 +00002666** is always aligned to at least an 8 byte boundary, or to a
2667** 4 byte boundary if the [SQLITE_4_BYTE_ALIGNED_MALLOC] compile-time
2668** option is used.
drhd64621d2007-11-05 17:54:17 +00002669**
2670** In SQLite version 3.5.0 and 3.5.1, it was possible to define
2671** the SQLITE_OMIT_MEMORY_ALLOCATION which would cause the built-in
2672** implementation of these routines to be omitted. That capability
mihailimdb4f2ad2008-06-21 11:20:48 +00002673** is no longer provided. Only built-in memory allocators can be used.
drh8bacf972007-08-25 16:21:29 +00002674**
mistachkind3babb52012-06-05 02:24:54 +00002675** Prior to SQLite version 3.7.10, the Windows OS interface layer called
drh8bacf972007-08-25 16:21:29 +00002676** the system malloc() and free() directly when converting
2677** filenames between the UTF-8 encoding used by SQLite
shane26b34032008-05-23 17:21:09 +00002678** and whatever filename encoding is used by the particular Windows
mistachkind3babb52012-06-05 02:24:54 +00002679** installation. Memory allocation errors were detected, but
2680** they were reported back as [SQLITE_CANTOPEN] or
drh8bacf972007-08-25 16:21:29 +00002681** [SQLITE_IOERR] rather than [SQLITE_NOMEM].
drh33c1be32008-01-30 16:16:14 +00002682**
drh8b39db12009-02-18 18:37:58 +00002683** The pointer arguments to [sqlite3_free()] and [sqlite3_realloc()]
2684** must be either NULL or else pointers obtained from a prior
2685** invocation of [sqlite3_malloc()] or [sqlite3_realloc()] that have
2686** not yet been released.
drh33c1be32008-01-30 16:16:14 +00002687**
drh8b39db12009-02-18 18:37:58 +00002688** The application must not read or write any part of
2689** a block of memory after it has been released using
2690** [sqlite3_free()] or [sqlite3_realloc()].
drh28dd4792006-06-26 21:35:44 +00002691*/
drhf3a65f72007-08-22 20:18:21 +00002692void *sqlite3_malloc(int);
drhda4ca9d2014-09-09 17:27:35 +00002693void *sqlite3_malloc64(sqlite3_uint64);
drhf3a65f72007-08-22 20:18:21 +00002694void *sqlite3_realloc(void*, int);
drhda4ca9d2014-09-09 17:27:35 +00002695void *sqlite3_realloc64(void*, sqlite3_uint64);
drh28dd4792006-06-26 21:35:44 +00002696void sqlite3_free(void*);
drhda4ca9d2014-09-09 17:27:35 +00002697sqlite3_uint64 sqlite3_msize(void*);
drh28dd4792006-06-26 21:35:44 +00002698
drh5191b7e2002-03-08 02:12:00 +00002699/*
drhd68eee02009-12-11 03:44:18 +00002700** CAPI3REF: Memory Allocator Statistics
drhd84f9462007-08-15 11:28:56 +00002701**
drh33c1be32008-01-30 16:16:14 +00002702** SQLite provides these two interfaces for reporting on the status
2703** of the [sqlite3_malloc()], [sqlite3_free()], and [sqlite3_realloc()]
mihailimdb4f2ad2008-06-21 11:20:48 +00002704** routines, which form the built-in memory allocation subsystem.
drhd84f9462007-08-15 11:28:56 +00002705**
drhd68eee02009-12-11 03:44:18 +00002706** ^The [sqlite3_memory_used()] routine returns the number of bytes
2707** of memory currently outstanding (malloced but not freed).
2708** ^The [sqlite3_memory_highwater()] routine returns the maximum
2709** value of [sqlite3_memory_used()] since the high-water mark
2710** was last reset. ^The values returned by [sqlite3_memory_used()] and
2711** [sqlite3_memory_highwater()] include any overhead
2712** added by SQLite in its implementation of [sqlite3_malloc()],
2713** but not overhead added by the any underlying system library
2714** routines that [sqlite3_malloc()] may call.
2715**
2716** ^The memory high-water mark is reset to the current value of
2717** [sqlite3_memory_used()] if and only if the parameter to
2718** [sqlite3_memory_highwater()] is true. ^The value returned
2719** by [sqlite3_memory_highwater(1)] is the high-water mark
2720** prior to the reset.
drhd84f9462007-08-15 11:28:56 +00002721*/
drh153c62c2007-08-24 03:51:33 +00002722sqlite3_int64 sqlite3_memory_used(void);
2723sqlite3_int64 sqlite3_memory_highwater(int resetFlag);
drhd84f9462007-08-15 11:28:56 +00002724
2725/*
drhd68eee02009-12-11 03:44:18 +00002726** CAPI3REF: Pseudo-Random Number Generator
drh2fa18682008-03-19 14:15:34 +00002727**
2728** SQLite contains a high-quality pseudo-random number generator (PRNG) used to
drh49c3d572008-12-15 22:51:38 +00002729** select random [ROWID | ROWIDs] when inserting new records into a table that
2730** already uses the largest possible [ROWID]. The PRNG is also used for
drh2fa18682008-03-19 14:15:34 +00002731** the build-in random() and randomblob() SQL functions. This interface allows
shane26b34032008-05-23 17:21:09 +00002732** applications to access the same PRNG for other purposes.
drh2fa18682008-03-19 14:15:34 +00002733**
drhd68eee02009-12-11 03:44:18 +00002734** ^A call to this routine stores N bytes of randomness into buffer P.
drh4f41b7d2014-10-28 20:35:18 +00002735** ^The P parameter can be a NULL pointer.
drh2fa18682008-03-19 14:15:34 +00002736**
drhfe980812014-01-01 14:00:13 +00002737** ^If this routine has not been previously called or if the previous
drh4f41b7d2014-10-28 20:35:18 +00002738** call had N less than one or a NULL pointer for P, then the PRNG is
2739** seeded using randomness obtained from the xRandomness method of
2740** the default [sqlite3_vfs] object.
2741** ^If the previous call to this routine had an N of 1 or more and a
2742** non-NULL P then the pseudo-randomness is generated
drh2fa18682008-03-19 14:15:34 +00002743** internally and without recourse to the [sqlite3_vfs] xRandomness
2744** method.
drh2fa18682008-03-19 14:15:34 +00002745*/
2746void sqlite3_randomness(int N, void *P);
2747
2748/*
drhd68eee02009-12-11 03:44:18 +00002749** CAPI3REF: Compile-Time Authorization Callbacks
drhd9a0a9a2015-04-14 15:14:06 +00002750** METHOD: sqlite3
drh0d236a82017-05-10 16:33:48 +00002751** KEYWORDS: {authorizer callback}
drhfddfa2d2007-12-05 18:05:16 +00002752**
drh8b2b2e62011-04-07 01:14:12 +00002753** ^This routine registers an authorizer callback with a particular
drhf47ce562008-03-20 18:00:49 +00002754** [database connection], supplied in the first argument.
drhd68eee02009-12-11 03:44:18 +00002755** ^The authorizer callback is invoked as SQL statements are being compiled
drh6ed48bf2007-06-14 20:57:18 +00002756** by [sqlite3_prepare()] or its variants [sqlite3_prepare_v2()],
drh2c2f3922017-06-01 00:54:35 +00002757** [sqlite3_prepare_v3()], [sqlite3_prepare16()], [sqlite3_prepare16_v2()],
2758** and [sqlite3_prepare16_v3()]. ^At various
drh6ed48bf2007-06-14 20:57:18 +00002759** points during the compilation process, as logic is being created
2760** to perform various actions, the authorizer callback is invoked to
drhd68eee02009-12-11 03:44:18 +00002761** see if those actions are allowed. ^The authorizer callback should
drhf47ce562008-03-20 18:00:49 +00002762** return [SQLITE_OK] to allow the action, [SQLITE_IGNORE] to disallow the
drh6ed48bf2007-06-14 20:57:18 +00002763** specific action but allow the SQL statement to continue to be
2764** compiled, or [SQLITE_DENY] to cause the entire SQL statement to be
drhd68eee02009-12-11 03:44:18 +00002765** rejected with an error. ^If the authorizer callback returns
drhf5befa02007-12-06 02:42:07 +00002766** any value other than [SQLITE_IGNORE], [SQLITE_OK], or [SQLITE_DENY]
mihailima3f64902008-06-21 13:35:56 +00002767** then the [sqlite3_prepare_v2()] or equivalent call that triggered
drh33c1be32008-01-30 16:16:14 +00002768** the authorizer will fail with an error message.
drh6ed48bf2007-06-14 20:57:18 +00002769**
drhf5befa02007-12-06 02:42:07 +00002770** When the callback returns [SQLITE_OK], that means the operation
drhd68eee02009-12-11 03:44:18 +00002771** requested is ok. ^When the callback returns [SQLITE_DENY], the
drhf5befa02007-12-06 02:42:07 +00002772** [sqlite3_prepare_v2()] or equivalent call that triggered the
drh33c1be32008-01-30 16:16:14 +00002773** authorizer will fail with an error message explaining that
drh959b5302009-04-30 15:59:56 +00002774** access is denied.
drh6ed48bf2007-06-14 20:57:18 +00002775**
drhd68eee02009-12-11 03:44:18 +00002776** ^The first parameter to the authorizer callback is a copy of the third
2777** parameter to the sqlite3_set_authorizer() interface. ^The second parameter
mihailima3f64902008-06-21 13:35:56 +00002778** to the callback is an integer [SQLITE_COPY | action code] that specifies
drhd68eee02009-12-11 03:44:18 +00002779** the particular action to be authorized. ^The third through sixth parameters
drhee92eb82017-05-11 12:27:21 +00002780** to the callback are either NULL pointers or zero-terminated strings
2781** that contain additional details about the action to be authorized.
2782** Applications must always be prepared to encounter a NULL pointer in any
2783** of the third through the sixth parameters of the authorization callback.
drh6ed48bf2007-06-14 20:57:18 +00002784**
drhd68eee02009-12-11 03:44:18 +00002785** ^If the action code is [SQLITE_READ]
drh959b5302009-04-30 15:59:56 +00002786** and the callback returns [SQLITE_IGNORE] then the
2787** [prepared statement] statement is constructed to substitute
2788** a NULL value in place of the table column that would have
2789** been read if [SQLITE_OK] had been returned. The [SQLITE_IGNORE]
2790** return can be used to deny an untrusted user access to individual
2791** columns of a table.
drh0d236a82017-05-10 16:33:48 +00002792** ^When a table is referenced by a [SELECT] but no column values are
2793** extracted from that table (for example in a query like
2794** "SELECT count(*) FROM tab") then the [SQLITE_READ] authorizer callback
drh2336c932017-05-11 12:05:23 +00002795** is invoked once for that table with a column name that is an empty string.
drhd68eee02009-12-11 03:44:18 +00002796** ^If the action code is [SQLITE_DELETE] and the callback returns
drh959b5302009-04-30 15:59:56 +00002797** [SQLITE_IGNORE] then the [DELETE] operation proceeds but the
2798** [truncate optimization] is disabled and all rows are deleted individually.
2799**
drhf47ce562008-03-20 18:00:49 +00002800** An authorizer is used when [sqlite3_prepare | preparing]
mihailimebe796c2008-06-21 20:11:17 +00002801** SQL statements from an untrusted source, to ensure that the SQL statements
2802** do not try to access data they are not allowed to see, or that they do not
2803** try to execute malicious statements that damage the database. For
drh6ed48bf2007-06-14 20:57:18 +00002804** example, an application may allow a user to enter arbitrary
2805** SQL queries for evaluation by a database. But the application does
2806** not want the user to be able to make arbitrary changes to the
2807** database. An authorizer could then be put in place while the
drhf47ce562008-03-20 18:00:49 +00002808** user-entered SQL is being [sqlite3_prepare | prepared] that
2809** disallows everything except [SELECT] statements.
2810**
2811** Applications that need to process SQL from untrusted sources
2812** might also consider lowering resource limits using [sqlite3_limit()]
2813** and limiting database size using the [max_page_count] [PRAGMA]
2814** in addition to using an authorizer.
drh6ed48bf2007-06-14 20:57:18 +00002815**
drhd68eee02009-12-11 03:44:18 +00002816** ^(Only a single authorizer can be in place on a database connection
drh6ed48bf2007-06-14 20:57:18 +00002817** at a time. Each call to sqlite3_set_authorizer overrides the
drhd68eee02009-12-11 03:44:18 +00002818** previous call.)^ ^Disable the authorizer by installing a NULL callback.
drh33c1be32008-01-30 16:16:14 +00002819** The authorizer is disabled by default.
drh6ed48bf2007-06-14 20:57:18 +00002820**
drhc8075422008-09-10 13:09:23 +00002821** The authorizer callback must not do anything that will modify
2822** the database connection that invoked the authorizer callback.
2823** Note that [sqlite3_prepare_v2()] and [sqlite3_step()] both modify their
2824** database connections for the meaning of "modify" in this paragraph.
2825**
drhd68eee02009-12-11 03:44:18 +00002826** ^When [sqlite3_prepare_v2()] is used to prepare a statement, the
shane7c7c3112009-08-17 15:31:23 +00002827** statement might be re-prepared during [sqlite3_step()] due to a
drh7b37c5d2008-08-12 14:51:29 +00002828** schema change. Hence, the application should ensure that the
2829** correct authorizer callback remains in place during the [sqlite3_step()].
2830**
drhd68eee02009-12-11 03:44:18 +00002831** ^Note that the authorizer callback is invoked only during
drh33c1be32008-01-30 16:16:14 +00002832** [sqlite3_prepare()] or its variants. Authorization is not
drh959b5302009-04-30 15:59:56 +00002833** performed during statement evaluation in [sqlite3_step()], unless
2834** as stated in the previous paragraph, sqlite3_step() invokes
2835** sqlite3_prepare_v2() to reprepare a statement after a schema change.
drhed6c8672003-01-12 18:02:16 +00002836*/
danielk19776f8a5032004-05-10 10:34:51 +00002837int sqlite3_set_authorizer(
danielk1977f9d64d22004-06-19 08:18:07 +00002838 sqlite3*,
drhe22a3342003-04-22 20:30:37 +00002839 int (*xAuth)(void*,int,const char*,const char*,const char*,const char*),
drhe5f9c642003-01-13 23:27:31 +00002840 void *pUserData
drhed6c8672003-01-12 18:02:16 +00002841);
2842
2843/*
drhd68eee02009-12-11 03:44:18 +00002844** CAPI3REF: Authorizer Return Codes
drh6ed48bf2007-06-14 20:57:18 +00002845**
2846** The [sqlite3_set_authorizer | authorizer callback function] must
2847** return either [SQLITE_OK] or one of these two constants in order
2848** to signal SQLite whether or not the action is permitted. See the
2849** [sqlite3_set_authorizer | authorizer documentation] for additional
2850** information.
drhef45bb72011-05-05 15:39:50 +00002851**
drh1d8ba022014-08-08 12:51:42 +00002852** Note that SQLITE_IGNORE is also used as a [conflict resolution mode]
2853** returned from the [sqlite3_vtab_on_conflict()] interface.
drh6ed48bf2007-06-14 20:57:18 +00002854*/
2855#define SQLITE_DENY 1 /* Abort the SQL statement with an error */
2856#define SQLITE_IGNORE 2 /* Don't allow access, but don't generate an error */
2857
2858/*
drhd68eee02009-12-11 03:44:18 +00002859** CAPI3REF: Authorizer Action Codes
drh6ed48bf2007-06-14 20:57:18 +00002860**
2861** The [sqlite3_set_authorizer()] interface registers a callback function
mihailima3f64902008-06-21 13:35:56 +00002862** that is invoked to authorize certain SQL statement actions. The
drh6ed48bf2007-06-14 20:57:18 +00002863** second parameter to the callback is an integer code that specifies
2864** what action is being authorized. These are the integer action codes that
drh33c1be32008-01-30 16:16:14 +00002865** the authorizer callback may be passed.
drh6ed48bf2007-06-14 20:57:18 +00002866**
mihailima3f64902008-06-21 13:35:56 +00002867** These action code values signify what kind of operation is to be
drh33c1be32008-01-30 16:16:14 +00002868** authorized. The 3rd and 4th parameters to the authorization
drhf5befa02007-12-06 02:42:07 +00002869** callback function will be parameters or NULL depending on which of these
drh7a98b852009-12-13 23:03:01 +00002870** codes is used as the second parameter. ^(The 5th parameter to the
mihailima3f64902008-06-21 13:35:56 +00002871** authorizer callback is the name of the database ("main", "temp",
drh7a98b852009-12-13 23:03:01 +00002872** etc.) if applicable.)^ ^The 6th parameter to the authorizer callback
drh5cf590c2003-04-24 01:45:04 +00002873** is the name of the inner-most trigger or view that is responsible for
mihailima3f64902008-06-21 13:35:56 +00002874** the access attempt or NULL if this access attempt is directly from
drh6ed48bf2007-06-14 20:57:18 +00002875** top-level SQL code.
drhed6c8672003-01-12 18:02:16 +00002876*/
drh6ed48bf2007-06-14 20:57:18 +00002877/******************************************* 3rd ************ 4th ***********/
drhe5f9c642003-01-13 23:27:31 +00002878#define SQLITE_CREATE_INDEX 1 /* Index Name Table Name */
2879#define SQLITE_CREATE_TABLE 2 /* Table Name NULL */
2880#define SQLITE_CREATE_TEMP_INDEX 3 /* Index Name Table Name */
2881#define SQLITE_CREATE_TEMP_TABLE 4 /* Table Name NULL */
drh77ad4e42003-01-14 02:49:27 +00002882#define SQLITE_CREATE_TEMP_TRIGGER 5 /* Trigger Name Table Name */
drhe5f9c642003-01-13 23:27:31 +00002883#define SQLITE_CREATE_TEMP_VIEW 6 /* View Name NULL */
drh77ad4e42003-01-14 02:49:27 +00002884#define SQLITE_CREATE_TRIGGER 7 /* Trigger Name Table Name */
drhe5f9c642003-01-13 23:27:31 +00002885#define SQLITE_CREATE_VIEW 8 /* View Name NULL */
2886#define SQLITE_DELETE 9 /* Table Name NULL */
drh77ad4e42003-01-14 02:49:27 +00002887#define SQLITE_DROP_INDEX 10 /* Index Name Table Name */
drhe5f9c642003-01-13 23:27:31 +00002888#define SQLITE_DROP_TABLE 11 /* Table Name NULL */
drh77ad4e42003-01-14 02:49:27 +00002889#define SQLITE_DROP_TEMP_INDEX 12 /* Index Name Table Name */
drhe5f9c642003-01-13 23:27:31 +00002890#define SQLITE_DROP_TEMP_TABLE 13 /* Table Name NULL */
drh77ad4e42003-01-14 02:49:27 +00002891#define SQLITE_DROP_TEMP_TRIGGER 14 /* Trigger Name Table Name */
drhe5f9c642003-01-13 23:27:31 +00002892#define SQLITE_DROP_TEMP_VIEW 15 /* View Name NULL */
drh77ad4e42003-01-14 02:49:27 +00002893#define SQLITE_DROP_TRIGGER 16 /* Trigger Name Table Name */
drhe5f9c642003-01-13 23:27:31 +00002894#define SQLITE_DROP_VIEW 17 /* View Name NULL */
2895#define SQLITE_INSERT 18 /* Table Name NULL */
2896#define SQLITE_PRAGMA 19 /* Pragma Name 1st arg or NULL */
2897#define SQLITE_READ 20 /* Table Name Column Name */
2898#define SQLITE_SELECT 21 /* NULL NULL */
danielk1977ab9b7032008-12-30 06:24:58 +00002899#define SQLITE_TRANSACTION 22 /* Operation NULL */
drhe5f9c642003-01-13 23:27:31 +00002900#define SQLITE_UPDATE 23 /* Table Name Column Name */
drh81e293b2003-06-06 19:00:42 +00002901#define SQLITE_ATTACH 24 /* Filename NULL */
2902#define SQLITE_DETACH 25 /* Database Name NULL */
danielk19771c8c23c2004-11-12 15:53:37 +00002903#define SQLITE_ALTER_TABLE 26 /* Database Name Table Name */
danielk19771d54df82004-11-23 15:41:16 +00002904#define SQLITE_REINDEX 27 /* Index Name NULL */
drhe6e04962005-07-23 02:17:03 +00002905#define SQLITE_ANALYZE 28 /* Table Name NULL */
danielk1977f1a381e2006-06-16 08:01:02 +00002906#define SQLITE_CREATE_VTABLE 29 /* Table Name Module Name */
2907#define SQLITE_DROP_VTABLE 30 /* Table Name Module Name */
drh2e904c52008-11-10 23:54:05 +00002908#define SQLITE_FUNCTION 31 /* NULL Function Name */
danielk1977ab9b7032008-12-30 06:24:58 +00002909#define SQLITE_SAVEPOINT 32 /* Operation Savepoint Name */
drh6ed48bf2007-06-14 20:57:18 +00002910#define SQLITE_COPY 0 /* No longer used */
drh65a2aaa2014-01-16 22:40:02 +00002911#define SQLITE_RECURSIVE 33 /* NULL NULL */
drhed6c8672003-01-12 18:02:16 +00002912
2913/*
drhd68eee02009-12-11 03:44:18 +00002914** CAPI3REF: Tracing And Profiling Functions
drhd9a0a9a2015-04-14 15:14:06 +00002915** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00002916**
drhed916ba2016-07-13 21:30:03 +00002917** These routines are deprecated. Use the [sqlite3_trace_v2()] interface
2918** instead of the routines described here.
2919**
drh6ed48bf2007-06-14 20:57:18 +00002920** These routines register callback functions that can be used for
2921** tracing and profiling the execution of SQL statements.
drhfddfa2d2007-12-05 18:05:16 +00002922**
drhd68eee02009-12-11 03:44:18 +00002923** ^The callback function registered by sqlite3_trace() is invoked at
drh33c1be32008-01-30 16:16:14 +00002924** various times when an SQL statement is being run by [sqlite3_step()].
drhd68eee02009-12-11 03:44:18 +00002925** ^The sqlite3_trace() callback is invoked with a UTF-8 rendering of the
2926** SQL statement text as the statement first begins executing.
2927** ^(Additional sqlite3_trace() callbacks might occur
shane26b34032008-05-23 17:21:09 +00002928** as each triggered subprogram is entered. The callbacks for triggers
drhd68eee02009-12-11 03:44:18 +00002929** contain a UTF-8 SQL comment that identifies the trigger.)^
mihailima3f64902008-06-21 13:35:56 +00002930**
drh9ea88b22013-04-26 15:55:57 +00002931** The [SQLITE_TRACE_SIZE_LIMIT] compile-time option can be used to limit
2932** the length of [bound parameter] expansion in the output of sqlite3_trace().
2933**
drhd68eee02009-12-11 03:44:18 +00002934** ^The callback function registered by sqlite3_profile() is invoked
2935** as each SQL statement finishes. ^The profile callback contains
drh33c1be32008-01-30 16:16:14 +00002936** the original statement text and an estimate of wall-clock time
drhdf0db0f2010-07-29 10:07:21 +00002937** of how long that statement took to run. ^The profile callback
2938** time is in units of nanoseconds, however the current implementation
2939** is only capable of millisecond resolution so the six least significant
2940** digits in the time are meaningless. Future versions of SQLite
2941** might provide greater resolution on the profiler callback. The
2942** sqlite3_profile() function is considered experimental and is
2943** subject to change in future versions of SQLite.
drh18de4822003-01-16 16:28:53 +00002944*/
drhed916ba2016-07-13 21:30:03 +00002945SQLITE_DEPRECATED void *sqlite3_trace(sqlite3*,
drh4194ff62016-07-28 15:09:02 +00002946 void(*xTrace)(void*,const char*), void*);
drhed916ba2016-07-13 21:30:03 +00002947SQLITE_DEPRECATED void *sqlite3_profile(sqlite3*,
drh6d2069d2007-08-14 01:58:53 +00002948 void(*xProfile)(void*,const char*,sqlite3_uint64), void*);
drh18de4822003-01-16 16:28:53 +00002949
danielk1977348bb5d2003-10-18 09:37:26 +00002950/*
drhed916ba2016-07-13 21:30:03 +00002951** CAPI3REF: SQL Trace Event Codes
2952** KEYWORDS: SQLITE_TRACE
2953**
2954** These constants identify classes of events that can be monitored
2955** using the [sqlite3_trace_v2()] tracing logic. The third argument
2956** to [sqlite3_trace_v2()] is an OR-ed combination of one or more of
drh557341e2016-07-23 02:07:26 +00002957** the following constants. ^The first argument to the trace callback
drhed916ba2016-07-13 21:30:03 +00002958** is one of the following constants.
2959**
2960** New tracing constants may be added in future releases.
2961**
drh557341e2016-07-23 02:07:26 +00002962** ^A trace callback has four arguments: xCallback(T,C,P,X).
2963** ^The T argument is one of the integer type codes above.
2964** ^The C argument is a copy of the context pointer passed in as the
drhed916ba2016-07-13 21:30:03 +00002965** fourth argument to [sqlite3_trace_v2()].
drhfca760c2016-07-14 01:09:08 +00002966** The P and X arguments are pointers whose meanings depend on T.
drhed916ba2016-07-13 21:30:03 +00002967**
2968** <dl>
drhed916ba2016-07-13 21:30:03 +00002969** [[SQLITE_TRACE_STMT]] <dt>SQLITE_TRACE_STMT</dt>
drh557341e2016-07-23 02:07:26 +00002970** <dd>^An SQLITE_TRACE_STMT callback is invoked when a prepared statement
drhfca760c2016-07-14 01:09:08 +00002971** first begins running and possibly at other times during the
2972** execution of the prepared statement, such as at the start of each
drh557341e2016-07-23 02:07:26 +00002973** trigger subprogram. ^The P argument is a pointer to the
2974** [prepared statement]. ^The X argument is a pointer to a string which
drhbd441f72016-07-25 02:31:48 +00002975** is the unexpanded SQL text of the prepared statement or an SQL comment
2976** that indicates the invocation of a trigger. ^The callback can compute
2977** the same text that would have been returned by the legacy [sqlite3_trace()]
2978** interface by using the X argument when X begins with "--" and invoking
2979** [sqlite3_expanded_sql(P)] otherwise.
drhed916ba2016-07-13 21:30:03 +00002980**
2981** [[SQLITE_TRACE_PROFILE]] <dt>SQLITE_TRACE_PROFILE</dt>
drh557341e2016-07-23 02:07:26 +00002982** <dd>^An SQLITE_TRACE_PROFILE callback provides approximately the same
drhed916ba2016-07-13 21:30:03 +00002983** information as is provided by the [sqlite3_profile()] callback.
drh557341e2016-07-23 02:07:26 +00002984** ^The P argument is a pointer to the [prepared statement] and the
drh8afffe72016-07-23 04:58:57 +00002985** X argument points to a 64-bit integer which is the estimated of
drhfca760c2016-07-14 01:09:08 +00002986** the number of nanosecond that the prepared statement took to run.
drh557341e2016-07-23 02:07:26 +00002987** ^The SQLITE_TRACE_PROFILE callback is invoked when the statement finishes.
drhed916ba2016-07-13 21:30:03 +00002988**
2989** [[SQLITE_TRACE_ROW]] <dt>SQLITE_TRACE_ROW</dt>
drh557341e2016-07-23 02:07:26 +00002990** <dd>^An SQLITE_TRACE_ROW callback is invoked whenever a prepared
drhed916ba2016-07-13 21:30:03 +00002991** statement generates a single row of result.
drh557341e2016-07-23 02:07:26 +00002992** ^The P argument is a pointer to the [prepared statement] and the
drhed916ba2016-07-13 21:30:03 +00002993** X argument is unused.
2994**
2995** [[SQLITE_TRACE_CLOSE]] <dt>SQLITE_TRACE_CLOSE</dt>
drh557341e2016-07-23 02:07:26 +00002996** <dd>^An SQLITE_TRACE_CLOSE callback is invoked when a database
drhed916ba2016-07-13 21:30:03 +00002997** connection closes.
drh557341e2016-07-23 02:07:26 +00002998** ^The P argument is a pointer to the [database connection] object
drhed916ba2016-07-13 21:30:03 +00002999** and the X argument is unused.
3000** </dl>
3001*/
drhfca760c2016-07-14 01:09:08 +00003002#define SQLITE_TRACE_STMT 0x01
3003#define SQLITE_TRACE_PROFILE 0x02
3004#define SQLITE_TRACE_ROW 0x04
3005#define SQLITE_TRACE_CLOSE 0x08
drhed916ba2016-07-13 21:30:03 +00003006
3007/*
3008** CAPI3REF: SQL Trace Hook
3009** METHOD: sqlite3
3010**
drh557341e2016-07-23 02:07:26 +00003011** ^The sqlite3_trace_v2(D,M,X,P) interface registers a trace callback
drhed916ba2016-07-13 21:30:03 +00003012** function X against [database connection] D, using property mask M
drh557341e2016-07-23 02:07:26 +00003013** and context pointer P. ^If the X callback is
drhed916ba2016-07-13 21:30:03 +00003014** NULL or if the M mask is zero, then tracing is disabled. The
drh8afffe72016-07-23 04:58:57 +00003015** M argument should be the bitwise OR-ed combination of
3016** zero or more [SQLITE_TRACE] constants.
drhed916ba2016-07-13 21:30:03 +00003017**
drh557341e2016-07-23 02:07:26 +00003018** ^Each call to either sqlite3_trace() or sqlite3_trace_v2() overrides
drhed916ba2016-07-13 21:30:03 +00003019** (cancels) any prior calls to sqlite3_trace() or sqlite3_trace_v2().
3020**
drh557341e2016-07-23 02:07:26 +00003021** ^The X callback is invoked whenever any of the events identified by
3022** mask M occur. ^The integer return value from the callback is currently
drhed916ba2016-07-13 21:30:03 +00003023** ignored, though this may change in future releases. Callback
3024** implementations should return zero to ensure future compatibility.
3025**
drh557341e2016-07-23 02:07:26 +00003026** ^A trace callback is invoked with four arguments: callback(T,C,P,X).
3027** ^The T argument is one of the [SQLITE_TRACE]
drhed916ba2016-07-13 21:30:03 +00003028** constants to indicate why the callback was invoked.
drh557341e2016-07-23 02:07:26 +00003029** ^The C argument is a copy of the context pointer.
drhfca760c2016-07-14 01:09:08 +00003030** The P and X arguments are pointers whose meanings depend on T.
drhed916ba2016-07-13 21:30:03 +00003031**
3032** The sqlite3_trace_v2() interface is intended to replace the legacy
3033** interfaces [sqlite3_trace()] and [sqlite3_profile()], both of which
3034** are deprecated.
3035*/
3036int sqlite3_trace_v2(
3037 sqlite3*,
drhed916ba2016-07-13 21:30:03 +00003038 unsigned uMask,
drh4194ff62016-07-28 15:09:02 +00003039 int(*xCallback)(unsigned,void*,void*,void*),
drhed916ba2016-07-13 21:30:03 +00003040 void *pCtx
3041);
3042
3043/*
drhd68eee02009-12-11 03:44:18 +00003044** CAPI3REF: Query Progress Callbacks
drhd9a0a9a2015-04-14 15:14:06 +00003045** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00003046**
drhddbb6b42010-09-15 23:41:24 +00003047** ^The sqlite3_progress_handler(D,N,X,P) interface causes the callback
3048** function X to be invoked periodically during long running calls to
3049** [sqlite3_exec()], [sqlite3_step()] and [sqlite3_get_table()] for
3050** database connection D. An example use for this
drh6ed48bf2007-06-14 20:57:18 +00003051** interface is to keep a GUI updated during a large query.
danielk1977348bb5d2003-10-18 09:37:26 +00003052**
drhddbb6b42010-09-15 23:41:24 +00003053** ^The parameter P is passed through as the only parameter to the
drha95882f2013-07-11 19:04:23 +00003054** callback function X. ^The parameter N is the approximate number of
drhddbb6b42010-09-15 23:41:24 +00003055** [virtual machine instructions] that are evaluated between successive
drh0d1961e2013-07-25 16:27:51 +00003056** invocations of the callback X. ^If N is less than one then the progress
3057** handler is disabled.
drhddbb6b42010-09-15 23:41:24 +00003058**
3059** ^Only a single progress handler may be defined at one time per
3060** [database connection]; setting a new progress handler cancels the
3061** old one. ^Setting parameter X to NULL disables the progress handler.
3062** ^The progress handler is also disabled by setting N to a value less
3063** than 1.
3064**
drhd68eee02009-12-11 03:44:18 +00003065** ^If the progress callback returns non-zero, the operation is
drh33c1be32008-01-30 16:16:14 +00003066** interrupted. This feature can be used to implement a
drhc8075422008-09-10 13:09:23 +00003067** "Cancel" button on a GUI progress dialog box.
3068**
drhddbb6b42010-09-15 23:41:24 +00003069** The progress handler callback must not do anything that will modify
drhc8075422008-09-10 13:09:23 +00003070** the database connection that invoked the progress handler.
3071** Note that [sqlite3_prepare_v2()] and [sqlite3_step()] both modify their
3072** database connections for the meaning of "modify" in this paragraph.
danielk1977348bb5d2003-10-18 09:37:26 +00003073**
danielk1977348bb5d2003-10-18 09:37:26 +00003074*/
danielk1977f9d64d22004-06-19 08:18:07 +00003075void sqlite3_progress_handler(sqlite3*, int, int(*)(void*), void*);
danielk1977348bb5d2003-10-18 09:37:26 +00003076
drhaa940ea2004-01-15 02:44:03 +00003077/*
drhd68eee02009-12-11 03:44:18 +00003078** CAPI3REF: Opening A New Database Connection
drhd9a0a9a2015-04-14 15:14:06 +00003079** CONSTRUCTOR: sqlite3
drhaa940ea2004-01-15 02:44:03 +00003080**
dan00142d72011-05-05 12:35:33 +00003081** ^These routines open an SQLite database file as specified by the
drhd68eee02009-12-11 03:44:18 +00003082** filename argument. ^The filename argument is interpreted as UTF-8 for
mihailima3f64902008-06-21 13:35:56 +00003083** sqlite3_open() and sqlite3_open_v2() and as UTF-16 in the native byte
drhd68eee02009-12-11 03:44:18 +00003084** order for sqlite3_open16(). ^(A [database connection] handle is usually
mihailima3f64902008-06-21 13:35:56 +00003085** returned in *ppDb, even if an error occurs. The only exception is that
3086** if SQLite is unable to allocate memory to hold the [sqlite3] object,
3087** a NULL will be written into *ppDb instead of a pointer to the [sqlite3]
drhd68eee02009-12-11 03:44:18 +00003088** object.)^ ^(If the database is opened (and/or created) successfully, then
3089** [SQLITE_OK] is returned. Otherwise an [error code] is returned.)^ ^The
mihailima3f64902008-06-21 13:35:56 +00003090** [sqlite3_errmsg()] or [sqlite3_errmsg16()] routines can be used to obtain
drhd68eee02009-12-11 03:44:18 +00003091** an English language description of the error following a failure of any
3092** of the sqlite3_open() routines.
drh22fbcb82004-02-01 01:22:50 +00003093**
drhdf868a42014-10-04 19:31:53 +00003094** ^The default encoding will be UTF-8 for databases created using
3095** sqlite3_open() or sqlite3_open_v2(). ^The default encoding for databases
3096** created using sqlite3_open16() will be UTF-16 in the native byte order.
danielk197765904932004-05-26 06:18:37 +00003097**
drh33c1be32008-01-30 16:16:14 +00003098** Whether or not an error occurs when it is opened, resources
mihailima3f64902008-06-21 13:35:56 +00003099** associated with the [database connection] handle should be released by
3100** passing it to [sqlite3_close()] when it is no longer required.
drh6d2069d2007-08-14 01:58:53 +00003101**
mihailima3f64902008-06-21 13:35:56 +00003102** The sqlite3_open_v2() interface works like sqlite3_open()
shane26b34032008-05-23 17:21:09 +00003103** except that it accepts two additional parameters for additional control
drhd68eee02009-12-11 03:44:18 +00003104** over the new database connection. ^(The flags parameter to
3105** sqlite3_open_v2() can take one of
danielk19779a6284c2008-07-10 17:52:49 +00003106** the following three values, optionally combined with the
drhf1f12682009-09-09 14:17:52 +00003107** [SQLITE_OPEN_NOMUTEX], [SQLITE_OPEN_FULLMUTEX], [SQLITE_OPEN_SHAREDCACHE],
drh55fc08f2011-05-11 19:00:10 +00003108** [SQLITE_OPEN_PRIVATECACHE], and/or [SQLITE_OPEN_URI] flags:)^
drh6d2069d2007-08-14 01:58:53 +00003109**
mihailima3f64902008-06-21 13:35:56 +00003110** <dl>
drhd68eee02009-12-11 03:44:18 +00003111** ^(<dt>[SQLITE_OPEN_READONLY]</dt>
mihailima3f64902008-06-21 13:35:56 +00003112** <dd>The database is opened in read-only mode. If the database does not
drhd68eee02009-12-11 03:44:18 +00003113** already exist, an error is returned.</dd>)^
drh6d2069d2007-08-14 01:58:53 +00003114**
drhd68eee02009-12-11 03:44:18 +00003115** ^(<dt>[SQLITE_OPEN_READWRITE]</dt>
mihailima3f64902008-06-21 13:35:56 +00003116** <dd>The database is opened for reading and writing if possible, or reading
3117** only if the file is write protected by the operating system. In either
drhd68eee02009-12-11 03:44:18 +00003118** case the database must already exist, otherwise an error is returned.</dd>)^
drh9da9d962007-08-28 15:47:44 +00003119**
drhd68eee02009-12-11 03:44:18 +00003120** ^(<dt>[SQLITE_OPEN_READWRITE] | [SQLITE_OPEN_CREATE]</dt>
drh5b3696e2011-01-13 16:10:58 +00003121** <dd>The database is opened for reading and writing, and is created if
mihailima3f64902008-06-21 13:35:56 +00003122** it does not already exist. This is the behavior that is always used for
drhd68eee02009-12-11 03:44:18 +00003123** sqlite3_open() and sqlite3_open16().</dd>)^
mihailima3f64902008-06-21 13:35:56 +00003124** </dl>
3125**
3126** If the 3rd parameter to sqlite3_open_v2() is not one of the
drh55fc08f2011-05-11 19:00:10 +00003127** combinations shown above optionally combined with other
3128** [SQLITE_OPEN_READONLY | SQLITE_OPEN_* bits]
drhafacce02008-09-02 21:35:03 +00003129** then the behavior is undefined.
danielk19779a6284c2008-07-10 17:52:49 +00003130**
drhd68eee02009-12-11 03:44:18 +00003131** ^If the [SQLITE_OPEN_NOMUTEX] flag is set, then the database connection
drhafacce02008-09-02 21:35:03 +00003132** opens in the multi-thread [threading mode] as long as the single-thread
drhd68eee02009-12-11 03:44:18 +00003133** mode has not been set at compile-time or start-time. ^If the
drhafacce02008-09-02 21:35:03 +00003134** [SQLITE_OPEN_FULLMUTEX] flag is set then the database connection opens
3135** in the serialized [threading mode] unless single-thread was
3136** previously selected at compile-time or start-time.
drhd68eee02009-12-11 03:44:18 +00003137** ^The [SQLITE_OPEN_SHAREDCACHE] flag causes the database connection to be
drhf1f12682009-09-09 14:17:52 +00003138** eligible to use [shared cache mode], regardless of whether or not shared
drhd68eee02009-12-11 03:44:18 +00003139** cache is enabled using [sqlite3_enable_shared_cache()]. ^The
drhf1f12682009-09-09 14:17:52 +00003140** [SQLITE_OPEN_PRIVATECACHE] flag causes the database connection to not
3141** participate in [shared cache mode] even if it is enabled.
drhd9b97cf2008-04-10 13:38:17 +00003142**
dan00142d72011-05-05 12:35:33 +00003143** ^The fourth parameter to sqlite3_open_v2() is the name of the
3144** [sqlite3_vfs] object that defines the operating system interface that
3145** the new database connection should use. ^If the fourth parameter is
3146** a NULL pointer then the default [sqlite3_vfs] object is used.
3147**
drhd68eee02009-12-11 03:44:18 +00003148** ^If the filename is ":memory:", then a private, temporary in-memory database
3149** is created for the connection. ^This in-memory database will vanish when
mihailima3f64902008-06-21 13:35:56 +00003150** the database connection is closed. Future versions of SQLite might
3151** make use of additional special filenames that begin with the ":" character.
3152** It is recommended that when a database filename actually does begin with
3153** a ":" character you should prefix the filename with a pathname such as
3154** "./" to avoid ambiguity.
drh6d2069d2007-08-14 01:58:53 +00003155**
drhd68eee02009-12-11 03:44:18 +00003156** ^If the filename is an empty string, then a private, temporary
3157** on-disk database will be created. ^This private database will be
drh3f3b6352007-09-03 20:32:45 +00003158** automatically deleted as soon as the database connection is closed.
3159**
drh55fc08f2011-05-11 19:00:10 +00003160** [[URI filenames in sqlite3_open()]] <h3>URI Filenames</h3>
3161**
3162** ^If [URI filename] interpretation is enabled, and the filename argument
dan00142d72011-05-05 12:35:33 +00003163** begins with "file:", then the filename is interpreted as a URI. ^URI
3164** filename interpretation is enabled if the [SQLITE_OPEN_URI] flag is
drh09e16492017-08-24 15:43:26 +00003165** set in the third argument to sqlite3_open_v2(), or if it has
dan00142d72011-05-05 12:35:33 +00003166** been enabled globally using the [SQLITE_CONFIG_URI] option with the
drh55fc08f2011-05-11 19:00:10 +00003167** [sqlite3_config()] method or by the [SQLITE_USE_URI] compile-time option.
drh09e16492017-08-24 15:43:26 +00003168** URI filename interpretation is turned off
drh55fc08f2011-05-11 19:00:10 +00003169** by default, but future releases of SQLite might enable URI filename
drh8a17be02011-06-20 20:39:12 +00003170** interpretation by default. See "[URI filenames]" for additional
drh55fc08f2011-05-11 19:00:10 +00003171** information.
dan00142d72011-05-05 12:35:33 +00003172**
drh55fc08f2011-05-11 19:00:10 +00003173** URI filenames are parsed according to RFC 3986. ^If the URI contains an
3174** authority, then it must be either an empty string or the string
dan00142d72011-05-05 12:35:33 +00003175** "localhost". ^If the authority is not an empty string or "localhost", an
drh55fc08f2011-05-11 19:00:10 +00003176** error is returned to the caller. ^The fragment component of a URI, if
3177** present, is ignored.
dan00142d72011-05-05 12:35:33 +00003178**
drh55fc08f2011-05-11 19:00:10 +00003179** ^SQLite uses the path component of the URI as the name of the disk file
3180** which contains the database. ^If the path begins with a '/' character,
3181** then it is interpreted as an absolute path. ^If the path does not begin
3182** with a '/' (meaning that the authority section is omitted from the URI)
3183** then the path is interpreted as a relative path.
drh00729cb2014-10-04 11:59:33 +00003184** ^(On windows, the first component of an absolute path
3185** is a drive specification (e.g. "C:").)^
dan00142d72011-05-05 12:35:33 +00003186**
drh55fc08f2011-05-11 19:00:10 +00003187** [[core URI query parameters]]
dan00142d72011-05-05 12:35:33 +00003188** The query component of a URI may contain parameters that are interpreted
drh55fc08f2011-05-11 19:00:10 +00003189** either by SQLite itself, or by a [VFS | custom VFS implementation].
drh00729cb2014-10-04 11:59:33 +00003190** SQLite and its built-in [VFSes] interpret the
3191** following query parameters:
dan00142d72011-05-05 12:35:33 +00003192**
3193** <ul>
3194** <li> <b>vfs</b>: ^The "vfs" parameter may be used to specify the name of
3195** a VFS object that provides the operating system interface that should
3196** be used to access the database file on disk. ^If this option is set to
3197** an empty string the default VFS object is used. ^Specifying an unknown
dan286ab7c2011-05-06 18:34:54 +00003198** VFS is an error. ^If sqlite3_open_v2() is used and the vfs option is
3199** present, then the VFS specified by the option takes precedence over
3200** the value passed as the fourth parameter to sqlite3_open_v2().
dan00142d72011-05-05 12:35:33 +00003201**
drh9cb72002012-05-28 17:51:53 +00003202** <li> <b>mode</b>: ^(The mode parameter may be set to either "ro", "rw",
3203** "rwc", or "memory". Attempting to set it to any other value is
3204** an error)^.
dan286ab7c2011-05-06 18:34:54 +00003205** ^If "ro" is specified, then the database is opened for read-only
3206** access, just as if the [SQLITE_OPEN_READONLY] flag had been set in the
mistachkin60a75232012-09-10 06:02:57 +00003207** third argument to sqlite3_open_v2(). ^If the mode option is set to
dan286ab7c2011-05-06 18:34:54 +00003208** "rw", then the database is opened for read-write (but not create)
3209** access, as if SQLITE_OPEN_READWRITE (but not SQLITE_OPEN_CREATE) had
3210** been set. ^Value "rwc" is equivalent to setting both
drh9cb72002012-05-28 17:51:53 +00003211** SQLITE_OPEN_READWRITE and SQLITE_OPEN_CREATE. ^If the mode option is
drh666a1d82012-05-29 17:59:11 +00003212** set to "memory" then a pure [in-memory database] that never reads
drh9cb72002012-05-28 17:51:53 +00003213** or writes from disk is used. ^It is an error to specify a value for
3214** the mode parameter that is less restrictive than that specified by
3215** the flags passed in the third parameter to sqlite3_open_v2().
dan00142d72011-05-05 12:35:33 +00003216**
3217** <li> <b>cache</b>: ^The cache parameter may be set to either "shared" or
3218** "private". ^Setting it to "shared" is equivalent to setting the
3219** SQLITE_OPEN_SHAREDCACHE bit in the flags argument passed to
3220** sqlite3_open_v2(). ^Setting the cache parameter to "private" is
3221** equivalent to setting the SQLITE_OPEN_PRIVATECACHE bit.
3222** ^If sqlite3_open_v2() is used and the "cache" parameter is present in
mistachkin48864df2013-03-21 21:20:32 +00003223** a URI filename, its value overrides any behavior requested by setting
dan00142d72011-05-05 12:35:33 +00003224** SQLITE_OPEN_PRIVATECACHE or SQLITE_OPEN_SHAREDCACHE flag.
drh62e603a2014-05-07 15:09:24 +00003225**
drh00729cb2014-10-04 11:59:33 +00003226** <li> <b>psow</b>: ^The psow parameter indicates whether or not the
drh62e603a2014-05-07 15:09:24 +00003227** [powersafe overwrite] property does or does not apply to the
drh00729cb2014-10-04 11:59:33 +00003228** storage media on which the database file resides.
drh62e603a2014-05-07 15:09:24 +00003229**
3230** <li> <b>nolock</b>: ^The nolock parameter is a boolean query parameter
3231** which if set disables file locking in rollback journal modes. This
3232** is useful for accessing a database on a filesystem that does not
3233** support locking. Caution: Database corruption might result if two
3234** or more processes write to the same database and any one of those
3235** processes uses nolock=1.
3236**
3237** <li> <b>immutable</b>: ^The immutable parameter is a boolean query
3238** parameter that indicates that the database file is stored on
3239** read-only media. ^When immutable is set, SQLite assumes that the
3240** database file cannot be changed, even by a process with higher
3241** privilege, and so the database is opened read-only and all locking
3242** and change detection is disabled. Caution: Setting the immutable
3243** property on a database file that does in fact change can result
3244** in incorrect query results and/or [SQLITE_CORRUPT] errors.
3245** See also: [SQLITE_IOCAP_IMMUTABLE].
3246**
dan00142d72011-05-05 12:35:33 +00003247** </ul>
3248**
3249** ^Specifying an unknown parameter in the query component of a URI is not an
drh55fc08f2011-05-11 19:00:10 +00003250** error. Future versions of SQLite might understand additional query
3251** parameters. See "[query parameters with special meaning to SQLite]" for
3252** additional information.
dan00142d72011-05-05 12:35:33 +00003253**
drh55fc08f2011-05-11 19:00:10 +00003254** [[URI filename examples]] <h3>URI filename examples</h3>
dan00142d72011-05-05 12:35:33 +00003255**
3256** <table border="1" align=center cellpadding=5>
3257** <tr><th> URI filenames <th> Results
3258** <tr><td> file:data.db <td>
3259** Open the file "data.db" in the current directory.
3260** <tr><td> file:/home/fred/data.db<br>
3261** file:///home/fred/data.db <br>
3262** file://localhost/home/fred/data.db <br> <td>
3263** Open the database file "/home/fred/data.db".
3264** <tr><td> file://darkstar/home/fred/data.db <td>
3265** An error. "darkstar" is not a recognized authority.
3266** <tr><td style="white-space:nowrap">
3267** file:///C:/Documents%20and%20Settings/fred/Desktop/data.db
3268** <td> Windows only: Open the file "data.db" on fred's desktop on drive
dan286ab7c2011-05-06 18:34:54 +00003269** C:. Note that the %20 escaping in this example is not strictly
3270** necessary - space characters can be used literally
dan00142d72011-05-05 12:35:33 +00003271** in URI filenames.
3272** <tr><td> file:data.db?mode=ro&cache=private <td>
3273** Open file "data.db" in the current directory for read-only access.
3274** Regardless of whether or not shared-cache mode is enabled by
3275** default, use a private cache.
drh62e603a2014-05-07 15:09:24 +00003276** <tr><td> file:/home/fred/data.db?vfs=unix-dotfile <td>
3277** Open file "/home/fred/data.db". Use the special VFS "unix-dotfile"
3278** that uses dot-files in place of posix advisory locking.
dan00142d72011-05-05 12:35:33 +00003279** <tr><td> file:data.db?mode=readonly <td>
3280** An error. "readonly" is not a valid option for the "mode" parameter.
3281** </table>
3282**
3283** ^URI hexadecimal escape sequences (%HH) are supported within the path and
3284** query components of a URI. A hexadecimal escape sequence consists of a
3285** percent sign - "%" - followed by exactly two hexadecimal digits
3286** specifying an octet value. ^Before the path or query components of a
3287** URI filename are interpreted, they are encoded using UTF-8 and all
3288** hexadecimal escape sequences replaced by a single byte containing the
3289** corresponding octet. If this process generates an invalid UTF-8 encoding,
3290** the results are undefined.
drh6ed48bf2007-06-14 20:57:18 +00003291**
shane26b34032008-05-23 17:21:09 +00003292** <b>Note to Windows users:</b> The encoding used for the filename argument
mihailima3f64902008-06-21 13:35:56 +00003293** of sqlite3_open() and sqlite3_open_v2() must be UTF-8, not whatever
drh9da9d962007-08-28 15:47:44 +00003294** codepage is currently defined. Filenames containing international
3295** characters must be converted to UTF-8 prior to passing them into
mihailima3f64902008-06-21 13:35:56 +00003296** sqlite3_open() or sqlite3_open_v2().
mistachkin40e63192012-08-28 00:09:58 +00003297**
3298** <b>Note to Windows Runtime users:</b> The temporary directory must be set
3299** prior to calling sqlite3_open() or sqlite3_open_v2(). Otherwise, various
3300** features that require the use of temporary files may fail.
3301**
3302** See also: [sqlite3_temp_directory]
danielk197765904932004-05-26 06:18:37 +00003303*/
3304int sqlite3_open(
3305 const char *filename, /* Database filename (UTF-8) */
danielk19774f057f92004-06-08 00:02:33 +00003306 sqlite3 **ppDb /* OUT: SQLite db handle */
danielk197765904932004-05-26 06:18:37 +00003307);
danielk197765904932004-05-26 06:18:37 +00003308int sqlite3_open16(
3309 const void *filename, /* Database filename (UTF-16) */
danielk19774f057f92004-06-08 00:02:33 +00003310 sqlite3 **ppDb /* OUT: SQLite db handle */
danielk197765904932004-05-26 06:18:37 +00003311);
drh6d2069d2007-08-14 01:58:53 +00003312int sqlite3_open_v2(
drh428e2822007-08-30 16:23:19 +00003313 const char *filename, /* Database filename (UTF-8) */
drh6d2069d2007-08-14 01:58:53 +00003314 sqlite3 **ppDb, /* OUT: SQLite db handle */
3315 int flags, /* Flags */
drhd84f9462007-08-15 11:28:56 +00003316 const char *zVfs /* Name of VFS module to use */
drh6d2069d2007-08-14 01:58:53 +00003317);
danielk1977295ba552004-05-19 10:34:51 +00003318
danielk197765904932004-05-26 06:18:37 +00003319/*
drhcc487d12011-05-17 18:53:08 +00003320** CAPI3REF: Obtain Values For URI Parameters
3321**
drh92913722011-12-23 00:07:33 +00003322** These are utility routines, useful to VFS implementations, that check
drhcc487d12011-05-17 18:53:08 +00003323** to see if a database file was a URI that contained a specific query
drh92913722011-12-23 00:07:33 +00003324** parameter, and if so obtains the value of that query parameter.
drhcc487d12011-05-17 18:53:08 +00003325**
drh065dfe62012-01-13 15:50:02 +00003326** If F is the database filename pointer passed into the xOpen() method of
3327** a VFS implementation when the flags parameter to xOpen() has one or
3328** more of the [SQLITE_OPEN_URI] or [SQLITE_OPEN_MAIN_DB] bits set and
3329** P is the name of the query parameter, then
drh92913722011-12-23 00:07:33 +00003330** sqlite3_uri_parameter(F,P) returns the value of the P
3331** parameter if it exists or a NULL pointer if P does not appear as a
3332** query parameter on F. If P is a query parameter of F
3333** has no explicit value, then sqlite3_uri_parameter(F,P) returns
3334** a pointer to an empty string.
drhcc487d12011-05-17 18:53:08 +00003335**
drh92913722011-12-23 00:07:33 +00003336** The sqlite3_uri_boolean(F,P,B) routine assumes that P is a boolean
drh0c7db642012-01-31 13:35:29 +00003337** parameter and returns true (1) or false (0) according to the value
3338** of P. The sqlite3_uri_boolean(F,P,B) routine returns true (1) if the
3339** value of query parameter P is one of "yes", "true", or "on" in any
3340** case or if the value begins with a non-zero number. The
3341** sqlite3_uri_boolean(F,P,B) routines returns false (0) if the value of
3342** query parameter P is one of "no", "false", or "off" in any case or
3343** if the value begins with a numeric zero. If P is not a query
3344** parameter on F or if the value of P is does not match any of the
3345** above, then sqlite3_uri_boolean(F,P,B) returns (B!=0).
drh92913722011-12-23 00:07:33 +00003346**
3347** The sqlite3_uri_int64(F,P,D) routine converts the value of P into a
3348** 64-bit signed integer and returns that integer, or D if P does not
3349** exist. If the value of P is something other than an integer, then
3350** zero is returned.
3351**
3352** If F is a NULL pointer, then sqlite3_uri_parameter(F,P) returns NULL and
3353** sqlite3_uri_boolean(F,P,B) returns B. If F is not a NULL pointer and
drh710869d2012-01-13 16:48:07 +00003354** is not a database file pathname pointer that SQLite passed into the xOpen
drh065dfe62012-01-13 15:50:02 +00003355** VFS method, then the behavior of this routine is undefined and probably
3356** undesirable.
drhcc487d12011-05-17 18:53:08 +00003357*/
3358const char *sqlite3_uri_parameter(const char *zFilename, const char *zParam);
drh92913722011-12-23 00:07:33 +00003359int sqlite3_uri_boolean(const char *zFile, const char *zParam, int bDefault);
3360sqlite3_int64 sqlite3_uri_int64(const char*, const char*, sqlite3_int64);
drhcc487d12011-05-17 18:53:08 +00003361
3362
3363/*
drhd68eee02009-12-11 03:44:18 +00003364** CAPI3REF: Error Codes And Messages
drhd9a0a9a2015-04-14 15:14:06 +00003365** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00003366**
drhd671e662015-03-17 20:39:11 +00003367** ^If the most recent sqlite3_* API call associated with
3368** [database connection] D failed, then the sqlite3_errcode(D) interface
3369** returns the numeric [result code] or [extended result code] for that
3370** API call.
3371** If the most recent API call was successful,
3372** then the return value from sqlite3_errcode() is undefined.
3373** ^The sqlite3_extended_errcode()
drh99dfe5e2008-10-30 15:03:15 +00003374** interface is the same except that it always returns the
3375** [extended result code] even when extended result codes are
3376** disabled.
drh6ed48bf2007-06-14 20:57:18 +00003377**
drhd68eee02009-12-11 03:44:18 +00003378** ^The sqlite3_errmsg() and sqlite3_errmsg16() return English-language
mihailimebe796c2008-06-21 20:11:17 +00003379** text that describes the error, as either UTF-8 or UTF-16 respectively.
drhd68eee02009-12-11 03:44:18 +00003380** ^(Memory to hold the error message string is managed internally.
mihailimefc8e8a2008-06-21 16:47:09 +00003381** The application does not need to worry about freeing the result.
mlcreech27358862008-03-01 23:34:46 +00003382** However, the error string might be overwritten or deallocated by
drhd68eee02009-12-11 03:44:18 +00003383** subsequent calls to other SQLite interface functions.)^
danielk197765904932004-05-26 06:18:37 +00003384**
mistachkin5dac8432012-09-11 02:00:25 +00003385** ^The sqlite3_errstr() interface returns the English-language text
3386** that describes the [result code], as UTF-8.
3387** ^(Memory to hold the error message string is managed internally
3388** and must not be freed by the application)^.
3389**
drh2838b472008-11-04 14:48:22 +00003390** When the serialized [threading mode] is in use, it might be the
3391** case that a second error occurs on a separate thread in between
3392** the time of the first error and the call to these interfaces.
3393** When that happens, the second error will be reported since these
3394** interfaces always report the most recent result. To avoid
3395** this, each thread can obtain exclusive use of the [database connection] D
3396** by invoking [sqlite3_mutex_enter]([sqlite3_db_mutex](D)) before beginning
3397** to use D and invoking [sqlite3_mutex_leave]([sqlite3_db_mutex](D)) after
3398** all calls to the interfaces listed here are completed.
3399**
drhd55d57e2008-07-07 17:53:07 +00003400** If an interface fails with SQLITE_MISUSE, that means the interface
3401** was invoked incorrectly by the application. In that case, the
3402** error code and message may or may not be set.
danielk197765904932004-05-26 06:18:37 +00003403*/
3404int sqlite3_errcode(sqlite3 *db);
drh99dfe5e2008-10-30 15:03:15 +00003405int sqlite3_extended_errcode(sqlite3 *db);
danielk197765904932004-05-26 06:18:37 +00003406const char *sqlite3_errmsg(sqlite3*);
danielk197765904932004-05-26 06:18:37 +00003407const void *sqlite3_errmsg16(sqlite3*);
mistachkin5dac8432012-09-11 02:00:25 +00003408const char *sqlite3_errstr(int);
danielk197765904932004-05-26 06:18:37 +00003409
3410/*
drhd9a0a9a2015-04-14 15:14:06 +00003411** CAPI3REF: Prepared Statement Object
drh33c1be32008-01-30 16:16:14 +00003412** KEYWORDS: {prepared statement} {prepared statements}
drh6ed48bf2007-06-14 20:57:18 +00003413**
drhd9a0a9a2015-04-14 15:14:06 +00003414** An instance of this object represents a single SQL statement that
3415** has been compiled into binary form and is ready to be evaluated.
mihailimefc8e8a2008-06-21 16:47:09 +00003416**
drhd9a0a9a2015-04-14 15:14:06 +00003417** Think of each SQL statement as a separate computer program. The
3418** original SQL text is source code. A prepared statement object
3419** is the compiled object code. All SQL must be converted into a
3420** prepared statement before it can be run.
3421**
3422** The life-cycle of a prepared statement object usually goes like this:
drh6ed48bf2007-06-14 20:57:18 +00003423**
3424** <ol>
drhd9a0a9a2015-04-14 15:14:06 +00003425** <li> Create the prepared statement object using [sqlite3_prepare_v2()].
3426** <li> Bind values to [parameters] using the sqlite3_bind_*()
mihailimefc8e8a2008-06-21 16:47:09 +00003427** interfaces.
drh6ed48bf2007-06-14 20:57:18 +00003428** <li> Run the SQL by calling [sqlite3_step()] one or more times.
drhd9a0a9a2015-04-14 15:14:06 +00003429** <li> Reset the prepared statement using [sqlite3_reset()] then go back
drh6ed48bf2007-06-14 20:57:18 +00003430** to step 2. Do this zero or more times.
3431** <li> Destroy the object using [sqlite3_finalize()].
3432** </ol>
danielk197765904932004-05-26 06:18:37 +00003433*/
danielk1977fc57d7b2004-05-26 02:04:57 +00003434typedef struct sqlite3_stmt sqlite3_stmt;
3435
danielk1977e3209e42004-05-20 01:40:18 +00003436/*
drhd68eee02009-12-11 03:44:18 +00003437** CAPI3REF: Run-time Limits
drhd9a0a9a2015-04-14 15:14:06 +00003438** METHOD: sqlite3
drhcaa639f2008-03-20 00:32:20 +00003439**
drhd68eee02009-12-11 03:44:18 +00003440** ^(This interface allows the size of various constructs to be limited
drhcaa639f2008-03-20 00:32:20 +00003441** on a connection by connection basis. The first parameter is the
3442** [database connection] whose limit is to be set or queried. The
3443** second parameter is one of the [limit categories] that define a
3444** class of constructs to be size limited. The third parameter is the
drh4e93f5b2010-09-07 14:59:15 +00003445** new limit for that construct.)^
drhcaa639f2008-03-20 00:32:20 +00003446**
drhd68eee02009-12-11 03:44:18 +00003447** ^If the new limit is a negative number, the limit is unchanged.
drh4e93f5b2010-09-07 14:59:15 +00003448** ^(For each limit category SQLITE_LIMIT_<i>NAME</i> there is a
drhae1a8802009-02-11 15:04:40 +00003449** [limits | hard upper bound]
drh4e93f5b2010-09-07 14:59:15 +00003450** set at compile-time by a C preprocessor macro called
3451** [limits | SQLITE_MAX_<i>NAME</i>].
drhd68eee02009-12-11 03:44:18 +00003452** (The "_LIMIT_" in the name is changed to "_MAX_".))^
3453** ^Attempts to increase a limit above its hard upper bound are
drh7a98b852009-12-13 23:03:01 +00003454** silently truncated to the hard upper bound.
drhcaa639f2008-03-20 00:32:20 +00003455**
drh4e93f5b2010-09-07 14:59:15 +00003456** ^Regardless of whether or not the limit was changed, the
3457** [sqlite3_limit()] interface returns the prior value of the limit.
3458** ^Hence, to find the current value of a limit without changing it,
3459** simply invoke this interface with the third parameter set to -1.
3460**
drhd68eee02009-12-11 03:44:18 +00003461** Run-time limits are intended for use in applications that manage
drhbb4957f2008-03-20 14:03:29 +00003462** both their own internal database and also databases that are controlled
3463** by untrusted external sources. An example application might be a
drh46f33ef2009-02-11 15:23:35 +00003464** web browser that has its own databases for storing history and
shane26b34032008-05-23 17:21:09 +00003465** separate databases controlled by JavaScript applications downloaded
shane236ce972008-05-30 15:35:30 +00003466** off the Internet. The internal databases can be given the
drhbb4957f2008-03-20 14:03:29 +00003467** large, default limits. Databases managed by external sources can
3468** be given much smaller limits designed to prevent a denial of service
mihailimefc8e8a2008-06-21 16:47:09 +00003469** attack. Developers might also want to use the [sqlite3_set_authorizer()]
drhf47ce562008-03-20 18:00:49 +00003470** interface to further control untrusted SQL. The size of the database
3471** created by an untrusted script can be contained using the
3472** [max_page_count] [PRAGMA].
drhbb4957f2008-03-20 14:03:29 +00003473**
drha911abe2008-07-16 13:29:51 +00003474** New run-time limit categories may be added in future releases.
drhcaa639f2008-03-20 00:32:20 +00003475*/
3476int sqlite3_limit(sqlite3*, int id, int newVal);
3477
3478/*
drhd68eee02009-12-11 03:44:18 +00003479** CAPI3REF: Run-Time Limit Categories
drhe7ae4e22009-11-02 15:51:52 +00003480** KEYWORDS: {limit category} {*limit categories}
mihailimefc8e8a2008-06-21 16:47:09 +00003481**
drh46f33ef2009-02-11 15:23:35 +00003482** These constants define various performance limits
3483** that can be lowered at run-time using [sqlite3_limit()].
3484** The synopsis of the meanings of the various limits is shown below.
3485** Additional information is available at [limits | Limits in SQLite].
drhbb4957f2008-03-20 14:03:29 +00003486**
3487** <dl>
drhb706fe52011-05-11 20:54:32 +00003488** [[SQLITE_LIMIT_LENGTH]] ^(<dt>SQLITE_LIMIT_LENGTH</dt>
drh4e93f5b2010-09-07 14:59:15 +00003489** <dd>The maximum size of any string or BLOB or table row, in bytes.<dd>)^
drhbb4957f2008-03-20 14:03:29 +00003490**
drhb706fe52011-05-11 20:54:32 +00003491** [[SQLITE_LIMIT_SQL_LENGTH]] ^(<dt>SQLITE_LIMIT_SQL_LENGTH</dt>
drhdf6473a2009-12-13 22:20:08 +00003492** <dd>The maximum length of an SQL statement, in bytes.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003493**
drhb706fe52011-05-11 20:54:32 +00003494** [[SQLITE_LIMIT_COLUMN]] ^(<dt>SQLITE_LIMIT_COLUMN</dt>
drhbb4957f2008-03-20 14:03:29 +00003495** <dd>The maximum number of columns in a table definition or in the
drh46f33ef2009-02-11 15:23:35 +00003496** result set of a [SELECT] or the maximum number of columns in an index
drhd68eee02009-12-11 03:44:18 +00003497** or in an ORDER BY or GROUP BY clause.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003498**
drhb706fe52011-05-11 20:54:32 +00003499** [[SQLITE_LIMIT_EXPR_DEPTH]] ^(<dt>SQLITE_LIMIT_EXPR_DEPTH</dt>
drhd68eee02009-12-11 03:44:18 +00003500** <dd>The maximum depth of the parse tree on any expression.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003501**
drhb706fe52011-05-11 20:54:32 +00003502** [[SQLITE_LIMIT_COMPOUND_SELECT]] ^(<dt>SQLITE_LIMIT_COMPOUND_SELECT</dt>
drhd68eee02009-12-11 03:44:18 +00003503** <dd>The maximum number of terms in a compound SELECT statement.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003504**
drhb706fe52011-05-11 20:54:32 +00003505** [[SQLITE_LIMIT_VDBE_OP]] ^(<dt>SQLITE_LIMIT_VDBE_OP</dt>
drhbb4957f2008-03-20 14:03:29 +00003506** <dd>The maximum number of instructions in a virtual machine program
drh1cb02662017-03-17 22:50:16 +00003507** used to implement an SQL statement. If [sqlite3_prepare_v2()] or
3508** the equivalent tries to allocate space for more than this many opcodes
drh46acfc22017-03-17 23:08:11 +00003509** in a single prepared statement, an SQLITE_NOMEM error is returned.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003510**
drhb706fe52011-05-11 20:54:32 +00003511** [[SQLITE_LIMIT_FUNCTION_ARG]] ^(<dt>SQLITE_LIMIT_FUNCTION_ARG</dt>
drhd68eee02009-12-11 03:44:18 +00003512** <dd>The maximum number of arguments on a function.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003513**
drhb706fe52011-05-11 20:54:32 +00003514** [[SQLITE_LIMIT_ATTACHED]] ^(<dt>SQLITE_LIMIT_ATTACHED</dt>
drh7a98b852009-12-13 23:03:01 +00003515** <dd>The maximum number of [ATTACH | attached databases].)^</dd>
drhbb4957f2008-03-20 14:03:29 +00003516**
drhb706fe52011-05-11 20:54:32 +00003517** [[SQLITE_LIMIT_LIKE_PATTERN_LENGTH]]
drh7a98b852009-12-13 23:03:01 +00003518** ^(<dt>SQLITE_LIMIT_LIKE_PATTERN_LENGTH</dt>
drh46f33ef2009-02-11 15:23:35 +00003519** <dd>The maximum length of the pattern argument to the [LIKE] or
drhd68eee02009-12-11 03:44:18 +00003520** [GLOB] operators.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003521**
drhb706fe52011-05-11 20:54:32 +00003522** [[SQLITE_LIMIT_VARIABLE_NUMBER]]
drhd68eee02009-12-11 03:44:18 +00003523** ^(<dt>SQLITE_LIMIT_VARIABLE_NUMBER</dt>
drh4e93f5b2010-09-07 14:59:15 +00003524** <dd>The maximum index number of any [parameter] in an SQL statement.)^
drh417168a2009-09-07 18:14:02 +00003525**
drhb706fe52011-05-11 20:54:32 +00003526** [[SQLITE_LIMIT_TRIGGER_DEPTH]] ^(<dt>SQLITE_LIMIT_TRIGGER_DEPTH</dt>
drhd68eee02009-12-11 03:44:18 +00003527** <dd>The maximum depth of recursion for triggers.</dd>)^
drh111544c2014-08-29 16:20:47 +00003528**
3529** [[SQLITE_LIMIT_WORKER_THREADS]] ^(<dt>SQLITE_LIMIT_WORKER_THREADS</dt>
drh54d75182014-09-01 18:21:27 +00003530** <dd>The maximum number of auxiliary worker threads that a single
3531** [prepared statement] may start.</dd>)^
drhbb4957f2008-03-20 14:03:29 +00003532** </dl>
drhcaa639f2008-03-20 00:32:20 +00003533*/
3534#define SQLITE_LIMIT_LENGTH 0
3535#define SQLITE_LIMIT_SQL_LENGTH 1
3536#define SQLITE_LIMIT_COLUMN 2
3537#define SQLITE_LIMIT_EXPR_DEPTH 3
3538#define SQLITE_LIMIT_COMPOUND_SELECT 4
3539#define SQLITE_LIMIT_VDBE_OP 5
3540#define SQLITE_LIMIT_FUNCTION_ARG 6
3541#define SQLITE_LIMIT_ATTACHED 7
drhb1a6c3c2008-03-20 16:30:17 +00003542#define SQLITE_LIMIT_LIKE_PATTERN_LENGTH 8
3543#define SQLITE_LIMIT_VARIABLE_NUMBER 9
drh417168a2009-09-07 18:14:02 +00003544#define SQLITE_LIMIT_TRIGGER_DEPTH 10
drh111544c2014-08-29 16:20:47 +00003545#define SQLITE_LIMIT_WORKER_THREADS 11
drhcaa639f2008-03-20 00:32:20 +00003546
drh2c2f3922017-06-01 00:54:35 +00003547/*
3548** CAPI3REF: Prepare Flags
drh2c2f3922017-06-01 00:54:35 +00003549**
3550** These constants define various flags that can be passed into
drh1d1982c2017-06-29 17:27:04 +00003551** "prepFlags" parameter of the [sqlite3_prepare_v3()] and
3552** [sqlite3_prepare16_v3()] interfaces.
3553**
3554** New flags may be added in future releases of SQLite.
drh2c2f3922017-06-01 00:54:35 +00003555**
3556** <dl>
3557** [[SQLITE_PREPARE_PERSISTENT]] ^(<dt>SQLITE_PREPARE_PERSISTENT</dt>
drh4ba5f332017-07-13 22:03:34 +00003558** <dd>The SQLITE_PREPARE_PERSISTENT flag is a hint to the query planner
3559** that the prepared statement will be retained for a long time and
drh923260c2017-07-14 13:24:31 +00003560** probably reused many times.)^ ^Without this flag, [sqlite3_prepare_v3()]
drh4ba5f332017-07-13 22:03:34 +00003561** and [sqlite3_prepare16_v3()] assume that the prepared statement will
3562** be used just once or at most a few times and then destroyed using
3563** [sqlite3_finalize()] relatively soon. The current implementation acts
3564** on this hint by avoiding the use of [lookaside memory] so as not to
3565** deplete the limited store of lookaside memory. Future versions of
3566** SQLite may act on this hint differently.
drh2c2f3922017-06-01 00:54:35 +00003567** </dl>
3568*/
3569#define SQLITE_PREPARE_PERSISTENT 0x01
drh1cb02662017-03-17 22:50:16 +00003570
drhcaa639f2008-03-20 00:32:20 +00003571/*
drhd68eee02009-12-11 03:44:18 +00003572** CAPI3REF: Compiling An SQL Statement
mihailimefc8e8a2008-06-21 16:47:09 +00003573** KEYWORDS: {SQL statement compiler}
drhd9a0a9a2015-04-14 15:14:06 +00003574** METHOD: sqlite3
3575** CONSTRUCTOR: sqlite3_stmt
danielk197765904932004-05-26 06:18:37 +00003576**
drh1d1982c2017-06-29 17:27:04 +00003577** To execute an SQL statement, it must first be compiled into a byte-code
3578** program using one of these routines. Or, in other words, these routines
3579** are constructors for the [prepared statement] object.
3580**
3581** The preferred routine to use is [sqlite3_prepare_v2()]. The
3582** [sqlite3_prepare()] interface is legacy and should be avoided.
3583** [sqlite3_prepare_v3()] has an extra "prepFlags" option that is used
3584** for special purposes.
3585**
3586** The use of the UTF-8 interfaces is preferred, as SQLite currently
3587** does all parsing using UTF-8. The UTF-16 interfaces are provided
3588** as a convenience. The UTF-16 interfaces work by converting the
3589** input text into UTF-8, then invoking the corresponding UTF-8 interface.
drh6ed48bf2007-06-14 20:57:18 +00003590**
mihailimefc8e8a2008-06-21 16:47:09 +00003591** The first argument, "db", is a [database connection] obtained from a
drh860e0772009-04-02 18:32:26 +00003592** prior successful call to [sqlite3_open()], [sqlite3_open_v2()] or
3593** [sqlite3_open16()]. The database connection must not have been closed.
mihailimefc8e8a2008-06-21 16:47:09 +00003594**
3595** The second argument, "zSql", is the statement to be compiled, encoded
drh2c2f3922017-06-01 00:54:35 +00003596** as either UTF-8 or UTF-16. The sqlite3_prepare(), sqlite3_prepare_v2(),
3597** and sqlite3_prepare_v3()
3598** interfaces use UTF-8, and sqlite3_prepare16(), sqlite3_prepare16_v2(),
3599** and sqlite3_prepare16_v3() use UTF-16.
drh21f06722007-07-19 12:41:39 +00003600**
drhc941a4b2015-02-26 02:33:52 +00003601** ^If the nByte argument is negative, then zSql is read up to the
3602** first zero terminator. ^If nByte is positive, then it is the
3603** number of bytes read from zSql. ^If nByte is zero, then no prepared
3604** statement is generated.
3605** If the caller knows that the supplied string is nul-terminated, then
3606** there is a small performance advantage to passing an nByte parameter that
3607** is the number of bytes in the input string <i>including</i>
3608** the nul-terminator.
danielk197765904932004-05-26 06:18:37 +00003609**
drhd68eee02009-12-11 03:44:18 +00003610** ^If pzTail is not NULL then *pzTail is made to point to the first byte
drh860e0772009-04-02 18:32:26 +00003611** past the end of the first SQL statement in zSql. These routines only
3612** compile the first statement in zSql, so *pzTail is left pointing to
3613** what remains uncompiled.
danielk197765904932004-05-26 06:18:37 +00003614**
drhd68eee02009-12-11 03:44:18 +00003615** ^*ppStmt is left pointing to a compiled [prepared statement] that can be
3616** executed using [sqlite3_step()]. ^If there is an error, *ppStmt is set
3617** to NULL. ^If the input text contains no SQL (if the input is an empty
mihailimefc8e8a2008-06-21 16:47:09 +00003618** string or a comment) then *ppStmt is set to NULL.
drh860e0772009-04-02 18:32:26 +00003619** The calling procedure is responsible for deleting the compiled
mihailimefc8e8a2008-06-21 16:47:09 +00003620** SQL statement using [sqlite3_finalize()] after it has finished with it.
drh860e0772009-04-02 18:32:26 +00003621** ppStmt may not be NULL.
danielk197765904932004-05-26 06:18:37 +00003622**
drhd68eee02009-12-11 03:44:18 +00003623** ^On success, the sqlite3_prepare() family of routines return [SQLITE_OK];
3624** otherwise an [error code] is returned.
drh6ed48bf2007-06-14 20:57:18 +00003625**
drh2c2f3922017-06-01 00:54:35 +00003626** The sqlite3_prepare_v2(), sqlite3_prepare_v3(), sqlite3_prepare16_v2(),
3627** and sqlite3_prepare16_v3() interfaces are recommended for all new programs.
drh1d1982c2017-06-29 17:27:04 +00003628** The older interfaces (sqlite3_prepare() and sqlite3_prepare16())
drh2c2f3922017-06-01 00:54:35 +00003629** are retained for backwards compatibility, but their use is discouraged.
3630** ^In the "vX" interfaces, the prepared statement
mihailimefc8e8a2008-06-21 16:47:09 +00003631** that is returned (the [sqlite3_stmt] object) contains a copy of the
mihailim04bcc002008-06-22 10:21:27 +00003632** original SQL text. This causes the [sqlite3_step()] interface to
drh481aa742009-11-05 18:46:02 +00003633** behave differently in three ways:
drh6ed48bf2007-06-14 20:57:18 +00003634**
3635** <ol>
drh33c1be32008-01-30 16:16:14 +00003636** <li>
drhd68eee02009-12-11 03:44:18 +00003637** ^If the database schema changes, instead of returning [SQLITE_SCHEMA] as it
drh6ed48bf2007-06-14 20:57:18 +00003638** always used to do, [sqlite3_step()] will automatically recompile the SQL
drh9ea88b22013-04-26 15:55:57 +00003639** statement and try to run it again. As many as [SQLITE_MAX_SCHEMA_RETRY]
3640** retries will occur before sqlite3_step() gives up and returns an error.
drh6ed48bf2007-06-14 20:57:18 +00003641** </li>
3642**
3643** <li>
drhd68eee02009-12-11 03:44:18 +00003644** ^When an error occurs, [sqlite3_step()] will return one of the detailed
3645** [error codes] or [extended error codes]. ^The legacy behavior was that
mihailimefc8e8a2008-06-21 16:47:09 +00003646** [sqlite3_step()] would only return a generic [SQLITE_ERROR] result code
drhdf6473a2009-12-13 22:20:08 +00003647** and the application would have to make a second call to [sqlite3_reset()]
3648** in order to find the underlying cause of the problem. With the "v2" prepare
mihailimefc8e8a2008-06-21 16:47:09 +00003649** interfaces, the underlying reason for the error is returned immediately.
drh6ed48bf2007-06-14 20:57:18 +00003650** </li>
drh4b5af772009-10-20 14:08:41 +00003651**
3652** <li>
drha7044002010-09-14 18:22:59 +00003653** ^If the specific value bound to [parameter | host parameter] in the
3654** WHERE clause might influence the choice of query plan for a statement,
3655** then the statement will be automatically recompiled, as if there had been
3656** a schema change, on the first [sqlite3_step()] call following any change
3657** to the [sqlite3_bind_text | bindings] of that [parameter].
3658** ^The specific value of WHERE-clause [parameter] might influence the
3659** choice of query plan if the parameter is the left-hand side of a [LIKE]
3660** or [GLOB] operator or if the parameter is compared to an indexed column
drhfaacf172011-08-12 01:51:45 +00003661** and the [SQLITE_ENABLE_STAT3] compile-time option is enabled.
drh4b5af772009-10-20 14:08:41 +00003662** </li>
drh2c2f3922017-06-01 00:54:35 +00003663**
3664** <p>^sqlite3_prepare_v3() differs from sqlite3_prepare_v2() only in having
3665** the extra prepFlags parameter, which is a bit array consisting of zero or
3666** more of the [SQLITE_PREPARE_PERSISTENT|SQLITE_PREPARE_*] flags. ^The
3667** sqlite3_prepare_v2() interface works exactly the same as
3668** sqlite3_prepare_v3() with a zero prepFlags parameter.
drh6ed48bf2007-06-14 20:57:18 +00003669** </ol>
danielk197765904932004-05-26 06:18:37 +00003670*/
3671int sqlite3_prepare(
3672 sqlite3 *db, /* Database handle */
3673 const char *zSql, /* SQL statement, UTF-8 encoded */
drh21f06722007-07-19 12:41:39 +00003674 int nByte, /* Maximum length of zSql in bytes. */
danielk197765904932004-05-26 06:18:37 +00003675 sqlite3_stmt **ppStmt, /* OUT: Statement handle */
3676 const char **pzTail /* OUT: Pointer to unused portion of zSql */
3677);
drh6ed48bf2007-06-14 20:57:18 +00003678int sqlite3_prepare_v2(
3679 sqlite3 *db, /* Database handle */
3680 const char *zSql, /* SQL statement, UTF-8 encoded */
drh21f06722007-07-19 12:41:39 +00003681 int nByte, /* Maximum length of zSql in bytes. */
drh6ed48bf2007-06-14 20:57:18 +00003682 sqlite3_stmt **ppStmt, /* OUT: Statement handle */
3683 const char **pzTail /* OUT: Pointer to unused portion of zSql */
3684);
drh2c2f3922017-06-01 00:54:35 +00003685int sqlite3_prepare_v3(
3686 sqlite3 *db, /* Database handle */
3687 const char *zSql, /* SQL statement, UTF-8 encoded */
3688 int nByte, /* Maximum length of zSql in bytes. */
3689 unsigned int prepFlags, /* Zero or more SQLITE_PREPARE_ flags */
3690 sqlite3_stmt **ppStmt, /* OUT: Statement handle */
3691 const char **pzTail /* OUT: Pointer to unused portion of zSql */
3692);
danielk197765904932004-05-26 06:18:37 +00003693int sqlite3_prepare16(
3694 sqlite3 *db, /* Database handle */
3695 const void *zSql, /* SQL statement, UTF-16 encoded */
drh21f06722007-07-19 12:41:39 +00003696 int nByte, /* Maximum length of zSql in bytes. */
danielk197765904932004-05-26 06:18:37 +00003697 sqlite3_stmt **ppStmt, /* OUT: Statement handle */
3698 const void **pzTail /* OUT: Pointer to unused portion of zSql */
3699);
drhb900aaf2006-11-09 00:24:53 +00003700int sqlite3_prepare16_v2(
3701 sqlite3 *db, /* Database handle */
3702 const void *zSql, /* SQL statement, UTF-16 encoded */
drh21f06722007-07-19 12:41:39 +00003703 int nByte, /* Maximum length of zSql in bytes. */
drhb900aaf2006-11-09 00:24:53 +00003704 sqlite3_stmt **ppStmt, /* OUT: Statement handle */
3705 const void **pzTail /* OUT: Pointer to unused portion of zSql */
3706);
drh2c2f3922017-06-01 00:54:35 +00003707int sqlite3_prepare16_v3(
3708 sqlite3 *db, /* Database handle */
3709 const void *zSql, /* SQL statement, UTF-16 encoded */
3710 int nByte, /* Maximum length of zSql in bytes. */
drh5acc3bd2017-07-20 20:49:41 +00003711 unsigned int prepFlags, /* Zero or more SQLITE_PREPARE_ flags */
drh2c2f3922017-06-01 00:54:35 +00003712 sqlite3_stmt **ppStmt, /* OUT: Statement handle */
3713 const void **pzTail /* OUT: Pointer to unused portion of zSql */
3714);
drhb900aaf2006-11-09 00:24:53 +00003715
3716/*
drhd68eee02009-12-11 03:44:18 +00003717** CAPI3REF: Retrieving Statement SQL
drhd9a0a9a2015-04-14 15:14:06 +00003718** METHOD: sqlite3_stmt
danielk1977d0e2a852007-11-14 06:48:48 +00003719**
drhfca760c2016-07-14 01:09:08 +00003720** ^The sqlite3_sql(P) interface returns a pointer to a copy of the UTF-8
3721** SQL text used to create [prepared statement] P if P was
drh2c2f3922017-06-01 00:54:35 +00003722** created by [sqlite3_prepare_v2()], [sqlite3_prepare_v3()],
3723** [sqlite3_prepare16_v2()], or [sqlite3_prepare16_v3()].
drhfca760c2016-07-14 01:09:08 +00003724** ^The sqlite3_expanded_sql(P) interface returns a pointer to a UTF-8
3725** string containing the SQL text of prepared statement P with
3726** [bound parameters] expanded.
3727**
drhdec8bc02016-07-22 20:20:53 +00003728** ^(For example, if a prepared statement is created using the SQL
drhfca760c2016-07-14 01:09:08 +00003729** text "SELECT $abc,:xyz" and if parameter $abc is bound to integer 2345
3730** and parameter :xyz is unbound, then sqlite3_sql() will return
3731** the original string, "SELECT $abc,:xyz" but sqlite3_expanded_sql()
drhdec8bc02016-07-22 20:20:53 +00003732** will return "SELECT 2345,NULL".)^
drhfca760c2016-07-14 01:09:08 +00003733**
drh8afffe72016-07-23 04:58:57 +00003734** ^The sqlite3_expanded_sql() interface returns NULL if insufficient memory
3735** is available to hold the result, or if the result would exceed the
3736** the maximum string length determined by the [SQLITE_LIMIT_LENGTH].
3737**
3738** ^The [SQLITE_TRACE_SIZE_LIMIT] compile-time option limits the size of
3739** bound parameter expansions. ^The [SQLITE_OMIT_TRACE] compile-time
3740** option causes sqlite3_expanded_sql() to always return NULL.
drhfca760c2016-07-14 01:09:08 +00003741**
3742** ^The string returned by sqlite3_sql(P) is managed by SQLite and is
3743** automatically freed when the prepared statement is finalized.
3744** ^The string returned by sqlite3_expanded_sql(P), on the other hand,
3745** is obtained from [sqlite3_malloc()] and must be free by the application
3746** by passing it to [sqlite3_free()].
danielk1977d0e2a852007-11-14 06:48:48 +00003747*/
3748const char *sqlite3_sql(sqlite3_stmt *pStmt);
drhfca760c2016-07-14 01:09:08 +00003749char *sqlite3_expanded_sql(sqlite3_stmt *pStmt);
danielk1977d0e2a852007-11-14 06:48:48 +00003750
3751/*
drhf03d9cc2010-11-16 23:10:25 +00003752** CAPI3REF: Determine If An SQL Statement Writes The Database
drhd9a0a9a2015-04-14 15:14:06 +00003753** METHOD: sqlite3_stmt
drhf03d9cc2010-11-16 23:10:25 +00003754**
3755** ^The sqlite3_stmt_readonly(X) interface returns true (non-zero) if
drheee50ca2011-01-17 18:30:10 +00003756** and only if the [prepared statement] X makes no direct changes to
drh10fc7272010-12-08 18:30:19 +00003757** the content of the database file.
3758**
3759** Note that [application-defined SQL functions] or
3760** [virtual tables] might change the database indirectly as a side effect.
3761** ^(For example, if an application defines a function "eval()" that
3762** calls [sqlite3_exec()], then the following SQL statement would
3763** change the database file through side-effects:
3764**
3765** <blockquote><pre>
3766** SELECT eval('DELETE FROM t1') FROM t2;
3767** </pre></blockquote>
3768**
3769** But because the [SELECT] statement does not change the database file
3770** directly, sqlite3_stmt_readonly() would still return true.)^
3771**
3772** ^Transaction control statements such as [BEGIN], [COMMIT], [ROLLBACK],
3773** [SAVEPOINT], and [RELEASE] cause sqlite3_stmt_readonly() to return true,
3774** since the statements themselves do not actually modify the database but
3775** rather they control the timing of when other statements modify the
3776** database. ^The [ATTACH] and [DETACH] statements also cause
3777** sqlite3_stmt_readonly() to return true since, while those statements
3778** change the configuration of a database connection, they do not make
3779** changes to the content of the database files on disk.
drh6412a4c2016-11-25 20:20:40 +00003780** ^The sqlite3_stmt_readonly() interface returns true for [BEGIN] since
3781** [BEGIN] merely sets internal flags, but the [BEGIN|BEGIN IMMEDIATE] and
3782** [BEGIN|BEGIN EXCLUSIVE] commands do touch the database and so
3783** sqlite3_stmt_readonly() returns false for those commands.
drhf03d9cc2010-11-16 23:10:25 +00003784*/
3785int sqlite3_stmt_readonly(sqlite3_stmt *pStmt);
3786
3787/*
drh2fb66932011-11-25 17:21:47 +00003788** CAPI3REF: Determine If A Prepared Statement Has Been Reset
drhd9a0a9a2015-04-14 15:14:06 +00003789** METHOD: sqlite3_stmt
drh2fb66932011-11-25 17:21:47 +00003790**
3791** ^The sqlite3_stmt_busy(S) interface returns true (non-zero) if the
3792** [prepared statement] S has been stepped at least once using
drh8ff25872015-07-31 18:59:56 +00003793** [sqlite3_step(S)] but has neither run to completion (returned
3794** [SQLITE_DONE] from [sqlite3_step(S)]) nor
drh2fb66932011-11-25 17:21:47 +00003795** been reset using [sqlite3_reset(S)]. ^The sqlite3_stmt_busy(S)
3796** interface returns false if S is a NULL pointer. If S is not a
3797** NULL pointer and is not a pointer to a valid [prepared statement]
3798** object, then the behavior is undefined and probably undesirable.
3799**
drh814d6a72011-11-25 17:51:52 +00003800** This interface can be used in combination [sqlite3_next_stmt()]
drh2fb66932011-11-25 17:21:47 +00003801** to locate all prepared statements associated with a database
3802** connection that are in need of being reset. This can be used,
3803** for example, in diagnostic routines to search for prepared
3804** statements that are holding a transaction open.
3805*/
3806int sqlite3_stmt_busy(sqlite3_stmt*);
3807
3808/*
drhd68eee02009-12-11 03:44:18 +00003809** CAPI3REF: Dynamically Typed Value Object
drhaa28e142008-03-18 13:47:20 +00003810** KEYWORDS: {protected sqlite3_value} {unprotected sqlite3_value}
drh6ed48bf2007-06-14 20:57:18 +00003811**
drh33c1be32008-01-30 16:16:14 +00003812** SQLite uses the sqlite3_value object to represent all values
mihailimefc8e8a2008-06-21 16:47:09 +00003813** that can be stored in a database table. SQLite uses dynamic typing
drhd68eee02009-12-11 03:44:18 +00003814** for the values it stores. ^Values stored in sqlite3_value objects
mihailimefc8e8a2008-06-21 16:47:09 +00003815** can be integers, floating point values, strings, BLOBs, or NULL.
drhaa28e142008-03-18 13:47:20 +00003816**
3817** An sqlite3_value object may be either "protected" or "unprotected".
3818** Some interfaces require a protected sqlite3_value. Other interfaces
3819** will accept either a protected or an unprotected sqlite3_value.
mihailimefc8e8a2008-06-21 16:47:09 +00003820** Every interface that accepts sqlite3_value arguments specifies
drh3c46b7f2015-05-23 02:44:00 +00003821** whether or not it requires a protected sqlite3_value. The
3822** [sqlite3_value_dup()] interface can be used to construct a new
3823** protected sqlite3_value from an unprotected sqlite3_value.
drhaa28e142008-03-18 13:47:20 +00003824**
3825** The terms "protected" and "unprotected" refer to whether or not
drh8b2b2e62011-04-07 01:14:12 +00003826** a mutex is held. An internal mutex is held for a protected
drhaa28e142008-03-18 13:47:20 +00003827** sqlite3_value object but no mutex is held for an unprotected
3828** sqlite3_value object. If SQLite is compiled to be single-threaded
drh4766b292008-06-26 02:53:02 +00003829** (with [SQLITE_THREADSAFE=0] and with [sqlite3_threadsafe()] returning 0)
drh4ead1482008-06-26 18:16:05 +00003830** or if SQLite is run in one of reduced mutex modes
3831** [SQLITE_CONFIG_SINGLETHREAD] or [SQLITE_CONFIG_MULTITHREAD]
mihailimefc8e8a2008-06-21 16:47:09 +00003832** then there is no distinction between protected and unprotected
3833** sqlite3_value objects and they can be used interchangeably. However,
3834** for maximum code portability it is recommended that applications
drh3d3517a2010-08-31 15:38:51 +00003835** still make the distinction between protected and unprotected
drh4ead1482008-06-26 18:16:05 +00003836** sqlite3_value objects even when not strictly required.
drhaa28e142008-03-18 13:47:20 +00003837**
drhd68eee02009-12-11 03:44:18 +00003838** ^The sqlite3_value objects that are passed as parameters into the
mihailimefc8e8a2008-06-21 16:47:09 +00003839** implementation of [application-defined SQL functions] are protected.
drhd68eee02009-12-11 03:44:18 +00003840** ^The sqlite3_value object returned by
drhaa28e142008-03-18 13:47:20 +00003841** [sqlite3_column_value()] is unprotected.
drh38688b02017-08-31 21:11:52 +00003842** Unprotected sqlite3_value objects may only be used as arguments
3843** to [sqlite3_result_value()], [sqlite3_bind_value()], and
3844** [sqlite3_value_dup()].
drhce5a5a02008-06-10 17:41:44 +00003845** The [sqlite3_value_blob | sqlite3_value_type()] family of
3846** interfaces require protected sqlite3_value objects.
drhf4479502004-05-27 03:12:53 +00003847*/
drh7a6ea932017-04-09 19:23:55 +00003848typedef struct sqlite3_value sqlite3_value;
drhf4479502004-05-27 03:12:53 +00003849
3850/*
drhfb434032009-12-11 23:11:26 +00003851** CAPI3REF: SQL Function Context Object
drh4f26d6c2004-05-26 23:25:30 +00003852**
drh6ed48bf2007-06-14 20:57:18 +00003853** The context in which an SQL function executes is stored in an
drhd68eee02009-12-11 03:44:18 +00003854** sqlite3_context object. ^A pointer to an sqlite3_context object
mihailimefc8e8a2008-06-21 16:47:09 +00003855** is always first parameter to [application-defined SQL functions].
3856** The application-defined SQL function implementation will pass this
3857** pointer through into calls to [sqlite3_result_int | sqlite3_result()],
3858** [sqlite3_aggregate_context()], [sqlite3_user_data()],
3859** [sqlite3_context_db_handle()], [sqlite3_get_auxdata()],
3860** and/or [sqlite3_set_auxdata()].
drh6ed48bf2007-06-14 20:57:18 +00003861*/
3862typedef struct sqlite3_context sqlite3_context;
3863
3864/*
drhfb434032009-12-11 23:11:26 +00003865** CAPI3REF: Binding Values To Prepared Statements
mihailimefc8e8a2008-06-21 16:47:09 +00003866** KEYWORDS: {host parameter} {host parameters} {host parameter name}
mihailimebe796c2008-06-21 20:11:17 +00003867** KEYWORDS: {SQL parameter} {SQL parameters} {parameter binding}
drhd9a0a9a2015-04-14 15:14:06 +00003868** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00003869**
drhd68eee02009-12-11 03:44:18 +00003870** ^(In the SQL statement text input to [sqlite3_prepare_v2()] and its variants,
drh333ceb92009-08-25 14:59:37 +00003871** literals may be replaced by a [parameter] that matches one of following
3872** templates:
drh6ed48bf2007-06-14 20:57:18 +00003873**
3874** <ul>
3875** <li> ?
3876** <li> ?NNN
drh33c1be32008-01-30 16:16:14 +00003877** <li> :VVV
3878** <li> @VVV
drh6ed48bf2007-06-14 20:57:18 +00003879** <li> $VVV
3880** </ul>
3881**
drh333ceb92009-08-25 14:59:37 +00003882** In the templates above, NNN represents an integer literal,
drh9b8d0272010-08-09 15:44:21 +00003883** and VVV represents an alphanumeric identifier.)^ ^The values of these
mihailimefc8e8a2008-06-21 16:47:09 +00003884** parameters (also called "host parameter names" or "SQL parameters")
drh6ed48bf2007-06-14 20:57:18 +00003885** can be set using the sqlite3_bind_*() routines defined here.
3886**
drhd68eee02009-12-11 03:44:18 +00003887** ^The first argument to the sqlite3_bind_*() routines is always
mihailimefc8e8a2008-06-21 16:47:09 +00003888** a pointer to the [sqlite3_stmt] object returned from
3889** [sqlite3_prepare_v2()] or its variants.
3890**
drhd68eee02009-12-11 03:44:18 +00003891** ^The second argument is the index of the SQL parameter to be set.
3892** ^The leftmost SQL parameter has an index of 1. ^When the same named
mihailimefc8e8a2008-06-21 16:47:09 +00003893** SQL parameter is used more than once, second and subsequent
3894** occurrences have the same index as the first occurrence.
drhd68eee02009-12-11 03:44:18 +00003895** ^The index for named parameters can be looked up using the
3896** [sqlite3_bind_parameter_index()] API if desired. ^The index
drhf5befa02007-12-06 02:42:07 +00003897** for "?NNN" parameters is the value of NNN.
drhd68eee02009-12-11 03:44:18 +00003898** ^The NNN value must be between 1 and the [sqlite3_limit()]
drh4ead1482008-06-26 18:16:05 +00003899** parameter [SQLITE_LIMIT_VARIABLE_NUMBER] (default value: 999).
drh6ed48bf2007-06-14 20:57:18 +00003900**
drhd68eee02009-12-11 03:44:18 +00003901** ^The third argument is the value to bind to the parameter.
drh9a1eccb2013-04-30 14:25:32 +00003902** ^If the third parameter to sqlite3_bind_text() or sqlite3_bind_text16()
3903** or sqlite3_bind_blob() is a NULL pointer then the fourth parameter
3904** is ignored and the end result is the same as sqlite3_bind_null().
drh6ed48bf2007-06-14 20:57:18 +00003905**
drhd68eee02009-12-11 03:44:18 +00003906** ^(In those routines that have a fourth argument, its value is the
mihailimefc8e8a2008-06-21 16:47:09 +00003907** number of bytes in the parameter. To be clear: the value is the
drhd68eee02009-12-11 03:44:18 +00003908** number of <u>bytes</u> in the value, not the number of characters.)^
drhbcebd862012-08-17 13:44:31 +00003909** ^If the fourth parameter to sqlite3_bind_text() or sqlite3_bind_text16()
3910** is negative, then the length of the string is
shane26b34032008-05-23 17:21:09 +00003911** the number of bytes up to the first zero terminator.
drhbcebd862012-08-17 13:44:31 +00003912** If the fourth parameter to sqlite3_bind_blob() is negative, then
3913** the behavior is undefined.
drhdf901d32011-10-13 18:00:11 +00003914** If a non-negative fourth parameter is provided to sqlite3_bind_text()
drhbbf483f2014-09-09 20:30:24 +00003915** or sqlite3_bind_text16() or sqlite3_bind_text64() then
drhda4ca9d2014-09-09 17:27:35 +00003916** that parameter must be the byte offset
drhdf901d32011-10-13 18:00:11 +00003917** where the NUL terminator would occur assuming the string were NUL
3918** terminated. If any NUL characters occur at byte offsets less than
3919** the value of the fourth parameter then the resulting string value will
3920** contain embedded NULs. The result of expressions involving strings
3921** with embedded NULs is undefined.
drh4f26d6c2004-05-26 23:25:30 +00003922**
drhdf868a42014-10-04 19:31:53 +00003923** ^The fifth argument to the BLOB and string binding interfaces
3924** is a destructor used to dispose of the BLOB or
drh6fec9ee2010-10-12 02:13:32 +00003925** string after SQLite has finished with it. ^The destructor is called
drhdf868a42014-10-04 19:31:53 +00003926** to dispose of the BLOB or string even if the call to bind API fails.
drh6fec9ee2010-10-12 02:13:32 +00003927** ^If the fifth argument is
drh33c1be32008-01-30 16:16:14 +00003928** the special value [SQLITE_STATIC], then SQLite assumes that the
drhfddfa2d2007-12-05 18:05:16 +00003929** information is in static, unmanaged space and does not need to be freed.
drhd68eee02009-12-11 03:44:18 +00003930** ^If the fifth argument has the value [SQLITE_TRANSIENT], then
drhfddfa2d2007-12-05 18:05:16 +00003931** SQLite makes its own private copy of the data immediately, before
drh33c1be32008-01-30 16:16:14 +00003932** the sqlite3_bind_*() routine returns.
drh4f26d6c2004-05-26 23:25:30 +00003933**
drhbbf483f2014-09-09 20:30:24 +00003934** ^The sixth argument to sqlite3_bind_text64() must be one of
drhda4ca9d2014-09-09 17:27:35 +00003935** [SQLITE_UTF8], [SQLITE_UTF16], [SQLITE_UTF16BE], or [SQLITE_UTF16LE]
3936** to specify the encoding of the text in the third parameter. If
drhdf868a42014-10-04 19:31:53 +00003937** the sixth argument to sqlite3_bind_text64() is not one of the
drhda4ca9d2014-09-09 17:27:35 +00003938** allowed values shown above, or if the text encoding is different
3939** from the encoding specified by the sixth parameter, then the behavior
3940** is undefined.
3941**
drhd68eee02009-12-11 03:44:18 +00003942** ^The sqlite3_bind_zeroblob() routine binds a BLOB of length N that
3943** is filled with zeroes. ^A zeroblob uses a fixed amount of memory
mihailimefc8e8a2008-06-21 16:47:09 +00003944** (just an integer to hold its size) while it is being processed.
shane26b34032008-05-23 17:21:09 +00003945** Zeroblobs are intended to serve as placeholders for BLOBs whose
mihailimefc8e8a2008-06-21 16:47:09 +00003946** content is later written using
3947** [sqlite3_blob_open | incremental BLOB I/O] routines.
drhd68eee02009-12-11 03:44:18 +00003948** ^A negative value for the zeroblob results in a zero-length BLOB.
drh6ed48bf2007-06-14 20:57:18 +00003949**
drh22930062017-07-27 03:48:02 +00003950** ^The sqlite3_bind_pointer(S,I,P,T,D) routine causes the I-th parameter in
drh3a96a5d2017-06-30 23:09:03 +00003951** [prepared statement] S to have an SQL value of NULL, but to also be
drh22930062017-07-27 03:48:02 +00003952** associated with the pointer P of type T. ^D is either a NULL pointer or
drh761decb2017-07-27 18:43:13 +00003953** a pointer to a destructor function for P. ^SQLite will invoke the
3954** destructor D with a single argument of P when it is finished using
3955** P. The T parameter should be a static string, preferably a string
3956** literal. The sqlite3_bind_pointer() routine is part of the
3957** [pointer passing interface] added for SQLite 3.20.0.
drh3a96a5d2017-06-30 23:09:03 +00003958**
drhd68eee02009-12-11 03:44:18 +00003959** ^If any of the sqlite3_bind_*() routines are called with a NULL pointer
3960** for the [prepared statement] or with a prepared statement for which
3961** [sqlite3_step()] has been called more recently than [sqlite3_reset()],
3962** then the call will return [SQLITE_MISUSE]. If any sqlite3_bind_()
3963** routine is passed a [prepared statement] that has been finalized, the
3964** result is undefined and probably harmful.
drh6ed48bf2007-06-14 20:57:18 +00003965**
drhd68eee02009-12-11 03:44:18 +00003966** ^Bindings are not cleared by the [sqlite3_reset()] routine.
3967** ^Unbound parameters are interpreted as NULL.
3968**
3969** ^The sqlite3_bind_* routines return [SQLITE_OK] on success or an
3970** [error code] if anything goes wrong.
drhda4ca9d2014-09-09 17:27:35 +00003971** ^[SQLITE_TOOBIG] might be returned if the size of a string or BLOB
3972** exceeds limits imposed by [sqlite3_limit]([SQLITE_LIMIT_LENGTH]) or
3973** [SQLITE_MAX_LENGTH].
drhd68eee02009-12-11 03:44:18 +00003974** ^[SQLITE_RANGE] is returned if the parameter
3975** index is out of range. ^[SQLITE_NOMEM] is returned if malloc() fails.
drh33c1be32008-01-30 16:16:14 +00003976**
3977** See also: [sqlite3_bind_parameter_count()],
mihailimefc8e8a2008-06-21 16:47:09 +00003978** [sqlite3_bind_parameter_name()], and [sqlite3_bind_parameter_index()].
drh4f26d6c2004-05-26 23:25:30 +00003979*/
danielk1977d8123362004-06-12 09:25:12 +00003980int sqlite3_bind_blob(sqlite3_stmt*, int, const void*, int n, void(*)(void*));
drhda4ca9d2014-09-09 17:27:35 +00003981int sqlite3_bind_blob64(sqlite3_stmt*, int, const void*, sqlite3_uint64,
3982 void(*)(void*));
drhf4479502004-05-27 03:12:53 +00003983int sqlite3_bind_double(sqlite3_stmt*, int, double);
3984int sqlite3_bind_int(sqlite3_stmt*, int, int);
drh6d2069d2007-08-14 01:58:53 +00003985int sqlite3_bind_int64(sqlite3_stmt*, int, sqlite3_int64);
drhf4479502004-05-27 03:12:53 +00003986int sqlite3_bind_null(sqlite3_stmt*, int);
drhda4ca9d2014-09-09 17:27:35 +00003987int sqlite3_bind_text(sqlite3_stmt*,int,const char*,int,void(*)(void*));
danielk1977d8123362004-06-12 09:25:12 +00003988int sqlite3_bind_text16(sqlite3_stmt*, int, const void*, int, void(*)(void*));
drhbbf483f2014-09-09 20:30:24 +00003989int sqlite3_bind_text64(sqlite3_stmt*, int, const char*, sqlite3_uint64,
drhda4ca9d2014-09-09 17:27:35 +00003990 void(*)(void*), unsigned char encoding);
drhf4479502004-05-27 03:12:53 +00003991int sqlite3_bind_value(sqlite3_stmt*, int, const sqlite3_value*);
drh22930062017-07-27 03:48:02 +00003992int sqlite3_bind_pointer(sqlite3_stmt*, int, void*, const char*,void(*)(void*));
drhb026e052007-05-02 01:34:31 +00003993int sqlite3_bind_zeroblob(sqlite3_stmt*, int, int n);
dan80c03022015-07-24 17:36:34 +00003994int sqlite3_bind_zeroblob64(sqlite3_stmt*, int, sqlite3_uint64);
drh4f26d6c2004-05-26 23:25:30 +00003995
3996/*
drhd68eee02009-12-11 03:44:18 +00003997** CAPI3REF: Number Of SQL Parameters
drhd9a0a9a2015-04-14 15:14:06 +00003998** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00003999**
drhd68eee02009-12-11 03:44:18 +00004000** ^This routine can be used to find the number of [SQL parameters]
mihailimefc8e8a2008-06-21 16:47:09 +00004001** in a [prepared statement]. SQL parameters are tokens of the
drh33c1be32008-01-30 16:16:14 +00004002** form "?", "?NNN", ":AAA", "$AAA", or "@AAA" that serve as
shane26b34032008-05-23 17:21:09 +00004003** placeholders for values that are [sqlite3_bind_blob | bound]
drh33c1be32008-01-30 16:16:14 +00004004** to the parameters at a later time.
drh605264d2007-08-21 15:13:19 +00004005**
drhd68eee02009-12-11 03:44:18 +00004006** ^(This routine actually returns the index of the largest (rightmost)
mihailimefc8e8a2008-06-21 16:47:09 +00004007** parameter. For all forms except ?NNN, this will correspond to the
drhd68eee02009-12-11 03:44:18 +00004008** number of unique parameters. If parameters of the ?NNN form are used,
4009** there may be gaps in the list.)^
drh33c1be32008-01-30 16:16:14 +00004010**
4011** See also: [sqlite3_bind_blob|sqlite3_bind()],
4012** [sqlite3_bind_parameter_name()], and
4013** [sqlite3_bind_parameter_index()].
drh75f6a032004-07-15 14:15:00 +00004014*/
4015int sqlite3_bind_parameter_count(sqlite3_stmt*);
4016
4017/*
drhd68eee02009-12-11 03:44:18 +00004018** CAPI3REF: Name Of A Host Parameter
drhd9a0a9a2015-04-14 15:14:06 +00004019** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004020**
drhd68eee02009-12-11 03:44:18 +00004021** ^The sqlite3_bind_parameter_name(P,N) interface returns
4022** the name of the N-th [SQL parameter] in the [prepared statement] P.
4023** ^(SQL parameters of the form "?NNN" or ":AAA" or "@AAA" or "$AAA"
drhe1b3e802008-04-27 22:29:01 +00004024** have a name which is the string "?NNN" or ":AAA" or "@AAA" or "$AAA"
4025** respectively.
4026** In other words, the initial ":" or "$" or "@" or "?"
drhd68eee02009-12-11 03:44:18 +00004027** is included as part of the name.)^
4028** ^Parameters of the form "?" without a following integer have no name
drhdf6473a2009-12-13 22:20:08 +00004029** and are referred to as "nameless" or "anonymous parameters".
drh6ed48bf2007-06-14 20:57:18 +00004030**
drhd68eee02009-12-11 03:44:18 +00004031** ^The first host parameter has an index of 1, not 0.
drh6ed48bf2007-06-14 20:57:18 +00004032**
drhd68eee02009-12-11 03:44:18 +00004033** ^If the value N is out of range or if the N-th parameter is
4034** nameless, then NULL is returned. ^The returned string is
mihailimefc8e8a2008-06-21 16:47:09 +00004035** always in UTF-8 encoding even if the named parameter was
drh2c2f3922017-06-01 00:54:35 +00004036** originally specified as UTF-16 in [sqlite3_prepare16()],
4037** [sqlite3_prepare16_v2()], or [sqlite3_prepare16_v3()].
drh33c1be32008-01-30 16:16:14 +00004038**
4039** See also: [sqlite3_bind_blob|sqlite3_bind()],
4040** [sqlite3_bind_parameter_count()], and
4041** [sqlite3_bind_parameter_index()].
drh895d7472004-08-20 16:02:39 +00004042*/
4043const char *sqlite3_bind_parameter_name(sqlite3_stmt*, int);
4044
4045/*
drhd68eee02009-12-11 03:44:18 +00004046** CAPI3REF: Index Of A Parameter With A Given Name
drhd9a0a9a2015-04-14 15:14:06 +00004047** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004048**
drhd68eee02009-12-11 03:44:18 +00004049** ^Return the index of an SQL parameter given its name. ^The
drh33c1be32008-01-30 16:16:14 +00004050** index value returned is suitable for use as the second
drhd68eee02009-12-11 03:44:18 +00004051** parameter to [sqlite3_bind_blob|sqlite3_bind()]. ^A zero
4052** is returned if no matching parameter is found. ^The parameter
drh33c1be32008-01-30 16:16:14 +00004053** name must be given in UTF-8 even if the original statement
drh2c2f3922017-06-01 00:54:35 +00004054** was prepared from UTF-16 text using [sqlite3_prepare16_v2()] or
4055** [sqlite3_prepare16_v3()].
drh33c1be32008-01-30 16:16:14 +00004056**
4057** See also: [sqlite3_bind_blob|sqlite3_bind()],
4058** [sqlite3_bind_parameter_count()], and
drhc02c4d42015-09-19 12:04:27 +00004059** [sqlite3_bind_parameter_name()].
drhfa6bc002004-09-07 16:19:52 +00004060*/
4061int sqlite3_bind_parameter_index(sqlite3_stmt*, const char *zName);
4062
4063/*
drhd68eee02009-12-11 03:44:18 +00004064** CAPI3REF: Reset All Bindings On A Prepared Statement
drhd9a0a9a2015-04-14 15:14:06 +00004065** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004066**
drhd68eee02009-12-11 03:44:18 +00004067** ^Contrary to the intuition of many, [sqlite3_reset()] does not reset
mihailimefc8e8a2008-06-21 16:47:09 +00004068** the [sqlite3_bind_blob | bindings] on a [prepared statement].
drhd68eee02009-12-11 03:44:18 +00004069** ^Use this routine to reset all host parameters to NULL.
danielk1977600dd0b2005-01-20 01:14:23 +00004070*/
4071int sqlite3_clear_bindings(sqlite3_stmt*);
4072
4073/*
drhd68eee02009-12-11 03:44:18 +00004074** CAPI3REF: Number Of Columns In A Result Set
drhd9a0a9a2015-04-14 15:14:06 +00004075** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004076**
drhd68eee02009-12-11 03:44:18 +00004077** ^Return the number of columns in the result set returned by the
drh3d775e72017-01-06 01:09:43 +00004078** [prepared statement]. ^If this routine returns 0, that means the
4079** [prepared statement] returns no data (for example an [UPDATE]).
4080** ^However, just because this routine returns a positive number does not
4081** mean that one or more rows of data will be returned. ^A SELECT statement
4082** will always have a positive sqlite3_column_count() but depending on the
4083** WHERE clause constraints and the table content, it might return no rows.
drh877cef42010-09-03 12:05:11 +00004084**
4085** See also: [sqlite3_data_count()]
danielk197765904932004-05-26 06:18:37 +00004086*/
4087int sqlite3_column_count(sqlite3_stmt *pStmt);
4088
4089/*
drhd68eee02009-12-11 03:44:18 +00004090** CAPI3REF: Column Names In A Result Set
drhd9a0a9a2015-04-14 15:14:06 +00004091** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004092**
drhd68eee02009-12-11 03:44:18 +00004093** ^These routines return the name assigned to a particular column
4094** in the result set of a [SELECT] statement. ^The sqlite3_column_name()
mihailimefc8e8a2008-06-21 16:47:09 +00004095** interface returns a pointer to a zero-terminated UTF-8 string
drhf5befa02007-12-06 02:42:07 +00004096** and sqlite3_column_name16() returns a pointer to a zero-terminated
drhd68eee02009-12-11 03:44:18 +00004097** UTF-16 string. ^The first parameter is the [prepared statement]
4098** that implements the [SELECT] statement. ^The second parameter is the
4099** column number. ^The leftmost column is number 0.
drh6ed48bf2007-06-14 20:57:18 +00004100**
drhd68eee02009-12-11 03:44:18 +00004101** ^The returned string pointer is valid until either the [prepared statement]
drh278479c2011-03-29 01:47:22 +00004102** is destroyed by [sqlite3_finalize()] or until the statement is automatically
4103** reprepared by the first call to [sqlite3_step()] for a particular run
4104** or until the next call to
mihailimefc8e8a2008-06-21 16:47:09 +00004105** sqlite3_column_name() or sqlite3_column_name16() on the same column.
drh4a50aac2007-08-23 02:47:53 +00004106**
drhd68eee02009-12-11 03:44:18 +00004107** ^If sqlite3_malloc() fails during the processing of either routine
drh4a50aac2007-08-23 02:47:53 +00004108** (for example during a conversion from UTF-8 to UTF-16) then a
4109** NULL pointer is returned.
drh33c1be32008-01-30 16:16:14 +00004110**
drhd68eee02009-12-11 03:44:18 +00004111** ^The name of a result column is the value of the "AS" clause for
drh33c1be32008-01-30 16:16:14 +00004112** that column, if there is an AS clause. If there is no AS clause
4113** then the name of the column is unspecified and may change from
4114** one release of SQLite to the next.
danielk197765904932004-05-26 06:18:37 +00004115*/
drh6ed48bf2007-06-14 20:57:18 +00004116const char *sqlite3_column_name(sqlite3_stmt*, int N);
4117const void *sqlite3_column_name16(sqlite3_stmt*, int N);
danielk197765904932004-05-26 06:18:37 +00004118
4119/*
drhd68eee02009-12-11 03:44:18 +00004120** CAPI3REF: Source Of Data In A Query Result
drhd9a0a9a2015-04-14 15:14:06 +00004121** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004122**
drh9be37f62009-12-12 23:57:36 +00004123** ^These routines provide a means to determine the database, table, and
4124** table column that is the origin of a particular result column in
4125** [SELECT] statement.
drhd68eee02009-12-11 03:44:18 +00004126** ^The name of the database or table or column can be returned as
4127** either a UTF-8 or UTF-16 string. ^The _database_ routines return
drhbf2564f2007-06-21 15:25:05 +00004128** the database name, the _table_ routines return the table name, and
drh33c1be32008-01-30 16:16:14 +00004129** the origin_ routines return the column name.
drhd68eee02009-12-11 03:44:18 +00004130** ^The returned string is valid until the [prepared statement] is destroyed
drh278479c2011-03-29 01:47:22 +00004131** using [sqlite3_finalize()] or until the statement is automatically
4132** reprepared by the first call to [sqlite3_step()] for a particular run
4133** or until the same information is requested
drhbf2564f2007-06-21 15:25:05 +00004134** again in a different encoding.
4135**
drhd68eee02009-12-11 03:44:18 +00004136** ^The names returned are the original un-aliased names of the
drhbf2564f2007-06-21 15:25:05 +00004137** database, table, and column.
drh6ed48bf2007-06-14 20:57:18 +00004138**
drh9be37f62009-12-12 23:57:36 +00004139** ^The first argument to these interfaces is a [prepared statement].
4140** ^These functions return information about the Nth result column returned by
danielk1977955de522006-02-10 02:27:42 +00004141** the statement, where N is the second function argument.
drh9be37f62009-12-12 23:57:36 +00004142** ^The left-most column is column 0 for these routines.
danielk1977955de522006-02-10 02:27:42 +00004143**
drhd68eee02009-12-11 03:44:18 +00004144** ^If the Nth column returned by the statement is an expression or
mihailim1c492652008-06-21 18:02:16 +00004145** subquery and is not a column value, then all of these functions return
drhd68eee02009-12-11 03:44:18 +00004146** NULL. ^These routine might also return NULL if a memory allocation error
drhdf6473a2009-12-13 22:20:08 +00004147** occurs. ^Otherwise, they return the name of the attached database, table,
drhd68eee02009-12-11 03:44:18 +00004148** or column that query result column was extracted from.
danielk1977955de522006-02-10 02:27:42 +00004149**
drh9be37f62009-12-12 23:57:36 +00004150** ^As with all other SQLite APIs, those whose names end with "16" return
4151** UTF-16 encoded strings and the other functions return UTF-8.
danielk19774b1ae992006-02-10 03:06:10 +00004152**
drhd68eee02009-12-11 03:44:18 +00004153** ^These APIs are only available if the library was compiled with the
drh9be37f62009-12-12 23:57:36 +00004154** [SQLITE_ENABLE_COLUMN_METADATA] C-preprocessor symbol.
drh32bc3f62007-08-21 20:25:39 +00004155**
4156** If two or more threads call one or more of these routines against the same
4157** prepared statement and column at the same time then the results are
4158** undefined.
drh33c1be32008-01-30 16:16:14 +00004159**
drh8b39db12009-02-18 18:37:58 +00004160** If two or more threads call one or more
4161** [sqlite3_column_database_name | column metadata interfaces]
4162** for the same [prepared statement] and result column
4163** at the same time then the results are undefined.
danielk1977955de522006-02-10 02:27:42 +00004164*/
4165const char *sqlite3_column_database_name(sqlite3_stmt*,int);
4166const void *sqlite3_column_database_name16(sqlite3_stmt*,int);
4167const char *sqlite3_column_table_name(sqlite3_stmt*,int);
4168const void *sqlite3_column_table_name16(sqlite3_stmt*,int);
4169const char *sqlite3_column_origin_name(sqlite3_stmt*,int);
4170const void *sqlite3_column_origin_name16(sqlite3_stmt*,int);
4171
4172/*
drhd68eee02009-12-11 03:44:18 +00004173** CAPI3REF: Declared Datatype Of A Query Result
drhd9a0a9a2015-04-14 15:14:06 +00004174** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004175**
drhd68eee02009-12-11 03:44:18 +00004176** ^(The first parameter is a [prepared statement].
drh4ead1482008-06-26 18:16:05 +00004177** If this statement is a [SELECT] statement and the Nth column of the
4178** returned result set of that [SELECT] is a table column (not an
drh6ed48bf2007-06-14 20:57:18 +00004179** expression or subquery) then the declared type of the table
drhdf6473a2009-12-13 22:20:08 +00004180** column is returned.)^ ^If the Nth column of the result set is an
drh6ed48bf2007-06-14 20:57:18 +00004181** expression or subquery, then a NULL pointer is returned.
drhd68eee02009-12-11 03:44:18 +00004182** ^The returned string is always UTF-8 encoded.
mihailim1c492652008-06-21 18:02:16 +00004183**
drhd68eee02009-12-11 03:44:18 +00004184** ^(For example, given the database schema:
danielk197765904932004-05-26 06:18:37 +00004185**
4186** CREATE TABLE t1(c1 VARIANT);
4187**
mihailim1c492652008-06-21 18:02:16 +00004188** and the following statement to be compiled:
danielk197765904932004-05-26 06:18:37 +00004189**
danielk1977955de522006-02-10 02:27:42 +00004190** SELECT c1 + 1, c1 FROM t1;
danielk197765904932004-05-26 06:18:37 +00004191**
mihailim1c492652008-06-21 18:02:16 +00004192** this routine would return the string "VARIANT" for the second result
drhd68eee02009-12-11 03:44:18 +00004193** column (i==1), and a NULL pointer for the first result column (i==0).)^
drh6ed48bf2007-06-14 20:57:18 +00004194**
drhd68eee02009-12-11 03:44:18 +00004195** ^SQLite uses dynamic run-time typing. ^So just because a column
drh6ed48bf2007-06-14 20:57:18 +00004196** is declared to contain a particular type does not mean that the
4197** data stored in that column is of the declared type. SQLite is
drhd68eee02009-12-11 03:44:18 +00004198** strongly typed, but the typing is dynamic not static. ^Type
drh6ed48bf2007-06-14 20:57:18 +00004199** is associated with individual values, not with the containers
4200** used to hold those values.
danielk197765904932004-05-26 06:18:37 +00004201*/
drh33c1be32008-01-30 16:16:14 +00004202const char *sqlite3_column_decltype(sqlite3_stmt*,int);
danielk197765904932004-05-26 06:18:37 +00004203const void *sqlite3_column_decltype16(sqlite3_stmt*,int);
4204
mihailimebe796c2008-06-21 20:11:17 +00004205/*
drhd68eee02009-12-11 03:44:18 +00004206** CAPI3REF: Evaluate An SQL Statement
drhd9a0a9a2015-04-14 15:14:06 +00004207** METHOD: sqlite3_stmt
danielk1977106bb232004-05-21 10:08:53 +00004208**
drh2c2f3922017-06-01 00:54:35 +00004209** After a [prepared statement] has been prepared using any of
4210** [sqlite3_prepare_v2()], [sqlite3_prepare_v3()], [sqlite3_prepare16_v2()],
4211** or [sqlite3_prepare16_v3()] or one of the legacy
mihailim1c492652008-06-21 18:02:16 +00004212** interfaces [sqlite3_prepare()] or [sqlite3_prepare16()], this function
4213** must be called one or more times to evaluate the statement.
danielk1977106bb232004-05-21 10:08:53 +00004214**
mihailim1c492652008-06-21 18:02:16 +00004215** The details of the behavior of the sqlite3_step() interface depend
drh2c2f3922017-06-01 00:54:35 +00004216** on whether the statement was prepared using the newer "vX" interfaces
4217** [sqlite3_prepare_v3()], [sqlite3_prepare_v2()], [sqlite3_prepare16_v3()],
4218** [sqlite3_prepare16_v2()] or the older legacy
4219** interfaces [sqlite3_prepare()] and [sqlite3_prepare16()]. The use of the
4220** new "vX" interface is recommended for new applications but the legacy
drh6ed48bf2007-06-14 20:57:18 +00004221** interface will continue to be supported.
danielk1977106bb232004-05-21 10:08:53 +00004222**
drhd68eee02009-12-11 03:44:18 +00004223** ^In the legacy interface, the return value will be either [SQLITE_BUSY],
drh6ed48bf2007-06-14 20:57:18 +00004224** [SQLITE_DONE], [SQLITE_ROW], [SQLITE_ERROR], or [SQLITE_MISUSE].
drhd68eee02009-12-11 03:44:18 +00004225** ^With the "v2" interface, any of the other [result codes] or
mihailim1c492652008-06-21 18:02:16 +00004226** [extended result codes] might be returned as well.
drh6ed48bf2007-06-14 20:57:18 +00004227**
drhd68eee02009-12-11 03:44:18 +00004228** ^[SQLITE_BUSY] means that the database engine was unable to acquire the
4229** database locks it needs to do its job. ^If the statement is a [COMMIT]
drh6ed48bf2007-06-14 20:57:18 +00004230** or occurs outside of an explicit transaction, then you can retry the
drh8a17be02011-06-20 20:39:12 +00004231** statement. If the statement is not a [COMMIT] and occurs within an
drh6ed48bf2007-06-14 20:57:18 +00004232** explicit transaction then you should rollback the transaction before
4233** continuing.
4234**
drhd68eee02009-12-11 03:44:18 +00004235** ^[SQLITE_DONE] means that the statement has finished executing
danielk1977106bb232004-05-21 10:08:53 +00004236** successfully. sqlite3_step() should not be called again on this virtual
drh6ed48bf2007-06-14 20:57:18 +00004237** machine without first calling [sqlite3_reset()] to reset the virtual
4238** machine back to its initial state.
danielk1977106bb232004-05-21 10:08:53 +00004239**
drhd68eee02009-12-11 03:44:18 +00004240** ^If the SQL statement being executed returns any data, then [SQLITE_ROW]
mihailim1c492652008-06-21 18:02:16 +00004241** is returned each time a new row of data is ready for processing by the
4242** caller. The values may be accessed using the [column access functions].
drh6ed48bf2007-06-14 20:57:18 +00004243** sqlite3_step() is called again to retrieve the next row of data.
mihailim1c492652008-06-21 18:02:16 +00004244**
drhd68eee02009-12-11 03:44:18 +00004245** ^[SQLITE_ERROR] means that a run-time error (such as a constraint
danielk1977106bb232004-05-21 10:08:53 +00004246** violation) has occurred. sqlite3_step() should not be called again on
drh6ed48bf2007-06-14 20:57:18 +00004247** the VM. More information may be found by calling [sqlite3_errmsg()].
drhd68eee02009-12-11 03:44:18 +00004248** ^With the legacy interface, a more specific error code (for example,
drh6ed48bf2007-06-14 20:57:18 +00004249** [SQLITE_INTERRUPT], [SQLITE_SCHEMA], [SQLITE_CORRUPT], and so forth)
4250** can be obtained by calling [sqlite3_reset()] on the
drhd68eee02009-12-11 03:44:18 +00004251** [prepared statement]. ^In the "v2" interface,
drh6ed48bf2007-06-14 20:57:18 +00004252** the more specific error code is returned directly by sqlite3_step().
danielk1977106bb232004-05-21 10:08:53 +00004253**
drh6ed48bf2007-06-14 20:57:18 +00004254** [SQLITE_MISUSE] means that the this routine was called inappropriately.
drh33c1be32008-01-30 16:16:14 +00004255** Perhaps it was called on a [prepared statement] that has
mihailim1c492652008-06-21 18:02:16 +00004256** already been [sqlite3_finalize | finalized] or on one that had
drh6ed48bf2007-06-14 20:57:18 +00004257** previously returned [SQLITE_ERROR] or [SQLITE_DONE]. Or it could
4258** be the case that the same database connection is being used by two or
4259** more threads at the same moment in time.
4260**
drh602acb42011-01-17 17:42:37 +00004261** For all versions of SQLite up to and including 3.6.23.1, a call to
4262** [sqlite3_reset()] was required after sqlite3_step() returned anything
4263** other than [SQLITE_ROW] before any subsequent invocation of
4264** sqlite3_step(). Failure to reset the prepared statement using
4265** [sqlite3_reset()] would result in an [SQLITE_MISUSE] return from
drh481fd502016-09-14 18:56:20 +00004266** sqlite3_step(). But after [version 3.6.23.1] ([dateof:3.6.23.1],
4267** sqlite3_step() began
drh602acb42011-01-17 17:42:37 +00004268** calling [sqlite3_reset()] automatically in this circumstance rather
4269** than returning [SQLITE_MISUSE]. This is not considered a compatibility
4270** break because any application that ever receives an SQLITE_MISUSE error
4271** is broken by definition. The [SQLITE_OMIT_AUTORESET] compile-time option
4272** can be used to restore the legacy behavior.
drh3674bfd2010-04-17 12:53:19 +00004273**
mihailim1c492652008-06-21 18:02:16 +00004274** <b>Goofy Interface Alert:</b> In the legacy interface, the sqlite3_step()
4275** API always returns a generic error code, [SQLITE_ERROR], following any
4276** error other than [SQLITE_BUSY] and [SQLITE_MISUSE]. You must call
4277** [sqlite3_reset()] or [sqlite3_finalize()] in order to find one of the
4278** specific [error codes] that better describes the error.
drh6ed48bf2007-06-14 20:57:18 +00004279** We admit that this is a goofy design. The problem has been fixed
4280** with the "v2" interface. If you prepare all of your SQL statements
drh2c2f3922017-06-01 00:54:35 +00004281** using [sqlite3_prepare_v3()] or [sqlite3_prepare_v2()]
4282** or [sqlite3_prepare16_v2()] or [sqlite3_prepare16_v3()] instead
mihailim1c492652008-06-21 18:02:16 +00004283** of the legacy [sqlite3_prepare()] and [sqlite3_prepare16()] interfaces,
4284** then the more specific [error codes] are returned directly
drh2c2f3922017-06-01 00:54:35 +00004285** by sqlite3_step(). The use of the "vX" interfaces is recommended.
danielk1977106bb232004-05-21 10:08:53 +00004286*/
danielk197717240fd2004-05-26 00:07:25 +00004287int sqlite3_step(sqlite3_stmt*);
danielk1977106bb232004-05-21 10:08:53 +00004288
danielk1977106bb232004-05-21 10:08:53 +00004289/*
drhd68eee02009-12-11 03:44:18 +00004290** CAPI3REF: Number of columns in a result set
drhd9a0a9a2015-04-14 15:14:06 +00004291** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004292**
drh877cef42010-09-03 12:05:11 +00004293** ^The sqlite3_data_count(P) interface returns the number of columns in the
4294** current row of the result set of [prepared statement] P.
4295** ^If prepared statement P does not have results ready to return
4296** (via calls to the [sqlite3_column_int | sqlite3_column_*()] of
4297** interfaces) then sqlite3_data_count(P) returns 0.
4298** ^The sqlite3_data_count(P) routine also returns 0 if P is a NULL pointer.
drhf3259992011-10-07 12:59:23 +00004299** ^The sqlite3_data_count(P) routine returns 0 if the previous call to
4300** [sqlite3_step](P) returned [SQLITE_DONE]. ^The sqlite3_data_count(P)
4301** will return non-zero if previous call to [sqlite3_step](P) returned
4302** [SQLITE_ROW], except in the case of the [PRAGMA incremental_vacuum]
4303** where it always returns zero since each step of that multi-step
4304** pragma returns 0 columns of data.
drh877cef42010-09-03 12:05:11 +00004305**
4306** See also: [sqlite3_column_count()]
danielk1977106bb232004-05-21 10:08:53 +00004307*/
danielk197793d46752004-05-23 13:30:58 +00004308int sqlite3_data_count(sqlite3_stmt *pStmt);
danielk19774adee202004-05-08 08:23:19 +00004309
drh4f26d6c2004-05-26 23:25:30 +00004310/*
drhd68eee02009-12-11 03:44:18 +00004311** CAPI3REF: Fundamental Datatypes
drh33c1be32008-01-30 16:16:14 +00004312** KEYWORDS: SQLITE_TEXT
drh6ed48bf2007-06-14 20:57:18 +00004313**
drhfb434032009-12-11 23:11:26 +00004314** ^(Every value in SQLite has one of five fundamental datatypes:
drh6ed48bf2007-06-14 20:57:18 +00004315**
4316** <ul>
4317** <li> 64-bit signed integer
4318** <li> 64-bit IEEE floating point number
4319** <li> string
4320** <li> BLOB
4321** <li> NULL
drhfb434032009-12-11 23:11:26 +00004322** </ul>)^
drh6ed48bf2007-06-14 20:57:18 +00004323**
4324** These constants are codes for each of those types.
4325**
4326** Note that the SQLITE_TEXT constant was also used in SQLite version 2
4327** for a completely different meaning. Software that links against both
mihailim1c492652008-06-21 18:02:16 +00004328** SQLite version 2 and SQLite version 3 should use SQLITE3_TEXT, not
drh6ed48bf2007-06-14 20:57:18 +00004329** SQLITE_TEXT.
drh4f26d6c2004-05-26 23:25:30 +00004330*/
drh9c054832004-05-31 18:51:57 +00004331#define SQLITE_INTEGER 1
4332#define SQLITE_FLOAT 2
drh9c054832004-05-31 18:51:57 +00004333#define SQLITE_BLOB 4
4334#define SQLITE_NULL 5
drh1e284f42004-10-06 15:52:01 +00004335#ifdef SQLITE_TEXT
4336# undef SQLITE_TEXT
4337#else
4338# define SQLITE_TEXT 3
4339#endif
4340#define SQLITE3_TEXT 3
4341
4342/*
drhd68eee02009-12-11 03:44:18 +00004343** CAPI3REF: Result Values From A Query
mihailim1c492652008-06-21 18:02:16 +00004344** KEYWORDS: {column access functions}
drhd9a0a9a2015-04-14 15:14:06 +00004345** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004346**
drhcde336e2017-07-03 17:37:04 +00004347** <b>Summary:</b>
4348** <blockquote><table border=0 cellpadding=0 cellspacing=0>
4349** <tr><td><b>sqlite3_column_blob</b><td>&rarr;<td>BLOB result
4350** <tr><td><b>sqlite3_column_double</b><td>&rarr;<td>REAL result
4351** <tr><td><b>sqlite3_column_int</b><td>&rarr;<td>32-bit INTEGER result
4352** <tr><td><b>sqlite3_column_int64</b><td>&rarr;<td>64-bit INTEGER result
4353** <tr><td><b>sqlite3_column_text</b><td>&rarr;<td>UTF-8 TEXT result
4354** <tr><td><b>sqlite3_column_text16</b><td>&rarr;<td>UTF-16 TEXT result
4355** <tr><td><b>sqlite3_column_value</b><td>&rarr;<td>The result as an
4356** [sqlite3_value|unprotected sqlite3_value] object.
4357** <tr><td>&nbsp;<td>&nbsp;<td>&nbsp;
4358** <tr><td><b>sqlite3_column_bytes</b><td>&rarr;<td>Size of a BLOB
4359** or a UTF-8 TEXT result in bytes
4360** <tr><td><b>sqlite3_column_bytes16&nbsp;&nbsp;</b>
4361** <td>&rarr;&nbsp;&nbsp;<td>Size of UTF-16
4362** TEXT in bytes
4363** <tr><td><b>sqlite3_column_type</b><td>&rarr;<td>Default
4364** datatype of the result
4365** </table></blockquote>
4366**
4367** <b>Details:</b>
4368**
drhd68eee02009-12-11 03:44:18 +00004369** ^These routines return information about a single column of the current
4370** result row of a query. ^In every case the first argument is a pointer
mihailim1c492652008-06-21 18:02:16 +00004371** to the [prepared statement] that is being evaluated (the [sqlite3_stmt*]
4372** that was returned from [sqlite3_prepare_v2()] or one of its variants)
4373** and the second argument is the index of the column for which information
drhd68eee02009-12-11 03:44:18 +00004374** should be returned. ^The leftmost column of the result set has the index 0.
4375** ^The number of columns in the result can be determined using
drhedc17552009-10-22 00:14:05 +00004376** [sqlite3_column_count()].
danielk1977106bb232004-05-21 10:08:53 +00004377**
mihailim1c492652008-06-21 18:02:16 +00004378** If the SQL statement does not currently point to a valid row, or if the
4379** column index is out of range, the result is undefined.
drh32bc3f62007-08-21 20:25:39 +00004380** These routines may only be called when the most recent call to
4381** [sqlite3_step()] has returned [SQLITE_ROW] and neither
mihailim1c492652008-06-21 18:02:16 +00004382** [sqlite3_reset()] nor [sqlite3_finalize()] have been called subsequently.
drh32bc3f62007-08-21 20:25:39 +00004383** If any of these routines are called after [sqlite3_reset()] or
4384** [sqlite3_finalize()] or after [sqlite3_step()] has returned
4385** something other than [SQLITE_ROW], the results are undefined.
4386** If [sqlite3_step()] or [sqlite3_reset()] or [sqlite3_finalize()]
4387** are called from a different thread while any of these routines
mihailim1c492652008-06-21 18:02:16 +00004388** are pending, then the results are undefined.
drh6ed48bf2007-06-14 20:57:18 +00004389**
drhcde336e2017-07-03 17:37:04 +00004390** The first six interfaces (_blob, _double, _int, _int64, _text, and _text16)
4391** each return the value of a result column in a specific data format. If
4392** the result column is not initially in the requested format (for example,
4393** if the query returns an integer but the sqlite3_column_text() interface
4394** is used to extract the value) then an automatic type conversion is performed.
4395**
drhd68eee02009-12-11 03:44:18 +00004396** ^The sqlite3_column_type() routine returns the
drh6ed48bf2007-06-14 20:57:18 +00004397** [SQLITE_INTEGER | datatype code] for the initial data type
drhd68eee02009-12-11 03:44:18 +00004398** of the result column. ^The returned value is one of [SQLITE_INTEGER],
drhcde336e2017-07-03 17:37:04 +00004399** [SQLITE_FLOAT], [SQLITE_TEXT], [SQLITE_BLOB], or [SQLITE_NULL].
4400** The return value of sqlite3_column_type() can be used to decide which
4401** of the first six interface should be used to extract the column value.
4402** The value returned by sqlite3_column_type() is only meaningful if no
4403** automatic type conversions have occurred for the value in question.
4404** After a type conversion, the result of calling sqlite3_column_type()
4405** is undefined, though harmless. Future
drh6ed48bf2007-06-14 20:57:18 +00004406** versions of SQLite may change the behavior of sqlite3_column_type()
4407** following a type conversion.
4408**
drhcde336e2017-07-03 17:37:04 +00004409** If the result is a BLOB or a TEXT string, then the sqlite3_column_bytes()
4410** or sqlite3_column_bytes16() interfaces can be used to determine the size
4411** of that BLOB or string.
4412**
drhd68eee02009-12-11 03:44:18 +00004413** ^If the result is a BLOB or UTF-8 string then the sqlite3_column_bytes()
drh6ed48bf2007-06-14 20:57:18 +00004414** routine returns the number of bytes in that BLOB or string.
drhd68eee02009-12-11 03:44:18 +00004415** ^If the result is a UTF-16 string, then sqlite3_column_bytes() converts
drh6ed48bf2007-06-14 20:57:18 +00004416** the string to UTF-8 and then returns the number of bytes.
drhd68eee02009-12-11 03:44:18 +00004417** ^If the result is a numeric value then sqlite3_column_bytes() uses
mihailimebe796c2008-06-21 20:11:17 +00004418** [sqlite3_snprintf()] to convert that value to a UTF-8 string and returns
drh6ed48bf2007-06-14 20:57:18 +00004419** the number of bytes in that string.
drh42262532010-09-08 16:30:36 +00004420** ^If the result is NULL, then sqlite3_column_bytes() returns zero.
4421**
4422** ^If the result is a BLOB or UTF-16 string then the sqlite3_column_bytes16()
4423** routine returns the number of bytes in that BLOB or string.
4424** ^If the result is a UTF-8 string, then sqlite3_column_bytes16() converts
4425** the string to UTF-16 and then returns the number of bytes.
4426** ^If the result is a numeric value then sqlite3_column_bytes16() uses
4427** [sqlite3_snprintf()] to convert that value to a UTF-16 string and returns
4428** the number of bytes in that string.
4429** ^If the result is NULL, then sqlite3_column_bytes16() returns zero.
4430**
4431** ^The values returned by [sqlite3_column_bytes()] and
4432** [sqlite3_column_bytes16()] do not include the zero terminators at the end
4433** of the string. ^For clarity: the values returned by
4434** [sqlite3_column_bytes()] and [sqlite3_column_bytes16()] are the number of
drh6ed48bf2007-06-14 20:57:18 +00004435** bytes in the string, not the number of characters.
4436**
drhd68eee02009-12-11 03:44:18 +00004437** ^Strings returned by sqlite3_column_text() and sqlite3_column_text16(),
dan44659c92011-12-30 05:08:41 +00004438** even empty strings, are always zero-terminated. ^The return
drh42262532010-09-08 16:30:36 +00004439** value from sqlite3_column_blob() for a zero-length BLOB is a NULL pointer.
drh4f26d6c2004-05-26 23:25:30 +00004440**
drh3d213d32015-05-12 13:32:55 +00004441** <b>Warning:</b> ^The object returned by [sqlite3_column_value()] is an
4442** [unprotected sqlite3_value] object. In a multithreaded environment,
4443** an unprotected sqlite3_value object may only be used safely with
4444** [sqlite3_bind_value()] and [sqlite3_result_value()].
drhaa28e142008-03-18 13:47:20 +00004445** If the [unprotected sqlite3_value] object returned by
4446** [sqlite3_column_value()] is used in any other way, including calls
mihailim1c492652008-06-21 18:02:16 +00004447** to routines like [sqlite3_value_int()], [sqlite3_value_text()],
drh3d213d32015-05-12 13:32:55 +00004448** or [sqlite3_value_bytes()], the behavior is not threadsafe.
drhcde336e2017-07-03 17:37:04 +00004449** Hence, the sqlite3_column_value() interface
4450** is normally only useful within the implementation of
4451** [application-defined SQL functions] or [virtual tables], not within
4452** top-level application code.
drhaa28e142008-03-18 13:47:20 +00004453**
drhcde336e2017-07-03 17:37:04 +00004454** The these routines may attempt to convert the datatype of the result.
4455** ^For example, if the internal representation is FLOAT and a text result
mihailim1c492652008-06-21 18:02:16 +00004456** is requested, [sqlite3_snprintf()] is used internally to perform the
drhd68eee02009-12-11 03:44:18 +00004457** conversion automatically. ^(The following table details the conversions
mihailim1c492652008-06-21 18:02:16 +00004458** that are applied:
drh4f26d6c2004-05-26 23:25:30 +00004459**
drh6ed48bf2007-06-14 20:57:18 +00004460** <blockquote>
4461** <table border="1">
drh8bacf972007-08-25 16:21:29 +00004462** <tr><th> Internal<br>Type <th> Requested<br>Type <th> Conversion
drh4f26d6c2004-05-26 23:25:30 +00004463**
drh6ed48bf2007-06-14 20:57:18 +00004464** <tr><td> NULL <td> INTEGER <td> Result is 0
4465** <tr><td> NULL <td> FLOAT <td> Result is 0.0
drh93386422013-11-27 19:17:49 +00004466** <tr><td> NULL <td> TEXT <td> Result is a NULL pointer
4467** <tr><td> NULL <td> BLOB <td> Result is a NULL pointer
drh6ed48bf2007-06-14 20:57:18 +00004468** <tr><td> INTEGER <td> FLOAT <td> Convert from integer to float
4469** <tr><td> INTEGER <td> TEXT <td> ASCII rendering of the integer
mihailim1c492652008-06-21 18:02:16 +00004470** <tr><td> INTEGER <td> BLOB <td> Same as INTEGER->TEXT
drh93386422013-11-27 19:17:49 +00004471** <tr><td> FLOAT <td> INTEGER <td> [CAST] to INTEGER
drh6ed48bf2007-06-14 20:57:18 +00004472** <tr><td> FLOAT <td> TEXT <td> ASCII rendering of the float
drh93386422013-11-27 19:17:49 +00004473** <tr><td> FLOAT <td> BLOB <td> [CAST] to BLOB
4474** <tr><td> TEXT <td> INTEGER <td> [CAST] to INTEGER
4475** <tr><td> TEXT <td> FLOAT <td> [CAST] to REAL
drh6ed48bf2007-06-14 20:57:18 +00004476** <tr><td> TEXT <td> BLOB <td> No change
drh93386422013-11-27 19:17:49 +00004477** <tr><td> BLOB <td> INTEGER <td> [CAST] to INTEGER
4478** <tr><td> BLOB <td> FLOAT <td> [CAST] to REAL
drh6ed48bf2007-06-14 20:57:18 +00004479** <tr><td> BLOB <td> TEXT <td> Add a zero terminator if needed
4480** </table>
drhd68eee02009-12-11 03:44:18 +00004481** </blockquote>)^
drh4f26d6c2004-05-26 23:25:30 +00004482**
drh42262532010-09-08 16:30:36 +00004483** Note that when type conversions occur, pointers returned by prior
drh6ed48bf2007-06-14 20:57:18 +00004484** calls to sqlite3_column_blob(), sqlite3_column_text(), and/or
mihailim1c492652008-06-21 18:02:16 +00004485** sqlite3_column_text16() may be invalidated.
drh42262532010-09-08 16:30:36 +00004486** Type conversions and pointer invalidations might occur
drh6ed48bf2007-06-14 20:57:18 +00004487** in the following cases:
4488**
4489** <ul>
mihailim1c492652008-06-21 18:02:16 +00004490** <li> The initial content is a BLOB and sqlite3_column_text() or
4491** sqlite3_column_text16() is called. A zero-terminator might
4492** need to be added to the string.</li>
4493** <li> The initial content is UTF-8 text and sqlite3_column_bytes16() or
4494** sqlite3_column_text16() is called. The content must be converted
4495** to UTF-16.</li>
4496** <li> The initial content is UTF-16 text and sqlite3_column_bytes() or
4497** sqlite3_column_text() is called. The content must be converted
4498** to UTF-8.</li>
drh42262532010-09-08 16:30:36 +00004499** </ul>
drh6ed48bf2007-06-14 20:57:18 +00004500**
drhd68eee02009-12-11 03:44:18 +00004501** ^Conversions between UTF-16be and UTF-16le are always done in place and do
drh6ed48bf2007-06-14 20:57:18 +00004502** not invalidate a prior pointer, though of course the content of the buffer
drh42262532010-09-08 16:30:36 +00004503** that the prior pointer references will have been modified. Other kinds
mihailim1c492652008-06-21 18:02:16 +00004504** of conversion are done in place when it is possible, but sometimes they
4505** are not possible and in those cases prior pointers are invalidated.
drh6ed48bf2007-06-14 20:57:18 +00004506**
drh3d213d32015-05-12 13:32:55 +00004507** The safest policy is to invoke these routines
drh6ed48bf2007-06-14 20:57:18 +00004508** in one of the following ways:
4509**
mihailim1c492652008-06-21 18:02:16 +00004510** <ul>
drh6ed48bf2007-06-14 20:57:18 +00004511** <li>sqlite3_column_text() followed by sqlite3_column_bytes()</li>
4512** <li>sqlite3_column_blob() followed by sqlite3_column_bytes()</li>
4513** <li>sqlite3_column_text16() followed by sqlite3_column_bytes16()</li>
drh42262532010-09-08 16:30:36 +00004514** </ul>
drh6ed48bf2007-06-14 20:57:18 +00004515**
mihailim1c492652008-06-21 18:02:16 +00004516** In other words, you should call sqlite3_column_text(),
4517** sqlite3_column_blob(), or sqlite3_column_text16() first to force the result
4518** into the desired format, then invoke sqlite3_column_bytes() or
4519** sqlite3_column_bytes16() to find the size of the result. Do not mix calls
4520** to sqlite3_column_text() or sqlite3_column_blob() with calls to
4521** sqlite3_column_bytes16(), and do not mix calls to sqlite3_column_text16()
4522** with calls to sqlite3_column_bytes().
drh32bc3f62007-08-21 20:25:39 +00004523**
drhd68eee02009-12-11 03:44:18 +00004524** ^The pointers returned are valid until a type conversion occurs as
drh32bc3f62007-08-21 20:25:39 +00004525** described above, or until [sqlite3_step()] or [sqlite3_reset()] or
drhd68eee02009-12-11 03:44:18 +00004526** [sqlite3_finalize()] is called. ^The memory space used to hold strings
drhcde336e2017-07-03 17:37:04 +00004527** and BLOBs is freed automatically. Do not pass the pointers returned
drh2365bac2013-11-18 18:48:50 +00004528** from [sqlite3_column_blob()], [sqlite3_column_text()], etc. into
drh32bc3f62007-08-21 20:25:39 +00004529** [sqlite3_free()].
drh4a50aac2007-08-23 02:47:53 +00004530**
drhd68eee02009-12-11 03:44:18 +00004531** ^(If a memory allocation error occurs during the evaluation of any
drh4a50aac2007-08-23 02:47:53 +00004532** of these routines, a default value is returned. The default value
4533** is either the integer 0, the floating point number 0.0, or a NULL
4534** pointer. Subsequent calls to [sqlite3_errcode()] will return
drhd68eee02009-12-11 03:44:18 +00004535** [SQLITE_NOMEM].)^
danielk1977106bb232004-05-21 10:08:53 +00004536*/
drhf4479502004-05-27 03:12:53 +00004537const void *sqlite3_column_blob(sqlite3_stmt*, int iCol);
drhf4479502004-05-27 03:12:53 +00004538double sqlite3_column_double(sqlite3_stmt*, int iCol);
4539int sqlite3_column_int(sqlite3_stmt*, int iCol);
drh6d2069d2007-08-14 01:58:53 +00004540sqlite3_int64 sqlite3_column_int64(sqlite3_stmt*, int iCol);
drhf4479502004-05-27 03:12:53 +00004541const unsigned char *sqlite3_column_text(sqlite3_stmt*, int iCol);
4542const void *sqlite3_column_text16(sqlite3_stmt*, int iCol);
drh4be8b512006-06-13 23:51:34 +00004543sqlite3_value *sqlite3_column_value(sqlite3_stmt*, int iCol);
drhcde336e2017-07-03 17:37:04 +00004544int sqlite3_column_bytes(sqlite3_stmt*, int iCol);
4545int sqlite3_column_bytes16(sqlite3_stmt*, int iCol);
4546int sqlite3_column_type(sqlite3_stmt*, int iCol);
danielk19774adee202004-05-08 08:23:19 +00004547
danielk197765904932004-05-26 06:18:37 +00004548/*
drhd68eee02009-12-11 03:44:18 +00004549** CAPI3REF: Destroy A Prepared Statement Object
drhd9a0a9a2015-04-14 15:14:06 +00004550** DESTRUCTOR: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004551**
drhd68eee02009-12-11 03:44:18 +00004552** ^The sqlite3_finalize() function is called to delete a [prepared statement].
drh8a17be02011-06-20 20:39:12 +00004553** ^If the most recent evaluation of the statement encountered no errors
drh65bafa62010-09-29 01:54:00 +00004554** or if the statement is never been evaluated, then sqlite3_finalize() returns
4555** SQLITE_OK. ^If the most recent evaluation of statement S failed, then
4556** sqlite3_finalize(S) returns the appropriate [error code] or
4557** [extended error code].
danielk197765904932004-05-26 06:18:37 +00004558**
drh65bafa62010-09-29 01:54:00 +00004559** ^The sqlite3_finalize(S) routine can be called at any point during
4560** the life cycle of [prepared statement] S:
4561** before statement S is ever evaluated, after
4562** one or more calls to [sqlite3_reset()], or after any call
4563** to [sqlite3_step()] regardless of whether or not the statement has
4564** completed execution.
4565**
4566** ^Invoking sqlite3_finalize() on a NULL pointer is a harmless no-op.
4567**
4568** The application must finalize every [prepared statement] in order to avoid
4569** resource leaks. It is a grievous error for the application to try to use
4570** a prepared statement after it has been finalized. Any use of a prepared
4571** statement after it has been finalized can result in undefined and
4572** undesirable behavior such as segfaults and heap corruption.
danielk197765904932004-05-26 06:18:37 +00004573*/
4574int sqlite3_finalize(sqlite3_stmt *pStmt);
4575
4576/*
drhd68eee02009-12-11 03:44:18 +00004577** CAPI3REF: Reset A Prepared Statement Object
drhd9a0a9a2015-04-14 15:14:06 +00004578** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00004579**
mihailimebe796c2008-06-21 20:11:17 +00004580** The sqlite3_reset() function is called to reset a [prepared statement]
4581** object back to its initial state, ready to be re-executed.
drhd68eee02009-12-11 03:44:18 +00004582** ^Any SQL statement variables that had values bound to them using
drh6ed48bf2007-06-14 20:57:18 +00004583** the [sqlite3_bind_blob | sqlite3_bind_*() API] retain their values.
4584** Use [sqlite3_clear_bindings()] to reset the bindings.
drh33c1be32008-01-30 16:16:14 +00004585**
drhd68eee02009-12-11 03:44:18 +00004586** ^The [sqlite3_reset(S)] interface resets the [prepared statement] S
4587** back to the beginning of its program.
drh33c1be32008-01-30 16:16:14 +00004588**
drhd68eee02009-12-11 03:44:18 +00004589** ^If the most recent call to [sqlite3_step(S)] for the
4590** [prepared statement] S returned [SQLITE_ROW] or [SQLITE_DONE],
4591** or if [sqlite3_step(S)] has never before been called on S,
4592** then [sqlite3_reset(S)] returns [SQLITE_OK].
drh33c1be32008-01-30 16:16:14 +00004593**
drhd68eee02009-12-11 03:44:18 +00004594** ^If the most recent call to [sqlite3_step(S)] for the
4595** [prepared statement] S indicated an error, then
4596** [sqlite3_reset(S)] returns an appropriate [error code].
drh33c1be32008-01-30 16:16:14 +00004597**
drhd68eee02009-12-11 03:44:18 +00004598** ^The [sqlite3_reset(S)] interface does not change the values
4599** of any [sqlite3_bind_blob|bindings] on the [prepared statement] S.
danielk197765904932004-05-26 06:18:37 +00004600*/
4601int sqlite3_reset(sqlite3_stmt *pStmt);
4602
4603/*
drhd68eee02009-12-11 03:44:18 +00004604** CAPI3REF: Create Or Redefine SQL Functions
mihailimefc8e8a2008-06-21 16:47:09 +00004605** KEYWORDS: {function creation routines}
4606** KEYWORDS: {application-defined SQL function}
4607** KEYWORDS: {application-defined SQL functions}
drhd9a0a9a2015-04-14 15:14:06 +00004608** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00004609**
drhc2020732010-09-10 16:38:30 +00004610** ^These functions (collectively known as "function creation routines")
mihailimebe796c2008-06-21 20:11:17 +00004611** are used to add SQL functions or aggregates or to redefine the behavior
drhc2020732010-09-10 16:38:30 +00004612** of existing SQL functions or aggregates. The only differences between
4613** these routines are the text encoding expected for
drh8b2b2e62011-04-07 01:14:12 +00004614** the second parameter (the name of the function being created)
drhc2020732010-09-10 16:38:30 +00004615** and the presence or absence of a destructor callback for
4616** the application data pointer.
danielk197765904932004-05-26 06:18:37 +00004617**
drhdf6473a2009-12-13 22:20:08 +00004618** ^The first parameter is the [database connection] to which the SQL
4619** function is to be added. ^If an application uses more than one database
4620** connection then application-defined SQL functions must be added
4621** to each database connection separately.
danielk197765904932004-05-26 06:18:37 +00004622**
drhc2020732010-09-10 16:38:30 +00004623** ^The second parameter is the name of the SQL function to be created or
drh29f5fbd2010-09-10 20:23:10 +00004624** redefined. ^The length of the name is limited to 255 bytes in a UTF-8
4625** representation, exclusive of the zero-terminator. ^Note that the name
4626** length limit is in UTF-8 bytes, not characters nor UTF-16 bytes.
4627** ^Any attempt to create a function with a longer name
4628** will result in [SQLITE_MISUSE] being returned.
drh6ed48bf2007-06-14 20:57:18 +00004629**
drhd68eee02009-12-11 03:44:18 +00004630** ^The third parameter (nArg)
drhc8075422008-09-10 13:09:23 +00004631** is the number of arguments that the SQL function or
drhd68eee02009-12-11 03:44:18 +00004632** aggregate takes. ^If this parameter is -1, then the SQL function or
drh97602f82009-05-24 11:07:49 +00004633** aggregate may take any number of arguments between 0 and the limit
4634** set by [sqlite3_limit]([SQLITE_LIMIT_FUNCTION_ARG]). If the third
drh09943b52009-05-24 21:59:27 +00004635** parameter is less than -1 or greater than 127 then the behavior is
4636** undefined.
danielk197765904932004-05-26 06:18:37 +00004637**
drhc2020732010-09-10 16:38:30 +00004638** ^The fourth parameter, eTextRep, specifies what
drh6ed48bf2007-06-14 20:57:18 +00004639** [SQLITE_UTF8 | text encoding] this SQL function prefers for
drh4a8ee3d2013-12-14 13:44:22 +00004640** its parameters. The application should set this parameter to
4641** [SQLITE_UTF16LE] if the function implementation invokes
4642** [sqlite3_value_text16le()] on an input, or [SQLITE_UTF16BE] if the
4643** implementation invokes [sqlite3_value_text16be()] on an input, or
4644** [SQLITE_UTF16] if [sqlite3_value_text16()] is used, or [SQLITE_UTF8]
4645** otherwise. ^The same SQL function may be registered multiple times using
4646** different preferred text encodings, with different implementations for
4647** each encoding.
drhd68eee02009-12-11 03:44:18 +00004648** ^When multiple implementations of the same function are available, SQLite
drh6ed48bf2007-06-14 20:57:18 +00004649** will pick the one that involves the least amount of data conversion.
drh4a8ee3d2013-12-14 13:44:22 +00004650**
4651** ^The fourth parameter may optionally be ORed with [SQLITE_DETERMINISTIC]
4652** to signal that the function will always return the same result given
4653** the same inputs within a single SQL statement. Most SQL functions are
4654** deterministic. The built-in [random()] SQL function is an example of a
4655** function that is not deterministic. The SQLite query planner is able to
4656** perform additional optimizations on deterministic functions, so use
4657** of the [SQLITE_DETERMINISTIC] flag is recommended where possible.
drh6ed48bf2007-06-14 20:57:18 +00004658**
drhd68eee02009-12-11 03:44:18 +00004659** ^(The fifth parameter is an arbitrary pointer. The implementation of the
4660** function can gain access to this pointer using [sqlite3_user_data()].)^
danielk1977d02eb1f2004-06-06 09:44:03 +00004661**
dan72903822010-12-29 10:49:46 +00004662** ^The sixth, seventh and eighth parameters, xFunc, xStep and xFinal, are
mihailimebe796c2008-06-21 20:11:17 +00004663** pointers to C-language functions that implement the SQL function or
drhd68eee02009-12-11 03:44:18 +00004664** aggregate. ^A scalar SQL function requires an implementation of the xFunc
drhc2020732010-09-10 16:38:30 +00004665** callback only; NULL pointers must be passed as the xStep and xFinal
drhd68eee02009-12-11 03:44:18 +00004666** parameters. ^An aggregate SQL function requires an implementation of xStep
drhc2020732010-09-10 16:38:30 +00004667** and xFinal and NULL pointer must be passed for xFunc. ^To delete an existing
drh8b2b2e62011-04-07 01:14:12 +00004668** SQL function or aggregate, pass NULL pointers for all three function
drhc2020732010-09-10 16:38:30 +00004669** callbacks.
drh6ed48bf2007-06-14 20:57:18 +00004670**
dan72903822010-12-29 10:49:46 +00004671** ^(If the ninth parameter to sqlite3_create_function_v2() is not NULL,
drh07bf3912010-11-02 15:26:24 +00004672** then it is destructor for the application data pointer.
4673** The destructor is invoked when the function is deleted, either by being
4674** overloaded or when the database connection closes.)^
drh6fec9ee2010-10-12 02:13:32 +00004675** ^The destructor is also invoked if the call to
4676** sqlite3_create_function_v2() fails.
4677** ^When the destructor callback of the tenth parameter is invoked, it
4678** is passed a single argument which is a copy of the application data
4679** pointer which was the fifth parameter to sqlite3_create_function_v2().
drh6c5cecb2010-09-16 19:49:22 +00004680**
drhd68eee02009-12-11 03:44:18 +00004681** ^It is permitted to register multiple implementations of the same
drh6ed48bf2007-06-14 20:57:18 +00004682** functions with the same name but with either differing numbers of
drhd68eee02009-12-11 03:44:18 +00004683** arguments or differing preferred text encodings. ^SQLite will use
drh6aa5f152009-08-19 15:57:07 +00004684** the implementation that most closely matches the way in which the
drhd68eee02009-12-11 03:44:18 +00004685** SQL function is used. ^A function implementation with a non-negative
drhc8075422008-09-10 13:09:23 +00004686** nArg parameter is a better match than a function implementation with
drhd68eee02009-12-11 03:44:18 +00004687** a negative nArg. ^A function where the preferred text encoding
drhc8075422008-09-10 13:09:23 +00004688** matches the database encoding is a better
4689** match than a function where the encoding is different.
drhd68eee02009-12-11 03:44:18 +00004690** ^A function where the encoding difference is between UTF16le and UTF16be
drhc8075422008-09-10 13:09:23 +00004691** is a closer match than a function where the encoding difference is
4692** between UTF8 and UTF16.
4693**
drhd68eee02009-12-11 03:44:18 +00004694** ^Built-in functions may be overloaded by new application-defined functions.
drhc8075422008-09-10 13:09:23 +00004695**
drhd68eee02009-12-11 03:44:18 +00004696** ^An application-defined function is permitted to call other
drhc8075422008-09-10 13:09:23 +00004697** SQLite interfaces. However, such calls must not
4698** close the database connection nor finalize or reset the prepared
4699** statement in which the function is running.
danielk197765904932004-05-26 06:18:37 +00004700*/
4701int sqlite3_create_function(
drh33c1be32008-01-30 16:16:14 +00004702 sqlite3 *db,
danielk197765904932004-05-26 06:18:37 +00004703 const char *zFunctionName,
4704 int nArg,
4705 int eTextRep,
drh33c1be32008-01-30 16:16:14 +00004706 void *pApp,
danielk197765904932004-05-26 06:18:37 +00004707 void (*xFunc)(sqlite3_context*,int,sqlite3_value**),
4708 void (*xStep)(sqlite3_context*,int,sqlite3_value**),
4709 void (*xFinal)(sqlite3_context*)
4710);
4711int sqlite3_create_function16(
drh33c1be32008-01-30 16:16:14 +00004712 sqlite3 *db,
danielk197765904932004-05-26 06:18:37 +00004713 const void *zFunctionName,
4714 int nArg,
4715 int eTextRep,
drh33c1be32008-01-30 16:16:14 +00004716 void *pApp,
danielk197765904932004-05-26 06:18:37 +00004717 void (*xFunc)(sqlite3_context*,int,sqlite3_value**),
4718 void (*xStep)(sqlite3_context*,int,sqlite3_value**),
4719 void (*xFinal)(sqlite3_context*)
4720);
dand2199f02010-08-27 17:48:52 +00004721int sqlite3_create_function_v2(
4722 sqlite3 *db,
4723 const char *zFunctionName,
4724 int nArg,
4725 int eTextRep,
4726 void *pApp,
4727 void (*xFunc)(sqlite3_context*,int,sqlite3_value**),
4728 void (*xStep)(sqlite3_context*,int,sqlite3_value**),
4729 void (*xFinal)(sqlite3_context*),
4730 void(*xDestroy)(void*)
4731);
danielk197765904932004-05-26 06:18:37 +00004732
4733/*
drhd68eee02009-12-11 03:44:18 +00004734** CAPI3REF: Text Encodings
drh6ed48bf2007-06-14 20:57:18 +00004735**
4736** These constant define integer codes that represent the various
4737** text encodings supported by SQLite.
danielk197765904932004-05-26 06:18:37 +00004738*/
drh113762a2014-11-19 16:36:25 +00004739#define SQLITE_UTF8 1 /* IMP: R-37514-35566 */
4740#define SQLITE_UTF16LE 2 /* IMP: R-03371-37637 */
4741#define SQLITE_UTF16BE 3 /* IMP: R-51971-34154 */
drh6ed48bf2007-06-14 20:57:18 +00004742#define SQLITE_UTF16 4 /* Use native byte order */
drh4a8ee3d2013-12-14 13:44:22 +00004743#define SQLITE_ANY 5 /* Deprecated */
drh6ed48bf2007-06-14 20:57:18 +00004744#define SQLITE_UTF16_ALIGNED 8 /* sqlite3_create_collation only */
danielk197765904932004-05-26 06:18:37 +00004745
danielk19770ffba6b2004-05-24 09:10:10 +00004746/*
drh4a8ee3d2013-12-14 13:44:22 +00004747** CAPI3REF: Function Flags
4748**
4749** These constants may be ORed together with the
4750** [SQLITE_UTF8 | preferred text encoding] as the fourth argument
4751** to [sqlite3_create_function()], [sqlite3_create_function16()], or
4752** [sqlite3_create_function_v2()].
4753*/
4754#define SQLITE_DETERMINISTIC 0x800
4755
4756/*
drhd5a68d32008-08-04 13:44:57 +00004757** CAPI3REF: Deprecated Functions
4758** DEPRECATED
drh6ed48bf2007-06-14 20:57:18 +00004759**
drhd5a68d32008-08-04 13:44:57 +00004760** These functions are [deprecated]. In order to maintain
4761** backwards compatibility with older code, these functions continue
4762** to be supported. However, new applications should avoid
drh33e13272015-03-04 15:35:07 +00004763** the use of these functions. To encourage programmers to avoid
4764** these functions, we will not explain what they do.
drh6ed48bf2007-06-14 20:57:18 +00004765*/
shaneeec556d2008-10-12 00:27:53 +00004766#ifndef SQLITE_OMIT_DEPRECATED
shanea79c3cc2008-08-11 17:27:01 +00004767SQLITE_DEPRECATED int sqlite3_aggregate_count(sqlite3_context*);
4768SQLITE_DEPRECATED int sqlite3_expired(sqlite3_stmt*);
4769SQLITE_DEPRECATED int sqlite3_transfer_bindings(sqlite3_stmt*, sqlite3_stmt*);
4770SQLITE_DEPRECATED int sqlite3_global_recover(void);
4771SQLITE_DEPRECATED void sqlite3_thread_cleanup(void);
drhce3ca252013-03-18 17:18:18 +00004772SQLITE_DEPRECATED int sqlite3_memory_alarm(void(*)(void*,sqlite3_int64,int),
4773 void*,sqlite3_int64);
shaneeec556d2008-10-12 00:27:53 +00004774#endif
drh6ed48bf2007-06-14 20:57:18 +00004775
4776/*
drh4f03f412015-05-20 21:28:32 +00004777** CAPI3REF: Obtaining SQL Values
drhd9a0a9a2015-04-14 15:14:06 +00004778** METHOD: sqlite3_value
drh6ed48bf2007-06-14 20:57:18 +00004779**
drhcde336e2017-07-03 17:37:04 +00004780** <b>Summary:</b>
4781** <blockquote><table border=0 cellpadding=0 cellspacing=0>
4782** <tr><td><b>sqlite3_value_blob</b><td>&rarr;<td>BLOB value
4783** <tr><td><b>sqlite3_value_double</b><td>&rarr;<td>REAL value
4784** <tr><td><b>sqlite3_value_int</b><td>&rarr;<td>32-bit INTEGER value
4785** <tr><td><b>sqlite3_value_int64</b><td>&rarr;<td>64-bit INTEGER value
drh33b46ee2017-07-13 22:39:15 +00004786** <tr><td><b>sqlite3_value_pointer</b><td>&rarr;<td>Pointer value
drhcde336e2017-07-03 17:37:04 +00004787** <tr><td><b>sqlite3_value_text</b><td>&rarr;<td>UTF-8 TEXT value
4788** <tr><td><b>sqlite3_value_text16</b><td>&rarr;<td>UTF-16 TEXT value in
4789** the native byteorder
4790** <tr><td><b>sqlite3_value_text16be</b><td>&rarr;<td>UTF-16be TEXT value
4791** <tr><td><b>sqlite3_value_text16le</b><td>&rarr;<td>UTF-16le TEXT value
4792** <tr><td>&nbsp;<td>&nbsp;<td>&nbsp;
4793** <tr><td><b>sqlite3_value_bytes</b><td>&rarr;<td>Size of a BLOB
4794** or a UTF-8 TEXT in bytes
4795** <tr><td><b>sqlite3_value_bytes16&nbsp;&nbsp;</b>
4796** <td>&rarr;&nbsp;&nbsp;<td>Size of UTF-16
4797** TEXT in bytes
4798** <tr><td><b>sqlite3_value_type</b><td>&rarr;<td>Default
4799** datatype of the value
4800** <tr><td><b>sqlite3_value_numeric_type&nbsp;&nbsp;</b>
4801** <td>&rarr;&nbsp;&nbsp;<td>Best numeric datatype of the value
4802** </table></blockquote>
drh6ed48bf2007-06-14 20:57:18 +00004803**
drhcde336e2017-07-03 17:37:04 +00004804** <b>Details:</b>
4805**
drh858205d2017-07-14 19:52:47 +00004806** These routines extract type, size, and content information from
drhcde336e2017-07-03 17:37:04 +00004807** [protected sqlite3_value] objects. Protected sqlite3_value objects
4808** are used to pass parameter information into implementation of
4809** [application-defined SQL functions] and [virtual tables].
drh6ed48bf2007-06-14 20:57:18 +00004810**
drhaa28e142008-03-18 13:47:20 +00004811** These routines work only with [protected sqlite3_value] objects.
4812** Any attempt to use these routines on an [unprotected sqlite3_value]
drhcde336e2017-07-03 17:37:04 +00004813** is not threadsafe.
drhaa28e142008-03-18 13:47:20 +00004814**
drhd68eee02009-12-11 03:44:18 +00004815** ^These routines work just like the corresponding [column access functions]
peter.d.reid60ec9142014-09-06 16:39:46 +00004816** except that these routines take a single [protected sqlite3_value] object
mihailim1c492652008-06-21 18:02:16 +00004817** pointer instead of a [sqlite3_stmt*] pointer and an integer column number.
drh6ed48bf2007-06-14 20:57:18 +00004818**
drhd68eee02009-12-11 03:44:18 +00004819** ^The sqlite3_value_text16() interface extracts a UTF-16 string
4820** in the native byte-order of the host machine. ^The
drh6ed48bf2007-06-14 20:57:18 +00004821** sqlite3_value_text16be() and sqlite3_value_text16le() interfaces
mihailimebe796c2008-06-21 20:11:17 +00004822** extract UTF-16 strings as big-endian and little-endian respectively.
drh6ed48bf2007-06-14 20:57:18 +00004823**
drh3a96a5d2017-06-30 23:09:03 +00004824** ^If [sqlite3_value] object V was initialized
drh22930062017-07-27 03:48:02 +00004825** using [sqlite3_bind_pointer(S,I,P,X,D)] or [sqlite3_result_pointer(C,P,X,D)]
drhae3ec3f2017-07-17 00:40:19 +00004826** and if X and Y are strings that compare equal according to strcmp(X,Y),
4827** then sqlite3_value_pointer(V,Y) will return the pointer P. ^Otherwise,
drh761decb2017-07-27 18:43:13 +00004828** sqlite3_value_pointer(V,Y) returns a NULL. The sqlite3_bind_pointer()
4829** routine is part of the [pointer passing interface] added for SQLite 3.20.0.
drh3a96a5d2017-06-30 23:09:03 +00004830**
drhfd76b712017-06-30 20:11:45 +00004831** ^(The sqlite3_value_type(V) interface returns the
4832** [SQLITE_INTEGER | datatype code] for the initial datatype of the
4833** [sqlite3_value] object V. The returned value is one of [SQLITE_INTEGER],
4834** [SQLITE_FLOAT], [SQLITE_TEXT], [SQLITE_BLOB], or [SQLITE_NULL].)^
4835** Other interfaces might change the datatype for an sqlite3_value object.
4836** For example, if the datatype is initially SQLITE_INTEGER and
4837** sqlite3_value_text(V) is called to extract a text value for that
4838** integer, then subsequent calls to sqlite3_value_type(V) might return
4839** SQLITE_TEXT. Whether or not a persistent internal datatype conversion
4840** occurs is undefined and may change from one release of SQLite to the next.
4841**
drhd68eee02009-12-11 03:44:18 +00004842** ^(The sqlite3_value_numeric_type() interface attempts to apply
drh6ed48bf2007-06-14 20:57:18 +00004843** numeric affinity to the value. This means that an attempt is
4844** made to convert the value to an integer or floating point. If
drhf5befa02007-12-06 02:42:07 +00004845** such a conversion is possible without loss of information (in other
mihailimebe796c2008-06-21 20:11:17 +00004846** words, if the value is a string that looks like a number)
4847** then the conversion is performed. Otherwise no conversion occurs.
drhd68eee02009-12-11 03:44:18 +00004848** The [SQLITE_INTEGER | datatype] after conversion is returned.)^
drh6ed48bf2007-06-14 20:57:18 +00004849**
mihailimebe796c2008-06-21 20:11:17 +00004850** Please pay particular attention to the fact that the pointer returned
4851** from [sqlite3_value_blob()], [sqlite3_value_text()], or
drh6ed48bf2007-06-14 20:57:18 +00004852** [sqlite3_value_text16()] can be invalidated by a subsequent call to
drh6d2069d2007-08-14 01:58:53 +00004853** [sqlite3_value_bytes()], [sqlite3_value_bytes16()], [sqlite3_value_text()],
mihailimebe796c2008-06-21 20:11:17 +00004854** or [sqlite3_value_text16()].
drhe53831d2007-08-17 01:14:38 +00004855**
4856** These routines must be called from the same thread as
drhaa28e142008-03-18 13:47:20 +00004857** the SQL function that supplied the [sqlite3_value*] parameters.
danielk19770ffba6b2004-05-24 09:10:10 +00004858*/
drhf4479502004-05-27 03:12:53 +00004859const void *sqlite3_value_blob(sqlite3_value*);
drhf4479502004-05-27 03:12:53 +00004860double sqlite3_value_double(sqlite3_value*);
4861int sqlite3_value_int(sqlite3_value*);
drh6d2069d2007-08-14 01:58:53 +00004862sqlite3_int64 sqlite3_value_int64(sqlite3_value*);
drhae3ec3f2017-07-17 00:40:19 +00004863void *sqlite3_value_pointer(sqlite3_value*, const char*);
drhf4479502004-05-27 03:12:53 +00004864const unsigned char *sqlite3_value_text(sqlite3_value*);
4865const void *sqlite3_value_text16(sqlite3_value*);
danielk1977d8123362004-06-12 09:25:12 +00004866const void *sqlite3_value_text16le(sqlite3_value*);
4867const void *sqlite3_value_text16be(sqlite3_value*);
drhcde336e2017-07-03 17:37:04 +00004868int sqlite3_value_bytes(sqlite3_value*);
4869int sqlite3_value_bytes16(sqlite3_value*);
danielk197793d46752004-05-23 13:30:58 +00004870int sqlite3_value_type(sqlite3_value*);
drh29d72102006-02-09 22:13:41 +00004871int sqlite3_value_numeric_type(sqlite3_value*);
danielk19770ffba6b2004-05-24 09:10:10 +00004872
4873/*
drhc4cdb292015-09-26 03:31:47 +00004874** CAPI3REF: Finding The Subtype Of SQL Values
drhbcdf78a2015-09-10 20:34:56 +00004875** METHOD: sqlite3_value
4876**
4877** The sqlite3_value_subtype(V) function returns the subtype for
drh12b3b892015-09-11 01:22:41 +00004878** an [application-defined SQL function] argument V. The subtype
drhbcdf78a2015-09-10 20:34:56 +00004879** information can be used to pass a limited amount of context from
4880** one SQL function to another. Use the [sqlite3_result_subtype()]
4881** routine to set the subtype for the return value of an SQL function.
drhbcdf78a2015-09-10 20:34:56 +00004882*/
4883unsigned int sqlite3_value_subtype(sqlite3_value*);
4884
4885/*
drh4f03f412015-05-20 21:28:32 +00004886** CAPI3REF: Copy And Free SQL Values
4887** METHOD: sqlite3_value
4888**
4889** ^The sqlite3_value_dup(V) interface makes a copy of the [sqlite3_value]
4890** object D and returns a pointer to that copy. ^The [sqlite3_value] returned
4891** is a [protected sqlite3_value] object even if the input is not.
4892** ^The sqlite3_value_dup(V) interface returns NULL if V is NULL or if a
4893** memory allocation fails.
4894**
4895** ^The sqlite3_value_free(V) interface frees an [sqlite3_value] object
drh3c46b7f2015-05-23 02:44:00 +00004896** previously obtained from [sqlite3_value_dup()]. ^If V is a NULL pointer
drh4f03f412015-05-20 21:28:32 +00004897** then sqlite3_value_free(V) is a harmless no-op.
4898*/
drhe230a892015-12-10 22:48:22 +00004899sqlite3_value *sqlite3_value_dup(const sqlite3_value*);
4900void sqlite3_value_free(sqlite3_value*);
drh4f03f412015-05-20 21:28:32 +00004901
4902/*
drhd68eee02009-12-11 03:44:18 +00004903** CAPI3REF: Obtain Aggregate Function Context
drhd9a0a9a2015-04-14 15:14:06 +00004904** METHOD: sqlite3_context
drh6ed48bf2007-06-14 20:57:18 +00004905**
drh9b8d0272010-08-09 15:44:21 +00004906** Implementations of aggregate SQL functions use this
drhd68eee02009-12-11 03:44:18 +00004907** routine to allocate memory for storing their state.
mihailimebe796c2008-06-21 20:11:17 +00004908**
drhd68eee02009-12-11 03:44:18 +00004909** ^The first time the sqlite3_aggregate_context(C,N) routine is called
4910** for a particular aggregate function, SQLite
4911** allocates N of memory, zeroes out that memory, and returns a pointer
4912** to the new memory. ^On second and subsequent calls to
4913** sqlite3_aggregate_context() for the same aggregate function instance,
4914** the same buffer is returned. Sqlite3_aggregate_context() is normally
4915** called once for each invocation of the xStep callback and then one
4916** last time when the xFinal callback is invoked. ^(When no rows match
4917** an aggregate query, the xStep() callback of the aggregate function
4918** implementation is never called and xFinal() is called exactly once.
4919** In those cases, sqlite3_aggregate_context() might be called for the
4920** first time from within xFinal().)^
danielk19770ae8b832004-05-25 12:05:56 +00004921**
drhce3ca252013-03-18 17:18:18 +00004922** ^The sqlite3_aggregate_context(C,N) routine returns a NULL pointer
4923** when first called if N is less than or equal to zero or if a memory
4924** allocate error occurs.
drh6ed48bf2007-06-14 20:57:18 +00004925**
drhd68eee02009-12-11 03:44:18 +00004926** ^(The amount of space allocated by sqlite3_aggregate_context(C,N) is
4927** determined by the N parameter on first successful call. Changing the
4928** value of N in subsequent call to sqlite3_aggregate_context() within
4929** the same aggregate function instance will not resize the memory
drhce3ca252013-03-18 17:18:18 +00004930** allocation.)^ Within the xFinal callback, it is customary to set
4931** N=0 in calls to sqlite3_aggregate_context(C,N) so that no
4932** pointless memory allocations occur.
drhd68eee02009-12-11 03:44:18 +00004933**
4934** ^SQLite automatically frees the memory allocated by
4935** sqlite3_aggregate_context() when the aggregate query concludes.
4936**
4937** The first parameter must be a copy of the
mihailimebe796c2008-06-21 20:11:17 +00004938** [sqlite3_context | SQL function context] that is the first parameter
drhd68eee02009-12-11 03:44:18 +00004939** to the xStep or xFinal callback routine that implements the aggregate
4940** function.
drhe53831d2007-08-17 01:14:38 +00004941**
4942** This routine must be called from the same thread in which
drh605264d2007-08-21 15:13:19 +00004943** the aggregate SQL function is running.
danielk19770ae8b832004-05-25 12:05:56 +00004944*/
drh4f26d6c2004-05-26 23:25:30 +00004945void *sqlite3_aggregate_context(sqlite3_context*, int nBytes);
danielk19777e18c252004-05-25 11:47:24 +00004946
4947/*
drhd68eee02009-12-11 03:44:18 +00004948** CAPI3REF: User Data For Functions
drhd9a0a9a2015-04-14 15:14:06 +00004949** METHOD: sqlite3_context
drh6ed48bf2007-06-14 20:57:18 +00004950**
drhd68eee02009-12-11 03:44:18 +00004951** ^The sqlite3_user_data() interface returns a copy of
drhf5befa02007-12-06 02:42:07 +00004952** the pointer that was the pUserData parameter (the 5th parameter)
shane26b34032008-05-23 17:21:09 +00004953** of the [sqlite3_create_function()]
drhf5befa02007-12-06 02:42:07 +00004954** and [sqlite3_create_function16()] routines that originally
drhfa4a4b92008-03-19 21:45:51 +00004955** registered the application defined function.
4956**
drhd68eee02009-12-11 03:44:18 +00004957** This routine must be called from the same thread in which
4958** the application-defined function is running.
4959*/
4960void *sqlite3_user_data(sqlite3_context*);
4961
4962/*
4963** CAPI3REF: Database Connection For Functions
drhd9a0a9a2015-04-14 15:14:06 +00004964** METHOD: sqlite3_context
drhd68eee02009-12-11 03:44:18 +00004965**
4966** ^The sqlite3_context_db_handle() interface returns a copy of
4967** the pointer to the [database connection] (the 1st parameter)
4968** of the [sqlite3_create_function()]
4969** and [sqlite3_create_function16()] routines that originally
4970** registered the application defined function.
drhfa4a4b92008-03-19 21:45:51 +00004971*/
4972sqlite3 *sqlite3_context_db_handle(sqlite3_context*);
4973
4974/*
drhd68eee02009-12-11 03:44:18 +00004975** CAPI3REF: Function Auxiliary Data
drhd9a0a9a2015-04-14 15:14:06 +00004976** METHOD: sqlite3_context
drh6ed48bf2007-06-14 20:57:18 +00004977**
drh6b753292013-07-18 18:45:53 +00004978** These functions may be used by (non-aggregate) SQL functions to
mihailimebe796c2008-06-21 20:11:17 +00004979** associate metadata with argument values. If the same value is passed to
drh6ed48bf2007-06-14 20:57:18 +00004980** multiple invocations of the same SQL function during query execution, under
drh6b753292013-07-18 18:45:53 +00004981** some circumstances the associated metadata may be preserved. An example
4982** of where this might be useful is in a regular-expression matching
4983** function. The compiled version of the regular expression can be stored as
4984** metadata associated with the pattern string.
4985** Then as long as the pattern string remains the same,
4986** the compiled regular expression can be reused on multiple
4987** invocations of the same function.
danielk1977682f68b2004-06-05 10:22:17 +00004988**
drhf7fa4e72017-05-11 15:20:18 +00004989** ^The sqlite3_get_auxdata(C,N) interface returns a pointer to the metadata
4990** associated by the sqlite3_set_auxdata(C,N,P,X) function with the Nth argument
4991** value to the application-defined function. ^N is zero for the left-most
4992** function argument. ^If there is no metadata
4993** associated with the function argument, the sqlite3_get_auxdata(C,N) interface
drh6b753292013-07-18 18:45:53 +00004994** returns a NULL pointer.
danielk1977682f68b2004-06-05 10:22:17 +00004995**
drhb8c06832013-07-18 14:16:48 +00004996** ^The sqlite3_set_auxdata(C,N,P,X) interface saves P as metadata for the N-th
4997** argument of the application-defined function. ^Subsequent
4998** calls to sqlite3_get_auxdata(C,N) return P from the most recent
drh6b753292013-07-18 18:45:53 +00004999** sqlite3_set_auxdata(C,N,P,X) call if the metadata is still valid or
5000** NULL if the metadata has been discarded.
5001** ^After each call to sqlite3_set_auxdata(C,N,P,X) where X is not NULL,
5002** SQLite will invoke the destructor function X with parameter P exactly
5003** once, when the metadata is discarded.
5004** SQLite is free to discard the metadata at any time, including: <ul>
drhb7203cd2016-08-02 13:26:34 +00005005** <li> ^(when the corresponding function parameter changes)^, or
5006** <li> ^(when [sqlite3_reset()] or [sqlite3_finalize()] is called for the
5007** SQL statement)^, or
5008** <li> ^(when sqlite3_set_auxdata() is invoked again on the same
5009** parameter)^, or
5010** <li> ^(during the original sqlite3_set_auxdata() call when a memory
5011** allocation error occurs.)^ </ul>
drhafc91042008-02-21 02:09:45 +00005012**
drh6b753292013-07-18 18:45:53 +00005013** Note the last bullet in particular. The destructor X in
5014** sqlite3_set_auxdata(C,N,P,X) might be called immediately, before the
5015** sqlite3_set_auxdata() interface even returns. Hence sqlite3_set_auxdata()
drhb8c06832013-07-18 14:16:48 +00005016** should be called near the end of the function implementation and the
drh6b753292013-07-18 18:45:53 +00005017** function implementation should not make any use of P after
5018** sqlite3_set_auxdata() has been called.
danielk1977682f68b2004-06-05 10:22:17 +00005019**
drhd68eee02009-12-11 03:44:18 +00005020** ^(In practice, metadata is preserved between function calls for
drhb8c06832013-07-18 14:16:48 +00005021** function parameters that are compile-time constants, including literal
5022** values and [parameters] and expressions composed from the same.)^
drhe53831d2007-08-17 01:14:38 +00005023**
drhf7fa4e72017-05-11 15:20:18 +00005024** The value of the N parameter to these interfaces should be non-negative.
5025** Future enhancements may make use of negative N values to define new
5026** kinds of function caching behavior.
5027**
drhb21c8cd2007-08-21 19:33:56 +00005028** These routines must be called from the same thread in which
5029** the SQL function is running.
danielk1977682f68b2004-06-05 10:22:17 +00005030*/
drhf5befa02007-12-06 02:42:07 +00005031void *sqlite3_get_auxdata(sqlite3_context*, int N);
5032void sqlite3_set_auxdata(sqlite3_context*, int N, void*, void (*)(void*));
danielk1977682f68b2004-06-05 10:22:17 +00005033
drha2854222004-06-17 19:04:17 +00005034
5035/*
drhd68eee02009-12-11 03:44:18 +00005036** CAPI3REF: Constants Defining Special Destructor Behavior
drh6ed48bf2007-06-14 20:57:18 +00005037**
mihailimebe796c2008-06-21 20:11:17 +00005038** These are special values for the destructor that is passed in as the
drhd68eee02009-12-11 03:44:18 +00005039** final argument to routines like [sqlite3_result_blob()]. ^If the destructor
drha2854222004-06-17 19:04:17 +00005040** argument is SQLITE_STATIC, it means that the content pointer is constant
drhd68eee02009-12-11 03:44:18 +00005041** and will never change. It does not need to be destroyed. ^The
drha2854222004-06-17 19:04:17 +00005042** SQLITE_TRANSIENT value means that the content will likely change in
5043** the near future and that SQLite should make its own private copy of
5044** the content before returning.
drh6c9121a2007-01-26 00:51:43 +00005045**
5046** The typedef is necessary to work around problems in certain
drh4670f6d2013-04-17 14:04:52 +00005047** C++ compilers.
drha2854222004-06-17 19:04:17 +00005048*/
drh6c9121a2007-01-26 00:51:43 +00005049typedef void (*sqlite3_destructor_type)(void*);
5050#define SQLITE_STATIC ((sqlite3_destructor_type)0)
5051#define SQLITE_TRANSIENT ((sqlite3_destructor_type)-1)
danielk1977d8123362004-06-12 09:25:12 +00005052
danielk1977682f68b2004-06-05 10:22:17 +00005053/*
drhd68eee02009-12-11 03:44:18 +00005054** CAPI3REF: Setting The Result Of An SQL Function
drhd9a0a9a2015-04-14 15:14:06 +00005055** METHOD: sqlite3_context
drh6ed48bf2007-06-14 20:57:18 +00005056**
5057** These routines are used by the xFunc or xFinal callbacks that
5058** implement SQL functions and aggregates. See
5059** [sqlite3_create_function()] and [sqlite3_create_function16()]
5060** for additional information.
5061**
mihailimebe796c2008-06-21 20:11:17 +00005062** These functions work very much like the [parameter binding] family of
5063** functions used to bind values to host parameters in prepared statements.
5064** Refer to the [SQL parameter] documentation for additional information.
drh6ed48bf2007-06-14 20:57:18 +00005065**
drhd68eee02009-12-11 03:44:18 +00005066** ^The sqlite3_result_blob() interface sets the result from
mihailimebe796c2008-06-21 20:11:17 +00005067** an application-defined function to be the BLOB whose content is pointed
drhf5befa02007-12-06 02:42:07 +00005068** to by the second parameter and which is N bytes long where N is the
mihailimebe796c2008-06-21 20:11:17 +00005069** third parameter.
5070**
drh33a3c752015-07-27 19:57:13 +00005071** ^The sqlite3_result_zeroblob(C,N) and sqlite3_result_zeroblob64(C,N)
5072** interfaces set the result of the application-defined function to be
5073** a BLOB containing all zero bytes and N bytes in size.
drh6ed48bf2007-06-14 20:57:18 +00005074**
drhd68eee02009-12-11 03:44:18 +00005075** ^The sqlite3_result_double() interface sets the result from
mihailimebe796c2008-06-21 20:11:17 +00005076** an application-defined function to be a floating point value specified
drhf5befa02007-12-06 02:42:07 +00005077** by its 2nd argument.
drhe53831d2007-08-17 01:14:38 +00005078**
drhd68eee02009-12-11 03:44:18 +00005079** ^The sqlite3_result_error() and sqlite3_result_error16() functions
drhf5befa02007-12-06 02:42:07 +00005080** cause the implemented SQL function to throw an exception.
drhd68eee02009-12-11 03:44:18 +00005081** ^SQLite uses the string pointed to by the
drhf5befa02007-12-06 02:42:07 +00005082** 2nd parameter of sqlite3_result_error() or sqlite3_result_error16()
drhd68eee02009-12-11 03:44:18 +00005083** as the text of an error message. ^SQLite interprets the error
5084** message string from sqlite3_result_error() as UTF-8. ^SQLite
mihailimebe796c2008-06-21 20:11:17 +00005085** interprets the string from sqlite3_result_error16() as UTF-16 in native
drhd68eee02009-12-11 03:44:18 +00005086** byte order. ^If the third parameter to sqlite3_result_error()
drhf5befa02007-12-06 02:42:07 +00005087** or sqlite3_result_error16() is negative then SQLite takes as the error
5088** message all text up through the first zero character.
drhd68eee02009-12-11 03:44:18 +00005089** ^If the third parameter to sqlite3_result_error() or
drhf5befa02007-12-06 02:42:07 +00005090** sqlite3_result_error16() is non-negative then SQLite takes that many
5091** bytes (not characters) from the 2nd parameter as the error message.
drhd68eee02009-12-11 03:44:18 +00005092** ^The sqlite3_result_error() and sqlite3_result_error16()
mihailimebe796c2008-06-21 20:11:17 +00005093** routines make a private copy of the error message text before
drhafc91042008-02-21 02:09:45 +00005094** they return. Hence, the calling function can deallocate or
drhf5befa02007-12-06 02:42:07 +00005095** modify the text after they return without harm.
drhd68eee02009-12-11 03:44:18 +00005096** ^The sqlite3_result_error_code() function changes the error code
5097** returned by SQLite as a result of an error in a function. ^By default,
5098** the error code is SQLITE_ERROR. ^A subsequent call to sqlite3_result_error()
drh00e087b2008-04-10 17:14:07 +00005099** or sqlite3_result_error16() resets the error code to SQLITE_ERROR.
drhf5befa02007-12-06 02:42:07 +00005100**
mistachkindfbfbff2012-08-01 20:20:27 +00005101** ^The sqlite3_result_error_toobig() interface causes SQLite to throw an
5102** error indicating that a string or BLOB is too long to represent.
mihailimebe796c2008-06-21 20:11:17 +00005103**
mistachkindfbfbff2012-08-01 20:20:27 +00005104** ^The sqlite3_result_error_nomem() interface causes SQLite to throw an
5105** error indicating that a memory allocation failed.
drhf5befa02007-12-06 02:42:07 +00005106**
drhd68eee02009-12-11 03:44:18 +00005107** ^The sqlite3_result_int() interface sets the return value
drhf5befa02007-12-06 02:42:07 +00005108** of the application-defined function to be the 32-bit signed integer
5109** value given in the 2nd argument.
drhd68eee02009-12-11 03:44:18 +00005110** ^The sqlite3_result_int64() interface sets the return value
drhf5befa02007-12-06 02:42:07 +00005111** of the application-defined function to be the 64-bit signed integer
5112** value given in the 2nd argument.
5113**
drhd68eee02009-12-11 03:44:18 +00005114** ^The sqlite3_result_null() interface sets the return value
drhf5befa02007-12-06 02:42:07 +00005115** of the application-defined function to be NULL.
5116**
drhd68eee02009-12-11 03:44:18 +00005117** ^The sqlite3_result_text(), sqlite3_result_text16(),
drh79f7af92014-10-03 16:00:51 +00005118** sqlite3_result_text16le(), and sqlite3_result_text16be() interfaces
drhf5befa02007-12-06 02:42:07 +00005119** set the return value of the application-defined function to be
5120** a text string which is represented as UTF-8, UTF-16 native byte order,
5121** UTF-16 little endian, or UTF-16 big endian, respectively.
drhbbf483f2014-09-09 20:30:24 +00005122** ^The sqlite3_result_text64() interface sets the return value of an
drhda4ca9d2014-09-09 17:27:35 +00005123** application-defined function to be a text string in an encoding
5124** specified by the fifth (and last) parameter, which must be one
5125** of [SQLITE_UTF8], [SQLITE_UTF16], [SQLITE_UTF16BE], or [SQLITE_UTF16LE].
drhd68eee02009-12-11 03:44:18 +00005126** ^SQLite takes the text result from the application from
drhf5befa02007-12-06 02:42:07 +00005127** the 2nd parameter of the sqlite3_result_text* interfaces.
drhd68eee02009-12-11 03:44:18 +00005128** ^If the 3rd parameter to the sqlite3_result_text* interfaces
mihailimebe796c2008-06-21 20:11:17 +00005129** is negative, then SQLite takes result text from the 2nd parameter
drhf5befa02007-12-06 02:42:07 +00005130** through the first zero character.
drhd68eee02009-12-11 03:44:18 +00005131** ^If the 3rd parameter to the sqlite3_result_text* interfaces
drhf5befa02007-12-06 02:42:07 +00005132** is non-negative, then as many bytes (not characters) of the text
5133** pointed to by the 2nd parameter are taken as the application-defined
drhdf901d32011-10-13 18:00:11 +00005134** function result. If the 3rd parameter is non-negative, then it
5135** must be the byte offset into the string where the NUL terminator would
5136** appear if the string where NUL terminated. If any NUL characters occur
5137** in the string at a byte offset that is less than the value of the 3rd
5138** parameter, then the resulting string will contain embedded NULs and the
5139** result of expressions operating on strings with embedded NULs is undefined.
drhd68eee02009-12-11 03:44:18 +00005140** ^If the 4th parameter to the sqlite3_result_text* interfaces
drhf5befa02007-12-06 02:42:07 +00005141** or sqlite3_result_blob is a non-NULL pointer, then SQLite calls that
mihailimebe796c2008-06-21 20:11:17 +00005142** function as the destructor on the text or BLOB result when it has
drhf5befa02007-12-06 02:42:07 +00005143** finished using that result.
drhd68eee02009-12-11 03:44:18 +00005144** ^If the 4th parameter to the sqlite3_result_text* interfaces or to
mihailimebe796c2008-06-21 20:11:17 +00005145** sqlite3_result_blob is the special constant SQLITE_STATIC, then SQLite
5146** assumes that the text or BLOB result is in constant space and does not
drh9e42f8a2009-08-13 20:15:29 +00005147** copy the content of the parameter nor call a destructor on the content
5148** when it has finished using that result.
drhd68eee02009-12-11 03:44:18 +00005149** ^If the 4th parameter to the sqlite3_result_text* interfaces
drhf5befa02007-12-06 02:42:07 +00005150** or sqlite3_result_blob is the special constant SQLITE_TRANSIENT
drh06aecf02017-07-13 20:11:52 +00005151** then SQLite makes a copy of the result into space obtained
drhf5befa02007-12-06 02:42:07 +00005152** from [sqlite3_malloc()] before it returns.
5153**
drhd68eee02009-12-11 03:44:18 +00005154** ^The sqlite3_result_value() interface sets the result of
drh3c46b7f2015-05-23 02:44:00 +00005155** the application-defined function to be a copy of the
drhd68eee02009-12-11 03:44:18 +00005156** [unprotected sqlite3_value] object specified by the 2nd parameter. ^The
drhf5befa02007-12-06 02:42:07 +00005157** sqlite3_result_value() interface makes a copy of the [sqlite3_value]
mihailimebe796c2008-06-21 20:11:17 +00005158** so that the [sqlite3_value] specified in the parameter may change or
drhf5befa02007-12-06 02:42:07 +00005159** be deallocated after sqlite3_result_value() returns without harm.
drhd68eee02009-12-11 03:44:18 +00005160** ^A [protected sqlite3_value] object may always be used where an
drhaa28e142008-03-18 13:47:20 +00005161** [unprotected sqlite3_value] object is required, so either
5162** kind of [sqlite3_value] object can be used with this interface.
drhf5befa02007-12-06 02:42:07 +00005163**
drh22930062017-07-27 03:48:02 +00005164** ^The sqlite3_result_pointer(C,P,T,D) interface sets the result to an
drh3a96a5d2017-06-30 23:09:03 +00005165** SQL NULL value, just like [sqlite3_result_null(C)], except that it
drhae3ec3f2017-07-17 00:40:19 +00005166** also associates the host-language pointer P or type T with that
5167** NULL value such that the pointer can be retrieved within an
drh3a96a5d2017-06-30 23:09:03 +00005168** [application-defined SQL function] using [sqlite3_value_pointer()].
drh22930062017-07-27 03:48:02 +00005169** ^If the D parameter is not NULL, then it is a pointer to a destructor
drh761decb2017-07-27 18:43:13 +00005170** for the P parameter. ^SQLite invokes D with P as its only argument
5171** when SQLite is finished with P. The T parameter should be a static
5172** string and preferably a string literal. The sqlite3_result_pointer()
5173** routine is part of the [pointer passing interface] added for SQLite 3.20.0.
drh3a96a5d2017-06-30 23:09:03 +00005174**
mihailimebe796c2008-06-21 20:11:17 +00005175** If these routines are called from within the different thread
shane26b34032008-05-23 17:21:09 +00005176** than the one containing the application-defined function that received
drhf5befa02007-12-06 02:42:07 +00005177** the [sqlite3_context] pointer, the results are undefined.
danielk19777e18c252004-05-25 11:47:24 +00005178*/
danielk1977d8123362004-06-12 09:25:12 +00005179void sqlite3_result_blob(sqlite3_context*, const void*, int, void(*)(void*));
drh86e166a2014-12-03 19:08:00 +00005180void sqlite3_result_blob64(sqlite3_context*,const void*,
5181 sqlite3_uint64,void(*)(void*));
drh4f26d6c2004-05-26 23:25:30 +00005182void sqlite3_result_double(sqlite3_context*, double);
danielk19777e18c252004-05-25 11:47:24 +00005183void sqlite3_result_error(sqlite3_context*, const char*, int);
5184void sqlite3_result_error16(sqlite3_context*, const void*, int);
drh6ed48bf2007-06-14 20:57:18 +00005185void sqlite3_result_error_toobig(sqlite3_context*);
danielk1977a1644fd2007-08-29 12:31:25 +00005186void sqlite3_result_error_nomem(sqlite3_context*);
drh69544ec2008-02-06 14:11:34 +00005187void sqlite3_result_error_code(sqlite3_context*, int);
drh4f26d6c2004-05-26 23:25:30 +00005188void sqlite3_result_int(sqlite3_context*, int);
drh6d2069d2007-08-14 01:58:53 +00005189void sqlite3_result_int64(sqlite3_context*, sqlite3_int64);
drh4f26d6c2004-05-26 23:25:30 +00005190void sqlite3_result_null(sqlite3_context*);
danielk1977d8123362004-06-12 09:25:12 +00005191void sqlite3_result_text(sqlite3_context*, const char*, int, void(*)(void*));
drhbbf483f2014-09-09 20:30:24 +00005192void sqlite3_result_text64(sqlite3_context*, const char*,sqlite3_uint64,
5193 void(*)(void*), unsigned char encoding);
danielk1977d8123362004-06-12 09:25:12 +00005194void sqlite3_result_text16(sqlite3_context*, const void*, int, void(*)(void*));
5195void sqlite3_result_text16le(sqlite3_context*, const void*, int,void(*)(void*));
5196void sqlite3_result_text16be(sqlite3_context*, const void*, int,void(*)(void*));
drh4f26d6c2004-05-26 23:25:30 +00005197void sqlite3_result_value(sqlite3_context*, sqlite3_value*);
drh22930062017-07-27 03:48:02 +00005198void sqlite3_result_pointer(sqlite3_context*, void*,const char*,void(*)(void*));
drhb026e052007-05-02 01:34:31 +00005199void sqlite3_result_zeroblob(sqlite3_context*, int n);
dana4d5ae82015-07-24 16:24:37 +00005200int sqlite3_result_zeroblob64(sqlite3_context*, sqlite3_uint64 n);
drhf9b596e2004-05-26 16:54:42 +00005201
drhbcdf78a2015-09-10 20:34:56 +00005202
5203/*
5204** CAPI3REF: Setting The Subtype Of An SQL Function
5205** METHOD: sqlite3_context
5206**
5207** The sqlite3_result_subtype(C,T) function causes the subtype of
drh12b3b892015-09-11 01:22:41 +00005208** the result from the [application-defined SQL function] with
5209** [sqlite3_context] C to be the value T. Only the lower 8 bits
5210** of the subtype T are preserved in current versions of SQLite;
5211** higher order bits are discarded.
drhbcdf78a2015-09-10 20:34:56 +00005212** The number of subtype bytes preserved by SQLite might increase
5213** in future releases of SQLite.
5214*/
5215void sqlite3_result_subtype(sqlite3_context*,unsigned int);
5216
drh52619df2004-06-11 17:48:02 +00005217/*
drhd68eee02009-12-11 03:44:18 +00005218** CAPI3REF: Define New Collating Sequences
drhd9a0a9a2015-04-14 15:14:06 +00005219** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00005220**
drh17cbfae2010-09-17 19:45:20 +00005221** ^These functions add, remove, or modify a [collation] associated
5222** with the [database connection] specified as the first argument.
danielk19777cedc8d2004-06-10 10:50:08 +00005223**
drh17cbfae2010-09-17 19:45:20 +00005224** ^The name of the collation is a UTF-8 string
drh6ed48bf2007-06-14 20:57:18 +00005225** for sqlite3_create_collation() and sqlite3_create_collation_v2()
drh17cbfae2010-09-17 19:45:20 +00005226** and a UTF-16 string in native byte order for sqlite3_create_collation16().
5227** ^Collation names that compare equal according to [sqlite3_strnicmp()] are
5228** considered to be the same name.
danielk19777cedc8d2004-06-10 10:50:08 +00005229**
drh17cbfae2010-09-17 19:45:20 +00005230** ^(The third argument (eTextRep) must be one of the constants:
5231** <ul>
5232** <li> [SQLITE_UTF8],
5233** <li> [SQLITE_UTF16LE],
5234** <li> [SQLITE_UTF16BE],
5235** <li> [SQLITE_UTF16], or
5236** <li> [SQLITE_UTF16_ALIGNED].
5237** </ul>)^
5238** ^The eTextRep argument determines the encoding of strings passed
5239** to the collating function callback, xCallback.
5240** ^The [SQLITE_UTF16] and [SQLITE_UTF16_ALIGNED] values for eTextRep
5241** force strings to be UTF16 with native byte order.
5242** ^The [SQLITE_UTF16_ALIGNED] value for eTextRep forces strings to begin
5243** on an even byte address.
danielk19777cedc8d2004-06-10 10:50:08 +00005244**
drh8b2b2e62011-04-07 01:14:12 +00005245** ^The fourth argument, pArg, is an application data pointer that is passed
drh17cbfae2010-09-17 19:45:20 +00005246** through as the first argument to the collating function callback.
danielk19777cedc8d2004-06-10 10:50:08 +00005247**
drh17cbfae2010-09-17 19:45:20 +00005248** ^The fifth argument, xCallback, is a pointer to the collating function.
5249** ^Multiple collating functions can be registered using the same name but
5250** with different eTextRep parameters and SQLite will use whichever
5251** function requires the least amount of data transformation.
5252** ^If the xCallback argument is NULL then the collating function is
5253** deleted. ^When all collating functions having the same name are deleted,
5254** that collation is no longer usable.
5255**
5256** ^The collating function callback is invoked with a copy of the pArg
5257** application data pointer and with two strings in the encoding specified
5258** by the eTextRep argument. The collating function must return an
5259** integer that is negative, zero, or positive
5260** if the first string is less than, equal to, or greater than the second,
drh8b2b2e62011-04-07 01:14:12 +00005261** respectively. A collating function must always return the same answer
drh17cbfae2010-09-17 19:45:20 +00005262** given the same inputs. If two or more collating functions are registered
5263** to the same collation name (using different eTextRep values) then all
5264** must give an equivalent answer when invoked with equivalent strings.
5265** The collating function must obey the following properties for all
5266** strings A, B, and C:
5267**
5268** <ol>
5269** <li> If A==B then B==A.
5270** <li> If A==B and B==C then A==C.
5271** <li> If A&lt;B THEN B&gt;A.
5272** <li> If A&lt;B and B&lt;C then A&lt;C.
5273** </ol>
5274**
5275** If a collating function fails any of the above constraints and that
5276** collating function is registered and used, then the behavior of SQLite
5277** is undefined.
drh6ed48bf2007-06-14 20:57:18 +00005278**
drhd68eee02009-12-11 03:44:18 +00005279** ^The sqlite3_create_collation_v2() works like sqlite3_create_collation()
drh17cbfae2010-09-17 19:45:20 +00005280** with the addition that the xDestroy callback is invoked on pArg when
5281** the collating function is deleted.
5282** ^Collating functions are deleted when they are overridden by later
5283** calls to the collation creation functions or when the
5284** [database connection] is closed using [sqlite3_close()].
drhafc91042008-02-21 02:09:45 +00005285**
drh6fec9ee2010-10-12 02:13:32 +00005286** ^The xDestroy callback is <u>not</u> called if the
5287** sqlite3_create_collation_v2() function fails. Applications that invoke
5288** sqlite3_create_collation_v2() with a non-NULL xDestroy argument should
5289** check the return code and dispose of the application data pointer
5290** themselves rather than expecting SQLite to deal with it for them.
5291** This is different from every other SQLite interface. The inconsistency
5292** is unfortunate but cannot be changed without breaking backwards
5293** compatibility.
5294**
drh51c7d862009-04-27 18:46:06 +00005295** See also: [sqlite3_collation_needed()] and [sqlite3_collation_needed16()].
danielk19777cedc8d2004-06-10 10:50:08 +00005296*/
danielk19770202b292004-06-09 09:55:16 +00005297int sqlite3_create_collation(
5298 sqlite3*,
5299 const char *zName,
danielk19777cedc8d2004-06-10 10:50:08 +00005300 int eTextRep,
drh17cbfae2010-09-17 19:45:20 +00005301 void *pArg,
danielk19770202b292004-06-09 09:55:16 +00005302 int(*xCompare)(void*,int,const void*,int,const void*)
5303);
drh6ed48bf2007-06-14 20:57:18 +00005304int sqlite3_create_collation_v2(
5305 sqlite3*,
5306 const char *zName,
5307 int eTextRep,
drh17cbfae2010-09-17 19:45:20 +00005308 void *pArg,
drh6ed48bf2007-06-14 20:57:18 +00005309 int(*xCompare)(void*,int,const void*,int,const void*),
5310 void(*xDestroy)(void*)
5311);
danielk19770202b292004-06-09 09:55:16 +00005312int sqlite3_create_collation16(
5313 sqlite3*,
mihailimbda2e622008-06-23 11:23:14 +00005314 const void *zName,
danielk19777cedc8d2004-06-10 10:50:08 +00005315 int eTextRep,
drh17cbfae2010-09-17 19:45:20 +00005316 void *pArg,
danielk19770202b292004-06-09 09:55:16 +00005317 int(*xCompare)(void*,int,const void*,int,const void*)
5318);
5319
danielk19777cedc8d2004-06-10 10:50:08 +00005320/*
drhfb434032009-12-11 23:11:26 +00005321** CAPI3REF: Collation Needed Callbacks
drhd9a0a9a2015-04-14 15:14:06 +00005322** METHOD: sqlite3
danielk1977a393c032007-05-07 14:58:53 +00005323**
drhd68eee02009-12-11 03:44:18 +00005324** ^To avoid having to register all collation sequences before a database
danielk19777cedc8d2004-06-10 10:50:08 +00005325** can be used, a single callback function may be registered with the
drh9be37f62009-12-12 23:57:36 +00005326** [database connection] to be invoked whenever an undefined collation
mihailimdc884822008-06-22 08:58:50 +00005327** sequence is required.
danielk19777cedc8d2004-06-10 10:50:08 +00005328**
drhd68eee02009-12-11 03:44:18 +00005329** ^If the function is registered using the sqlite3_collation_needed() API,
danielk19777cedc8d2004-06-10 10:50:08 +00005330** then it is passed the names of undefined collation sequences as strings
drhd68eee02009-12-11 03:44:18 +00005331** encoded in UTF-8. ^If sqlite3_collation_needed16() is used,
mihailimdc884822008-06-22 08:58:50 +00005332** the names are passed as UTF-16 in machine native byte order.
drh9be37f62009-12-12 23:57:36 +00005333** ^A call to either function replaces the existing collation-needed callback.
danielk19777cedc8d2004-06-10 10:50:08 +00005334**
drhd68eee02009-12-11 03:44:18 +00005335** ^(When the callback is invoked, the first argument passed is a copy
danielk19777cedc8d2004-06-10 10:50:08 +00005336** of the second argument to sqlite3_collation_needed() or
drhafc91042008-02-21 02:09:45 +00005337** sqlite3_collation_needed16(). The second argument is the database
mihailimdc884822008-06-22 08:58:50 +00005338** connection. The third argument is one of [SQLITE_UTF8], [SQLITE_UTF16BE],
5339** or [SQLITE_UTF16LE], indicating the most desirable form of the collation
5340** sequence function required. The fourth parameter is the name of the
drhd68eee02009-12-11 03:44:18 +00005341** required collation sequence.)^
danielk19777cedc8d2004-06-10 10:50:08 +00005342**
drh6ed48bf2007-06-14 20:57:18 +00005343** The callback function should register the desired collation using
5344** [sqlite3_create_collation()], [sqlite3_create_collation16()], or
5345** [sqlite3_create_collation_v2()].
danielk19777cedc8d2004-06-10 10:50:08 +00005346*/
5347int sqlite3_collation_needed(
5348 sqlite3*,
5349 void*,
5350 void(*)(void*,sqlite3*,int eTextRep,const char*)
5351);
5352int sqlite3_collation_needed16(
5353 sqlite3*,
5354 void*,
5355 void(*)(void*,sqlite3*,int eTextRep,const void*)
5356);
5357
drhd4542142010-03-30 11:57:01 +00005358#ifdef SQLITE_HAS_CODEC
drh2011d5f2004-07-22 02:40:37 +00005359/*
5360** Specify the key for an encrypted database. This routine should be
5361** called right after sqlite3_open().
5362**
5363** The code to implement this API is not available in the public release
5364** of SQLite.
5365*/
5366int sqlite3_key(
5367 sqlite3 *db, /* Database to be rekeyed */
5368 const void *pKey, int nKey /* The key */
5369);
drhee0231e2013-05-29 17:48:28 +00005370int sqlite3_key_v2(
5371 sqlite3 *db, /* Database to be rekeyed */
5372 const char *zDbName, /* Name of the database */
5373 const void *pKey, int nKey /* The key */
5374);
drh2011d5f2004-07-22 02:40:37 +00005375
5376/*
5377** Change the key on an open database. If the current database is not
5378** encrypted, this routine will encrypt it. If pNew==0 or nNew==0, the
5379** database is decrypted.
5380**
5381** The code to implement this API is not available in the public release
5382** of SQLite.
5383*/
5384int sqlite3_rekey(
5385 sqlite3 *db, /* Database to be rekeyed */
5386 const void *pKey, int nKey /* The new key */
5387);
drhee0231e2013-05-29 17:48:28 +00005388int sqlite3_rekey_v2(
5389 sqlite3 *db, /* Database to be rekeyed */
5390 const char *zDbName, /* Name of the database */
5391 const void *pKey, int nKey /* The new key */
5392);
danielk19770202b292004-06-09 09:55:16 +00005393
drhab3f9fe2004-08-14 17:10:10 +00005394/*
shaneh959dda62010-01-28 19:56:27 +00005395** Specify the activation key for a SEE database. Unless
5396** activated, none of the SEE routines will work.
5397*/
drha7564662010-02-22 19:32:31 +00005398void sqlite3_activate_see(
5399 const char *zPassPhrase /* Activation phrase */
5400);
5401#endif
5402
5403#ifdef SQLITE_ENABLE_CEROD
shaneh959dda62010-01-28 19:56:27 +00005404/*
5405** Specify the activation key for a CEROD database. Unless
5406** activated, none of the CEROD routines will work.
5407*/
drha7564662010-02-22 19:32:31 +00005408void sqlite3_activate_cerod(
5409 const char *zPassPhrase /* Activation phrase */
5410);
shaneh959dda62010-01-28 19:56:27 +00005411#endif
5412
5413/*
drhd68eee02009-12-11 03:44:18 +00005414** CAPI3REF: Suspend Execution For A Short Time
drh6ed48bf2007-06-14 20:57:18 +00005415**
drhf82ccf62010-09-15 17:54:31 +00005416** The sqlite3_sleep() function causes the current thread to suspend execution
drhfddfa2d2007-12-05 18:05:16 +00005417** for at least a number of milliseconds specified in its parameter.
danielk1977600dd0b2005-01-20 01:14:23 +00005418**
drhf82ccf62010-09-15 17:54:31 +00005419** If the operating system does not support sleep requests with
mihailimdc884822008-06-22 08:58:50 +00005420** millisecond time resolution, then the time will be rounded up to
drhf82ccf62010-09-15 17:54:31 +00005421** the nearest second. The number of milliseconds of sleep actually
danielk1977600dd0b2005-01-20 01:14:23 +00005422** requested from the operating system is returned.
drh8bacf972007-08-25 16:21:29 +00005423**
drhd68eee02009-12-11 03:44:18 +00005424** ^SQLite implements this interface by calling the xSleep()
drhf82ccf62010-09-15 17:54:31 +00005425** method of the default [sqlite3_vfs] object. If the xSleep() method
5426** of the default VFS is not implemented correctly, or not implemented at
5427** all, then the behavior of sqlite3_sleep() may deviate from the description
5428** in the previous paragraphs.
danielk1977600dd0b2005-01-20 01:14:23 +00005429*/
5430int sqlite3_sleep(int);
5431
5432/*
drhd68eee02009-12-11 03:44:18 +00005433** CAPI3REF: Name Of The Folder Holding Temporary Files
drhd89bd002005-01-22 03:03:54 +00005434**
drh7a98b852009-12-13 23:03:01 +00005435** ^(If this global variable is made to point to a string which is
shane26b34032008-05-23 17:21:09 +00005436** the name of a folder (a.k.a. directory), then all temporary files
drhd68eee02009-12-11 03:44:18 +00005437** created by SQLite when using a built-in [sqlite3_vfs | VFS]
drh7a98b852009-12-13 23:03:01 +00005438** will be placed in that directory.)^ ^If this variable
mihailimdc884822008-06-22 08:58:50 +00005439** is a NULL pointer, then SQLite performs a search for an appropriate
5440** temporary file directory.
drhab3f9fe2004-08-14 17:10:10 +00005441**
drh11d451e2014-07-23 15:51:29 +00005442** Applications are strongly discouraged from using this global variable.
5443** It is required to set a temporary folder on Windows Runtime (WinRT).
5444** But for all other platforms, it is highly recommended that applications
5445** neither read nor write this variable. This global variable is a relic
5446** that exists for backwards compatibility of legacy applications and should
5447** be avoided in new projects.
5448**
drh1a25f112009-04-06 15:55:03 +00005449** It is not safe to read or modify this variable in more than one
5450** thread at a time. It is not safe to read or modify this variable
5451** if a [database connection] is being used at the same time in a separate
5452** thread.
5453** It is intended that this variable be set once
drh4ff7fa02007-09-01 18:17:21 +00005454** as part of process initialization and before any SQLite interface
drh1a25f112009-04-06 15:55:03 +00005455** routines have been called and that this variable remain unchanged
5456** thereafter.
5457**
drhd68eee02009-12-11 03:44:18 +00005458** ^The [temp_store_directory pragma] may modify this variable and cause
5459** it to point to memory obtained from [sqlite3_malloc]. ^Furthermore,
drh1a25f112009-04-06 15:55:03 +00005460** the [temp_store_directory pragma] always assumes that any string
5461** that this variable points to is held in memory obtained from
5462** [sqlite3_malloc] and the pragma may attempt to free that memory
5463** using [sqlite3_free].
5464** Hence, if this variable is modified directly, either it should be
5465** made NULL or made to point to memory obtained from [sqlite3_malloc]
5466** or else the use of the [temp_store_directory pragma] should be avoided.
drh11d451e2014-07-23 15:51:29 +00005467** Except when requested by the [temp_store_directory pragma], SQLite
5468** does not free the memory that sqlite3_temp_directory points to. If
5469** the application wants that memory to be freed, it must do
5470** so itself, taking care to only do so after all [database connection]
5471** objects have been destroyed.
mistachkin40e63192012-08-28 00:09:58 +00005472**
5473** <b>Note to Windows Runtime users:</b> The temporary directory must be set
5474** prior to calling [sqlite3_open] or [sqlite3_open_v2]. Otherwise, various
5475** features that require the use of temporary files may fail. Here is an
5476** example of how to do this using C++ with the Windows Runtime:
5477**
5478** <blockquote><pre>
5479** LPCWSTR zPath = Windows::Storage::ApplicationData::Current->
drh7a5d80e2012-08-28 00:17:56 +00005480** &nbsp; TemporaryFolder->Path->Data();
5481** char zPathBuf&#91;MAX_PATH + 1&#93;;
mistachkin40e63192012-08-28 00:09:58 +00005482** memset(zPathBuf, 0, sizeof(zPathBuf));
mistachkin40e63192012-08-28 00:09:58 +00005483** WideCharToMultiByte(CP_UTF8, 0, zPath, -1, zPathBuf, sizeof(zPathBuf),
drh7a5d80e2012-08-28 00:17:56 +00005484** &nbsp; NULL, NULL);
mistachkin40e63192012-08-28 00:09:58 +00005485** sqlite3_temp_directory = sqlite3_mprintf("%s", zPathBuf);
5486** </pre></blockquote>
drhab3f9fe2004-08-14 17:10:10 +00005487*/
drh73be5012007-08-08 12:11:21 +00005488SQLITE_EXTERN char *sqlite3_temp_directory;
drhab3f9fe2004-08-14 17:10:10 +00005489
danielk19776b456a22005-03-21 04:04:02 +00005490/*
mistachkina112d142012-03-14 00:44:01 +00005491** CAPI3REF: Name Of The Folder Holding Database Files
5492**
5493** ^(If this global variable is made to point to a string which is
5494** the name of a folder (a.k.a. directory), then all database files
5495** specified with a relative pathname and created or accessed by
drh155812d2012-06-07 17:57:23 +00005496** SQLite when using a built-in windows [sqlite3_vfs | VFS] will be assumed
mistachkina112d142012-03-14 00:44:01 +00005497** to be relative to that directory.)^ ^If this variable is a NULL
5498** pointer, then SQLite assumes that all database files specified
5499** with a relative pathname are relative to the current directory
drh155812d2012-06-07 17:57:23 +00005500** for the process. Only the windows VFS makes use of this global
5501** variable; it is ignored by the unix VFS.
mistachkina112d142012-03-14 00:44:01 +00005502**
mistachkin184997c2012-03-14 01:28:35 +00005503** Changing the value of this variable while a database connection is
5504** open can result in a corrupt database.
5505**
mistachkina112d142012-03-14 00:44:01 +00005506** It is not safe to read or modify this variable in more than one
5507** thread at a time. It is not safe to read or modify this variable
5508** if a [database connection] is being used at the same time in a separate
5509** thread.
5510** It is intended that this variable be set once
5511** as part of process initialization and before any SQLite interface
5512** routines have been called and that this variable remain unchanged
5513** thereafter.
5514**
5515** ^The [data_store_directory pragma] may modify this variable and cause
5516** it to point to memory obtained from [sqlite3_malloc]. ^Furthermore,
5517** the [data_store_directory pragma] always assumes that any string
5518** that this variable points to is held in memory obtained from
5519** [sqlite3_malloc] and the pragma may attempt to free that memory
5520** using [sqlite3_free].
5521** Hence, if this variable is modified directly, either it should be
5522** made NULL or made to point to memory obtained from [sqlite3_malloc]
5523** or else the use of the [data_store_directory pragma] should be avoided.
5524*/
5525SQLITE_EXTERN char *sqlite3_data_directory;
5526
5527/*
drhd68eee02009-12-11 03:44:18 +00005528** CAPI3REF: Test For Auto-Commit Mode
mihailim15194222008-06-22 09:55:14 +00005529** KEYWORDS: {autocommit mode}
drhd9a0a9a2015-04-14 15:14:06 +00005530** METHOD: sqlite3
danielk19776b456a22005-03-21 04:04:02 +00005531**
drhd68eee02009-12-11 03:44:18 +00005532** ^The sqlite3_get_autocommit() interface returns non-zero or
drhf5befa02007-12-06 02:42:07 +00005533** zero if the given database connection is or is not in autocommit mode,
drhd68eee02009-12-11 03:44:18 +00005534** respectively. ^Autocommit mode is on by default.
5535** ^Autocommit mode is disabled by a [BEGIN] statement.
5536** ^Autocommit mode is re-enabled by a [COMMIT] or [ROLLBACK].
drhe30f4422007-08-21 16:15:55 +00005537**
drh7c3472a2007-10-03 20:15:28 +00005538** If certain kinds of errors occur on a statement within a multi-statement
mihailimdc884822008-06-22 08:58:50 +00005539** transaction (errors including [SQLITE_FULL], [SQLITE_IOERR],
drh7c3472a2007-10-03 20:15:28 +00005540** [SQLITE_NOMEM], [SQLITE_BUSY], and [SQLITE_INTERRUPT]) then the
drh33c1be32008-01-30 16:16:14 +00005541** transaction might be rolled back automatically. The only way to
mihailimdc884822008-06-22 08:58:50 +00005542** find out whether SQLite automatically rolled back the transaction after
drh33c1be32008-01-30 16:16:14 +00005543** an error is to use this function.
drh7c3472a2007-10-03 20:15:28 +00005544**
drh8b39db12009-02-18 18:37:58 +00005545** If another thread changes the autocommit status of the database
5546** connection while this routine is running, then the return value
5547** is undefined.
drh3e1d8e62005-05-26 16:23:34 +00005548*/
5549int sqlite3_get_autocommit(sqlite3*);
5550
drh51942bc2005-06-12 22:01:42 +00005551/*
drhd68eee02009-12-11 03:44:18 +00005552** CAPI3REF: Find The Database Handle Of A Prepared Statement
drhd9a0a9a2015-04-14 15:14:06 +00005553** METHOD: sqlite3_stmt
drh6ed48bf2007-06-14 20:57:18 +00005554**
drhd68eee02009-12-11 03:44:18 +00005555** ^The sqlite3_db_handle interface returns the [database connection] handle
5556** to which a [prepared statement] belongs. ^The [database connection]
5557** returned by sqlite3_db_handle is the same [database connection]
5558** that was the first argument
mihailimdc884822008-06-22 08:58:50 +00005559** to the [sqlite3_prepare_v2()] call (or its variants) that was used to
5560** create the statement in the first place.
drh51942bc2005-06-12 22:01:42 +00005561*/
5562sqlite3 *sqlite3_db_handle(sqlite3_stmt*);
drh3e1d8e62005-05-26 16:23:34 +00005563
drhbb5a9c32008-06-19 02:52:25 +00005564/*
drh283829c2011-11-17 00:56:20 +00005565** CAPI3REF: Return The Filename For A Database Connection
drhd9a0a9a2015-04-14 15:14:06 +00005566** METHOD: sqlite3
drh283829c2011-11-17 00:56:20 +00005567**
5568** ^The sqlite3_db_filename(D,N) interface returns a pointer to a filename
5569** associated with database N of connection D. ^The main database file
5570** has the name "main". If there is no attached database N on the database
5571** connection D, or if database N is a temporary or in-memory database, then
5572** a NULL pointer is returned.
drh21495ba2011-11-17 11:49:58 +00005573**
5574** ^The filename returned by this function is the output of the
5575** xFullPathname method of the [VFS]. ^In other words, the filename
5576** will be an absolute pathname, even if the filename used
5577** to open the database originally was a URI or relative pathname.
drh283829c2011-11-17 00:56:20 +00005578*/
5579const char *sqlite3_db_filename(sqlite3 *db, const char *zDbName);
5580
5581/*
drh421377e2012-03-15 21:28:54 +00005582** CAPI3REF: Determine if a database is read-only
drhd9a0a9a2015-04-14 15:14:06 +00005583** METHOD: sqlite3
drh421377e2012-03-15 21:28:54 +00005584**
5585** ^The sqlite3_db_readonly(D,N) interface returns 1 if the database N
drha929e622012-03-15 22:54:37 +00005586** of connection D is read-only, 0 if it is read/write, or -1 if N is not
5587** the name of a database on connection D.
drh421377e2012-03-15 21:28:54 +00005588*/
5589int sqlite3_db_readonly(sqlite3 *db, const char *zDbName);
5590
5591/*
drhd68eee02009-12-11 03:44:18 +00005592** CAPI3REF: Find the next prepared statement
drhd9a0a9a2015-04-14 15:14:06 +00005593** METHOD: sqlite3
drhbb5a9c32008-06-19 02:52:25 +00005594**
drhd68eee02009-12-11 03:44:18 +00005595** ^This interface returns a pointer to the next [prepared statement] after
5596** pStmt associated with the [database connection] pDb. ^If pStmt is NULL
mihailimdc884822008-06-22 08:58:50 +00005597** then this interface returns a pointer to the first prepared statement
drhd68eee02009-12-11 03:44:18 +00005598** associated with the database connection pDb. ^If no prepared statement
mihailimdc884822008-06-22 08:58:50 +00005599** satisfies the conditions of this routine, it returns NULL.
drhbb5a9c32008-06-19 02:52:25 +00005600**
drh8b39db12009-02-18 18:37:58 +00005601** The [database connection] pointer D in a call to
5602** [sqlite3_next_stmt(D,S)] must refer to an open database
5603** connection and in particular must not be a NULL pointer.
drhbb5a9c32008-06-19 02:52:25 +00005604*/
5605sqlite3_stmt *sqlite3_next_stmt(sqlite3 *pDb, sqlite3_stmt *pStmt);
5606
drhb37df7b2005-10-13 02:09:49 +00005607/*
drhfb434032009-12-11 23:11:26 +00005608** CAPI3REF: Commit And Rollback Notification Callbacks
drhd9a0a9a2015-04-14 15:14:06 +00005609** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00005610**
drhd68eee02009-12-11 03:44:18 +00005611** ^The sqlite3_commit_hook() interface registers a callback
drhabda6112009-05-14 22:37:47 +00005612** function to be invoked whenever a transaction is [COMMIT | committed].
drhd68eee02009-12-11 03:44:18 +00005613** ^Any callback set by a previous call to sqlite3_commit_hook()
drhf5befa02007-12-06 02:42:07 +00005614** for the same database connection is overridden.
drhd68eee02009-12-11 03:44:18 +00005615** ^The sqlite3_rollback_hook() interface registers a callback
drhabda6112009-05-14 22:37:47 +00005616** function to be invoked whenever a transaction is [ROLLBACK | rolled back].
drhd68eee02009-12-11 03:44:18 +00005617** ^Any callback set by a previous call to sqlite3_rollback_hook()
drhf5befa02007-12-06 02:42:07 +00005618** for the same database connection is overridden.
drhd68eee02009-12-11 03:44:18 +00005619** ^The pArg argument is passed through to the callback.
5620** ^If the callback on a commit hook function returns non-zero,
mihailimdc884822008-06-22 08:58:50 +00005621** then the commit is converted into a rollback.
drh6ed48bf2007-06-14 20:57:18 +00005622**
drhd68eee02009-12-11 03:44:18 +00005623** ^The sqlite3_commit_hook(D,C,P) and sqlite3_rollback_hook(D,C,P) functions
5624** return the P argument from the previous call of the same function
5625** on the same [database connection] D, or NULL for
5626** the first call for each function on D.
drh6ed48bf2007-06-14 20:57:18 +00005627**
drha46739e2011-11-07 17:54:26 +00005628** The commit and rollback hook callbacks are not reentrant.
drhc8075422008-09-10 13:09:23 +00005629** The callback implementation must not do anything that will modify
5630** the database connection that invoked the callback. Any actions
5631** to modify the database connection must be deferred until after the
5632** completion of the [sqlite3_step()] call that triggered the commit
5633** or rollback hook in the first place.
drha46739e2011-11-07 17:54:26 +00005634** Note that running any other SQL statements, including SELECT statements,
5635** or merely calling [sqlite3_prepare_v2()] and [sqlite3_step()] will modify
5636** the database connections for the meaning of "modify" in this paragraph.
drhc8075422008-09-10 13:09:23 +00005637**
drhd68eee02009-12-11 03:44:18 +00005638** ^Registering a NULL function disables the callback.
drh6ed48bf2007-06-14 20:57:18 +00005639**
drhd68eee02009-12-11 03:44:18 +00005640** ^When the commit hook callback routine returns zero, the [COMMIT]
5641** operation is allowed to continue normally. ^If the commit hook
drhabda6112009-05-14 22:37:47 +00005642** returns non-zero, then the [COMMIT] is converted into a [ROLLBACK].
drhd68eee02009-12-11 03:44:18 +00005643** ^The rollback hook is invoked on a rollback that results from a commit
drhabda6112009-05-14 22:37:47 +00005644** hook returning non-zero, just as it would be with any other rollback.
5645**
drhd68eee02009-12-11 03:44:18 +00005646** ^For the purposes of this API, a transaction is said to have been
drh6ed48bf2007-06-14 20:57:18 +00005647** rolled back if an explicit "ROLLBACK" statement is executed, or
drhf5befa02007-12-06 02:42:07 +00005648** an error or constraint causes an implicit rollback to occur.
drhd68eee02009-12-11 03:44:18 +00005649** ^The rollback callback is not invoked if a transaction is
drhf5befa02007-12-06 02:42:07 +00005650** automatically rolled back because the database connection is closed.
drh6ed48bf2007-06-14 20:57:18 +00005651**
drhabda6112009-05-14 22:37:47 +00005652** See also the [sqlite3_update_hook()] interface.
drh6ed48bf2007-06-14 20:57:18 +00005653*/
5654void *sqlite3_commit_hook(sqlite3*, int(*)(void*), void*);
5655void *sqlite3_rollback_hook(sqlite3*, void(*)(void *), void*);
5656
5657/*
drhd68eee02009-12-11 03:44:18 +00005658** CAPI3REF: Data Change Notification Callbacks
drhd9a0a9a2015-04-14 15:14:06 +00005659** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00005660**
drhd68eee02009-12-11 03:44:18 +00005661** ^The sqlite3_update_hook() interface registers a callback function
mihailimdc884822008-06-22 08:58:50 +00005662** with the [database connection] identified by the first argument
drhd2fe3352013-11-09 18:15:35 +00005663** to be invoked whenever a row is updated, inserted or deleted in
drh076b6462016-04-01 17:54:07 +00005664** a [rowid table].
drhd68eee02009-12-11 03:44:18 +00005665** ^Any callback set by a previous call to this function
mihailimdc884822008-06-22 08:58:50 +00005666** for the same database connection is overridden.
danielk197794eb6a12005-12-15 15:22:08 +00005667**
drhd68eee02009-12-11 03:44:18 +00005668** ^The second argument is a pointer to the function to invoke when a
drhd2fe3352013-11-09 18:15:35 +00005669** row is updated, inserted or deleted in a rowid table.
drhd68eee02009-12-11 03:44:18 +00005670** ^The first argument to the callback is a copy of the third argument
mihailimdc884822008-06-22 08:58:50 +00005671** to sqlite3_update_hook().
drhd68eee02009-12-11 03:44:18 +00005672** ^The second callback argument is one of [SQLITE_INSERT], [SQLITE_DELETE],
mihailimdc884822008-06-22 08:58:50 +00005673** or [SQLITE_UPDATE], depending on the operation that caused the callback
5674** to be invoked.
drhd68eee02009-12-11 03:44:18 +00005675** ^The third and fourth arguments to the callback contain pointers to the
mihailimdc884822008-06-22 08:58:50 +00005676** database and table name containing the affected row.
drhd68eee02009-12-11 03:44:18 +00005677** ^The final callback parameter is the [rowid] of the row.
5678** ^In the case of an update, this is the [rowid] after the update takes place.
danielk197794eb6a12005-12-15 15:22:08 +00005679**
drhd68eee02009-12-11 03:44:18 +00005680** ^(The update hook is not invoked when internal system tables are
5681** modified (i.e. sqlite_master and sqlite_sequence).)^
drhd2fe3352013-11-09 18:15:35 +00005682** ^The update hook is not invoked when [WITHOUT ROWID] tables are modified.
danielk197771fd80b2005-12-16 06:54:01 +00005683**
drhd68eee02009-12-11 03:44:18 +00005684** ^In the current implementation, the update hook
dan2d2e4f32017-01-28 06:50:15 +00005685** is not invoked when conflicting rows are deleted because of an
drhd68eee02009-12-11 03:44:18 +00005686** [ON CONFLICT | ON CONFLICT REPLACE] clause. ^Nor is the update hook
drhabda6112009-05-14 22:37:47 +00005687** invoked when rows are deleted using the [truncate optimization].
5688** The exceptions defined in this paragraph might change in a future
5689** release of SQLite.
5690**
drhc8075422008-09-10 13:09:23 +00005691** The update hook implementation must not do anything that will modify
5692** the database connection that invoked the update hook. Any actions
5693** to modify the database connection must be deferred until after the
5694** completion of the [sqlite3_step()] call that triggered the update hook.
5695** Note that [sqlite3_prepare_v2()] and [sqlite3_step()] both modify their
5696** database connections for the meaning of "modify" in this paragraph.
5697**
drhd68eee02009-12-11 03:44:18 +00005698** ^The sqlite3_update_hook(D,C,P) function
5699** returns the P argument from the previous call
5700** on the same [database connection] D, or NULL for
5701** the first call on D.
drhafc91042008-02-21 02:09:45 +00005702**
drh930e1b62011-03-30 17:07:47 +00005703** See also the [sqlite3_commit_hook()], [sqlite3_rollback_hook()],
5704** and [sqlite3_preupdate_hook()] interfaces.
danielk197794eb6a12005-12-15 15:22:08 +00005705*/
danielk197771fd80b2005-12-16 06:54:01 +00005706void *sqlite3_update_hook(
danielk197794eb6a12005-12-15 15:22:08 +00005707 sqlite3*,
drh6d2069d2007-08-14 01:58:53 +00005708 void(*)(void *,int ,char const *,char const *,sqlite3_int64),
danielk197794eb6a12005-12-15 15:22:08 +00005709 void*
5710);
danielk197713a68c32005-12-15 10:11:30 +00005711
danielk1977f3f06bb2005-12-16 15:24:28 +00005712/*
drhd68eee02009-12-11 03:44:18 +00005713** CAPI3REF: Enable Or Disable Shared Pager Cache
danielk1977f3f06bb2005-12-16 15:24:28 +00005714**
drhd68eee02009-12-11 03:44:18 +00005715** ^(This routine enables or disables the sharing of the database cache
mihailimdc884822008-06-22 08:58:50 +00005716** and schema data structures between [database connection | connections]
5717** to the same database. Sharing is enabled if the argument is true
drhd68eee02009-12-11 03:44:18 +00005718** and disabled if the argument is false.)^
danielk1977f3f06bb2005-12-16 15:24:28 +00005719**
drhd68eee02009-12-11 03:44:18 +00005720** ^Cache sharing is enabled and disabled for an entire process.
drh481fd502016-09-14 18:56:20 +00005721** This is a change as of SQLite [version 3.5.0] ([dateof:3.5.0]).
5722** In prior versions of SQLite,
mihailimdc884822008-06-22 08:58:50 +00005723** sharing was enabled or disabled for each thread separately.
drh6ed48bf2007-06-14 20:57:18 +00005724**
drhd68eee02009-12-11 03:44:18 +00005725** ^(The cache sharing mode set by this interface effects all subsequent
drhe30f4422007-08-21 16:15:55 +00005726** calls to [sqlite3_open()], [sqlite3_open_v2()], and [sqlite3_open16()].
drhafc91042008-02-21 02:09:45 +00005727** Existing database connections continue use the sharing mode
drhd68eee02009-12-11 03:44:18 +00005728** that was in effect at the time they were opened.)^
drh6ed48bf2007-06-14 20:57:18 +00005729**
drhd68eee02009-12-11 03:44:18 +00005730** ^(This routine returns [SQLITE_OK] if shared cache was enabled or disabled
5731** successfully. An [error code] is returned otherwise.)^
drh6ed48bf2007-06-14 20:57:18 +00005732**
drhd68eee02009-12-11 03:44:18 +00005733** ^Shared cache is disabled by default. But this might change in
drh4ff7fa02007-09-01 18:17:21 +00005734** future releases of SQLite. Applications that care about shared
5735** cache setting should set it explicitly.
drhafc91042008-02-21 02:09:45 +00005736**
drh883ad042015-02-19 00:29:11 +00005737** Note: This method is disabled on MacOS X 10.7 and iOS version 5.0
5738** and will always return SQLITE_MISUSE. On those systems,
5739** shared cache mode should be enabled per-database connection via
5740** [sqlite3_open_v2()] with [SQLITE_OPEN_SHAREDCACHE].
5741**
drh86ae51c2012-09-24 11:43:43 +00005742** This interface is threadsafe on processors where writing a
5743** 32-bit integer is atomic.
5744**
drhaff46972009-02-12 17:07:34 +00005745** See Also: [SQLite Shared-Cache Mode]
danielk1977aef0bf62005-12-30 16:28:01 +00005746*/
5747int sqlite3_enable_shared_cache(int);
5748
5749/*
drhd68eee02009-12-11 03:44:18 +00005750** CAPI3REF: Attempt To Free Heap Memory
drh6ed48bf2007-06-14 20:57:18 +00005751**
drhd68eee02009-12-11 03:44:18 +00005752** ^The sqlite3_release_memory() interface attempts to free N bytes
mihailim04bcc002008-06-22 10:21:27 +00005753** of heap memory by deallocating non-essential memory allocations
drhd68eee02009-12-11 03:44:18 +00005754** held by the database library. Memory used to cache database
mihailim04bcc002008-06-22 10:21:27 +00005755** pages to improve performance is an example of non-essential memory.
drhd68eee02009-12-11 03:44:18 +00005756** ^sqlite3_release_memory() returns the number of bytes actually freed,
mihailim04bcc002008-06-22 10:21:27 +00005757** which might be more or less than the amount requested.
drh9f129f42010-08-31 15:27:32 +00005758** ^The sqlite3_release_memory() routine is a no-op returning zero
5759** if SQLite is not compiled with [SQLITE_ENABLE_MEMORY_MANAGEMENT].
drh09419b42011-11-16 19:29:17 +00005760**
5761** See also: [sqlite3_db_release_memory()]
danielk197752622822006-01-09 09:59:49 +00005762*/
5763int sqlite3_release_memory(int);
5764
5765/*
drh09419b42011-11-16 19:29:17 +00005766** CAPI3REF: Free Memory Used By A Database Connection
drhd9a0a9a2015-04-14 15:14:06 +00005767** METHOD: sqlite3
drh09419b42011-11-16 19:29:17 +00005768**
dand9bb3a92011-12-30 11:43:59 +00005769** ^The sqlite3_db_release_memory(D) interface attempts to free as much heap
drh09419b42011-11-16 19:29:17 +00005770** memory as possible from database connection D. Unlike the
drh2365bac2013-11-18 18:48:50 +00005771** [sqlite3_release_memory()] interface, this interface is in effect even
5772** when the [SQLITE_ENABLE_MEMORY_MANAGEMENT] compile-time option is
drh09419b42011-11-16 19:29:17 +00005773** omitted.
5774**
5775** See also: [sqlite3_release_memory()]
5776*/
5777int sqlite3_db_release_memory(sqlite3*);
5778
5779/*
drhd68eee02009-12-11 03:44:18 +00005780** CAPI3REF: Impose A Limit On Heap Size
drh6ed48bf2007-06-14 20:57:18 +00005781**
drhf82ccf62010-09-15 17:54:31 +00005782** ^The sqlite3_soft_heap_limit64() interface sets and/or queries the
5783** soft limit on the amount of heap memory that may be allocated by SQLite.
5784** ^SQLite strives to keep heap memory utilization below the soft heap
5785** limit by reducing the number of pages held in the page cache
5786** as heap memory usages approaches the limit.
5787** ^The soft heap limit is "soft" because even though SQLite strives to stay
5788** below the limit, it will exceed the limit rather than generate
5789** an [SQLITE_NOMEM] error. In other words, the soft heap limit
5790** is advisory only.
danielk197752622822006-01-09 09:59:49 +00005791**
drhf82ccf62010-09-15 17:54:31 +00005792** ^The return value from sqlite3_soft_heap_limit64() is the size of
drhde0f1812011-12-22 17:10:35 +00005793** the soft heap limit prior to the call, or negative in the case of an
5794** error. ^If the argument N is negative
drhf82ccf62010-09-15 17:54:31 +00005795** then no change is made to the soft heap limit. Hence, the current
5796** size of the soft heap limit can be determined by invoking
5797** sqlite3_soft_heap_limit64() with a negative argument.
drh6ed48bf2007-06-14 20:57:18 +00005798**
drhf82ccf62010-09-15 17:54:31 +00005799** ^If the argument N is zero then the soft heap limit is disabled.
drh6ed48bf2007-06-14 20:57:18 +00005800**
drhf82ccf62010-09-15 17:54:31 +00005801** ^(The soft heap limit is not enforced in the current implementation
5802** if one or more of following conditions are true:
drh6ed48bf2007-06-14 20:57:18 +00005803**
drhf82ccf62010-09-15 17:54:31 +00005804** <ul>
5805** <li> The soft heap limit is set to zero.
5806** <li> Memory accounting is disabled using a combination of the
5807** [sqlite3_config]([SQLITE_CONFIG_MEMSTATUS],...) start-time option and
5808** the [SQLITE_DEFAULT_MEMSTATUS] compile-time option.
drh8b2b2e62011-04-07 01:14:12 +00005809** <li> An alternative page cache implementation is specified using
drhe5c40b12011-11-09 00:06:05 +00005810** [sqlite3_config]([SQLITE_CONFIG_PCACHE2],...).
drhf82ccf62010-09-15 17:54:31 +00005811** <li> The page cache allocates from its own memory pool supplied
5812** by [sqlite3_config]([SQLITE_CONFIG_PAGECACHE],...) rather than
5813** from the heap.
5814** </ul>)^
5815**
drh481fd502016-09-14 18:56:20 +00005816** Beginning with SQLite [version 3.7.3] ([dateof:3.7.3]),
5817** the soft heap limit is enforced
drhf82ccf62010-09-15 17:54:31 +00005818** regardless of whether or not the [SQLITE_ENABLE_MEMORY_MANAGEMENT]
5819** compile-time option is invoked. With [SQLITE_ENABLE_MEMORY_MANAGEMENT],
5820** the soft heap limit is enforced on every memory allocation. Without
5821** [SQLITE_ENABLE_MEMORY_MANAGEMENT], the soft heap limit is only enforced
5822** when memory is allocated by the page cache. Testing suggests that because
5823** the page cache is the predominate memory user in SQLite, most
5824** applications will achieve adequate soft heap limit enforcement without
5825** the use of [SQLITE_ENABLE_MEMORY_MANAGEMENT].
5826**
5827** The circumstances under which SQLite will enforce the soft heap limit may
5828** changes in future releases of SQLite.
danielk197752622822006-01-09 09:59:49 +00005829*/
drhf82ccf62010-09-15 17:54:31 +00005830sqlite3_int64 sqlite3_soft_heap_limit64(sqlite3_int64 N);
5831
5832/*
5833** CAPI3REF: Deprecated Soft Heap Limit Interface
5834** DEPRECATED
5835**
5836** This is a deprecated version of the [sqlite3_soft_heap_limit64()]
5837** interface. This routine is provided for historical compatibility
5838** only. All new applications should use the
5839** [sqlite3_soft_heap_limit64()] interface rather than this one.
5840*/
5841SQLITE_DEPRECATED void sqlite3_soft_heap_limit(int N);
5842
danielk197752622822006-01-09 09:59:49 +00005843
5844/*
drhfb434032009-12-11 23:11:26 +00005845** CAPI3REF: Extract Metadata About A Column Of A Table
drhd9a0a9a2015-04-14 15:14:06 +00005846** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00005847**
drh6f7febf2014-12-10 04:58:43 +00005848** ^(The sqlite3_table_column_metadata(X,D,T,C,....) routine returns
drh45d1b202014-12-09 22:24:42 +00005849** information about column C of table T in database D
drh6f7febf2014-12-10 04:58:43 +00005850** on [database connection] X.)^ ^The sqlite3_table_column_metadata()
drh45d1b202014-12-09 22:24:42 +00005851** interface returns SQLITE_OK and fills in the non-NULL pointers in
drh6f7febf2014-12-10 04:58:43 +00005852** the final five arguments with appropriate values if the specified
drh45d1b202014-12-09 22:24:42 +00005853** column exists. ^The sqlite3_table_column_metadata() interface returns
5854** SQLITE_ERROR and if the specified column does not exist.
drh6f7febf2014-12-10 04:58:43 +00005855** ^If the column-name parameter to sqlite3_table_column_metadata() is a
drh6da466e2016-08-07 18:52:11 +00005856** NULL pointer, then this routine simply checks for the existence of the
drh45d1b202014-12-09 22:24:42 +00005857** table and returns SQLITE_OK if the table exists and SQLITE_ERROR if it
drhc097b302017-06-09 11:43:53 +00005858** does not. If the table name parameter T in a call to
5859** sqlite3_table_column_metadata(X,D,T,C,...) is NULL then the result is
5860** undefined behavior.
danielk1977deb802c2006-02-09 13:43:28 +00005861**
drhd68eee02009-12-11 03:44:18 +00005862** ^The column is identified by the second, third and fourth parameters to
drh6f7febf2014-12-10 04:58:43 +00005863** this function. ^(The second parameter is either the name of the database
drhdf6473a2009-12-13 22:20:08 +00005864** (i.e. "main", "temp", or an attached database) containing the specified
drh6f7febf2014-12-10 04:58:43 +00005865** table or NULL.)^ ^If it is NULL, then all attached databases are searched
mihailimdc884822008-06-22 08:58:50 +00005866** for the table using the same algorithm used by the database engine to
drh7a98b852009-12-13 23:03:01 +00005867** resolve unqualified table references.
danielk1977deb802c2006-02-09 13:43:28 +00005868**
drhd68eee02009-12-11 03:44:18 +00005869** ^The third and fourth parameters to this function are the table and column
drh45d1b202014-12-09 22:24:42 +00005870** name of the desired column, respectively.
danielk1977deb802c2006-02-09 13:43:28 +00005871**
drhd68eee02009-12-11 03:44:18 +00005872** ^Metadata is returned by writing to the memory locations passed as the 5th
5873** and subsequent parameters to this function. ^Any of these arguments may be
mihailimdc884822008-06-22 08:58:50 +00005874** NULL, in which case the corresponding element of metadata is omitted.
mihailim15194222008-06-22 09:55:14 +00005875**
drhd68eee02009-12-11 03:44:18 +00005876** ^(<blockquote>
mihailimdc884822008-06-22 08:58:50 +00005877** <table border="1">
5878** <tr><th> Parameter <th> Output<br>Type <th> Description
danielk1977deb802c2006-02-09 13:43:28 +00005879**
mihailimdc884822008-06-22 08:58:50 +00005880** <tr><td> 5th <td> const char* <td> Data type
5881** <tr><td> 6th <td> const char* <td> Name of default collation sequence
5882** <tr><td> 7th <td> int <td> True if column has a NOT NULL constraint
5883** <tr><td> 8th <td> int <td> True if column is part of the PRIMARY KEY
drh49c3d572008-12-15 22:51:38 +00005884** <tr><td> 9th <td> int <td> True if column is [AUTOINCREMENT]
mihailimdc884822008-06-22 08:58:50 +00005885** </table>
drhd68eee02009-12-11 03:44:18 +00005886** </blockquote>)^
danielk1977deb802c2006-02-09 13:43:28 +00005887**
drhd68eee02009-12-11 03:44:18 +00005888** ^The memory pointed to by the character pointers returned for the
drh45d1b202014-12-09 22:24:42 +00005889** declaration type and collation sequence is valid until the next
mihailimdc884822008-06-22 08:58:50 +00005890** call to any SQLite API function.
danielk1977deb802c2006-02-09 13:43:28 +00005891**
drhd68eee02009-12-11 03:44:18 +00005892** ^If the specified table is actually a view, an [error code] is returned.
danielk1977deb802c2006-02-09 13:43:28 +00005893**
drh45d1b202014-12-09 22:24:42 +00005894** ^If the specified column is "rowid", "oid" or "_rowid_" and the table
5895** is not a [WITHOUT ROWID] table and an
drh49c3d572008-12-15 22:51:38 +00005896** [INTEGER PRIMARY KEY] column has been explicitly declared, then the output
drhd68eee02009-12-11 03:44:18 +00005897** parameters are set for the explicitly declared column. ^(If there is no
drh45d1b202014-12-09 22:24:42 +00005898** [INTEGER PRIMARY KEY] column, then the outputs
5899** for the [rowid] are set as follows:
danielk1977deb802c2006-02-09 13:43:28 +00005900**
drh6ed48bf2007-06-14 20:57:18 +00005901** <pre>
danielk1977deb802c2006-02-09 13:43:28 +00005902** data type: "INTEGER"
5903** collation sequence: "BINARY"
5904** not null: 0
5905** primary key: 1
5906** auto increment: 0
drhd68eee02009-12-11 03:44:18 +00005907** </pre>)^
danielk1977deb802c2006-02-09 13:43:28 +00005908**
drh45d1b202014-12-09 22:24:42 +00005909** ^This function causes all database schemas to be read from disk and
5910** parsed, if that has not already been done, and returns an error if
5911** any errors are encountered while loading the schema.
danielk1977deb802c2006-02-09 13:43:28 +00005912*/
5913int sqlite3_table_column_metadata(
5914 sqlite3 *db, /* Connection handle */
5915 const char *zDbName, /* Database name or NULL */
5916 const char *zTableName, /* Table name */
5917 const char *zColumnName, /* Column name */
5918 char const **pzDataType, /* OUTPUT: Declared data type */
5919 char const **pzCollSeq, /* OUTPUT: Collation sequence name */
5920 int *pNotNull, /* OUTPUT: True if NOT NULL constraint exists */
5921 int *pPrimaryKey, /* OUTPUT: True if column part of PK */
drh98c94802007-10-01 13:50:31 +00005922 int *pAutoinc /* OUTPUT: True if column is auto-increment */
danielk1977deb802c2006-02-09 13:43:28 +00005923);
5924
5925/*
drhd68eee02009-12-11 03:44:18 +00005926** CAPI3REF: Load An Extension
drhd9a0a9a2015-04-14 15:14:06 +00005927** METHOD: sqlite3
drh1e397f82006-06-08 15:28:43 +00005928**
drhd68eee02009-12-11 03:44:18 +00005929** ^This interface loads an SQLite extension library from the named file.
drh1e397f82006-06-08 15:28:43 +00005930**
drhd68eee02009-12-11 03:44:18 +00005931** ^The sqlite3_load_extension() interface attempts to load an
drhc288e442013-04-18 22:56:42 +00005932** [SQLite extension] library contained in the file zFile. If
5933** the file cannot be loaded directly, attempts are made to load
5934** with various operating-system specific extensions added.
5935** So for example, if "samplelib" cannot be loaded, then names like
5936** "samplelib.so" or "samplelib.dylib" or "samplelib.dll" might
5937** be tried also.
drh1e397f82006-06-08 15:28:43 +00005938**
drhd68eee02009-12-11 03:44:18 +00005939** ^The entry point is zProc.
drhc288e442013-04-18 22:56:42 +00005940** ^(zProc may be 0, in which case SQLite will try to come up with an
5941** entry point name on its own. It first tries "sqlite3_extension_init".
5942** If that does not work, it constructs a name "sqlite3_X_init" where the
5943** X is consists of the lower-case equivalent of all ASCII alphabetic
5944** characters in the filename from the last "/" to the first following
5945** "." and omitting any initial "lib".)^
drhd68eee02009-12-11 03:44:18 +00005946** ^The sqlite3_load_extension() interface returns
5947** [SQLITE_OK] on success and [SQLITE_ERROR] if something goes wrong.
5948** ^If an error occurs and pzErrMsg is not 0, then the
5949** [sqlite3_load_extension()] interface shall attempt to
5950** fill *pzErrMsg with error message text stored in memory
5951** obtained from [sqlite3_malloc()]. The calling function
5952** should free this memory by calling [sqlite3_free()].
mihailimdc884822008-06-22 08:58:50 +00005953**
drhd68eee02009-12-11 03:44:18 +00005954** ^Extension loading must be enabled using
drh191dd062016-04-21 01:30:09 +00005955** [sqlite3_enable_load_extension()] or
5956** [sqlite3_db_config](db,[SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION],1,NULL)
5957** prior to calling this API,
drhd68eee02009-12-11 03:44:18 +00005958** otherwise an error will be returned.
drha94cc422009-12-03 01:01:02 +00005959**
drh191dd062016-04-21 01:30:09 +00005960** <b>Security warning:</b> It is recommended that the
5961** [SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION] method be used to enable only this
5962** interface. The use of the [sqlite3_enable_load_extension()] interface
5963** should be avoided. This will keep the SQL function [load_extension()]
5964** disabled and prevent SQL injections from giving attackers
5965** access to extension loading capabilities.
5966**
drha94cc422009-12-03 01:01:02 +00005967** See also the [load_extension() SQL function].
drh1e397f82006-06-08 15:28:43 +00005968*/
5969int sqlite3_load_extension(
5970 sqlite3 *db, /* Load the extension into this database connection */
5971 const char *zFile, /* Name of the shared library containing extension */
5972 const char *zProc, /* Entry point. Derived from zFile if 0 */
5973 char **pzErrMsg /* Put error message here if not 0 */
5974);
5975
5976/*
drhd68eee02009-12-11 03:44:18 +00005977** CAPI3REF: Enable Or Disable Extension Loading
drhd9a0a9a2015-04-14 15:14:06 +00005978** METHOD: sqlite3
drh6ed48bf2007-06-14 20:57:18 +00005979**
drhd68eee02009-12-11 03:44:18 +00005980** ^So as not to open security holes in older applications that are
drh4670f6d2013-04-17 14:04:52 +00005981** unprepared to deal with [extension loading], and as a means of disabling
5982** [extension loading] while evaluating user-entered SQL, the following API
mihailimdc884822008-06-22 08:58:50 +00005983** is provided to turn the [sqlite3_load_extension()] mechanism on and off.
drhc2e87a32006-06-27 15:16:14 +00005984**
drh4670f6d2013-04-17 14:04:52 +00005985** ^Extension loading is off by default.
drhd68eee02009-12-11 03:44:18 +00005986** ^Call the sqlite3_enable_load_extension() routine with onoff==1
5987** to turn extension loading on and call it with onoff==0 to turn
5988** it back off again.
drh191dd062016-04-21 01:30:09 +00005989**
5990** ^This interface enables or disables both the C-API
5991** [sqlite3_load_extension()] and the SQL function [load_extension()].
drhb7203cd2016-08-02 13:26:34 +00005992** ^(Use [sqlite3_db_config](db,[SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION],..)
5993** to enable or disable only the C-API.)^
drh191dd062016-04-21 01:30:09 +00005994**
5995** <b>Security warning:</b> It is recommended that extension loading
5996** be disabled using the [SQLITE_DBCONFIG_ENABLE_LOAD_EXTENSION] method
5997** rather than this interface, so the [load_extension()] SQL function
5998** remains disabled. This will prevent SQL injections from giving attackers
5999** access to extension loading capabilities.
drhc2e87a32006-06-27 15:16:14 +00006000*/
6001int sqlite3_enable_load_extension(sqlite3 *db, int onoff);
6002
6003/*
drhff1290f2010-09-17 22:39:07 +00006004** CAPI3REF: Automatically Load Statically Linked Extensions
drh9eff6162006-06-12 21:59:13 +00006005**
drhff1290f2010-09-17 22:39:07 +00006006** ^This interface causes the xEntryPoint() function to be invoked for
6007** each new [database connection] that is created. The idea here is that
drh4670f6d2013-04-17 14:04:52 +00006008** xEntryPoint() is the entry point for a statically linked [SQLite extension]
drhff1290f2010-09-17 22:39:07 +00006009** that is to be automatically loaded into all new database connections.
mihailimdc884822008-06-22 08:58:50 +00006010**
drhff1290f2010-09-17 22:39:07 +00006011** ^(Even though the function prototype shows that xEntryPoint() takes
6012** no arguments and returns void, SQLite invokes xEntryPoint() with three
drh32c83c82016-08-01 14:35:48 +00006013** arguments and expects an integer result as if the signature of the
drhff1290f2010-09-17 22:39:07 +00006014** entry point where as follows:
mihailimdc884822008-06-22 08:58:50 +00006015**
drhff1290f2010-09-17 22:39:07 +00006016** <blockquote><pre>
6017** &nbsp; int xEntryPoint(
6018** &nbsp; sqlite3 *db,
6019** &nbsp; const char **pzErrMsg,
6020** &nbsp; const struct sqlite3_api_routines *pThunk
6021** &nbsp; );
6022** </pre></blockquote>)^
6023**
6024** If the xEntryPoint routine encounters an error, it should make *pzErrMsg
6025** point to an appropriate error message (obtained from [sqlite3_mprintf()])
6026** and return an appropriate [error code]. ^SQLite ensures that *pzErrMsg
6027** is NULL before calling the xEntryPoint(). ^SQLite will invoke
6028** [sqlite3_free()] on *pzErrMsg after xEntryPoint() returns. ^If any
6029** xEntryPoint() returns an error, the [sqlite3_open()], [sqlite3_open16()],
6030** or [sqlite3_open_v2()] call that provoked the xEntryPoint() will fail.
6031**
6032** ^Calling sqlite3_auto_extension(X) with an entry point X that is already
6033** on the list of automatic extensions is a harmless no-op. ^No entry point
6034** will be called more than once for each database connection that is opened.
6035**
drh425e27d2013-07-15 17:02:28 +00006036** See also: [sqlite3_reset_auto_extension()]
6037** and [sqlite3_cancel_auto_extension()]
drh1409be62006-08-23 20:07:20 +00006038*/
drh32c83c82016-08-01 14:35:48 +00006039int sqlite3_auto_extension(void(*xEntryPoint)(void));
drh1409be62006-08-23 20:07:20 +00006040
drh1409be62006-08-23 20:07:20 +00006041/*
drh425e27d2013-07-15 17:02:28 +00006042** CAPI3REF: Cancel Automatic Extension Loading
6043**
6044** ^The [sqlite3_cancel_auto_extension(X)] interface unregisters the
6045** initialization routine X that was registered using a prior call to
6046** [sqlite3_auto_extension(X)]. ^The [sqlite3_cancel_auto_extension(X)]
6047** routine returns 1 if initialization routine X was successfully
6048** unregistered and it returns 0 if X was not on the list of initialization
6049** routines.
6050*/
drh32c83c82016-08-01 14:35:48 +00006051int sqlite3_cancel_auto_extension(void(*xEntryPoint)(void));
drh425e27d2013-07-15 17:02:28 +00006052
6053/*
drhd68eee02009-12-11 03:44:18 +00006054** CAPI3REF: Reset Automatic Extension Loading
drh1409be62006-08-23 20:07:20 +00006055**
drhff1290f2010-09-17 22:39:07 +00006056** ^This interface disables all automatic extensions previously
6057** registered using [sqlite3_auto_extension()].
drh1409be62006-08-23 20:07:20 +00006058*/
6059void sqlite3_reset_auto_extension(void);
6060
drh1409be62006-08-23 20:07:20 +00006061/*
drh9eff6162006-06-12 21:59:13 +00006062** The interface to the virtual-table mechanism is currently considered
6063** to be experimental. The interface might change in incompatible ways.
6064** If this is a problem for you, do not use the interface at this time.
6065**
shane26b34032008-05-23 17:21:09 +00006066** When the virtual-table mechanism stabilizes, we will declare the
drh9eff6162006-06-12 21:59:13 +00006067** interface fixed, support it indefinitely, and remove this comment.
6068*/
6069
6070/*
6071** Structures used by the virtual table interface
drhe09daa92006-06-10 13:29:31 +00006072*/
6073typedef struct sqlite3_vtab sqlite3_vtab;
6074typedef struct sqlite3_index_info sqlite3_index_info;
6075typedef struct sqlite3_vtab_cursor sqlite3_vtab_cursor;
6076typedef struct sqlite3_module sqlite3_module;
drh9eff6162006-06-12 21:59:13 +00006077
6078/*
drhd68eee02009-12-11 03:44:18 +00006079** CAPI3REF: Virtual Table Object
drh9cff9dc2009-04-13 14:43:40 +00006080** KEYWORDS: sqlite3_module {virtual table module}
drhb4d58ae2008-02-21 20:17:06 +00006081**
drh8b2b2e62011-04-07 01:14:12 +00006082** This structure, sometimes called a "virtual table module",
drh9cff9dc2009-04-13 14:43:40 +00006083** defines the implementation of a [virtual tables].
6084** This structure consists mostly of methods for the module.
mihailim15194222008-06-22 09:55:14 +00006085**
drhd68eee02009-12-11 03:44:18 +00006086** ^A virtual table module is created by filling in a persistent
drh9cff9dc2009-04-13 14:43:40 +00006087** instance of this structure and passing a pointer to that instance
6088** to [sqlite3_create_module()] or [sqlite3_create_module_v2()].
drhd68eee02009-12-11 03:44:18 +00006089** ^The registration remains valid until it is replaced by a different
drh9cff9dc2009-04-13 14:43:40 +00006090** module or until the [database connection] closes. The content
6091** of this structure must not change while it is registered with
6092** any database connection.
drh9eff6162006-06-12 21:59:13 +00006093*/
drhe09daa92006-06-10 13:29:31 +00006094struct sqlite3_module {
6095 int iVersion;
danielk19779da9d472006-06-14 06:58:15 +00006096 int (*xCreate)(sqlite3*, void *pAux,
drhe4102962006-09-11 00:34:22 +00006097 int argc, const char *const*argv,
drh4ca8aac2006-09-10 17:31:58 +00006098 sqlite3_vtab **ppVTab, char**);
danielk19779da9d472006-06-14 06:58:15 +00006099 int (*xConnect)(sqlite3*, void *pAux,
drhe4102962006-09-11 00:34:22 +00006100 int argc, const char *const*argv,
drh4ca8aac2006-09-10 17:31:58 +00006101 sqlite3_vtab **ppVTab, char**);
drhe09daa92006-06-10 13:29:31 +00006102 int (*xBestIndex)(sqlite3_vtab *pVTab, sqlite3_index_info*);
6103 int (*xDisconnect)(sqlite3_vtab *pVTab);
6104 int (*xDestroy)(sqlite3_vtab *pVTab);
6105 int (*xOpen)(sqlite3_vtab *pVTab, sqlite3_vtab_cursor **ppCursor);
6106 int (*xClose)(sqlite3_vtab_cursor*);
drh4be8b512006-06-13 23:51:34 +00006107 int (*xFilter)(sqlite3_vtab_cursor*, int idxNum, const char *idxStr,
drhe09daa92006-06-10 13:29:31 +00006108 int argc, sqlite3_value **argv);
6109 int (*xNext)(sqlite3_vtab_cursor*);
danielk1977a298e902006-06-22 09:53:48 +00006110 int (*xEof)(sqlite3_vtab_cursor*);
drhe09daa92006-06-10 13:29:31 +00006111 int (*xColumn)(sqlite3_vtab_cursor*, sqlite3_context*, int);
drh6d2069d2007-08-14 01:58:53 +00006112 int (*xRowid)(sqlite3_vtab_cursor*, sqlite3_int64 *pRowid);
6113 int (*xUpdate)(sqlite3_vtab *, int, sqlite3_value **, sqlite3_int64 *);
drhe09daa92006-06-10 13:29:31 +00006114 int (*xBegin)(sqlite3_vtab *pVTab);
6115 int (*xSync)(sqlite3_vtab *pVTab);
6116 int (*xCommit)(sqlite3_vtab *pVTab);
6117 int (*xRollback)(sqlite3_vtab *pVTab);
drhb7f6f682006-07-08 17:06:43 +00006118 int (*xFindFunction)(sqlite3_vtab *pVtab, int nArg, const char *zName,
drhe94b0c32006-07-08 18:09:15 +00006119 void (**pxFunc)(sqlite3_context*,int,sqlite3_value**),
6120 void **ppArg);
danielk1977182c4ba2007-06-27 15:53:34 +00006121 int (*xRename)(sqlite3_vtab *pVtab, const char *zNew);
drhe578b592011-05-06 00:19:57 +00006122 /* The methods above are in version 1 of the sqlite_module object. Those
6123 ** below are for version 2 and greater. */
dana311b802011-04-26 19:21:34 +00006124 int (*xSavepoint)(sqlite3_vtab *pVTab, int);
6125 int (*xRelease)(sqlite3_vtab *pVTab, int);
6126 int (*xRollbackTo)(sqlite3_vtab *pVTab, int);
drhe09daa92006-06-10 13:29:31 +00006127};
drh9eff6162006-06-12 21:59:13 +00006128
6129/*
drhd68eee02009-12-11 03:44:18 +00006130** CAPI3REF: Virtual Table Indexing Information
drhb4d58ae2008-02-21 20:17:06 +00006131** KEYWORDS: sqlite3_index_info
6132**
drh6ba8e962010-07-22 11:40:34 +00006133** The sqlite3_index_info structure and its substructures is used as part
6134** of the [virtual table] interface to
drh9cff9dc2009-04-13 14:43:40 +00006135** pass information into and receive the reply from the [xBestIndex]
6136** method of a [virtual table module]. The fields under **Inputs** are the
drh9eff6162006-06-12 21:59:13 +00006137** inputs to xBestIndex and are read-only. xBestIndex inserts its
6138** results into the **Outputs** fields.
6139**
drhd68eee02009-12-11 03:44:18 +00006140** ^(The aConstraint[] array records WHERE clause constraints of the form:
drh9eff6162006-06-12 21:59:13 +00006141**
drh6ba8e962010-07-22 11:40:34 +00006142** <blockquote>column OP expr</blockquote>
drh9eff6162006-06-12 21:59:13 +00006143**
drhdf6473a2009-12-13 22:20:08 +00006144** where OP is =, &lt;, &lt;=, &gt;, or &gt;=.)^ ^(The particular operator is
drh6ba8e962010-07-22 11:40:34 +00006145** stored in aConstraint[].op using one of the
6146** [SQLITE_INDEX_CONSTRAINT_EQ | SQLITE_INDEX_CONSTRAINT_ values].)^
6147** ^(The index of the column is stored in
drh7a98b852009-12-13 23:03:01 +00006148** aConstraint[].iColumn.)^ ^(aConstraint[].usable is TRUE if the
drh9eff6162006-06-12 21:59:13 +00006149** expr on the right-hand side can be evaluated (and thus the constraint
drhd68eee02009-12-11 03:44:18 +00006150** is usable) and false if it cannot.)^
drh9eff6162006-06-12 21:59:13 +00006151**
drhd68eee02009-12-11 03:44:18 +00006152** ^The optimizer automatically inverts terms of the form "expr OP column"
drh98c94802007-10-01 13:50:31 +00006153** and makes other simplifications to the WHERE clause in an attempt to
drh9eff6162006-06-12 21:59:13 +00006154** get as many WHERE clause terms into the form shown above as possible.
drhdf6473a2009-12-13 22:20:08 +00006155** ^The aConstraint[] array only reports WHERE clause terms that are
6156** relevant to the particular virtual table being queried.
drh9eff6162006-06-12 21:59:13 +00006157**
drhd68eee02009-12-11 03:44:18 +00006158** ^Information about the ORDER BY clause is stored in aOrderBy[].
6159** ^Each term of aOrderBy records a column of the ORDER BY clause.
drh9eff6162006-06-12 21:59:13 +00006160**
dan1acb5392015-11-26 19:33:41 +00006161** The colUsed field indicates which columns of the virtual table may be
6162** required by the current scan. Virtual table columns are numbered from
6163** zero in the order in which they appear within the CREATE TABLE statement
6164** passed to sqlite3_declare_vtab(). For the first 63 columns (columns 0-62),
6165** the corresponding bit is set within the colUsed mask if the column may be
6166** required by SQLite. If the table has at least 64 columns and any column
6167** to the right of the first 63 is required, then bit 63 of colUsed is also
6168** set. In other words, column iCol may be required if the expression
6169** (colUsed & ((sqlite3_uint64)1 << (iCol>=63 ? 63 : iCol))) evaluates to
6170** non-zero.
6171**
drh9cff9dc2009-04-13 14:43:40 +00006172** The [xBestIndex] method must fill aConstraintUsage[] with information
drhd68eee02009-12-11 03:44:18 +00006173** about what parameters to pass to xFilter. ^If argvIndex>0 then
drh9eff6162006-06-12 21:59:13 +00006174** the right-hand side of the corresponding aConstraint[] is evaluated
drhd68eee02009-12-11 03:44:18 +00006175** and becomes the argvIndex-th entry in argv. ^(If aConstraintUsage[].omit
drh9eff6162006-06-12 21:59:13 +00006176** is true, then the constraint is assumed to be fully handled by the
drhd68eee02009-12-11 03:44:18 +00006177** virtual table and is not checked again by SQLite.)^
drh9eff6162006-06-12 21:59:13 +00006178**
drhd68eee02009-12-11 03:44:18 +00006179** ^The idxNum and idxPtr values are recorded and passed into the
drh9cff9dc2009-04-13 14:43:40 +00006180** [xFilter] method.
drh7a98b852009-12-13 23:03:01 +00006181** ^[sqlite3_free()] is used to free idxPtr if and only if
drh9cff9dc2009-04-13 14:43:40 +00006182** needToFreeIdxPtr is true.
drh9eff6162006-06-12 21:59:13 +00006183**
drhd68eee02009-12-11 03:44:18 +00006184** ^The orderByConsumed means that output from [xFilter]/[xNext] will occur in
drh9eff6162006-06-12 21:59:13 +00006185** the correct order to satisfy the ORDER BY clause so that no separate
6186** sorting step is required.
6187**
dana9f58152013-11-11 19:01:33 +00006188** ^The estimatedCost value is an estimate of the cost of a particular
6189** strategy. A cost of N indicates that the cost of the strategy is similar
6190** to a linear scan of an SQLite table with N rows. A cost of log(N)
6191** indicates that the expense of the operation is similar to that of a
6192** binary search on a unique indexed field of an SQLite table with N rows.
6193**
6194** ^The estimatedRows value is an estimate of the number of rows that
6195** will be returned by the strategy.
6196**
danb3deb4e2015-09-29 11:57:20 +00006197** The xBestIndex method may optionally populate the idxFlags field with a
6198** mask of SQLITE_INDEX_SCAN_* flags. Currently there is only one such flag -
6199** SQLITE_INDEX_SCAN_UNIQUE. If the xBestIndex method sets this flag, SQLite
6200** assumes that the strategy may visit at most one row.
6201**
6202** Additionally, if xBestIndex sets the SQLITE_INDEX_SCAN_UNIQUE flag, then
6203** SQLite also assumes that if a call to the xUpdate() method is made as
6204** part of the same statement to delete or update a virtual table row and the
6205** implementation returns SQLITE_CONSTRAINT, then there is no need to rollback
6206** any database changes. In other words, if the xUpdate() returns
6207** SQLITE_CONSTRAINT, the database contents must be exactly as they were
6208** before xUpdate was called. By contrast, if SQLITE_INDEX_SCAN_UNIQUE is not
6209** set and xUpdate returns SQLITE_CONSTRAINT, any database changes made by
6210** the xUpdate method are automatically rolled back by SQLite.
6211**
dana9f58152013-11-11 19:01:33 +00006212** IMPORTANT: The estimatedRows field was added to the sqlite3_index_info
drh481fd502016-09-14 18:56:20 +00006213** structure for SQLite [version 3.8.2] ([dateof:3.8.2]).
6214** If a virtual table extension is
dana9f58152013-11-11 19:01:33 +00006215** used with an SQLite version earlier than 3.8.2, the results of attempting
6216** to read or write the estimatedRows field are undefined (but are likely
6217** to included crashing the application). The estimatedRows field should
6218** therefore only be used if [sqlite3_libversion_number()] returns a
danb3deb4e2015-09-29 11:57:20 +00006219** value greater than or equal to 3008002. Similarly, the idxFlags field
drh481fd502016-09-14 18:56:20 +00006220** was added for [version 3.9.0] ([dateof:3.9.0]).
6221** It may therefore only be used if
danb3deb4e2015-09-29 11:57:20 +00006222** sqlite3_libversion_number() returns a value greater than or equal to
drh58a8a922015-10-12 04:56:12 +00006223** 3009000.
drh9eff6162006-06-12 21:59:13 +00006224*/
drhe09daa92006-06-10 13:29:31 +00006225struct sqlite3_index_info {
6226 /* Inputs */
drh6cca08c2007-09-21 12:43:16 +00006227 int nConstraint; /* Number of entries in aConstraint */
6228 struct sqlite3_index_constraint {
drhb8db5492016-02-02 02:04:21 +00006229 int iColumn; /* Column constrained. -1 for ROWID */
drh9eff6162006-06-12 21:59:13 +00006230 unsigned char op; /* Constraint operator */
6231 unsigned char usable; /* True if this constraint is usable */
6232 int iTermOffset; /* Used internally - xBestIndex should ignore */
drh6cca08c2007-09-21 12:43:16 +00006233 } *aConstraint; /* Table of WHERE clause constraints */
6234 int nOrderBy; /* Number of terms in the ORDER BY clause */
6235 struct sqlite3_index_orderby {
drh9eff6162006-06-12 21:59:13 +00006236 int iColumn; /* Column number */
6237 unsigned char desc; /* True for DESC. False for ASC. */
drh6cca08c2007-09-21 12:43:16 +00006238 } *aOrderBy; /* The ORDER BY clause */
drhe09daa92006-06-10 13:29:31 +00006239 /* Outputs */
drh9eff6162006-06-12 21:59:13 +00006240 struct sqlite3_index_constraint_usage {
6241 int argvIndex; /* if >0, constraint is part of argv to xFilter */
6242 unsigned char omit; /* Do not code a test for this constraint */
drh6cca08c2007-09-21 12:43:16 +00006243 } *aConstraintUsage;
drh4be8b512006-06-13 23:51:34 +00006244 int idxNum; /* Number used to identify the index */
6245 char *idxStr; /* String, possibly obtained from sqlite3_malloc */
6246 int needToFreeIdxStr; /* Free idxStr using sqlite3_free() if true */
drh9eff6162006-06-12 21:59:13 +00006247 int orderByConsumed; /* True if output is already ordered */
dana9f58152013-11-11 19:01:33 +00006248 double estimatedCost; /* Estimated cost of using this index */
drh5d2f6c22013-11-11 23:26:34 +00006249 /* Fields below are only available in SQLite 3.8.2 and later */
dana9f58152013-11-11 19:01:33 +00006250 sqlite3_int64 estimatedRows; /* Estimated number of rows returned */
drh58a8a922015-10-12 04:56:12 +00006251 /* Fields below are only available in SQLite 3.9.0 and later */
danb3deb4e2015-09-29 11:57:20 +00006252 int idxFlags; /* Mask of SQLITE_INDEX_SCAN_* flags */
dan1acb5392015-11-26 19:33:41 +00006253 /* Fields below are only available in SQLite 3.10.0 and later */
6254 sqlite3_uint64 colUsed; /* Input: Mask of columns used by statement */
drhe09daa92006-06-10 13:29:31 +00006255};
drh6ba8e962010-07-22 11:40:34 +00006256
6257/*
dan076e0f92015-09-28 15:20:58 +00006258** CAPI3REF: Virtual Table Scan Flags
6259*/
6260#define SQLITE_INDEX_SCAN_UNIQUE 1 /* Scan visits at most 1 row */
6261
6262/*
drh6ba8e962010-07-22 11:40:34 +00006263** CAPI3REF: Virtual Table Constraint Operator Codes
6264**
6265** These macros defined the allowed values for the
6266** [sqlite3_index_info].aConstraint[].op field. Each value represents
6267** an operator that is part of a constraint term in the wHERE clause of
6268** a query that uses a [virtual table].
6269*/
drh33892c12017-09-11 18:37:44 +00006270#define SQLITE_INDEX_CONSTRAINT_EQ 2
6271#define SQLITE_INDEX_CONSTRAINT_GT 4
6272#define SQLITE_INDEX_CONSTRAINT_LE 8
6273#define SQLITE_INDEX_CONSTRAINT_LT 16
6274#define SQLITE_INDEX_CONSTRAINT_GE 32
6275#define SQLITE_INDEX_CONSTRAINT_MATCH 64
6276#define SQLITE_INDEX_CONSTRAINT_LIKE 65
6277#define SQLITE_INDEX_CONSTRAINT_GLOB 66
6278#define SQLITE_INDEX_CONSTRAINT_REGEXP 67
dand03024d2017-09-09 19:41:12 +00006279#define SQLITE_INDEX_CONSTRAINT_NE 68
6280#define SQLITE_INDEX_CONSTRAINT_ISNOT 69
6281#define SQLITE_INDEX_CONSTRAINT_ISNOTNULL 70
6282#define SQLITE_INDEX_CONSTRAINT_ISNULL 71
6283#define SQLITE_INDEX_CONSTRAINT_IS 72
drh9eff6162006-06-12 21:59:13 +00006284
6285/*
drhd68eee02009-12-11 03:44:18 +00006286** CAPI3REF: Register A Virtual Table Implementation
drhd9a0a9a2015-04-14 15:14:06 +00006287** METHOD: sqlite3
drhb4d58ae2008-02-21 20:17:06 +00006288**
drhfb434032009-12-11 23:11:26 +00006289** ^These routines are used to register a new [virtual table module] name.
drhd68eee02009-12-11 03:44:18 +00006290** ^Module names must be registered before
drhdf6473a2009-12-13 22:20:08 +00006291** creating a new [virtual table] using the module and before using a
drh9cff9dc2009-04-13 14:43:40 +00006292** preexisting [virtual table] for the module.
mihailim15194222008-06-22 09:55:14 +00006293**
drhd68eee02009-12-11 03:44:18 +00006294** ^The module name is registered on the [database connection] specified
6295** by the first parameter. ^The name of the module is given by the
6296** second parameter. ^The third parameter is a pointer to
6297** the implementation of the [virtual table module]. ^The fourth
drh9cff9dc2009-04-13 14:43:40 +00006298** parameter is an arbitrary client data pointer that is passed through
6299** into the [xCreate] and [xConnect] methods of the virtual table module
6300** when a new virtual table is be being created or reinitialized.
6301**
drhfb434032009-12-11 23:11:26 +00006302** ^The sqlite3_create_module_v2() interface has a fifth parameter which
6303** is a pointer to a destructor for the pClientData. ^SQLite will
6304** invoke the destructor function (if it is not NULL) when SQLite
drh6fec9ee2010-10-12 02:13:32 +00006305** no longer needs the pClientData pointer. ^The destructor will also
6306** be invoked if the call to sqlite3_create_module_v2() fails.
6307** ^The sqlite3_create_module()
drhfb434032009-12-11 23:11:26 +00006308** interface is equivalent to sqlite3_create_module_v2() with a NULL
6309** destructor.
drh9eff6162006-06-12 21:59:13 +00006310*/
drh9f8da322010-03-10 20:06:37 +00006311int sqlite3_create_module(
drh9eff6162006-06-12 21:59:13 +00006312 sqlite3 *db, /* SQLite connection to register module with */
6313 const char *zName, /* Name of the module */
drh9cff9dc2009-04-13 14:43:40 +00006314 const sqlite3_module *p, /* Methods for the module */
6315 void *pClientData /* Client data for xCreate/xConnect */
drhb9bb7c12006-06-11 23:41:55 +00006316);
drh9f8da322010-03-10 20:06:37 +00006317int sqlite3_create_module_v2(
danielk1977832a58a2007-06-22 15:21:15 +00006318 sqlite3 *db, /* SQLite connection to register module with */
6319 const char *zName, /* Name of the module */
drh9cff9dc2009-04-13 14:43:40 +00006320 const sqlite3_module *p, /* Methods for the module */
6321 void *pClientData, /* Client data for xCreate/xConnect */
danielk1977832a58a2007-06-22 15:21:15 +00006322 void(*xDestroy)(void*) /* Module destructor function */
6323);
6324
6325/*
drhd68eee02009-12-11 03:44:18 +00006326** CAPI3REF: Virtual Table Instance Object
drhb4d58ae2008-02-21 20:17:06 +00006327** KEYWORDS: sqlite3_vtab
6328**
drh9cff9dc2009-04-13 14:43:40 +00006329** Every [virtual table module] implementation uses a subclass
drhd68eee02009-12-11 03:44:18 +00006330** of this object to describe a particular instance
drh9cff9dc2009-04-13 14:43:40 +00006331** of the [virtual table]. Each subclass will
mihailim15194222008-06-22 09:55:14 +00006332** be tailored to the specific needs of the module implementation.
6333** The purpose of this superclass is to define certain fields that are
6334** common to all module implementations.
drhfe1368e2006-09-10 17:08:29 +00006335**
drhd68eee02009-12-11 03:44:18 +00006336** ^Virtual tables methods can set an error message by assigning a
mihailim15194222008-06-22 09:55:14 +00006337** string obtained from [sqlite3_mprintf()] to zErrMsg. The method should
6338** take care that any prior string is freed by a call to [sqlite3_free()]
drhd68eee02009-12-11 03:44:18 +00006339** prior to assigning a new string to zErrMsg. ^After the error message
drhfe1368e2006-09-10 17:08:29 +00006340** is delivered up to the client application, the string will be automatically
drh9cff9dc2009-04-13 14:43:40 +00006341** freed by sqlite3_free() and the zErrMsg field will be zeroed.
drh9eff6162006-06-12 21:59:13 +00006342*/
6343struct sqlite3_vtab {
drha967e882006-06-13 01:04:52 +00006344 const sqlite3_module *pModule; /* The module for this virtual table */
drha68d6282015-03-24 13:32:53 +00006345 int nRef; /* Number of open cursors */
drh4ca8aac2006-09-10 17:31:58 +00006346 char *zErrMsg; /* Error message from sqlite3_mprintf() */
drh9eff6162006-06-12 21:59:13 +00006347 /* Virtual table implementations will typically add additional fields */
6348};
6349
drhb4d58ae2008-02-21 20:17:06 +00006350/*
drhd68eee02009-12-11 03:44:18 +00006351** CAPI3REF: Virtual Table Cursor Object
drh9cff9dc2009-04-13 14:43:40 +00006352** KEYWORDS: sqlite3_vtab_cursor {virtual table cursor}
drhb4d58ae2008-02-21 20:17:06 +00006353**
drh9cff9dc2009-04-13 14:43:40 +00006354** Every [virtual table module] implementation uses a subclass of the
6355** following structure to describe cursors that point into the
6356** [virtual table] and are used
drh9eff6162006-06-12 21:59:13 +00006357** to loop through the virtual table. Cursors are created using the
drh9cff9dc2009-04-13 14:43:40 +00006358** [sqlite3_module.xOpen | xOpen] method of the module and are destroyed
drhd68eee02009-12-11 03:44:18 +00006359** by the [sqlite3_module.xClose | xClose] method. Cursors are used
drh9cff9dc2009-04-13 14:43:40 +00006360** by the [xFilter], [xNext], [xEof], [xColumn], and [xRowid] methods
6361** of the module. Each module implementation will define
drh9eff6162006-06-12 21:59:13 +00006362** the content of a cursor structure to suit its own needs.
6363**
6364** This superclass exists in order to define fields of the cursor that
6365** are common to all implementations.
6366*/
6367struct sqlite3_vtab_cursor {
6368 sqlite3_vtab *pVtab; /* Virtual table of this cursor */
6369 /* Virtual table implementations will typically add additional fields */
6370};
6371
6372/*
drhd68eee02009-12-11 03:44:18 +00006373** CAPI3REF: Declare The Schema Of A Virtual Table
drhb4d58ae2008-02-21 20:17:06 +00006374**
drhd68eee02009-12-11 03:44:18 +00006375** ^The [xCreate] and [xConnect] methods of a
drh9cff9dc2009-04-13 14:43:40 +00006376** [virtual table module] call this interface
drh9eff6162006-06-12 21:59:13 +00006377** to declare the format (the names and datatypes of the columns) of
6378** the virtual tables they implement.
6379*/
drh9f8da322010-03-10 20:06:37 +00006380int sqlite3_declare_vtab(sqlite3*, const char *zSQL);
drhe09daa92006-06-10 13:29:31 +00006381
6382/*
drhd68eee02009-12-11 03:44:18 +00006383** CAPI3REF: Overload A Function For A Virtual Table
drhd9a0a9a2015-04-14 15:14:06 +00006384** METHOD: sqlite3
drhb4d58ae2008-02-21 20:17:06 +00006385**
drhd68eee02009-12-11 03:44:18 +00006386** ^(Virtual tables can provide alternative implementations of functions
drh9cff9dc2009-04-13 14:43:40 +00006387** using the [xFindFunction] method of the [virtual table module].
6388** But global versions of those functions
drh7a98b852009-12-13 23:03:01 +00006389** must exist in order to be overloaded.)^
drhb7481e72006-09-16 21:45:14 +00006390**
drhd68eee02009-12-11 03:44:18 +00006391** ^(This API makes sure a global version of a function with a particular
drhb7481e72006-09-16 21:45:14 +00006392** name and number of parameters exists. If no such function exists
drhd68eee02009-12-11 03:44:18 +00006393** before this API is called, a new function is created.)^ ^The implementation
drhb7481e72006-09-16 21:45:14 +00006394** of the new function always causes an exception to be thrown. So
6395** the new function is not good for anything by itself. Its only
shane26b34032008-05-23 17:21:09 +00006396** purpose is to be a placeholder function that can be overloaded
drh9cff9dc2009-04-13 14:43:40 +00006397** by a [virtual table].
drhb7481e72006-09-16 21:45:14 +00006398*/
drh9f8da322010-03-10 20:06:37 +00006399int sqlite3_overload_function(sqlite3*, const char *zFuncName, int nArg);
drhb7481e72006-09-16 21:45:14 +00006400
6401/*
drh9eff6162006-06-12 21:59:13 +00006402** The interface to the virtual-table mechanism defined above (back up
6403** to a comment remarkably similar to this one) is currently considered
6404** to be experimental. The interface might change in incompatible ways.
6405** If this is a problem for you, do not use the interface at this time.
6406**
drh98c94802007-10-01 13:50:31 +00006407** When the virtual-table mechanism stabilizes, we will declare the
drh9eff6162006-06-12 21:59:13 +00006408** interface fixed, support it indefinitely, and remove this comment.
drh9eff6162006-06-12 21:59:13 +00006409*/
6410
danielk19778cbadb02007-05-03 16:31:26 +00006411/*
drhd68eee02009-12-11 03:44:18 +00006412** CAPI3REF: A Handle To An Open BLOB
mihailim15194222008-06-22 09:55:14 +00006413** KEYWORDS: {BLOB handle} {BLOB handles}
drh6ed48bf2007-06-14 20:57:18 +00006414**
drhb4d58ae2008-02-21 20:17:06 +00006415** An instance of this object represents an open BLOB on which
mihailim1c492652008-06-21 18:02:16 +00006416** [sqlite3_blob_open | incremental BLOB I/O] can be performed.
drhd68eee02009-12-11 03:44:18 +00006417** ^Objects of this type are created by [sqlite3_blob_open()]
mihailim15194222008-06-22 09:55:14 +00006418** and destroyed by [sqlite3_blob_close()].
drhd68eee02009-12-11 03:44:18 +00006419** ^The [sqlite3_blob_read()] and [sqlite3_blob_write()] interfaces
mihailim15194222008-06-22 09:55:14 +00006420** can be used to read or write small subsections of the BLOB.
drhd68eee02009-12-11 03:44:18 +00006421** ^The [sqlite3_blob_bytes()] interface returns the size of the BLOB in bytes.
danielk19778cbadb02007-05-03 16:31:26 +00006422*/
danielk1977b4e9af92007-05-01 17:49:49 +00006423typedef struct sqlite3_blob sqlite3_blob;
6424
danielk19778cbadb02007-05-03 16:31:26 +00006425/*
drhfb434032009-12-11 23:11:26 +00006426** CAPI3REF: Open A BLOB For Incremental I/O
drhd9a0a9a2015-04-14 15:14:06 +00006427** METHOD: sqlite3
6428** CONSTRUCTOR: sqlite3_blob
drh6ed48bf2007-06-14 20:57:18 +00006429**
drhd68eee02009-12-11 03:44:18 +00006430** ^(This interfaces opens a [BLOB handle | handle] to the BLOB located
drhf84ddc12008-03-24 12:51:46 +00006431** in row iRow, column zColumn, table zTable in database zDb;
mihailim15194222008-06-22 09:55:14 +00006432** in other words, the same BLOB that would be selected by:
danielk19778cbadb02007-05-03 16:31:26 +00006433**
drh6ed48bf2007-06-14 20:57:18 +00006434** <pre>
drh49c3d572008-12-15 22:51:38 +00006435** SELECT zColumn FROM zDb.zTable WHERE [rowid] = iRow;
drhd68eee02009-12-11 03:44:18 +00006436** </pre>)^
danielk19778cbadb02007-05-03 16:31:26 +00006437**
danb391b942014-11-07 14:41:11 +00006438** ^(Parameter zDb is not the filename that contains the database, but
6439** rather the symbolic name of the database. For attached databases, this is
6440** the name that appears after the AS keyword in the [ATTACH] statement.
6441** For the main database file, the database name is "main". For TEMP
6442** tables, the database name is "temp".)^
6443**
drhd68eee02009-12-11 03:44:18 +00006444** ^If the flags parameter is non-zero, then the BLOB is opened for read
danb391b942014-11-07 14:41:11 +00006445** and write access. ^If the flags parameter is zero, the BLOB is opened for
6446** read-only access.
danielk19778cbadb02007-05-03 16:31:26 +00006447**
danb391b942014-11-07 14:41:11 +00006448** ^(On success, [SQLITE_OK] is returned and the new [BLOB handle] is stored
6449** in *ppBlob. Otherwise an [error code] is returned and, unless the error
6450** code is SQLITE_MISUSE, *ppBlob is set to NULL.)^ ^This means that, provided
6451** the API is not misused, it is always safe to call [sqlite3_blob_close()]
6452** on *ppBlob after this function it returns.
drhf84ddc12008-03-24 12:51:46 +00006453**
danb391b942014-11-07 14:41:11 +00006454** This function fails with SQLITE_ERROR if any of the following are true:
6455** <ul>
6456** <li> ^(Database zDb does not exist)^,
6457** <li> ^(Table zTable does not exist within database zDb)^,
6458** <li> ^(Table zTable is a WITHOUT ROWID table)^,
6459** <li> ^(Column zColumn does not exist)^,
6460** <li> ^(Row iRow is not present in the table)^,
6461** <li> ^(The specified column of row iRow contains a value that is not
6462** a TEXT or BLOB value)^,
6463** <li> ^(Column zColumn is part of an index, PRIMARY KEY or UNIQUE
6464** constraint and the blob is being opened for read/write access)^,
6465** <li> ^([foreign key constraints | Foreign key constraints] are enabled,
6466** column zColumn is part of a [child key] definition and the blob is
6467** being opened for read/write access)^.
6468** </ul>
6469**
6470** ^Unless it returns SQLITE_MISUSE, this function sets the
6471** [database connection] error code and message accessible via
6472** [sqlite3_errcode()] and [sqlite3_errmsg()] and related functions.
6473**
mistachkin51b15c32017-01-28 19:53:51 +00006474** A BLOB referenced by sqlite3_blob_open() may be read using the
drh6034d472017-01-28 15:26:14 +00006475** [sqlite3_blob_read()] interface and modified by using
6476** [sqlite3_blob_write()]. The [BLOB handle] can be moved to a
6477** different row of the same table using the [sqlite3_blob_reopen()]
6478** interface. However, the column, table, or database of a [BLOB handle]
mistachkin51b15c32017-01-28 19:53:51 +00006479** cannot be changed after the [BLOB handle] is opened.
mihailim15194222008-06-22 09:55:14 +00006480**
drhd68eee02009-12-11 03:44:18 +00006481** ^(If the row that a BLOB handle points to is modified by an
drh9de1b352008-06-26 15:04:57 +00006482** [UPDATE], [DELETE], or by [ON CONFLICT] side-effects
6483** then the BLOB handle is marked as "expired".
6484** This is true if any column of the row is changed, even a column
drhd68eee02009-12-11 03:44:18 +00006485** other than the one the BLOB handle is open on.)^
6486** ^Calls to [sqlite3_blob_read()] and [sqlite3_blob_write()] for
drh8b2b2e62011-04-07 01:14:12 +00006487** an expired BLOB handle fail with a return code of [SQLITE_ABORT].
drhd68eee02009-12-11 03:44:18 +00006488** ^(Changes written into a BLOB prior to the BLOB expiring are not
drhdf6473a2009-12-13 22:20:08 +00006489** rolled back by the expiration of the BLOB. Such changes will eventually
drhd68eee02009-12-11 03:44:18 +00006490** commit if the transaction continues to completion.)^
drh9de1b352008-06-26 15:04:57 +00006491**
drhd68eee02009-12-11 03:44:18 +00006492** ^Use the [sqlite3_blob_bytes()] interface to determine the size of
6493** the opened blob. ^The size of a blob may not be changed by this
drh9e42f8a2009-08-13 20:15:29 +00006494** interface. Use the [UPDATE] SQL command to change the size of a
drhabda6112009-05-14 22:37:47 +00006495** blob.
6496**
drhd68eee02009-12-11 03:44:18 +00006497** ^The [sqlite3_bind_zeroblob()] and [sqlite3_result_zeroblob()] interfaces
danb391b942014-11-07 14:41:11 +00006498** and the built-in [zeroblob] SQL function may be used to create a
6499** zero-filled blob to read or write using the incremental-blob interface.
drhabda6112009-05-14 22:37:47 +00006500**
6501** To avoid a resource leak, every open [BLOB handle] should eventually
6502** be released by a call to [sqlite3_blob_close()].
drh6034d472017-01-28 15:26:14 +00006503**
6504** See also: [sqlite3_blob_close()],
6505** [sqlite3_blob_reopen()], [sqlite3_blob_read()],
6506** [sqlite3_blob_bytes()], [sqlite3_blob_write()].
danielk19778cbadb02007-05-03 16:31:26 +00006507*/
danielk1977b4e9af92007-05-01 17:49:49 +00006508int sqlite3_blob_open(
6509 sqlite3*,
6510 const char *zDb,
6511 const char *zTable,
6512 const char *zColumn,
drh6d2069d2007-08-14 01:58:53 +00006513 sqlite3_int64 iRow,
danielk1977b4e9af92007-05-01 17:49:49 +00006514 int flags,
6515 sqlite3_blob **ppBlob
6516);
6517
danielk19778cbadb02007-05-03 16:31:26 +00006518/*
dane3d82a82010-10-26 11:56:57 +00006519** CAPI3REF: Move a BLOB Handle to a New Row
drhd9a0a9a2015-04-14 15:14:06 +00006520** METHOD: sqlite3_blob
dane3d82a82010-10-26 11:56:57 +00006521**
drh6034d472017-01-28 15:26:14 +00006522** ^This function is used to move an existing [BLOB handle] so that it points
drh07bf3912010-11-02 15:26:24 +00006523** to a different row of the same database table. ^The new row is identified
dane3d82a82010-10-26 11:56:57 +00006524** by the rowid value passed as the second argument. Only the row can be
drh07bf3912010-11-02 15:26:24 +00006525** changed. ^The database, table and column on which the blob handle is open
drh6034d472017-01-28 15:26:14 +00006526** remain the same. Moving an existing [BLOB handle] to a new row is
dane3d82a82010-10-26 11:56:57 +00006527** faster than closing the existing handle and opening a new one.
6528**
drh07bf3912010-11-02 15:26:24 +00006529** ^(The new row must meet the same criteria as for [sqlite3_blob_open()] -
dane3d82a82010-10-26 11:56:57 +00006530** it must exist and there must be either a blob or text value stored in
drh07bf3912010-11-02 15:26:24 +00006531** the nominated column.)^ ^If the new row is not present in the table, or if
dane3d82a82010-10-26 11:56:57 +00006532** it does not contain a blob or text value, or if another error occurs, an
6533** SQLite error code is returned and the blob handle is considered aborted.
drh07bf3912010-11-02 15:26:24 +00006534** ^All subsequent calls to [sqlite3_blob_read()], [sqlite3_blob_write()] or
dane3d82a82010-10-26 11:56:57 +00006535** [sqlite3_blob_reopen()] on an aborted blob handle immediately return
daneefab752010-12-06 17:11:05 +00006536** SQLITE_ABORT. ^Calling [sqlite3_blob_bytes()] on an aborted blob handle
6537** always returns zero.
dane3d82a82010-10-26 11:56:57 +00006538**
drh07bf3912010-11-02 15:26:24 +00006539** ^This function sets the database handle error code and message.
dan4e76cc32010-10-20 18:56:04 +00006540*/
drh4f03f412015-05-20 21:28:32 +00006541int sqlite3_blob_reopen(sqlite3_blob *, sqlite3_int64);
dan4e76cc32010-10-20 18:56:04 +00006542
6543/*
drhd68eee02009-12-11 03:44:18 +00006544** CAPI3REF: Close A BLOB Handle
drhd9a0a9a2015-04-14 15:14:06 +00006545** DESTRUCTOR: sqlite3_blob
drh6ed48bf2007-06-14 20:57:18 +00006546**
dan43f40662014-11-11 12:20:35 +00006547** ^This function closes an open [BLOB handle]. ^(The BLOB handle is closed
6548** unconditionally. Even if this routine returns an error code, the
6549** handle is still closed.)^
drh2dd62be2007-12-04 13:22:43 +00006550**
dan43f40662014-11-11 12:20:35 +00006551** ^If the blob handle being closed was opened for read-write access, and if
6552** the database is in auto-commit mode and there are no other open read-write
6553** blob handles or active write statements, the current transaction is
6554** committed. ^If an error occurs while committing the transaction, an error
6555** code is returned and the transaction rolled back.
mihailim15194222008-06-22 09:55:14 +00006556**
dan43f40662014-11-11 12:20:35 +00006557** Calling this function with an argument that is not a NULL pointer or an
6558** open blob handle results in undefined behaviour. ^Calling this routine
6559** with a null pointer (such as would be returned by a failed call to
6560** [sqlite3_blob_open()]) is a harmless no-op. ^Otherwise, if this function
6561** is passed a valid open blob handle, the values returned by the
6562** sqlite3_errcode() and sqlite3_errmsg() functions are set before returning.
danielk19778cbadb02007-05-03 16:31:26 +00006563*/
danielk1977b4e9af92007-05-01 17:49:49 +00006564int sqlite3_blob_close(sqlite3_blob *);
6565
danielk19778cbadb02007-05-03 16:31:26 +00006566/*
drhd68eee02009-12-11 03:44:18 +00006567** CAPI3REF: Return The Size Of An Open BLOB
drhd9a0a9a2015-04-14 15:14:06 +00006568** METHOD: sqlite3_blob
drh6ed48bf2007-06-14 20:57:18 +00006569**
drhd68eee02009-12-11 03:44:18 +00006570** ^Returns the size in bytes of the BLOB accessible via the
6571** successfully opened [BLOB handle] in its only argument. ^The
drhabda6112009-05-14 22:37:47 +00006572** incremental blob I/O routines can only read or overwriting existing
6573** blob content; they cannot change the size of a blob.
6574**
6575** This routine only works on a [BLOB handle] which has been created
6576** by a prior successful call to [sqlite3_blob_open()] and which has not
6577** been closed by [sqlite3_blob_close()]. Passing any other pointer in
6578** to this routine results in undefined and probably undesirable behavior.
danielk19778cbadb02007-05-03 16:31:26 +00006579*/
danielk1977b4e9af92007-05-01 17:49:49 +00006580int sqlite3_blob_bytes(sqlite3_blob *);
6581
drh9eff6162006-06-12 21:59:13 +00006582/*
drhd68eee02009-12-11 03:44:18 +00006583** CAPI3REF: Read Data From A BLOB Incrementally
drhd9a0a9a2015-04-14 15:14:06 +00006584** METHOD: sqlite3_blob
drh6ed48bf2007-06-14 20:57:18 +00006585**
drhd68eee02009-12-11 03:44:18 +00006586** ^(This function is used to read data from an open [BLOB handle] into a
mihailim15194222008-06-22 09:55:14 +00006587** caller-supplied buffer. N bytes of data are copied into buffer Z
drhd68eee02009-12-11 03:44:18 +00006588** from the open BLOB, starting at offset iOffset.)^
danielk19778cbadb02007-05-03 16:31:26 +00006589**
drhd68eee02009-12-11 03:44:18 +00006590** ^If offset iOffset is less than N bytes from the end of the BLOB,
6591** [SQLITE_ERROR] is returned and no data is read. ^If N or iOffset is
mihailim15194222008-06-22 09:55:14 +00006592** less than zero, [SQLITE_ERROR] is returned and no data is read.
drhd68eee02009-12-11 03:44:18 +00006593** ^The size of the blob (and hence the maximum value of N+iOffset)
drhabda6112009-05-14 22:37:47 +00006594** can be determined using the [sqlite3_blob_bytes()] interface.
drhf5befa02007-12-06 02:42:07 +00006595**
drhd68eee02009-12-11 03:44:18 +00006596** ^An attempt to read from an expired [BLOB handle] fails with an
drh9de1b352008-06-26 15:04:57 +00006597** error code of [SQLITE_ABORT].
6598**
drhd68eee02009-12-11 03:44:18 +00006599** ^(On success, sqlite3_blob_read() returns SQLITE_OK.
6600** Otherwise, an [error code] or an [extended error code] is returned.)^
drhb4d58ae2008-02-21 20:17:06 +00006601**
drhabda6112009-05-14 22:37:47 +00006602** This routine only works on a [BLOB handle] which has been created
6603** by a prior successful call to [sqlite3_blob_open()] and which has not
6604** been closed by [sqlite3_blob_close()]. Passing any other pointer in
6605** to this routine results in undefined and probably undesirable behavior.
6606**
6607** See also: [sqlite3_blob_write()].
danielk19778cbadb02007-05-03 16:31:26 +00006608*/
drhb4d58ae2008-02-21 20:17:06 +00006609int sqlite3_blob_read(sqlite3_blob *, void *Z, int N, int iOffset);
danielk19778cbadb02007-05-03 16:31:26 +00006610
6611/*
drhd68eee02009-12-11 03:44:18 +00006612** CAPI3REF: Write Data Into A BLOB Incrementally
drhd9a0a9a2015-04-14 15:14:06 +00006613** METHOD: sqlite3_blob
drh6ed48bf2007-06-14 20:57:18 +00006614**
dan923c4b32014-11-10 17:53:03 +00006615** ^(This function is used to write data into an open [BLOB handle] from a
6616** caller-supplied buffer. N bytes of data are copied from the buffer Z
6617** into the open BLOB, starting at offset iOffset.)^
6618**
6619** ^(On success, sqlite3_blob_write() returns SQLITE_OK.
6620** Otherwise, an [error code] or an [extended error code] is returned.)^
6621** ^Unless SQLITE_MISUSE is returned, this function sets the
6622** [database connection] error code and message accessible via
6623** [sqlite3_errcode()] and [sqlite3_errmsg()] and related functions.
danielk19778cbadb02007-05-03 16:31:26 +00006624**
drhd68eee02009-12-11 03:44:18 +00006625** ^If the [BLOB handle] passed as the first argument was not opened for
mihailim15194222008-06-22 09:55:14 +00006626** writing (the flags parameter to [sqlite3_blob_open()] was zero),
6627** this function returns [SQLITE_READONLY].
danielk19778cbadb02007-05-03 16:31:26 +00006628**
dan923c4b32014-11-10 17:53:03 +00006629** This function may only modify the contents of the BLOB; it is
mihailim15194222008-06-22 09:55:14 +00006630** not possible to increase the size of a BLOB using this API.
drhd68eee02009-12-11 03:44:18 +00006631** ^If offset iOffset is less than N bytes from the end of the BLOB,
dan923c4b32014-11-10 17:53:03 +00006632** [SQLITE_ERROR] is returned and no data is written. The size of the
6633** BLOB (and hence the maximum value of N+iOffset) can be determined
6634** using the [sqlite3_blob_bytes()] interface. ^If N or iOffset are less
6635** than zero [SQLITE_ERROR] is returned and no data is written.
danielk19778cbadb02007-05-03 16:31:26 +00006636**
drhd68eee02009-12-11 03:44:18 +00006637** ^An attempt to write to an expired [BLOB handle] fails with an
6638** error code of [SQLITE_ABORT]. ^Writes to the BLOB that occurred
drh9de1b352008-06-26 15:04:57 +00006639** before the [BLOB handle] expired are not rolled back by the
6640** expiration of the handle, though of course those changes might
6641** have been overwritten by the statement that expired the BLOB handle
6642** or by other independent statements.
6643**
drhabda6112009-05-14 22:37:47 +00006644** This routine only works on a [BLOB handle] which has been created
6645** by a prior successful call to [sqlite3_blob_open()] and which has not
6646** been closed by [sqlite3_blob_close()]. Passing any other pointer in
6647** to this routine results in undefined and probably undesirable behavior.
6648**
6649** See also: [sqlite3_blob_read()].
danielk19778cbadb02007-05-03 16:31:26 +00006650*/
6651int sqlite3_blob_write(sqlite3_blob *, const void *z, int n, int iOffset);
6652
drhd84f9462007-08-15 11:28:56 +00006653/*
drhd68eee02009-12-11 03:44:18 +00006654** CAPI3REF: Virtual File System Objects
drhd84f9462007-08-15 11:28:56 +00006655**
6656** A virtual filesystem (VFS) is an [sqlite3_vfs] object
6657** that SQLite uses to interact
drhb4d58ae2008-02-21 20:17:06 +00006658** with the underlying operating system. Most SQLite builds come with a
drhd84f9462007-08-15 11:28:56 +00006659** single default VFS that is appropriate for the host computer.
6660** New VFSes can be registered and existing VFSes can be unregistered.
6661** The following interfaces are provided.
6662**
drhd68eee02009-12-11 03:44:18 +00006663** ^The sqlite3_vfs_find() interface returns a pointer to a VFS given its name.
6664** ^Names are case sensitive.
6665** ^Names are zero-terminated UTF-8 strings.
6666** ^If there is no match, a NULL pointer is returned.
6667** ^If zVfsName is NULL then the default VFS is returned.
drhd84f9462007-08-15 11:28:56 +00006668**
drhd68eee02009-12-11 03:44:18 +00006669** ^New VFSes are registered with sqlite3_vfs_register().
6670** ^Each new VFS becomes the default VFS if the makeDflt flag is set.
6671** ^The same VFS can be registered multiple times without injury.
6672** ^To make an existing VFS into the default VFS, register it again
drhb4d58ae2008-02-21 20:17:06 +00006673** with the makeDflt flag set. If two different VFSes with the
6674** same name are registered, the behavior is undefined. If a
drhb6f5cf32007-08-28 15:21:45 +00006675** VFS is registered with a name that is NULL or an empty string,
6676** then the behavior is undefined.
mihailim15194222008-06-22 09:55:14 +00006677**
drhd68eee02009-12-11 03:44:18 +00006678** ^Unregister a VFS with the sqlite3_vfs_unregister() interface.
6679** ^(If the default VFS is unregistered, another VFS is chosen as
6680** the default. The choice for the new VFS is arbitrary.)^
drhd84f9462007-08-15 11:28:56 +00006681*/
drhd677b3d2007-08-20 22:48:41 +00006682sqlite3_vfs *sqlite3_vfs_find(const char *zVfsName);
drhd677b3d2007-08-20 22:48:41 +00006683int sqlite3_vfs_register(sqlite3_vfs*, int makeDflt);
6684int sqlite3_vfs_unregister(sqlite3_vfs*);
drhd84f9462007-08-15 11:28:56 +00006685
6686/*
drhd68eee02009-12-11 03:44:18 +00006687** CAPI3REF: Mutexes
drhd84f9462007-08-15 11:28:56 +00006688**
6689** The SQLite core uses these routines for thread
danielk19774a9d1f62008-06-19 08:51:23 +00006690** synchronization. Though they are intended for internal
drhd84f9462007-08-15 11:28:56 +00006691** use by SQLite, code that links against SQLite is
6692** permitted to use any of these routines.
6693**
mihailim15194222008-06-22 09:55:14 +00006694** The SQLite source code contains multiple implementations
drh8bacf972007-08-25 16:21:29 +00006695** of these mutex routines. An appropriate implementation
drh341eca72014-11-20 23:03:42 +00006696** is selected automatically at compile-time. The following
drh8bacf972007-08-25 16:21:29 +00006697** implementations are available in the SQLite core:
drhd84f9462007-08-15 11:28:56 +00006698**
6699** <ul>
drhe4c88c02012-01-04 12:57:45 +00006700** <li> SQLITE_MUTEX_PTHREADS
drhc7ce76a2007-08-30 14:10:30 +00006701** <li> SQLITE_MUTEX_W32
drhd84f9462007-08-15 11:28:56 +00006702** <li> SQLITE_MUTEX_NOOP
drh341eca72014-11-20 23:03:42 +00006703** </ul>
drhd84f9462007-08-15 11:28:56 +00006704**
drh341eca72014-11-20 23:03:42 +00006705** The SQLITE_MUTEX_NOOP implementation is a set of routines
mihailim15194222008-06-22 09:55:14 +00006706** that does no real locking and is appropriate for use in
drh341eca72014-11-20 23:03:42 +00006707** a single-threaded application. The SQLITE_MUTEX_PTHREADS and
mistachkinf1c6bc52012-06-21 15:09:20 +00006708** SQLITE_MUTEX_W32 implementations are appropriate for use on Unix
6709** and Windows.
mihailim15194222008-06-22 09:55:14 +00006710**
drh341eca72014-11-20 23:03:42 +00006711** If SQLite is compiled with the SQLITE_MUTEX_APPDEF preprocessor
drh8bacf972007-08-25 16:21:29 +00006712** macro defined (with "-DSQLITE_MUTEX_APPDEF=1"), then no mutex
danielk19774a9d1f62008-06-19 08:51:23 +00006713** implementation is included with the library. In this case the
6714** application must supply a custom mutex implementation using the
6715** [SQLITE_CONFIG_MUTEX] option of the sqlite3_config() function
mihailim15194222008-06-22 09:55:14 +00006716** before calling sqlite3_initialize() or any other public sqlite3_
drh341eca72014-11-20 23:03:42 +00006717** function that calls sqlite3_initialize().
drhcb041342008-06-12 00:07:29 +00006718**
drhd68eee02009-12-11 03:44:18 +00006719** ^The sqlite3_mutex_alloc() routine allocates a new
drh341eca72014-11-20 23:03:42 +00006720** mutex and returns a pointer to it. ^The sqlite3_mutex_alloc()
6721** routine returns NULL if it is unable to allocate the requested
6722** mutex. The argument to sqlite3_mutex_alloc() must one of these
6723** integer constants:
drh6bdec4a2007-08-16 19:40:16 +00006724**
6725** <ul>
6726** <li> SQLITE_MUTEX_FAST
6727** <li> SQLITE_MUTEX_RECURSIVE
6728** <li> SQLITE_MUTEX_STATIC_MASTER
6729** <li> SQLITE_MUTEX_STATIC_MEM
drh7bd3c892014-05-03 12:00:01 +00006730** <li> SQLITE_MUTEX_STATIC_OPEN
drh6bdec4a2007-08-16 19:40:16 +00006731** <li> SQLITE_MUTEX_STATIC_PRNG
danielk19779f61c2f2007-08-27 17:27:49 +00006732** <li> SQLITE_MUTEX_STATIC_LRU
drh7bd3c892014-05-03 12:00:01 +00006733** <li> SQLITE_MUTEX_STATIC_PMEM
6734** <li> SQLITE_MUTEX_STATIC_APP1
6735** <li> SQLITE_MUTEX_STATIC_APP2
drh341eca72014-11-20 23:03:42 +00006736** <li> SQLITE_MUTEX_STATIC_APP3
mistachkinc2153222015-09-13 20:15:01 +00006737** <li> SQLITE_MUTEX_STATIC_VFS1
6738** <li> SQLITE_MUTEX_STATIC_VFS2
6739** <li> SQLITE_MUTEX_STATIC_VFS3
drh341eca72014-11-20 23:03:42 +00006740** </ul>
drh6bdec4a2007-08-16 19:40:16 +00006741**
drhd68eee02009-12-11 03:44:18 +00006742** ^The first two constants (SQLITE_MUTEX_FAST and SQLITE_MUTEX_RECURSIVE)
6743** cause sqlite3_mutex_alloc() to create
6744** a new mutex. ^The new mutex is recursive when SQLITE_MUTEX_RECURSIVE
6745** is used but not necessarily so when SQLITE_MUTEX_FAST is used.
drh6bdec4a2007-08-16 19:40:16 +00006746** The mutex implementation does not need to make a distinction
6747** between SQLITE_MUTEX_RECURSIVE and SQLITE_MUTEX_FAST if it does
drh341eca72014-11-20 23:03:42 +00006748** not want to. SQLite will only request a recursive mutex in
6749** cases where it really needs one. If a faster non-recursive mutex
drh6bdec4a2007-08-16 19:40:16 +00006750** implementation is available on the host platform, the mutex subsystem
6751** might return such a mutex in response to SQLITE_MUTEX_FAST.
6752**
drhd68eee02009-12-11 03:44:18 +00006753** ^The other allowed parameters to sqlite3_mutex_alloc() (anything other
6754** than SQLITE_MUTEX_FAST and SQLITE_MUTEX_RECURSIVE) each return
drh341eca72014-11-20 23:03:42 +00006755** a pointer to a static preexisting mutex. ^Nine static mutexes are
drh6bdec4a2007-08-16 19:40:16 +00006756** used by the current version of SQLite. Future versions of SQLite
6757** may add additional static mutexes. Static mutexes are for internal
6758** use by SQLite only. Applications that use SQLite mutexes should
6759** use only the dynamic mutexes returned by SQLITE_MUTEX_FAST or
6760** SQLITE_MUTEX_RECURSIVE.
6761**
drhd68eee02009-12-11 03:44:18 +00006762** ^Note that if one of the dynamic mutex parameters (SQLITE_MUTEX_FAST
drh6bdec4a2007-08-16 19:40:16 +00006763** or SQLITE_MUTEX_RECURSIVE) is used then sqlite3_mutex_alloc()
drh341eca72014-11-20 23:03:42 +00006764** returns a different mutex on every call. ^For the static
drh6bdec4a2007-08-16 19:40:16 +00006765** mutex types, the same mutex is returned on every call that has
mihailim04bcc002008-06-22 10:21:27 +00006766** the same type number.
drhd84f9462007-08-15 11:28:56 +00006767**
drhd68eee02009-12-11 03:44:18 +00006768** ^The sqlite3_mutex_free() routine deallocates a previously
drh341eca72014-11-20 23:03:42 +00006769** allocated dynamic mutex. Attempting to deallocate a static
6770** mutex results in undefined behavior.
drhd84f9462007-08-15 11:28:56 +00006771**
drhd68eee02009-12-11 03:44:18 +00006772** ^The sqlite3_mutex_enter() and sqlite3_mutex_try() routines attempt
6773** to enter a mutex. ^If another thread is already within the mutex,
drh6bdec4a2007-08-16 19:40:16 +00006774** sqlite3_mutex_enter() will block and sqlite3_mutex_try() will return
drhd68eee02009-12-11 03:44:18 +00006775** SQLITE_BUSY. ^The sqlite3_mutex_try() interface returns [SQLITE_OK]
6776** upon successful entry. ^(Mutexes created using
drhf5befa02007-12-06 02:42:07 +00006777** SQLITE_MUTEX_RECURSIVE can be entered multiple times by the same thread.
drh341eca72014-11-20 23:03:42 +00006778** In such cases, the
drh6bdec4a2007-08-16 19:40:16 +00006779** mutex must be exited an equal number of times before another thread
drh341eca72014-11-20 23:03:42 +00006780** can enter.)^ If the same thread tries to enter any mutex other
6781** than an SQLITE_MUTEX_RECURSIVE more than once, the behavior is undefined.
drhd84f9462007-08-15 11:28:56 +00006782**
drhd68eee02009-12-11 03:44:18 +00006783** ^(Some systems (for example, Windows 95) do not support the operation
mihailim15194222008-06-22 09:55:14 +00006784** implemented by sqlite3_mutex_try(). On those systems, sqlite3_mutex_try()
drh341eca72014-11-20 23:03:42 +00006785** will always return SQLITE_BUSY. The SQLite core only ever uses
6786** sqlite3_mutex_try() as an optimization so this is acceptable
6787** behavior.)^
drhca49cba2007-09-04 22:31:36 +00006788**
drhd68eee02009-12-11 03:44:18 +00006789** ^The sqlite3_mutex_leave() routine exits a mutex that was
drh341eca72014-11-20 23:03:42 +00006790** previously entered by the same thread. The behavior
drh8bacf972007-08-25 16:21:29 +00006791** is undefined if the mutex is not currently entered by the
drh341eca72014-11-20 23:03:42 +00006792** calling thread or is not currently allocated.
drh8bacf972007-08-25 16:21:29 +00006793**
drhd68eee02009-12-11 03:44:18 +00006794** ^If the argument to sqlite3_mutex_enter(), sqlite3_mutex_try(), or
drh40257ff2008-06-13 18:24:27 +00006795** sqlite3_mutex_leave() is a NULL pointer, then all three routines
6796** behave as no-ops.
6797**
drh8bacf972007-08-25 16:21:29 +00006798** See also: [sqlite3_mutex_held()] and [sqlite3_mutex_notheld()].
6799*/
6800sqlite3_mutex *sqlite3_mutex_alloc(int);
6801void sqlite3_mutex_free(sqlite3_mutex*);
6802void sqlite3_mutex_enter(sqlite3_mutex*);
6803int sqlite3_mutex_try(sqlite3_mutex*);
6804void sqlite3_mutex_leave(sqlite3_mutex*);
6805
drh56a40a82008-06-18 13:47:03 +00006806/*
drhd68eee02009-12-11 03:44:18 +00006807** CAPI3REF: Mutex Methods Object
drh56a40a82008-06-18 13:47:03 +00006808**
6809** An instance of this structure defines the low-level routines
danielk19774a9d1f62008-06-19 08:51:23 +00006810** used to allocate and use mutexes.
6811**
6812** Usually, the default mutex implementations provided by SQLite are
drh341eca72014-11-20 23:03:42 +00006813** sufficient, however the application has the option of substituting a custom
mihailim15194222008-06-22 09:55:14 +00006814** implementation for specialized deployments or systems for which SQLite
drh341eca72014-11-20 23:03:42 +00006815** does not provide a suitable implementation. In this case, the application
danielk19774a9d1f62008-06-19 08:51:23 +00006816** creates and populates an instance of this structure to pass
mihailim15194222008-06-22 09:55:14 +00006817** to sqlite3_config() along with the [SQLITE_CONFIG_MUTEX] option.
danielk19774a9d1f62008-06-19 08:51:23 +00006818** Additionally, an instance of this structure can be used as an
6819** output variable when querying the system for the current mutex
6820** implementation, using the [SQLITE_CONFIG_GETMUTEX] option.
6821**
drhd68eee02009-12-11 03:44:18 +00006822** ^The xMutexInit method defined by this structure is invoked as
danielk19774a9d1f62008-06-19 08:51:23 +00006823** part of system initialization by the sqlite3_initialize() function.
drhcee82962010-09-09 15:48:20 +00006824** ^The xMutexInit routine is called by SQLite exactly once for each
mihailim15194222008-06-22 09:55:14 +00006825** effective call to [sqlite3_initialize()].
danielk19774a9d1f62008-06-19 08:51:23 +00006826**
drhd68eee02009-12-11 03:44:18 +00006827** ^The xMutexEnd method defined by this structure is invoked as
danielk19774a9d1f62008-06-19 08:51:23 +00006828** part of system shutdown by the sqlite3_shutdown() function. The
6829** implementation of this method is expected to release all outstanding
6830** resources obtained by the mutex methods implementation, especially
drhd68eee02009-12-11 03:44:18 +00006831** those obtained by the xMutexInit method. ^The xMutexEnd()
6832** interface is invoked exactly once for each call to [sqlite3_shutdown()].
danielk19774a9d1f62008-06-19 08:51:23 +00006833**
drhd68eee02009-12-11 03:44:18 +00006834** ^(The remaining seven methods defined by this structure (xMutexAlloc,
danielk19774a9d1f62008-06-19 08:51:23 +00006835** xMutexFree, xMutexEnter, xMutexTry, xMutexLeave, xMutexHeld and
6836** xMutexNotheld) implement the following interfaces (respectively):
drh56a40a82008-06-18 13:47:03 +00006837**
6838** <ul>
danielk19774a9d1f62008-06-19 08:51:23 +00006839** <li> [sqlite3_mutex_alloc()] </li>
6840** <li> [sqlite3_mutex_free()] </li>
6841** <li> [sqlite3_mutex_enter()] </li>
6842** <li> [sqlite3_mutex_try()] </li>
6843** <li> [sqlite3_mutex_leave()] </li>
6844** <li> [sqlite3_mutex_held()] </li>
6845** <li> [sqlite3_mutex_notheld()] </li>
drhd68eee02009-12-11 03:44:18 +00006846** </ul>)^
danielk19774a9d1f62008-06-19 08:51:23 +00006847**
6848** The only difference is that the public sqlite3_XXX functions enumerated
6849** above silently ignore any invocations that pass a NULL pointer instead
6850** of a valid mutex handle. The implementations of the methods defined
6851** by this structure are not required to handle this case, the results
6852** of passing a NULL pointer instead of a valid mutex handle are undefined
6853** (i.e. it is acceptable to provide an implementation that segfaults if
6854** it is passed a NULL pointer).
drh9ac06502009-08-17 13:42:29 +00006855**
drh341eca72014-11-20 23:03:42 +00006856** The xMutexInit() method must be threadsafe. It must be harmless to
drh9b8d0272010-08-09 15:44:21 +00006857** invoke xMutexInit() multiple times within the same process and without
drh9ac06502009-08-17 13:42:29 +00006858** intervening calls to xMutexEnd(). Second and subsequent calls to
6859** xMutexInit() must be no-ops.
6860**
drh341eca72014-11-20 23:03:42 +00006861** xMutexInit() must not use SQLite memory allocation ([sqlite3_malloc()]
6862** and its associates). Similarly, xMutexAlloc() must not use SQLite memory
drhd68eee02009-12-11 03:44:18 +00006863** allocation for a static mutex. ^However xMutexAlloc() may use SQLite
drh9ac06502009-08-17 13:42:29 +00006864** memory allocation for a fast or recursive mutex.
6865**
drhd68eee02009-12-11 03:44:18 +00006866** ^SQLite will invoke the xMutexEnd() method when [sqlite3_shutdown()] is
drh9ac06502009-08-17 13:42:29 +00006867** called, but only if the prior call to xMutexInit returned SQLITE_OK.
6868** If xMutexInit fails in any way, it is expected to clean up after itself
6869** prior to returning.
drh56a40a82008-06-18 13:47:03 +00006870*/
danielk19776d2ab0e2008-06-17 17:21:18 +00006871typedef struct sqlite3_mutex_methods sqlite3_mutex_methods;
6872struct sqlite3_mutex_methods {
6873 int (*xMutexInit)(void);
danielk19774a9d1f62008-06-19 08:51:23 +00006874 int (*xMutexEnd)(void);
danielk19776d2ab0e2008-06-17 17:21:18 +00006875 sqlite3_mutex *(*xMutexAlloc)(int);
6876 void (*xMutexFree)(sqlite3_mutex *);
6877 void (*xMutexEnter)(sqlite3_mutex *);
6878 int (*xMutexTry)(sqlite3_mutex *);
6879 void (*xMutexLeave)(sqlite3_mutex *);
danielk19776d2ab0e2008-06-17 17:21:18 +00006880 int (*xMutexHeld)(sqlite3_mutex *);
6881 int (*xMutexNotheld)(sqlite3_mutex *);
6882};
6883
drh8bacf972007-08-25 16:21:29 +00006884/*
drhd68eee02009-12-11 03:44:18 +00006885** CAPI3REF: Mutex Verification Routines
drhd677b3d2007-08-20 22:48:41 +00006886**
6887** The sqlite3_mutex_held() and sqlite3_mutex_notheld() routines
drh341eca72014-11-20 23:03:42 +00006888** are intended for use inside assert() statements. The SQLite core
drhf77a2ff2007-08-25 14:49:36 +00006889** never uses these routines except inside an assert() and applications
drh341eca72014-11-20 23:03:42 +00006890** are advised to follow the lead of the core. The SQLite core only
drh8bacf972007-08-25 16:21:29 +00006891** provides implementations for these routines when it is compiled
drh341eca72014-11-20 23:03:42 +00006892** with the SQLITE_DEBUG flag. External mutex implementations
drh8bacf972007-08-25 16:21:29 +00006893** are only required to provide these routines if SQLITE_DEBUG is
6894** defined and if NDEBUG is not defined.
6895**
drh341eca72014-11-20 23:03:42 +00006896** These routines should return true if the mutex in their argument
mihailim04bcc002008-06-22 10:21:27 +00006897** is held or not held, respectively, by the calling thread.
drh8bacf972007-08-25 16:21:29 +00006898**
drh341eca72014-11-20 23:03:42 +00006899** The implementation is not required to provide versions of these
mihailim04bcc002008-06-22 10:21:27 +00006900** routines that actually work. If the implementation does not provide working
6901** versions of these routines, it should at least provide stubs that always
6902** return true so that one does not get spurious assertion failures.
drhd677b3d2007-08-20 22:48:41 +00006903**
drh341eca72014-11-20 23:03:42 +00006904** If the argument to sqlite3_mutex_held() is a NULL pointer then
drhd68eee02009-12-11 03:44:18 +00006905** the routine should return 1. This seems counter-intuitive since
drh8a17be02011-06-20 20:39:12 +00006906** clearly the mutex cannot be held if it does not exist. But
drhd677b3d2007-08-20 22:48:41 +00006907** the reason the mutex does not exist is because the build is not
6908** using mutexes. And we do not want the assert() containing the
6909** call to sqlite3_mutex_held() to fail, so a non-zero return is
drh341eca72014-11-20 23:03:42 +00006910** the appropriate thing to do. The sqlite3_mutex_notheld()
drhd677b3d2007-08-20 22:48:41 +00006911** interface should also return 1 when given a NULL pointer.
drhd84f9462007-08-15 11:28:56 +00006912*/
drh0edb3cf2009-12-10 01:17:29 +00006913#ifndef NDEBUG
drhd677b3d2007-08-20 22:48:41 +00006914int sqlite3_mutex_held(sqlite3_mutex*);
6915int sqlite3_mutex_notheld(sqlite3_mutex*);
drh0edb3cf2009-12-10 01:17:29 +00006916#endif
drh32bc3f62007-08-21 20:25:39 +00006917
6918/*
drhd68eee02009-12-11 03:44:18 +00006919** CAPI3REF: Mutex Types
drh32bc3f62007-08-21 20:25:39 +00006920**
drhd5a68d32008-08-04 13:44:57 +00006921** The [sqlite3_mutex_alloc()] interface takes a single argument
mihailim04bcc002008-06-22 10:21:27 +00006922** which is one of these integer constants.
drhd5a68d32008-08-04 13:44:57 +00006923**
6924** The set of static mutexes may change from one SQLite release to the
6925** next. Applications that override the built-in mutex logic must be
6926** prepared to accommodate additional static mutexes.
drh32bc3f62007-08-21 20:25:39 +00006927*/
drh6bdec4a2007-08-16 19:40:16 +00006928#define SQLITE_MUTEX_FAST 0
6929#define SQLITE_MUTEX_RECURSIVE 1
6930#define SQLITE_MUTEX_STATIC_MASTER 2
drh86f8c192007-08-22 00:39:19 +00006931#define SQLITE_MUTEX_STATIC_MEM 3 /* sqlite3_malloc() */
drh7555d8e2009-03-20 13:15:30 +00006932#define SQLITE_MUTEX_STATIC_MEM2 4 /* NOT USED */
6933#define SQLITE_MUTEX_STATIC_OPEN 4 /* sqlite3BtreeOpen() */
dan95489c52016-09-15 05:47:00 +00006934#define SQLITE_MUTEX_STATIC_PRNG 5 /* sqlite3_randomness() */
danielk19779f61c2f2007-08-27 17:27:49 +00006935#define SQLITE_MUTEX_STATIC_LRU 6 /* lru page list */
drh40f98372011-01-18 15:17:57 +00006936#define SQLITE_MUTEX_STATIC_LRU2 7 /* NOT USED */
6937#define SQLITE_MUTEX_STATIC_PMEM 7 /* sqlite3PageMalloc() */
drh7bd3c892014-05-03 12:00:01 +00006938#define SQLITE_MUTEX_STATIC_APP1 8 /* For use by application */
6939#define SQLITE_MUTEX_STATIC_APP2 9 /* For use by application */
dandcb1a842014-05-09 11:15:57 +00006940#define SQLITE_MUTEX_STATIC_APP3 10 /* For use by application */
mistachkin93de6532015-07-03 21:38:09 +00006941#define SQLITE_MUTEX_STATIC_VFS1 11 /* For use by built-in VFS */
6942#define SQLITE_MUTEX_STATIC_VFS2 12 /* For use by extension VFS */
6943#define SQLITE_MUTEX_STATIC_VFS3 13 /* For use by application VFS */
drh6d2069d2007-08-14 01:58:53 +00006944
drhcc6bb3e2007-08-31 16:11:35 +00006945/*
drhd68eee02009-12-11 03:44:18 +00006946** CAPI3REF: Retrieve the mutex for a database connection
drhd9a0a9a2015-04-14 15:14:06 +00006947** METHOD: sqlite3
drh4413d0e2008-11-04 13:46:27 +00006948**
drhd68eee02009-12-11 03:44:18 +00006949** ^This interface returns a pointer the [sqlite3_mutex] object that
drh4413d0e2008-11-04 13:46:27 +00006950** serializes access to the [database connection] given in the argument
6951** when the [threading mode] is Serialized.
drhd68eee02009-12-11 03:44:18 +00006952** ^If the [threading mode] is Single-thread or Multi-thread then this
drh4413d0e2008-11-04 13:46:27 +00006953** routine returns a NULL pointer.
6954*/
6955sqlite3_mutex *sqlite3_db_mutex(sqlite3*);
6956
6957/*
drhfb434032009-12-11 23:11:26 +00006958** CAPI3REF: Low-Level Control Of Database Files
drhd9a0a9a2015-04-14 15:14:06 +00006959** METHOD: sqlite3
drhcc6bb3e2007-08-31 16:11:35 +00006960**
drhd68eee02009-12-11 03:44:18 +00006961** ^The [sqlite3_file_control()] interface makes a direct call to the
drhcc6bb3e2007-08-31 16:11:35 +00006962** xFileControl method for the [sqlite3_io_methods] object associated
drhd68eee02009-12-11 03:44:18 +00006963** with a particular database identified by the second argument. ^The
drhc97d8462010-11-19 18:23:35 +00006964** name of the database is "main" for the main database or "temp" for the
drhd68eee02009-12-11 03:44:18 +00006965** TEMP database, or the name that appears after the AS keyword for
6966** databases that are added using the [ATTACH] SQL command.
6967** ^A NULL pointer can be used in place of "main" to refer to the
6968** main database file.
6969** ^The third and fourth parameters to this routine
drhcc6bb3e2007-08-31 16:11:35 +00006970** are passed directly through to the second and third parameters of
drhd68eee02009-12-11 03:44:18 +00006971** the xFileControl method. ^The return value of the xFileControl
drhcc6bb3e2007-08-31 16:11:35 +00006972** method becomes the return value of this routine.
6973**
drh9199ac12018-01-02 13:48:48 +00006974** ^The [SQLITE_FCNTL_FILE_POINTER] value for the op parameter causes
drhc97d8462010-11-19 18:23:35 +00006975** a pointer to the underlying [sqlite3_file] object to be written into
drh9199ac12018-01-02 13:48:48 +00006976** the space pointed to by the 4th parameter. ^The [SQLITE_FCNTL_FILE_POINTER]
drhc97d8462010-11-19 18:23:35 +00006977** case is a short-circuit path which does not actually invoke the
6978** underlying sqlite3_io_methods.xFileControl method.
6979**
drhd68eee02009-12-11 03:44:18 +00006980** ^If the second parameter (zDbName) does not match the name of any
6981** open database file, then SQLITE_ERROR is returned. ^This error
drhcc6bb3e2007-08-31 16:11:35 +00006982** code is not remembered and will not be recalled by [sqlite3_errcode()]
drhd68eee02009-12-11 03:44:18 +00006983** or [sqlite3_errmsg()]. The underlying xFileControl method might
6984** also return SQLITE_ERROR. There is no way to distinguish between
drhcc6bb3e2007-08-31 16:11:35 +00006985** an incorrect zDbName and an SQLITE_ERROR return from the underlying
drhd68eee02009-12-11 03:44:18 +00006986** xFileControl method.
drh4ff7fa02007-09-01 18:17:21 +00006987**
drh9199ac12018-01-02 13:48:48 +00006988** See also: [file control opcodes]
drhcc6bb3e2007-08-31 16:11:35 +00006989*/
6990int sqlite3_file_control(sqlite3*, const char *zDbName, int op, void*);
drh6d2069d2007-08-14 01:58:53 +00006991
danielk19778cbadb02007-05-03 16:31:26 +00006992/*
drhd68eee02009-12-11 03:44:18 +00006993** CAPI3REF: Testing Interface
drhed13d982008-01-31 14:43:24 +00006994**
drhd68eee02009-12-11 03:44:18 +00006995** ^The sqlite3_test_control() interface is used to read out internal
drhed13d982008-01-31 14:43:24 +00006996** state of SQLite and to inject faults into SQLite for testing
drhd68eee02009-12-11 03:44:18 +00006997** purposes. ^The first parameter is an operation code that determines
drhed13d982008-01-31 14:43:24 +00006998** the number, meaning, and operation of all subsequent parameters.
6999**
7000** This interface is not for use by applications. It exists solely
7001** for verifying the correct operation of the SQLite library. Depending
7002** on how the SQLite library is compiled, this interface might not exist.
7003**
7004** The details of the operation codes, their meanings, the parameters
7005** they take, and what they do are all subject to change without notice.
7006** Unlike most of the SQLite API, this function is not guaranteed to
7007** operate consistently from one release to the next.
7008*/
7009int sqlite3_test_control(int op, ...);
7010
7011/*
drhd68eee02009-12-11 03:44:18 +00007012** CAPI3REF: Testing Interface Operation Codes
drhed13d982008-01-31 14:43:24 +00007013**
7014** These constants are the valid operation code parameters used
7015** as the first argument to [sqlite3_test_control()].
7016**
shane26b34032008-05-23 17:21:09 +00007017** These parameters and their meanings are subject to change
drhed13d982008-01-31 14:43:24 +00007018** without notice. These values are for testing purposes only.
7019** Applications should not use any of these parameters or the
7020** [sqlite3_test_control()] interface.
7021*/
drh07096f62009-12-22 23:52:32 +00007022#define SQLITE_TESTCTRL_FIRST 5
drh2fa18682008-03-19 14:15:34 +00007023#define SQLITE_TESTCTRL_PRNG_SAVE 5
7024#define SQLITE_TESTCTRL_PRNG_RESTORE 6
7025#define SQLITE_TESTCTRL_PRNG_RESET 7
drh3088d592008-03-21 16:45:47 +00007026#define SQLITE_TESTCTRL_BITVEC_TEST 8
danielk1977d09414c2008-06-19 18:17:49 +00007027#define SQLITE_TESTCTRL_FAULT_INSTALL 9
danielk19772d1d86f2008-06-20 14:59:51 +00007028#define SQLITE_TESTCTRL_BENIGN_MALLOC_HOOKS 10
drhc7a3bb92009-02-05 16:31:45 +00007029#define SQLITE_TESTCTRL_PENDING_BYTE 11
drhf3af63f2009-05-09 18:59:42 +00007030#define SQLITE_TESTCTRL_ASSERT 12
7031#define SQLITE_TESTCTRL_ALWAYS 13
drhc046e3e2009-07-15 11:26:44 +00007032#define SQLITE_TESTCTRL_RESERVE 14
drh07096f62009-12-22 23:52:32 +00007033#define SQLITE_TESTCTRL_OPTIMIZATIONS 15
drh0e857732010-01-02 03:21:35 +00007034#define SQLITE_TESTCTRL_ISKEYWORD 16
drhb2a0f752017-08-28 15:51:35 +00007035#define SQLITE_TESTCTRL_SCRATCHMALLOC 17 /* NOT USED */
drhe73c9142011-11-09 16:12:24 +00007036#define SQLITE_TESTCTRL_LOCALTIME_FAULT 18
drh4fa4a542014-09-30 12:33:33 +00007037#define SQLITE_TESTCTRL_EXPLAIN_STMT 19 /* NOT USED */
drh9e5eb9c2016-09-18 16:08:10 +00007038#define SQLITE_TESTCTRL_ONCE_RESET_THRESHOLD 19
drh09fe6142013-11-29 15:06:27 +00007039#define SQLITE_TESTCTRL_NEVER_CORRUPT 20
drh688852a2014-02-17 22:40:43 +00007040#define SQLITE_TESTCTRL_VDBE_COVERAGE 21
drh2cf4acb2014-04-18 00:06:02 +00007041#define SQLITE_TESTCTRL_BYTEORDER 22
drh43cfc232014-07-29 14:09:21 +00007042#define SQLITE_TESTCTRL_ISINIT 23
drh011b2e52014-07-29 14:16:42 +00007043#define SQLITE_TESTCTRL_SORTER_MMAP 24
drh1ffede82015-01-30 20:59:27 +00007044#define SQLITE_TESTCTRL_IMPOSTER 25
drh0d9de992017-12-26 18:04:23 +00007045#define SQLITE_TESTCTRL_PARSER_COVERAGE 26
7046#define SQLITE_TESTCTRL_LAST 26 /* Largest TESTCTRL */
drhed13d982008-01-31 14:43:24 +00007047
drhf7141992008-06-19 00:16:08 +00007048/*
drhd68eee02009-12-11 03:44:18 +00007049** CAPI3REF: SQLite Runtime Status
drhf7141992008-06-19 00:16:08 +00007050**
drhaf89fe62015-03-23 17:25:18 +00007051** ^These interfaces are used to retrieve runtime status information
drh9b8d0272010-08-09 15:44:21 +00007052** about the performance of SQLite, and optionally to reset various
drhd68eee02009-12-11 03:44:18 +00007053** highwater marks. ^The first argument is an integer code for
drhdf6473a2009-12-13 22:20:08 +00007054** the specific parameter to measure. ^(Recognized integer codes
drhb706fe52011-05-11 20:54:32 +00007055** are of the form [status parameters | SQLITE_STATUS_...].)^
drhd68eee02009-12-11 03:44:18 +00007056** ^The current value of the parameter is returned into *pCurrent.
7057** ^The highest recorded value is returned in *pHighwater. ^If the
drhf7141992008-06-19 00:16:08 +00007058** resetFlag is true, then the highest record value is reset after
drhd68eee02009-12-11 03:44:18 +00007059** *pHighwater is written. ^(Some parameters do not record the highest
drhf7141992008-06-19 00:16:08 +00007060** value. For those parameters
drhd68eee02009-12-11 03:44:18 +00007061** nothing is written into *pHighwater and the resetFlag is ignored.)^
7062** ^(Other parameters record only the highwater mark and not the current
7063** value. For these latter parameters nothing is written into *pCurrent.)^
drhf7141992008-06-19 00:16:08 +00007064**
drhaf89fe62015-03-23 17:25:18 +00007065** ^The sqlite3_status() and sqlite3_status64() routines return
7066** SQLITE_OK on success and a non-zero [error code] on failure.
drhf7141992008-06-19 00:16:08 +00007067**
drhaf89fe62015-03-23 17:25:18 +00007068** If either the current value or the highwater mark is too large to
7069** be represented by a 32-bit integer, then the values returned by
7070** sqlite3_status() are undefined.
drhf7141992008-06-19 00:16:08 +00007071**
drh2462e322008-07-31 14:47:54 +00007072** See also: [sqlite3_db_status()]
drhf7141992008-06-19 00:16:08 +00007073*/
drh9f8da322010-03-10 20:06:37 +00007074int sqlite3_status(int op, int *pCurrent, int *pHighwater, int resetFlag);
drhaf89fe62015-03-23 17:25:18 +00007075int sqlite3_status64(
7076 int op,
7077 sqlite3_int64 *pCurrent,
7078 sqlite3_int64 *pHighwater,
7079 int resetFlag
7080);
drh2462e322008-07-31 14:47:54 +00007081
danielk1977075c23a2008-09-01 18:34:20 +00007082
drhf7141992008-06-19 00:16:08 +00007083/*
drhd68eee02009-12-11 03:44:18 +00007084** CAPI3REF: Status Parameters
drhb706fe52011-05-11 20:54:32 +00007085** KEYWORDS: {status parameters}
drhf7141992008-06-19 00:16:08 +00007086**
7087** These integer constants designate various run-time status parameters
7088** that can be returned by [sqlite3_status()].
7089**
7090** <dl>
drhb706fe52011-05-11 20:54:32 +00007091** [[SQLITE_STATUS_MEMORY_USED]] ^(<dt>SQLITE_STATUS_MEMORY_USED</dt>
drhf7141992008-06-19 00:16:08 +00007092** <dd>This parameter is the current amount of memory checked out
mihailim15194222008-06-22 09:55:14 +00007093** using [sqlite3_malloc()], either directly or indirectly. The
drhf7141992008-06-19 00:16:08 +00007094** figure includes calls made to [sqlite3_malloc()] by the application
drhb2a0f752017-08-28 15:51:35 +00007095** and internal memory usage by the SQLite library. Auxiliary page-cache
drhf7141992008-06-19 00:16:08 +00007096** memory controlled by [SQLITE_CONFIG_PAGECACHE] is not included in
7097** this parameter. The amount returned is the sum of the allocation
drhd68eee02009-12-11 03:44:18 +00007098** sizes as reported by the xSize method in [sqlite3_mem_methods].</dd>)^
drhf7141992008-06-19 00:16:08 +00007099**
drhb706fe52011-05-11 20:54:32 +00007100** [[SQLITE_STATUS_MALLOC_SIZE]] ^(<dt>SQLITE_STATUS_MALLOC_SIZE</dt>
drhe50135e2008-08-05 17:53:22 +00007101** <dd>This parameter records the largest memory allocation request
7102** handed to [sqlite3_malloc()] or [sqlite3_realloc()] (or their
7103** internal equivalents). Only the value returned in the
7104** *pHighwater parameter to [sqlite3_status()] is of interest.
drhd68eee02009-12-11 03:44:18 +00007105** The value written into the *pCurrent parameter is undefined.</dd>)^
drhe50135e2008-08-05 17:53:22 +00007106**
drhb706fe52011-05-11 20:54:32 +00007107** [[SQLITE_STATUS_MALLOC_COUNT]] ^(<dt>SQLITE_STATUS_MALLOC_COUNT</dt>
drh08bd9f82010-12-20 17:00:27 +00007108** <dd>This parameter records the number of separate memory allocations
7109** currently checked out.</dd>)^
drh154a3192010-07-28 15:49:02 +00007110**
drhb706fe52011-05-11 20:54:32 +00007111** [[SQLITE_STATUS_PAGECACHE_USED]] ^(<dt>SQLITE_STATUS_PAGECACHE_USED</dt>
drhf7141992008-06-19 00:16:08 +00007112** <dd>This parameter returns the number of pages used out of the
drhe50135e2008-08-05 17:53:22 +00007113** [pagecache memory allocator] that was configured using
7114** [SQLITE_CONFIG_PAGECACHE]. The
drhd68eee02009-12-11 03:44:18 +00007115** value returned is in pages, not in bytes.</dd>)^
drhf7141992008-06-19 00:16:08 +00007116**
drhb706fe52011-05-11 20:54:32 +00007117** [[SQLITE_STATUS_PAGECACHE_OVERFLOW]]
drhd68eee02009-12-11 03:44:18 +00007118** ^(<dt>SQLITE_STATUS_PAGECACHE_OVERFLOW</dt>
drhf7141992008-06-19 00:16:08 +00007119** <dd>This parameter returns the number of bytes of page cache
shaneh659503a2010-09-02 04:30:19 +00007120** allocation which could not be satisfied by the [SQLITE_CONFIG_PAGECACHE]
drhe50135e2008-08-05 17:53:22 +00007121** buffer and where forced to overflow to [sqlite3_malloc()]. The
7122** returned value includes allocations that overflowed because they
7123** where too large (they were larger than the "sz" parameter to
7124** [SQLITE_CONFIG_PAGECACHE]) and allocations that overflowed because
drhd68eee02009-12-11 03:44:18 +00007125** no space was left in the page cache.</dd>)^
drhe50135e2008-08-05 17:53:22 +00007126**
drhb706fe52011-05-11 20:54:32 +00007127** [[SQLITE_STATUS_PAGECACHE_SIZE]] ^(<dt>SQLITE_STATUS_PAGECACHE_SIZE</dt>
drhe50135e2008-08-05 17:53:22 +00007128** <dd>This parameter records the largest memory allocation request
7129** handed to [pagecache memory allocator]. Only the value returned in the
7130** *pHighwater parameter to [sqlite3_status()] is of interest.
drhd68eee02009-12-11 03:44:18 +00007131** The value written into the *pCurrent parameter is undefined.</dd>)^
drhf7141992008-06-19 00:16:08 +00007132**
drhb2a0f752017-08-28 15:51:35 +00007133** [[SQLITE_STATUS_SCRATCH_USED]] <dt>SQLITE_STATUS_SCRATCH_USED</dt>
7134** <dd>No longer used.</dd>
drhf7141992008-06-19 00:16:08 +00007135**
drhb706fe52011-05-11 20:54:32 +00007136** [[SQLITE_STATUS_SCRATCH_OVERFLOW]] ^(<dt>SQLITE_STATUS_SCRATCH_OVERFLOW</dt>
drhb2a0f752017-08-28 15:51:35 +00007137** <dd>No longer used.</dd>
drhf7141992008-06-19 00:16:08 +00007138**
drhb2a0f752017-08-28 15:51:35 +00007139** [[SQLITE_STATUS_SCRATCH_SIZE]] <dt>SQLITE_STATUS_SCRATCH_SIZE</dt>
7140** <dd>No longer used.</dd>
drhec424a52008-07-25 15:39:03 +00007141**
drhb706fe52011-05-11 20:54:32 +00007142** [[SQLITE_STATUS_PARSER_STACK]] ^(<dt>SQLITE_STATUS_PARSER_STACK</dt>
drhb02392e2015-10-15 15:28:56 +00007143** <dd>The *pHighwater parameter records the deepest parser stack.
7144** The *pCurrent value is undefined. The *pHighwater value is only
drhd68eee02009-12-11 03:44:18 +00007145** meaningful if SQLite is compiled with [YYTRACKMAXSTACKDEPTH].</dd>)^
drhf7141992008-06-19 00:16:08 +00007146** </dl>
7147**
7148** New status parameters may be added from time to time.
7149*/
7150#define SQLITE_STATUS_MEMORY_USED 0
7151#define SQLITE_STATUS_PAGECACHE_USED 1
7152#define SQLITE_STATUS_PAGECACHE_OVERFLOW 2
drhb2a0f752017-08-28 15:51:35 +00007153#define SQLITE_STATUS_SCRATCH_USED 3 /* NOT USED */
7154#define SQLITE_STATUS_SCRATCH_OVERFLOW 4 /* NOT USED */
drhf7141992008-06-19 00:16:08 +00007155#define SQLITE_STATUS_MALLOC_SIZE 5
drhec424a52008-07-25 15:39:03 +00007156#define SQLITE_STATUS_PARSER_STACK 6
drhe50135e2008-08-05 17:53:22 +00007157#define SQLITE_STATUS_PAGECACHE_SIZE 7
drhb2a0f752017-08-28 15:51:35 +00007158#define SQLITE_STATUS_SCRATCH_SIZE 8 /* NOT USED */
drheafc43b2010-07-26 18:43:40 +00007159#define SQLITE_STATUS_MALLOC_COUNT 9
drhf7141992008-06-19 00:16:08 +00007160
drh633e6d52008-07-28 19:34:53 +00007161/*
drhd68eee02009-12-11 03:44:18 +00007162** CAPI3REF: Database Connection Status
drhd9a0a9a2015-04-14 15:14:06 +00007163** METHOD: sqlite3
drhd1d38482008-10-07 23:46:38 +00007164**
drhd68eee02009-12-11 03:44:18 +00007165** ^This interface is used to retrieve runtime status information
7166** about a single [database connection]. ^The first argument is the
7167** database connection object to be interrogated. ^The second argument
drh63da0892010-03-10 21:42:07 +00007168** is an integer constant, taken from the set of
drhb706fe52011-05-11 20:54:32 +00007169** [SQLITE_DBSTATUS options], that
drh9b8d0272010-08-09 15:44:21 +00007170** determines the parameter to interrogate. The set of
drhb706fe52011-05-11 20:54:32 +00007171** [SQLITE_DBSTATUS options] is likely
drh63da0892010-03-10 21:42:07 +00007172** to grow in future releases of SQLite.
drhd1d38482008-10-07 23:46:38 +00007173**
drhd68eee02009-12-11 03:44:18 +00007174** ^The current value of the requested parameter is written into *pCur
7175** and the highest instantaneous value is written into *pHiwtr. ^If
drhd1d38482008-10-07 23:46:38 +00007176** the resetFlg is true, then the highest instantaneous value is
7177** reset back down to the current value.
7178**
drhee9ff672010-09-03 18:50:48 +00007179** ^The sqlite3_db_status() routine returns SQLITE_OK on success and a
7180** non-zero [error code] on failure.
7181**
drhd1d38482008-10-07 23:46:38 +00007182** See also: [sqlite3_status()] and [sqlite3_stmt_status()].
7183*/
drh9f8da322010-03-10 20:06:37 +00007184int sqlite3_db_status(sqlite3*, int op, int *pCur, int *pHiwtr, int resetFlg);
drhd1d38482008-10-07 23:46:38 +00007185
7186/*
drhd68eee02009-12-11 03:44:18 +00007187** CAPI3REF: Status Parameters for database connections
drhb706fe52011-05-11 20:54:32 +00007188** KEYWORDS: {SQLITE_DBSTATUS options}
drh633e6d52008-07-28 19:34:53 +00007189**
drh6aa5f152009-08-19 15:57:07 +00007190** These constants are the available integer "verbs" that can be passed as
7191** the second argument to the [sqlite3_db_status()] interface.
7192**
7193** New verbs may be added in future releases of SQLite. Existing verbs
7194** might be discontinued. Applications should check the return code from
7195** [sqlite3_db_status()] to make sure that the call worked.
7196** The [sqlite3_db_status()] interface will return a non-zero error code
7197** if a discontinued or unsupported verb is invoked.
drh633e6d52008-07-28 19:34:53 +00007198**
7199** <dl>
drhb706fe52011-05-11 20:54:32 +00007200** [[SQLITE_DBSTATUS_LOOKASIDE_USED]] ^(<dt>SQLITE_DBSTATUS_LOOKASIDE_USED</dt>
drh633e6d52008-07-28 19:34:53 +00007201** <dd>This parameter returns the number of lookaside memory slots currently
drhd68eee02009-12-11 03:44:18 +00007202** checked out.</dd>)^
drh63da0892010-03-10 21:42:07 +00007203**
drhb706fe52011-05-11 20:54:32 +00007204** [[SQLITE_DBSTATUS_LOOKASIDE_HIT]] ^(<dt>SQLITE_DBSTATUS_LOOKASIDE_HIT</dt>
drh0b12e7f2010-12-20 15:51:58 +00007205** <dd>This parameter returns the number malloc attempts that were
7206** satisfied using lookaside memory. Only the high-water value is meaningful;
dan290c9392011-02-01 18:59:34 +00007207** the current value is always zero.)^
drh0b12e7f2010-12-20 15:51:58 +00007208**
drhb706fe52011-05-11 20:54:32 +00007209** [[SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE]]
drh0b12e7f2010-12-20 15:51:58 +00007210** ^(<dt>SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE</dt>
7211** <dd>This parameter returns the number malloc attempts that might have
7212** been satisfied using lookaside memory but failed due to the amount of
7213** memory requested being larger than the lookaside slot size.
7214** Only the high-water value is meaningful;
dan290c9392011-02-01 18:59:34 +00007215** the current value is always zero.)^
drh0b12e7f2010-12-20 15:51:58 +00007216**
drhb706fe52011-05-11 20:54:32 +00007217** [[SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL]]
drh0b12e7f2010-12-20 15:51:58 +00007218** ^(<dt>SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL</dt>
7219** <dd>This parameter returns the number malloc attempts that might have
7220** been satisfied using lookaside memory but failed due to all lookaside
7221** memory already being in use.
7222** Only the high-water value is meaningful;
dan290c9392011-02-01 18:59:34 +00007223** the current value is always zero.)^
drh0b12e7f2010-12-20 15:51:58 +00007224**
drhb706fe52011-05-11 20:54:32 +00007225** [[SQLITE_DBSTATUS_CACHE_USED]] ^(<dt>SQLITE_DBSTATUS_CACHE_USED</dt>
peter.d.reid60ec9142014-09-06 16:39:46 +00007226** <dd>This parameter returns the approximate number of bytes of heap
drh643f35e2010-07-26 11:59:40 +00007227** memory used by all pager caches associated with the database connection.)^
drh63da0892010-03-10 21:42:07 +00007228** ^The highwater mark associated with SQLITE_DBSTATUS_CACHE_USED is always 0.
drh643f35e2010-07-26 11:59:40 +00007229**
dan9c106082016-07-06 18:12:54 +00007230** [[SQLITE_DBSTATUS_CACHE_USED_SHARED]]
7231** ^(<dt>SQLITE_DBSTATUS_CACHE_USED_SHARED</dt>
dan272989b2016-07-06 10:12:02 +00007232** <dd>This parameter is similar to DBSTATUS_CACHE_USED, except that if a
7233** pager cache is shared between two or more connections the bytes of heap
7234** memory used by that pager cache is divided evenly between the attached
7235** connections.)^ In other words, if none of the pager caches associated
7236** with the database connection are shared, this request returns the same
7237** value as DBSTATUS_CACHE_USED. Or, if one or more or the pager caches are
7238** shared, the value returned by this call will be smaller than that returned
7239** by DBSTATUS_CACHE_USED. ^The highwater mark associated with
dan9c106082016-07-06 18:12:54 +00007240** SQLITE_DBSTATUS_CACHE_USED_SHARED is always 0.
dan272989b2016-07-06 10:12:02 +00007241**
drhb706fe52011-05-11 20:54:32 +00007242** [[SQLITE_DBSTATUS_SCHEMA_USED]] ^(<dt>SQLITE_DBSTATUS_SCHEMA_USED</dt>
peter.d.reid60ec9142014-09-06 16:39:46 +00007243** <dd>This parameter returns the approximate number of bytes of heap
drh39539802010-07-28 15:52:09 +00007244** memory used to store the schema for all databases associated
drh643f35e2010-07-26 11:59:40 +00007245** with the connection - main, temp, and any [ATTACH]-ed databases.)^
7246** ^The full amount of memory used by the schemas is reported, even if the
7247** schema memory is shared with other database connections due to
7248** [shared cache mode] being enabled.
7249** ^The highwater mark associated with SQLITE_DBSTATUS_SCHEMA_USED is always 0.
7250**
drhb706fe52011-05-11 20:54:32 +00007251** [[SQLITE_DBSTATUS_STMT_USED]] ^(<dt>SQLITE_DBSTATUS_STMT_USED</dt>
peter.d.reid60ec9142014-09-06 16:39:46 +00007252** <dd>This parameter returns the approximate number of bytes of heap
drh643f35e2010-07-26 11:59:40 +00007253** and lookaside memory used by all prepared statements associated with
7254** the database connection.)^
7255** ^The highwater mark associated with SQLITE_DBSTATUS_STMT_USED is always 0.
drh300c18a2010-07-21 16:16:28 +00007256** </dd>
dan58ca31c2011-09-22 14:41:16 +00007257**
7258** [[SQLITE_DBSTATUS_CACHE_HIT]] ^(<dt>SQLITE_DBSTATUS_CACHE_HIT</dt>
7259** <dd>This parameter returns the number of pager cache hits that have
drh67855872011-10-11 12:39:19 +00007260** occurred.)^ ^The highwater mark associated with SQLITE_DBSTATUS_CACHE_HIT
dan58ca31c2011-09-22 14:41:16 +00007261** is always 0.
7262** </dd>
7263**
7264** [[SQLITE_DBSTATUS_CACHE_MISS]] ^(<dt>SQLITE_DBSTATUS_CACHE_MISS</dt>
7265** <dd>This parameter returns the number of pager cache misses that have
drh67855872011-10-11 12:39:19 +00007266** occurred.)^ ^The highwater mark associated with SQLITE_DBSTATUS_CACHE_MISS
dan58ca31c2011-09-22 14:41:16 +00007267** is always 0.
7268** </dd>
drh9ad3ee42012-03-24 20:06:14 +00007269**
7270** [[SQLITE_DBSTATUS_CACHE_WRITE]] ^(<dt>SQLITE_DBSTATUS_CACHE_WRITE</dt>
7271** <dd>This parameter returns the number of dirty cache entries that have
7272** been written to disk. Specifically, the number of pages written to the
7273** wal file in wal mode databases, or the number of pages written to the
7274** database file in rollback mode databases. Any pages written as part of
7275** transaction rollback or database recovery operations are not included.
7276** If an IO or other error occurs while writing a page to disk, the effect
drhd1876552012-05-11 15:31:47 +00007277** on subsequent SQLITE_DBSTATUS_CACHE_WRITE requests is undefined.)^ ^The
drh9ad3ee42012-03-24 20:06:14 +00007278** highwater mark associated with SQLITE_DBSTATUS_CACHE_WRITE is always 0.
7279** </dd>
drh648e2642013-07-11 15:03:32 +00007280**
7281** [[SQLITE_DBSTATUS_DEFERRED_FKS]] ^(<dt>SQLITE_DBSTATUS_DEFERRED_FKS</dt>
drh0b221012013-08-02 13:31:31 +00007282** <dd>This parameter returns zero for the current value if and only if
7283** all foreign key constraints (deferred or immediate) have been
7284** resolved.)^ ^The highwater mark is always 0.
drh648e2642013-07-11 15:03:32 +00007285** </dd>
drh633e6d52008-07-28 19:34:53 +00007286** </dl>
7287*/
drh0b12e7f2010-12-20 15:51:58 +00007288#define SQLITE_DBSTATUS_LOOKASIDE_USED 0
7289#define SQLITE_DBSTATUS_CACHE_USED 1
7290#define SQLITE_DBSTATUS_SCHEMA_USED 2
7291#define SQLITE_DBSTATUS_STMT_USED 3
7292#define SQLITE_DBSTATUS_LOOKASIDE_HIT 4
7293#define SQLITE_DBSTATUS_LOOKASIDE_MISS_SIZE 5
7294#define SQLITE_DBSTATUS_LOOKASIDE_MISS_FULL 6
dan58ca31c2011-09-22 14:41:16 +00007295#define SQLITE_DBSTATUS_CACHE_HIT 7
7296#define SQLITE_DBSTATUS_CACHE_MISS 8
drh9ad3ee42012-03-24 20:06:14 +00007297#define SQLITE_DBSTATUS_CACHE_WRITE 9
drh648e2642013-07-11 15:03:32 +00007298#define SQLITE_DBSTATUS_DEFERRED_FKS 10
dan9c106082016-07-06 18:12:54 +00007299#define SQLITE_DBSTATUS_CACHE_USED_SHARED 11
dan272989b2016-07-06 10:12:02 +00007300#define SQLITE_DBSTATUS_MAX 11 /* Largest defined DBSTATUS */
drhed13d982008-01-31 14:43:24 +00007301
drhd1d38482008-10-07 23:46:38 +00007302
7303/*
drhd68eee02009-12-11 03:44:18 +00007304** CAPI3REF: Prepared Statement Status
drhd9a0a9a2015-04-14 15:14:06 +00007305** METHOD: sqlite3_stmt
drhd1d38482008-10-07 23:46:38 +00007306**
drhd68eee02009-12-11 03:44:18 +00007307** ^(Each prepared statement maintains various
drhb706fe52011-05-11 20:54:32 +00007308** [SQLITE_STMTSTATUS counters] that measure the number
drh9be37f62009-12-12 23:57:36 +00007309** of times it has performed specific operations.)^ These counters can
drhd1d38482008-10-07 23:46:38 +00007310** be used to monitor the performance characteristics of the prepared
7311** statements. For example, if the number of table steps greatly exceeds
7312** the number of table searches or result rows, that would tend to indicate
7313** that the prepared statement is using a full table scan rather than
7314** an index.
7315**
drhd68eee02009-12-11 03:44:18 +00007316** ^(This interface is used to retrieve and reset counter values from
drhd1d38482008-10-07 23:46:38 +00007317** a [prepared statement]. The first argument is the prepared statement
7318** object to be interrogated. The second argument
drhb706fe52011-05-11 20:54:32 +00007319** is an integer code for a specific [SQLITE_STMTSTATUS counter]
drhd68eee02009-12-11 03:44:18 +00007320** to be interrogated.)^
7321** ^The current value of the requested counter is returned.
7322** ^If the resetFlg is true, then the counter is reset to zero after this
drhd1d38482008-10-07 23:46:38 +00007323** interface call returns.
7324**
7325** See also: [sqlite3_status()] and [sqlite3_db_status()].
7326*/
drh9f8da322010-03-10 20:06:37 +00007327int sqlite3_stmt_status(sqlite3_stmt*, int op,int resetFlg);
drhd1d38482008-10-07 23:46:38 +00007328
7329/*
drhd68eee02009-12-11 03:44:18 +00007330** CAPI3REF: Status Parameters for prepared statements
drhb706fe52011-05-11 20:54:32 +00007331** KEYWORDS: {SQLITE_STMTSTATUS counter} {SQLITE_STMTSTATUS counters}
drhd1d38482008-10-07 23:46:38 +00007332**
7333** These preprocessor macros define integer codes that name counter
7334** values associated with the [sqlite3_stmt_status()] interface.
7335** The meanings of the various counters are as follows:
7336**
7337** <dl>
drhb706fe52011-05-11 20:54:32 +00007338** [[SQLITE_STMTSTATUS_FULLSCAN_STEP]] <dt>SQLITE_STMTSTATUS_FULLSCAN_STEP</dt>
drhd68eee02009-12-11 03:44:18 +00007339** <dd>^This is the number of times that SQLite has stepped forward in
drhd1d38482008-10-07 23:46:38 +00007340** a table as part of a full table scan. Large numbers for this counter
7341** may indicate opportunities for performance improvement through
7342** careful use of indices.</dd>
7343**
drhb706fe52011-05-11 20:54:32 +00007344** [[SQLITE_STMTSTATUS_SORT]] <dt>SQLITE_STMTSTATUS_SORT</dt>
drhd68eee02009-12-11 03:44:18 +00007345** <dd>^This is the number of sort operations that have occurred.
drhd1d38482008-10-07 23:46:38 +00007346** A non-zero value in this counter may indicate an opportunity to
7347** improvement performance through careful use of indices.</dd>
7348**
drhb706fe52011-05-11 20:54:32 +00007349** [[SQLITE_STMTSTATUS_AUTOINDEX]] <dt>SQLITE_STMTSTATUS_AUTOINDEX</dt>
drha21a64d2010-04-06 22:33:55 +00007350** <dd>^This is the number of rows inserted into transient indices that
7351** were created automatically in order to help joins run faster.
7352** A non-zero value in this counter may indicate an opportunity to
7353** improvement performance by adding permanent indices that do not
7354** need to be reinitialized each time the statement is run.</dd>
drhbf159fa2013-06-25 22:01:22 +00007355**
7356** [[SQLITE_STMTSTATUS_VM_STEP]] <dt>SQLITE_STMTSTATUS_VM_STEP</dt>
7357** <dd>^This is the number of virtual machine operations executed
7358** by the prepared statement if that number is less than or equal
7359** to 2147483647. The number of virtual machine operations can be
7360** used as a proxy for the total work done by the prepared statement.
7361** If the number of virtual machine operations exceeds 2147483647
7362** then the value returned by this statement status code is undefined.
drh3528f6b2017-05-31 16:21:54 +00007363**
drh00d11d42017-06-29 12:49:18 +00007364** [[SQLITE_STMTSTATUS_REPREPARE]] <dt>SQLITE_STMTSTATUS_REPREPARE</dt>
7365** <dd>^This is the number of times that the prepare statement has been
7366** automatically regenerated due to schema changes or change to
7367** [bound parameters] that might affect the query plan.
7368**
7369** [[SQLITE_STMTSTATUS_RUN]] <dt>SQLITE_STMTSTATUS_RUN</dt>
7370** <dd>^This is the number of times that the prepared statement has
7371** been run. A single "run" for the purposes of this counter is one
7372** or more calls to [sqlite3_step()] followed by a call to [sqlite3_reset()].
7373** The counter is incremented on the first [sqlite3_step()] call of each
7374** cycle.
7375**
drh3528f6b2017-05-31 16:21:54 +00007376** [[SQLITE_STMTSTATUS_MEMUSED]] <dt>SQLITE_STMTSTATUS_MEMUSED</dt>
7377** <dd>^This is the approximate number of bytes of heap memory
drhcdbb1262017-05-31 17:30:08 +00007378** used to store the prepared statement. ^This value is not actually
7379** a counter, and so the resetFlg parameter to sqlite3_stmt_status()
7380** is ignored when the opcode is SQLITE_STMTSTATUS_MEMUSED.
drhbf159fa2013-06-25 22:01:22 +00007381** </dd>
drhd1d38482008-10-07 23:46:38 +00007382** </dl>
7383*/
7384#define SQLITE_STMTSTATUS_FULLSCAN_STEP 1
7385#define SQLITE_STMTSTATUS_SORT 2
drha21a64d2010-04-06 22:33:55 +00007386#define SQLITE_STMTSTATUS_AUTOINDEX 3
drhbf159fa2013-06-25 22:01:22 +00007387#define SQLITE_STMTSTATUS_VM_STEP 4
drh00d11d42017-06-29 12:49:18 +00007388#define SQLITE_STMTSTATUS_REPREPARE 5
7389#define SQLITE_STMTSTATUS_RUN 6
7390#define SQLITE_STMTSTATUS_MEMUSED 99
drhd1d38482008-10-07 23:46:38 +00007391
drhed13d982008-01-31 14:43:24 +00007392/*
drh21614742008-11-18 19:18:08 +00007393** CAPI3REF: Custom Page Cache Object
drh21614742008-11-18 19:18:08 +00007394**
danielk1977bc2ca9e2008-11-13 14:28:28 +00007395** The sqlite3_pcache type is opaque. It is implemented by
7396** the pluggable module. The SQLite core has no knowledge of
7397** its size or internal structure and never deals with the
7398** sqlite3_pcache object except by holding and passing pointers
7399** to the object.
drh21614742008-11-18 19:18:08 +00007400**
drh81ef0f92011-11-13 21:44:03 +00007401** See [sqlite3_pcache_methods2] for additional information.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007402*/
7403typedef struct sqlite3_pcache sqlite3_pcache;
7404
7405/*
drh81ef0f92011-11-13 21:44:03 +00007406** CAPI3REF: Custom Page Cache Object
7407**
7408** The sqlite3_pcache_page object represents a single page in the
7409** page cache. The page cache will allocate instances of this
7410** object. Various methods of the page cache use pointers to instances
7411** of this object as parameters or as their return value.
7412**
7413** See [sqlite3_pcache_methods2] for additional information.
7414*/
7415typedef struct sqlite3_pcache_page sqlite3_pcache_page;
7416struct sqlite3_pcache_page {
7417 void *pBuf; /* The content of the page */
7418 void *pExtra; /* Extra information associated with the page */
7419};
7420
7421/*
drh21614742008-11-18 19:18:08 +00007422** CAPI3REF: Application Defined Page Cache.
drh67fba282009-08-26 00:26:51 +00007423** KEYWORDS: {page cache}
danielk1977bc2ca9e2008-11-13 14:28:28 +00007424**
drhe5c40b12011-11-09 00:06:05 +00007425** ^(The [sqlite3_config]([SQLITE_CONFIG_PCACHE2], ...) interface can
danielk1977bc2ca9e2008-11-13 14:28:28 +00007426** register an alternative page cache implementation by passing in an
drhe5c40b12011-11-09 00:06:05 +00007427** instance of the sqlite3_pcache_methods2 structure.)^
drhcee82962010-09-09 15:48:20 +00007428** In many applications, most of the heap memory allocated by
7429** SQLite is used for the page cache.
7430** By implementing a
7431** custom page cache using this API, an application can better control
7432** the amount of memory consumed by SQLite, the way in which
drh67fba282009-08-26 00:26:51 +00007433** that memory is allocated and released, and the policies used to
danielk1977bc2ca9e2008-11-13 14:28:28 +00007434** determine exactly which parts of a database file are cached and for
7435** how long.
7436**
drhcee82962010-09-09 15:48:20 +00007437** The alternative page cache mechanism is an
7438** extreme measure that is only needed by the most demanding applications.
7439** The built-in page cache is recommended for most uses.
7440**
drhe5c40b12011-11-09 00:06:05 +00007441** ^(The contents of the sqlite3_pcache_methods2 structure are copied to an
drh67fba282009-08-26 00:26:51 +00007442** internal buffer by SQLite within the call to [sqlite3_config]. Hence
7443** the application may discard the parameter after the call to
drhd68eee02009-12-11 03:44:18 +00007444** [sqlite3_config()] returns.)^
danielk1977bc2ca9e2008-11-13 14:28:28 +00007445**
drhb706fe52011-05-11 20:54:32 +00007446** [[the xInit() page cache method]]
drhcee82962010-09-09 15:48:20 +00007447** ^(The xInit() method is called once for each effective
7448** call to [sqlite3_initialize()])^
drh9be37f62009-12-12 23:57:36 +00007449** (usually only once during the lifetime of the process). ^(The xInit()
drh2faf5f52011-12-30 15:17:47 +00007450** method is passed a copy of the sqlite3_pcache_methods2.pArg value.)^
drhcee82962010-09-09 15:48:20 +00007451** The intent of the xInit() method is to set up global data structures
drh9be37f62009-12-12 23:57:36 +00007452** required by the custom page cache implementation.
drhf759bb82010-09-09 18:25:34 +00007453** ^(If the xInit() method is NULL, then the
7454** built-in default page cache is used instead of the application defined
7455** page cache.)^
shane7c7c3112009-08-17 15:31:23 +00007456**
drhb706fe52011-05-11 20:54:32 +00007457** [[the xShutdown() page cache method]]
drhcee82962010-09-09 15:48:20 +00007458** ^The xShutdown() method is called by [sqlite3_shutdown()].
7459** It can be used to clean up
shane7c7c3112009-08-17 15:31:23 +00007460** any outstanding resources before process shutdown, if required.
drhcee82962010-09-09 15:48:20 +00007461** ^The xShutdown() method may be NULL.
shane7c7c3112009-08-17 15:31:23 +00007462**
drhcee82962010-09-09 15:48:20 +00007463** ^SQLite automatically serializes calls to the xInit method,
7464** so the xInit method need not be threadsafe. ^The
shane7c7c3112009-08-17 15:31:23 +00007465** xShutdown method is only called from [sqlite3_shutdown()] so it does
7466** not need to be threadsafe either. All other methods must be threadsafe
7467** in multithreaded applications.
7468**
drhd68eee02009-12-11 03:44:18 +00007469** ^SQLite will never invoke xInit() more than once without an intervening
shane7c7c3112009-08-17 15:31:23 +00007470** call to xShutdown().
danielk1977bc2ca9e2008-11-13 14:28:28 +00007471**
drhb706fe52011-05-11 20:54:32 +00007472** [[the xCreate() page cache methods]]
drhcee82962010-09-09 15:48:20 +00007473** ^SQLite invokes the xCreate() method to construct a new cache instance.
7474** SQLite will typically create one cache instance for each open database file,
drhd68eee02009-12-11 03:44:18 +00007475** though this is not guaranteed. ^The
drh50cc5c22011-12-30 16:16:56 +00007476** first parameter, szPage, is the size in bytes of the pages that must
drhe5c40b12011-11-09 00:06:05 +00007477** be allocated by the cache. ^szPage will always a power of two. ^The
7478** second parameter szExtra is a number of bytes of extra storage
7479** associated with each page cache entry. ^The szExtra parameter will
7480** a number less than 250. SQLite will use the
7481** extra szExtra bytes on each page to store metadata about the underlying
7482** database page on disk. The value passed into szExtra depends
drh67fba282009-08-26 00:26:51 +00007483** on the SQLite version, the target platform, and how SQLite was compiled.
drhe5c40b12011-11-09 00:06:05 +00007484** ^The third argument to xCreate(), bPurgeable, is true if the cache being
7485** created will be used to cache database pages of a file stored on disk, or
drhcee82962010-09-09 15:48:20 +00007486** false if it is used for an in-memory database. The cache implementation
drh67fba282009-08-26 00:26:51 +00007487** does not have to do anything special based with the value of bPurgeable;
drhd68eee02009-12-11 03:44:18 +00007488** it is purely advisory. ^On a cache where bPurgeable is false, SQLite will
drh67fba282009-08-26 00:26:51 +00007489** never invoke xUnpin() except to deliberately delete a page.
drhcee82962010-09-09 15:48:20 +00007490** ^In other words, calls to xUnpin() on a cache with bPurgeable set to
7491** false will always have the "discard" flag set to true.
7492** ^Hence, a cache created with bPurgeable false will
drh67fba282009-08-26 00:26:51 +00007493** never contain any unpinned pages.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007494**
drhb706fe52011-05-11 20:54:32 +00007495** [[the xCachesize() page cache method]]
drhd68eee02009-12-11 03:44:18 +00007496** ^(The xCachesize() method may be called at any time by SQLite to set the
danielk1977bc2ca9e2008-11-13 14:28:28 +00007497** suggested maximum cache-size (number of pages stored by) the cache
7498** instance passed as the first argument. This is the value configured using
drhcee82962010-09-09 15:48:20 +00007499** the SQLite "[PRAGMA cache_size]" command.)^ As with the bPurgeable
drh7a98b852009-12-13 23:03:01 +00007500** parameter, the implementation is not required to do anything with this
drh67fba282009-08-26 00:26:51 +00007501** value; it is advisory only.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007502**
drhb706fe52011-05-11 20:54:32 +00007503** [[the xPagecount() page cache methods]]
drhf759bb82010-09-09 18:25:34 +00007504** The xPagecount() method must return the number of pages currently
drhcee82962010-09-09 15:48:20 +00007505** stored in the cache, both pinned and unpinned.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007506**
drhb706fe52011-05-11 20:54:32 +00007507** [[the xFetch() page cache methods]]
drhf759bb82010-09-09 18:25:34 +00007508** The xFetch() method locates a page in the cache and returns a pointer to
drhe5c40b12011-11-09 00:06:05 +00007509** an sqlite3_pcache_page object associated with that page, or a NULL pointer.
7510** The pBuf element of the returned sqlite3_pcache_page object will be a
7511** pointer to a buffer of szPage bytes used to store the content of a
7512** single database page. The pExtra element of sqlite3_pcache_page will be
7513** a pointer to the szExtra bytes of extra storage that SQLite has requested
7514** for each entry in the page cache.
7515**
7516** The page to be fetched is determined by the key. ^The minimum key value
7517** is 1. After it has been retrieved using xFetch, the page is considered
7518** to be "pinned".
danielk1977bc2ca9e2008-11-13 14:28:28 +00007519**
drhf759bb82010-09-09 18:25:34 +00007520** If the requested page is already in the page cache, then the page cache
drh67fba282009-08-26 00:26:51 +00007521** implementation must return a pointer to the page buffer with its content
drhf759bb82010-09-09 18:25:34 +00007522** intact. If the requested page is not already in the cache, then the
drh94e7bd52011-01-14 15:17:55 +00007523** cache implementation should use the value of the createFlag
drhf759bb82010-09-09 18:25:34 +00007524** parameter to help it determined what action to take:
danielk1977bc2ca9e2008-11-13 14:28:28 +00007525**
7526** <table border=1 width=85% align=center>
mistachkin48864df2013-03-21 21:20:32 +00007527** <tr><th> createFlag <th> Behavior when page is not already in cache
drh67fba282009-08-26 00:26:51 +00007528** <tr><td> 0 <td> Do not allocate a new page. Return NULL.
7529** <tr><td> 1 <td> Allocate a new page if it easy and convenient to do so.
7530** Otherwise return NULL.
7531** <tr><td> 2 <td> Make every effort to allocate a new page. Only return
7532** NULL if allocating a new page is effectively impossible.
drhf759bb82010-09-09 18:25:34 +00007533** </table>
danielk1977bc2ca9e2008-11-13 14:28:28 +00007534**
drhf759bb82010-09-09 18:25:34 +00007535** ^(SQLite will normally invoke xFetch() with a createFlag of 0 or 1. SQLite
7536** will only use a createFlag of 2 after a prior call with a createFlag of 1
7537** failed.)^ In between the to xFetch() calls, SQLite may
drh67fba282009-08-26 00:26:51 +00007538** attempt to unpin one or more cache pages by spilling the content of
drhf759bb82010-09-09 18:25:34 +00007539** pinned pages to disk and synching the operating system disk cache.
drh67fba282009-08-26 00:26:51 +00007540**
drhb706fe52011-05-11 20:54:32 +00007541** [[the xUnpin() page cache method]]
drhd68eee02009-12-11 03:44:18 +00007542** ^xUnpin() is called by SQLite with a pointer to a currently pinned page
drhf759bb82010-09-09 18:25:34 +00007543** as its second argument. If the third parameter, discard, is non-zero,
7544** then the page must be evicted from the cache.
7545** ^If the discard parameter is
drhcee82962010-09-09 15:48:20 +00007546** zero, then the page may be discarded or retained at the discretion of
drhf759bb82010-09-09 18:25:34 +00007547** page cache implementation. ^The page cache implementation
drh67fba282009-08-26 00:26:51 +00007548** may choose to evict unpinned pages at any time.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007549**
drhf759bb82010-09-09 18:25:34 +00007550** The cache must not perform any reference counting. A single
danielk1977bc2ca9e2008-11-13 14:28:28 +00007551** call to xUnpin() unpins the page regardless of the number of prior calls
drhf759bb82010-09-09 18:25:34 +00007552** to xFetch().
danielk1977bc2ca9e2008-11-13 14:28:28 +00007553**
drhb706fe52011-05-11 20:54:32 +00007554** [[the xRekey() page cache methods]]
drhf759bb82010-09-09 18:25:34 +00007555** The xRekey() method is used to change the key value associated with the
7556** page passed as the second argument. If the cache
drhcee82962010-09-09 15:48:20 +00007557** previously contains an entry associated with newKey, it must be
drhd68eee02009-12-11 03:44:18 +00007558** discarded. ^Any prior cache entry associated with newKey is guaranteed not
drhb232c232008-11-19 01:20:26 +00007559** to be pinned.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007560**
drhf759bb82010-09-09 18:25:34 +00007561** When SQLite calls the xTruncate() method, the cache must discard all
danielk1977bc2ca9e2008-11-13 14:28:28 +00007562** existing cache entries with page numbers (keys) greater than or equal
drhf759bb82010-09-09 18:25:34 +00007563** to the value of the iLimit parameter passed to xTruncate(). If any
danielk1977bc2ca9e2008-11-13 14:28:28 +00007564** of these pages are pinned, they are implicitly unpinned, meaning that
7565** they can be safely discarded.
7566**
drhb706fe52011-05-11 20:54:32 +00007567** [[the xDestroy() page cache method]]
drhd68eee02009-12-11 03:44:18 +00007568** ^The xDestroy() method is used to delete a cache allocated by xCreate().
7569** All resources associated with the specified cache should be freed. ^After
drh21614742008-11-18 19:18:08 +00007570** calling the xDestroy() method, SQLite considers the [sqlite3_pcache*]
drh2faf5f52011-12-30 15:17:47 +00007571** handle invalid, and will not use it with any other sqlite3_pcache_methods2
danielk1977bc2ca9e2008-11-13 14:28:28 +00007572** functions.
drh09419b42011-11-16 19:29:17 +00007573**
7574** [[the xShrink() page cache method]]
7575** ^SQLite invokes the xShrink() method when it wants the page cache to
7576** free up as much of heap memory as possible. The page cache implementation
drh710869d2012-01-13 16:48:07 +00007577** is not obligated to free any memory, but well-behaved implementations should
drh09419b42011-11-16 19:29:17 +00007578** do their best.
danielk1977bc2ca9e2008-11-13 14:28:28 +00007579*/
drhe5c40b12011-11-09 00:06:05 +00007580typedef struct sqlite3_pcache_methods2 sqlite3_pcache_methods2;
drhe5c40b12011-11-09 00:06:05 +00007581struct sqlite3_pcache_methods2 {
drh81ef0f92011-11-13 21:44:03 +00007582 int iVersion;
drhe5c40b12011-11-09 00:06:05 +00007583 void *pArg;
7584 int (*xInit)(void*);
7585 void (*xShutdown)(void*);
7586 sqlite3_pcache *(*xCreate)(int szPage, int szExtra, int bPurgeable);
7587 void (*xCachesize)(sqlite3_pcache*, int nCachesize);
7588 int (*xPagecount)(sqlite3_pcache*);
7589 sqlite3_pcache_page *(*xFetch)(sqlite3_pcache*, unsigned key, int createFlag);
7590 void (*xUnpin)(sqlite3_pcache*, sqlite3_pcache_page*, int discard);
7591 void (*xRekey)(sqlite3_pcache*, sqlite3_pcache_page*,
7592 unsigned oldKey, unsigned newKey);
7593 void (*xTruncate)(sqlite3_pcache*, unsigned iLimit);
7594 void (*xDestroy)(sqlite3_pcache*);
drh09419b42011-11-16 19:29:17 +00007595 void (*xShrink)(sqlite3_pcache*);
drhe5c40b12011-11-09 00:06:05 +00007596};
7597
7598/*
7599** This is the obsolete pcache_methods object that has now been replaced
7600** by sqlite3_pcache_methods2. This object is not used by SQLite. It is
7601** retained in the header file for backwards compatibility only.
7602*/
danielk1977bc2ca9e2008-11-13 14:28:28 +00007603typedef struct sqlite3_pcache_methods sqlite3_pcache_methods;
7604struct sqlite3_pcache_methods {
7605 void *pArg;
7606 int (*xInit)(void*);
7607 void (*xShutdown)(void*);
7608 sqlite3_pcache *(*xCreate)(int szPage, int bPurgeable);
7609 void (*xCachesize)(sqlite3_pcache*, int nCachesize);
7610 int (*xPagecount)(sqlite3_pcache*);
7611 void *(*xFetch)(sqlite3_pcache*, unsigned key, int createFlag);
7612 void (*xUnpin)(sqlite3_pcache*, void*, int discard);
7613 void (*xRekey)(sqlite3_pcache*, void*, unsigned oldKey, unsigned newKey);
7614 void (*xTruncate)(sqlite3_pcache*, unsigned iLimit);
7615 void (*xDestroy)(sqlite3_pcache*);
7616};
7617
dan22e21ff2011-11-08 20:08:44 +00007618
danielk1977bc2ca9e2008-11-13 14:28:28 +00007619/*
drh27b3b842009-02-03 18:25:13 +00007620** CAPI3REF: Online Backup Object
drh27b3b842009-02-03 18:25:13 +00007621**
7622** The sqlite3_backup object records state information about an ongoing
drhd68eee02009-12-11 03:44:18 +00007623** online backup operation. ^The sqlite3_backup object is created by
drh27b3b842009-02-03 18:25:13 +00007624** a call to [sqlite3_backup_init()] and is destroyed by a call to
7625** [sqlite3_backup_finish()].
drh52224a72009-02-10 13:41:42 +00007626**
7627** See Also: [Using the SQLite Online Backup API]
drh27b3b842009-02-03 18:25:13 +00007628*/
7629typedef struct sqlite3_backup sqlite3_backup;
7630
7631/*
danielk197704103022009-02-03 16:51:24 +00007632** CAPI3REF: Online Backup API.
danielk197704103022009-02-03 16:51:24 +00007633**
drhd68eee02009-12-11 03:44:18 +00007634** The backup API copies the content of one database into another.
7635** It is useful either for creating backups of databases or
danielk197704103022009-02-03 16:51:24 +00007636** for copying in-memory databases to or from persistent files.
7637**
drh52224a72009-02-10 13:41:42 +00007638** See Also: [Using the SQLite Online Backup API]
7639**
drh230bd632010-12-16 20:35:09 +00007640** ^SQLite holds a write transaction open on the destination database file
7641** for the duration of the backup operation.
7642** ^The source database is read-locked only while it is being read;
7643** it is not locked continuously for the entire backup operation.
7644** ^Thus, the backup may be performed on a live source database without
7645** preventing other database connections from
drhdf6473a2009-12-13 22:20:08 +00007646** reading or writing to the source database while the backup is underway.
danielk197704103022009-02-03 16:51:24 +00007647**
drhd68eee02009-12-11 03:44:18 +00007648** ^(To perform a backup operation:
danielk197704103022009-02-03 16:51:24 +00007649** <ol>
drh62b5d2d2009-02-03 18:47:22 +00007650** <li><b>sqlite3_backup_init()</b> is called once to initialize the
7651** backup,
7652** <li><b>sqlite3_backup_step()</b> is called one or more times to transfer
danielk197704103022009-02-03 16:51:24 +00007653** the data between the two databases, and finally
drh62b5d2d2009-02-03 18:47:22 +00007654** <li><b>sqlite3_backup_finish()</b> is called to release all resources
danielk197704103022009-02-03 16:51:24 +00007655** associated with the backup operation.
drhd68eee02009-12-11 03:44:18 +00007656** </ol>)^
danielk197704103022009-02-03 16:51:24 +00007657** There should be exactly one call to sqlite3_backup_finish() for each
7658** successful call to sqlite3_backup_init().
7659**
drhb706fe52011-05-11 20:54:32 +00007660** [[sqlite3_backup_init()]] <b>sqlite3_backup_init()</b>
danielk197704103022009-02-03 16:51:24 +00007661**
drhd68eee02009-12-11 03:44:18 +00007662** ^The D and N arguments to sqlite3_backup_init(D,N,S,M) are the
7663** [database connection] associated with the destination database
7664** and the database name, respectively.
7665** ^The database name is "main" for the main database, "temp" for the
7666** temporary database, or the name specified after the AS keyword in
7667** an [ATTACH] statement for an attached database.
7668** ^The S and M arguments passed to
7669** sqlite3_backup_init(D,N,S,M) identify the [database connection]
7670** and database name of the source database, respectively.
7671** ^The source and destination [database connections] (parameters S and D)
drhcd2f58b2010-12-17 00:59:59 +00007672** must be different or else sqlite3_backup_init(D,N,S,M) will fail with
drhd68eee02009-12-11 03:44:18 +00007673** an error.
danielk197704103022009-02-03 16:51:24 +00007674**
drh73a6bb52016-04-04 18:04:56 +00007675** ^A call to sqlite3_backup_init() will fail, returning NULL, if
dan8ac1a672014-11-13 14:30:56 +00007676** there is already a read or read-write transaction open on the
7677** destination database.
7678**
drhd68eee02009-12-11 03:44:18 +00007679** ^If an error occurs within sqlite3_backup_init(D,N,S,M), then NULL is
drhcd2f58b2010-12-17 00:59:59 +00007680** returned and an error code and error message are stored in the
drhd68eee02009-12-11 03:44:18 +00007681** destination [database connection] D.
7682** ^The error code and message for the failed call to sqlite3_backup_init()
7683** can be retrieved using the [sqlite3_errcode()], [sqlite3_errmsg()], and/or
7684** [sqlite3_errmsg16()] functions.
7685** ^A successful call to sqlite3_backup_init() returns a pointer to an
7686** [sqlite3_backup] object.
7687** ^The [sqlite3_backup] object may be used with the sqlite3_backup_step() and
danielk197704103022009-02-03 16:51:24 +00007688** sqlite3_backup_finish() functions to perform the specified backup
7689** operation.
7690**
drhb706fe52011-05-11 20:54:32 +00007691** [[sqlite3_backup_step()]] <b>sqlite3_backup_step()</b>
danielk197704103022009-02-03 16:51:24 +00007692**
drhd68eee02009-12-11 03:44:18 +00007693** ^Function sqlite3_backup_step(B,N) will copy up to N pages between
7694** the source and destination databases specified by [sqlite3_backup] object B.
drh9be37f62009-12-12 23:57:36 +00007695** ^If N is negative, all remaining source pages are copied.
drhd68eee02009-12-11 03:44:18 +00007696** ^If sqlite3_backup_step(B,N) successfully copies N pages and there
drh230bd632010-12-16 20:35:09 +00007697** are still more pages to be copied, then the function returns [SQLITE_OK].
drhd68eee02009-12-11 03:44:18 +00007698** ^If sqlite3_backup_step(B,N) successfully finishes copying all pages
7699** from source to destination, then it returns [SQLITE_DONE].
7700** ^If an error occurs while running sqlite3_backup_step(B,N),
7701** then an [error code] is returned. ^As well as [SQLITE_OK] and
drh62b5d2d2009-02-03 18:47:22 +00007702** [SQLITE_DONE], a call to sqlite3_backup_step() may return [SQLITE_READONLY],
7703** [SQLITE_NOMEM], [SQLITE_BUSY], [SQLITE_LOCKED], or an
7704** [SQLITE_IOERR_ACCESS | SQLITE_IOERR_XXX] extended error code.
danielk197704103022009-02-03 16:51:24 +00007705**
drh3289c5e2010-05-05 16:23:26 +00007706** ^(The sqlite3_backup_step() might return [SQLITE_READONLY] if
7707** <ol>
7708** <li> the destination database was opened read-only, or
7709** <li> the destination database is using write-ahead-log journaling
7710** and the destination and source page sizes differ, or
drhcd2f58b2010-12-17 00:59:59 +00007711** <li> the destination database is an in-memory database and the
drh3289c5e2010-05-05 16:23:26 +00007712** destination and source page sizes differ.
7713** </ol>)^
danielk197704103022009-02-03 16:51:24 +00007714**
drhd68eee02009-12-11 03:44:18 +00007715** ^If sqlite3_backup_step() cannot obtain a required file-system lock, then
drh62b5d2d2009-02-03 18:47:22 +00007716** the [sqlite3_busy_handler | busy-handler function]
drhd68eee02009-12-11 03:44:18 +00007717** is invoked (if one is specified). ^If the
danielk197704103022009-02-03 16:51:24 +00007718** busy-handler returns non-zero before the lock is available, then
drhd68eee02009-12-11 03:44:18 +00007719** [SQLITE_BUSY] is returned to the caller. ^In this case the call to
7720** sqlite3_backup_step() can be retried later. ^If the source
drh62b5d2d2009-02-03 18:47:22 +00007721** [database connection]
danielk197704103022009-02-03 16:51:24 +00007722** is being used to write to the source database when sqlite3_backup_step()
drhd68eee02009-12-11 03:44:18 +00007723** is called, then [SQLITE_LOCKED] is returned immediately. ^Again, in this
7724** case the call to sqlite3_backup_step() can be retried later on. ^(If
drh62b5d2d2009-02-03 18:47:22 +00007725** [SQLITE_IOERR_ACCESS | SQLITE_IOERR_XXX], [SQLITE_NOMEM], or
7726** [SQLITE_READONLY] is returned, then
danielk197704103022009-02-03 16:51:24 +00007727** there is no point in retrying the call to sqlite3_backup_step(). These
drhd68eee02009-12-11 03:44:18 +00007728** errors are considered fatal.)^ The application must accept
danielk197704103022009-02-03 16:51:24 +00007729** that the backup operation has failed and pass the backup operation handle
7730** to the sqlite3_backup_finish() to release associated resources.
7731**
drhd68eee02009-12-11 03:44:18 +00007732** ^The first call to sqlite3_backup_step() obtains an exclusive lock
7733** on the destination file. ^The exclusive lock is not released until either
danielk197704103022009-02-03 16:51:24 +00007734** sqlite3_backup_finish() is called or the backup operation is complete
drhd68eee02009-12-11 03:44:18 +00007735** and sqlite3_backup_step() returns [SQLITE_DONE]. ^Every call to
7736** sqlite3_backup_step() obtains a [shared lock] on the source database that
7737** lasts for the duration of the sqlite3_backup_step() call.
7738** ^Because the source database is not locked between calls to
7739** sqlite3_backup_step(), the source database may be modified mid-way
7740** through the backup process. ^If the source database is modified by an
danielk197704103022009-02-03 16:51:24 +00007741** external process or via a database connection other than the one being
drhd68eee02009-12-11 03:44:18 +00007742** used by the backup operation, then the backup will be automatically
7743** restarted by the next call to sqlite3_backup_step(). ^If the source
danielk197704103022009-02-03 16:51:24 +00007744** database is modified by the using the same database connection as is used
drhd68eee02009-12-11 03:44:18 +00007745** by the backup operation, then the backup database is automatically
danielk197704103022009-02-03 16:51:24 +00007746** updated at the same time.
7747**
drhb706fe52011-05-11 20:54:32 +00007748** [[sqlite3_backup_finish()]] <b>sqlite3_backup_finish()</b>
danielk197704103022009-02-03 16:51:24 +00007749**
drhd68eee02009-12-11 03:44:18 +00007750** When sqlite3_backup_step() has returned [SQLITE_DONE], or when the
7751** application wishes to abandon the backup operation, the application
7752** should destroy the [sqlite3_backup] by passing it to sqlite3_backup_finish().
7753** ^The sqlite3_backup_finish() interfaces releases all
7754** resources associated with the [sqlite3_backup] object.
7755** ^If sqlite3_backup_step() has not yet returned [SQLITE_DONE], then any
7756** active write-transaction on the destination database is rolled back.
7757** The [sqlite3_backup] object is invalid
danielk197704103022009-02-03 16:51:24 +00007758** and may not be used following a call to sqlite3_backup_finish().
7759**
drhd68eee02009-12-11 03:44:18 +00007760** ^The value returned by sqlite3_backup_finish is [SQLITE_OK] if no
7761** sqlite3_backup_step() errors occurred, regardless or whether or not
7762** sqlite3_backup_step() completed.
7763** ^If an out-of-memory condition or IO error occurred during any prior
7764** sqlite3_backup_step() call on the same [sqlite3_backup] object, then
7765** sqlite3_backup_finish() returns the corresponding [error code].
danielk197704103022009-02-03 16:51:24 +00007766**
drhd68eee02009-12-11 03:44:18 +00007767** ^A return of [SQLITE_BUSY] or [SQLITE_LOCKED] from sqlite3_backup_step()
7768** is not a permanent error and does not affect the return value of
danielk197704103022009-02-03 16:51:24 +00007769** sqlite3_backup_finish().
7770**
drh0266c052015-03-06 03:31:58 +00007771** [[sqlite3_backup_remaining()]] [[sqlite3_backup_pagecount()]]
drhb706fe52011-05-11 20:54:32 +00007772** <b>sqlite3_backup_remaining() and sqlite3_backup_pagecount()</b>
danielk197704103022009-02-03 16:51:24 +00007773**
drh0266c052015-03-06 03:31:58 +00007774** ^The sqlite3_backup_remaining() routine returns the number of pages still
7775** to be backed up at the conclusion of the most recent sqlite3_backup_step().
7776** ^The sqlite3_backup_pagecount() routine returns the total number of pages
7777** in the source database at the conclusion of the most recent
7778** sqlite3_backup_step().
7779** ^(The values returned by these functions are only updated by
7780** sqlite3_backup_step(). If the source database is modified in a way that
7781** changes the size of the source database or the number of pages remaining,
7782** those changes are not reflected in the output of sqlite3_backup_pagecount()
7783** and sqlite3_backup_remaining() until after the next
7784** sqlite3_backup_step().)^
danielk197704103022009-02-03 16:51:24 +00007785**
7786** <b>Concurrent Usage of Database Handles</b>
7787**
drhd68eee02009-12-11 03:44:18 +00007788** ^The source [database connection] may be used by the application for other
danielk197704103022009-02-03 16:51:24 +00007789** purposes while a backup operation is underway or being initialized.
drhd68eee02009-12-11 03:44:18 +00007790** ^If SQLite is compiled and configured to support threadsafe database
danielk197704103022009-02-03 16:51:24 +00007791** connections, then the source database connection may be used concurrently
7792** from within other threads.
7793**
drhd68eee02009-12-11 03:44:18 +00007794** However, the application must guarantee that the destination
7795** [database connection] is not passed to any other API (by any thread) after
danielk197704103022009-02-03 16:51:24 +00007796** sqlite3_backup_init() is called and before the corresponding call to
drhd68eee02009-12-11 03:44:18 +00007797** sqlite3_backup_finish(). SQLite does not currently check to see
7798** if the application incorrectly accesses the destination [database connection]
7799** and so no error code is reported, but the operations may malfunction
7800** nevertheless. Use of the destination database connection while a
7801** backup is in progress might also also cause a mutex deadlock.
danielk197704103022009-02-03 16:51:24 +00007802**
drhd68eee02009-12-11 03:44:18 +00007803** If running in [shared cache mode], the application must
danielk197704103022009-02-03 16:51:24 +00007804** guarantee that the shared cache used by the destination database
7805** is not accessed while the backup is running. In practice this means
drhd68eee02009-12-11 03:44:18 +00007806** that the application must guarantee that the disk file being
danielk197704103022009-02-03 16:51:24 +00007807** backed up to is not accessed by any connection within the process,
7808** not just the specific connection that was passed to sqlite3_backup_init().
7809**
drh27b3b842009-02-03 18:25:13 +00007810** The [sqlite3_backup] object itself is partially threadsafe. Multiple
danielk197704103022009-02-03 16:51:24 +00007811** threads may safely make multiple concurrent calls to sqlite3_backup_step().
7812** However, the sqlite3_backup_remaining() and sqlite3_backup_pagecount()
7813** APIs are not strictly speaking threadsafe. If they are invoked at the
7814** same time as another thread is invoking sqlite3_backup_step() it is
7815** possible that they return invalid values.
7816*/
danielk197704103022009-02-03 16:51:24 +00007817sqlite3_backup *sqlite3_backup_init(
7818 sqlite3 *pDest, /* Destination database handle */
7819 const char *zDestName, /* Destination database name */
7820 sqlite3 *pSource, /* Source database handle */
7821 const char *zSourceName /* Source database name */
7822);
7823int sqlite3_backup_step(sqlite3_backup *p, int nPage);
7824int sqlite3_backup_finish(sqlite3_backup *p);
7825int sqlite3_backup_remaining(sqlite3_backup *p);
7826int sqlite3_backup_pagecount(sqlite3_backup *p);
7827
7828/*
danielk1977404ca072009-03-16 13:19:36 +00007829** CAPI3REF: Unlock Notification
drhd9a0a9a2015-04-14 15:14:06 +00007830** METHOD: sqlite3
danielk1977404ca072009-03-16 13:19:36 +00007831**
drhd68eee02009-12-11 03:44:18 +00007832** ^When running in shared-cache mode, a database operation may fail with
drh89487472009-03-16 13:37:02 +00007833** an [SQLITE_LOCKED] error if the required locks on the shared-cache or
danielk1977404ca072009-03-16 13:19:36 +00007834** individual tables within the shared-cache cannot be obtained. See
7835** [SQLite Shared-Cache Mode] for a description of shared-cache locking.
drhd68eee02009-12-11 03:44:18 +00007836** ^This API may be used to register a callback that SQLite will invoke
danielk1977404ca072009-03-16 13:19:36 +00007837** when the connection currently holding the required lock relinquishes it.
drhd68eee02009-12-11 03:44:18 +00007838** ^This API is only available if the library was compiled with the
drh89487472009-03-16 13:37:02 +00007839** [SQLITE_ENABLE_UNLOCK_NOTIFY] C-preprocessor symbol defined.
danielk1977404ca072009-03-16 13:19:36 +00007840**
7841** See Also: [Using the SQLite Unlock Notification Feature].
7842**
drhd68eee02009-12-11 03:44:18 +00007843** ^Shared-cache locks are released when a database connection concludes
danielk1977404ca072009-03-16 13:19:36 +00007844** its current transaction, either by committing it or rolling it back.
7845**
drhd68eee02009-12-11 03:44:18 +00007846** ^When a connection (known as the blocked connection) fails to obtain a
danielk1977404ca072009-03-16 13:19:36 +00007847** shared-cache lock and SQLITE_LOCKED is returned to the caller, the
7848** identity of the database connection (the blocking connection) that
drhd68eee02009-12-11 03:44:18 +00007849** has locked the required resource is stored internally. ^After an
danielk1977404ca072009-03-16 13:19:36 +00007850** application receives an SQLITE_LOCKED error, it may call the
7851** sqlite3_unlock_notify() method with the blocked connection handle as
7852** the first argument to register for a callback that will be invoked
drhd68eee02009-12-11 03:44:18 +00007853** when the blocking connections current transaction is concluded. ^The
danielk1977404ca072009-03-16 13:19:36 +00007854** callback is invoked from within the [sqlite3_step] or [sqlite3_close]
7855** call that concludes the blocking connections transaction.
7856**
drhd68eee02009-12-11 03:44:18 +00007857** ^(If sqlite3_unlock_notify() is called in a multi-threaded application,
danielk1977404ca072009-03-16 13:19:36 +00007858** there is a chance that the blocking connection will have already
7859** concluded its transaction by the time sqlite3_unlock_notify() is invoked.
7860** If this happens, then the specified callback is invoked immediately,
drhd68eee02009-12-11 03:44:18 +00007861** from within the call to sqlite3_unlock_notify().)^
danielk1977404ca072009-03-16 13:19:36 +00007862**
drhd68eee02009-12-11 03:44:18 +00007863** ^If the blocked connection is attempting to obtain a write-lock on a
danielk1977404ca072009-03-16 13:19:36 +00007864** shared-cache table, and more than one other connection currently holds
7865** a read-lock on the same table, then SQLite arbitrarily selects one of
7866** the other connections to use as the blocking connection.
7867**
drhd68eee02009-12-11 03:44:18 +00007868** ^(There may be at most one unlock-notify callback registered by a
danielk1977404ca072009-03-16 13:19:36 +00007869** blocked connection. If sqlite3_unlock_notify() is called when the
7870** blocked connection already has a registered unlock-notify callback,
drh7a98b852009-12-13 23:03:01 +00007871** then the new callback replaces the old.)^ ^If sqlite3_unlock_notify() is
danielk1977404ca072009-03-16 13:19:36 +00007872** called with a NULL pointer as its second argument, then any existing
drh9b8d0272010-08-09 15:44:21 +00007873** unlock-notify callback is canceled. ^The blocked connections
danielk1977404ca072009-03-16 13:19:36 +00007874** unlock-notify callback may also be canceled by closing the blocked
7875** connection using [sqlite3_close()].
7876**
7877** The unlock-notify callback is not reentrant. If an application invokes
7878** any sqlite3_xxx API functions from within an unlock-notify callback, a
7879** crash or deadlock may be the result.
7880**
drhd68eee02009-12-11 03:44:18 +00007881** ^Unless deadlock is detected (see below), sqlite3_unlock_notify() always
danielk1977404ca072009-03-16 13:19:36 +00007882** returns SQLITE_OK.
7883**
7884** <b>Callback Invocation Details</b>
7885**
7886** When an unlock-notify callback is registered, the application provides a
7887** single void* pointer that is passed to the callback when it is invoked.
7888** However, the signature of the callback function allows SQLite to pass
7889** it an array of void* context pointers. The first argument passed to
7890** an unlock-notify callback is a pointer to an array of void* pointers,
7891** and the second is the number of entries in the array.
7892**
7893** When a blocking connections transaction is concluded, there may be
7894** more than one blocked connection that has registered for an unlock-notify
drhd68eee02009-12-11 03:44:18 +00007895** callback. ^If two or more such blocked connections have specified the
danielk1977404ca072009-03-16 13:19:36 +00007896** same callback function, then instead of invoking the callback function
7897** multiple times, it is invoked once with the set of void* context pointers
7898** specified by the blocked connections bundled together into an array.
7899** This gives the application an opportunity to prioritize any actions
7900** related to the set of unblocked database connections.
7901**
7902** <b>Deadlock Detection</b>
7903**
7904** Assuming that after registering for an unlock-notify callback a
7905** database waits for the callback to be issued before taking any further
7906** action (a reasonable assumption), then using this API may cause the
7907** application to deadlock. For example, if connection X is waiting for
7908** connection Y's transaction to be concluded, and similarly connection
7909** Y is waiting on connection X's transaction, then neither connection
7910** will proceed and the system may remain deadlocked indefinitely.
7911**
7912** To avoid this scenario, the sqlite3_unlock_notify() performs deadlock
drhd68eee02009-12-11 03:44:18 +00007913** detection. ^If a given call to sqlite3_unlock_notify() would put the
danielk1977404ca072009-03-16 13:19:36 +00007914** system in a deadlocked state, then SQLITE_LOCKED is returned and no
7915** unlock-notify callback is registered. The system is said to be in
7916** a deadlocked state if connection A has registered for an unlock-notify
7917** callback on the conclusion of connection B's transaction, and connection
7918** B has itself registered for an unlock-notify callback when connection
drhd68eee02009-12-11 03:44:18 +00007919** A's transaction is concluded. ^Indirect deadlock is also detected, so
danielk1977404ca072009-03-16 13:19:36 +00007920** the system is also considered to be deadlocked if connection B has
7921** registered for an unlock-notify callback on the conclusion of connection
drhd68eee02009-12-11 03:44:18 +00007922** C's transaction, where connection C is waiting on connection A. ^Any
danielk1977404ca072009-03-16 13:19:36 +00007923** number of levels of indirection are allowed.
7924**
7925** <b>The "DROP TABLE" Exception</b>
7926**
7927** When a call to [sqlite3_step()] returns SQLITE_LOCKED, it is almost
7928** always appropriate to call sqlite3_unlock_notify(). There is however,
7929** one exception. When executing a "DROP TABLE" or "DROP INDEX" statement,
7930** SQLite checks if there are any currently executing SELECT statements
7931** that belong to the same connection. If there are, SQLITE_LOCKED is
7932** returned. In this case there is no "blocking connection", so invoking
7933** sqlite3_unlock_notify() results in the unlock-notify callback being
7934** invoked immediately. If the application then re-attempts the "DROP TABLE"
7935** or "DROP INDEX" query, an infinite loop might be the result.
7936**
7937** One way around this problem is to check the extended error code returned
drhd68eee02009-12-11 03:44:18 +00007938** by an sqlite3_step() call. ^(If there is a blocking connection, then the
danielk1977404ca072009-03-16 13:19:36 +00007939** extended error code is set to SQLITE_LOCKED_SHAREDCACHE. Otherwise, in
7940** the special "DROP TABLE/INDEX" case, the extended error code is just
drhd68eee02009-12-11 03:44:18 +00007941** SQLITE_LOCKED.)^
danielk1977404ca072009-03-16 13:19:36 +00007942*/
7943int sqlite3_unlock_notify(
7944 sqlite3 *pBlocked, /* Waiting connection */
7945 void (*xNotify)(void **apArg, int nArg), /* Callback function to invoke */
7946 void *pNotifyArg /* Argument to pass to xNotify */
7947);
7948
danielk1977ee0484c2009-07-28 16:44:26 +00007949
7950/*
7951** CAPI3REF: String Comparison
danielk1977ee0484c2009-07-28 16:44:26 +00007952**
drh3fa97302012-02-22 16:58:36 +00007953** ^The [sqlite3_stricmp()] and [sqlite3_strnicmp()] APIs allow applications
7954** and extensions to compare the contents of two buffers containing UTF-8
7955** strings in a case-independent fashion, using the same definition of "case
7956** independence" that SQLite uses internally when comparing identifiers.
danielk1977ee0484c2009-07-28 16:44:26 +00007957*/
drh3fa97302012-02-22 16:58:36 +00007958int sqlite3_stricmp(const char *, const char *);
danielk1977ee0484c2009-07-28 16:44:26 +00007959int sqlite3_strnicmp(const char *, const char *, int);
7960
danielk1977404ca072009-03-16 13:19:36 +00007961/*
drh56282a52013-04-10 16:13:38 +00007962** CAPI3REF: String Globbing
7963*
drh489f1e82015-11-25 18:40:38 +00007964** ^The [sqlite3_strglob(P,X)] interface returns zero if and only if
7965** string X matches the [GLOB] pattern P.
7966** ^The definition of [GLOB] pattern matching used in
drha1710cc2013-04-15 13:10:30 +00007967** [sqlite3_strglob(P,X)] is the same as for the "X GLOB P" operator in the
drh489f1e82015-11-25 18:40:38 +00007968** SQL dialect understood by SQLite. ^The [sqlite3_strglob(P,X)] function
7969** is case sensitive.
drh56282a52013-04-10 16:13:38 +00007970**
7971** Note that this routine returns zero on a match and non-zero if the strings
7972** do not match, the same as [sqlite3_stricmp()] and [sqlite3_strnicmp()].
drh8b4a94a2015-11-24 21:23:59 +00007973**
drh489f1e82015-11-25 18:40:38 +00007974** See also: [sqlite3_strlike()].
drh56282a52013-04-10 16:13:38 +00007975*/
7976int sqlite3_strglob(const char *zGlob, const char *zStr);
7977
7978/*
drh8b4a94a2015-11-24 21:23:59 +00007979** CAPI3REF: String LIKE Matching
7980*
drh489f1e82015-11-25 18:40:38 +00007981** ^The [sqlite3_strlike(P,X,E)] interface returns zero if and only if
7982** string X matches the [LIKE] pattern P with escape character E.
7983** ^The definition of [LIKE] pattern matching used in
drh8b4a94a2015-11-24 21:23:59 +00007984** [sqlite3_strlike(P,X,E)] is the same as for the "X LIKE P ESCAPE E"
drh489f1e82015-11-25 18:40:38 +00007985** operator in the SQL dialect understood by SQLite. ^For "X LIKE P" without
drh8b4a94a2015-11-24 21:23:59 +00007986** the ESCAPE clause, set the E parameter of [sqlite3_strlike(P,X,E)] to 0.
drh489f1e82015-11-25 18:40:38 +00007987** ^As with the LIKE operator, the [sqlite3_strlike(P,X,E)] function is case
drh8b4a94a2015-11-24 21:23:59 +00007988** insensitive - equivalent upper and lower case ASCII characters match
7989** one another.
7990**
7991** ^The [sqlite3_strlike(P,X,E)] function matches Unicode characters, though
drh489f1e82015-11-25 18:40:38 +00007992** only ASCII characters are case folded.
drh8b4a94a2015-11-24 21:23:59 +00007993**
7994** Note that this routine returns zero on a match and non-zero if the strings
7995** do not match, the same as [sqlite3_stricmp()] and [sqlite3_strnicmp()].
7996**
drh489f1e82015-11-25 18:40:38 +00007997** See also: [sqlite3_strglob()].
drh8b4a94a2015-11-24 21:23:59 +00007998*/
7999int sqlite3_strlike(const char *zGlob, const char *zStr, unsigned int cEsc);
8000
8001/*
drh3f280702010-02-18 18:45:09 +00008002** CAPI3REF: Error Logging Interface
drh3f280702010-02-18 18:45:09 +00008003**
drh9ea88b22013-04-26 15:55:57 +00008004** ^The [sqlite3_log()] interface writes a message into the [error log]
drh71caabf2010-02-26 15:39:24 +00008005** established by the [SQLITE_CONFIG_LOG] option to [sqlite3_config()].
drhbee80652010-02-25 21:27:58 +00008006** ^If logging is enabled, the zFormat string and subsequent arguments are
drhd3d986d2010-03-31 13:57:56 +00008007** used with [sqlite3_snprintf()] to generate the final output string.
drh3f280702010-02-18 18:45:09 +00008008**
8009** The sqlite3_log() interface is intended for use by extensions such as
8010** virtual tables, collating functions, and SQL functions. While there is
8011** nothing to prevent an application from calling sqlite3_log(), doing so
8012** is considered bad form.
drhbee80652010-02-25 21:27:58 +00008013**
8014** The zFormat string must not be NULL.
drh7c0c4602010-03-03 22:25:18 +00008015**
8016** To avoid deadlocks and other threading problems, the sqlite3_log() routine
8017** will not use dynamically allocated memory. The log message is stored in
8018** a fixed-length buffer on the stack. If the log message is longer than
8019** a few hundred characters, it will be truncated to the length of the
8020** buffer.
drh3f280702010-02-18 18:45:09 +00008021*/
drha7564662010-02-22 19:32:31 +00008022void sqlite3_log(int iErrCode, const char *zFormat, ...);
drh3f280702010-02-18 18:45:09 +00008023
8024/*
drh833bf962010-04-28 14:42:19 +00008025** CAPI3REF: Write-Ahead Log Commit Hook
drhd9a0a9a2015-04-14 15:14:06 +00008026** METHOD: sqlite3
dan8d22a172010-04-19 18:03:51 +00008027**
drh005e19c2010-05-07 13:57:11 +00008028** ^The [sqlite3_wal_hook()] function is used to register a callback that
dan6e45e0c2014-12-10 20:29:49 +00008029** is invoked each time data is committed to a database in wal mode.
dan8d22a172010-04-19 18:03:51 +00008030**
dan6e45e0c2014-12-10 20:29:49 +00008031** ^(The callback is invoked by SQLite after the commit has taken place and
8032** the associated write-lock on the database released)^, so the implementation
drh005e19c2010-05-07 13:57:11 +00008033** may read, write or [checkpoint] the database as required.
dan8d22a172010-04-19 18:03:51 +00008034**
drh005e19c2010-05-07 13:57:11 +00008035** ^The first parameter passed to the callback function when it is invoked
drh833bf962010-04-28 14:42:19 +00008036** is a copy of the third parameter passed to sqlite3_wal_hook() when
drh005e19c2010-05-07 13:57:11 +00008037** registering the callback. ^The second is a copy of the database handle.
8038** ^The third parameter is the name of the database that was written to -
drhcc3af512010-06-15 12:09:06 +00008039** either "main" or the name of an [ATTACH]-ed database. ^The fourth parameter
drh005e19c2010-05-07 13:57:11 +00008040** is the number of pages currently in the write-ahead log file,
8041** including those that were just committed.
dan8d22a172010-04-19 18:03:51 +00008042**
drhcc3af512010-06-15 12:09:06 +00008043** The callback function should normally return [SQLITE_OK]. ^If an error
drh5def0842010-05-05 20:00:25 +00008044** code is returned, that error will propagate back up through the
8045** SQLite code base to cause the statement that provoked the callback
dan982d4c02010-05-15 10:24:46 +00008046** to report an error, though the commit will have still occurred. If the
drhcc3af512010-06-15 12:09:06 +00008047** callback returns [SQLITE_ROW] or [SQLITE_DONE], or if it returns a value
dan982d4c02010-05-15 10:24:46 +00008048** that does not correspond to any valid SQLite error code, the results
8049** are undefined.
dan8d22a172010-04-19 18:03:51 +00008050**
drh005e19c2010-05-07 13:57:11 +00008051** A single database handle may have at most a single write-ahead log callback
8052** registered at one time. ^Calling [sqlite3_wal_hook()] replaces any
drhcc3af512010-06-15 12:09:06 +00008053** previously registered write-ahead log callback. ^Note that the
drh005e19c2010-05-07 13:57:11 +00008054** [sqlite3_wal_autocheckpoint()] interface and the
8055** [wal_autocheckpoint pragma] both invoke [sqlite3_wal_hook()] and will
drh0ccbc642016-02-17 11:13:20 +00008056** overwrite any prior [sqlite3_wal_hook()] settings.
dan8d22a172010-04-19 18:03:51 +00008057*/
drh833bf962010-04-28 14:42:19 +00008058void *sqlite3_wal_hook(
dan8d22a172010-04-19 18:03:51 +00008059 sqlite3*,
8060 int(*)(void *,sqlite3*,const char*,int),
8061 void*
8062);
8063
8064/*
dan586b9c82010-05-03 08:04:49 +00008065** CAPI3REF: Configure an auto-checkpoint
drhd9a0a9a2015-04-14 15:14:06 +00008066** METHOD: sqlite3
drh324e46d2010-05-03 18:51:41 +00008067**
drh005e19c2010-05-07 13:57:11 +00008068** ^The [sqlite3_wal_autocheckpoint(D,N)] is a wrapper around
drh324e46d2010-05-03 18:51:41 +00008069** [sqlite3_wal_hook()] that causes any database on [database connection] D
drh005e19c2010-05-07 13:57:11 +00008070** to automatically [checkpoint]
drh324e46d2010-05-03 18:51:41 +00008071** after committing a transaction if there are N or
drh005e19c2010-05-07 13:57:11 +00008072** more frames in the [write-ahead log] file. ^Passing zero or
drh324e46d2010-05-03 18:51:41 +00008073** a negative value as the nFrame parameter disables automatic
8074** checkpoints entirely.
8075**
drh005e19c2010-05-07 13:57:11 +00008076** ^The callback registered by this function replaces any existing callback
8077** registered using [sqlite3_wal_hook()]. ^Likewise, registering a callback
drh324e46d2010-05-03 18:51:41 +00008078** using [sqlite3_wal_hook()] disables the automatic checkpoint mechanism
8079** configured by this function.
drh005e19c2010-05-07 13:57:11 +00008080**
8081** ^The [wal_autocheckpoint pragma] can be used to invoke this interface
8082** from SQL.
8083**
drha6f59722014-07-18 19:06:39 +00008084** ^Checkpoints initiated by this mechanism are
8085** [sqlite3_wal_checkpoint_v2|PASSIVE].
8086**
drh005e19c2010-05-07 13:57:11 +00008087** ^Every new [database connection] defaults to having the auto-checkpoint
drh7f322e72010-12-09 18:55:09 +00008088** enabled with a threshold of 1000 or [SQLITE_DEFAULT_WAL_AUTOCHECKPOINT]
8089** pages. The use of this interface
drh005e19c2010-05-07 13:57:11 +00008090** is only necessary if the default setting is found to be suboptimal
8091** for a particular application.
dan586b9c82010-05-03 08:04:49 +00008092*/
8093int sqlite3_wal_autocheckpoint(sqlite3 *db, int N);
8094
8095/*
8096** CAPI3REF: Checkpoint a database
drhd9a0a9a2015-04-14 15:14:06 +00008097** METHOD: sqlite3
drh324e46d2010-05-03 18:51:41 +00008098**
drhbb9a3782014-12-03 18:32:47 +00008099** ^(The sqlite3_wal_checkpoint(D,X) is equivalent to
8100** [sqlite3_wal_checkpoint_v2](D,X,[SQLITE_CHECKPOINT_PASSIVE],0,0).)^
drh005e19c2010-05-07 13:57:11 +00008101**
drhbb9a3782014-12-03 18:32:47 +00008102** In brief, sqlite3_wal_checkpoint(D,X) causes the content in the
8103** [write-ahead log] for database X on [database connection] D to be
8104** transferred into the database file and for the write-ahead log to
8105** be reset. See the [checkpointing] documentation for addition
8106** information.
drh36250082011-02-10 18:56:09 +00008107**
drhbb9a3782014-12-03 18:32:47 +00008108** This interface used to be the only way to cause a checkpoint to
8109** occur. But then the newer and more powerful [sqlite3_wal_checkpoint_v2()]
8110** interface was added. This interface is retained for backwards
8111** compatibility and as a convenience for applications that need to manually
8112** start a callback but which do not need the full power (and corresponding
8113** complication) of [sqlite3_wal_checkpoint_v2()].
dan586b9c82010-05-03 08:04:49 +00008114*/
8115int sqlite3_wal_checkpoint(sqlite3 *db, const char *zDb);
8116
8117/*
dancdc1f042010-11-18 12:11:05 +00008118** CAPI3REF: Checkpoint a database
drhd9a0a9a2015-04-14 15:14:06 +00008119** METHOD: sqlite3
dancdc1f042010-11-18 12:11:05 +00008120**
drh86e166a2014-12-03 19:08:00 +00008121** ^(The sqlite3_wal_checkpoint_v2(D,X,M,L,C) interface runs a checkpoint
8122** operation on database X of [database connection] D in mode M. Status
8123** information is written back into integers pointed to by L and C.)^
8124** ^(The M parameter must be a valid [checkpoint mode]:)^
dancdc1f042010-11-18 12:11:05 +00008125**
8126** <dl>
8127** <dt>SQLITE_CHECKPOINT_PASSIVE<dd>
drh2d2e7bf2014-12-03 15:50:09 +00008128** ^Checkpoint as many frames as possible without waiting for any database
8129** readers or writers to finish, then sync the database file if all frames
drh86e166a2014-12-03 19:08:00 +00008130** in the log were checkpointed. ^The [busy-handler callback]
8131** is never invoked in the SQLITE_CHECKPOINT_PASSIVE mode.
8132** ^On the other hand, passive mode might leave the checkpoint unfinished
8133** if there are concurrent readers or writers.
dancdc1f042010-11-18 12:11:05 +00008134**
8135** <dt>SQLITE_CHECKPOINT_FULL<dd>
drh2d2e7bf2014-12-03 15:50:09 +00008136** ^This mode blocks (it invokes the
drha6f59722014-07-18 19:06:39 +00008137** [sqlite3_busy_handler|busy-handler callback]) until there is no
dancdc1f042010-11-18 12:11:05 +00008138** database writer and all readers are reading from the most recent database
drh2d2e7bf2014-12-03 15:50:09 +00008139** snapshot. ^It then checkpoints all frames in the log file and syncs the
8140** database file. ^This mode blocks new database writers while it is pending,
8141** but new database readers are allowed to continue unimpeded.
dancdc1f042010-11-18 12:11:05 +00008142**
8143** <dt>SQLITE_CHECKPOINT_RESTART<dd>
drh2d2e7bf2014-12-03 15:50:09 +00008144** ^This mode works the same way as SQLITE_CHECKPOINT_FULL with the addition
8145** that after checkpointing the log file it blocks (calls the
drh86e166a2014-12-03 19:08:00 +00008146** [busy-handler callback])
drh2d2e7bf2014-12-03 15:50:09 +00008147** until all readers are reading from the database file only. ^This ensures
8148** that the next writer will restart the log file from the beginning.
8149** ^Like SQLITE_CHECKPOINT_FULL, this mode blocks new
8150** database writer attempts while it is pending, but does not impede readers.
danf26a1542014-12-02 19:04:54 +00008151**
8152** <dt>SQLITE_CHECKPOINT_TRUNCATE<dd>
drh86e166a2014-12-03 19:08:00 +00008153** ^This mode works the same way as SQLITE_CHECKPOINT_RESTART with the
8154** addition that it also truncates the log file to zero bytes just prior
8155** to a successful return.
dancdc1f042010-11-18 12:11:05 +00008156** </dl>
8157**
drh2d2e7bf2014-12-03 15:50:09 +00008158** ^If pnLog is not NULL, then *pnLog is set to the total number of frames in
drh5b875312014-12-03 16:30:27 +00008159** the log file or to -1 if the checkpoint could not run because
drh86e166a2014-12-03 19:08:00 +00008160** of an error or because the database is not in [WAL mode]. ^If pnCkpt is not
8161** NULL,then *pnCkpt is set to the total number of checkpointed frames in the
8162** log file (including any that were already checkpointed before the function
8163** was called) or to -1 if the checkpoint could not run due to an error or
8164** because the database is not in WAL mode. ^Note that upon successful
8165** completion of an SQLITE_CHECKPOINT_TRUNCATE, the log file will have been
8166** truncated to zero bytes and so both *pnLog and *pnCkpt will be set to zero.
dancdc1f042010-11-18 12:11:05 +00008167**
drh2d2e7bf2014-12-03 15:50:09 +00008168** ^All calls obtain an exclusive "checkpoint" lock on the database file. ^If
dancdc1f042010-11-18 12:11:05 +00008169** any other process is running a checkpoint operation at the same time, the
drh2d2e7bf2014-12-03 15:50:09 +00008170** lock cannot be obtained and SQLITE_BUSY is returned. ^Even if there is a
dancdc1f042010-11-18 12:11:05 +00008171** busy-handler configured, it will not be invoked in this case.
8172**
drh2d2e7bf2014-12-03 15:50:09 +00008173** ^The SQLITE_CHECKPOINT_FULL, RESTART and TRUNCATE modes also obtain the
8174** exclusive "writer" lock on the database file. ^If the writer lock cannot be
danf26a1542014-12-02 19:04:54 +00008175** obtained immediately, and a busy-handler is configured, it is invoked and
8176** the writer lock retried until either the busy-handler returns 0 or the lock
drh2d2e7bf2014-12-03 15:50:09 +00008177** is successfully obtained. ^The busy-handler is also invoked while waiting for
8178** database readers as described above. ^If the busy-handler returns 0 before
dancdc1f042010-11-18 12:11:05 +00008179** the writer lock is obtained or while waiting for database readers, the
8180** checkpoint operation proceeds from that point in the same way as
8181** SQLITE_CHECKPOINT_PASSIVE - checkpointing as many frames as possible
drh2d2e7bf2014-12-03 15:50:09 +00008182** without blocking any further. ^SQLITE_BUSY is returned in this case.
dancdc1f042010-11-18 12:11:05 +00008183**
drh2d2e7bf2014-12-03 15:50:09 +00008184** ^If parameter zDb is NULL or points to a zero length string, then the
8185** specified operation is attempted on all WAL databases [attached] to
8186** [database connection] db. In this case the
8187** values written to output parameters *pnLog and *pnCkpt are undefined. ^If
dancdc1f042010-11-18 12:11:05 +00008188** an SQLITE_BUSY error is encountered when processing one or more of the
8189** attached WAL databases, the operation is still attempted on any remaining
drh2d2e7bf2014-12-03 15:50:09 +00008190** attached databases and SQLITE_BUSY is returned at the end. ^If any other
dancdc1f042010-11-18 12:11:05 +00008191** error occurs while processing an attached database, processing is abandoned
drh2d2e7bf2014-12-03 15:50:09 +00008192** and the error code is returned to the caller immediately. ^If no error
dancdc1f042010-11-18 12:11:05 +00008193** (SQLITE_BUSY or otherwise) is encountered while processing the attached
8194** databases, SQLITE_OK is returned.
8195**
drh2d2e7bf2014-12-03 15:50:09 +00008196** ^If database zDb is the name of an attached database that is not in WAL
8197** mode, SQLITE_OK is returned and both *pnLog and *pnCkpt set to -1. ^If
dancdc1f042010-11-18 12:11:05 +00008198** zDb is not NULL (or a zero length string) and is not the name of any
8199** attached database, SQLITE_ERROR is returned to the caller.
drh2d2e7bf2014-12-03 15:50:09 +00008200**
drh5b875312014-12-03 16:30:27 +00008201** ^Unless it returns SQLITE_MISUSE,
8202** the sqlite3_wal_checkpoint_v2() interface
8203** sets the error information that is queried by
8204** [sqlite3_errcode()] and [sqlite3_errmsg()].
8205**
drh2d2e7bf2014-12-03 15:50:09 +00008206** ^The [PRAGMA wal_checkpoint] command can be used to invoke this interface
8207** from SQL.
dancdc1f042010-11-18 12:11:05 +00008208*/
8209int sqlite3_wal_checkpoint_v2(
8210 sqlite3 *db, /* Database handle */
8211 const char *zDb, /* Name of attached database (or NULL) */
8212 int eMode, /* SQLITE_CHECKPOINT_* value */
8213 int *pnLog, /* OUT: Size of WAL log in frames */
8214 int *pnCkpt /* OUT: Total number of frames checkpointed */
8215);
drh36250082011-02-10 18:56:09 +00008216
8217/*
drh2d2e7bf2014-12-03 15:50:09 +00008218** CAPI3REF: Checkpoint Mode Values
8219** KEYWORDS: {checkpoint mode}
drh36250082011-02-10 18:56:09 +00008220**
drh2d2e7bf2014-12-03 15:50:09 +00008221** These constants define all valid values for the "checkpoint mode" passed
8222** as the third parameter to the [sqlite3_wal_checkpoint_v2()] interface.
8223** See the [sqlite3_wal_checkpoint_v2()] documentation for details on the
8224** meaning of each of these checkpoint modes.
drh36250082011-02-10 18:56:09 +00008225*/
drh86e166a2014-12-03 19:08:00 +00008226#define SQLITE_CHECKPOINT_PASSIVE 0 /* Do as much as possible w/o blocking */
8227#define SQLITE_CHECKPOINT_FULL 1 /* Wait for writers, then checkpoint */
8228#define SQLITE_CHECKPOINT_RESTART 2 /* Like FULL but wait for for readers */
8229#define SQLITE_CHECKPOINT_TRUNCATE 3 /* Like RESTART but also truncate WAL */
dancdc1f042010-11-18 12:11:05 +00008230
danb061d052011-04-25 18:49:57 +00008231/*
8232** CAPI3REF: Virtual Table Interface Configuration
dan3480a012011-04-27 16:02:46 +00008233**
drhef45bb72011-05-05 15:39:50 +00008234** This function may be called by either the [xConnect] or [xCreate] method
8235** of a [virtual table] implementation to configure
8236** various facets of the virtual table interface.
8237**
8238** If this interface is invoked outside the context of an xConnect or
8239** xCreate virtual table method then the behavior is undefined.
8240**
8241** At present, there is only one option that may be configured using
8242** this function. (See [SQLITE_VTAB_CONSTRAINT_SUPPORT].) Further options
dan3480a012011-04-27 16:02:46 +00008243** may be added in the future.
drhef45bb72011-05-05 15:39:50 +00008244*/
8245int sqlite3_vtab_config(sqlite3*, int op, ...);
8246
8247/*
8248** CAPI3REF: Virtual Table Configuration Options
8249**
8250** These macros define the various options to the
8251** [sqlite3_vtab_config()] interface that [virtual table] implementations
8252** can use to customize and optimize their behavior.
dan3480a012011-04-27 16:02:46 +00008253**
8254** <dl>
drh367e84d2011-05-05 23:07:43 +00008255** <dt>SQLITE_VTAB_CONSTRAINT_SUPPORT
8256** <dd>Calls of the form
8257** [sqlite3_vtab_config](db,SQLITE_VTAB_CONSTRAINT_SUPPORT,X) are supported,
8258** where X is an integer. If X is zero, then the [virtual table] whose
8259** [xCreate] or [xConnect] method invoked [sqlite3_vtab_config()] does not
8260** support constraints. In this configuration (which is the default) if
8261** a call to the [xUpdate] method returns [SQLITE_CONSTRAINT], then the entire
8262** statement is rolled back as if [ON CONFLICT | OR ABORT] had been
8263** specified as part of the users SQL statement, regardless of the actual
8264** ON CONFLICT mode specified.
dan3480a012011-04-27 16:02:46 +00008265**
drh367e84d2011-05-05 23:07:43 +00008266** If X is non-zero, then the virtual table implementation guarantees
8267** that if [xUpdate] returns [SQLITE_CONSTRAINT], it will do so before
8268** any modifications to internal or persistent data structures have been made.
8269** If the [ON CONFLICT] mode is ABORT, FAIL, IGNORE or ROLLBACK, SQLite
8270** is able to roll back a statement or database transaction, and abandon
8271** or continue processing the current SQL statement as appropriate.
8272** If the ON CONFLICT mode is REPLACE and the [xUpdate] method returns
8273** [SQLITE_CONSTRAINT], SQLite handles this as if the ON CONFLICT mode
8274** had been ABORT.
dan3480a012011-04-27 16:02:46 +00008275**
drh367e84d2011-05-05 23:07:43 +00008276** Virtual table implementations that are required to handle OR REPLACE
8277** must do so within the [xUpdate] method. If a call to the
8278** [sqlite3_vtab_on_conflict()] function indicates that the current ON
8279** CONFLICT policy is REPLACE, the virtual table implementation should
8280** silently replace the appropriate rows within the xUpdate callback and
8281** return SQLITE_OK. Or, if this is not possible, it may return
8282** SQLITE_CONSTRAINT, in which case SQLite falls back to OR ABORT
8283** constraint handling.
dan3480a012011-04-27 16:02:46 +00008284** </dl>
danb061d052011-04-25 18:49:57 +00008285*/
dan3480a012011-04-27 16:02:46 +00008286#define SQLITE_VTAB_CONSTRAINT_SUPPORT 1
danb061d052011-04-25 18:49:57 +00008287
8288/*
8289** CAPI3REF: Determine The Virtual Table Conflict Policy
dan3480a012011-04-27 16:02:46 +00008290**
drhef45bb72011-05-05 15:39:50 +00008291** This function may only be called from within a call to the [xUpdate] method
8292** of a [virtual table] implementation for an INSERT or UPDATE operation. ^The
8293** value returned is one of [SQLITE_ROLLBACK], [SQLITE_IGNORE], [SQLITE_FAIL],
8294** [SQLITE_ABORT], or [SQLITE_REPLACE], according to the [ON CONFLICT] mode
8295** of the SQL statement that triggered the call to the [xUpdate] method of the
8296** [virtual table].
8297*/
8298int sqlite3_vtab_on_conflict(sqlite3 *);
8299
dane01b9282017-04-15 14:30:01 +00008300/*
8301** CAPI3REF: Determine The Collation For a Virtual Table Constraint
8302**
8303** This function may only be called from within a call to the [xBestIndex]
drh64c19902018-01-04 16:40:44 +00008304** method of a [virtual table].
dane01b9282017-04-15 14:30:01 +00008305**
drhefc88d02017-12-22 00:52:50 +00008306** The first argument must be the sqlite3_index_info object that is the
8307** first parameter to the xBestIndex() method. The second argument must be
8308** an index into the aConstraint[] array belonging to the sqlite3_index_info
8309** structure passed to xBestIndex. This function returns a pointer to a buffer
dane01b9282017-04-15 14:30:01 +00008310** containing the name of the collation sequence for the corresponding
8311** constraint.
8312*/
drhefc88d02017-12-22 00:52:50 +00008313SQLITE_EXPERIMENTAL const char *sqlite3_vtab_collation(sqlite3_index_info*,int);
dan0824ccf2017-04-14 19:41:37 +00008314
drhef45bb72011-05-05 15:39:50 +00008315/*
8316** CAPI3REF: Conflict resolution modes
drh1d8ba022014-08-08 12:51:42 +00008317** KEYWORDS: {conflict resolution mode}
drhef45bb72011-05-05 15:39:50 +00008318**
8319** These constants are returned by [sqlite3_vtab_on_conflict()] to
8320** inform a [virtual table] implementation what the [ON CONFLICT] mode
8321** is for the SQL statement being evaluated.
8322**
8323** Note that the [SQLITE_IGNORE] constant is also used as a potential
8324** return value from the [sqlite3_set_authorizer()] callback and that
8325** [SQLITE_ABORT] is also a [result code].
danb061d052011-04-25 18:49:57 +00008326*/
8327#define SQLITE_ROLLBACK 1
drhef45bb72011-05-05 15:39:50 +00008328/* #define SQLITE_IGNORE 2 // Also used by sqlite3_authorizer() callback */
danb061d052011-04-25 18:49:57 +00008329#define SQLITE_FAIL 3
drhef45bb72011-05-05 15:39:50 +00008330/* #define SQLITE_ABORT 4 // Also an error code */
danb061d052011-04-25 18:49:57 +00008331#define SQLITE_REPLACE 5
dan3480a012011-04-27 16:02:46 +00008332
danb0083752014-09-02 19:59:40 +00008333/*
drhd84bf202014-11-03 18:03:00 +00008334** CAPI3REF: Prepared Statement Scan Status Opcodes
8335** KEYWORDS: {scanstatus options}
drhd1a1c232014-11-03 16:35:55 +00008336**
8337** The following constants can be used for the T parameter to the
8338** [sqlite3_stmt_scanstatus(S,X,T,V)] interface. Each constant designates a
8339** different metric for sqlite3_stmt_scanstatus() to return.
8340**
drh179c5972015-01-09 19:36:36 +00008341** When the value returned to V is a string, space to hold that string is
8342** managed by the prepared statement S and will be automatically freed when
8343** S is finalized.
8344**
drhd1a1c232014-11-03 16:35:55 +00008345** <dl>
drhd84bf202014-11-03 18:03:00 +00008346** [[SQLITE_SCANSTAT_NLOOP]] <dt>SQLITE_SCANSTAT_NLOOP</dt>
drh86e166a2014-12-03 19:08:00 +00008347** <dd>^The [sqlite3_int64] variable pointed to by the T parameter will be
8348** set to the total number of times that the X-th loop has run.</dd>
drhd1a1c232014-11-03 16:35:55 +00008349**
drhd84bf202014-11-03 18:03:00 +00008350** [[SQLITE_SCANSTAT_NVISIT]] <dt>SQLITE_SCANSTAT_NVISIT</dt>
drh86e166a2014-12-03 19:08:00 +00008351** <dd>^The [sqlite3_int64] variable pointed to by the T parameter will be set
8352** to the total number of rows examined by all iterations of the X-th loop.</dd>
drhd1a1c232014-11-03 16:35:55 +00008353**
drhd84bf202014-11-03 18:03:00 +00008354** [[SQLITE_SCANSTAT_EST]] <dt>SQLITE_SCANSTAT_EST</dt>
drh518140e2014-11-06 03:55:10 +00008355** <dd>^The "double" variable pointed to by the T parameter will be set to the
8356** query planner's estimate for the average number of rows output from each
8357** iteration of the X-th loop. If the query planner's estimates was accurate,
8358** then this value will approximate the quotient NVISIT/NLOOP and the
drhc6652b12014-11-06 04:42:20 +00008359** product of this value for all prior loops with the same SELECTID will
8360** be the NLOOP value for the current loop.
drhd1a1c232014-11-03 16:35:55 +00008361**
drhd84bf202014-11-03 18:03:00 +00008362** [[SQLITE_SCANSTAT_NAME]] <dt>SQLITE_SCANSTAT_NAME</dt>
drh86e166a2014-12-03 19:08:00 +00008363** <dd>^The "const char *" variable pointed to by the T parameter will be set
8364** to a zero-terminated UTF-8 string containing the name of the index or table
8365** used for the X-th loop.
drhd1a1c232014-11-03 16:35:55 +00008366**
drhd84bf202014-11-03 18:03:00 +00008367** [[SQLITE_SCANSTAT_EXPLAIN]] <dt>SQLITE_SCANSTAT_EXPLAIN</dt>
drh86e166a2014-12-03 19:08:00 +00008368** <dd>^The "const char *" variable pointed to by the T parameter will be set
8369** to a zero-terminated UTF-8 string containing the [EXPLAIN QUERY PLAN]
8370** description for the X-th loop.
drhc6652b12014-11-06 04:42:20 +00008371**
8372** [[SQLITE_SCANSTAT_SELECTID]] <dt>SQLITE_SCANSTAT_SELECT</dt>
8373** <dd>^The "int" variable pointed to by the T parameter will be set to the
8374** "select-id" for the X-th loop. The select-id identifies which query or
8375** subquery the loop is part of. The main query has a select-id of zero.
8376** The select-id is the same value as is output in the first column
8377** of an [EXPLAIN QUERY PLAN] query.
drhd1a1c232014-11-03 16:35:55 +00008378** </dl>
8379*/
8380#define SQLITE_SCANSTAT_NLOOP 0
8381#define SQLITE_SCANSTAT_NVISIT 1
dand72219d2014-11-03 16:39:37 +00008382#define SQLITE_SCANSTAT_EST 2
drhd1a1c232014-11-03 16:35:55 +00008383#define SQLITE_SCANSTAT_NAME 3
8384#define SQLITE_SCANSTAT_EXPLAIN 4
drhc6652b12014-11-06 04:42:20 +00008385#define SQLITE_SCANSTAT_SELECTID 5
danb061d052011-04-25 18:49:57 +00008386
dan04489b62014-10-31 20:11:32 +00008387/*
drhd1a1c232014-11-03 16:35:55 +00008388** CAPI3REF: Prepared Statement Scan Status
drhd9a0a9a2015-04-14 15:14:06 +00008389** METHOD: sqlite3_stmt
dan89e71642014-11-01 18:08:04 +00008390**
drh179c5972015-01-09 19:36:36 +00008391** This interface returns information about the predicted and measured
8392** performance for pStmt. Advanced applications can use this
8393** interface to compare the predicted and the measured performance and
8394** issue warnings and/or rerun [ANALYZE] if discrepancies are found.
8395**
8396** Since this interface is expected to be rarely used, it is only
8397** available if SQLite is compiled using the [SQLITE_ENABLE_STMT_SCANSTATUS]
8398** compile-time option.
dan04489b62014-10-31 20:11:32 +00008399**
drhd1a1c232014-11-03 16:35:55 +00008400** The "iScanStatusOp" parameter determines which status information to return.
drh86e166a2014-12-03 19:08:00 +00008401** The "iScanStatusOp" must be one of the [scanstatus options] or the behavior
8402** of this interface is undefined.
drhd84bf202014-11-03 18:03:00 +00008403** ^The requested measurement is written into a variable pointed to by
drhd1a1c232014-11-03 16:35:55 +00008404** the "pOut" parameter.
dan04489b62014-10-31 20:11:32 +00008405** Parameter "idx" identifies the specific loop to retrieve statistics for.
drhd84bf202014-11-03 18:03:00 +00008406** Loops are numbered starting from zero. ^If idx is out of range - less than
dan04489b62014-10-31 20:11:32 +00008407** zero or greater than or equal to the total number of loops used to implement
drhd1a1c232014-11-03 16:35:55 +00008408** the statement - a non-zero value is returned and the variable that pOut
8409** points to is unchanged.
dan89e71642014-11-01 18:08:04 +00008410**
drhd84bf202014-11-03 18:03:00 +00008411** ^Statistics might not be available for all loops in all statements. ^In cases
drhd1a1c232014-11-03 16:35:55 +00008412** where there exist loops with no available statistics, this function behaves
8413** as if the loop did not exist - it returns non-zero and leave the variable
8414** that pOut points to unchanged.
dan04489b62014-10-31 20:11:32 +00008415**
drhd84bf202014-11-03 18:03:00 +00008416** See also: [sqlite3_stmt_scanstatus_reset()]
dan04489b62014-10-31 20:11:32 +00008417*/
drh4f03f412015-05-20 21:28:32 +00008418int sqlite3_stmt_scanstatus(
drhd1a1c232014-11-03 16:35:55 +00008419 sqlite3_stmt *pStmt, /* Prepared statement for which info desired */
8420 int idx, /* Index of loop to report on */
8421 int iScanStatusOp, /* Information desired. SQLITE_SCANSTAT_* */
8422 void *pOut /* Result written here */
8423);
dan04489b62014-10-31 20:11:32 +00008424
8425/*
dan89e71642014-11-01 18:08:04 +00008426** CAPI3REF: Zero Scan-Status Counters
drhd9a0a9a2015-04-14 15:14:06 +00008427** METHOD: sqlite3_stmt
dan89e71642014-11-01 18:08:04 +00008428**
drhd84bf202014-11-03 18:03:00 +00008429** ^Zero all [sqlite3_stmt_scanstatus()] related event counters.
dan04489b62014-10-31 20:11:32 +00008430**
8431** This API is only available if the library is built with pre-processor
drhd1a1c232014-11-03 16:35:55 +00008432** symbol [SQLITE_ENABLE_STMT_SCANSTATUS] defined.
dan04489b62014-10-31 20:11:32 +00008433*/
drh4f03f412015-05-20 21:28:32 +00008434void sqlite3_stmt_scanstatus_reset(sqlite3_stmt*);
drh75897232000-05-29 14:26:00 +00008435
dan6fa255f2015-10-28 19:46:57 +00008436/*
8437** CAPI3REF: Flush caches to disk mid-transaction
8438**
drhe230a892015-12-10 22:48:22 +00008439** ^If a write-transaction is open on [database connection] D when the
8440** [sqlite3_db_cacheflush(D)] interface invoked, any dirty
dan6fa255f2015-10-28 19:46:57 +00008441** pages in the pager-cache that are not currently in use are written out
8442** to disk. A dirty page may be in use if a database cursor created by an
8443** active SQL statement is reading from it, or if it is page 1 of a database
drhe230a892015-12-10 22:48:22 +00008444** file (page 1 is always "in use"). ^The [sqlite3_db_cacheflush(D)]
8445** interface flushes caches for all schemas - "main", "temp", and
8446** any [attached] databases.
dan6fa255f2015-10-28 19:46:57 +00008447**
drhe230a892015-12-10 22:48:22 +00008448** ^If this function needs to obtain extra database locks before dirty pages
8449** can be flushed to disk, it does so. ^If those locks cannot be obtained
dan6fa255f2015-10-28 19:46:57 +00008450** immediately and there is a busy-handler callback configured, it is invoked
drhe230a892015-12-10 22:48:22 +00008451** in the usual manner. ^If the required lock still cannot be obtained, then
dan6fa255f2015-10-28 19:46:57 +00008452** the database is skipped and an attempt made to flush any dirty pages
drhe230a892015-12-10 22:48:22 +00008453** belonging to the next (if any) database. ^If any databases are skipped
dan6fa255f2015-10-28 19:46:57 +00008454** because locks cannot be obtained, but no other error occurs, this
8455** function returns SQLITE_BUSY.
8456**
drhe230a892015-12-10 22:48:22 +00008457** ^If any other error occurs while flushing dirty pages to disk (for
dan6fa255f2015-10-28 19:46:57 +00008458** example an IO error or out-of-memory condition), then processing is
drhe230a892015-12-10 22:48:22 +00008459** abandoned and an SQLite [error code] is returned to the caller immediately.
dan6fa255f2015-10-28 19:46:57 +00008460**
drhe230a892015-12-10 22:48:22 +00008461** ^Otherwise, if no error occurs, [sqlite3_db_cacheflush()] returns SQLITE_OK.
dan6fa255f2015-10-28 19:46:57 +00008462**
drhe230a892015-12-10 22:48:22 +00008463** ^This function does not set the database handle error code or message
8464** returned by the [sqlite3_errcode()] and [sqlite3_errmsg()] functions.
dan6fa255f2015-10-28 19:46:57 +00008465*/
8466int sqlite3_db_cacheflush(sqlite3*);
dand2f5ee22014-10-20 16:24:23 +00008467
8468/*
dan21e8d012011-03-03 20:05:59 +00008469** CAPI3REF: The pre-update hook.
drh930e1b62011-03-30 17:07:47 +00008470**
drh9b1c62d2011-03-30 21:04:43 +00008471** ^These interfaces are only available if SQLite is compiled using the
drh076b6462016-04-01 17:54:07 +00008472** [SQLITE_ENABLE_PREUPDATE_HOOK] compile-time option.
drh9b1c62d2011-03-30 21:04:43 +00008473**
drh930e1b62011-03-30 17:07:47 +00008474** ^The [sqlite3_preupdate_hook()] interface registers a callback function
drh076b6462016-04-01 17:54:07 +00008475** that is invoked prior to each [INSERT], [UPDATE], and [DELETE] operation
danf6c69222017-02-01 14:19:43 +00008476** on a database table.
drh930e1b62011-03-30 17:07:47 +00008477** ^At most one preupdate hook may be registered at a time on a single
8478** [database connection]; each call to [sqlite3_preupdate_hook()] overrides
8479** the previous setting.
8480** ^The preupdate hook is disabled by invoking [sqlite3_preupdate_hook()]
8481** with a NULL pointer as the second parameter.
8482** ^The third parameter to [sqlite3_preupdate_hook()] is passed through as
8483** the first parameter to callbacks.
8484**
danf6c69222017-02-01 14:19:43 +00008485** ^The preupdate hook only fires for changes to real database tables; the
8486** preupdate hook is not invoked for changes to [virtual tables] or to
8487** system tables like sqlite_master or sqlite_stat1.
drh930e1b62011-03-30 17:07:47 +00008488**
8489** ^The second parameter to the preupdate callback is a pointer to
8490** the [database connection] that registered the preupdate hook.
8491** ^The third parameter to the preupdate callback is one of the constants
drh6da466e2016-08-07 18:52:11 +00008492** [SQLITE_INSERT], [SQLITE_DELETE], or [SQLITE_UPDATE] to identify the
drh930e1b62011-03-30 17:07:47 +00008493** kind of update operation that is about to occur.
8494** ^(The fourth parameter to the preupdate callback is the name of the
8495** database within the database connection that is being modified. This
8496** will be "main" for the main database or "temp" for TEMP tables or
8497** the name given after the AS keyword in the [ATTACH] statement for attached
8498** databases.)^
8499** ^The fifth parameter to the preupdate callback is the name of the
8500** table that is being modified.
danf6c69222017-02-01 14:19:43 +00008501**
8502** For an UPDATE or DELETE operation on a [rowid table], the sixth
8503** parameter passed to the preupdate callback is the initial [rowid] of the
8504** row being modified or deleted. For an INSERT operation on a rowid table,
8505** or any operation on a WITHOUT ROWID table, the value of the sixth
8506** parameter is undefined. For an INSERT or UPDATE on a rowid table the
8507** seventh parameter is the final rowid value of the row being inserted
8508** or updated. The value of the seventh parameter passed to the callback
8509** function is not defined for operations on WITHOUT ROWID tables, or for
8510** INSERT operations on rowid tables.
drh930e1b62011-03-30 17:07:47 +00008511**
8512** The [sqlite3_preupdate_old()], [sqlite3_preupdate_new()],
8513** [sqlite3_preupdate_count()], and [sqlite3_preupdate_depth()] interfaces
8514** provide additional information about a preupdate event. These routines
8515** may only be called from within a preupdate callback. Invoking any of
8516** these routines from outside of a preupdate callback or with a
8517** [database connection] pointer that is different from the one supplied
8518** to the preupdate callback results in undefined and probably undesirable
8519** behavior.
8520**
8521** ^The [sqlite3_preupdate_count(D)] interface returns the number of columns
8522** in the row that is being inserted, updated, or deleted.
8523**
8524** ^The [sqlite3_preupdate_old(D,N,P)] interface writes into P a pointer to
8525** a [protected sqlite3_value] that contains the value of the Nth column of
8526** the table row before it is updated. The N parameter must be between 0
8527** and one less than the number of columns or the behavior will be
8528** undefined. This must only be used within SQLITE_UPDATE and SQLITE_DELETE
8529** preupdate callbacks; if it is used by an SQLITE_INSERT callback then the
8530** behavior is undefined. The [sqlite3_value] that P points to
8531** will be destroyed when the preupdate callback returns.
8532**
8533** ^The [sqlite3_preupdate_new(D,N,P)] interface writes into P a pointer to
8534** a [protected sqlite3_value] that contains the value of the Nth column of
8535** the table row after it is updated. The N parameter must be between 0
8536** and one less than the number of columns or the behavior will be
8537** undefined. This must only be used within SQLITE_INSERT and SQLITE_UPDATE
8538** preupdate callbacks; if it is used by an SQLITE_DELETE callback then the
8539** behavior is undefined. The [sqlite3_value] that P points to
8540** will be destroyed when the preupdate callback returns.
8541**
8542** ^The [sqlite3_preupdate_depth(D)] interface returns 0 if the preupdate
8543** callback was invoked as a result of a direct insert, update, or delete
8544** operation; or 1 for inserts, updates, or deletes invoked by top-level
8545** triggers; or 2 for changes resulting from triggers called by top-level
8546** triggers; and so forth.
8547**
8548** See also: [sqlite3_update_hook()]
dan21e8d012011-03-03 20:05:59 +00008549*/
drh77233712016-11-09 00:57:27 +00008550#if defined(SQLITE_ENABLE_PREUPDATE_HOOK)
8551void *sqlite3_preupdate_hook(
dan46c47d42011-03-01 18:42:07 +00008552 sqlite3 *db,
drh4194ff62016-07-28 15:09:02 +00008553 void(*xPreUpdate)(
dan46c47d42011-03-01 18:42:07 +00008554 void *pCtx, /* Copy of third arg to preupdate_hook() */
8555 sqlite3 *db, /* Database handle */
8556 int op, /* SQLITE_UPDATE, DELETE or INSERT */
8557 char const *zDb, /* Database name */
8558 char const *zName, /* Table name */
8559 sqlite3_int64 iKey1, /* Rowid of row about to be deleted/updated */
8560 sqlite3_int64 iKey2 /* New rowid value (for a rowid UPDATE) */
8561 ),
8562 void*
8563);
drh77233712016-11-09 00:57:27 +00008564int sqlite3_preupdate_old(sqlite3 *, int, sqlite3_value **);
8565int sqlite3_preupdate_count(sqlite3 *);
8566int sqlite3_preupdate_depth(sqlite3 *);
8567int sqlite3_preupdate_new(sqlite3 *, int, sqlite3_value **);
8568#endif
dan46c47d42011-03-01 18:42:07 +00008569
8570/*
drh1b9f2142016-03-17 16:01:23 +00008571** CAPI3REF: Low-level system error code
8572**
8573** ^Attempt to return the underlying operating system error code or error
mistachkinb932bf62016-03-30 16:22:18 +00008574** number that caused the most recent I/O error or failure to open a file.
drh1b9f2142016-03-17 16:01:23 +00008575** The return value is OS-dependent. For example, on unix systems, after
8576** [sqlite3_open_v2()] returns [SQLITE_CANTOPEN], this interface could be
8577** called to get back the underlying "errno" that caused the problem, such
8578** as ENOSPC, EAUTH, EISDIR, and so forth.
8579*/
8580int sqlite3_system_errno(sqlite3*);
8581
8582/*
drhe230a892015-12-10 22:48:22 +00008583** CAPI3REF: Database Snapshot
drhbc603682016-11-28 21:22:26 +00008584** KEYWORDS: {snapshot} {sqlite3_snapshot}
drhe230a892015-12-10 22:48:22 +00008585** EXPERIMENTAL
danfc1acf32015-12-05 20:51:54 +00008586**
drhe230a892015-12-10 22:48:22 +00008587** An instance of the snapshot object records the state of a [WAL mode]
8588** database for some specific point in history.
danfc1acf32015-12-05 20:51:54 +00008589**
drhe230a892015-12-10 22:48:22 +00008590** In [WAL mode], multiple [database connections] that are open on the
8591** same database file can each be reading a different historical version
8592** of the database file. When a [database connection] begins a read
8593** transaction, that connection sees an unchanging copy of the database
8594** as it existed for the point in time when the transaction first started.
8595** Subsequent changes to the database from other connections are not seen
8596** by the reader until a new read transaction is started.
danfc1acf32015-12-05 20:51:54 +00008597**
drhe230a892015-12-10 22:48:22 +00008598** The sqlite3_snapshot object records state information about an historical
8599** version of the database file so that it is possible to later open a new read
8600** transaction that sees that historical version of the database rather than
8601** the most recent version.
dan65127cd2015-12-09 20:05:27 +00008602**
drhe230a892015-12-10 22:48:22 +00008603** The constructor for this object is [sqlite3_snapshot_get()]. The
8604** [sqlite3_snapshot_open()] method causes a fresh read transaction to refer
8605** to an historical snapshot (if possible). The destructor for
8606** sqlite3_snapshot objects is [sqlite3_snapshot_free()].
danfc1acf32015-12-05 20:51:54 +00008607*/
drhba6eb872016-11-15 17:37:56 +00008608typedef struct sqlite3_snapshot {
8609 unsigned char hidden[48];
8610} sqlite3_snapshot;
drhe230a892015-12-10 22:48:22 +00008611
8612/*
8613** CAPI3REF: Record A Database Snapshot
8614** EXPERIMENTAL
8615**
8616** ^The [sqlite3_snapshot_get(D,S,P)] interface attempts to make a
8617** new [sqlite3_snapshot] object that records the current state of
8618** schema S in database connection D. ^On success, the
8619** [sqlite3_snapshot_get(D,S,P)] interface writes a pointer to the newly
8620** created [sqlite3_snapshot] object into *P and returns SQLITE_OK.
danedace5d2016-11-18 18:43:39 +00008621** If there is not already a read-transaction open on schema S when
8622** this function is called, one is opened automatically.
8623**
8624** The following must be true for this function to succeed. If any of
8625** the following statements are false when sqlite3_snapshot_get() is
8626** called, SQLITE_ERROR is returned. The final value of *P is undefined
8627** in this case.
8628**
8629** <ul>
8630** <li> The database handle must be in [autocommit mode].
8631**
8632** <li> Schema S of [database connection] D must be a [WAL mode] database.
8633**
8634** <li> There must not be a write transaction open on schema S of database
8635** connection D.
8636**
8637** <li> One or more transactions must have been written to the current wal
8638** file since it was created on disk (by any connection). This means
8639** that a snapshot cannot be taken on a wal mode database with no wal
8640** file immediately after it is first opened. At least one transaction
8641** must be written to it first.
8642** </ul>
8643**
8644** This function may also return SQLITE_NOMEM. If it is called with the
8645** database handle in autocommit mode but fails for some other reason,
8646** whether or not a read transaction is opened on schema S is undefined.
drhe230a892015-12-10 22:48:22 +00008647**
8648** The [sqlite3_snapshot] object returned from a successful call to
8649** [sqlite3_snapshot_get()] must be freed using [sqlite3_snapshot_free()]
8650** to avoid a memory leak.
drh5a6e89c2015-12-11 03:27:36 +00008651**
8652** The [sqlite3_snapshot_get()] interface is only available when the
8653** SQLITE_ENABLE_SNAPSHOT compile-time option is used.
drhe230a892015-12-10 22:48:22 +00008654*/
drh5a6e89c2015-12-11 03:27:36 +00008655SQLITE_EXPERIMENTAL int sqlite3_snapshot_get(
8656 sqlite3 *db,
8657 const char *zSchema,
8658 sqlite3_snapshot **ppSnapshot
8659);
drhe230a892015-12-10 22:48:22 +00008660
8661/*
8662** CAPI3REF: Start a read transaction on an historical snapshot
8663** EXPERIMENTAL
8664**
drh11b26402016-04-08 19:44:31 +00008665** ^The [sqlite3_snapshot_open(D,S,P)] interface starts a
8666** read transaction for schema S of
8667** [database connection] D such that the read transaction
8668** refers to historical [snapshot] P, rather than the most
8669** recent change to the database.
drhe230a892015-12-10 22:48:22 +00008670** ^The [sqlite3_snapshot_open()] interface returns SQLITE_OK on success
8671** or an appropriate [error code] if it fails.
8672**
8673** ^In order to succeed, a call to [sqlite3_snapshot_open(D,S,P)] must be
drh11b26402016-04-08 19:44:31 +00008674** the first operation following the [BEGIN] that takes the schema S
8675** out of [autocommit mode].
8676** ^In other words, schema S must not currently be in
8677** a transaction for [sqlite3_snapshot_open(D,S,P)] to work, but the
8678** database connection D must be out of [autocommit mode].
8679** ^A [snapshot] will fail to open if it has been overwritten by a
drhd892ac92016-02-27 14:00:07 +00008680** [checkpoint].
drh11b26402016-04-08 19:44:31 +00008681** ^(A call to [sqlite3_snapshot_open(D,S,P)] will fail if the
8682** database connection D does not know that the database file for
8683** schema S is in [WAL mode]. A database connection might not know
8684** that the database file is in [WAL mode] if there has been no prior
8685** I/O on that database connection, or if the database entered [WAL mode]
8686** after the most recent I/O on the database connection.)^
8687** (Hint: Run "[PRAGMA application_id]" against a newly opened
drhd892ac92016-02-27 14:00:07 +00008688** database connection in order to make it ready to use snapshots.)
drh5a6e89c2015-12-11 03:27:36 +00008689**
8690** The [sqlite3_snapshot_open()] interface is only available when the
8691** SQLITE_ENABLE_SNAPSHOT compile-time option is used.
drhe230a892015-12-10 22:48:22 +00008692*/
drh5a6e89c2015-12-11 03:27:36 +00008693SQLITE_EXPERIMENTAL int sqlite3_snapshot_open(
8694 sqlite3 *db,
8695 const char *zSchema,
8696 sqlite3_snapshot *pSnapshot
8697);
drhe230a892015-12-10 22:48:22 +00008698
8699/*
8700** CAPI3REF: Destroy a snapshot
8701** EXPERIMENTAL
8702**
8703** ^The [sqlite3_snapshot_free(P)] interface destroys [sqlite3_snapshot] P.
8704** The application must eventually free every [sqlite3_snapshot] object
8705** using this routine to avoid a memory leak.
drh5a6e89c2015-12-11 03:27:36 +00008706**
8707** The [sqlite3_snapshot_free()] interface is only available when the
8708** SQLITE_ENABLE_SNAPSHOT compile-time option is used.
drhe230a892015-12-10 22:48:22 +00008709*/
8710SQLITE_EXPERIMENTAL void sqlite3_snapshot_free(sqlite3_snapshot*);
danfc1acf32015-12-05 20:51:54 +00008711
8712/*
danad2d5ba2016-04-11 19:59:52 +00008713** CAPI3REF: Compare the ages of two snapshot handles.
8714** EXPERIMENTAL
8715**
8716** The sqlite3_snapshot_cmp(P1, P2) interface is used to compare the ages
8717** of two valid snapshot handles.
8718**
8719** If the two snapshot handles are not associated with the same database
dan745be362016-04-12 15:14:25 +00008720** file, the result of the comparison is undefined.
8721**
8722** Additionally, the result of the comparison is only valid if both of the
8723** snapshot handles were obtained by calling sqlite3_snapshot_get() since the
8724** last time the wal file was deleted. The wal file is deleted when the
8725** database is changed back to rollback mode or when the number of database
8726** clients drops to zero. If either snapshot handle was obtained before the
8727** wal file was last deleted, the value returned by this function
8728** is undefined.
danad2d5ba2016-04-11 19:59:52 +00008729**
8730** Otherwise, this API returns a negative value if P1 refers to an older
8731** snapshot than P2, zero if the two handles refer to the same database
8732** snapshot, and a positive value if P1 is a newer snapshot than P2.
8733*/
8734SQLITE_EXPERIMENTAL int sqlite3_snapshot_cmp(
8735 sqlite3_snapshot *p1,
8736 sqlite3_snapshot *p2
8737);
8738
8739/*
dan11584982016-11-18 20:49:43 +00008740** CAPI3REF: Recover snapshots from a wal file
8741** EXPERIMENTAL
dan93f51132016-11-19 18:31:37 +00008742**
8743** If all connections disconnect from a database file but do not perform
8744** a checkpoint, the existing wal file is opened along with the database
8745** file the next time the database is opened. At this point it is only
8746** possible to successfully call sqlite3_snapshot_open() to open the most
8747** recent snapshot of the database (the one at the head of the wal file),
8748** even though the wal file may contain other valid snapshots for which
8749** clients have sqlite3_snapshot handles.
8750**
8751** This function attempts to scan the wal file associated with database zDb
8752** of database handle db and make all valid snapshots available to
8753** sqlite3_snapshot_open(). It is an error if there is already a read
8754** transaction open on the database, or if the database is not a wal mode
8755** database.
8756**
8757** SQLITE_OK is returned if successful, or an SQLite error code otherwise.
dan11584982016-11-18 20:49:43 +00008758*/
8759SQLITE_EXPERIMENTAL int sqlite3_snapshot_recover(sqlite3 *db, const char *zDb);
8760
8761/*
drh75897232000-05-29 14:26:00 +00008762** Undo the hack that converts floating point types to integer for
8763** builds on processors without floating point support.
8764*/
8765#ifdef SQLITE_OMIT_FLOATING_POINT
8766# undef double
8767#endif
8768
8769#ifdef __cplusplus
8770} /* End of the 'extern "C"' block */
8771#endif
drh43f58d62016-07-09 16:14:45 +00008772#endif /* SQLITE3_H */